Masimo Corporation

United States of America

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        Patent 1,072
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        Canada 44
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[Owner] Masimo Corporation 1,380
Masimo Semiconductor, Inc. 9
Date
New (last 4 weeks) 4
2026 July 3
2026 June 2
2026 May 11
2026 April 12
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IPC Class
A61B 5/00 - Measuring for diagnostic purposes Identification of persons 687
A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters 542
A61B 5/024 - Measuring pulse rate or heart rate 251
A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition 240
A61B 5/145 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value 182
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NICE Class
10 - Medical apparatus and instruments 275
09 - Scientific and electric apparatus and instruments 154
42 - Scientific, technological and industrial services, research and design 72
44 - Medical, veterinary, hygienic and cosmetic services; agriculture, horticulture and forestry services 41
05 - Pharmaceutical, veterinary and sanitary products 7
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Status
Pending 246
Registered / In Force 1,143
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1.

PHYSIOLOGICAL MONITORING DEVICE ATTACHMENT ASSEMBLY

      
Application Number 19447539
Status Pending
Filing Date 2026-01-13
First Publication Date 2026-07-23
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Dejong, Chad A.
  • Hwang, Sujin

Abstract

An assembly for enabling a caregiver to secure a physiological monitoring device to an arm of a user can include the physiological monitoring device a cradle configured to removably secure to the physiological monitoring device and to the user's arm. The physiological monitoring device can include a first connector port configured to electrically connect to a first cable and a first locking tab movable between an extended position and a retracted position. The cradle can include a base, first and second sidewalls, a back wall connected to the base and the first and second sidewalls. The cradle can further include a first opening in the back wall configured to receive the first connector port and a second opening in the first sidewall configured to receive the first locking tab when the physiological monitoring device is secured to the cradle and the first locking tab is in the extended position.

IPC Classes  ?

  • A61B 5/282 - Holders for multiple electrodes
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/022 - Measuring pressure in heart or blood vessels by applying pressure to close blood vessels, e.g. against the skinOphthaldynamometers
  • A61B 5/0235 - Valves specially adapted therefor
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/025 - Measuring pulse rate or heart rate using sensing means generating electric signals within occluders, e.g. responsive to Korotkoff sounds
  • A61B 5/11 - Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/28 - Bioelectric electrodes therefor specially adapted for particular uses for electrocardiography [ECG]
  • A61B 5/308 - Input circuits therefor specially adapted for particular uses for electrocardiography [ECG]
  • A61B 5/332 - Portable devices specially adapted therefor
  • A61B 5/339 - Displays specially adapted therefor
  • F04B 45/04 - Pumps or pumping installations having flexible working members and specially adapted for elastic fluids having plate-like flexible members, e.g. diaphragms
  • F04B 53/00 - Component parts, details or accessories not provided for in, or of interest apart from, groups or
  • H02J 7/50 -
  • H02J 7/70 -
  • H02J 7/80 -

2.

LOW DEADSPACE AIRWAY ADAPTER

      
Application Number 19423929
Status Pending
Filing Date 2025-12-17
First Publication Date 2026-07-09
Owner MASIMO CORPORATION (USA)
Inventor
  • Yu, Edmond Wing-Lun
  • Mohammadi, Mahdi

Abstract

In some implementations, a low dead space airway adapter for sampling fluid flowing through a ventilation assembly includes an outer wall configured to couple to an endotracheal (ET) tube adapter and an internal projection positioned at least partially within an internal cavity defined by the outer wall and configured to extend within an internal cavity of the ET tube adapter when the airway adapter is in use. The internal projection can include a fluid passageway configured for fluid communication with at least a portion of the internal cavity of the ET tube adapter and a free end comprising an opening in fluid communication with the fluid passageway. At least a portion of the free end can be chamfered around the opening and configured to contact an inner surface of the ET tube adapter when the outer wall is coupled to the ET tube adapter.

IPC Classes  ?

  • A61M 16/04 - Tracheal tubes
  • A61M 16/00 - Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators Tracheal tubes
  • A61M 16/08 - BellowsConnecting tubes

3.

MONITOR CONFIGURATION SYSTEM

      
Application Number 19429052
Status Pending
Filing Date 2025-12-22
First Publication Date 2026-07-02
Owner MASIMO CORPORATION (USA)
Inventor Al-Ali, Ammar

Abstract

A monitor configuration system which communicates with a physiological sensor, the monitor configuration system including one or more processors and an instrument manager module running on the one or more processors. At least one of the one or more processors communicates with the sensor and calculates at least one physiological parameters responsive to the sensor. The instrument manager controls the calculation, display and/or alarms based upon the physiological parameters. A configuration indicator identifies the configuration profile. In one aspect of the invention, the physiological sensor is a optical sensor that includes at least one light emitting diode and at least one detector.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/026 - Measuring blood flow
  • A61B 5/145 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters

4.

Connector

      
Application Number 29764887
Grant Number D1132251
Status In Force
Filing Date 2021-01-04
First Publication Date 2026-06-30
Grant Date 2026-06-30
Owner MASIMO CORPORATION (USA)
Inventor
  • Forrest, Kevin
  • Al-Ali, Ammar
  • Abdul-Hafiz, Yassir Kamel

5.

PATIENT-WORN WIRELESS PHYSIOLOGICAL SENSOR WITH PAIRING FUNCTIONALITY

      
Application Number 19179196
Status Pending
Filing Date 2025-04-15
First Publication Date 2026-06-11
Owner Masimo Corporation (USA)
Inventor Al-Ali, Ammar

Abstract

Systems and methods described herein use pairing to associate a wireless sensor with a patient monitoring device such as a bedside patient monitor or a mobile device. A signal emitted by a patient monitoring device can be detected by a wireless sensor. The wireless sensor can be associated with the detected signal and pair the wireless sensor with the patient monitoring device. The wireless sensor can be configured to enter into a patient parameter sensing mode of operation after the association of the wireless sensor with the patient monitoring device.

IPC Classes  ?

  • H04W 76/14 - Direct-mode setup
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/053 - Measuring electrical impedance or conductance of a portion of the body
  • A61B 5/113 - Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb occurring during breathing
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/282 - Holders for multiple electrodes
  • H04L 9/40 - Network security protocols
  • H04W 4/80 - Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
  • H04W 8/00 - Network data management
  • H04W 12/50 - Secure pairing of devices
  • H04W 12/77 - Graphical identity
  • H04W 84/20 - Leader-follower arrangements

6.

DISTRIBUTED ARCHITECTURE FOR PATIENT MONITORING SYSTEM FOR GENERATING PATIENT ALARMS

      
Application Number 19356618
Status Pending
Filing Date 2025-10-13
First Publication Date 2026-06-11
Owner Masimo Corporation (USA)
Inventor Al-Ali, Ammar

Abstract

A physiological monitoring system can monitor health status of a subject having a wireless wearable device. The monitoring system can have distributed monitoring devices in communication with each other and a remote server. A monitoring hub of the system can establish wireless communication with the wearable device to wirelessly receive physiological data from the wearable device. The monitoring hub can transmit the physiological data to the remote server without processing the physiological data for centralized processing by the server. The server can generate patient alarms and cause the alarms to be output by the distributed monitoring devices. In instances when connection to the server is interrupted or lost, the monitoring hub and/or wearable device can continue, without interruption, monitoring the subject continuously and in real-time, such as for triggering of alarm conditions, until connection with the server is improved or reestablished.

IPC Classes  ?

  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
  • G16H 10/60 - ICT specially adapted for the handling or processing of patient-related medical or healthcare data for patient-specific data, e.g. for electronic patient records
  • G16H 15/00 - ICT specially adapted for medical reports, e.g. generation or transmission thereof
  • G16H 50/20 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for computer-aided diagnosis, e.g. based on medical expert systems
  • G16H 70/60 - ICT specially adapted for the handling or processing of medical references relating to pathologies
  • G16H 80/00 - ICT specially adapted for facilitating communication between medical practitioners or patients, e.g. for collaborative diagnosis, therapy or health monitoring

7.

SYSTEM FOR TRANSMISSION OF SENSOR DATA USING DUAL COMMUNICATION PROTOCOL

      
Application Number 19395932
Status Pending
Filing Date 2025-11-20
First Publication Date 2026-05-28
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Scruggs, Stephen
  • Priddell, Richard
  • De Jong, Chad A.
  • Kinast, Eric Karl
  • Hwang, Jung Soo
  • Hang, Steven

Abstract

A system for collecting physiological data from a patient is disclosed. The system includes a reusable module and a disposable module. The disposable module collects and transmits physiological data to the reusable module, which in turn transmits the physiological data to a patient monitoring system. The reusable module accesses operation data from the disposable module to validate the disposable sensor assembly. Optionally, the operation data includes sensor life data that may be used to determine life expectancy of disposable module. The disposable sensor assembly may store the physiological data for a predetermined length of time when there is no wireless communication established for the reusable module.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters

8.

RAD-GC

      
Serial Number 99846782
Status Pending
Filing Date 2026-05-26
Owner MASIMO CORPORATION (USA)
NICE Classes  ? 10 - Medical apparatus and instruments

Goods & Services

Medical apparatus and instruments for monitoring blood oxygen levels, respiration rate, pulse rate, vital signs, medical or health conditions, breathing, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, respiration rate, pulse rate, vital signs, medical or health conditions, breathing, and blood properties, and recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, respiration rate, pulse rate, vital signs, medical or health conditions, breathing, and blood properties, and recorded software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, respiration rate, pulse rate, vital signs, medical or health conditions, breathing, and blood properties, and recorded software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Sensors for medical use to be worn by a human to gather human biometric data and also including recorded software for recording, analyzing, processing and transmitting medical data, for use therewith sold as a unit; Pulse oximeters for medical purposes

9.

OPTICAL PHYSIOLOGICAL NOSE SENSOR

      
Application Number 19391777
Status Pending
Filing Date 2025-11-17
First Publication Date 2026-05-21
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Scruggs, Stephen
  • Kotcherha, Kyla Scott
  • Hwang, Sujin

Abstract

An optical physiological sensor configured to be secured to a user's nose includes a first prong configured to be positioned proximate an outside portion of the nose, a second prong configured to be positioned proximate an inside portion of the user's nose, a winged portion coupled to the first prong and configured to contact tissue of the user, one or more emitters configured to emit light of one or more wavelengths into the tissue, and one or more detectors configured to detect at least a portion of the light emitted from the one or more emitters after attenuation through at least a portion of the tissue. In some configurations, the winged portion comprises a width that is greater than a width of the second prong. In some configurations, at least a portion of the winged portion is curved toward the second prong.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/026 - Measuring blood flow

10.

MODULAR WIRELESS PHYSIOLOGICAL PARAMETER SYSTEM

      
Application Number 19393365
Status Pending
Filing Date 2025-11-18
First Publication Date 2026-05-21
Owner MASIMO CORPORATION (USA)
Inventor
  • Muhsin, Bilal
  • Barker, Nicholas Evan
  • Al-Ali, Ammar

Abstract

A sensor system for monitoring patients is provided. The sensor system includes a wireless charging dock, one or more patient sensors, and a processing module. The patient sensor is configured to collect patient physiological data and send the data to the processing module. The processing module wirelessly transmits the patient physiological data to a patient monitor system. The wireless charging dock is wirelessly and removably coupled to the processing module to wirelessly provide power for the processing module. The wireless charging dock is magnetically coupled to the processing module.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/145 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value
  • H02J 7/02 - Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries for charging batteries from AC mains by converters
  • H02J 7/40 -

11.

WEARABLE BAND FOR HEALTH MONITORING DEVICE

      
Application Number 19396070
Status Pending
Filing Date 2025-11-20
First Publication Date 2026-05-21
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Dejong, Chad A.
  • Lim, Hee Seung
  • Kim, Jinwoo

Abstract

A wearable device configured to monitor physiological parameters of a wearer can include: a physiological parameter measurement sensor configured to monitor a plurality of physiological parameters; a hardware processor; a display in communication with the processor; and a band configured to secure the physiological parameter measurement sensor on a wrist of the wearer. In some implementations, the hardware processor is configured to: obtain a first plurality of signals from the physiological parameter measurement sensor when the band is secured on the wrist at a first tightness; determine a signal quality responsive to the first plurality of signals; and output an indication on the display to adjust tightness of the band with respect to the wrist from the first tightness to a second tightness based on the determined signal quality.

IPC Classes  ?

  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

12.

Dongle

      
Application Number 29865160
Grant Number D1127209
Status In Force
Filing Date 2022-07-11
First Publication Date 2026-05-19
Grant Date 2026-05-19
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Dejong, Chad A.

13.

ROOT CLARITY

      
Application Number 019365238
Status Pending
Filing Date 2026-05-15
Owner Masimo Corporation (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 10 - Medical apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Computer hardware for displaying, measuring, and uploading to a worldwide computer network information including activity level, heart rate, blood pressure, respiration, breathing, and blood oxygen levels; Computer hardware for collecting data from medical and health devices; Computer hardware for transferring medical and health data to data management systems and electronic medical records; Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Downloadable computer software for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties. Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Sensors for medical use to be worn by a human to gather human biometric data and also including recorded software sold as a unit. Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online non-downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing on-line non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties.

14.

ROOT CLARITY

      
Application Number 247570900
Status Pending
Filing Date 2026-05-15
Owner MASIMO CORPORATION (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 10 - Medical apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

(1) Computer hardware for displaying, measuring, and uploading to a worldwide computer network information including activity level, heart rate, blood pressure, respiration, breathing, and blood oxygen levels; Computer hardware for collecting data from medical and health devices; Computer hardware for transferring medical and health data to data management systems and electronic medical records; Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Downloadable computer software for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties. (2) Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Sensors for medical use to be worn by a human to gather human biometric data and also including recorded software sold as a unit. (1) Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online non-downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing on-line non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties.

15.

WEARABLE DEVICE FOR NONINVASIVE BODY TEMPERATURE MEASUREMENT

      
Application Number 19420511
Status Pending
Filing Date 2025-12-15
First Publication Date 2026-05-07
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Scruggs, Stephen
  • Amposta, Joel
  • Telfort, Valery G.

Abstract

A wearable device configured to secure to skin of a user and noninvasively measure body temperature of the user can include first and second pairs of temperature sensors configured to generate one or more signals responsive to detected thermal energy, a thermally conductive element positioned at least partially between the second pair of temperature sensors, and one or more hardware processors configured to receive the one or more signals generated by each of said first and second pairs of temperature sensors and determine one or more body temperature values of the user based on at least comparisons between different ones of the first and second pairs of temperature sensors. In some implementations, the wearable device includes thermally conductive probes for transmitting thermal energy toward ones of the first and second pairs of temperature sensors and a substrate positioned between the probes and the skin.

IPC Classes  ?

  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • G01K 1/16 - Special arrangements for conducting heat from the object to the sensitive element
  • G01K 7/22 - Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat using resistive elements the element being a non-linear resistance, e.g. thermistor
  • G01K 13/20 - Clinical contact thermometers for use with humans or animals

16.

Patient monitoring device with improved user interface

      
Application Number 18486701
Grant Number 12616623
Status In Force
Filing Date 2023-10-13
First Publication Date 2026-05-05
Grant Date 2026-05-05
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Donga, Dishant Parshottambhai
  • Lee, Sung Uk
  • Usman, Mohammad
  • Kashif, Faisal

Abstract

A system for monitoring a patient in a bed can include one or more hardware processors that can receive sensor data from a sensor attached to the patient. The one or more hardware processors can determine, based on the sensor data, an orientation of an upper portion of the patient's body relative to a plane that extends along a portion of the bed that is adjacent to a lower portion of the patient's body.

IPC Classes  ?

  • A61B 5/11 - Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61G 7/018 - Control or drive mechanisms
  • G01P 15/02 - Measuring accelerationMeasuring decelerationMeasuring shock, i.e. sudden change of acceleration by making use of inertia forces
  • G01P 15/18 - Measuring accelerationMeasuring decelerationMeasuring shock, i.e. sudden change of acceleration in two or more dimensions
  • G06F 3/01 - Input arrangements or combined input and output arrangements for interaction between user and computer
  • G06F 3/04847 - Interaction techniques to control parameter settings, e.g. interaction with sliders or dials
  • G06T 11/00 - 2D [Two Dimensional] image generation

17.

Wearable temperature measurement device

      
Application Number 29966299
Grant Number D1124917
Status In Force
Filing Date 2024-10-01
First Publication Date 2026-05-05
Grant Date 2026-05-05
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Dejong, Chad A.
  • Scruggs, Stephen
  • Amposta, Joel

18.

METHOD AND APPARATUS FOR CALIBRATION TO REDUCE COUPLING BETWEEN SIGNALS IN A MEASUREMENT SYSTEM

      
Application Number 18943755
Status Pending
Filing Date 2024-11-11
First Publication Date 2026-04-30
Owner Masimo Corporation (USA)
Inventor
  • Weber, Walter M.
  • Al-Ali, Ammar
  • Diab, Mohamed K.
  • Lamego, Marcelo M.

Abstract

A method and an apparatus for separating a composite signal into a plurality of signals is described. A signal processor receives a composite signal and separates a composite signal into separate output signals. Feedback from one or more of the output signals is provided to a configuration module that configures the signal processor to improve a quality of the output signals. In one embodiment, calibration data from multiple calibration data sets is used to configure the demodulation of the composite signal into separate output signals.

IPC Classes  ?

  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/1495 - Calibrating or testing in vivo probes

19.

Display screen or portion thereof with graphical user interface

      
Application Number 29950425
Grant Number D1124008
Status In Force
Filing Date 2024-07-02
First Publication Date 2026-04-28
Grant Date 2026-04-28
Owner Masimo Corporation (USA)
Inventor
  • Indorf, Keith Ward
  • Frey, Sebastian T.
  • Wang, Heyi

20.

Display screen or portion thereof with animated graphical user interface

      
Application Number 29924629
Grant Number D1124017
Status In Force
Filing Date 2024-01-19
First Publication Date 2026-04-28
Grant Date 2026-04-28
Owner Masimo Corporation (USA)
Inventor
  • Indorf, Keith Ward
  • Kapur, Prianjali
  • Garreffa, Lara
  • Bertagia, Manuela
  • Constant, Emma
  • Blanc Baudriller, Xavier

21.

SYSTEM FOR DISPLAYING MEDICAL MONITORING DATA

      
Application Number 19287472
Status Pending
Filing Date 2025-07-31
First Publication Date 2026-04-23
Owner Masimo Corporation (USA)
Inventor
  • Housel, Peter Scott
  • Muhsin, Bilal
  • Al-Ali, Ammar
  • Kiani, Massi Joe E.

Abstract

A first medical device can receive a physiological parameter value from a second medical device. The second physiological parameter value may be formatted according to a protocol not used by the first medical device such that the first medical device is not able to process the second physiological parameter value to produce a displayable output value. The first medical device can pass the physiological parameter data from the first medical device to a separate translation module and receive translated parameter data from the translation module at the first medical device. The translated parameter data can be processed for display by the first medical device. The first medical device can output a value from the translated parameter data for display on the first medical device or an auxiliary device.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61M 5/172 - Means for controlling media flow to the body or for metering media to the body, e.g. drip meters, counters electrical or electronic
  • A61M 16/00 - Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators Tracheal tubes
  • G06F 21/84 - Protecting input, output or interconnection devices output devices, e.g. displays or monitors
  • G16H 40/63 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation
  • H04Q 9/00 - Arrangements in telecontrol or telemetry systems for selectively calling a substation from a main station, in which substation desired apparatus is selected for applying a control signal thereto or for obtaining measured values therefrom

22.

SYSTEMS AND METHODS FOR ASSESSMENT OF PLACEMENT OF A DETECTOR OF A PHYSIOLOGICAL MONITORING DEVICE

      
Application Number 19371985
Status Pending
Filing Date 2025-10-28
First Publication Date 2026-04-23
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Devlin, Sean

Abstract

A non-invasive physiological sensor system implemented as a smart watch or other wearable device includes an emitter for emitting light and a detector for collecting light after the light interacts with a tissue of a wearer. The system can measure light intensity at one or more radial distances to estimate attenuation parameter values that can be used to correct physiological parameter bias across subjects. In addition or alternatively, the system can determine whether a detector is positioned sufficiently proximate to an obstructing tissue (for example, an artery or vein) so as to cause inaccurate measurements by the detector.

IPC Classes  ?

  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/024 - Measuring pulse rate or heart rate

23.

DISTRIBUTED ARCHITECTURE FOR PATIENT MONITORING SYSTEM FOR GENERATING PATIENT ALARMS

      
Application Number US2025050730
Publication Number 2026/085028
Status In Force
Filing Date 2025-10-13
Publication Date 2026-04-23
Owner MASIMO CORPORATION (USA)
Inventor Al-Ali, Ammar

Abstract

A physiological monitoring system can monitor health status of a subject having a wireless wearable device. The monitoring system can have distributed monitoring devices in communication with each other and a remote server. A monitoring hub of the system can establish wireless communication with the wearable device to wirelessly receive physiological data from the wearable device. The monitoring hub can transmit the physiological data to the remote server without processing the physiological data for centralized processing by the server. The server can generate patient alarms and cause the alarms to be output by the distributed monitoring devices. In instances when connection to the server is interrupted or lost, the monitoring hub and/or wearable device can continue, without interruption, monitoring the subject continuously and in real-time, such as for triggering of alarm conditions, until connection with the server is improved or reestablished.

IPC Classes  ?

  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

24.

SMARTSET

      
Application Number 019351522
Status Pending
Filing Date 2026-04-21
Owner Masimo Corporation (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 10 - Medical apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Recorded computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Recorded software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Circuit boards; Computer hardware; Downloadable computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Recorded computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), downloadable, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties. Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Medical devices, namely, patient monitors and patient sensors for monitoring and measuring blood properties and respiratory events; Sensors for medical use to be worn by a human to gather human biometric data and also including software sold as a unit; Pulse oximeters. Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online non-downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing on-line non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties.

25.

WRIST AND FINGER WORN PULSE OXIMETRY SYSTEM

      
Application Number 19331892
Status Pending
Filing Date 2025-09-17
First Publication Date 2026-04-16
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Dejong, Chad A.
  • Scruggs, Stephen
  • Schramm, James Ford
  • Priddell, Richard
  • Hwang, Sujin
  • Ambrosini, Mitchell Lloyd

Abstract

A pulse oximetry system includes a wrist portion configured for placement on a wrist of a subject, the wrist portion having a first component and a second component configured to removably secure to one another. The wrist portion can include emitter(s) and detector(s) operably positioned by the wrist portion. In some implementations, the pulse oximetry system further includes a ring member configured to secure around the subject's finger and operably position emitter(s) and detector(s) and a cable connected to the wrist portion in electrical communication with the emitter(s) and the detector(s) of the ring member and configured to transmit the signal(s) from the detector(s) to the wrist portion. The system includes a battery and hardware processor(s) configured to receive and process signal(s) outputted by the detector(s) to determine physiological parameter(s) of the subject.

IPC Classes  ?

  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

26.

DEPTH OF CONSCIOUSNESS MONITOR INCLUDING OXIMETER

      
Application Number 19359573
Status Pending
Filing Date 2025-10-15
First Publication Date 2026-04-16
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Abdul-Hafiz, Yassir

Abstract

The present disclosure relates to a sensor for monitoring the depth of consciousness of a patient. The sensor includes a plurality of light sources, light detectors, and in some embodiments, electrodes. In an embodiment, the sensor includes reusable and disposable portions.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/16 - Devices for psychotechnicsTesting reaction times
  • A61B 5/291 - Bioelectric electrodes therefor specially adapted for particular uses for electroencephalography [EEG]
  • A61B 5/369 - Electroencephalography [EEG]
  • A61B 5/374 - Detecting the frequency distribution of signals, e.g. detecting delta, theta, alpha, beta or gamma waves

27.

SYSTEM TO MONITOR AND MANAGE PATIENT HYDRATION VIA PLETHYSMOGRAPH VARIABILITY INDEX IN RESPONSE TO THE PASSIVE LEG RAISING

      
Application Number 19316927
Status Pending
Filing Date 2025-09-02
First Publication Date 2026-04-09
Owner Masimo Corporation (USA)
Inventor
  • Kiani, Massi Joe E.
  • Muhsin, Bilal
  • Indorf, Keith Ward

Abstract

Techniques for predicting fluid responsiveness or fluid unresponsiveness are described. A processor can determine a first prediction of fluid responsiveness or unresponsiveness based on a plethysmograph variability parameter associated with a plethysmograph waveform, and can determine a second prediction of fluid responsiveness or unresponsiveness based on a fluid responsiveness parameter that is associated with an elevation of one or more limbs of the patient. The processor can determine an overall prediction of fluid responsiveness or unresponsiveness based on the first and/or second predictions. Based on overall prediction, the processor can cause administration of fluids and/or termination of administration of fluids.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/026 - Measuring blood flow
  • A61B 5/029 - Measuring blood output from the heart, e.g. minute volume
  • G16H 20/17 - ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to drugs or medications, e.g. for ensuring correct administration to patients delivered via infusion or injection

28.

Spoke Design

      
Application Number 246735900
Status Pending
Filing Date 2026-04-07
Owner Masimo Corporation (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 10 - Medical apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

(1) Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Recorded computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Recorded software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Circuit boards; Computer hardware; Downloadable computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Recorded computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), downloadable, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties. (2) Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Medical devices, namely, patient monitors and patient sensors for monitoring and measuring blood properties and respiratory events; Sensors for medical use to be worn by a human to gather human biometric data and also including software sold as a unit. (1) Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online non-downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing on-line non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties.

29.

Miscellaneous Design

      
Application Number 019343676
Status Pending
Filing Date 2026-04-07
Owner Masimo Corporation (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 10 - Medical apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Recorded computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Recorded software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Circuit boards; Computer hardware; Downloadable computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Recorded computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), downloadable, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties. Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Medical devices, namely, patient monitors and patient sensors for monitoring and measuring blood properties and respiratory events; Sensors for medical use to be worn by a human to gather human biometric data and also including software sold as a unit. Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online non-downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing on-line non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties.

30.

SYSTEM AND METHOD FOR MONITORING RESPIRATORY RATE MEASUREMENTS

      
Application Number 19312165
Status Pending
Filing Date 2025-08-27
First Publication Date 2026-04-02
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Muhsin, Bilal
  • O'Reilly, Michael

Abstract

This disclosure describes, among other features, systems and methods for using multiple physiological parameter inputs to determine multiparameter confidence in respiratory rate measurements. For example, a patient monitoring system can programmatically determine multiparameter confidence in respiratory rate measurements obtained from an acoustic sensor based at least partly on inputs obtained from other non-acoustic sensors or monitors. The patient monitoring system can output a multiparameter confidence indication reflective of the programmatically-determined multiparameter confidence. The multiparameter confidence indication can assist a clinician in determining whether or how to treat a patient based on the patient's respiratory rate.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/145 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/343 - Potential distribution indication
  • A61B 7/00 - Instruments for auscultation
  • G16H 40/60 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices
  • G16H 40/63 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation
  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation

31.

Wearable sensor

      
Application Number 29962880
Grant Number D1119639
Status In Force
Filing Date 2024-09-13
First Publication Date 2026-03-24
Grant Date 2026-03-24
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Kim, Jinwoo
  • Gilmore, Maxwell
  • Dejong, Chad A.

32.

PHYSIOLOGICAL MEASUREMENT LOGIC ENGINE

      
Application Number 19285902
Status Pending
Filing Date 2025-07-30
First Publication Date 2026-03-19
Owner Masimo Corporation (USA)
Inventor Al-Ali, Ammar

Abstract

A patient monitor including a physiological measurement logic engine receives physiological data from a physiological sensor. The logic engine abstracts one or more features of the physiological data and determines a category for the abstracted feature. The logic engine further encodes the category of each of the one or more features and determines an action to perform based on the encoded categories.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/026 - Measuring blood flow
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 7/02 - Stethoscopes

33.

PHYSIOLOGICAL MONITORING WITH MULTIPLE COMMUNICATION PATHS

      
Application Number 19386993
Status Pending
Filing Date 2025-11-12
First Publication Date 2026-03-12
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Pike, Austin Kretz
  • Priddell, Richard
  • Magers, Christopher Robert
  • Ahmed, Omar

Abstract

A monitoring hub can access data from a server via one or more wireless communication protocols. The data can include a first portion of physiological data collected by a wearable hub worn by a subject and communicated from the wearable hub to the server. The monitoring hub can establish a wireless communication connection with the wearable hub responsive to determining that the wearable hub is within a threshold proximity to the monitoring hub. The monitoring hub can receive a second portion of the physiological data from the wearable hub. The monitoring hub can cause display of a user interface comprising indicia of the first portion of the physiological data accessed from the server in combination with the second portion of the physiological data received from the wearable hub.

IPC Classes  ?

  • H04W 76/10 - Connection setup
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • G06F 3/01 - Input arrangements or combined input and output arrangements for interaction between user and computer
  • G16H 10/60 - ICT specially adapted for the handling or processing of patient-related medical or healthcare data for patient-specific data, e.g. for electronic patient records
  • G16H 40/20 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms
  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
  • H04B 5/77 - Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes for interrogation
  • H04W 12/00 - Security arrangementsAuthenticationProtecting privacy or anonymity
  • H04W 12/06 - Authentication

34.

AUTONOMOUS DRUG DELIVERY SYSTEM

      
Application Number 19291256
Status Pending
Filing Date 2025-08-05
First Publication Date 2026-03-05
Owner MASIMO CORPORATION (USA)
Inventor Novak, Jr., Jerome J.

Abstract

An autonomous drug delivery system advantageously utilizes physiological monitor outputs so as to automatically give a bolus of a rescue drug or other necessary medication when certain criteria and confidence levels are met. An emergency button is provided to manually trigger administration of the rescue drug. The rescue drug may be an opioid antagonist in response to an analgesia overdose, a hypotensive drug to avert an excessive drop in blood pressure or an anti-arrhythmia drug to suppress abnormal heartbeats, to name a few.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/318 - Heart-related electrical modalities, e.g. electrocardiography [ECG]
  • A61M 5/14 - Infusion devices, e.g. infusing by gravityBlood infusionAccessories therefor
  • A61M 5/142 - Pressure infusion, e.g. using pumps
  • A61M 5/168 - Means for controlling media flow to the body or for metering media to the body, e.g. drip meters, counters
  • A61M 5/172 - Means for controlling media flow to the body or for metering media to the body, e.g. drip meters, counters electrical or electronic
  • G16H 20/17 - ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to drugs or medications, e.g. for ensuring correct administration to patients delivered via infusion or injection
  • G16H 40/20 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms
  • G16H 40/63 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation
  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
  • G16H 50/20 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for computer-aided diagnosis, e.g. based on medical expert systems
  • G16H 50/50 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for simulation or modelling of medical disorders

35.

SMARTSEDLINE

      
Application Number 245910800
Status Pending
Filing Date 2026-02-27
Owner Masimo Corporation (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 10 - Medical apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

(1) Computer software applications, downloadable; Computer software platforms, recorded or downloadable; Computer software, recorded; Software as a medical device [SaMD]; Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Recorded computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Recorded software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Circuit boards; Computer hardware; Downloadable computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Recorded computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), downloadable, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Wearable activity trackers (2) Medical apparatus and instruments; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Medical devices, namely, patient monitors and patient sensors for monitoring and measuring blood properties, brain function, and respiratory events; Sensors for medical use to be worn by a human to gather human biometric data and also including software sold as a unit (1) Providing online non-downloadable computer software; Software as a service [SaaS]; Platform as a service [PaaS]; Artificial intelligence as a service [AIaaS]; Maintenance of computer software; Updating of computer software; Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online non-downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing on-line non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties

36.

SMARTSEDLINE

      
Application Number 019323177
Status Registered
Filing Date 2026-02-27
Registration Date 2026-07-03
Owner Masimo Corporation (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 10 - Medical apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Computer software applications, downloadable; Computer software platforms, recorded or downloadable; Computer software, recorded; Software as a medical device [SaMD]; Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Recorded computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Recorded software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Circuit boards; Computer hardware; Downloadable computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Recorded computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), downloadable, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Wearable activity trackers. Medical apparatus and instruments; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Medical devices, namely, patient monitors and patient sensors for monitoring and measuring blood properties, brain function, and respiratory events; Sensors for medical use to be worn by a human to gather human biometric data and also including software sold as a unit. Providing online non-downloadable computer software; Software as a service [SaaS]; Platform as a service [PaaS]; Artificial intelligence as a service [AIaaS]; Maintenance of computer software; Updating of computer software; Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online non-downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing on-line non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties.

37.

MODULAR PHYSIOLOGICAL SENSOR

      
Application Number 19357591
Status Pending
Filing Date 2025-10-14
First Publication Date 2026-02-05
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Forrest, Kevin

Abstract

Modular physiological sensors that are physically and/or electrically configured to share a measurement site for the comfort of the patient and/or to ensure proper operation of the sensors without interference from the other sensors. The modular aspect is realized by providing outer housing shapes that generally conform to other physiological sensors; mounting areas for attachment of one sensor to another sensor; providing release liners on the overlapping sensor attachment areas; and/or providing notches, tabs or other mechanical features that provide for the proper placement and interaction of the sensors.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/291 - Bioelectric electrodes therefor specially adapted for particular uses for electroencephalography [EEG]
  • A61B 5/369 - Electroencephalography [EEG]

38.

Systems and methods for generating an equal-loudness contour response using an auricular device

      
Application Number 18433135
Grant Number 12538084
Status In Force
Filing Date 2024-02-05
First Publication Date 2026-01-27
Grant Date 2026-01-27
Owner Masimo Corporation (USA)
Inventor
  • Telfort, Valery G.
  • Campbell, Luke John

Abstract

A system may include a storage device, configured to store computer-executable instructions. A system may include an ear-bud configured to be positioned within an ear canal of a user, the ear-bud comprising: a speaker, a microphone; and one or more processors in communication with the storage device, wherein the computer-executable instructions, when executed by the one or more processors, cause the one or more processors to: obtain a user hearing profile, obtain an equal-loudness hearing profile, receive audio data from the microphone, and generate a second audio data based on a first sound-pressure level, a second sound-pressure level, a first frequency; and cause the speaker to emit the second audio data within the ear canal of the user, such that the user perceives the audio data as if the user has normal hearing.

IPC Classes  ?

39.

DEPTH OF CONSCIOUSNESS MONITOR

      
Application Number 19283020
Status Pending
Filing Date 2025-07-28
First Publication Date 2026-01-22
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Weber, Walter M.
  • Kashif, Faisal
  • Usman, Mohammad
  • Chandrasekaran, Balaji

Abstract

The present disclosure relates to physiological monitoring to determine the depth of consciousness of a patient under sedation. The monitor includes an EEG sensor and a depth of consciousness monitor. The depth of consciousness monitor can utilize treatment data, such as patient data and/or drug profile information with an EEG signal to determine whether the patient is adequately sedated.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/372 - Analysis of electroencephalograms
  • A61B 5/389 - Electromyography [EMG]
  • A61M 5/172 - Means for controlling media flow to the body or for metering media to the body, e.g. drip meters, counters electrical or electronic

40.

SENSOR DEVICE FOR VOLUMETRIC CAPNOGRAPHY

      
Application Number 19258125
Status Pending
Filing Date 2025-07-02
First Publication Date 2026-01-15
Owner Masimo Corporation (USA)
Inventor Danwihl, Björn

Abstract

Disclosed herein is a sensor device for volumetric capnography. The sensor device is coupled to an adapter comprising a housing that encloses a measurement volume. The adapter is configured for gas flow along a first length axis, which aligns with a second length axis of the sensor device. The device includes an IR light source and an IR light detector, positioned on opposite sides of the housing. The IR light source emits IR light toward the detector across the measurement volume. The sensor device also includes a first ultrasonic transceiver in contact with the adapter and configured to emit ultrasound centered at a first position along the second length axis, directed partly along the axis and partly transversely. A second ultrasonic transceiver, also in contact with the adapter, emits ultrasound centered at a second position along the second length axis, directed partly opposite to the first direction and partly transversely.

IPC Classes  ?

  • A61M 16/00 - Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators Tracheal tubes
  • A61M 16/04 - Tracheal tubes

41.

SYSTEM AND METHODS FOR CONTINUOUSLY MONITORING A CONCENTRATION OF VOLATILE BREATHING COMPOUNDS

      
Application Number US2025036281
Publication Number 2026/015353
Status In Force
Filing Date 2025-07-02
Publication Date 2026-01-15
Owner MASIMO CORPORATION (USA)
Inventor
  • Fernkvist, Per
  • Gatty, Hithesh Kumar

Abstract

Disclosed herein are systems and methods for monitoring at least one volatile breathing compound in respiratory gases of patients. A device includes a patient respiratory gas interface coupled via a connector to a gas sampling line. The line includes a first channel for conducting a predetermined flux of respiratory gases from the interface to an inlet of a sidestream gas monitor, which monitors carbon dioxide (CO₂) content. A pump facilitates gas flow through the device and the monitor. An outlet of the monitor is coupled to a second channel for conveying gases away. A valve controls passage of respiratory gas from the monitor via the second channel by connecting or disconnecting the flux to/from at least one volatile breathing compound detector, which monitors compound content. A control unit monitors CO₂ values and uses this as a signal to control the valve, enabling compound monitoring or bypass based on CO₂ content.

IPC Classes  ?

  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/083 - Measuring rate of metabolism by using breath test, e.g. measuring rate of oxygen consumption
  • A61B 5/097 - Devices for facilitating collection of breath or for directing breath into or through measuring devices
  • A61M 16/08 - BellowsConnecting tubes

42.

SENSOR DEVICE FOR VOLUMETRIC CAPNOGRAPHY

      
Application Number US2025036322
Publication Number 2026/015363
Status In Force
Filing Date 2025-07-02
Publication Date 2026-01-15
Owner MASIMO CORPORATION (USA)
Inventor Danwihl, Björn

Abstract

Disclosed herein is a sensor device for volumetric capnography. The sensor device is coupled to an adapter comprising a housing that encloses a measurement volume. The adapter is configured for gas flow along a first length axis, which aligns with a second length axis of the sensor device. The device includes an IR light source and an IR light detector, positioned on opposite sides of the housing. The IR light source emits IR light toward the detector across the measurement volume. The sensor device also includes a first ultrasonic transceiver in contact with the adapter and configured to emit ultrasound centered at a first position along the second length axis, directed partly along the axis and partly transversely. A second ultrasonic transceiver, also in contact with the adapter, emits ultrasound centered at a second position along the second length axis, directed partly opposite to the first direction and partly transversely.

IPC Classes  ?

  • A61B 5/083 - Measuring rate of metabolism by using breath test, e.g. measuring rate of oxygen consumption
  • A61B 5/097 - Devices for facilitating collection of breath or for directing breath into or through measuring devices

43.

SYSTEM AND METHODS FOR CONTINUOUSLY MONITORING A CONCENTRATION OF VOLATILE BREATHING COMPOUNDS

      
Application Number 19258030
Status Pending
Filing Date 2025-07-02
First Publication Date 2026-01-15
Owner Masimo Corporation (USA)
Inventor
  • Fernkvist, Per
  • Gatty, Hithesh Kumar

Abstract

Disclosed herein are systems and methods for monitoring at least one volatile breathing compound in respiratory gases of patients. A device includes a patient respiratory gas interface coupled via a connector to a gas sampling line. The line includes a first channel for conducting a predetermined flux of respiratory gases from the interface to an inlet of a sidestream gas monitor, which monitors carbon dioxide (CO2) content. A pump facilitates gas flow through the device and the monitor. An outlet of the monitor is coupled to a second channel for conveying gases away. A valve controls passage of respiratory gas from the monitor via the second channel by connecting or disconnecting the flux to/from at least one volatile breathing compound detector, which monitors compound content. A control unit monitors CO2 values and uses this as a signal to control the valve, enabling compound monitoring or bypass based on CO2 content.

IPC Classes  ?

  • A61M 16/00 - Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators Tracheal tubes
  • A61M 16/10 - Preparation of respiratory gases or vapours
  • A61M 16/12 - Preparation of respiratory gases or vapours by mixing different gases
  • G01N 27/30 - Electrodes, e.g. test electrodesHalf-cells
  • G01N 27/413 - Concentration cells using liquid electrolytes

44.

LOCALIZED PROJECTION OF AUDIBLE NOISES IN MEDICAL SETTINGS

      
Application Number 19265766
Status Pending
Filing Date 2025-07-10
First Publication Date 2026-01-08
Owner Masimo Corporation (USA)
Inventor
  • Muhsin, Bilal
  • Al-Ali, Ammar

Abstract

A localized sound projection system can coordinate the sounds of speakers to simulate the placement of an auditory cue in a 3D space. The system can include a plurality of speakers configured to output auditory signals and a sound localization controller configured to control the plurality of speakers to coordinate the auditory signals to simulate an origination location of a patient alarm. The sound localization controller can determine adjusted auditory signals and control a plurality of speakers to output the plurality of adjusted auditory signals. A method for dynamically controlling speaker settings in a medical environment can include determining volume settings corresponding to a speaker, monitoring a level of ambient noise corresponding to a room of a patient, controlling the volume settings of the speaker to reduce or increase a sound level output of a speaker.

IPC Classes  ?

  • G08B 3/10 - Audible signalling systemsAudible personal calling systems using electric transmissionAudible signalling systemsAudible personal calling systems using electromagnetic transmission
  • G06F 3/16 - Sound inputSound output
  • G08B 21/04 - Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
  • H04R 1/40 - Arrangements for obtaining desired frequency or directional characteristics for obtaining desired directional characteristic only by combining a number of identical transducers
  • H04R 3/00 - Circuits for transducers
  • H04R 3/04 - Circuits for transducers for correcting frequency response
  • H04R 3/12 - Circuits for transducers for distributing signals to two or more loudspeakers
  • H04R 27/00 - Public address systems
  • H04R 29/00 - Monitoring arrangementsTesting arrangements

45.

POGO PIN CONNECTOR

      
Application Number 19254847
Status Pending
Filing Date 2025-06-30
First Publication Date 2025-12-25
Owner Masimo Corporation (USA)
Inventor
  • Scruggs, Stephen
  • Al-Ali, Ammar
  • Schmidt, John
  • Abdul-Hafiz, Yassir Kamel
  • Triman, Benjamin C.
  • Macneish, Iii, William Jack

Abstract

Various connector and sensor assemblies are described. In some embodiments, the connector and sensor assembly comprises a connector and a sensor assembly. The connector can have an opening that has a first surface and second surface that are opposite each other. The connector can have a plurality of retractable electrical connectors that extend from the first surface and a lock structure that is located on the second surface. The sensor assembly is comprised of a body portion and a proximal end. The proximal end has a top side and a bottom side. The top side includes a plurality of electrical contacts that is configured to interact with the plurality of retractable electrical connectors. The bottom side includes a key structure that is configured to interact with the lock structure in the connector.

IPC Classes  ?

  • H01R 24/62 - Sliding engagements with one side only, e.g. modular jack coupling devices
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • H01R 12/71 - Coupling devices for rigid printing circuits or like structures
  • H01R 12/72 - Coupling devices for rigid printing circuits or like structures coupling with the edge of the rigid printed circuits or like structures
  • H01R 13/24 - Contacts for co-operating by abutting resilientContacts for co-operating by abutting resiliently mounted
  • H01R 13/627 - Snap-action fastening
  • H01R 13/64 - Means for preventing, inhibiting or avoiding incorrect coupling
  • H01R 13/641 - Means for preventing, inhibiting or avoiding incorrect coupling by indicating incorrect couplingMeans for preventing, inhibiting or avoiding incorrect coupling by indicating correct or full engagement
  • H01R 13/648 - Protective earth or shield arrangements on coupling devices
  • H01R 13/652 - Protective earth or shield arrangements on coupling devices with earth pin, blade or socket

46.

WEARABLE PHYSIOLOGICAL MONITORING DEVICES

      
Application Number 19247926
Status Pending
Filing Date 2025-06-24
First Publication Date 2025-12-18
Owner Masimo Corporation (USA)
Inventor
  • Barker, Nicholas Evan
  • Muhsin, Bilal
  • Kiani, Massi Joe E.

Abstract

A wearable device including at least one sensor configured to sense a physiological parameter of a user. The wearable device including a base housing and a removable housing attachable to the base housing. The base housing and the removable housing portions each including a battery and an electronic subsystem in communication with each other. The battery of the removable housing portion charges the battery of the base housing portion when the removable housing portion is attached to the base housing portion. A second embodiment includes two or more fitness trackers each having an enclosure. The enclosures of the two or more fitness trackers having complimentary shapes that form a unified enclosure when the enclosures are placed adjacently. In a third embodiment, a wearable device includes a first screen display and a second screen display. The second screen display is transparent in at least one operational mode of the wearable device.

IPC Classes  ?

  • H02J 50/10 - Circuit arrangements or systems for wireless supply or distribution of electric power using inductive coupling
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/11 - Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb
  • H02J 7/00 - Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
  • H02J 7/34 - Parallel operation in networks using both storage and other DC sources, e.g. providing buffering

47.

Electrical stimulation device

      
Application Number 29960608
Grant Number D1106466
Status In Force
Filing Date 2024-08-30
First Publication Date 2025-12-16
Grant Date 2025-12-16
Owner Masimo Corporation (USA)
Inventor
  • Avendaño, Alberto
  • Dejong, Chad A.
  • Kim, Jinwoo
  • Al-Ali, Ammar

48.

ROOT CLARITY

      
Serial Number 99544669
Status Pending
Filing Date 2025-12-12
Owner Masimo Corporation (USA)
NICE Classes  ? 10 - Medical apparatus and instruments

Goods & Services

Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties;; Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit;; Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software using machine learning for applying computational methods, for use therewith, sold as a unit;; Medical apparatus and instruments for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit;; Wearable monitors used to measure biometric data for medical use; Sensors for medical use to be worn by a human to gather human biometric data and also including recorded software sold as a unit

49.

ROOT CLARITY

      
Serial Number 99544679
Status Pending
Filing Date 2025-12-12
Owner Masimo Corporation (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Computer hardware for displaying, measuring, and uploading to a worldwide computer network information including activity level, heart rate, blood pressure, respiration, breathing, and blood oxygen levels;; Computer hardware for collecting data from medical and health devices;; Computer hardware for transferring medical and health data to data management systems and electronic medical records;; Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness;; Downloadable computer software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness;; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties;; Downloadable computer software for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online non-downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness;; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness;; Providing on-line non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness;; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness;; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness;; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties;; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, respiration, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties

50.

REGIONAL OXIMETRY SIGNAL PROCESSOR

      
Application Number 19232633
Status Pending
Filing Date 2025-06-09
First Publication Date 2025-11-27
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Dalke, David
  • Kinast, Eric Karl
  • Weber, Walter M.
  • Song, Yuying
  • Kashif, Faisal
  • Ghoreyshi, Atiyeh
  • Forrest, Kevin

Abstract

A regional oximetry system comprises a pod having a pod housing defining a sensor end and an opposite monitor end. A dual sensor connector is in electrical communication with the sensor end of the pod housing. A monitor connector is in electrical communication with the monitor end of the pod housing. An analog board is disposed within the pod housing and is in electrical communications with the dual sensor connector. The analog board receives and digitizes sensor signals from at least one optical sensor plugged into the dual sensor connector. A digital board is disposed within the pod housing and in electrical communications with the analog board and the monitor connector. A digital signal processor (DSP) is mounted on the digital board and implements a regional oximetry signal processor so as to receive digitized sensor signals from the analog board, derive regional oximetry parameters from the digitized sensor signals and communicate the regional oximetry parameters to the monitor connector for display on an attached monitor.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters

51.

REGIONAL OXIMETRY POD

      
Application Number 19233998
Status Pending
Filing Date 2025-06-10
First Publication Date 2025-11-27
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Forrest, Kevin
  • Dalke, David
  • Weber, Walter M.

Abstract

A regional oximetry pod drives optical emitters on regional oximetry sensors and receives the corresponding detector signals in response. The sensor pod has a dual sensor connector configured to physically attach and electrically connect one or two regional oximetry sensors. The pod housing has a first housing end and a second housing end. The dual sensor connector is disposed proximate the first housing end. The housing at least partially encloses the dual sensor connector. A monitor connector is disposed proximate a second housing end. An analog board is disposed within the pod housing and is in communications with the dual sensor connector. A digital board is disposed within the pod housing in communications with the monitor connector.

IPC Classes  ?

  • A61B 5/145 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • H01R 13/52 - Dustproof, splashproof, drip-proof, waterproof, or flameproof cases

52.

Systems and methods for assessment of placement of a detector of a physiological monitoring device

      
Application Number 17450783
Grant Number 12478293
Status In Force
Filing Date 2021-10-13
First Publication Date 2025-11-25
Grant Date 2025-11-25
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Devlin, Sean

Abstract

A non-invasive physiological sensor system implemented as a smart watch or other wearable device includes an emitter for emitting light and a detector for collecting light after the light interacts with a tissue of a wearer. The system can measure light intensity at one or more radial distances to estimate attenuation parameter values that can be used to correct physiological parameter bias across subjects. In addition or alternatively, the system can determine whether a detector is positioned sufficiently proximate to an obstructing tissue (for example, an artery or vein) so as to cause inaccurate measurements by the detector.

IPC Classes  ?

  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/024 - Measuring pulse rate or heart rate

53.

CURB-TO-CURB

      
Serial Number 99503581
Status Pending
Filing Date 2025-11-18
Owner MASIMO CORPORATION (USA)
NICE Classes  ? 10 - Medical apparatus and instruments

Goods & Services

Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Medical devices, namely, patient monitors and patient sensors for monitoring and measuring blood properties and respiratory events; Sensors for medical use to be worn by a human to gather human biometric data and also including recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit

54.

Holder

      
Application Number 29899036
Grant Number D1102622
Status In Force
Filing Date 2023-08-03
First Publication Date 2025-11-18
Grant Date 2025-11-18
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Dejong, Chad A.
  • Lim, Hee Seung
  • Pike, Austin Kretz

55.

CURB-TO-CURB

      
Serial Number 99503587
Status Pending
Filing Date 2025-11-18
Owner MASIMO CORPORATION (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Recorded computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Downloadable software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Recorded software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Computer hardware; Downloadable computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Recorded computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), downloadable, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online non-downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing on-line non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties

56.

HEALTH MONITORING SYSTEM FOR LIMITING THE SPREAD OF AN INFECTION

      
Application Number 19273853
Status Pending
Filing Date 2025-07-18
First Publication Date 2025-11-13
Owner Masimo Corporation (USA)
Inventor
  • Novak, Jr., Jerome J.
  • Ahmed, Omar
  • Michalopoulos, Kostantinos
  • Al-Ali, Ammar

Abstract

A system for remotely monitoring and managing health statuses of a plurality of users includes software instructions storable on a memory device usable by a computing device, the software instructions causing a hardware processor of the computing device to receive a plurality of sets of health-related information from a plurality of mobile computing devices of a plurality of users. The health-related information includes physiological information derived from wearable devices of the users indicative of an onset of symptoms associated with an infection, contact tracing data, and diagnosis data. The hardware processor determines exposure levels based on at least the contact tracing data, and determines user-specific risk states based on physiological information, diagnosis data, and exposure levels.

IPC Classes  ?

  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/026 - Measuring blood flow
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/145 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • G06F 3/04842 - Selection of displayed objects or displayed text elements
  • G06F 9/451 - Execution arrangements for user interfaces
  • G16H 10/60 - ICT specially adapted for the handling or processing of patient-related medical or healthcare data for patient-specific data, e.g. for electronic patient records
  • G16H 15/00 - ICT specially adapted for medical reports, e.g. generation or transmission thereof
  • G16H 40/20 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms
  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
  • G16H 50/20 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for computer-aided diagnosis, e.g. based on medical expert systems
  • G16H 50/30 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for calculating health indicesICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for individual health risk assessment
  • G16H 50/70 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for mining of medical data, e.g. analysing previous cases of other patients
  • G16H 50/80 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for detecting, monitoring or modelling epidemics or pandemics, e.g. flu
  • H04B 17/318 - Received signal strength
  • H04W 4/021 - Services related to particular areas, e.g. point of interest [POI] services, venue services or geofences

57.

EAR WORN DEVICE AND CASE

      
Application Number 19197701
Status Pending
Filing Date 2025-05-02
First Publication Date 2025-11-06
Owner Masimo Corporation (USA)
Inventor Al-Ali, Ammar

Abstract

A system, including: an ear worn device configured to provide audio to a user's ear; a switch configured to receive physical contact from the user and, in response, alter an activation state of the switch; and a case configured to receive the ear worn device when not in use, wherein the case includes an electromagnet configured to magnetically attract the ear worn device, wherein changing the activation state of the switch causes the electromagnet to reduce attraction to the ear worn device to allow the user to more easily remove the ear worn device from the case.

IPC Classes  ?

58.

UNIVERSAL MEDICAL SYSTEM

      
Application Number 19205530
Status Pending
Filing Date 2025-05-12
First Publication Date 2025-11-06
Owner Masimo Corporation (USA)
Inventor Kiani, Massi Joe E.

Abstract

A system for operating third party proprietary software on a medical monitoring device operating native proprietary software and a system for obtaining compatible third party proprietary software for operation on the monitoring device.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • G16H 40/40 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the management of medical equipment or devices, e.g. scheduling maintenance or upgrades
  • G16H 40/63 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation
  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation

59.

PATIENT MONITORING SYSTEMS, DEVICES, AND METHODS

      
Application Number 19006101
Status Pending
Filing Date 2024-12-30
First Publication Date 2025-10-30
Owner MASIMO CORPORATION (USA)
Inventor
  • Telfort, Valery G.
  • Perea, Philip
  • Novak, Jerome
  • Usman, Mohammad
  • Al-Ali, Ammar

Abstract

Various patient monitoring systems, devices, and methods are disclosed for monitoring physiological parameters of a patient. A noninvasive blood pressure monitor can include an inflatable cuff, a pressure transducer, an air pump, and a plurality of air paths connecting the inflatable cuff, the pressure transducer, and the air pump. The monitor can also include an acoustic filter provided along at least one of the air paths. In some cases, the monitor can include first and second air pumps, as well as a processor to independently control operating characteristics of the air pumps. The processor can also control the air pumps so as to provide a first inflation rate for the inflatable cuff during a non-measurement portion of an inflation phase and a second, higher inflation rate during a measurement portion of the inflation phase.

IPC Classes  ?

  • A61B 5/282 - Holders for multiple electrodes
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/022 - Measuring pressure in heart or blood vessels by applying pressure to close blood vessels, e.g. against the skinOphthaldynamometers
  • A61B 5/0235 - Valves specially adapted therefor
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/025 - Measuring pulse rate or heart rate using sensing means generating electric signals within occluders, e.g. responsive to Korotkoff sounds
  • A61B 5/11 - Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/259 - Means for maintaining electrode contact with the body using adhesive means, e.g. adhesive pads or tapes using conductive adhesive means, e.g. gels
  • A61B 5/30 - Input circuits therefor
  • A61B 5/332 - Portable devices specially adapted therefor
  • A61B 5/339 - Displays specially adapted therefor
  • F04B 45/04 - Pumps or pumping installations having flexible working members and specially adapted for elastic fluids having plate-like flexible members, e.g. diaphragms
  • F04B 53/00 - Component parts, details or accessories not provided for in, or of interest apart from, groups or
  • H02J 7/00 - Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries

60.

ELECTRONIC DEVICE NETWORK WITHIN AN ENVIRONMENT

      
Application Number 19180882
Status Pending
Filing Date 2025-04-16
First Publication Date 2025-10-23
Owner MASIMO CORPORATION (USA)
Inventor
  • Kiani, Massi Joe E.
  • King, Kristian
  • Stead, Brendon

Abstract

A device environment can include a plurality of devices, including an audio device, in communication over a network. An audio device (such as a soundbar) can comprise a speaker, a camera, and other sensors. The audio device can receive information from other devices in the environment including image data from other cameras and physiological data from wearable devices, etc. The audio device can monitor and control aspects of the environment. The audio device can provide information to the user including audible notifications, and can monitor the user including the user's position or physiological condition, alone or in combination with other devices in the environment.

IPC Classes  ?

  • G08B 21/04 - Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
  • G06V 20/52 - Surveillance or monitoring of activities, e.g. for recognising suspicious objects
  • G08B 3/10 - Audible signalling systemsAudible personal calling systems using electric transmissionAudible signalling systemsAudible personal calling systems using electromagnetic transmission

61.

REGIONAL OXIMETRY USER INTERFACE

      
Application Number 19199838
Status Pending
Filing Date 2025-05-06
First Publication Date 2025-10-23
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Indorf, Keith Ward
  • Kashif, Faisal

Abstract

A regional oximetry system has a display and at least one processor causing a plurality of views to be displayed on the display, each configured to occupy at least a portion of the display. The views are adapted to present data responsive to at least one physiological signal. A first sensor port is configured to receive at least a first physiological signal representative of a regional tissue oxygenation level, and a second sensor port is configured to receive at least a second physiological signal representative of an arterial oxygen saturation level. One view presents a first trend graph of the first physiological signal and a second trend graph of the second physiological signal. An area between the first trend graph and the second trend graph can include a differential analysis of regional-to-central oxygen saturation.

IPC Classes  ?

  • A61B 5/145 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • H01R 13/52 - Dustproof, splashproof, drip-proof, waterproof, or flameproof cases

62.

MODULAR MULTI-PARAMETER PATIENT MONITORING DEVICE

      
Application Number 19199873
Status Pending
Filing Date 2025-05-06
First Publication Date 2025-10-23
Owner Masimo Corporation (USA)
Inventor
  • Barker, Nicholas Evan
  • Dejong, Chad A.
  • Dotson, Kirby Clark
  • Al-Ali, Ammar
  • Muhsin, Bilal
  • Hwang, Sujin
  • Kiani, Massi Joe E.

Abstract

A multi-parameter patient monitoring device rack can dock a plurality of patient monitor modules and can communicate with a separate display unit. A signal processing unit can be incorporated into the device rack. A graphics processing unit can be attached to the display unit. The device rack and the graphic display unit can have improved heat dissipation and drip-proof features. The multi-parameter patient monitoring device rack can provide interchangeability and versatility to a multi-parameter patient monitoring system by allowing use of different display units and monitoring of different combinations of parameters. A dual-use patient monitor module can have its own display unit configured for displaying one or more parameters when used as a stand-alone device, and can be docked into the device rack when a handle on the module is folded down.

IPC Classes  ?

  • G06F 1/16 - Constructional details or arrangements
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • G06F 1/18 - Packaging or power distribution
  • G06F 1/20 - Cooling means
  • G06T 1/20 - Processor architecturesProcessor configuration, e.g. pipelining
  • G16H 30/40 - ICT specially adapted for the handling or processing of medical images for processing medical images, e.g. editing
  • G16H 40/63 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation
  • H05K 5/00 - Casings, cabinets or drawers for electric apparatus
  • H05K 5/02 - Casings, cabinets or drawers for electric apparatus Details
  • H05K 7/18 - Construction of rack or frame
  • H05K 7/20 - Modifications to facilitate cooling, ventilating, or heating

63.

WEARABLE DEVICE FOR NONINVASIVE BODY TEMPERATURE MEASUREMENT

      
Application Number 19245725
Status Pending
Filing Date 2025-06-23
First Publication Date 2025-10-23
Owner Masimo Corporation (USA)
Inventor
  • Forrest, Kevin
  • Al-Ali, Ammar
  • Telfort, Valery G.

Abstract

A wearable device for a noninvasive measurement of a user's body temperature can include a housing, a first substrate coupled to the housing and having an opening, a second substrate coupled to the first substrate and configured to secure to skin of a user, a mounting frame enclosed by the housing and the first substrate, a circuit board secured by the mounting frame, a temperature sensor coupled to the circuit board and configured to determine a body temperature of the user, and a thermally conductive probe. The thermally conductive probe is secured by the mounting frame and positioned proximate to the first temperature sensor. The thermally conductive probe extends at least partially through the opening in the first substrate and transmits a thermal energy from a portion of the user's skin to the first temperature sensor.

IPC Classes  ?

  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/026 - Measuring blood flow
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/145 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • G06F 3/04842 - Selection of displayed objects or displayed text elements
  • G06F 9/451 - Execution arrangements for user interfaces
  • G16H 10/60 - ICT specially adapted for the handling or processing of patient-related medical or healthcare data for patient-specific data, e.g. for electronic patient records
  • G16H 15/00 - ICT specially adapted for medical reports, e.g. generation or transmission thereof
  • G16H 40/20 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms
  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
  • G16H 50/20 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for computer-aided diagnosis, e.g. based on medical expert systems
  • G16H 50/30 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for calculating health indicesICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for individual health risk assessment
  • G16H 50/70 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for mining of medical data, e.g. analysing previous cases of other patients
  • G16H 50/80 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for detecting, monitoring or modelling epidemics or pandemics, e.g. flu
  • H04B 17/318 - Received signal strength
  • H04W 4/021 - Services related to particular areas, e.g. point of interest [POI] services, venue services or geofences

64.

PHYSIOLOGICAL MONITORING DEVICES, SYSTEMS, AND METHODS FOR DATA INTEGRATION

      
Application Number 19174715
Status Pending
Filing Date 2025-04-09
First Publication Date 2025-10-16
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Pike, Austin Kretz
  • Priddell, Richard
  • Magers, Christopher Robert
  • Ahmed, Omar

Abstract

A system configured to facilitate monitoring a patient when the patient transitions between environments. The system can have an in-room display terminal configured to display indicia of a health of the patient for electronically monitoring the health of the patient within a healthcare environment. The system can receive, via the in-room display terminal, a request to initiate monitoring the patient with the in-room display terminal at the healthcare environment; access historical physiological data associated with the patient and generated by a home monitoring device before the patient enters the healthcare environment; access real-time physiological data associated with the patient and originating from a physiological monitoring device coupled to the patient within the healthcare environment; generate one or more physiological parameters from the real-time physiological data and the historical physiological data; and cause the in-room display terminal to display indicia of the one or more physiological parameters.

IPC Classes  ?

  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
  • G16H 15/00 - ICT specially adapted for medical reports, e.g. generation or transmission thereof
  • H04W 4/80 - Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
  • H04W 12/08 - Access security

65.

PHYSIOLOGICAL MONITORING DEVICES, SYSTEMS, AND METHODS FOR DATA INTEGRATION

      
Application Number 19174733
Status Pending
Filing Date 2025-04-09
First Publication Date 2025-10-16
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Pike, Austin Kretz
  • Priddell, Richard
  • Magers, Christopher Robert
  • Ahmed, Omar
  • Dejong, Chad A.
  • Scruggs, Stephen
  • Rey, Eduardo
  • Ambrosini, Mitchell Lloyd

Abstract

A wearable system can include an electronic device configured to measure one or more physiological parameters of a patient and a wearable device configured to operably position the electronic device. The electronic device can have at least one light emitter and at least one light detector and be configured to measure at least a pulse oximetry measurement. The wearable device can have a main body with a cavity configured to position the electronic device, a securement portion connected to the main body and configured to secure the main body to the patient, and storage component configured to store patient identification data associated with the patient. When the electronic device and the wearable device are secured to one another, the patient identification data can be transferred from the wearable device to the electronic device.

IPC Classes  ?

  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/117 - Identification of persons

66.

PHYSIOLOGICAL MONITORING SYSTEMS

      
Application Number US2025023949
Publication Number 2025/217327
Status In Force
Filing Date 2025-04-09
Publication Date 2025-10-16
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Pike, Austin, Kretz
  • Priddell, Richard
  • Magers, Christopher, Robert
  • Ahmed, Omar
  • Dejong, Chad, A.
  • Scruggs, Stephen
  • Rey, Eduardo
  • Ambrosini, Mitchell, Lloyd

Abstract

A wearable system can include an electronic device configured to measure one or more physiological parameters of a patient and a wearable device configured to operably position the electronic device. The electronic device can have at least one light emitter and at least one light detector and be configured to measure at least a pulse oximetry measurement. The wearable device can have a main body with a cavity configured to position the electronic device, a securement portion connected to the main body and configured to secure the main body to the patient, and storage component configured to store patient identification data associated with the patient. When the electronic device and the wearable device are secured to one another, the patient identification data can be transferred from the wearable device to the electronic device.

IPC Classes  ?

  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/024 - Measuring pulse rate or heart rate

67.

PHYSIOLOGICAL MONITORING DEVICES, SYSTEMS, AND METHODS FOR DATA INTEGRATION

      
Application Number 19174799
Status Pending
Filing Date 2025-04-09
First Publication Date 2025-10-16
Owner Masimo Corporation (USA)
Inventor
  • Rey, Eduardo
  • Bajlozi, Joani
  • Al-Ali, Ammar
  • Scruggs, Stephen
  • Dejong, Chad A.

Abstract

An electronic device can be configured to be secured to a subject and measure one or more physiological parameters of the subject. The electronic device may include a housing, including a bottom portion, a top portion, a first side connected to the top portion along a first edge, a second side connected to the top portion along a second edge, a third side connected to the top portion along a third edge, a fourth side connected to the top portion along a fourth edge. The electronic device may include one or more physiological sensors for measuring the one or more physiological parameters. The electronic device may include an antenna configured to allow the electronic device to wirelessly communicate with one or more separate devices. The antenna may extend along an interior surface at least partially along each of the first edge, second edge, third edge, and fourth edge.

IPC Classes  ?

  • H01Q 5/48 - Combinations of two or more dipole type antennas
  • H01Q 1/27 - Adaptation for use in or on movable bodies
  • H01Q 5/307 - Individual or coupled radiating elements, each element being fed in an unspecified way

68.

Miscellaneous Design

      
Serial Number 99435776
Status Pending
Filing Date 2025-10-09
Owner MASIMO CORPORATION (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 10 - Medical apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Recorded computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Downloadable software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Recorded software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Circuit boards; Computer hardware; Downloadable computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Recorded computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), downloadable, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties, and recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties, and recorded software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties, and recorded software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Medical devices, namely, patient monitors and patient sensors for monitoring and measuring blood properties and respiratory events; Sensors for medical use to be worn by a human to gather human biometric data and also including recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online nondownloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing online non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties

69.

WEARABLE DEVICE WITH PHYSIOLOGICAL PARAMETERS MONITORING

      
Application Number 19079292
Status Pending
Filing Date 2025-03-13
First Publication Date 2025-10-09
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Scruggs, Stephen
  • Priddell, Richard
  • Weber, Walter M.
  • Lee, Sung Uk
  • Majmudar, Anmol B.
  • Devlin, Sean

Abstract

Various wearable health monitoring devices are described herein. Some implementations include a housing including a front side and a back side configured to face tissue of the wearer when the device is worn; and a sensor assembly positioned by the back side of the housing. The sensor assembly can include emitters and detectors positioned on a surface of a substrate and a frame positioned adjacent to the surface of the substrate and configured to inhibit transmission of optical radiation through the frame. The frame can comprise an emitter chamber housing the emitters; and one or more detector chambers housing the one or more detectors.

IPC Classes  ?

  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

70.

Miscellaneous Design

      
Serial Number 99435779
Status Pending
Filing Date 2025-10-09
Owner MASIMO CORPORATION (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 10 - Medical apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Recorded computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Downloadable software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Recorded software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Circuit boards; Computer hardware; Downloadable computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Recorded computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), downloadable, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties, and recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties, and recorded software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties, and recorded software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Medical devices, namely, patient monitors and patient sensors for monitoring and measuring blood properties and respiratory events; Sensors for medical use to be worn by a human to gather human biometric data and also including recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online nondownloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing online non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, motion, and blood properties

71.

SYSTEM FOR DISPLAYING AND CONTROLLING MEDICAL MONITORING DATA

      
Application Number 19232507
Status Pending
Filing Date 2025-06-09
First Publication Date 2025-10-02
Owner Masimo Corporation (USA)
Inventor
  • Muhsin, Bilal
  • Barker, Nicholas Evan

Abstract

The medical network interface can transmit physiological parameters measured by a standalone noninvasive physiological sensor to a patient monitor. The medical network interface can include ports, at least one of which can receive a wireless dongle; a network interface controller to implement a wireless communications stack; and a processor to: receive a data packet from the sensor in response to pairing between the sensor and the medical network interface via the wireless dongle, the data packet having a first device ID and a patient ID; process the data packet to link a second device ID associated with the medical network interface to the first device ID and the patient ID; identify the patient monitor connected to the medical network interface; and communicate the data packet having the first device ID, the patient ID, and the second device ID to the patient monitor.

IPC Classes  ?

  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • G06F 13/38 - Information transfer, e.g. on bus
  • G06F 13/40 - Bus structure
  • G06F 13/42 - Bus transfer protocol, e.g. handshakeSynchronisation
  • G16H 10/60 - ICT specially adapted for the handling or processing of patient-related medical or healthcare data for patient-specific data, e.g. for electronic patient records
  • G16H 40/40 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the management of medical equipment or devices, e.g. scheduling maintenance or upgrades
  • G16H 40/63 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation
  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation

72.

CONTINUOUS NONINVASIVE BLOOD PRESSURE MEASUREMENT

      
Application Number US2025021885
Publication Number 2025/207964
Status In Force
Filing Date 2025-03-27
Publication Date 2025-10-02
Owner MASIMO CORPORATION (USA)
Inventor
  • Ha, Taewoo
  • Rumbaugh, Benjamin
  • Dalke, David
  • Telfort, Valery G.

Abstract

A blood pressure monitoring system, comprising: an exciter configured to produce an acoustic signal, the exciter being provided on a first substrate portion; a detector spaced apart from the exciter, the detector being configured to detect the acoustic signal and to produce an electrical output signal, the detector being provided on a second substrate portion that is mechanically or acoustically decoupled from the first substrate portion, wherein the detector comprises at least four detectors; and a processor configured to determine a blood pressure measurement from the electrical output signal.

IPC Classes  ?

  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 8/04 - Measuring blood pressure
  • A61B 8/00 - Diagnosis using ultrasonic, sonic or infrasonic waves
  • A61B 8/08 - Clinical applications

73.

CONTINUOUS NONINVASIVE BLOOD PRESSURE MEASUREMENT

      
Application Number 19092862
Status Pending
Filing Date 2025-03-27
First Publication Date 2025-10-02
Owner Masimo Corporation (USA)
Inventor
  • Ha, Taewoo
  • Rumbaugh, Benjamin
  • Dalke, David
  • Telfort, Valery G.

Abstract

A blood pressure monitoring system, comprising: an exciter configured to produce an acoustic signal, the exciter being provided on a first substrate portion; a detector spaced apart from the exciter, the detector being configured to detect the acoustic signal and to produce an electrical output signal, the detector being provided on a second substrate portion that is mechanically or acoustically decoupled from the first substrate portion, wherein the detector comprises at least four detectors; and a processor configured to determine a blood pressure measurement from the electrical output signal.

IPC Classes  ?

  • A61B 8/04 - Measuring blood pressure
  • A61B 8/00 - Diagnosis using ultrasonic, sonic or infrasonic waves
  • H02K 33/18 - Motors with reciprocating, oscillating or vibrating magnet, armature or coil system with coil systems moving upon intermittent or reversed energisation thereof by interaction with a fixed field system, e.g. permanent magnets

74.

SMARTSEDLINE

      
Serial Number 99423309
Status Pending
Filing Date 2025-10-01
Owner MASIMO CORPORATION (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 10 - Medical apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Recorded computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties; Downloadable software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties; Recorded software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties; Circuit boards; Computer hardware; Downloadable computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Recorded computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), downloadable, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties, and recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties, and recorded software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties, and recorded software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Medical devices, namely, patient monitors and patient sensors for monitoring and measuring blood properties and respiratory events; Sensors for medical use to be worn by a human to gather human biometric data and also including recorded software sold as a unit Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online non-downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing on-line non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, brain function, vital signs, heart rate, blood pressure, breathing, physical motion of humans, and blood properties

75.

SMARTSET

      
Serial Number 99423319
Status Pending
Filing Date 2025-10-01
Owner MASIMO CORPORATION (USA)
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 10 - Medical apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Downloadable computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Recorded computer programs using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), recorded, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Recorded software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Circuit boards; Computer hardware; Downloadable computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Recorded computer firmware for operating system programs in the fields of medical technology and monitoring a person's health and wellness; Software as a Medical Device (SaMD), downloadable, for use as a medical instrument for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software using machine learning for applying computational methods, for use therewith, sold as a unit; Medical apparatus and instruments for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties, and recorded software using artificial intelligence (AI) for recording, analyzing, processing and transmitting medical data, for use therewith, sold as a unit; Wearable monitors used to measure biometric data for medical use; Medical devices, namely, patient monitors and patient sensors for monitoring and measuring blood properties and respiratory events; Sensors for medical use to be worn by a human to gather human biometric data and also including recorded software for recording and transmitting biometric data, sold as a unit Providing online non-downloadable software using artificial intelligence (AI) for machine learning; Software as a service (SAAS) services featuring machine learning software for enabling computers to learn to perform tasks autonomously; Providing online non-downloadable software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using machine learning for applying computational methods in the fields of medical technology and monitoring a person's health and wellness; Providing on-line non-downloadable software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Software as a service (SAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Artificial intelligence as a service (AIAAS) services featuring software using artificial intelligence (AI) for use in software development and machine learning in the fields of medical technology and monitoring a person's health and wellness; Providing temporary use of on-line non-downloadable software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties; Software as a service (SAAS) services featuring software for monitoring blood oxygen levels, brain function, vital signs, medical or health conditions, heart rate, blood pressure, breathing, motion, and blood properties

76.

Set of straps for a wearable device

      
Application Number 29865336
Grant Number D1095288
Status In Force
Filing Date 2022-07-20
First Publication Date 2025-09-30
Grant Date 2025-09-30
Owner Masimo Corporation (USA)
Inventor Lim, Hee Seung

77.

Caregiver notification device

      
Application Number 29866707
Grant Number D1095483
Status In Force
Filing Date 2022-09-23
First Publication Date 2025-09-30
Grant Date 2025-09-30
Owner Masimo Corporation (USA)
Inventor
  • Dejong, Chad A.
  • Egge, Steven

78.

MONITORING OF PHYSIOLOGICAL PARAMETERS WITH WEARABLE DEVICE

      
Application Number US2025020967
Publication Number 2025/199468
Status In Force
Filing Date 2025-03-21
Publication Date 2025-09-25
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Michalopoulos, Konstantinos
  • Novak, Jr., Jerome J.

Abstract

A system for continuous and intermittent monitoring of physiological parameters comprises at least one sensor coupled to a wearable device configured to measure physiological parameters of a user; a non-transitory data store storing data collected from the at least one sensor and computer-executable instructions; and a processor in communication with the at least one sensor and the non-transitory data store, wherein the computer-executable instructions, when executed by the processor, configure the processor to: continuously measure the physiological parameters by sampling the at least one sensor at a sampling rate to obtain repeated measurements at series of intervals configured to capture important physiological events; compare measurements of the physiological parameters to a threshold to determine a likelihood of a physiological event; and alert the user when an occurrence of the physiological event is likely.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/024 - Measuring pulse rate or heart rate

79.

MONITORING OF PHYSIOLOGICAL PARAMETERS WITH WEARABLE DEVICE

      
Application Number 19087193
Status Pending
Filing Date 2025-03-21
First Publication Date 2025-09-25
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Michalopoulos, Konstantinos
  • Novak, Jr., Jerome J.

Abstract

A system is disclosed for continuous and intermittent monitoring of physiological parameters. The system comprises at least one sensor coupled to a wearable device configured to measure physiological parameters of a user; a non-transitory data store storing data collected from the at least one sensor and computer-executable instructions; and a processor in communication with the at least one sensor and the non-transitory data store, wherein the computer-executable instructions, when executed by the processor, configure the processor to: continuously measure the physiological parameters by sampling the at least one sensor at a sampling rate to obtain repeated measurements at series of intervals configured to capture important physiological events; compare measurements of the physiological parameters to a threshold to determine a likelihood of a physiological event; and alert the user when an occurrence of the physiological event is likely.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters

80.

Wearable device for physiological monitoring

      
Application Number 29876677
Grant Number D1094735
Status In Force
Filing Date 2023-05-25
First Publication Date 2025-09-23
Grant Date 2025-09-23
Owner Masimo Corporation (USA)
Inventor
  • Dejong, Chad A.
  • Al-Ali, Ammar
  • Hwang, Sujin

81.

WEARABLE DEVICE WITH PHYSIOLOGICAL PARAMETERS MONITORING

      
Application Number 19079257
Status Pending
Filing Date 2025-03-13
First Publication Date 2025-09-18
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Scruggs, Stephen

Abstract

Various wearable health monitoring devices are described herein. Some implementations include one or more emitter chamber covers injection molded out of a first material comprising transparent glass, one or more detector chamber covers injection molded out of a second material comprising transparent glass, and a light barrier construct injection molded out of a third material over the one or more emitter chamber covers and the one or more detector chamber covers. The third material may be opaque and can comprise glass and an optically absorbing pigment. Some implementations include a circuit board, emitter(s) mounted to the circuit board and arranged within the emitter chamber cover(s), and detector(s) mounted to the circuit board and arranged within the detector chamber cover(s). The circuit board, emitter(s), detector(s), emitter chamber cover(s), and detector chamber cover(s) can form part of a sensor assembly connected to a housing of the wearable health monitoring devices.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

82.

REMOTE PATIENT MANAGEMENT AND MONITORING SYSTEMS AND METHODS

      
Application Number 19174212
Status Pending
Filing Date 2025-04-09
First Publication Date 2025-09-18
Owner Masimo Corporation (USA)
Inventor
  • Ahmed, Omar
  • Barker, Nicholas Evan
  • Indorf, Keith Ward
  • Cha, Sungwhan
  • Frey, Sebastian T.
  • Cho, Hyejin

Abstract

Systems and methods are provided for remote patient management and monitoring. The patient is monitored with a wireless sensor system connected to an application executing on a patient user computing device. The system continuously monitors physiological parameters, such as, but not limited to, blood oxygen saturation (SpO2), pulse rate, perfusion index, pleth variability index, and/or respiration rate from the photoplethysmograph. The system triggers alarms if the patient physiological data violates thresholds. Care providers review patient data and associated alarm(s) with graphical user interfaces.

IPC Classes  ?

  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/026 - Measuring blood flow
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/145 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • G06F 3/04842 - Selection of displayed objects or displayed text elements
  • G06F 9/451 - Execution arrangements for user interfaces
  • G16H 10/60 - ICT specially adapted for the handling or processing of patient-related medical or healthcare data for patient-specific data, e.g. for electronic patient records
  • G16H 15/00 - ICT specially adapted for medical reports, e.g. generation or transmission thereof
  • G16H 40/20 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms
  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
  • G16H 50/20 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for computer-aided diagnosis, e.g. based on medical expert systems
  • G16H 50/30 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for calculating health indicesICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for individual health risk assessment
  • G16H 50/70 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for mining of medical data, e.g. analysing previous cases of other patients
  • G16H 50/80 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for detecting, monitoring or modelling epidemics or pandemics, e.g. flu
  • H04B 17/318 - Received signal strength
  • H04W 4/021 - Services related to particular areas, e.g. point of interest [POI] services, venue services or geofences

83.

WEARABLE DEVICE WITH PHYSIOLOGICAL PARAMETERS MONITORING

      
Application Number US2025019831
Publication Number 2025/193986
Status In Force
Filing Date 2025-03-13
Publication Date 2025-09-18
Owner MASIMO CORPORATION (USA)
Inventor
  • Scruggs, Stephen
  • Al-Ali, Ammar

Abstract

Various wearable health monitoring devices are described herein. Some implementations include one or more emitter chamber covers injection molded out of a first material comprising transparent glass, one or more detector chamber covers injection molded out of a second material comprising transparent glass, and a light barrier construct injection molded out of a third material over the one or more emitter chamber covers and the one or more detector chamber covers. The third material may be opaque and can comprise glass and an optically absorbing pigment. Some implementations include a circuit board, emitter(s) mounted to the circuit board and arranged within the emitter chamber cover(s), and detector(s) mounted to the circuit board and arranged within the detector chamber cover(s). The circuit board, emitter(s), detector(s), emitter chamber cover(s), and detector chamber cover(s) can form part of a sensor assembly connected to a housing of the wearable health monitoring devices.

IPC Classes  ?

  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

84.

Display screen or portion thereof with graphical user interface

      
Application Number 29909544
Grant Number D1093406
Status In Force
Filing Date 2023-08-07
First Publication Date 2025-09-16
Grant Date 2025-09-16
Owner Masimo Corporation (USA)
Inventor
  • Indorf, Keith Ward
  • Kapur, Prianjali
  • Garreffa, Lara
  • Bertagia, Manuela
  • Constant, Emma
  • Blanc Baudriller, Xavier

85.

WEARABLE DEVICE WITH PHYSIOLOGICAL MONITORING

      
Application Number 19211874
Status Pending
Filing Date 2025-05-19
First Publication Date 2025-09-11
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Scruggs, Stephen
  • Priddell, Richard

Abstract

An optical physiological sensor can be integrated into a wearable device and can comprise a frame defining a first emitter chamber housing a first group of emitters; a second emitter chamber housing a second group of emitters; and a plurality of detector chamber housing a plurality of detectors configured to detect optical radiation emitted from the first and second groups of emitters.

IPC Classes  ?

  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

86.

MONITORING A HEMODYNAMIC STATUS OF A PATIENT

      
Application Number 19060504
Status Pending
Filing Date 2025-02-21
First Publication Date 2025-09-11
Owner Masimo Corporation (USA)
Inventor Avendano, Alberto

Abstract

A system for monitoring hemodynamic status of a patient can include a transducer, an adapter and one or more monitor devices. The adapter may be in communication with the transducer and the one or more monitor devices. The adapter can be configured to receive and process data from the transducer such as unprocessed physiological data. The adapter can be configured to transmit data to the monitor device(s) such as processed and/or unprocessed physiological data. The adapter can be configured to generate, and transmit to the monitor devices(s), user interface data for rendering interactive graphical user interfaces to display information such as physiological information relating to a hemodynamic status of the patient. The adapter can be configured to receive and process, from the monitor device(s) user commands or instructions to control an operation of the system or its components.

IPC Classes  ?

  • A61B 5/029 - Measuring blood output from the heart, e.g. minute volume
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 50/20 - Holders specially adapted for surgical or diagnostic appliances or instruments
  • G16H 40/63 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation

87.

Band for an electronic device

      
Application Number 29911847
Grant Number D1092244
Status In Force
Filing Date 2023-09-08
First Publication Date 2025-09-09
Grant Date 2025-09-09
Owner Masimo Corporation (USA)
Inventor
  • Dejong, Chad A.
  • Hwang, Sujin
  • Al-Ali, Ammar

88.

ELECTRONIC DEVICE WITH IMPROVED PRIVACY

      
Application Number 19064496
Status Pending
Filing Date 2025-02-26
First Publication Date 2025-09-04
Owner Masimo Corporation (USA)
Inventor
  • Koo, Peter
  • Kiani, Massi Joe E.
  • Muhsin, Bilal
  • Priddell, Richard
  • Ahmed, Omar

Abstract

An electronic device can comprise physiological sensors that can generate sensor data, a device processor, an actuator, and a controller electrically connected with the device processor and the actuator. The controller can monitor the state of the actuator; communicate a notification signal to the device processor to cause the device processor to prepare for a privacy mode responsive to determining that the actuator is in a privacy state, delay implementing the privacy mode until one or more conditions have been satisfied to allow the device processor to prepare for the privacy mode pursuant to communicating the notification signal to the device processor; and implement the privacy mode to inhibit access to the sensor data responsive to satisfaction of the one or more conditions.

IPC Classes  ?

  • G06F 21/62 - Protecting access to data via a platform, e.g. using keys or access control rules

89.

MEDICAL MONITORING HUB

      
Application Number 19206524
Status Pending
Filing Date 2025-05-13
First Publication Date 2025-08-28
Owner Masimo Corporation (USA)
Inventor
  • Kiani, Massi Joe E.
  • Muhsin, Bilal
  • Al-Ali, Ammar
  • Sampath, Anand
  • Housel, Peter Scott
  • Kinast, Eric Karl

Abstract

The present disclosure includes a medical monitoring hub as the center of monitoring for a monitored patient. The hub includes configurable medical ports and serial ports for communicating with other medical devices in the patient's proximity. Moreover, the hub communicates with a portable patient monitor. The monitor, when docked with the hub provides display graphics different from when undocked, the display graphics including anatomical information. The hub assembles the often vast amount of electronic medical data, associates it with the monitored patient, and in some embodiments, communicates the data to the patient's medical records.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/08 - Measuring devices for evaluating the respiratory organs
  • A61B 5/145 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 7/00 - Instruments for auscultation
  • A61M 5/172 - Means for controlling media flow to the body or for metering media to the body, e.g. drip meters, counters electrical or electronic
  • A61M 16/00 - Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators Tracheal tubes
  • G06F 1/16 - Constructional details or arrangements
  • G06F 13/40 - Bus structure
  • G16H 10/60 - ICT specially adapted for the handling or processing of patient-related medical or healthcare data for patient-specific data, e.g. for electronic patient records
  • G16H 40/63 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation

90.

BLOOD PRESSURE MONITOR ASSEMBLY

      
Application Number 19196524
Status Pending
Filing Date 2025-05-01
First Publication Date 2025-08-14
Owner Masimo Corporation (USA)
Inventor
  • Al-Ali, Ammar
  • Telfort, Valery G.
  • Fullerton, Evan Thomas
  • Egge, Steven

Abstract

A blood pressure monitor configured to removably mount to a cuff in a substantially symmetrical position with respect to a width of the cuff can include a housing defining an interior, a first port, and a second port. The first port can: secure to a first prong of the cuff when the cuff is mounted in a first orientation; receive and secure to a second prong of the cuff when the cuff is mounted in a second orientation; and enable fluid communication between the interior and at least one of a first fluid passage within the first prong and a second fluid passage within the second prong. The second port can: secure to the second prong of the cuff when the cuff is mounted in the first orientation; and receive and secure to the first prong of the cuff when the cuff is mounted in the second orientation.

IPC Classes  ?

  • A61B 5/282 - Holders for multiple electrodes
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/021 - Measuring pressure in heart or blood vessels
  • A61B 5/022 - Measuring pressure in heart or blood vessels by applying pressure to close blood vessels, e.g. against the skinOphthaldynamometers
  • A61B 5/0235 - Valves specially adapted therefor
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/025 - Measuring pulse rate or heart rate using sensing means generating electric signals within occluders, e.g. responsive to Korotkoff sounds
  • A61B 5/11 - Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/259 - Means for maintaining electrode contact with the body using adhesive means, e.g. adhesive pads or tapes using conductive adhesive means, e.g. gels
  • A61B 5/30 - Input circuits therefor
  • A61B 5/332 - Portable devices specially adapted therefor
  • A61B 5/339 - Displays specially adapted therefor
  • F04B 45/04 - Pumps or pumping installations having flexible working members and specially adapted for elastic fluids having plate-like flexible members, e.g. diaphragms
  • F04B 53/00 - Component parts, details or accessories not provided for in, or of interest apart from, groups or
  • H02J 7/00 - Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries

91.

LOW NOISE INCUBATORS

      
Application Number 18930902
Status Pending
Filing Date 2024-10-29
First Publication Date 2025-08-14
Owner MASIMO CORPORATION (USA)
Inventor
  • Stead, Brendon
  • Wiggins, Daniel Corey

Abstract

An incubator can include a body, a bed supported by the body, and a canopy defining an interior chamber that includes the bed. The incubator can include any combination of various features configured to reduce sound energy inside the incubator. The incubator can include a passive radiator, a Helmholtz resonator, a meta material absorber, an active noise cancelation system, a vented door latch assembly, an acoustically permeable seal, a pressure relief valve, a lift mechanism that uses a belt drive, double paned canopy walls, a bin with insulating compliant elements, a manual pressure release valve, a pressure differential notification system, non-parallel or curved canopy walls, a mattress with reticulated foam, and/or an acoustic filter.

IPC Classes  ?

  • A61G 11/00 - Baby-incubatorsCouveuses
  • G10K 11/175 - Methods or devices for protecting against, or for damping, noise or other acoustic waves in general using interference effectsMasking sound

92.

Display screen or portion thereof with graphical user interface

      
Application Number 29774959
Grant Number D1085102
Status In Force
Filing Date 2021-03-19
First Publication Date 2025-07-22
Grant Date 2025-07-22
Owner Masimo Corporation (USA)
Inventor
  • Indorf, Keith Ward
  • Cho, Hyejin

93.

MACHINE LEARNING BASED MONITORING SYSTEM

      
Application Number 19028782
Status Pending
Filing Date 2025-01-17
First Publication Date 2025-07-17
Owner Masimo Corporation (USA)
Inventor
  • Muhsin, Bilal
  • Priddell, Richard
  • Telfort, Valery G.
  • Kokawa, Naoki
  • Al-Ali, Ammar
  • Usman, Mohammad

Abstract

Systems and methods are provided for machine learning based monitoring. Image data from a camera is received. On the hardware accelerator, a person detection model based on the image data is invoked. The person detection model outputs first classification result. Based on the first classification result, a person is detected. Second image data is received from the camera. In response to detecting the person, a fall detection model is invoked on the hardware accelerator based on the second image data. The fall detection model outputs a second classification result. A potential fall based on the second classification result is detected. An alert is provided in response to detecting the potential fall.

IPC Classes  ?

  • G08B 21/04 - Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
  • G06T 7/00 - Image analysis
  • G06T 7/70 - Determining position or orientation of objects or cameras
  • G06T 7/90 - Determination of colour characteristics
  • G06V 10/764 - Arrangements for image or video recognition or understanding using pattern recognition or machine learning using classification, e.g. of video objects
  • G06V 10/774 - Generating sets of training patternsBootstrap methods, e.g. bagging or boosting
  • G06V 20/52 - Surveillance or monitoring of activities, e.g. for recognising suspicious objects
  • G06V 40/10 - Human or animal bodies, e.g. vehicle occupants or pedestriansBody parts, e.g. hands
  • G06V 40/16 - Human faces, e.g. facial parts, sketches or expressions
  • G06V 40/20 - Movements or behaviour, e.g. gesture recognition
  • G08B 21/02 - Alarms for ensuring the safety of persons
  • G10L 25/51 - Speech or voice analysis techniques not restricted to a single one of groups specially adapted for particular use for comparison or discrimination

94.

DISPLAY LAYOUT AND INTERACTIVE OBJECTS FOR PATIENT MONITORING

      
Application Number 19028557
Status Pending
Filing Date 2025-01-17
First Publication Date 2025-07-17
Owner Masimo Corporation (USA)
Inventor
  • Kiani, Massi Joe E.
  • Muhsin, Bilal
  • Al-Ali, Ammar
  • Barker, Nicholas Evan
  • Dejong, Chad A.
  • Ahmed, Omar
  • Indorf, Keith Ward
  • Coon, Steve

Abstract

A physiological patient monitoring system with a healthcare professional-facing interface is disclosed. The healthcare professional interface may only display by default the most critical non-confidential patient information. To access the full range of features in the system, clinicians can unlock the device. Once unlocked, clinicians can access all of a patient's treatment history, and all the data may be consolidated and presented intuitively.

IPC Classes  ?

  • G06F 21/32 - User authentication using biometric data, e.g. fingerprints, iris scans or voiceprints
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • G16H 10/60 - ICT specially adapted for the handling or processing of patient-related medical or healthcare data for patient-specific data, e.g. for electronic patient records
  • G16H 40/20 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms
  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
  • G16H 50/50 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for simulation or modelling of medical disorders
  • G16H 80/00 - ICT specially adapted for facilitating communication between medical practitioners or patients, e.g. for collaborative diagnosis, therapy or health monitoring

95.

DISPLAY LAYOUT AND INTERACTIVE OBJECTS FOR PATIENT MONITORING

      
Application Number 19029610
Status Pending
Filing Date 2025-01-17
First Publication Date 2025-07-17
Owner Masimo Corporation (USA)
Inventor
  • Kiani, Massi Joe E.
  • Muhsin, Bilal
  • Al-Ali, Ammar
  • Barker, Nicholas Evan
  • Dejong, Chad A.
  • Ahmed, Omar
  • Indorf, Keith Ward
  • Coon, Steve

Abstract

A physiological patient monitoring system with a patient-facing interface is disclosed. The patient interface can be used by the patient to communicate with hospital staff without actually requesting attendance and can request attendance for specific purposes. The patient interface may also track patient treatment and inform patients of the details of their treatments.

IPC Classes  ?

  • G06F 21/32 - User authentication using biometric data, e.g. fingerprints, iris scans or voiceprints
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • G16H 10/60 - ICT specially adapted for the handling or processing of patient-related medical or healthcare data for patient-specific data, e.g. for electronic patient records
  • G16H 40/20 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms
  • G16H 40/67 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
  • G16H 50/50 - ICT specially adapted for medical diagnosis, medical simulation or medical data miningICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for simulation or modelling of medical disorders
  • G16H 80/00 - ICT specially adapted for facilitating communication between medical practitioners or patients, e.g. for collaborative diagnosis, therapy or health monitoring

96.

Regional oximetry signal processor

      
Application Number 17448340
Grant Number 12357237
Status In Force
Filing Date 2021-09-21
First Publication Date 2025-07-15
Grant Date 2025-07-15
Owner MASIMO CORPORATION (USA)
Inventor
  • Al-Ali, Ammar
  • Dalke, David
  • Kinast, Eric Karl
  • Weber, Walter M.
  • Song, Yuying
  • Kashif, Faisal
  • Ghoreyshi, Atiyeh
  • Forrest, Kevin

Abstract

A regional oximetry system comprises a pod having a pod housing defining a sensor end and an opposite monitor end. A dual sensor connector is in electrical communication with the sensor end of the pod housing. A monitor connector is in electrical communication with the monitor end of the pod housing. An analog board is disposed within the pod housing and is in electrical communications with the dual sensor connector. The analog board receives and digitizes sensor signals from at least one optical sensor plugged into the dual sensor connector. A digital board is disposed within the pod housing and in electrical communications with the analog board and the monitor connector. A digital signal processor (DSP) is mounted on the digital board and implements a regional oximetry signal processor so as to receive digitized sensor signals from the analog board, derive regional oximetry parameters from the digitized sensor signals and communicate the regional oximetry parameters to the monitor connector for display on an attached monitor.

IPC Classes  ?

  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons

97.

Band

      
Application Number 29879161
Grant Number D1083653
Status In Force
Filing Date 2023-07-03
First Publication Date 2025-07-15
Grant Date 2025-07-15
Owner Masimo Corporation (USA)
Inventor
  • Dejong, Chad A.
  • Hwang, Sujin
  • Al-Ali, Ammar

98.

Electronic device

      
Application Number 29868700
Grant Number D1078689
Status In Force
Filing Date 2022-12-12
First Publication Date 2025-06-10
Grant Date 2025-06-10
Owner Masimo Corporation (USA)
Inventor Hwang, Sujin

99.

Physiological nose sensor

      
Application Number 29962685
Grant Number D1079020
Status In Force
Filing Date 2024-09-12
First Publication Date 2025-06-10
Grant Date 2025-06-10
Owner Masimo Corporation (USA)
Inventor Hwang, Sujin

100.

MULTI-SITE NONINVASIVE MEASUREMENT OF A PHYSIOLOGICAL PARAMETER

      
Application Number 19029990
Status Pending
Filing Date 2025-01-17
First Publication Date 2025-05-29
Owner Masimo Corporation (USA)
Inventor
  • Sharma, Vikrant
  • Perea, Philip
  • Iyengar, Prashanth

Abstract

A patient monitor can noninvasively measure a physiological parameter using sensor data from different measurement sites on a patient. The patient monitor can combine all sensor data from different measurement sites into a raw or minimally processed data form to generate a single, robust measurement of the physiological parameter. An optical sensor of a patient monitor can include multiple photodetectors each configured to generate a signal when detecting light attenuated by the patient's tissue. A measurement of a physiological parameter can be determined based on at least in part on the multiple signals from the multiple photodetectors.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/024 - Measuring pulse rate or heart rate
  • A61B 5/145 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
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