Rafael Advanced Defense Systems Ltd.

Israël

Retour au propriétaire

1-100 de 150 pour Rafael Advanced Defense Systems Ltd. Trier par
Recheche Texte
Brevet
International - WIPO
Excluant les filiales
Affiner par Reset Report
Date
2025 novembre 1
2025 8
2024 9
2023 11
2022 16
Voir plus
Classe IPC
G02B 27/10 - Systèmes divisant ou combinant des faisceaux 7
G01S 7/497 - Moyens de contrôle ou de calibrage 6
H01S 3/10 - Commande de l'intensité, de la fréquence, de la phase, de la polarisation ou de la direction du rayonnement, p. ex. commutation, ouverture de porte, modulation ou démodulation 6
H01S 3/13 - Stabilisation de paramètres de sortie de laser, p. ex. fréquence ou amplitude 6
F41H 5/007 - Blindages réactifsBlindages dynamiques 5
Voir plus
Résultats pour  brevets
  1     2        Prochaine page

1.

WIRELESS COMMUNICATION NETWORK USING RELAY AND SYMBOL FORMATION SCHEME FOR DIVERSITY GAIN

      
Numéro d'application IB2025054788
Numéro de publication 2025/233856
Statut Délivré - en vigueur
Date de dépôt 2025-05-07
Date de publication 2025-11-13
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Glam, Aviel
  • Galperin, Naim
  • Malka, Haim
  • Pesach, Refael

Abrégé

A plurality of channel symbols, including first and second channel symbols broadcast by at least one source node of a wireless communication network, are received at a plurality of relay nodes of the wireless communication network. The channel symbols represent at least part of at least one message intended for receipt by at least one destination node of the wireless communication network. For each of the plurality of channel symbols, the relay nodes collectively perform at least two channel symbol formations according to a channel symbol formation scheme. Each relay node broadcasts at least two channel symbols, delayed one with respect to another, derived from at least one of the channel symbols formed by the relay node according to the channel symbol formation scheme. The broadcasting of a channel symbol by a relay node occurs simultaneously with the broadcasting of a channel symbol by at least one other relay node.

Classes IPC  ?

  • H04B 7/155 - Stations terrestres
  • H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
  • H04L 1/00 - Dispositions pour détecter ou empêcher les erreurs dans l'information reçue

2.

TURBOJET ENGINE WITH CENTRIFUGAL FUEL INJECTION

      
Numéro d'application IB2025052935
Numéro de publication 2025/196690
Statut Délivré - en vigueur
Date de dépôt 2025-03-20
Date de publication 2025-09-25
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Lobovikov, Jonatan

Abrégé

A turbojet engine (10) includes a housing (12) and a rotor (20) having a rotor body (26) supported within the housing on a rotatable shaft (22). The rotor body has an intake- facing side with compressor blades (28) for compressing inlet gases to provide a high- pressure region (30) around a periphery of the rotor body, and an outlet-facing side with turbine blades (32) driven by hot gases passing from a combustion chamber (16) to an outlet. The rotor (20) includes outwardly-extending fuel-ejection channels (38), extending to the periphery of the rotor body (26), for conveying the fuel under a centrifugal effect so as to deliver the fuel into high-pressure region (30).

Classes IPC  ?

  • F02C 3/04 - Ensembles fonctionnels de turbines à gaz caractérisés par l'utilisation de produits de combustion comme fluide de travail ayant une turbine entraînant un compresseur
  • F23R 3/00 - Chambres de combustion à combustion continue utilisant des combustibles liquides ou gazeux
  • F01D 5/04 - Organes de support des aubes, p. ex. rotors pour "machines" ou machines à flux radial
  • F02C 3/08 - Ensembles fonctionnels de turbines à gaz caractérisés par l'utilisation de produits de combustion comme fluide de travail ayant une turbine entraînant un compresseur le compresseur comprenant au moins un étage radial
  • F02K 3/00 - Ensembles fonctionnels comportant une turbine à gaz entraînant un compresseur ou un ventilateur soufflant

3.

EMBEDDING FUNCTIONAL ELECTRONIC DEVICES IN FIBER REINFORCED POLYMERS THROUGH SIMULTANEOUS SINTERING AND CURING

      
Numéro d'application IL2024050939
Numéro de publication 2025/104720
Statut Délivré - en vigueur
Date de dépôt 2024-09-19
Date de publication 2025-05-22
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Zemel, Erez

Abrégé

A method of embedding an electronic device in a composite structure comprises: a) placing the electronic device on one or more prepreg layer(s) of the composite structure; b) printing a trace of conductive ink on the prepreg layer, wherein, following the placing and printing steps, the electronic device and the trace are in contact with each other; and c) simultaneously curing the composite structure, sintering the ink, and forming an electrical connection between the sintered ink and the electronic device.

Classes IPC  ?

  • B29C 45/14 - Moulage par injection, c.-à-d. en forçant un volume déterminé de matière à mouler par une buse d'injection dans un moule ferméAppareils à cet effet en incorporant des parties ou des couches préformées, p. ex. moulage par injection autour d'inserts ou sur des objets à recouvrir
  • B29C 65/02 - Assemblage d'éléments préformésAppareils à cet effet par chauffage, avec ou sans pressage

4.

LASER IMAGING SYSTEM AND METHOD

      
Numéro d'application IB2024059918
Numéro de publication 2025/078996
Statut Délivré - en vigueur
Date de dépôt 2024-10-10
Date de publication 2025-04-17
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Dakal, Raanan
  • Golubchick, Daniel
  • Shwa, David

Abrégé

A laser imaging system is disclosed for generating an image of a target. The system includes a laser seeder for generating a laser beam. The beam is split into two beams, with one being sent to a CBC unit and the other to a reference unit. Both beams are broadened and the beam sent to the CBC unit is split into multiple beamlets which are transmitted to the target. A distance and velocity determination unit measures the distance to the target and the beam sent to the reference unit is delayed by a round trip period corresponding to the distance. The beam returned from the target is interfered with the broadened and delayed reference beam. An electrical signal corresponding to the combined beam is generated and used to phase lock all the CBC transmitted beams on the target and to construct an image of the target.

Classes IPC  ?

  • H01S 3/00 - Lasers, c.-à-d. dispositifs utilisant l'émission stimulée de rayonnement électromagnétique dans la gamme de l’infrarouge, du visible ou de l’ultraviolet
  • H01S 3/10 - Commande de l'intensité, de la fréquence, de la phase, de la polarisation ou de la direction du rayonnement, p. ex. commutation, ouverture de porte, modulation ou démodulation
  • H01S 3/13 - Stabilisation de paramètres de sortie de laser, p. ex. fréquence ou amplitude
  • G02B 27/10 - Systèmes divisant ou combinant des faisceaux

5.

WIRELESS COMMUNICATION NETWORK EMPLOYING BEAMFORMING FOR IMPROVED NETWORK EFFICIENCY

      
Numéro d'application IB2024058890
Numéro de publication 2025/057107
Statut Délivré - en vigueur
Date de dépôt 2024-09-12
Date de publication 2025-03-20
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Glam, Aviel
  • Galperin, Naim

Abrégé

A wireless communication network has a plurality of nodes. A first node of the plurality of nodes transmits a signal of interest intended for receipt by a second node of the plurality of nodes that is a relay node in routing path from the first node. A third node of the plurality of nodes transmits an interferer signal simultaneously with, and on a same frequency channel as, the signal of interest by the first node. The second node performs beamforming to detect the signal of interest and to reject the interferer signal.

Classes IPC  ?

  • H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
  • H04B 7/14 - Systèmes relais
  • H04J 11/00 - Systèmes multiplex orthogonaux

6.

IMPROVED MIRROR DESIGN AND MANUFACTURING PROCESS FOR OPTOMECHANICAL SYSTEMS

      
Numéro d'application IL2024050880
Numéro de publication 2025/052375
Statut Délivré - en vigueur
Date de dépôt 2024-09-02
Date de publication 2025-03-13
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Shacham, Omri
  • Ben-Horin, Ronen

Abrégé

The present invention relates to a method for manufacturing a 3D-printed object, comprising: a) printing a 3D object on a printing bed, wherein at least a part of the 3D object is integrated with a portion of the printing bed; and b) extracting the portion of the printing bed integrated with the 3D object to form a 3D printed object with a mirror surface assimilated within the portion of the printing bed.

Classes IPC  ?

  • B22F 5/10 - Fabrication de pièces ou d'objets à partir de poudres métalliques caractérisée par la forme particulière du produit à réaliser d'articles avec des cavités ou des trous, non prévue dans les sous-groupes précédents
  • B22F 10/22 - Dépôt direct de métal fondu
  • B22F 10/60 - Traitement de pièces ou d'articles après leur formation
  • B22F 10/80 - Acquisition ou traitement des données
  • B33Y 10/00 - Procédés de fabrication additive
  • B33Y 70/00 - Matériaux spécialement adaptés à la fabrication additive
  • B33Y 80/00 - Produits obtenus par fabrication additive

7.

ADDITIVE MANUFACTURING OF STANDOFFS BETWEEN INTEGRATED CIRCUIT AND PRINTED CIRCUIT BOARD

      
Numéro d'application IL2024050480
Numéro de publication 2025/046562
Statut Délivré - en vigueur
Date de dépôt 2024-05-16
Date de publication 2025-03-06
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Ronen, Aviv Mordechai
  • Naigertsik, Oleg
  • Peleg, Ido
  • Kassie, Adne

Abrégé

A method of attaching a chip and a printed circuit board, comprises additively manufacturing an array of conductive standoffs onto conductive pads on a surface of the chip, and connecting the printed circuit board to the array of conductive standoffs.

Classes IPC  ?

  • H01L 25/00 - Ensembles consistant en une pluralité de dispositifs à semi-conducteurs ou d'autres dispositifs à l'état solide
  • B29C 64/245 - Plates-formes ou substrats
  • B33Y 80/00 - Produits obtenus par fabrication additive

8.

FRANGIBLE MISSILE LAUNCH CANISTER COVER

      
Numéro d'application IL2024050458
Numéro de publication 2025/004025
Statut Délivré - en vigueur
Date de dépôt 2024-05-13
Date de publication 2025-01-02
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Laor, Doron
  • Viluska, Evgeni
  • Kikozashvily, David

Abrégé

A frangible missile launch canister cover comprises: (1) a bottom layer consisting of a plastic structure configured with weakening points; (2) an intermediate layer consisting of an electroless metal layer; (3) a top elastomeric layer; (4) one or more structural elements adapted to couple said layers to a canister.

Classes IPC  ?

  • F41F 3/077 - Panneaux de fermeture ou couvercles pour des tubes de lancement
  • F41F 3/04 - Lanceurs de roquettes ou de torpilles pour roquettes
  • B32B 15/00 - Produits stratifiés composés essentiellement de métal
  • C23C 18/16 - Revêtement chimique par décomposition soit de composés liquides, soit de solutions des composés constituant le revêtement, ne laissant pas de produits de réaction du matériau de la surface dans le revêtementDépôt par contact par réduction ou par substitution, p. ex. dépôt sans courant électrique
  • G06F 1/18 - Installation ou distribution d'énergie

9.

A METHOD FOR REVEALING THE SURFACE OF DENSE FORESTS USING REMOTE SENSING

      
Numéro d'application IL2024050281
Numéro de publication 2024/252384
Statut Délivré - en vigueur
Date de dépôt 2024-03-18
Date de publication 2024-12-12
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Sheffer, Refael
  • Litman, Roee
  • Pinchover, Hen
  • Ozeri, Dror

Abrégé

A method for constructing under-the-canopy terrain imagery, the method comprises the steps of: a. capturing overlapping images to cover an area-of-interest from an imaging sensor on an aerial platform; b. performing bundle adjustment utilizing parameters of said imaging sensor at any given point of capturing the images; c. training a neural network model for implicit volumetric rendering, wherein said model is configured to generate simulated views from any point of said area-of-interest; and d. generating terrain images by discarding occluding objects above ground level from the scene.

Classes IPC  ?

  • G06T 5/77 - RetoucheRestaurationSuppression des rayures
  • G06V 20/00 - ScènesÉléments spécifiques à la scène
  • G06V 10/774 - Génération d'ensembles de motifs de formationTraitement des caractéristiques d’images ou de vidéos dans les espaces de caractéristiquesDispositions pour la reconnaissance ou la compréhension d’images ou de vidéos utilisant la reconnaissance de formes ou l’apprentissage automatique utilisant l’intégration et la réduction de données, p. ex. analyse en composantes principales [PCA] ou analyse en composantes indépendantes [ ICA] ou cartes auto-organisatrices [SOM]Séparation aveugle de source méthodes de Bootstrap, p. ex. "bagging” ou “boosting”
  • G06V 10/70 - Dispositions pour la reconnaissance ou la compréhension d’images ou de vidéos utilisant la reconnaissance de formes ou l’apprentissage automatique
  • G06F 18/21 - Conception ou mise en place de systèmes ou de techniquesExtraction de caractéristiques dans l'espace des caractéristiquesSéparation aveugle de sources
  • G06T 5/90 - Modification de la plage dynamique d'images ou de parties d'images

10.

OPTICAL WINDOW PROTECTION IN DIODE PUMPED ALKALI LASERS

      
Numéro d'application IB2024054522
Numéro de publication 2024/231876
Statut Délivré - en vigueur
Date de dépôt 2024-05-09
Date de publication 2024-11-14
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Epshtein, Michael
  • Baraban, Mara
  • Zamir, Shai
  • Hakimi, Ilan

Abrégé

The invention provides methods and apparatus for protecting a DPAL optical window from damage caused by exposure to alkali atoms in the DPAL gain medium, in which an ion-deflecting, applied electric field is formed inside an enhanced ionization region which is proximal to the DPAL optical window. Ionization inside this region is enhanced by photoionization and/or electrostatic discharge. Photoionization is either a single-photon process involving photons from an ionizing laser beam or a multi-photon process involving photons from an optical pumping beam and/or an ionizing laser beam. The invention may be used in combination with other window protection techniques proposed in the prior art.

Classes IPC  ?

  • H01S 3/034 - Dispositifs optiques placés à l'intérieur du tube ou en faisant partie, p. ex. fenêtres, miroirs
  • H01S 3/03 - Détails de structure des tubes laser à décharge dans le gaz
  • H01S 3/094 - Procédés ou appareils pour l'excitation, p. ex. pompage utilisant le pompage optique par de la lumière cohérente
  • H01S 3/038 - Électrodes, p. ex. forme, configuration ou composition particulières
  • H01S 3/16 - Matériaux solides
  • H01S 3/227 - Vapeur métallique

11.

COGNITIVE MOBILE AD-HOC NETWORK

      
Numéro d'application IB2024052578
Numéro de publication 2024/194776
Statut Délivré - en vigueur
Date de dépôt 2024-03-17
Date de publication 2024-09-26
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Shimon, Avadis
  • Aviel, Glam
  • Weiss, Moshe Miki
  • Dror, Yachil

Abrégé

A MANET has a plurality of nodes and operates in the presence of another radio network. Each of the MANET nodes obtains frequency channel information associated with the radio network from detected transmissions of the radio network. Each node of a first subset of the MANET nodes transmits the obtained frequency channel information according to a cooperative signaling scheme. Each node of a second subset of the MANET nodes receives the obtained frequency channel information transmitted from at least some of the nodes of the first subset. For each node of one or more nodes in the second subset, the node forms a channel map based in part on the received obtained frequency channel information and the frequency channel information obtained by the node. In certain embodiments, at least one node of the one or more nodes in the second subset operates its transceiver according to the channel map.

Classes IPC  ?

  • H04W 84/18 - Réseaux auto-organisés, p. ex. réseaux ad hoc ou réseaux de détection
  • H04W 72/02 - Sélection de ressources sans fil par un utilisateur ou un terminal

12.

SYSTEM EMPLOYING AN EVENT CAMERA FOR SYNCHRONIZED RESPONSE TO FAST APPROACHING OBJECTS

      
Numéro d'application IB2024052158
Numéro de publication 2024/184823
Statut Délivré - en vigueur
Date de dépôt 2024-03-06
Date de publication 2024-09-12
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Kruger, Nimrod
  • Yaacobi, Ami

Abrégé

A system for synchronizing a response to an approaching object includes an event camera deployed to monitor a field of view, a pulsed active illumination system deployed to deliver pulses of illumination towards at least part of the field of view and a processing system The processing system monitors events from the event camera to detect a looming object, and then tracks the looming object and processes events associated with the looming object to determine an estimated passing time and passing distance from the event camera. The processing system also receives events from the event camera occurring within a defined period after actuation of a pulse of the illumination towards the looming object and derives from those events a correction to the motion parameters.

Classes IPC  ?

  • G06T 7/246 - Analyse du mouvement utilisant des procédés basés sur les caractéristiques, p. ex. le suivi des coins ou des segments
  • G06V 40/16 - Visages humains, p. ex. parties du visage, croquis ou expressions

13.

NOVEL METHOD FOR TARGET HEIGHT ESTIMATION USING MULTIPATH CORRUPTED RADAR MEASUREMENTS

      
Numéro d'application IB2023061482
Numéro de publication 2024/157066
Statut Délivré - en vigueur
Date de dépôt 2023-11-14
Date de publication 2024-08-02
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Lavi, Florin
  • Kalo, Ronen
  • Zlotnick, Ariel

Abrégé

A method for estimating a true height of a target from received radar signals scattered from the target and a surface in a multipath scenario, includes: deriving from a sequence of radar measurements received over a period of time successive data pairs of a measure of slant range and a multipath corrupted (MPC) target elevation; generating from the data pairs a representation of the variation of MPC target elevation with slant range over a range window having a variable length; inputting the representation to a Sequence-to-Sequence (Seq2Seq) neural network which has been trained on a dataset comprising variations of MPC target elevation with slant range for targets at different heights; and generating an estimate of the true height of the target using the trained neural network.

Classes IPC  ?

  • G01S 13/46 - Détermination indirecte des données relatives à la position
  • G01S 19/22 - Problèmes liés aux multitrajets
  • G06N 3/02 - Réseaux neuronaux
  • G06N 3/082 - Méthodes d'apprentissage modifiant l’architecture, p. ex. par ajout, suppression ou mise sous silence de nœuds ou de connexions

14.

THERMALLY-RESPONSIVE ACTUATOR ASSEMBLY AND CORRESPONDING THERMALLY-COMPENSATED OPTICAL SYSTEM

      
Numéro d'application IB2023060220
Numéro de publication 2024/141806
Statut Délivré - en vigueur
Date de dépôt 2023-10-11
Date de publication 2024-07-04
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Raf, Dror
  • Lahav, Oded

Abrégé

A thermally-compensated optical system (30) has a thermally-responsive actuator assembly (38) between first and second optical components (32, 34) arrayed along an optical axis. The actuator assembly has actuators (10) integrated into a collar encircling the optical axis. Each actuator has two interconnected beams (12a, 12b) from a first material and a rod (18) associated with the ends of both beams such that a distance between the ends is determined by a length of the rod. The rod is formed from a second material having a coefficient of thermal expansion different from that of the first material such that a variation in temperature causes deformation of the actuators, thereby varying a height of the actuators according to an effective coefficient of thermal expansion with a magnitude greater than that of both materials. This adjusts a relative position of the first and second components along the optical axis.

Classes IPC  ?

  • G02B 7/00 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques
  • G02B 7/02 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles
  • B32B 7/028 - Thermo-rétractabilité

15.

LONG-RANGE RECONNAISSANCE POD

      
Numéro d'application IL2023051154
Numéro de publication 2024/134641
Statut Délivré - en vigueur
Date de dépôt 2023-11-09
Date de publication 2024-06-27
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Yavin, Zvi
  • Arad, Eran
  • Weidenfeld, Michael

Abrégé

A long-range reconnaissance pod comprises a cylindrical body and a hollow enclosure forward to said body within which an optical sensor configured to image areas of interest during a long-range reconnaissance mission is housed, wherein a casing of said forward hollow enclosure comprises a target-facing section and a target-opposing section that both extend to a leading edge of said pod, and wherein an optical window adapted to protect said optical sensor from external flow is secured to said target-facing section, and both sections are configured with an external aerodynamic design that renders the optical window substantially optically distortion-free.

Classes IPC  ?

  • B64D 47/08 - Aménagements des caméras
  • G03B 15/00 - Procédés particuliers pour prendre des photographiesAppareillage à cet effet
  • B64C 1/14 - FenêtresPortesTrappes d'évacuation ou panneaux de visiteStructures de cadres environnantsVerrièresPare-brise

16.

ELECTRO-OPTICAL TACTICAL MISSILE SYSTEM

      
Numéro d'application IB2023055742
Numéro de publication 2024/057102
Statut Délivré - en vigueur
Date de dépôt 2023-06-04
Date de publication 2024-03-21
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Zeierman, Shimon
  • Levin, Tzachi
  • Tur, Barak

Abrégé

A missile system includes a sight having a targeting image sensor for obtaining a reference image and receiving an input defining a desired point of impact, and a missile. The missile has a seeker image sensor having an iFOV that is at least three times wider in each dimension than an iFOV of the targeting image sensor. A processing system of the missile receives the reference image, receives sampled images from the seeker image sensor during flight, and performs image registration between the reference image and the sampled image. The image registration includes down-sampling of the reference image so as to match a resolution of the sampled images. The image registration is used to determine the desired point of impact within the sampled images, and the missile is steered towards the desired point of impact.

Classes IPC  ?

17.

OPTICAL PHASED ARRAY SYSTEM WITH CLOSED-LOOP COMPENSATION OF ATMOSPHERIC TURBULENCE AND NOISE EFFECTS

      
Numéro d'application IB2023053008
Numéro de publication 2024/013573
Statut Délivré - en vigueur
Date de dépôt 2023-03-27
Date de publication 2024-01-18
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Golubchik, Daniel
  • Shwa, David

Abrégé

A system for illuminating a target in the presence of atmospheric turbulence includes a coherent beam combining (CBC) subsystem, an atmospheric wave-front sensor (AWS) subsystem, a multi-channel photo-detector (MCPD) subsystem, an auxiliary light source, and a receiving optical aperture. The CBC subsystem forms a multiplicity of CBC sub-beams and an reference beam, all of which fall in a wavelength band that is different from that of the auxiliary light source. The auxiliary light source may be a laser or a portion of the solar spectrum of the Sun. An AWS controller provides closed-loop compensation of atmospheric turbulence for low power auxiliary reflection and reference beams. A MCPD controller provides closed-loop compensation of high-frequency laser noise and transfers the wavefront correction from the reference to the high power CBC laser. The frequency of the MCPD controller is at least an order of magnitude greater than the bandwidth of the AWS controller.

Classes IPC  ?

  • G01S 17/66 - Systèmes de poursuite utilisant d'autres ondes électromagnétiques que les ondes radio
  • G01S 17/36 - Systèmes déterminant les données relatives à la position d'une cible pour mesurer la distance uniquement utilisant la transmission d'ondes continues, soit modulées en amplitude, en fréquence ou en phase, soit non modulées avec comparaison en phase entre le signal reçu et le signal transmis au même moment
  • G01S 17/02 - Systèmes utilisant la réflexion d'ondes électromagnétiques autres que les ondes radio
  • G01S 7/497 - Moyens de contrôle ou de calibrage
  • G01C 3/02 - Mesure des distances dans la ligne de viséeTélémètres optiques Détails
  • H01S 3/10 - Commande de l'intensité, de la fréquence, de la phase, de la polarisation ou de la direction du rayonnement, p. ex. commutation, ouverture de porte, modulation ou démodulation

18.

AN OPENING SYSTEM FOR CONTAINERS THAT ARE UNDER PRESSURE

      
Numéro d'application IL2023050463
Numéro de publication 2023/218446
Statut Délivré - en vigueur
Date de dépôt 2023-05-07
Date de publication 2023-11-16
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • David, Asaf
  • Chobotaru, Ran
  • Aflalo, Michel

Abrégé

An opening system for a container that is closed with a lid, which is located under pressure, comprising: a) an arrangement suitable to allow the opening of said lid of said container; b) a flexible element suitable to be connected to said container, and suitable to be inflated; and c) a pressure-regulating subsystem suitable to produce an increase of pressure inside said container up to a value that causes the inflation of said flexible element and its tearing.

Classes IPC  ?

  • F41F 3/077 - Panneaux de fermeture ou couvercles pour des tubes de lancement
  • B63G 8/00 - Navires submersibles, p. ex. sous-marins
  • B65D 85/00 - Réceptacles, éléments d'emballage ou paquets spécialement adaptés à des objets ou à des matériaux particuliers
  • F16K 17/14 - Soupapes ou clapets de sûretéSoupapes ou clapets d'équilibrage ouvrant sur excès de pression d'un côtéSoupapes ou clapets de sûretéSoupapes ou clapets d'équilibrage fermant sur insuffisance de pression d'un côté avec élément de rupture
  • F41F 3/10 - Lanceurs de roquettes ou de torpilles pour torpilles marines lancées sous la surface de l'eau

19.

RESOURCE MANAGEMENT AND ROUTING IN MOBILE AD-HOC NETWORKS THAT EMPLOY MULTI-CHANNEL RECEPTION AND COOPERATIVE RELAYING

      
Numéro d'application IB2023050167
Numéro de publication 2023/180815
Statut Délivré - en vigueur
Date de dépôt 2023-01-09
Date de publication 2023-09-28
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Fridman, Yevgeni
  • Glam, Aviel
  • Anavim, Yuval
  • Avadis, Shimon

Abrégé

MANET nodes have a transceiver, operative in a first plurality of frequencies, having a transmitter that selects at least one frequency for transmission and a receiver that simultaneously receives signals in a second plurality of frequencies selected from the first plurality of frequencies. A resource allocation table is generated and has time-slots and frequencies to be allocated amongst the nodes. Data is maintained in the resource allocation table that is representative of session plans, where each session plan corresponds to a message to be propagated through the MANET from a source node to a destination node. Each session plan includes time-slot and frequency allocations associated with the source node. At each time-slot, each node of one or more nodes decides which one or more messages to broadcast during the time-slot on one or more frequencies selected from the first plurality of frequencies.

Classes IPC  ?

  • H04W 84/18 - Réseaux auto-organisés, p. ex. réseaux ad hoc ou réseaux de détection
  • H04W 40/00 - Acheminement ou recherche d'itinéraire pour la communication
  • H04W 72/04 - Affectation de ressources sans fil

20.

SYSTEM AND METHOD FOR TESTING OPTICAL PROXIMITY FUSES

      
Numéro d'application IB2022062814
Numéro de publication 2023/175393
Statut Délivré - en vigueur
Date de dépôt 2022-12-27
Date de publication 2023-09-21
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Tibi, Dov

Abrégé

A system (10) for testing a laser proximity fuse (PF) (12) by simulating a closing velocity to a target along a line of sight (14) includes a static spiral surface (16) and a support arrangement (18) for supporting the proximity fuse (12) with the line of sight (14) directed towards an inside of static spiral surface (16). A folding mirror (20) is driven by a drive motor (22) so as to deflect the line of sight (14) towards progressively closer regions of static spiral surface, thereby simulating a closing velocity. The system can be miniaturized by employing converging optics (24). An alternative embodiment employs a shaped rotor (32) to achieve a similar effect.

Classes IPC  ?

  • F42C 21/00 - Vérification des fuséesTest des fusées
  • F42C 13/02 - Fusées de proximitéFusées pour explosion à distance actionnées par intensité de la lumière ou d'une radiation analogue
  • G01S 7/497 - Moyens de contrôle ou de calibrage

21.

MULTISPECTRAL STEP-AND-STARE IMAGING WITH SINGLE SENSOR

      
Numéro d'application IL2023050204
Numéro de publication 2023/166502
Statut Délivré - en vigueur
Date de dépôt 2023-02-27
Date de publication 2023-09-07
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Yavin, Zvi
  • Minkov, Eliyahu

Abrégé

A multispectral image capture device includes an imaging platform having arranged thereon an image sensor comprising a photosensitive surface and an optical unit, a gimbals system for controlling a line of sight of the image sensor, a filter wheel comprising a series of n spectral filters arranged between the image sensor and an imaging target; and a drive system configured to rotate the filter wheel at a constant velocity so as to bring each of the spectral filters into a line of sight between the image sensor and the imaging target. A controller is adapted to synchronize movement of the imaging platform, control of line of sight of the image sensor with the gimbals, and constant rotation of the filter wheel, such that the image sensor captures a sequence of overlapping step-and-stare images through the series of rotating spectral filters without changing a speed of rotation of the filter wheel.

Classes IPC  ?

  • H04N 23/11 - Caméras ou modules de caméras comprenant des capteurs d'images électroniquesLeur commande pour générer des signaux d'image à partir de différentes longueurs d'onde pour générer des signaux d'image à partir de longueurs d'onde de lumière visible et infrarouge
  • H04N 23/55 - Pièces optiques spécialement adaptées aux capteurs d'images électroniquesLeur montage
  • G01C 11/02 - Dispositions de prises de vues spécialement adaptées pour la photogrammétrie ou les levers photographiques, p. ex. pour commander le recouvrement des photos
  • F41G 7/22 - Systèmes autodirecteurs

22.

FREQUENCY SYNCHRONIZATION IN DECENTRALIZED COMMUNICATION NETWORKS

      
Numéro d'application IB2022060957
Numéro de publication 2023/144606
Statut Délivré - en vigueur
Date de dépôt 2022-11-15
Date de publication 2023-08-03
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Farbman, Barak
  • Desyatnikov, Ilya
  • Peretz, Eliran
  • Halevy, Yehuda
  • Shwartzburg, Ariel
  • Ashrovich, Eran

Abrégé

Frequency synchronization methods provide synchronization among nodes of a decentralized communication network. At each of one or more nodes of a plurality of nodes that form a decentralized communication network, information is acquired that is indicative of a frequency associated with at least one other node of the plurality of nodes. For each of the one or more nodes, a frequency offset between a frequency of the node and a frequency of the at least one other node is determined, based in part on the acquired information.

Classes IPC  ?

23.

FLIGHT TEST RANGE SAFETY ANALYSIS TOOL

      
Numéro d'application IL2023050047
Numéro de publication 2023/139575
Statut Délivré - en vigueur
Date de dépôt 2023-01-16
Date de publication 2023-07-27
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD (Israël)
Inventeur(s)
  • Ingbir, Ronen
  • Ben-Yakov, Nave

Abrégé

A method of assessing safety of a trajectory of units under test over a flight range includes: setting a mission trajectory of a unit under test, wherein nominal and dispersion trajectories of the unit under test are within a delineated area; extracting from the mission trajectory a plurality of initial conditions of the unit under test; for each extracted initial condition, simulating a malfunction, and calculating an orientation of the unit under test following each simulated malfunction using an orientation transfer function of the unit under test to simulate a malfunction maneuver. The method further includes, on the basis of this calculated orientation for each simulated malfunction, determining an impact point of the unit under test with a particular plane.

Classes IPC  ?

  • G06F 30/20 - Optimisation, vérification ou simulation de l’objet conçu
  • G06F 119/14 - Analyse des forces ou optimisation des forces, p. ex. forces statiques ou dynamiques

24.

METHODS AND SYSTEMS FOR SIMULATING IMAGE CAPTURE OF IMAGING DEVICE

      
Numéro d'application IB2022055042
Numéro de publication 2023/012529
Statut Délivré - en vigueur
Date de dépôt 2022-05-29
Date de publication 2023-02-09
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Vardi, Yair

Abrégé

Methods, systems, and computer program products simulate image-capture of a scene having at least one object of interest (OOI) by a camera. A plurality of rendered images is obtained and includes: i) a first image, at a first resolution, that is an image of the scene and excludes the OOI, ii) a second image, at a second resolution higher than the first resolution, that is an image of the OOI, iii) a third image, at the second resolution, that is an image of a region that bounds the OOI, wherein the OOI at least partially affects one or more other objects in the region, and iv) a fourth image, at the second resolution, wherein for each pixel of the fourth image, a pixel value of the pixel indicates a contribution of the OOI in the pixel. The images are processed to produce a high-resolution image of the OOI.

Classes IPC  ?

  • G06T 3/40 - Changement d'échelle d’images complètes ou de parties d’image, p. ex. agrandissement ou rétrécissement
  • G06T 5/50 - Amélioration ou restauration d'image utilisant plusieurs images, p. ex. moyenne ou soustraction
  • G06T 7/194 - DécoupageDétection de bords impliquant une segmentation premier plan-arrière-plan

25.

BARRIER-BREACHING MUNITION

      
Numéro d'application IL2022050795
Numéro de publication 2023/007483
Statut Délivré - en vigueur
Date de dépôt 2022-07-24
Date de publication 2023-02-02
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Tal, Nadav
  • Drive, Yoel
  • Cohen, Eyal
  • Oposhnian, Lusia

Abrégé

Flown munition that is rocket-propelled for hitting a target behind a barrier, and which comprises a rocket motor; and a successive payload that is mounted behind the rocket motor in a tandem configuration and is towed by it; and wherein the rocket motor is used for accelerating the munition towards the barrier and also serves as a sort of kinetic penetrator to clear a passage through the barrier for the successive pay load, which is connected to it and towed by it, and the successive payload (e.g. - a high-explosive charge) is adapted for delayed detonation following and just after said rocket motor hits the barrier.

Classes IPC  ?

  • F42B 12/18 - Charges creuses disposées en tandem
  • F42B 12/16 - Projectiles ou mines caractérisés par la charge militaire, l'effet recherché ou le matériau caractérisés par la nature de la charge militaire ou par l'effet recherché du type perforant à charge creuse ou profilée comportant un projectile ou une charge additionnels, agissant en succession sur la cible
  • F42B 25/00 - Bombes aériennes
  • F42B 14/00 - Projectiles caractérisés par des dispositions pour les guider à l'intérieur du canon, pour rendre étanche la surface de contact entre le projectile et le canon, pour lubrifier ou nettoyer le canon

26.

TWO-AXIS MOTOR-DRIVEN SPHERICAL ORIENTING MECHANISM

      
Numéro d'application IB2022052843
Numéro de publication 2023/002259
Statut Délivré - en vigueur
Date de dépôt 2022-03-28
Date de publication 2023-01-26
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Lahav, Oded
  • Shacham, Omri Zvi
  • Fraiman, Leonid

Abrégé

A mechanism for orienting a payload support includes first and second transversely deployed drive assemblies, each having a motor that drives a drive arm. The payload support is directly pivotally mounted to a first drive arm. Connection between the second drive arm and the payload support is via a coupling linked to the second drive arm via a coupling rotary joint, and to the payload support via a support rotary joint. Both the first drive arm and the second drive arm are supported relative to the frame by sets of two bearing assemblies located on opposite sides of the center of rotation. Each of the bearing assemblies is preferably implemented as a loaded duplex bearing assembly, and most preferably with a back-to-back loaded duplex bearing assembly on each axis.

Classes IPC  ?

  • F16M 11/12 - Moyens pour la fixation des appareilsMoyens permettant le réglage des appareils par rapport au banc permettant la rotation dans plus d'une direction
  • F16M 11/20 - Infrastructure avec ou sans roues
  • G02B 27/64 - Systèmes pour donner des images utilisant des éléments optiques pour la stabilisation latérale et angulaire de l'image

27.

A PLATFORM FOR MULTI-AGENT TASK PLANNING OF AUTONOMOUS SYSTEMS

      
Numéro d'application IL2022050715
Numéro de publication 2023/286046
Statut Délivré - en vigueur
Date de dépôt 2022-07-04
Date de publication 2023-01-19
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Eldar, Lior
  • Greenstein, Dan
  • Keren, Eyal

Abrégé

A system for multi-agent mission planning comprises a) a mission generator (MG) configured to compute a set of Mission Agent Language (MAL) missions; b) a group of agents (TGPs), each capable of performing at least one MAL mission; and c) at least one Multi-Agent Planner (MAP) adapted to receive said set of MAL missions from said MG to build an allocation vector between said MAL missions and said agents in said group; wherein each agent (TGP) is further capable of performing its assigned MAL mission per said allocation vector, while considering all other agents in its corresponding tactical group.

Classes IPC  ?

  • G06Q 10/06 - Ressources, gestion de tâches, des ressources humaines ou de projetsPlanification d’entreprise ou d’organisationModélisation d’entreprise ou d’organisation
  • G05D 1/00 - Commande de la position, du cap, de l'altitude ou de l'attitude des véhicules terrestres, aquatiques, aériens ou spatiaux, p. ex. utilisant des pilotes automatiques
  • G05D 1/02 - Commande de la position ou du cap par référence à un système à deux dimensions
  • G06F 9/48 - Lancement de programmes Commutation de programmes, p. ex. par interruption

28.

OBJECT-ORIENTED METHOD OF FATALITY PROBABILITY DETERMINATION

      
Numéro d'application IL2022050485
Numéro de publication 2023/275858
Statut Délivré - en vigueur
Date de dépôt 2022-05-10
Date de publication 2023-01-05
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Ingbir, Ronen
  • Ben-Yakov, Nave
  • Harmats, Mordechai Moty

Abrégé

A method for creating a dedicated optimal local grid around a place of interest comprises: a) iteratively updating the local grid size such as to satisfy statistical constraints; and b) discontinuing the iterative process of step (a) when a predefined threshold of said statistical constraint is reached.

Classes IPC  ?

  • H04L 41/0631 - Gestion des fautes, des événements, des alarmes ou des notifications en utilisant l’analyse des causes profondesGestion des fautes, des événements, des alarmes ou des notifications en utilisant l’analyse de la corrélation entre les notifications, les alarmes ou les événements en fonction de critères de décision, p. ex. la hiérarchie ou l’analyse temporelle ou arborescente
  • G06F 16/2458 - Types spéciaux de requêtes, p. ex. requêtes statistiques, requêtes floues ou requêtes distribuées

29.

TEMPERATURE COMPENSATED SPACER

      
Numéro d'application IB2022052514
Numéro de publication 2022/269371
Statut Délivré - en vigueur
Date de dépôt 2022-03-20
Date de publication 2022-12-29
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Lahav, Oded
  • Stoller, Omer

Abrégé

A temperature compensated spacer includes first and second anchoring configurations for anchoring the spacer relative to first and second elements, and a frame providing a mechanical connection between the anchoring configurations. The frame has a polygonal opening with a first diagonal extending across the width of a gap between the elements and a second diagonal extending transversely to the first diagonal. A crossbar is associated with the polygonal opening so as to span the second diagonal. The frame and the crossbar are formed from materials having differing coefficients of thermal expansion. The crossbar is deployed so as to determine a length of the second diagonal such that variation in temperature causes deformation of the frame, thereby varying a length of the first diagonal.

Classes IPC  ?

  • G02B 7/00 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques
  • G02B 7/02 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles
  • H04N 5/225 - Caméras de télévision
  • B81B 3/00 - Dispositifs comportant des éléments flexibles ou déformables, p. ex. comportant des membranes ou des lamelles élastiques
  • F16B 1/00 - Dispositifs pour assembler des éléments structuraux ou parties de machines ou bien pour empêcher tout mouvement relatif entre eux
  • G02B 7/18 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour prismesMontures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour miroirs
  • B32B 7/027 - Propriétés thermiques

30.

COHERENCE RECONSTRUCTION APPARATUS FOR INTERFEROMETRIC MEASUREMENT OF ATMOSPHERIC TURBULENCE

      
Numéro d'application IB2022052842
Numéro de publication 2022/259048
Statut Délivré - en vigueur
Date de dépôt 2022-03-28
Date de publication 2022-12-15
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Golubchik, Daniel
  • Shwa, David
  • Rogers, Steve

Abrégé

A coherence reconstruction apparatus generates measurements of atmospheric turbulence from light reflected by a target. The apparatus is in communication with a coherent beam combining (CBC) system which illuminates a target with one or more partially coherent beams from a seed laser. The apparatus includes a variable delay module and a phase shift interferometer (PSI). The delay module uses a measurement of target time-of-flight to form a coherent delayed reference signal from the CBC seed reference laser. The delay module may incorporate an electromagnetically induced transparency medium and/or an electro-optical modulator. The PSI combines the delayed reference optical signal with a target-reflected optical signal to form an interference pattern and to determine one or more turbulence phase correction measurements. The apparatus may include a controller for generating feedback and dynamic tuning signals.

Classes IPC  ?

  • G01S 7/497 - Moyens de contrôle ou de calibrage
  • G02B 27/10 - Systèmes divisant ou combinant des faisceaux
  • H01S 3/00 - Lasers, c.-à-d. dispositifs utilisant l'émission stimulée de rayonnement électromagnétique dans la gamme de l’infrarouge, du visible ou de l’ultraviolet
  • H01S 5/40 - Agencement de plusieurs lasers à semi-conducteurs, non prévu dans les groupes
  • H01S 3/10 - Commande de l'intensité, de la fréquence, de la phase, de la polarisation ou de la direction du rayonnement, p. ex. commutation, ouverture de porte, modulation ou démodulation
  • H01S 3/13 - Stabilisation de paramètres de sortie de laser, p. ex. fréquence ou amplitude

31.

DEVICES HAVING A PHASED-ARRAY ANTENNA AND CALIBRATION METHOD THEREFOR

      
Numéro d'application IB2022051109
Numéro de publication 2022/214883
Statut Délivré - en vigueur
Date de dépôt 2022-02-08
Date de publication 2022-10-13
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Brillant, Avigdor
  • Pezo, David
  • Cahana, David
  • Azoulay, Rafael

Abrégé

Methods and devices provide a test signal to each of a plurality of antenna channels via a test signal line. Each antenna channel includes an amplitude adjustor and a phase adjustor associated with at least one antenna element. For each antenna channel, the test signal provided to the antenna channels is modulated to produce a modulated test signal. The modulated test signal is produced by: i) controlling the amplitude adjustor of the antenna channel to vary a current amplitude of the test signal between a plurality of amplitude states, and ii) controlling the phase adjustor of the antenna channel to vary a current phase of the test signal between a plurality of phase states. A received test signal received from the antenna channels is processed to determine amplitude and phase errors associated with the modulated test signals associated with the antenna channels.

Classes IPC  ?

  • G01S 7/40 - Moyens de contrôle ou d'étalonnage
  • H01Q 3/26 - Dispositifs pour changer ou faire varier l'orientation ou la forme du diagramme de directivité des ondes rayonnées par une antenne ou un système d'antenne faisant varier la phase relative ou l’amplitude relative et l’énergie d’excitation entre plusieurs éléments rayonnants actifsDispositifs pour changer ou faire varier l'orientation ou la forme du diagramme de directivité des ondes rayonnées par une antenne ou un système d'antenne faisant varier la distribution de l’énergie à travers une ouverture rayonnante

32.

FRAGILE REACTIVE PROTECTIVE ARMOR

      
Numéro d'application IL2022050314
Numéro de publication 2022/201149
Statut Délivré - en vigueur
Date de dépôt 2022-03-21
Date de publication 2022-09-29
Propriétaire RAFAEL ADVANCED DEFENCE SYSTEMS LTD (Israël)
Inventeur(s)
  • Friling, Samuel
  • Michaelis, Ron
  • Godinger, Adam
  • Billert, Oleg

Abrégé

A reactive armor for defeating threats comprises one or more fragile reactive plates consisting of reactive material sandwiched between two fragile layers, said fragile reactive plates being contained in a housing, the void space of said housing being filled with a polymeric foam.

Classes IPC  ?

  • F41H 5/007 - Blindages réactifsBlindages dynamiques
  • F41H 5/04 - Structure des plaques composées de plus d'une couche

33.

SYSTEM AND METHOD FOR ALIGNMENT OF BEAMS OF COHERENT BEAM ARRAY

      
Numéro d'application IB2022050858
Numéro de publication 2022/167930
Statut Délivré - en vigueur
Date de dépôt 2022-02-01
Date de publication 2022-08-11
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Golubchik, Daniel

Abrégé

A CBC system includes an array of beam sources generating coherent beams directed towards a target. The beam sources have associated adjustable phase modulators and beam steering arrangements. For each of the beams in a subset of the beams, the corresponding beam steering arrangement is actuated to steer the beam, and the corresponding phase modulator is actuated to modulate a current phase of the beam between at least three phase states. A detector monitors an intensity parameter that varies as a function of an intensity of radiation impinging on the target. A controller calculates, for each of the beams in the subset, a current value that is representative of a relative intensity of the beam based at least in part on the monitored intensity parameter at each of the at least three phase states. The calculated value is indicative of a current position of the beam relative to the target.

Classes IPC  ?

  • G01S 7/497 - Moyens de contrôle ou de calibrage
  • G01S 17/06 - Systèmes déterminant les données relatives à la position d'une cible
  • G01S 17/02 - Systèmes utilisant la réflexion d'ondes électromagnétiques autres que les ondes radio
  • G01S 17/66 - Systèmes de poursuite utilisant d'autres ondes électromagnétiques que les ondes radio
  • H01S 3/101 - Lasers munis de moyens pour changer l'origine ou la direction du rayonnement émis
  • H01S 3/10 - Commande de l'intensité, de la fréquence, de la phase, de la polarisation ou de la direction du rayonnement, p. ex. commutation, ouverture de porte, modulation ou démodulation
  • H01S 3/00 - Lasers, c.-à-d. dispositifs utilisant l'émission stimulée de rayonnement électromagnétique dans la gamme de l’infrarouge, du visible ou de l’ultraviolet
  • H01S 3/23 - Agencement de plusieurs lasers non prévu dans les groupes , p. ex. agencement en série de deux milieux actifs séparés
  • H01S 3/13 - Stabilisation de paramètres de sortie de laser, p. ex. fréquence ou amplitude
  • H01S 5/40 - Agencement de plusieurs lasers à semi-conducteurs, non prévu dans les groupes
  • G01S 7/481 - Caractéristiques de structure, p. ex. agencements d'éléments optiques
  • G02B 27/10 - Systèmes divisant ou combinant des faisceaux

34.

REACTIVE PROTECTIVE ARMOR

      
Numéro d'application IL2021051507
Numéro de publication 2022/168075
Statut Délivré - en vigueur
Date de dépôt 2021-12-20
Date de publication 2022-08-11
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Friling, Samuel
  • Michaelis, Ron
  • Godinger, Adam
  • Billert, Oleg

Abrégé

A reactive armor for defeating threats comprises an outer shell having outer and inner surfaces, an inner reactive plate, and explosive material disposed between said inner surface and said reactive plate, wherein said reactive plate is configured to be displaced away from said inner surface upon activation of said explosive material.

Classes IPC  ?

  • F41H 5/007 - Blindages réactifsBlindages dynamiques
  • F41H 5/013 - Montage ou fixation des plaques de blindage
  • F41H 5/04 - Structure des plaques composées de plus d'une couche

35.

METHOD AND SYSTEM FOR COEXISTENCE AND SPURIOUS MITIGATION IN MULTICOM PLATFORMS

      
Numéro d'application IL2022050101
Numéro de publication 2022/162658
Statut Délivré - en vigueur
Date de dépôt 2022-01-25
Date de publication 2022-08-04
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Brillant, Avigdor
  • Pezo, David
  • Azoulay, Rafael
  • Cahana, David

Abrégé

A multi-communication (MC) system supporting mitigation plan for interfering spurious products, comprising: a) at last one first client that is configured to perform wireless communication; b) at least one second client that is capable of generating spurious product that potentially interferes with said first client communication; c) a Clock-Frequency-Base Band Management Unit (CFBBMU) module configured to repeatedly: i. generates a spurious map based on data collected from one or more of said clients; and ii. utilizes said generated spurious map to mitigate clients' interference.

Classes IPC  ?

  • H04B 15/02 - Réduction des perturbations parasites dues aux appareils électriques avec des moyens disposés sur ou à proximité de la source de perturbation
  • H04W 72/04 - Affectation de ressources sans fil

36.

WIDEBAND RECEIVER WITH INTERFERER REJECTION

      
Numéro d'application IB2022050182
Numéro de publication 2022/153174
Statut Délivré - en vigueur
Date de dépôt 2022-01-11
Date de publication 2022-07-21
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Pezo, David
  • Yona, Eli
  • Kagan, Tali
  • Brillant, Avigdor
  • Azoulay, Rafael

Abrégé

A receiver system has at least one antenna that receives a plurality of signals, including a desired signal, across a wide band of frequencies. At least one tunable filter is in signal communication with the at least one antenna, and filters the plurality of signals to produce a plurality of filtered signals. Gain control circuitry is in signal communication with the at least one tunable filter, and produces a gain adjusted version of the filtered signals. A processing unit processes received signals in a portion of the wide band to extract signal characteristics of at least one undesired signal in the portion of the wide band. The at least one tunable filter is tuned based at least in part on the signal characteristics of the at least one undesired signal to maintain the SNR of the desired signal above a threshold level at the output of the gain control circuitry.

Classes IPC  ?

  • H04B 1/10 - Dispositifs associés au récepteur pour limiter ou supprimer le bruit et les interférences
  • H04B 1/12 - Montages de neutralisation, d'équilibrage ou de compensation

37.

APPARATUS AND METHOD FOR LASER RANGE-FINDING

      
Numéro d'application IB2021061249
Numéro de publication 2022/123404
Statut Délivré - en vigueur
Date de dépôt 2021-12-02
Date de publication 2022-06-16
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Golubchik, Daniel
  • Maline, Ahron

Abrégé

A range-finding apparatus and method for measuring the range of a target illuminated by a coherent beam combining (CBC) system having at least two partially coherent sub-beams. The apparatus includes a phase modulation controller and a signal processor. The controller provides one or more optical phase modulation signals to the CBC system. The signal processor receives an initial measurement of target range, provided by either the CBC system or an external range-finding device and having a relatively large uncertainty, and a time-varying received intensity signal provided by the CBC system. The signal processor calculates frequency components of the intensity signal, forms rotated frequency components corresponding to a time-of-flight correction, calculates an objective function depending upon the rotated frequency components, determines a global minimum of the objective function, and calculates a corrected measurement of target range having an uncertainty which is less than that of the initial measurement of target range.

Classes IPC  ?

  • G01S 17/08 - Systèmes déterminant les données relatives à la position d'une cible pour mesurer la distance uniquement
  • G01S 13/10 - Systèmes pour mesurer la distance uniquement utilisant la transmission de trains discontinus d'ondes modulées par impulsions
  • G01S 13/20 - Systèmes pour mesurer la distance uniquement utilisant la transmission de trains discontinus d'ondes modulées par impulsions avec utilisation ou suppression des échos multiples
  • G01S 13/84 - Systèmes utilisant la reradiation d'ondes radio, p. ex. du type radar secondaireSystèmes analogues dans lesquels des signaux de type continu sont transmis pour la détermination de distance par mesure de phase
  • G01C 3/00 - Mesure des distances dans la ligne de viséeTélémètres optiques

38.

THERMAL CONTACT APPARATUS

      
Numéro d'application IL2021051246
Numéro de publication 2022/085002
Statut Délivré - en vigueur
Date de dépôt 2021-10-20
Date de publication 2022-04-28
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Tal, Alon

Abrégé

The invention relates to a thermal contact apparatus, comprising: a first plate, suitable to be connected to a heat source, absorb heat from said heat source, and transfer the heat to other components of the apparatus; a first set of fibers, suitable to absorb heat from said first plate and transfer the heat to other components of the apparatus, wherein said first set of fibers is connected to said first plate; a second set of fibers, suitable to absorb heat from said first set of fibers and thansfer the heat to other components of the apparatus, wherein said first and second sets of fibers are in contact; and a second plate, suitable to absorb heat from said second set of fibers and transfer the heat out of the apparatus, wherein said second set of fibers is connected to said second plate.

Classes IPC  ?

  • F28F 3/02 - Éléments ou leurs ensembles avec moyens pour augmenter la surface de transfert de chaleur, p. ex. avec des ailettes, avec des évidements, avec des ondulations
  • F28F 13/00 - Dispositions pour modifier le transfert de chaleur, p. ex. accroissement, diminution

39.

SYSTEM AND METHOD FOR VISUAL LOCALIZATION

      
Numéro d'application IL2021051171
Numéro de publication 2022/070184
Statut Délivré - en vigueur
Date de dépôt 2021-09-29
Date de publication 2022-04-07
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Peterfreund, Natan

Abrégé

A computer-implemented method for processing a geo-location of an aerial platform, comprises: (a) providing a set of classification stages, which is trained end-to-end to provide a set of cascade decisions, wherein each cascade decision is optimized for a different classification modality and for different spatial resolution; (b) receiving a geo-location query comprising an aerial sensor image, a reference bird's eye view image-map with coordinate system and sensor pose angles measures with respect to the coordinate system; (c) projecting the aerial sensor image onto the coordinate system of the reference image-map using the pose angles measures; (d) matching between the projected sensor image and corresponding image patches in the reference satellite image-map, by applying said set of classification stages in accordance with features extraction from said images and similarity criteria; (e) generating a cascade sequencing, wherein a classification score is aggregated along a cascade path among said set of cascade stages; (f) generating a cascade decision at each stage along the cascade path based on the aggregated classification score and on defined decision logic between successive stages; (g) retrieving a geo-location associated with said aggregated classification decision; and (h) sending the retrieved geo-location to a geo-location requester.

Classes IPC  ?

  • G06K 9/00 - Méthodes ou dispositions pour la lecture ou la reconnaissance de caractères imprimés ou écrits ou pour la reconnaissance de formes, p.ex. d'empreintes digitales
  • G06K 9/62 - Méthodes ou dispositions pour la reconnaissance utilisant des moyens électroniques
  • G06N 3/02 - Réseaux neuronaux

40.

ARMED AERIAL PLATFORM

      
Numéro d'application IB2021057394
Numéro de publication 2022/069957
Statut Délivré - en vigueur
Date de dépôt 2021-08-11
Date de publication 2022-04-07
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Shitrit, Arik
  • Rubanenko, Assaf
  • Cohen, Shai

Abrégé

An armed aerial platform (100) includes a weapon for firing a projectile from a barrel (102) that defines a weapon axis (104). The weapon is supported by a single-axis gimbal mechanism (116) within a central vertical slot (112) in a rigid body (108) of a UAV (108) carried by a propulsion system (114) including at least four rotary propulsion units. The gimbal mechanism (116) provides an elevation adjustment of the weapon axis (104), while the azimuth adjustment is provided by motion of the UAV (108) itself.

Classes IPC  ?

  • B64C 39/02 - Aéronefs non prévus ailleurs caractérisés par un emploi spécial
  • B64D 7/06 - Agencement à bord aéronefs des équipements militaires, p. ex. des armes, des accessoires d'armement ou des blindages de protectionAdaptations des installations d'armement aux aéronefs les armes étant des armes à feu mobiles
  • F41A 23/56 - Dispositions pour redresser la plate-forme d'un canon dans sa position verticale ou horizontale

41.

FIN CONTROL ACTUATION SYSTEM

      
Numéro d'application IL2021051169
Numéro de publication 2022/070183
Statut Délivré - en vigueur
Date de dépôt 2021-09-29
Date de publication 2022-04-07
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Vainshtein, Alexander
  • Shneider, Michael

Abrégé

A mechanism for steering and maneuvering an airborne body comprised of at least one actuator comprising an electric motor having a first axis, and a gear transmission for transmitting power from the electric motor to an angular motion axis of a fin that has an angular motion around a second axis to steer the airborne body, and wherein the mechanism is characterized in that the gear transmission is a beveloid gear type of transmission, an airborne body that comprised the mechanism, and a method for achieving the desired flight path of an airborne body implementing the mechanism.

Classes IPC  ?

  • F42B 10/64 - Pilotage par le déplacement de surfaces portantes d'ailettes de pilotage
  • F42B 10/62 - Pilotage par le déplacement de surfaces portantes

42.

MULTIPLE COHERENT BEAM COMBINATION SYSTEMS WITH REDUCED NUMBER OF APERTURES

      
Numéro d'application IB2021057199
Numéro de publication 2022/049429
Statut Délivré - en vigueur
Date de dépôt 2021-08-05
Date de publication 2022-03-10
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Golubchik, Daniel
  • Shwa, David

Abrégé

A first transceiver has a beam emitter that generates first coherent beams, and first optics that direct the first coherent beams towards a target and collect radiation reflected from the target. A second transceiver has a beam emitter that generates second coherent beams, a detector, and second optics having an aperture. The second optics directs the second coherent beams towards the target via the aperture, collects radiation reflected from the target via the aperture, and guides a first radiation component of the collected radiation, that corresponds to the first coherent beams, to the detector. The detector generates, from the first radiation component, a signal indicative of an intensity of radiation impinging on the target corresponding to the first coherent beams. A control subsystem is associated with the transceivers and modifies at least one parameter of the first transceiver based on the intensity signal.

Classes IPC  ?

  • G02B 27/10 - Systèmes divisant ou combinant des faisceaux
  • G02B 26/06 - Dispositifs ou dispositions optiques pour la commande de la lumière utilisant des éléments optiques mobiles ou déformables pour commander la phase de la lumière
  • G02B 27/06 - Appareils pour regarder ou pour lire avec un effet cinématographique
  • G01S 7/481 - Caractéristiques de structure, p. ex. agencements d'éléments optiques
  • G01S 7/497 - Moyens de contrôle ou de calibrage
  • G02B 27/12 - Systèmes divisant ou combinant des faisceaux fonctionnant uniquement par réfraction
  • H01S 3/00 - Lasers, c.-à-d. dispositifs utilisant l'émission stimulée de rayonnement électromagnétique dans la gamme de l’infrarouge, du visible ou de l’ultraviolet
  • H01S 5/40 - Agencement de plusieurs lasers à semi-conducteurs, non prévu dans les groupes
  • H01S 3/10 - Commande de l'intensité, de la fréquence, de la phase, de la polarisation ou de la direction du rayonnement, p. ex. commutation, ouverture de porte, modulation ou démodulation
  • H01S 3/13 - Stabilisation de paramètres de sortie de laser, p. ex. fréquence ou amplitude

43.

MULTIPLE COHERENT BEAM COMBINATION SYSTEMS SHARING A COMMON RECEIVER

      
Numéro d'application IB2021057303
Numéro de publication 2022/049431
Statut Délivré - en vigueur
Date de dépôt 2021-08-08
Date de publication 2022-03-10
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Golubchik, Daniel

Abrégé

A targeting receiver operates with beam emitters. Each emitter generates coherent beams directed towards a target as a composite beam having an associated signature. For each composite beam, the target reflects a proportion of radiation intensity as a reflected radiation component. A receiver telescope collects target-reflected radiation and directs the radiation to a spatial filter. The reflected radiation includes radiation components, at least some of which are combined as a combined radiation composed of the reflected radiation components. Intensity of the combined radiation indicates the intensity of the composite beams impinging on the target. The spatial filter filters the reflected radiation by selectively passing the combined radiation. Each component of the combined radiation is identifiable by the signature associated with the composite beam corresponding to the component of the combined radiation. In certain embodiments, a distinguishing module is associated with the receiver and distinguishes the components based on the signature.

Classes IPC  ?

  • H01S 3/10 - Commande de l'intensité, de la fréquence, de la phase, de la polarisation ou de la direction du rayonnement, p. ex. commutation, ouverture de porte, modulation ou démodulation
  • G02B 27/10 - Systèmes divisant ou combinant des faisceaux
  • G01S 7/497 - Moyens de contrôle ou de calibrage
  • H01S 3/00 - Lasers, c.-à-d. dispositifs utilisant l'émission stimulée de rayonnement électromagnétique dans la gamme de l’infrarouge, du visible ou de l’ultraviolet
  • H01S 3/13 - Stabilisation de paramètres de sortie de laser, p. ex. fréquence ou amplitude
  • F41H 13/00 - Moyens d'attaque ou de défense non prévus ailleurs

44.

DYNAMIC FREQUENCY ALLOCATION METHOD

      
Numéro d'application IL2021050337
Numéro de publication 2022/003660
Statut Délivré - en vigueur
Date de dépôt 2021-03-25
Date de publication 2022-01-06
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Arad, Dror

Abrégé

A process for determining frequency allocations for efficient spectrum management and reuse, in communication between multiple users of moving platforms and ground stations using directional antennas, comprises: (a) generating a preferential ranking list; and (b) repeatedly recalculating desirable frequency allocations for communication between platforms and stations according to said preferential ranking list and user-to-user interference data.

Classes IPC  ?

  • H04W 36/30 - La resélection étant déclenchée par des paramètres spécifiques par des données de mesure ou d’estimation de la qualité des liaisons
  • H04W 76/00 - Gestion de la connexion
  • H04B 7/26 - Systèmes de transmission radio, c.-à-d. utilisant un champ de rayonnement pour communication entre plusieurs postes dont au moins un est mobile

45.

PNEUMATIC ACTUATOR

      
Numéro d'application IB2021053409
Numéro de publication 2021/220129
Statut Délivré - en vigueur
Date de dépôt 2021-04-26
Date de publication 2021-11-04
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Hikind, Yuval
  • Shragai, Rei

Abrégé

A pneumatic actuator for imparting velocity to a resting object, comprising a fixed member and a ram, the ram having two or more generally elongated ram members, wherein the fixed member is formed with a base plate having an inlet hole therethrough, the ram members are formed and disposed concentrically about the center axis so as to lie one within another and to move in a telescopic arrangement, the innermost one of the ram members is configured to enable it to be driven by any pressurized gas fed through the inlet hole and to drive the object, and each of the other ram members is configured to move only behind the innermost ram member; the actuator being operative to move the innermost ram member along its entire range of motion and thereby impart velocity to the object.

Classes IPC  ?

  • F15B 15/16 - Dispositifs actionnés par fluides pour déplacer un organe d'une position à une autreTransmission associée à ces dispositifs caractérisés par la structure de l'ensemble moteur le moteur étant du type à cylindre droit du type télescopique
  • F15B 15/14 - Dispositifs actionnés par fluides pour déplacer un organe d'une position à une autreTransmission associée à ces dispositifs caractérisés par la structure de l'ensemble moteur le moteur étant du type à cylindre droit
  • F15B 15/19 - Vérins pyrotechniques

46.

GEAR LOCKING MECHANISM

      
Numéro d'application IB2020062281
Numéro de publication 2021/165741
Statut Délivré - en vigueur
Date de dépôt 2020-12-21
Date de publication 2021-08-26
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Magazinnik, Dan

Abrégé

A gear locking mechanism includes a gear (or a sprocket wheel) having a series of substantially identical teeth and a locking tongue having a tooth (or teeth) configured in a locked position to engage the gear or sprocket wheel between any two of the series of substantially identical teeth of the gear or sprocket wheel. An anchoring structure restricts a degree of rotation of at least a portion of the locking tongue in the locked position. In the unlocked position, the restriction on the freedom of rotation is released. The locking tongue divided by a fixed pivot includes a movable distal portion of a see-saw having the tooth with the anchoring structure exerting a force against the proximal portion. Alternatively, the locking tongue rotates on a pin on a distal end and the anchoring structure urges a proximal portion toward the gear to lock.

Classes IPC  ?

47.

THERMOPLASTIC CANISTER

      
Numéro d'application IL2021050159
Numéro de publication 2021/161308
Statut Délivré - en vigueur
Date de dépôt 2021-02-10
Date de publication 2021-08-19
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Perez, Yatir
  • Redlich, Yoav
  • Ben-Zvi, Itai

Abrégé

A canister for storing and launching a self-propelled projectile comprises: a) an inner layer comprising an aluminum foil; b) a top layer consisting of an injected thermoplastic polymer; and c) optionally, a primer and/or a topcoat.

Classes IPC  ?

  • F42B 5/29 - Douilles en métal constituées par l'assemblage d'au moins trois éléments enroulées à partir de feuilles ou de bandes
  • F42B 5/02 - Cartouches, c.-à-d. projectile et douille avec charge propulsive formant un tout
  • F42B 5/10 - Cartouches, c.-à-d. projectile et douille avec charge propulsive formant un tout avec balle autopropulsée
  • F42B 5/28 - Douilles en métal
  • F42B 5/297 - Douilles en métal comportant un revêtement avec de la matière plastique
  • F42B 12/76 - Projectiles ou mines caractérisés par la charge militaire, l'effet recherché ou le matériau caractérisés par le matériau utilisé pour le boîtier ou l'enveloppe
  • F42B 15/00 - Projectiles autopropulsés, p. ex. roquettesMissiles
  • C08J 5/04 - Renforcement des composés macromoléculaires avec des matériaux fibreux en vrac ou en nappes

48.

ULTRA-WIDEBAND ATTENUATOR WITH LOW PHASE VARIATION AND IMPROVED STABILITY WITH RESPECT TO TEMPERATURE VARIATIONS

      
Numéro d'application IL2020051231
Numéro de publication 2021/111434
Statut Délivré - en vigueur
Date de dépôt 2020-11-29
Date de publication 2021-06-10
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Jameson, Samuel

Abrégé

12112a12b22a2b1212a3a22b 3b13a23b2a2b3a3b3b by the second control input; controlling the first and the second control inputs to obtain a desired attenuation between the input and output of the attenuator.

Classes IPC  ?

  • H03H 11/24 - Atténuateurs indépendants de la fréquence
  • H03H 7/25 - Affaiblisseurs indépendants de la fréquence comprenant un élément commandé par une variable électrique ou magnétique

49.

A COMPACT SINGLE STAGE WIDEBAND POWER AMPLIFIER

      
Numéro d'application IL2020051126
Numéro de publication 2021/084536
Statut Délivré - en vigueur
Date de dépôt 2020-10-29
Date de publication 2021-05-06
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Jameson, Samuel

Abrégé

A power amplifier with improved stability, gain, flatness and return loss and reduced the size, which comprises a two-stage power amplifier in balanced cascode topology that consists of a first common-source stage feeding into a first common-gate stage; a second common-source stage feeding into a second common-gate stage; an input matching network for matching the input impedance of the a two-stage power amplifier to a desired signal source impedance; an output matching network for matching the output impedance of the a two-stage power amplifier to a desired load; a first positive feedback path between the gate of the first common-source stage and the drain of the second common- gate (CG) stage and a second positive feedback path between the gate of the second common-source stage and the drain of the first common-gate (CG) stage; a first negative feedback path between the drain of the first common-gate (CG) stage and the gate of the first common-source stage and a second negative feedback path between the drain of the second common-gate (CG) stage and the gate of the second common-source stage; a first inter-stage matching network between the first common-source(CS) stage and the first common-gate (CG) stage; and a second inter-stage matching network between the second common-source(CS) stage and the second common-gate (CG) stage.

Classes IPC  ?

  • H03F 1/22 - Modifications des amplificateurs pour réduire l'influence défavorable de l'impédance interne des éléments amplificateurs par utilisation de couplage dit "cascode", c.-à-d. étage avec cathode ou émetteur à la masse suivi d'un étage avec grille ou base à la masse respectivement
  • H03F 1/34 - Circuits à contre-réaction avec ou sans réaction
  • H03F 3/45 - Amplificateurs différentiels

50.

DIELECTRIC HIGH GRADIENT INSULATOR AND METHOD OF MANUFACTURE

      
Numéro d'application IB2020058949
Numéro de publication 2021/059193
Statut Délivré - en vigueur
Date de dépôt 2020-09-24
Date de publication 2021-04-01
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Zamir, Shai
  • Sakajio, Michal

Abrégé

A dielectric high gradient insulator device comprises a stack of at least two dielectric layers which are in physical contact with each other and which have different dielectric constants. At least two dielectric layers are configured to form a shaped electric field, when the device is placed between electrodes having a voltage difference. The shaped electric field is in a region proximal to a surface of the at least two dielectric layers, and causes deflection of negatively charged particles away from the surface, thereby inhibiting voltage breakdown of the device. A method of manufacturing the device is also presented.

Classes IPC  ?

  • H01B 3/12 - Isolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances inorganiques céramiques
  • H05H 7/22 - Détails d'accélérateurs linéaires, p. ex. tubes de glissement

51.

OPTICAL SCANNING MIRROR ASSEMBLY

      
Numéro d'application IL2020050657
Numéro de publication 2020/255118
Statut Délivré - en vigueur
Date de dépôt 2020-06-14
Date de publication 2020-12-24
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Lahav, Oded

Abrégé

A total inner reflection (TIR) prism comprises two essentially triangular prisms separated by an optical coating or by a thin layer of air, wherein one of said two triangular prisms is shaped as an isosceles triangle.

Classes IPC  ?

  • G02B 13/00 - Objectifs optiques spécialement conçus pour les emplois spécifiés ci-dessous
  • G02B 5/04 - Prismes

52.

A METHOD FOR IMPRINTING MICROPATTERNS ON A SUBSTRATE OF A CHALCOGENIDE GLASS

      
Numéro d'application IL2020050574
Numéro de publication 2020/240546
Statut Délivré - en vigueur
Date de dépôt 2020-05-26
Date de publication 2020-12-03
Propriétaire
  • B.G. NEGEV TECHNOLOGIES & APPLICATIONS LTD., AT BEN-GURION UNIVERSITY (Israël)
  • RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Schvartzman, Mark
  • Yehuda, Dor
  • Kassis, Evyatar
  • Joseph, Shay

Abrégé

T>Tgg g g is the glass transition temperature of chalcogenide-glass, and (ii) applying a controlled pressure on the mold to effect penetration to the top surface of the chalcogenide-glass substrate, thereby to replicate the pattern of the mold to the top surface of the substrate; and (C) separating the operational mold from the patterned substrate.

Classes IPC  ?

  • B81C 1/00 - Fabrication ou traitement de dispositifs ou de systèmes dans ou sur un substrat
  • G03F 7/00 - Production par voie photomécanique, p. ex. photolithographique, de surfaces texturées, p. ex. surfaces impriméesMatériaux à cet effet, p. ex. comportant des photoréservesAppareillages spécialement adaptés à cet effet

53.

TRANSFORMER-BASED MATCHING NETWORK FOR ENHANCED IC DESIGN FLEXIBILITY

      
Numéro d'application IL2020050132
Numéro de publication 2020/161705
Statut Délivré - en vigueur
Date de dépôt 2020-02-04
Date de publication 2020-08-13
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Jameson, Samuel

Abrégé

An Integrated Circuit (IC) containing at least one printed transformer-based matching network, which comprises: a) at least one printed transformer-based matching network with reduced size, which comprises a printed transformer with multiple internal ports in the form of electromagnetic discontinuities, introduced along the transverse dimension of the printed transformer; reactive elements, added to of the internal ports to thereby increase the order of the transformer-based matching network, the one or more reactive elements are printed along the transverse dimension of the matching network; a printed component connected to the input port of the matching network; a printed component connected to the output port of the matching network.

Classes IPC  ?

  • H01F 17/00 - Inductances fixes du type pour signaux
  • H01F 27/29 - BornesAménagements de prises
  • H01F 27/28 - BobinesEnroulementsConnexions conductrices

54.

ROCKET ARMAMENT LAUNCHABLE FROM A TUBULAR LAUNCHER WITH AN OUTSIDE LAUNCHER NON-IGNITION SECURING AND MOTOR SEPARATION DURING FLIGHT

      
Numéro d'application IL2019050852
Numéro de publication 2020/026233
Statut Délivré - en vigueur
Date de dépôt 2019-07-28
Date de publication 2020-02-06
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Tal, Nadav
  • Teper, Yossi
  • Guller, Evgeny
  • Ziv, Jakov

Abrégé

Rocket armament launchable from a tubular launcher with an outside launcher non-ignition securing and motor separation during flight and a method to prevent the ignition of the armament's rocket even in the event of actuation of the armament's pyrotechnic assembly, which normally serves to eject the armament from the launcher and to ignite its rocket motor, wherein the armament comprises a gas dispersion assembly, which when the armament is not encased in the tubular launcher, prevents the ignition of the rocket motor even if the armament's pyrotechnic assembly is actuated; and a cutting and separation assembly that is actuated by the pressure of the rocket motor gases for mechanically cutting a structural connection between the rocket motor and the armament's effective payload and separate them during their flight.

Classes IPC  ?

  • F42C 15/28 - Dispositifs d'armement des fuséesDispositifs de sécurité pour empêcher l'explosion prématurée des fusées ou des charges actionnés par l'écoulement d'un matériau fluent, p. ex. du plomb, un fluide
  • F41F 3/045 - Lanceurs de roquettes ou de torpilles pour roquettes adaptés pour être transportés et utilisés par une personne, p. ex. bazookas
  • F42B 30/04 - Grenades à fusil

55.

COHERENT BEAM COMBINATION (CBC) SYSTEMS AND METHODS

      
Numéro d'application IB2019056151
Numéro de publication 2020/016824
Statut Délivré - en vigueur
Date de dépôt 2019-07-18
Date de publication 2020-01-23
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Golubchik, Daniel
  • Segev, Yehonathan
  • Shwa, David

Abrégé

abcc) generating coherent beams directed towards a target (T). The phase modulators (14a, 14b and 14c) allow adjustment of relative phase offsets of the beams. A detector (16) monitors an intensity of the radiation impinging on an area of the target (T). A controller (18) receives the intensity parameter and controls a phase adjustment of the beams according to a deterministic (i.e., quantitative) measurement of a phase offset of each beam relative to a representative phase of the sum of all the other beams. This is achieved by using interferometric techniques, referred to herein as Target In-the-Loop Interferometry (TILI).

Classes IPC  ?

  • G02B 27/10 - Systèmes divisant ou combinant des faisceaux
  • G01S 7/481 - Caractéristiques de structure, p. ex. agencements d'éléments optiques
  • H01S 3/13 - Stabilisation de paramètres de sortie de laser, p. ex. fréquence ou amplitude
  • B23K 26/70 - Opérations ou équipement auxiliaires

56.

APPARATUS AND METHOD FOR OPERATING A HEATERLESS HOLLOW CATHODE, AND AN ELECTRIC SPACE PROPULSION SYSTEM EMPLOYING SUCH A CATHODE

      
Numéro d'application IL2017051341
Numéro de publication 2019/116361
Statut Délivré - en vigueur
Date de dépôt 2017-12-12
Date de publication 2019-06-20
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD (Israël)
Inventeur(s)
  • Lev, Dan
  • Mikitchuk, Demitiri
  • Gal, Alon

Abrégé

A heaterless hollow cathode provides electron emission current in an electric space propulsion system. A mechanical, thermal, and electromagnetic design of the cathode apparatus is presented, and a method of operation for rapid ignition and stabilization of the cathode is provided. The keeper of the cathode apparatus has a thickness change which reduces the flow of heat away from the cathode's emitter assembly. The method for heating the emitter assembly includes controlling applied voltages so that the current flowing from the emitter assembly to the keeper is maintained at a predetermined fixed value. By this method, damage to the electron emitting surfaces of the emitter assembly by electric arcing and/or by depletion of dopant materials is avoided.

Classes IPC  ?

  • F03H 1/00 - Utilisation du plasma pour produire une poussée propulsive par réaction
  • H01J 27/00 - Tubes à faisceau ionique

57.

NON-ICING SURFACES

      
Numéro d'application IL2018050886
Numéro de publication 2019/043686
Statut Délivré - en vigueur
Date de dépôt 2018-08-09
Date de publication 2019-03-07
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Amsalem, Jakob
  • Breuer, Orna
  • Marmur, Avraham

Abrégé

A coating applied to a surface to minimize or prevent the ability of drops of super-cooled water that impact on the surface from transforming into ice, comprises one or more layers collectively providing: a) thermal insulation between the surface to be protected and the drop; and b) a superhydrophobic surface on the top.

Classes IPC  ?

  • B64D 15/00 - Dégivrage ou antigivre des surfaces externes des aéronefs
  • C09K 3/18 - Substances non couvertes ailleurs à appliquer sur des surfaces pour y minimiser l'adhérence de la glace, du brouillard ou de l'eauSubstances antigel ou provoquant le dégel pour application sur des surfaces
  • C08J 9/32 - Mise en œuvre de substances macromoléculaires pour produire des matériaux ou objets poreux ou alvéolairesLeur post-traitement à partir de compositions contenant des microbilles, p. ex. mousses syntactiques
  • C08J 9/34 - Caractéristiques chimiques de la fabrication d'objets constitués par un cœur macromoléculaire sous forme de mousse avec une couche superficielle macromoléculaire d'une densité supérieure à celle du cœur
  • B05D 1/02 - Procédés pour appliquer des liquides ou d'autres matériaux fluides aux surfaces réalisés par pulvérisation
  • B32B 7/02 - Propriétés physiques, chimiques ou physicochimiques

58.

COMPONENTS AND CORRESPONDING METHODS OF MANUFACTURE PROVIDING VIBRATION-DAMPING PROPERTIES

      
Numéro d'application IL2018050126
Numéro de publication 2018/163147
Statut Délivré - en vigueur
Date de dépôt 2018-02-05
Date de publication 2018-09-13
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Setter, Eyal
  • Privman, Neta

Abrégé

A manufacturing process and corresponding mechanical components are formed by additive manufacturing so as to include fully encapsulated cavities containing powder, typically deployed in distributed locations within the component, so as to increase the damping properties of the component compared to a similar component without such cavities. Since the filled cavities are completely enclosed, they do not impinge on the overall performance characteristics of the component and do not require maintenance.

Classes IPC  ?

  • F16F 9/30 - Ressorts, amortisseurs de vibrations, amortisseurs de chocs ou amortisseurs de mouvement de structure similaire, utilisant un fluide ou moyen équivalent comme agent d'amortissement avec un matériau solide ou semi-solide, p. ex. des masses pâteuses, comme agent d'amortissement
  • B28B 1/00 - Fabrication d'objets façonnés à partir du matériau
  • B28B 7/04 - Moules à éléments réglables un ou plusieurs éléments étant montés sur pivots
  • B28B 5/00 - Fabrication d'objets façonnés à partir du matériau dans des moules ou sur des surfaces de moulage, supportés ou constitués par des transporteurs à l'intérieur ou sur ceux-ci, quel que soit le mode de façonnage

59.

A SYSTEM AND METHOD FOR THE INSPECTION AND DETECTION OF COATING DEFECTS

      
Numéro d'application IL2018050166
Numéro de publication 2018/154562
Statut Délivré - en vigueur
Date de dépôt 2018-02-13
Date de publication 2018-08-30
Propriétaire
  • D.I.R. TECHNOLOGIES (DETECTION IR) LTD. (Israël)
  • RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Aharonov, Erez
  • Pinsky, Ephraim

Abrégé

A coating-defect inspection and detection system for coated articles, comprises: a) at least one light source; b) at least one image-capturing device; and c) a graphic processing unit in which the beam of said light source and the field of view of said image-capturing device overlap in the inspection area, and are aimed toward said products from different directions; and in which said image-capturing device communicates with said graphic processing unit, which is suitable to analyze the quality of the coating and/ or surface and/ or shape appearing in the captured images by the light-and-shadow effects created by said light source.

Classes IPC  ?

  • G06N 3/063 - Réalisation physique, c.-à-d. mise en œuvre matérielle de réseaux neuronaux, de neurones ou de parties de neurone utilisant des moyens électroniques
  • G06K 9/00 - Méthodes ou dispositions pour la lecture ou la reconnaissance de caractères imprimés ou écrits ou pour la reconnaissance de formes, p.ex. d'empreintes digitales

60.

A SYSTEM FOR QUICK ARMING OF DETONATION OR EXCITATION ASSEMBLY

      
Numéro d'application IL2018050074
Numéro de publication 2018/134826
Statut Délivré - en vigueur
Date de dépôt 2018-01-21
Date de publication 2018-07-26
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Tamar, Michael
  • Levi, Avraham
  • Vainshtein, Lavi

Abrégé

A system for quick arming of a detonation or excitation assembly, wherein the system comprises a first barrier means which, as long as it has not been removed, prevents full activation of an initiation chain of the assembly, and whose removal is dependent on receiving indication from at least one first sensor, and then its removal is reversible in a manner that it will return and once again prevent full activation of an initiation chain, and a second barrier means which also prevents full activation of the initiation chain as long as it has not been removed, and whose removal is dependent on receiving indication from at least one second sensor, and this - following after receiving indication from the first sensor, and removal of the second sensor is irreversible in a manner that leaves the initiation chain executable, and wherein the first and second sensors are independent of one another, and as long as no indication has been received from the second sensor, the first barrier means is returnable to its place in a manner that will return and once again prevent full activation of the initiation chain, and an active protection system utilizing a plurality of those quick arming system for activation of the protection system's interceptors while implementing a method for quick and selective arming of the active protection system's detonation or excitation assemblies.

Classes IPC  ?

  • F41H 11/00 - Installations de défenseDispositifs de défense Moyens destinés à déminer ou à détecter les mines terrestres
  • F41H 7/00 - Véhicules blindés ou armés
  • F42C 15/00 - Dispositifs d'armement des fuséesDispositifs de sécurité pour empêcher l'explosion prématurée des fusées ou des charges
  • F41H 5/00 - BlindagePlaques de blindageBoucliers

61.

SYSTEM FOR BALANCING A SERIES OF CELLS

      
Numéro d'application IL2018050077
Numéro de publication 2018/134827
Statut Délivré - en vigueur
Date de dépôt 2018-01-22
Date de publication 2018-07-26
Propriétaire
  • B.G. NEGEV TECHNOLOGIES AND APPLICATIONS LTD., AT BEN-GURION UNIVERSITY (Israël)
  • RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Peretz, Mor Mordechai
  • Zeltser, Ilya

Abrégé

The invention relates to hierarchical-hybrid system for balancing a series of cells, said cells are divided into m modules, each module having k cells, which comprises: (A) one or two central cells in each module and additional neighboring cells, each neighboring cell being adjacent to one of said central cells; (B) two local capacitors within a local section of each module, each of said local capacitors being periodically, repeatedly, and alternately connected (a) in parallel to one of said neighboring cells, or (b) in parallel to a respective central cell; (C) one global capacitor at a global section of each module which is common to all said modules, said global capacitor receiving respective charging signals either directly or through an isolation element, separately or simultaneously from several central cells of different of said modules, thereby to charge said global capacitor to a voltage level which is identical or proportional to the average voltage level of said central cells of all said different modules;(D) a plurality of controlled switches for carrying out said alternate connections of said local capacitors, and for forming said charging signals that are provided to said global capacitor; and (E) a controller for controlling the opening and closure of said controlled switches; wherein some of said controlled switches that are used to alternately connect said local capacitors to the respective cells at each module are also commonly used at said module to simultaneously produce said charging signals for charging the global capacitor; and wherein a connecting circuitry which comprises one or more reactive components and at least a portion of said controlled switches is used to connect said local section of each module to said global section.

Classes IPC  ?

  • H02J 7/16 - Régulation du courant ou de la tension de charge par variation de champ
  • H02J 7/18 - Régulation du courant ou de la tension de charge par variation de champ due à la variation de résistance ohmique dans un circuit de champ, utilisant l'insertion ou le retrait pas à pas d'une résistance dans un circuit

62.

UNIFIED BOOSTER FOR ARTILLERY MUNITION FUSES ENABLING DETONATING OF BOTH EXPLOSION AND EJECTION TYPE SHELLS

      
Numéro d'application IL2017051392
Numéro de publication 2018/122846
Statut Délivré - en vigueur
Date de dépôt 2017-12-27
Date de publication 2018-07-05
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Weitz, Amir
  • Silberman, Iris
  • Tananboum, Zach

Abrégé

A unified booster for artillery ammunition fuses, that enables initiating both explosive type shells as well as ejection type shells, wherein the booster component is installable in continuation to the detonator component and the lead charge, that are usually installed in various artillery ammunition fuses, as a part of their detonation chain, and wherein the booster component is formed as a charge of explosive material that a flyer plate is installed at its one end that from the instant of installing the booster component in the fuse and mounting the fuse at the head of the shell is turned towards the shell's charge to be initiated.

Classes IPC  ?

  • C06C 7/02 - FabricationEmballage
  • F42B 3/00 - Cartouches de sautage, c.-à-d. enveloppes avec explosif

63.

REACTIVE ARMOUR

      
Numéro d'application IL2017051390
Numéro de publication 2018/122844
Statut Délivré - en vigueur
Date de dépôt 2017-12-27
Date de publication 2018-07-05
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Glikin, Leonid
  • Silberman, Iris
  • Friling, Samuel
  • Benyami, Moshe

Abrégé

A rigid or flexible protection element for reactive protection against shaped charge warheads and kinetic energy projectiles comprises a metallic or ceramic powder dispersed within a matrix of plastic explosive and a binder.

Classes IPC  ?

64.

SYSTEM AND METHOD FOR AUTOMATIC INSPECTION AND CLASSIFICATION OF DISCRETE ITEMS

      
Numéro d'application IL2017050990
Numéro de publication 2018/078613
Statut Délivré - en vigueur
Date de dépôt 2017-09-04
Date de publication 2018-05-03
Propriétaire
  • D.I.R. TECHNOLOGIES (DETECTION IR) LTD. (Israël)
  • RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Pinsky, Ephraim
  • Peles, David
  • Markowitz, Zvi
  • Immer, Efrat

Abrégé

A method for inspecting and classifying discrete items comprises capturing the images of a free-falling item using at least one imaging device and analyzing the captured images using a neural network which has been trained using images and/or simulated images of regular products, defected products and Mix-Ups.

Classes IPC  ?

  • B65B 57/14 - Dispositifs de commande automatique, de vérification, d'alarme ou de sécurité sensibles à l'absence, à la présence, à l'alimentation anormale ou au mauvais positionnement des objets ou matériaux à emballer et dont le fonctionnement commande ou arrête l'alimentation des objets ou matériaux à emballer
  • G06K 9/46 - Extraction d'éléments ou de caractéristiques de l'image

65.

EXPLOSIVE SYSTEM

      
Numéro d'application IL2017050968
Numéro de publication 2018/047160
Statut Délivré - en vigueur
Date de dépôt 2017-08-30
Date de publication 2018-03-15
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD (Israël)
Inventeur(s) Mandelbaum, Shlomo

Abrégé

An explosive system and corresponding method employ a number of explosive portions, each of sub-critical dimensions so that initiation of the portion would result in incomplete detonation. A selectively-deployable spacer arrangement or deployment mechanism is deployed between a storage state in which gaps or misalignments are maintained between the explosive portions so that the explosive system remains undetonatable, and a detonable state in which the portions are brought together sufficiently to function as a combined explosive charge having effective dimensions larger than critical dimensions, rendering the explosive system detonatable.

Classes IPC  ?

  • F42B 12/02 - Projectiles ou mines caractérisés par la charge militaire, l'effet recherché ou le matériau caractérisés par la nature de la charge militaire ou par l'effet recherché
  • F42B 12/20 - Projectiles ou mines caractérisés par la charge militaire, l'effet recherché ou le matériau caractérisés par la nature de la charge militaire ou par l'effet recherché du type à explosif brisant

66.

LOW-COST PROCESS OF MANUFACTURING TRANSPARENT SPINEL

      
Numéro d'application IL2017050642
Numéro de publication 2018/015941
Statut Délivré - en vigueur
Date de dépôt 2017-06-08
Date de publication 2018-01-25
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Shenhar, Anat
  • Meltzman, Hila
  • Blumer, Dvir
  • Kadosh, Tamar
  • Bar-Ziv, Shimshon

Abrégé

The invention provides ballistic-resistant transparent objects of complex shapes consisting of magnesium aluminate spinel. The invention also provides a cost-effective industrial process for making the objects, including slip casting and sintering.

Classes IPC  ?

  • C04B 35/632 - Additifs organiques
  • C04B 35/443 - Spinelle d'aluminate de magnésium
  • C04B 35/626 - Préparation ou traitement des poudres individuellement ou par fournées
  • C04B 35/645 - Frittage sous pression
  • C01F 7/16 - Préparation des aluminates de métaux alcalino-terreux ou des aluminates de magnésiumOxyde ou hydroxyde obtenus à partir de ceux-ci
  • F41H 5/00 - BlindagePlaques de blindageBoucliers

67.

SYSTEM AND METHOD FOR DETECTING A CYBER-ATTACK AT SCADA/ICS MANAGED PLANTS

      
Numéro d'application IL2016051268
Numéro de publication 2017/090045
Statut Délivré - en vigueur
Date de dépôt 2016-11-25
Date de publication 2017-06-01
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Arov, Michael
  • Ochman, Ronen
  • Cohen, Moshe

Abrégé

System for detecting a cyber-attack inflicted by an attacker seeking to cause physical damage to, or harm functionality of, a SCADA system managed plant, comprising passively connected to the SCADA system. Each of the industrial computerized devices comprises a processor that is configured with a data validation module to determine whether data flow outputted from a SCADA- connected controller, adapted to command operation of each electromechanical component of a corresponding controlled subsystem of the plant, is authentic, and with an alert issuing mechanism that is activated following detection that the outputted data flow is indicative of a cyber-attack perpetrated with respect to the controller. The at least one dedicated industrial computerized device is operable to passively monitor in parallel, by the one or more dedicated industrial computerized device, data communicated between each of the controllers and the SCADA system including the outputted data at the nearest points of each of the controllers; seek, by the one or more dedicated industrial computerized devices, mismatches between the plant state and the physical operation model; if a mismatch is detected, determine by the dedicated industrial computerized device whether the mismatch is indicative of a cyber-attack perpetrated with respect to one of the controllers or an operational malfunction; and upon detecting a cyber- attack, activate the alert issuing mechanism to issue a security alert.

Classes IPC  ?

  • G06F 21/50 - Contrôle des utilisateurs, des programmes ou des dispositifs de préservation de l’intégrité des plates-formes, p. ex. des processeurs, des micrologiciels ou des systèmes d’exploitation
  • G06F 11/00 - Détection d'erreursCorrection d'erreursContrôle de fonctionnement
  • H04L 12/12 - Dispositions pour la connexion ou la déconnexion à distance de sous-stations ou de leur équipement

68.

CASSEGRAIN TELESCOPE WITH ANGLED REFLECTOR

      
Numéro d'application IL2016050034
Numéro de publication 2016/125135
Statut Délivré - en vigueur
Date de dépôt 2016-01-13
Date de publication 2016-08-11
Propriétaire RAFAEL - ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Eisenberg, Shai
  • Lamin, Alexander
  • Danziger, Yochay

Abrégé

A Cassegrain optical system has a concave primary mirror deployed for receiving incident electromagnetic radiation and generating once-reflected rays, a convex secondary mirror deployed for receiving the once-reflected rays and generating twice-reflected rays, a tertiary reflector deployed for receiving the twice-reflected rays and generating thrice-reflected rays, and a beam-folding optical element deployed between the primary mirror and the secondary mirror for deflecting the thrice-reflected rays laterally so as to exit a volume between the primary and secondary mirrors.

Classes IPC  ?

  • G02B 23/06 - Télescopes ou lunettes d'approche, p. ex. jumellesPériscopesInstruments pour voir à l'intérieur de corps creuxViseursPointage optique ou appareils de visée comprenant des prismes ou des miroirs ayant une action de mise au point, p. ex. miroir parabolique
  • G02B 17/06 - Systèmes catoptriques, p. ex. systèmes redressant et renversant une image utilisant uniquement des miroirs

69.

WARHEAD FOR GENERATING A BLAST ON AN EXTENDED REGION OF A TARGET SURFACE

      
Numéro d'application IL2015051097
Numéro de publication 2016/098096
Statut Délivré - en vigueur
Date de dépôt 2015-11-15
Date de publication 2016-06-23
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Teper, Yosef
  • Nadav, Tal
  • Laos, Vitali

Abrégé

The present invention relates to warheads with blast wave conditioners and in particular to devices for quickly removing a door to permit entry through the doorway. It discloses a device and method of shaping the pressure wave pattern by the use of inert material. The inert material of the present invention is used to reduce localized directional effects occurring at the point of impact, instead generating a more diffuse pressure-wave pattern across the target surface.

Classes IPC  ?

  • F42B 5/145 - Cartouches, c.-à-d. projectile et douille avec charge propulsive formant un tout pour libérer des gaz, des vapeurs, des poudres, des particules ou des substances à réaction chimique
  • F42B 30/04 - Grenades à fusil

70.

METHODS AND APPARATUS FOR CONTROLLING THE DYNAMIC RANGE OF QUANTUM SENSORS

      
Numéro d'application IL2015051114
Numéro de publication 2016/084063
Statut Délivré - en vigueur
Date de dépôt 2015-11-19
Date de publication 2016-06-02
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Ben Itzhak, Segev
  • Peleg, Or

Abrégé

A co-magnetometer gyroscope comprises a cell containing an alkali-metal and a noble-gas, the alkali-metal vapor being optically pumped with a pump laser circularly polarized and tuned to the D1 resonance, and a probe laser, linearly polarized and off- resonant, which passes through the cell perpendicular to the pump laser and measures the transverse component of the alkali-metal atoms spin polarization through optical rotation of the linearly polarized light, circuitry being provided suitable to dynamically change the optical pumping rate, thereby to obtain a high dynamic range.

Classes IPC  ?

  • G01V 3/18 - Prospection ou détection électrique ou magnétiqueMesure des caractéristiques du champ magnétique de la terre, p. ex. de la déclinaison ou de la déviation spécialement adaptée au carottage

71.

A VALVE WITH A SHAPE MEMORY ALLOY BASED ACTUATOR

      
Numéro d'application IL2015050871
Numéro de publication 2016/035067
Statut Délivré - en vigueur
Date de dépôt 2015-08-30
Date de publication 2016-03-10
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD (Israël)
Inventeur(s) Valentin, Nov

Abrégé

A single one time use valve, based on a Shape Memory Alloy (hereinafter - SMA) actuating component, wherein the valve comprises a nipple component given to shearing and shoving from the instant of its being severed off, in a manner that enables passage of the gas or the liquid from the valve's inlet flow opening to the valve's outlet flow opening wherein the valve is a valve of the normally closed type, or enables stopping of said gas or liquid passage from the inlet flow opening to the outlet flow opening, wherein the valve is a valve of the normally open type, and wherein the valve is characterized by that the inlet flow opening and outlet flow opening are formed substantially on at least one plain, that extends in its direction wherein it is substantially orthogonal to the valve's house assembly lengthwise axis and wherein a physical demarcation exists all the time between the gas or liquid to the valve's SMA made actuating component.

Classes IPC  ?

  • F01B 29/10 - Machines motrices
  • F16K 31/02 - Moyens de fonctionnementDispositifs de retour à la position de repos électriquesMoyens de fonctionnementDispositifs de retour à la position de repos magnétiques

72.

DIRECTED ENERGY WEAPON

      
Numéro d'application IL2015050682
Numéro de publication 2016/024265
Statut Délivré - en vigueur
Date de dépôt 2015-07-02
Date de publication 2016-02-18
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Segev, Yehonatan
  • Swirski, Yochay
  • Yosub, Shay
  • Itovich, Yan

Abrégé

The present invention relates to directed energy weapons and, in particular, it concerns directed energy weapons based on fiber lasers for use against a target, the weapon comprising: (a) a plurality of laser units, each of the laser units comprising: (i) a fiber laser generating an output beam from a fiber, the output beam conveying power of at least 1 kW, (ii) an objective lens arrangement for focusing the output beam into a focused beam directed towards the target, and (iii) a tine adjustment mechanism for adjusting a direction of the focused beam; (b) for each of the laser units, a beam deflector arrangement deployed to deflect a portion of the focused beam as a deflected beam in a direction in predefined relation to a direction of the focused beam; (c) an angle sensing unit deployed for receiving the deflected beams and generating an output indicative of a current direction of the deflected beam for each of the laser units; and (d) a controller associated with the angle sensing unit and the fine adjustment mechanisms, the controller being configured to actuate the fine adjustment mechanisms based on the output from the angle sensing unit to maintain a desired relative alignment between the directions of the focused beams.

Classes IPC  ?

  • F41H 13/00 - Moyens d'attaque ou de défense non prévus ailleurs
  • H01S 3/23 - Agencement de plusieurs lasers non prévu dans les groupes , p. ex. agencement en série de deux milieux actifs séparés

73.

OBJECT DETECTION SYSTEM

      
Numéro d'application IL2015050694
Numéro de publication 2016/009422
Statut Délivré - en vigueur
Date de dépôt 2015-07-05
Date de publication 2016-01-21
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s) Lavi, Dov

Abrégé

The invention relates to an optical system for the detection of a flying or moving object approaching a target, which comprises^ (a) one or more transmitter-receiver sets positioned at an external surface of a wall of said target, each of said transmitter-receiver sets comprising: (a.l) a light transmitter for creating a fan-like planar or curved optical curtain in front of said wall of the target; (a.2) a receiver which comprises a two-dimensional focal plane array, said focal plane array being spaced apart from said transmitter and being positioned at a plane not parallel to said optical curtain such that a field of view of said focal plane array covers at least a portion of the entire area of said optical curtain; and (b) one or more processing units for determining at least a location of intrusion of said flying object to within said optical curtain by means of determining pixels within said focal plane array that are affected by reflections or scatter due to said intrusion of said flying object.

Classes IPC  ?

  • G01S 17/06 - Systèmes déterminant les données relatives à la position d'une cible

74.

SYSTEM AND METHOD FOR NEUTRALIZING SHAPED-CHARGE THREATS

      
Numéro d'application IL2015050432
Numéro de publication 2015/166483
Statut Délivré - en vigueur
Date de dépôt 2015-04-27
Date de publication 2015-11-05
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Rahav, Shahar
  • Ben Ezra, Elad
  • Magen, Nitzan
  • Hazan, Gili
  • Glikin, Leonid

Abrégé

The invention relates to an interceptor type system for neutralizing a shaped charge threat, which comprises: (a) a detection system for detecting an approach of a shaped charge projectile, for calculating upon such detection its course of approach, and for activating an interceptor to create a flux of intercepting fragments within a destruction corridor; and (b) one or more of said interceptors, each comprising one or more magazines of fragments, each magazine comprises said fragments and an explosive layer which in turn explodes thereby to create said flux of intercepting fragments within said destruction corridor.

Classes IPC  ?

  • F41H 5/007 - Blindages réactifsBlindages dynamiques
  • G01S 13/86 - Combinaisons de systèmes radar avec des systèmes autres que radar, p. ex. sonar, chercheur de direction

75.

ANAMORPHIC OPTICS THAT RESOLVE OFF-AXIS POINT SOURCES

      
Numéro d'application IL2014051088
Numéro de publication 2015/111036
Statut Délivré - en vigueur
Date de dépôt 2014-12-11
Date de publication 2015-07-30
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Nir, Shahar
  • Arad, Eyal
  • Roit, Paula

Abrégé

An optical system comprising: an anamorphic optical subsystem that includes: an entrance plane, an exit plane, and at least one optical element, in an optical path from said entrance plane to said exit plane, that effects an aspect ratio distortion, by a factor r>1, on light that has a wavelength in a predetermined wavelength interval and that enters said anamorphic optical subsystem via said entrance plane from an infinitely distant point source at any azimuth and at any elevation of up to at least about five degrees from an optical axis of said anamorphic optical subsystem, such that energy of said light within an Airy disk of said light as said light exits said anamorphic optical subsystem via said exit plane, is at least about f(r) of a diffraction limit value of said energy, wherein f(x) is a monotonic function of x such that f(1)=1, f(1)≥- 0.737, f(2)≥0.6 and f(∞)=0.

Classes IPC  ?

76.

MISSILE SYSTEM WITH NAVIGATION CAPABILITY BASED ON IMAGE PROCESSING

      
Numéro d'application IL2014050540
Numéro de publication 2015/022681
Statut Délivré - en vigueur
Date de dépôt 2014-06-15
Date de publication 2015-02-19
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD (Israël)
Inventeur(s)
  • Peleg, Omri
  • Shimonovitz, Eran
  • Levy, Aviram

Abrégé

The present invention relates to electro-optic guided missile systems and, in particular, it concerns systems and methods providing enhanced navigation capabilities based on ego-motion processing of seeker images. The missile system comprising: a missile;a seeker located at a nose portion of said missile, said seeker comprising an electro-optic imaging sensor; and a control arrangement for steering the missile along a flight path to a target, characterized in that the missile system further comprises: a navigation subsystem receiving images from said imaging sensor, said navigation subsystem being configured to: co-process a plurality of said images from said imaging sensor to derive ego-motion of said missile relative to a region viewed by said imaging sensor;derive from said ego-motion a calculated target direction from said missile to a target.

Classes IPC  ?

  • F42B 15/01 - Dispositions pour le guidage ou le pilotage sur les projectiles autopropulsés ou les missiles
  • G05D 1/00 - Commande de la position, du cap, de l'altitude ou de l'attitude des véhicules terrestres, aquatiques, aériens ou spatiaux, p. ex. utilisant des pilotes automatiques

77.

SHUTTER MECHANISM FOR COVERING A WING DEPLOYMENT OPENING

      
Numéro d'application IL2014050422
Numéro de publication 2014/203237
Statut Délivré - en vigueur
Date de dépôt 2014-05-14
Date de publication 2014-12-24
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Saroka, Arie
  • Schoenmann, Amnon

Abrégé

A shutter mechanism for covering a wing's spreading opening formed in an airborne body and a method for covering such opening while implementing the shutter mechanism, wherein the shutter comprises at least one flap assembly, and wherein from the instant that a deployed wing of the airborne body passed and moved over it, it is biased by traction of at least one springy element to an angular motion around an axis, unto a condition where the flap component of the assembly is positioned so that it is substantially conformal to the outline of the outer surface of the fuselage of the airborne body and while it covers the opening through which the wing passed in its motion; and from an instant that the wing returned and connected to the flap component of the assembly, the flap is biased to an angular motion counter the spring, to the state that the wing returns and is relocated on its top surface.

Classes IPC  ?

  • B64C 1/14 - FenêtresPortesTrappes d'évacuation ou panneaux de visiteStructures de cadres environnantsVerrièresPare-brise
  • F42B 10/14 - Dispositions pour la stabilisation utilisant des ailettes qui sont déployées après le lancement, p. ex. après la sortie du tube de l'arme

78.

A NOVEL MODE DIVISION MULTIPLEXING OPTICAL LINK

      
Numéro d'application IL2013050984
Numéro de publication 2014/111912
Statut Délivré - en vigueur
Date de dépôt 2013-11-28
Date de publication 2014-07-24
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Segev, Yehonatan
  • Regelman, Dan Vadim

Abrégé

The invention is a method and apparatus for creating mode division multiplexed channels capable of integration into photonic integrated circuits with direct spatial separation at the receiver end, thus removing the need for a DMUX module or at least significantly simplifying it. This is achieved by using a set of actuators that induce controllable mode mixing in a multi- mode fiber (MMF) at the transmitter in such a way that spatially separated channels are achieved at the receiver. As a result, no DMUX is required and failure of a single channel does not cause total communication link failure as occurs in links implemented with MUX/DMUX.

Classes IPC  ?

79.

FIRING PREVENTING AND STOPPAGE APPARATUS FOR REMOTELY OPERATED AUTOMATIC WEAPON

      
Numéro d'application IL2013051031
Numéro de publication 2014/102771
Statut Délivré - en vigueur
Date de dépôt 2013-12-18
Date de publication 2014-07-03
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Yamin, Amos
  • Arie, Moshe

Abrégé

Firing preventing and stoppage apparatus for remotely operated automatic weapon such as installable in RCWS (Remotely Controlled Weapon Station), that comprises a barrier component and an actuator connected to the barrier component, wherein the barrier component is suited to movement through a cartridges ejection port from an automatic weapon, to a movement path of the breech block of the weapon, for preventing in advance or stoppage of runaway firing from it, and outwards from it in a manner that enables firing, an RCWS equipped with such apparatus and a method for preventing and stopping runaway firing of automatic weapons that are mountable in an RCWS and comprises a breech block and a cartridges ejection port that is implemented in such apparatus.

Classes IPC  ?

  • F41A 17/00 - Mécanismes de sûreté, p. ex. sûretés
  • F41A 17/08 - Mécanismes de sûreté, p. ex. sûretés pour empêcher le tir dans une direction prédéterminée, p. ex. le tir sur une personne amie ou le tir sur une aire protégée
  • F41A 19/00 - Mécanismes de mise à feu ou de détenteMécanismes d'armement

80.

WING DEPLOYMENT MECHANISM

      
Numéro d'application IL2013051022
Numéro de publication 2014/097292
Statut Délivré - en vigueur
Date de dépôt 2013-12-11
Date de publication 2014-06-26
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Vainshtein, Alexander
  • Bouhryakov, Alexey

Abrégé

Wing deployment mechanism for deploying a pair of wings from an airborne body, wherein their deployment in motion, each one around an axis, defines the wings' deployment plane relative to the airborne body, and wherein the mechanism is characterized by that it comprises a propelable assembly mounted in the airborne body and suited to a rotational motion around an axis that is substantially orthogonal in its direction to the wings' deployment plane, a pair of arms that are linked, each one, on its one side to the assembly and at distance from the assembly's rotation axis, and on its other side to an end of one of the wings and at a distance from the axis around which the rotational motion of the wing in the wings' deployment plane is enabled, and wherein the link of each one of the arms is performed in a manner that enables angular motion of each of the arms relative to the assembly and to the end of the wing unto which it is linked, and wherein propelling the assembly to rotational motion and actuating a momentum for turning the wing as a result by the arm that is connected to it bring about concurrent rotational motion of the pair of wings in opposing directions and to their deployment on the wings' deployment plane, a method for deploying a pair of wings from an airborne body that is implementable in such mechanism and an airborne body equipped with such mechanism.

Classes IPC  ?

  • B64C 3/56 - Repliage ou rabattement pour réduire l'encombrement de l'aéronef
  • B64C 3/38 - Réglage des ailes complètes ou de certaines parties de ces ailes

81.

OBSERVATION SYSTEM

      
Numéro d'application IL2013050955
Numéro de publication 2014/087396
Statut Délivré - en vigueur
Date de dépôt 2013-11-19
Date de publication 2014-06-12
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Regelman, Dan Vadim
  • Itovich, Yan

Abrégé

The invention is an omni-directional observation system comprised of an inverted multi-faceted pyramidal prism oriented such that each facet reflects an image of a field of view facing it towards the apex of the pyramid. Two discs containing apertures located beneath the apex of the pyramid rotate at the same speed in opposite directions, and an optical arrangement under the disks is arranged to focus light passing through apertures in both disks onto a focal plane array detector. The apertures in the disks and the speed of the rotation are adapted such that apertures in both disks align to allow the image from only one facet at a time to fall on the detector. In one complete revolution of the disks images from all facets fall on the detector; thereby providing a plurality of images that can be combined to form a panoramic view of the surroundings of the system.

Classes IPC  ?

  • G02B 5/09 - Miroirs à facettes multiples ou polygonales
  • G03B 17/17 - Corps d'appareils avec des réflecteurs disposés sur le parcours lumineux formant l'image photographique, p. ex. pour réduire les dimensions de l'appareil photographique
  • H04N 7/18 - Systèmes de télévision en circuit fermé [CCTV], c.-à-d. systèmes dans lesquels le signal vidéo n'est pas diffusé

82.

HIGH ENERGY LASER

      
Numéro d'application IL2013050935
Numéro de publication 2014/076694
Statut Délivré - en vigueur
Date de dépôt 2013-11-13
Date de publication 2014-05-22
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Regelman, Dan Vadim
  • Nachshon, Yehuda

Abrégé

In a first aspect the invention is a solid state disk laser comprising a thin solid state disk and an output coupler, wherein the thin solid state disk is located inside the cavities of one or more semiconductor disc lasers formed by pairs of optically pumped semiconductor disk structures. In a second aspect the present invention is a system comprising a solid state disk laser comprised of a thin solid state disk and an output coupler; at least one semiconductor disk laser comprised of a pair of semiconductor disk structures! and optical pumping sources for the semiconductor disk laser. In a third aspect the invention is a method of pumping a solid state disk laser by means of the laser energy generated by one or more semiconductor disc lasers, each of which is formed from a pair of optically pumped semiconductor disk structures.

Classes IPC  ?

  • H01S 3/08 - Structure ou forme des résonateurs optiques ou de leurs composants
  • H01S 3/081 - Structure ou forme des résonateurs optiques ou de leurs composants comprenant trois réflecteurs ou plus

83.

IMPROVED INERTIAL NAVIGATION SYSTEM AND METHOD

      
Numéro d'application IL2013050778
Numéro de publication 2014/049592
Statut Délivré - en vigueur
Date de dépôt 2013-09-15
Date de publication 2014-04-03
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Kadosh, Igal
  • Naroditsky, Michael
  • Rotstein, Hector

Abrégé

The invention relates to an improved Inertial Navigation System (INS), which comprises: (a) an INS unit which comprises: (a.1) an IMU which in turn comprises a set of at least three gyros and at least three accelerometers, all mounted on a rotatable stage; and (a.2) an INS algorithm for measuring the behavior of said gyros and said accelerometers during a mission, and calculating a navigation solution based on said measurements; and (b) a north finding determination unit, which comprises: (b.1) one or more from said IMU gyros and one or more from said IMU accelerometers; and (b.2) a north finding algorithm which utilizes measurements from said one or more north finding gyros and one or more north finding accelerometers during an initial conditions stationary state in which the stage is positioned in at least two separate stationary orientations, said north finding algorithm determines a north finding solution which is provided to the INS unit for initializing its said INS algorithm.

Classes IPC  ?

  • G01C 19/36 - Gyroscopes rotatifs pour indiquer une direction dans le plan horizontal, p. ex. compas gyroscopiques avec action de recherche du nord par des moyens magnétiques, p. ex. compas gyromagnétiques

84.

SHELL ACCELERATOR

      
Numéro d'application IB2013054657
Numéro de publication 2014/027257
Statut Délivré - en vigueur
Date de dépôt 2013-06-06
Date de publication 2014-02-20
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD (Israël)
Inventeur(s)
  • Weisbrod, Gil
  • Rotkopf, Menachem

Abrégé

A projectile (bomb or missile) has a housing for travelling stably through the air and a gun barrel deployed within the housing. A shell, deployed within the gun barrel, contains an explosive charge. A quantity of black powder or other low-explosive is deployed for firing the shell from the gun barrel.

Classes IPC  ?

  • F42B 12/62 - Munitions en grappes ou munitions-cargo, c.-à-d. projectiles portant un seul ou plusieurs sous-projectiles les sous-projectiles étant éjectés dans une direction parallèle à l'axe longitudinal du projectile porteur
  • F42B 10/34 - Projectiles tubulaires
  • F42B 10/40 - Dispositions pour augmenter la portée par la combustion d'une charge à vitesse de combustion lente, p. ex. projectiles du type à écoulement par le culot

85.

BELT/METALLIC LINK CHAIN LOADED AMMUNITION FEEDER IN A REMOTE CONTROLLED WEAPON STATION

      
Numéro d'application IL2013050474
Numéro de publication 2013/183046
Statut Délivré - en vigueur
Date de dépôt 2013-06-03
Date de publication 2013-12-12
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Chachamian, Shimon
  • Hamish, Ran

Abrégé

Belt/Metallic Link Chain Loaded Ammunition Feeder in a Remote Controlled Weapon Station (RCWS) that comprises feeding mechanism for routing chained ammunition from ammunition reservoir means towards the weapon's bullets entrance opening wherein said feeding mechanism comprises - a first chute assembly for routing chained ammunition from said ammunition reservoir means towards the region of the RCWS's elevating/lowering axis, wherein said first chute assembly is mounted on the RCWS's rotatable turret assembly; and a second chute assembly for continuing routing said chained ammunition from the region of said elevating/lowering axis towards the entry opening of the bullets entrance of the weapon, wherein the second chute is mounted the RCWS's mounting bracket; and wherein the chained ammunition traversing over said elevating/lowering axis region in its passing from the first chute assembly to the second chute assembly happens when said ammunition is directed in an orientation that is at least substantially suited to the direction of said elevating/lowering axis; and at the time that said mounting bracket assembly is propelled to elevating/lowering motion around said elevating/lowering axis, the first chute assembly remains static and the second chute assembly is dynamic and propelled together with said mounting bracket assembly around said elevating/lowering axis.

Classes IPC  ?

  • F41A 9/36 - Alimentation des canons-revolvers
  • F41A 9/29 - Alimentation en munitions par bandes-chargeurs

86.

REMOTE CONTROLLED NON-LETHAL WEAPON STATION

      
Numéro d'application IL2013050475
Numéro de publication 2013/183047
Statut Délivré - en vigueur
Date de dépôt 2013-06-03
Date de publication 2013-12-12
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Tikochinski, Moti
  • Gartner, Amazia
  • Shapiro, Netanel

Abrégé

A Remote Controlled Weapon Station is provided that comprises a weapon mounting bracket that is remotely adjustable in elevating/lowering and a rotatable turret assembly adapted to be mounted on vehicles, remotely adjustable in rotation, and wherein the weapon mounting bracket is pivotally mounted on it, and the Remote Controlled Weapon Station is converted into a remote controlled Non Lethal weapon station by that at least one non lethal means is installed in it, chosen from a group consisting of – a multi barreled means for firing grenades; multi-barrels launcher means for pyrotechnically firing plurality of charges; acoustic means for producing tones; illuminating means; observation means and means for providing sniper firing capabilities of small caliber kinetic bullet.

Classes IPC  ?

  • F42B 5/145 - Cartouches, c.-à-d. projectile et douille avec charge propulsive formant un tout pour libérer des gaz, des vapeurs, des poudres, des particules ou des substances à réaction chimique
  • G10K 15/04 - Dispositifs de production de sons
  • F41A 23/24 - Montage d'armes à feu en tourelle

87.

A METHOD FOR BRIGHTNESS ENHANCEMENT AND MODES MANIPULATION OF A MULTIMODE OPTICAL FIBER

      
Numéro d'application IL2013050452
Numéro de publication 2013/179281
Statut Délivré - en vigueur
Date de dépôt 2013-05-26
Date de publication 2013-12-05
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Regelman, Dan Vadim
  • Segev, Yehonatan
  • Yosub, Shay

Abrégé

The invention relates to adaptive optics techniques applied to alter the modal structure of light propagating in an optical fiber. In particular the invention relates to altering the modal structure in a multimode beam propagating in a multimode fiber by lowering the number of higher modes. The method comprises combining a wavefront sensor and/or a power sensor with a phase control actuator and actuator control algorithms, to alter the phase structure of the beam thereby to eliminate higher modes. The corrected beam can be then effectively coupled into a smaller diameter fiber with minimum loss of energy and concentrated to smaller spot sizes limited by diffraction.

Classes IPC  ?

  • G02B 27/09 - Mise en forme du faisceau, p. ex. changement de la section transversale, non prévue ailleurs

88.

LASER TARGET SEEKER WITH PHOTODETECTOR AND IMAGE SENSOR

      
Numéro d'application IB2013050426
Numéro de publication 2013/108204
Statut Délivré - en vigueur
Date de dépôt 2013-01-17
Date de publication 2013-07-25
Propriétaire RAFAEL ADVANCED DEFENCE SYSTEMS LTD (Israël)
Inventeur(s)
  • Leber, Rami
  • Maayani, Gavriel

Abrégé

A seeker for detecting reflections of light emitted by a laser, including an image sensor, circuitry for receiving, from the image sensor, electronic signals that represent a scene that includes the reflections; and a photodetector. The circuitry is configured to interrogate the image sensor, in order to receive the electronic signals that represent the scene, in response to electronic signals, from the photodetector, that indicate reception of the reflections by the photodetector.

Classes IPC  ?

89.

METHOD AND APPARATUS FOR AERIAL SURVEILLANCE

      
Numéro d'application IL2013050003
Numéro de publication 2013/105084
Statut Délivré - en vigueur
Date de dépôt 2013-01-01
Date de publication 2013-07-18
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Greenfeld, Isreal
  • Yavin, Zvi

Abrégé

The invention relates to a method of performing surveillance of an object moving on the ground, which comprises: a) providing two independent image-acquisition devices, wherein at least one of said devices is capable of acquiring high-resolution images, and the second of said devices is capable of acquiring low-resolution images; b) independently acquiring low- resolution and high-resolution images of the same scanned area; c) identifying an object the movement of which it is desired to follow, using the images; d) locating the object identified in at least one image; and e) following the movements of the identified object through a string of low- resolution images.

Classes IPC  ?

  • G06T 7/20 - Analyse du mouvement
  • H04N 7/18 - Systèmes de télévision en circuit fermé [CCTV], c.-à-d. systèmes dans lesquels le signal vidéo n'est pas diffusé
  • G03B 37/02 - Photographie panoramique ou à grand écranPhotographie de surfaces étendues, p. ex. pour la géodésiePhotographie de surfaces internes, p. ex. de tuyaux avec mouvements de balayage de l'objectif ou de l'appareil

90.

A MOBILE AD-HOC NETWORK WITH REDUCED GUARD-TIME

      
Numéro d'application IL2013050008
Numéro de publication 2013/105085
Statut Délivré - en vigueur
Date de dépôt 2013-01-03
Date de publication 2013-07-18
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Wermuth, Michal
  • Wermuth, Yoav

Abrégé

The present invention is directed to a method for reducing the guard time of a Mobile ad-hoc networking (MANET) system during reception, according to which a transceiver architecture that is provided at each node, includes a combination of a hopping transmitter and a plurality of hopping narrowband independent receivers that are capable of receiving and processing the entire operational band assigned to the system, at once, and that include channel frequencies, dynamically selected within a wide operating bandwidth. Alternatively, the transceiver architecture includes a non-hopping wideband receiver capable of receiving and processing the entire operational band assigned to the system, at once. Several channels, arbitrarily spread over a frequency band assigned to the system are simultaneously received, while keeping the architecture of the MANET system. The transmission hopping patterns are determined to use the least possible number of frequencies. For each transmitting node, time slots in which a counterpart receiver at each remaining active node is not transmitting and a frequency channel in which no other active node transmits are found. The transmission frequency is then determined and if no other node had chosen the same time slot, and if the transceiver is not transmitting in the slot, the transmission is received, while allowing relay nodes to transmit simultaneously, using different channels. Whenever a plurality of narrowband independent receivers is used for reception, guard time is allocated to time slots on demand. Otherwise, no guard time is allocated to the time slots.

Classes IPC  ?

  • H04W 84/18 - Réseaux auto-organisés, p. ex. réseaux ad hoc ou réseaux de détection
  • H04W 74/04 - Accès planifié

91.

COMBINED IMAGER AND RANGE FINDER

      
Numéro d'application IB2012057744
Numéro de publication 2013/102831
Statut Délivré - en vigueur
Date de dépôt 2012-12-27
Date de publication 2013-07-11
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Lavi, Dov
  • Shamay, Ezra

Abrégé

combined imager and rangefinder includes an imaging sensor and an illuminator. The sensor acquires images of objects in a FOV. The illuminator directs a beam of light via the FOV. In a first mode, the sensor acquires full images of the whole FOV. In a second mode, the sensor acquires partial images, of only part of the FOV, that include a reflection of the light from one of the objects. The range to the object is determined from the location of the reflection in the partial images. Successive range measurements are used to determine whether a collision with the object is imminent.

Classes IPC  ?

  • G01C 3/08 - Utilisation de détecteurs électriques de radiations
  • G01C 11/02 - Dispositions de prises de vues spécialement adaptées pour la photogrammétrie ou les levers photographiques, p. ex. pour commander le recouvrement des photos
  • G03B 15/02 - Éclairage de la scène

92.

AN IMPROVED MOBILE AD-HOC NETWORK

      
Numéro d'application IL2012050447
Numéro de publication 2013/069015
Statut Délivré - en vigueur
Date de dépôt 2012-11-08
Date de publication 2013-05-16
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Wermuth, Yoav
  • Wermuth, Michal
  • Avadis, Shimon
  • Fuchs, Itzhak
  • Weiss, Moshe

Abrégé

A mobile communication system which consists of a plurality of MANETs and nodes, which comprises a transceiver at each node. Each transceiver is a combination of a hopping transmitter operating according to a predetermined hopping sequence and rate and a wideband reference receiver, that can simultaneously receive at once, the whole operating band assigned to the system. Each transceiver further includes a circuitry for reallocating simultaneously receiving channels, dynamically spread over a wideband frequency range and circuitry for determining transmission hopping patterns to use the least possible number of frequencies according to the active population status of nodes that belong to the plurality of MANETs. This circuitry is also used for adapting the transmission scheme of the alien transceivers by finding time slots, in which a counterpart receiver at each remaining active node is not transmitting and a frequency channel, in which no other active node, neighboring the counterpart receiver transmits, while determining proper transmission frequency for each transmitting node.

Classes IPC  ?

  • H04W 84/18 - Réseaux auto-organisés, p. ex. réseaux ad hoc ou réseaux de détection
  • H04W 72/02 - Sélection de ressources sans fil par un utilisateur ou un terminal

93.

COMBINATION OF NARROW-AND WIDE-VIEW IMAGES

      
Numéro d'application IB2012054056
Numéro de publication 2013/030699
Statut Délivré - en vigueur
Date de dépôt 2012-08-09
Date de publication 2013-03-07
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Berkovich, Erez
  • Arad, Eyal

Abrégé

A dual field of view (FOV) image is generated as a combination of a small footprint image and large footprint image, where the large footprint image is generated based on rendering to the current viewpoint at least a first image captured relatively farther away from a target so as to appear as a continuation of a small footprint image which is relatively closer to the target. Preferably, both the first image and the small footprint image are captured with the same fixed narrow field of view (NFOV) imaging device. The system is able to operate in real time, using a variety of image capture devices, and provides the benefits of both NFOV and wide FOV (WFOV) without limitations of conventional techniques, including operation at a longer range from a target, with higher resolution, while innovative processing of the captured images provides orientation information via a dual FOV image.

Classes IPC  ?

  • G03B 35/02 - Photographie stéréoscopique par enregistrement subséquent
  • G03B 35/18 - Photographie stéréoscopique par examen simultané
  • H04N 5/265 - Mélange

94.

SWITCHING DEVICE

      
Numéro d'application IB2012053808
Numéro de publication 2013/014634
Statut Délivré - en vigueur
Date de dépôt 2012-07-26
Date de publication 2013-01-31
Propriétaire RAFAEL - ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Kogut, Lior
  • Ohana, Avihay
  • Nepomnyashchy, Boris
  • Pernat, Nir

Abrégé

An acceleration responsive switching device formed as a micro- electromechanical systems (MEMS) device in which components are deposited and etched on and or above a substrate, comprising: a proof mass module comprising: at least one proof mass made of metal; at least three resilient suspending members made of metal, for suspending the proof mass; a lingule made of metal, connected to the proof mass; at least two contact pads to which at least one of the three resilient suspending members is permanently attached thereby allowing current to flow from the at least two pads to the proof mass module; and at least one additional contact pad, which is set against the lingule.

Classes IPC  ?

  • G01P 15/00 - Mesure de l'accélérationMesure de la décélérationMesure des chocs, c.-à-d. d'une variation brusque de l'accélération

95.

CONTROLLED PYROTECHNIC TRAIN

      
Numéro d'application IB2012053276
Numéro de publication 2013/001481
Statut Délivré - en vigueur
Date de dépôt 2012-06-28
Date de publication 2013-01-03
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD (Israël)
Inventeur(s)
  • Rahimi, Shai
  • Naveh, Roei

Abrégé

A controlled pyrotechnic train implementing a MEMS chip portion for use as an igniter of a charge. The train includes the following: an initiator; a blocker for blocking the entire train; a deflector of the blocker, and an output charge. In some embodiments the initiator is electromagnetic energy, in which case the blocker may be any appliance used in optics.

Classes IPC  ?

  • F42C 15/34 - Dispositifs d'armement des fuséesDispositifs de sécurité pour empêcher l'explosion prématurée des fusées ou des charges dans lesquels l'action de sécurité ou d'armement est effectuée au moyen d'un organe de blocage placé dans la chaîne pyrotechnique ou explosive entre l'amorce et la charge explosive
  • F42C 13/02 - Fusées de proximitéFusées pour explosion à distance actionnées par intensité de la lumière ou d'une radiation analogue

96.

ENERGETIC UNIT BASED ON SEMICONDUCTOR BRIDGE

      
Numéro d'application IL2012000253
Numéro de publication 2012/176198
Statut Délivré - en vigueur
Date de dépôt 2012-06-21
Date de publication 2012-12-27
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD., (Israël)
Inventeur(s)
  • Ronen, Aviv
  • Baruchi, Yair
  • Zvulun, Eran

Abrégé

The invention is an energetic unit comprised of: a container comprised of a base, an upper part, and a cover; a substrate located in the base and comprised of a thin, ribbon-like strip of flexible material that provides electrical contact to external firing circuits; a semiconductor bridge (SCB) chip electrically and physically attached to the substrate; and one or more layers of energetic material which are packed into the upper part of the container between the SCB chip and the cover.

Classes IPC  ?

  • F42B 3/13 - Amorce-détonateur à pont à pont semi-conducteur

97.

IMPACT EXPLOSION PREVENTION OF DISABLED ROCKETS

      
Numéro d'application IB2012051291
Numéro de publication 2012/140527
Statut Délivré - en vigueur
Date de dépôt 2012-03-18
Date de publication 2012-10-18
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Brill, Alon
  • Rahav, Shachar
  • Ben David, Yaakov

Abrégé

A vehicle protection system for vehicle windows against RPGs, comprising an RPG countenneasure mechanism (an active disruption mechanism that propels an object at an incoming RPG or a static structure) that results in a disabled RPG that cannot explode as a liner shaped charge warhead but can still explode, and a set of transparent panels attached to the vehicle, the panels large enough to cover the windows of the vehicle, the panels of the set of transparent panels inclined relative to an imaginary vertical plane nonnal to a surface that the vehicle rests on by an angle that is between 20,and 40 degrees, the panels made of rigid material, such as PMMA. for absorbing an impact from the disabled RPG so that it never reaches the threshold deceleration needed to explode.

Classes IPC  ?

  • F41H 5/013 - Montage ou fixation des plaques de blindage

98.

METHOD AND APPARATUS FOR MULTI-SPECTRAL IMAGING

      
Numéro d'application IB2011056013
Numéro de publication 2012/093325
Statut Délivré - en vigueur
Date de dépôt 2011-12-29
Date de publication 2012-07-12
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Lebber, Ramy
  • Pinsky, Ephraim

Abrégé

A system and method for sampling multi- spectral images of a dynamically changing scene facilitates independently dynamically adjusting the exposure of a photosensor based on a first group of sequences of images, while disregarding a second group of sequences of images, where each sequence of images is of a distinct color of light. In addition, the current description presents an innovative technique for constructing a multi-spectral image of a scene based on individually contrast-enhanced images of the scene. Applications include video photography and high quality true color stills camera with separate sensor arrays for each color channel. The control of the present embodiment can be used to produce photographs with truer color than conventional techniques.

Classes IPC  ?

  • H04N 5/353 - Réglage du temps d'intégration
  • H04N 5/33 - Transformation des rayonnements infrarouges
  • H04N 5/235 - Circuits pour la compensation des variations de la luminance de l'objet
  • H04N 9/04 - Générateurs de signaux d'image

99.

TURRET ASSEMBLY

      
Numéro d'application IL2011000860
Numéro de publication 2012/063235
Statut Délivré - en vigueur
Date de dépôt 2011-11-03
Date de publication 2012-05-18
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Berkovich, Eyal
  • Chachamian, Shimon

Abrégé

A turret assembly without deck penetration for minimizing exposure of combatants to enemy forces when accessing above deck equipment comprises a base plate on top of which is mounted at least one firable and remotely operable combatant interfaceable implement, the base plate being rotatable about a substantially vertical axis and supported for rotation by bearing means mounted within a deck of a military facility; a hatch displaceably connected to the base plate, for normally covering a hatchway formed in said base plate and for exposing said hatchway when displaced; and a rotatable disc of a slip ring unit carried by the hatch, by which electricity for operating equipment mounted on top of the deck and for initiating control signals is transmitted to the equipment.

Classes IPC  ?

100.

TRACKING AND IDENTIFICATION OF A MOVING OBJECT FROM A MOVING SENSOR USING A 3D MODEL

      
Numéro d'application IL2011000791
Numéro de publication 2012/056443
Statut Délivré - en vigueur
Date de dépôt 2011-10-06
Date de publication 2012-05-03
Propriétaire RAFAEL ADVANCED DEFENSE SYSTEMS LTD. (Israël)
Inventeur(s)
  • Berkovich, Erez
  • Shapira, Dror
  • Briskin, Gil
  • Peleg, Omri

Abrégé

A system and method for detection, tracking, classification, and/or identification of a moving object from a moving sensor uses a three-dimensional (3D) model. The system facilitates generation of a 3D model using images from a variety of sensors, in particular passive two-dimensional (2D) image capture devices. 2D images are processed to determine viewpoint and find moving objects in the 2D images. Conventional techniques or an innovative technique can be used to find segments of 2D images having moving objects. Viewpoint and segment information is used for generation of a 3D model of an object, in particular using both object motion and sensor motion to generate the 3D model.

Classes IPC  ?

  • H04N 7/18 - Systèmes de télévision en circuit fermé [CCTV], c.-à-d. systèmes dans lesquels le signal vidéo n'est pas diffusé
  1     2        Prochaine page