A bonding material includes: a single particle that is a particle of a first metal; a composite particle including a central core that is a particle of the first metal, and at least one coating layer covering an entire surface of the central core, the at least one coating layer including a fine particle of a second metal; and a flux including a reducing agent component, in which the first metal and the second metal have properties of forming an intermetallic compound of the first metal and the second metal, and the reducing agent component of the flux is present between the central core and the at least one coating layer.
B23K 35/02 - Baguettes, électrodes, matériaux ou environnements utilisés pour le brasage, le soudage ou le découpage caractérisés par des propriétés mécaniques, p. ex. par la forme
B23K 35/26 - Emploi de matériaux spécifiés pour le soudage ou le brasage dont le principal constituant fond à moins de 400°C
B23K 35/30 - Emploi de matériaux spécifiés pour le soudage ou le brasage dont le principal constituant fond à moins de 1550 C
B23K 35/362 - Emploi de compositions spécifiées de flux
A space purification device according to the present disclosure includes: electrolysis bath; water supply unit; electrode unit (140); first calculator (510) that calculates an increased concentration of hypochlorous acid water per unit time based on (i) a first sodium chloride concentration that is a sodium chloride concentration in the electrolysis bath after the sodium chloride concentration has changed due to an input of the electrolysis accelerator into the electrolysis bath and (ii) hypochlorous acid generation efficiency per unit time set in advance; second calculator (512) that calculates, based on a target hypochlorous acid water concentration in the electrolysis bath, a first hypochlorous acid water concentration that is a hypochlorous acid water concentration in the electrolysis bath before energization by electrode unit (140), and the increased concentration of hypochlorous acid water per unit time calculated by first calculator (510), a required energization time for achieving the target hypochlorous acid water concentration; and electrode controller (540) that performs energization in electrode unit (140) for the required energization time calculated by second calculator (512).
A gradient change detection system for a moving body for detecting a change in a gradient of a traveling path, the gradient change detection system includes a posture detection unit that detects a posture change amount in a rotation direction about a left-right direction with respect to a traveling direction of a moving body, and a gradient change detector that detects a change in a gradient of the traveling path based on the posture change amount or a variation amount in predetermined unit time of the posture change amount.
G09G 3/00 - Dispositions ou circuits de commande présentant un intérêt uniquement pour l'affichage utilisant des moyens de visualisation autres que les tubes à rayons cathodiques
B60K 35/00 - Instruments spécialement adaptés aux véhiculesAgencement d’instruments dans ou sur des véhicules
B60K 35/10 - Dispositions d'entrée, c.-à-d. de l'utilisateur au véhicule, associées aux fonctions du véhicule ou spécialement adaptées à celles-ci
A parallax information generation device includes: a phase image generation unit that generates a relative phase image from phase shift images based on projection of phase shift pattern light; a code image segmentation processing unit that performs segmentation for each period of the phase shift pattern light on the basis of a sequence generated from a code value given to each pixel of binary pattern images based on projection of binary pattern light; and a parallax information generation unit that generates parallax information on the basis of the relative phase image and results of the segmentation. The binary pattern light is constituted by a sequence in which 2n mutually different code values are allocated by combining n kinds of binary pattern light, and mutually different code values are allocated at each boundary between periods of the phase shift pattern light.
G06T 7/521 - Récupération de la profondeur ou de la forme à partir de la télémétrie laser, p. ex. par interférométrieRécupération de la profondeur ou de la forme à partir de la projection de lumière structurée
An inspection device (12) for a cold insulator (10) includes: an RF reader 50 that receives from an RF tag 30 a detected temperature of a cold insulator in a cold insulation box, the detected temperature being detected by a temperature sensor (20) attached to a surface of the cold insulator; and a controller 61. The controller outputs information indicating a result of comparison between: at least one of a lower limit temperature obtained by adding a predetermined first value to a lowest management temperature of an article that is kept cold in the cold insulation box and an upper limit temperature obtained by subtracting a predetermined second value from a solidification temperature of the cold insulator; and the detected temperature of the cold insulator which has been received by the RF reader.
A gyroscope includes a vibratory plate with at least one notch, wherein each notch is a positive notch that is a formed by adding a mass to the vibratory plate, or a negative notch that is formed by removing a mass from the vibratory plate, and an anchor configured to support the vibratory plate. Across the wafer, a gyro design with a few different notch sizes can be designed to counteract the quadrature pattern. Depending on the type and magnitude of imperfection, a notch size and its location can be determined. The locations to add or remove a mass on the disk may be identified as follows. The locations where one gyro mode has a larger displacement while the second gyro mode has no displacement or a smaller displacement can be used to substantially impact the frequency of one of the first resonance mode or the second resonance mode. Alternatively, the locations where both gyro modes have the substantially same displacement amplitude can be used to impact the coupling between the two modes.
G01C 19/5677 - Dispositifs sensibles à la rotation utilisant des masses vibrantes, p. ex. capteurs vibratoires de vitesse angulaire basés sur les forces de Coriolis utilisant le décalage de phase d'un nœud ou d'un anti-nœud de vibration de vibrateurs essentiellement à deux dimensions, p. ex. vibrateurs en forme d'anneau
9.
GAS METER AND GAS BLOCKING RESTORATION DETERMINING SYSTEM
A gas meter includes a flow rate measurer that is located at a gas passage and measures a flow rate of the gas flowing through the passage, a self-diagnoser that performs self-diagnosis, and a vibration detector that detects vibration. The gas meter also includes a calculator that calculates an earthquake index value based on the detected vibration, the earthquake index value indicating the scale of an earthquake, a blocker that switches from an open state to a closed state of the passage when the earthquake index value is not less than a predetermined value, and a restoring method determiner that, when the blocker is in the closed state, determines a restoring method of restoring the blocker from the closed state to the open state based on a result of the diagnosis by the self-diagnoser and the earthquake index value.
A solid electrolytic capacitor element included in a solid electrolytic capacitor includes an anode foil that contains element Al and includes a porous part at least in a surface layer of the anode foil, a dielectric layer that covers at least a portion of a surface of the anode foil, and a solid electrolyte that covers at least a portion of the dielectric layer. The solid electrolyte contains element S, and the solid electrolyte has a first part filled in voids in the porous part in the anode foil having the dielectric layer and a second part that protrudes from the main surface of the anode foil having the dielectric layer. In elemental mapping of a cross section of the porous part using an electron probe microanalyzer, the presence ratio of the element S is 0.5% or more when the presence ratio of the element Al is taken as 100%.
A nonaqueous electrolyte to be disclosed is a nonaqueous electrolyte for a nonaqueous electrolyte battery. The nonaqueous electrolyte contains a nonaqueous solvent, an electrolyte salt, and a thiol compound. The thiol compound contains a thiol group and at least one electron-withdrawing group R containing oxygen and/or nitrogen.
H01M 10/0567 - Matériaux liquides caracterisés par les additifs
H01M 4/02 - Électrodes composées d'un ou comprenant un matériau actif
H01M 4/36 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs
H01M 4/525 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques de nickel, de cobalt ou de fer d'oxydes ou d'hydroxydes mixtes contenant du fer, du cobalt ou du nickel pour insérer ou intercaler des métaux légers, p. ex. LiNiO2, LiCoO2 ou LiCoOxFy
12.
INTRAORAL CAMERA, ILLUMINATION CONTROL DEVICE, AND ILLUMINATION CONTROL METHOD
An intraoral camera includes an imaging unit, an illuminator, and an illumination controller. The imaging unit generates image data by capturing an image of a tooth inside the mouth of a user. The illuminator illuminates the tooth. The illumination controller controls at least one of the illumination intensity or the color temperature of the illuminator to bring the color temperature of reflected light from the tooth that is based on the image data, closer to a target color temperature based on the second color temperature of the illuminator.
A61B 1/24 - Instruments pour procéder à l'examen médical de l'intérieur des cavités ou des conduits du corps par inspection visuelle ou photographique, p. ex. endoscopesDispositions pour l'éclairage dans ces instruments pour la bouche, c.-à-d. stomatoscopes, p. ex. portant des abaisse-langueInstruments pour ouvrir la bouche ou la maintenir ouverte
A61B 1/00 - Instruments pour procéder à l'examen médical de l'intérieur des cavités ou des conduits du corps par inspection visuelle ou photographique, p. ex. endoscopesDispositions pour l'éclairage dans ces instruments
A61B 1/05 - Instruments pour procéder à l'examen médical de l'intérieur des cavités ou des conduits du corps par inspection visuelle ou photographique, p. ex. endoscopesDispositions pour l'éclairage dans ces instruments combinés avec des dispositifs photographiques ou de télévision caractérisés par le fait que le capteur d'images, p. ex. l'appareil photographique, est placé dans la partie de l'extrémité distale
A61B 1/06 - Instruments pour procéder à l'examen médical de l'intérieur des cavités ou des conduits du corps par inspection visuelle ou photographique, p. ex. endoscopesDispositions pour l'éclairage dans ces instruments avec dispositifs d'éclairement
H04N 23/611 - Commande des caméras ou des modules de caméras en fonction des objets reconnus les objets reconnus comprenant des parties du corps humain
H04N 23/63 - Commande des caméras ou des modules de caméras en utilisant des viseurs électroniques
H04N 23/74 - Circuits de compensation de la variation de luminosité dans la scène en influençant la luminosité de la scène à l'aide de moyens d'éclairage
H04N 23/88 - Chaînes de traitement de la caméraLeurs composants pour le traitement de signaux de couleur pour l'équilibrage des couleurs, p. ex. circuits pour équilibrer le blanc ou commande de la température de couleur
13.
INFORMATION PROCESSING APPARATUS, TERMINAL, INFORMATION PROCESSING METHOD, WARNING METHOD, AND INFORMATION PROCESSING SYSTEM
This information processing apparatus comprises: an acquisition unit that acquires the number of terminals present in a prescribed area, or the weights of moving bodies associated with the terminals present in the prescribed area; and a processing unit that determines, according to whether at least one of the number of terminals and the weights of the moving bodies exceeds a prescribed threshold, whether to generate a geofence.
G08B 25/10 - Systèmes d'alarme dans lesquels l'emplacement du lieu où existe la condition déclenchant l'alarme est signalé à une station centrale, p. ex. systèmes télégraphiques d'incendie ou de police caractérisés par le moyen de transmission utilisant des systèmes de transmission sans fil
H04W 4/029 - Services de gestion ou de suivi basés sur la localisation
H04W 4/90 - Services pour gérer les situations d’urgence ou dangereuses, p. ex. systèmes d’alerte aux séismes et aux tsunamis
A dust core includes a metal magnetic powder and a binding agent that binds particles of the metal magnetic powder. The binding agent includes a silicone resin and an epoxy resin. In an elemental analysis of the dust core based on an image of a cross section of the dust core, when a silicon (Si) element and a carbon (C) element are detected on a weight basis at 15 measurement points between the particles of the metal magnetic powder in the image, a difference between a maximum value and a minimum value of x/(x+y) values at the 15 measurement points is at most 0.243, where x denotes an amount of the Si element detected and y denotes an amount of the C element detected.
H01F 1/08 - Aimants ou corps magnétiques, caractérisés par les matériaux magnétiques appropriésEmploi de matériaux spécifiés pour leurs propriétés magnétiques en matériaux inorganiques caractérisés par leur coercivité en matériaux magnétiques durs métaux ou alliages sous forme de particules, p. ex. de poudre comprimées, frittées ou agglomérées
H01F 41/02 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour la fabrication de noyaux, bobines ou aimants
An alkaline dry cell includes a cathode, an anode, a separator disposed between the cathode and anode, and an electrolyte held within the cathode, anode, and separator. The cathode includes manganese dioxide. A width at half maximum W of a (110)-plane diffraction peak in an X-ray diffraction pattern of the manganese dioxide is 2.4° or less. The anode includes powder of an anode active material including zinc. Particles s of the powder with particle diameters 75 μm or less account for 33% by mass or more of all particles of the powder. A thickness of the separator is 150 μm or more and is 210 μm or less.
H01M 4/38 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'éléments simples ou d'alliages
H01M 4/50 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques de manganèse
H01M 50/489 - Séparateurs, membranes, diaphragmes ou éléments d’espacement dans les cellules caractérisés par leurs propriétés physiques, p. ex. degré de gonflement, hydrophilicité ou propriétés pour court-circuiter
An imaging apparatus comprises: an image sensor configured to shoot a subject image through an optical system and generate image data; a connector configured to detachably attach a heat dissipation unit; a controller configured to detect whether the heat dissipation unit is attached to the connector; and a notification unit configured to notify a user of information. The controller causes the notification unit to notify an available shooting time of a moving image according to whether the heat dissipation unit is attached to the connector.
H04N 23/60 - Commande des caméras ou des modules de caméras
H04N 23/52 - Éléments optimisant le fonctionnement du capteur d'images, p. ex. pour la protection contre les interférences électromagnétiques [EMI] ou la commande de la température par des éléments de transfert de chaleur ou de refroidissement
H04N 23/62 - Commande des paramètres via des interfaces utilisateur
H04N 23/63 - Commande des caméras ou des modules de caméras en utilisant des viseurs électroniques
17.
HEAT PUMP UNIT, ANOMALY WORKAROUND HEATING METHOD, AND NON-VOLATILE COMPUTER-READABLE RECORDING MEDIUM
Controller (120) for heat pump unit (100) according to an exemplary embodiment includes information acquisition unit (121) configured to acquire an inflow water temperature indicating a temperature of water flowing out of hot water tank (310) into heater (110), and an outflow water temperature indicating a temperature of the water flowing out of heater (110) toward hot water tank (310). Controller (120) further includes normality determination unit (122) configured to determine whether a storage water temperature indicating a temperature of the water inside hot water tank (310) is being acquired properly. Controller (120) further includes setting value update unit (124) configured to update a target storage water temperature to be achieved in hot water tank (310) by the heating operation to a higher value when normality determination unit (122) determines that the storage water temperature is not being acquired properly or there is a possibility that the storage water temperature is not being acquired properly, and a temperature difference between the outflow water temperature and the inflow water temperature is less than a temperature difference threshold.
A solid electrolyte material according to an aspect of the present disclosure is represented by the following Compositional Formula (1):
A solid electrolyte material according to an aspect of the present disclosure is represented by the following Compositional Formula (1):
Li6-3zYzX6
where 0
C01F 17/36 - Composés contenant des métaux de terres rares et au moins un élément autre qu’un métal des terres rares, l'oxygène ou l'hydrogène, p. ex. La4S3Br6 le seul anion étant un halogénure, p. ex. NaYF4
A light guide includes an exit extension region including a diffraction structure dividing an image light ray propagating in a first direction intersecting a thickness direction of a body, into image light rays propagating in a second direction intersecting the first direction, in the first direction, and allowing them to emerge therefrom. At least one part of the region satisfies that when refractive indices of media on individual incident and exit sides of a ray relative to the region are assumed to be equal to each other, an exit angle θ_out of a ray emerging from the region at the highest diffraction efficiency in a plane including a normal line of the region is not smaller than 15° and is not greater than 45°, and an incident angle θ_in of a ray incident on the region in the plane is greater than θ_out by 14° or more.
B60R 11/00 - Autres aménagements pour tenir ou monter des objets
B60R 11/02 - Autres aménagements pour tenir ou monter des objets pour postes radio, de télévision, téléphones, ou objets similairesDisposition de leur commande
F21V 8/00 - Utilisation de guides de lumière, p. ex. dispositifs à fibres optiques, dans les dispositifs ou systèmes d'éclairage
The optical system includes a light guide including: an incident region allowing an image light ray to enter a body; and an exit extension region including a diffraction structure dividing an image light ray into image light rays and allowing them to emerge from the body. The exit extension region divides the image light ray into first to third image light rays. The first and third image light rays emerge from the exit extension region at different angles to propagate inside the body. The exit extension region includes an overlap part on which the first image light ray and the third image light ray are incident under a condition where they partially overlap with each other. A difference between optical paths of the first image light ray and the third image light ray incident on the overlap part is longer than a coherence length of the image light ray.
Provided is a system or method configured to present reactions exhibited by participants in an online event to users such that individual participants are not identified, thereby preventing the participants from being conscious that their reactions are being sensed, and thus enabling them to naturally exhibit their reactions, which allows the users to acquire information on the participants' naturally-exhibited reactions. The system includes a user terminal provided with a camera; and an analysis server configured to acquire camera images of each participant from the terminal device, and perform a reaction sensing operation to sense reactions exhibited by the each participant based on the camera images. The analysis server aggregates results of the reaction sensing operation for all the participants to thereby generate reaction information on the all the participant's reactions (e.g., level information and proportion information), and generates display information that visualizes the reaction information.
In a radio wave emitting apparatus of the present disclosure, a radio wave emitter emits traveling waves into a cavity. A temperature measurer measures a temperature of the signal amplifier. An electric power measurer measures a reflected-wave electric power. A controller (7) executes a first control process and a second control process. In the first control process, a target value of a traveling-wave electric power is set to a first electric power. The second control process includes one or more first periods during which the target value of the traveling-wave electric power is set to the first electric power, and one or more second periods during which the target value of the traveling-wave electric power is set to a second electric power that is less than the first electric power. In the second control process, the one or more first periods and the one or more second periods are repeated alternately one by one. The controller executes the second control process when the temperature of the signal amplifier exceeds a specified temperature during execution of the first control process.
To enhance productivity of an encoder. An encoder (20) disclosed herein includes: a boss (25) that rotates about a rotation axis of a shaft included in a motor; a circular rotating plate (21) that is fixed to the boss (25) and rotates about the rotation axis; a bonding portion (27) that fixes the boss (25) and the rotating plate (21); and an optical module including a light source that irradiates the rotating plate (21) with light and a light receiving element that receives light emitted from the light source and reflected by the rotating plate (21). Bonding portion (27) includes a cured product of an adhesive having a photocuring property and an anaerobic curing property. A part of bonding portion (27) is exposed from between boss (25) and rotating plate (21) and is in contact with boss (25) and rotating plate (21).
G01D 5/347 - Moyens mécaniques pour le transfert de la grandeur de sortie d'un organe sensibleMoyens pour convertir la grandeur de sortie d'un organe sensible en une autre variable, lorsque la forme ou la nature de l'organe sensible n'imposent pas un moyen de conversion déterminéTransducteurs non spécialement adaptés à une variable particulière utilisant des moyens optiques, c.-à-d. utilisant de la lumière infrarouge, visible ou ultraviolette avec atténuation ou obturation complète ou partielle des rayons lumineux les rayons lumineux étant détectés par des cellules photo-électriques en utilisant le déplacement d'échelles de codage
24.
BATTERY ABNORMALITY DETECTION SYSTEM, BATTERY ABNORMALITY DETECTION METHOD, AND NON-TRANSITORY COMPUTER-READABLE RECORDING MEDIUM
In a battery abnormality detection system, a data acquirer acquires voltage data and current data of each cell of a battery pack having a plurality of cells connected in series or of each parallel cell block of a battery pack having serially connected parallel cell blocks having a plurality of cells connected in parallel. The abnormality detector detects a cell or parallel cell block in an abnormal state on the basis of a relative voltage change amount among the plurality of cells or among the plurality of parallel cell blocks in a constant voltage charging period.
G01R 31/3835 - Dispositions pour la surveillance de variables des batteries ou des accumulateurs, p. ex. état de charge ne faisant intervenir que des mesures de tension
G01R 31/367 - Logiciels à cet effet, p. ex. pour le test des batteries en utilisant une modélisation ou des tables de correspondance
G01R 31/396 - Acquisition ou traitement de données pour le test ou la surveillance d’éléments particuliers ou de groupes particuliers d’éléments dans une batterie
A rotary compressor 100 includes a drive shaft 101 having an eccentric shaft 101a, a piston 102 fitted onto the eccentric shaft 101a, a cylinder 103 that receives the eccentrically rotating piston 102, an upper end plate 104 and a lower end plate 105 that close the upper and lower opening surfaces of the cylinder 103, a vane 106 that divides a space formed by the cylinder 103, the piston 102, the upper end plate 104, and the lower end plate 105 into a suction chamber 113 and a compression chamber 114, a discharge space 117 that is formed by causing the cover 108 to close a recessed portion 107 obtained by recessing a surface of either the upper end plate 104 or the lower end plate 105 on the opposite side to the cylinder 103 and where discharge gas flows in from the compression chamber 114 and directly flows out to the outside of the compressor 100, and spatial volume of the discharge space 117 having 10 times enclosed volume of the cylinder 103, thereby reducing noise and vibration due to discharge pulsation as well as improving efficiency and reliability and reducing cost.
F04C 18/356 - Pompes à piston rotatif spécialement adaptées pour les fluides compressibles possédant les caractéristiques couvertes par au moins deux des groupes , , , , ou par l'un de ces groupes en combinaison avec un autre type de mouvement entre les organes coopérants ayant à la fois le mouvement défini dans l'un des groupes ou et un mouvement alternatif relatif entre les organes coopérants les organes obturateurs ayant un mouvement alternatif par rapport à l'organe externe
26.
IMAGE PROCESSING METHOD, IMAGE PROCESSING DEVICE, AND RECORDING MEDIUM
An image processing method includes: obtaining a first RGB image generated by capturing an image of a tooth and dental plaque that are fluorescing in response to exposure to light including a blue-light wavelength range; and generating a second RGB image by performing, for the first RGB image, image processing including first image processing. In the first image processing, the gains of at least two color components among the red component, the green component, and the blue component of an RGB image to be processed are adjusted so as to equalize the first red pixel average value of red pixel values, the first green pixel average value of green pixel values, and the first blue pixel average value of blue pixel values, the red pixel values, the green pixel values, and the blue pixel values being the pixel values of first pixels corresponding to the tooth.
A processing system includes an output processor which outputs criterion information applicable to an inspection algorithm. The criterion information includes information about a decision boundary to be defined based on identification results obtained by a plurality of identification algorithms that are different from each other. The decision boundary is used as a criterion for determining, by the inspection algorithm, whether the category of a target is a first category or a second category. Each of the plurality of identification algorithms identifies the category with respect to each of the plurality of image data sets. The decision boundary is a convex hull boundary to be defined based on a set of corresponding identification results, belonging to the identification results, about an image data set, to which a label indicating the second category is attached, out of the plurality of image data sets.
The present disclosure provides a blade unit and an electric razor with which body hair can be shaved more efficiently even when skin is uneven. Blade unit according to the present disclosure is held by main body in a state where a skin contact surface is exposed. Blade unit includes a plurality of blade blocks held by main body in such a manner that the plurality of blade blocks are disposed side by side in a first direction. The plurality of blade blocks includes: first blade block floatably held by main body; and second blade block held by main body in such a manner that the second blade block floats in a direction intersecting a float direction of first blade block.
A state estimation method includes: capturing a thermal image of at least one imaging target, each of which is a person or an animal, using a thermal imaging camera; obtaining identification information for identifying the at least one imaging target in the thermal image captured in the capturing; and estimating a state of each of at least one estimation target included among the at least one imaging target, based on the thermal image captured in the capturing and the identification information obtained in the obtaining.
A secondary battery includes a battery case, an electrode group, and nonaqueous electrolyte. An outer diameter R ranges from 3.0 to 6.5 mm. A ratio r/R of an inner diameter r of a hollow in the electrode group to an outer-diameter R ranges from 0.1 to 0.3. The nonaqueous electrolyte includes at least one selected from LiSO3F and LiFSI. In the case that the nonaqueous electrolyte includes LiSO3F, the concentration of LiSO3F is 1.5% by mass or less in a case that the outer-diameter R ranges from 3.0 to 5 mm, and is 1.2% by mass or less I a case that the outer-diameter R is more than 5 mm and is 6.5 mm or less. In the case that the nonaqueous electrolyte includes LiFSI, the concentration of LiFSI is 1.1 mol/L or less in a case that the outer-diameter R ranges from 3.0 to 3.5 mm, and is 1.0 mol/L or less in a case that the outer-diameter R is more than 3.5 mm and is 6.5 mm or less.
H01M 10/0567 - Matériaux liquides caracterisés par les additifs
H01M 10/0587 - Structure ou fabrication d'accumulateurs ayant uniquement des éléments de structure enroulés, c.-à-d. des électrodes positives enroulées, des électrodes négatives enroulées et des séparateurs enroulés
H01M 50/107 - Boîtiers primairesFourreaux ou enveloppes caractérisés par leur forme ou leur structure physique ayant une section transversale courbe, p. ex. ronde ou elliptique
31.
STRETCHABLE LAMINATE, METHOD FOR MANUFACTURING THE SAME, AND ELECTRONIC DEVICE INCLUDING THE SAME
The present invention relates to a stretchable laminate that is a laminate including: a resin layer (A); a first substrate (B); and a second substrate (C), wherein the resin layer (A) includes a cured product of a resin composition including an organic peroxide, the resin layer (A) is located between the first substrate (B) and the second substrate (C), the resin layer (A) has a tensile stress of 0.5 MPa or more and 10 MPa or less at 50% elongation, and an elongation at break of 50% or more and 700% or less, and when a surface of the resin layer (A) is observed with an optical microscope, a total number of bubbles and openings having a diameter of 150 to 500 μm is 5 per 10 cm2 or less, and bubbles and openings having a diameter exceeding 500 μm are not present.
B32B 27/30 - Produits stratifiés composés essentiellement de résine synthétique comprenant une résine vinyliqueProduits stratifiés composés essentiellement de résine synthétique comprenant une résine acrylique
B32B 27/26 - Produits stratifiés composés essentiellement de résine synthétique caractérisée par l'emploi d'additifs particuliers utilisant des durcisseurs
B32B 37/10 - Procédés ou dispositifs pour la stratification, p. ex. par polymérisation ou par liaison à l'aide d'ultrasons caractérisés par la technique de pressage, p. ex. faisant usage de l'action directe du vide ou d'un fluide sous pression
32.
PASSING DETERMINATION DEVICE, PASSING DETERMINATION SYSTEM, AND PASSING DETERMINATION METHOD
A passing determination device acquires a first captured image obtained by repeatedly capturing an image of a region including a passing determination position of a trailer from a front of the trailer in a traveling direction of the trailer, and detects the trailer from the first captured image. Further, the passing determination device includes a processor configured to determine that the trailer detected from the first captured image captured at a first time passes through the passing determination position when the trailer is detected from the first captured image captured at the first time and the trailer is not detected from the first captured image captured within a first time period from the first time.
G06V 20/58 - Reconnaissance d’objets en mouvement ou d’obstacles, p. ex. véhicules ou piétonsReconnaissance des objets de la circulation, p. ex. signalisation routière, feux de signalisation ou routes
B60W 40/10 - Calcul ou estimation des paramètres de fonctionnement pour les systèmes d'aide à la conduite de véhicules routiers qui ne sont pas liés à la commande d'un sous-ensemble particulier liés au mouvement du véhicule
A refrigeration device according to the present disclosure is operated by switching the gas cooler to be used, and comprises a refrigerant circuit configured from a compression mechanism, a water-cooled gas cooler and an air-cooled gas cooler for cooling a refrigerant discharged from the compression mechanism, an expansion mechanism, and an evaporator, wherein, during a water-cooling operation in which the water-cooled gas cooler is used, excess refrigerant is recovered in the air-cooled gas cooler, thereby adjusting the amount of circulated refrigerant in the refrigerant circuit.
F25B 6/02 - Machines, installations ou systèmes à compression, avec plusieurs circuits de condenseurs disposés en parallèle
F25B 9/00 - Machines, installations ou systèmes à compression dans lesquels le fluide frigorigène est l'air ou un autre gaz à point d'ébullition peu élevé
A control system includes a first inertial sensor and a second inertial sensor. The first inertial sensor includes first to third angular velocity detection elements, first to third acceleration detection elements, and a first control unit. The first control unit calculates a first orientation signal. The second inertial sensor includes fourth to sixth angular velocity detection elements, fourth to sixth acceleration detection elements, and a second control unit. The second control unit calculates a second orientation signal. The first control unit calculates first detection axis information and generates a first reference signal based on at least one signal selected from fourth to sixth angular velocity signals and fourth to sixth acceleration signals. The first control unit generates a first corrected signal by correcting, using the first reference signal, at least one signal selected from first to third angular velocity signals and first to third acceleration signals.
A thermoelectric conversion device includes a reflecting member that has an opening portion through which radiant heat from a heat source passes, and a concave reflecting surface that reflects the radiant heat that has passed through the opening portion; a thermoelectric conversion member that converts heat into electric power; and a heat collector that is disposed between the reflecting member and the thermoelectric conversion member, and that is disposed such that at least a part of the heat collector faces the reflecting surface of the reflecting member. The heat collector includes a heat-collecting region that absorbs the radiant heat reflected by the reflecting surface of the reflecting member, and a heat transfer region that transfers the radiant heat absorbed by the heat-collecting region to the thermoelectric conversion member.
H10F 77/42 - Éléments ou dispositions optiques directement associés ou intégrés aux cellules photovoltaïques, p. ex. moyens réflecteurs ou concentrateurs de lumière
H10N 10/10 - Dispositifs thermoélectriques comportant une jonction de matériaux différents, c.-à-d. dispositifs présentant l'effet Seebeck ou l'effet Peltier fonctionnant exclusivement par les effets Peltier ou Seebeck
A bonding material includes a solder alloy having a median diameter D50 of 100 nm to 2000 nm, made from Sn, Bi, In, and other unavoidable components, and having a melting point of less than or equal to 100° C., metal nanoparticles that are Cu nanoparticles having a median diameter D50 of 50 nm to 500 nm, and a flux, wherein the metal nanoparticles include a protective film on a surface of the metal nanoparticles, the protective film separating at a temperature higher than a melting point of the solder alloy and lower than 100° C., and a weight ratio between the solder alloy and the metal nanoparticles is a ratio at which all Sn and In contained in the solder alloy become intermetallic compounds with the metal nanoparticles in an equilibrium state diagram.
B23K 35/02 - Baguettes, électrodes, matériaux ou environnements utilisés pour le brasage, le soudage ou le découpage caractérisés par des propriétés mécaniques, p. ex. par la forme
B23K 35/26 - Emploi de matériaux spécifiés pour le soudage ou le brasage dont le principal constituant fond à moins de 400°C
B23K 35/36 - Emploi de compositions non métalliques spécifiées, p. ex. comme enrobages, comme fluxEmploi de matériaux de brasage ou de soudage spécifiés associé à l'emploi de compositions non métalliques spécifiées, dans lequel l'emploi des deux matériaux est important
A load detecting device includes a load sensor and a sealing member encapsulating the load sensor. The sealing member includes a lower sealing member on which the load sensor is placed, an upper sealing member covering an upper face of the load sensor and joined to the lower sealing member, and an air pressure adjustment structure configured to cause an air pressure in an accommodation space, of the load sensor, formed by the lower sealing member and the upper sealing member to be approximately equal to an outside air pressure.
G01L 1/14 - Mesure des forces ou des contraintes, en général en mesurant les variations de la capacité ou de l'inductance des éléments électriques, p. ex. en mesurant les variations de fréquence des oscillateurs électriques
38.
COMPOSITE MATERIAL, APPLICATIONS THEREOF, AND METHOD FOR PRODUCING COMPOSITE MATERIAL
A composite material includes a base material and polydopamine adhered to the base material, the polydopamine containing hydroxy groups. At least one hydrogen atom of the hydroxy groups is substituted with an acyl group.
A composite material includes a base material and polydopamine adhered to the base material. In an infrared absorption spectrum of the base material to which the polydopamine is adhered, the infrared absorption spectrum being obtained by Fourier transform infrared spectroscopy, a ratio HB/HA satisfies 0.66≤HB/HA≤1.1, where, in the infrared absorption spectrum, a baseline is defined as a straight line connecting a measured point obtained at 3070 cm−1 to a measured point obtained at 3700 cm−1, HA represents a perpendicular distance from a measured point obtained at 3380 cm−1 of the infrared absorption spectrum to the baseline, and HB represents a perpendicular distance from a measured point obtained at 3630 cm−1 of the infrared absorption spectrum to the baseline.
B32B 15/08 - Produits stratifiés composés essentiellement de métal comprenant un métal comme seul composant ou comme composant principal d'une couche adjacente à une autre couche d'une substance spécifique de résine synthétique
40.
RESIN COMPOSITION, PREPREG, RESIN-COATED FILM, RESIN-COATED METAL FOIL, METAL-CLAD LAMINATE, AND WIRING BOARD
An aspect of the present invention relates to a resin composition containing a radical polymerizable compound (A), an inorganic filler (B) containing boron nitride (B-1) and silica (B-2), and a free radical compound (C) having at least one free radical group selected from the group consisting of structures represented by Formulas (1), (2), (3) and (4) in the molecule.
C08F 283/08 - Composés macromoléculaires obtenus par polymérisation de monomères sur des polymères prévus par la sous-classe sur des polyéthers, des polyoxyméthylènes ou des polyacétals sur des polyoxyphénylènes
A light-emitting device that emits output light, is a light-emitting device that includes: a light-emitting element that emits a primary light; and a wavelength converter that converts at least a portion of the primary light into a secondary light. The output light includes at least a portion of the secondary light. The output light has a light intensity greater than or equal to a predetermined value throughout an entire wavelength range of from 750 nm to 900 nm, inclusive. A ratio of a light intensity of the output light at 900 nm to a light intensity of the output light at 750 nm is greater than or equal to 0.2 and less than 3.0. The output light has a spectral luminosity of at least 0.1 lm/W and at most 10 lm/W.
H10H 29/851 - Moyens de conversion de la longueur d’onde
H10F 55/25 - Dispositifs à semi-conducteurs sensibles au rayonnement couverts par les groupes , ou structurellement associés à des sources lumineuses électriques et électriquement ou optiquement couplés avec lesdites sources dans lesquels la source lumineuse électrique commande les dispositifs à semi-conducteurs sensibles au rayonnement, p. ex. optocoupleurs dans lesquels les dispositifs sensibles au rayonnement et la source lumineuse électrique sont tous des dispositifs à semi-conducteurs
H10H 29/14 - Dispositifs intégrés comprenant au moins un composant émetteur de lumière à semi-conducteurs couvert par le groupe comprenant plusieurs composants émetteurs de lumière à semi-conducteurs
A green compact forming device includes: a reservoir of powder; a first forming roll and a second forming roll structured to be adjacent to each other at a predetermined interval, the powder fed to a gap between the two rolls, the powder compressed into a sheet shape by rotation of the two rolls to form a green compact, the second forming roll supporting and conveying the green compact on a circumferential surface; a first information acquisitor structured to acquire powder information regarding an amount of the powder stored in the reservoir; and a controller structured to control a circumferential speed of the second forming roll based on the powder information.
B30B 11/00 - Presses spécialement adaptées à la fabrication d'objets à partir d'un matériau en grains ou à l'état plastique, p. ex. presses à briquettes ou presses à tablettes
B30B 15/14 - Commande des presses actionnées mécaniquement
A resin composition contains: a molybdenum compound (A); a curable resin (B) including a maleimide compound (B1) and an allyl-group-containing benzoxadine compound (B2); and an inorganic filler (C). The molybdenum compound (A) includes molybdenum compound particles to be surface-treated with a surface treatment agent.
B32B 15/08 - Produits stratifiés composés essentiellement de métal comprenant un métal comme seul composant ou comme composant principal d'une couche adjacente à une autre couche d'une substance spécifique de résine synthétique
An outdoor unit included in a heat pump apparatus is disclosed. The outdoor unit includes a housing including a bottom plate (120). The bottom plate (120) includes a drain hole (131), a side wall (132), and a lid (133). The side wall (132) is erected along a portion of an outer circumference of the drain hole (131). The lid (133) extends from a tip end portion of the side wall (132) to cover at least a portion of the drain hole (131). According to the present disclosure, it is possible to prevent entry of water from the drain hole (131) of the bottom plate (120).
A production management system includes: an obtainer that obtains line configuration information related to an apparatus configuration of a production line including production-related apparatuses used in production of a mounting substrate; an allocator that allocates, to the production-related apparatuses, based on the line configuration information, software licenses that correspond to a plurality of software which, by being executed, realize operations set to the production-related apparatuses, the software licenses being used to permit execution of the plurality of software by the production-related apparatuses; and a displayer that displays a state of the software licenses allocated to the production-related apparatuses.
A porous portion and a core portion continuous with the porous portion are provided. In a thickness direction of the porous portion, when the porous portion is equally divided into first to tenth regions in order from an outer surface side of the porous portion, A1 to A10 μm/μm2 respectively represent pit circumferential lengths of the first to tenth regions. At this time, a high-capacitance electrolytic capacitor is provided by using an electrode foil for an electrolytic capacitor in which a maximum value Amax of the pit circumferential lengths among A1 to A10, a (Nmax)th region indicating Amax, a minimum value Amin of the pit circumferential lengths among regions located at a side close to the outer surface of the porous portion with respect to the (Nmax)th region, and a (Nmin)th region indicating Amin satisfy a relationship of {(Amax/Amin−1)×100}/(Nmax−Nmin)≤6, 85≤Amax, and 2≤Nmax.
A positive electrode for secondary batteries according to the present invention comprises a positive electrode collector and a positive electrode mixture layer that is arranged on the positive electrode collector, and is characterized in that: the positive electrode mixture layer comprises a positive electrode active material that contains a lithium-containing composite oxide that is composed of secondary particles, each of which is formed of aggregated primary particles; a coating film that contains elemental Nb is formed on the surface of each primary particle of the lithium-containing composite oxide; and the Gini coefficient of elemental Nb as calculated from an element mapping image that is obtained by time-of-flight secondary ion mass spectrometry (TOF-SIMS) of a cross-section of the secondary particles is 0.5 or less.
H01M 4/505 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques de manganèse d'oxydes ou d'hydroxydes mixtes contenant du manganèse pour insérer ou intercaler des métaux légers, p. ex. LiMn2O4 ou LiMn2OxFy
H01M 4/02 - Électrodes composées d'un ou comprenant un matériau actif
H01M 4/525 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques de nickel, de cobalt ou de fer d'oxydes ou d'hydroxydes mixtes contenant du fer, du cobalt ou du nickel pour insérer ou intercaler des métaux légers, p. ex. LiNiO2, LiCoO2 ou LiCoOxFy
H01M 10/0525 - Batteries du type "rocking chair" ou "fauteuil à bascule", p. ex. batteries à insertion ou intercalation de lithium dans les deux électrodesBatteries à l'ion lithium
A freezing apparatus according to the present disclosure operates while switching the gas cooler used, the freezing apparatus comprising: a refrigerant circuit which is composed of a low-stage compression mechanism, a water-cooled intercooler that cools a refrigerant discharged from the low-stage compression mechanism, a high-stage compression mechanism that suctions and compresses the refrigerant that has passed through the water-cooled intercooler, a water-cooled gas cooler and an air-cooled gas cooler that cool the refrigerant discharged from the high-stage compression mechanism, an expansion mechanism, and an evaporator; and an injection circuit which connects a refrigerant pipe on the upstream side of the expansion mechanism and a suction refrigerant pipe of the high-stage compression mechanism via an injection expansion mechanism.
F24D 17/00 - Systèmes domestiques d'alimentation en eau chaude
F25B 1/10 - Machines, installations ou systèmes à compression à cycle irréversible à compression multi-étagée
F25B 9/00 - Machines, installations ou systèmes à compression dans lesquels le fluide frigorigène est l'air ou un autre gaz à point d'ébullition peu élevé
In a negative electrode (12) for a secondary battery which is one example of an embodiment of the present invention, a negative electrode active substance layer (41) has a first active substance layer (41A) and a second active substance layer (41B). A tortuosity τ2 of the second active substance layer (41B) is smaller than a tortuosity τ1 of the first active substance layer (41A), and the B value calculated using equation 2 is equal to 1.7 to 1 divided by the A value. Equation 1: Tortuosity of negative electrode active substance layer (41)×thickness of negative electrode active substance layer (41)=A value Equation 2: Content ratio of Si-containing material to mass of active substance/A value=B value
This correction method comprises: acquiring, by means of a processing circuit of a head-mounted display, projection angles via a photographic lens of dots of a correction test pattern corresponding to dots of a reference test pattern, the angle being calculated on the basis of the correction test pattern obtained by photographing the reference test pattern with the photographic lens through a correction lens that corrects the user's visual characteristics, the reference test pattern including one dot placed at a reference point and at least one dot placed on each of a plurality of straight lines extending in different directions from the reference point; and correcting, by means of the processing circuit, distortion in a virtual space image caused by the adjustment lens on the basis of projection angles corresponding to the dots of the reference test pattern.
H04N 13/307 - Reproducteurs d’images pour visionnement sans avoir recours à des lunettes spéciales, c.-à-d. utilisant des affichages autostéréoscopiques utilisant des lentilles du type œil de mouche, p. ex. dispositions de lentilles circulaires
H04N 13/383 - Suivi des spectateurs pour le suivi du regard, c.-à-d. avec détection de l’axe de vision des yeux du spectateur
A negative electrode active material for nonaqueous electrolyte secondary batteries according to the present invention is characterized by containing composite particles that contain SiC and at least one of Si and an Si alloy, and is also characterized in that the composite particles have a crystallite diameter of 2.0 mm to 5.0 nm as calculated from the half width of the diffraction peak of the (111) plane of SiC in an XRD pattern obtained by an X-ray diffraction method.
H01M 4/36 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs
H01M 4/02 - Électrodes composées d'un ou comprenant un matériau actif
H01M 4/38 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'éléments simples ou d'alliages
H01M 4/58 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs de composés inorganiques autres que les oxydes ou les hydroxydes, p. ex. sulfures, séléniures, tellurures, halogénures ou LiCoFyEmploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs de structures polyanioniques, p. ex. phosphates, silicates ou borates
52.
ELECTROLYTIC CAPACITOR AND METHOD OF MANUFACTURING SAME
An electrolytic capacitor includes at least one capacitor element including: an anode body including a porous part in a surface layer; a dielectric layer covering at least a part of a surface of the anode body; and a solid electrolyte layer covering at least a part of the dielectric layer. The solid electrolyte layer includes, in the anode body, a first portion disposed in a void of the porous part, and a second portion disposed outside a principal surface of the anode body. The second portion includes n or more conductive polymer layers on one principal surface of the anode body. Following relational expressions are satisfied:
An electrolytic capacitor includes at least one capacitor element including: an anode body including a porous part in a surface layer; a dielectric layer covering at least a part of a surface of the anode body; and a solid electrolyte layer covering at least a part of the dielectric layer. The solid electrolyte layer includes, in the anode body, a first portion disposed in a void of the porous part, and a second portion disposed outside a principal surface of the anode body. The second portion includes n or more conductive polymer layers on one principal surface of the anode body. Following relational expressions are satisfied:
18.
μm
≤
T
t
≤
50.
μm
9.
μm
≤
Tt
/
n
≤
12.5
μm
where, n is an integer of 2 or more, and Tt is a thickness of the second portion on one principal surface of the anode body having the dielectric layer.
H01G 9/028 - Électrolytes organiques semi-conducteurs, p. ex. TCNQ
H01G 9/00 - Condensateurs électrolytiques, redresseurs électrolytiques, détecteurs électrolytiques, dispositifs de commutation électrolytiques, dispositifs électrolytiques photosensibles ou sensibles à la températureProcédés pour leur fabrication
H01G 9/048 - Électrodes caractérisées par leur structure
An electrolytic capacitor includes a capacitor element including an anode part and a cathode part, an anode lead frame electrically connected to the anode part, a cathode lead frame electrically connected to the cathode part, and an outer package covering the capacitor element. The anode lead frame includes an anode buried part buried in the outer package. The cathode lead frame includes a cathode buried part buried in the outer package. A first surface of at least one of the anode buried part or cathode buried part includes a plurality of recesses. A protrusions is provided at an outer edge of each of the plurality of recesses.
An imaging apparatus that performs image capturing operation in a plurality of operation modes, includes: an image sensor that captures a subject image via an optical system to generate image data; a temperature acquisition circuit that acquires temperature of the image sensor; and a controller that switches the plurality of operation modes based on the temperature of the image sensor. The plurality of operation modes includes a first operation mode and a second operation mode in which the image sensor consumes less power than in the first operation mode. The controller changes an operation mode of the imaging apparatus from the first operation mode to the second operation mode when the temperature of the image sensor increases to first temperature in image capturing operation in the first operation mode. The first temperature is lower than temperature at which execution of a predetermined function is restricted in the imaging apparatus.
H04N 23/667 - Changement de mode de fonctionnement de la caméra, p. ex. entre les modes photo et vidéo, sport et normal ou haute et basse résolutions
G03B 13/36 - Systèmes de mise au point automatique
H04N 23/52 - Éléments optimisant le fonctionnement du capteur d'images, p. ex. pour la protection contre les interférences électromagnétiques [EMI] ou la commande de la température par des éléments de transfert de chaleur ou de refroidissement
H04N 23/65 - Commande du fonctionnement de la caméra en fonction de l'alimentation électrique
H04N 23/67 - Commande de la mise au point basée sur les signaux électroniques du capteur d'image
An image capturing device includes: a casing; a heat source provided inside the casing; a monitor; a hinge provided to the casing and rotatably supporting the monitor; and a heat dissipation unit including a plurality of fins provided on an outer surface of the casing and thermally connected to the heat source. The monitor is configured to be rotatable by the hinge between a first position at which the monitor covers the plurality of fins of the heat dissipation unit, and a second position at which the monitor is away from the plurality of fins.
H04N 23/52 - Éléments optimisant le fonctionnement du capteur d'images, p. ex. pour la protection contre les interférences électromagnétiques [EMI] ou la commande de la température par des éléments de transfert de chaleur ou de refroidissement
A disclosed solid electrolytic capacitor element includes an anode section disposed on one end side and a cathode section disposed on the other end side. The cathode section has a pair of principal surfaces, a pair of side surfaces each connecting the pair of principal surfaces to each other and extending along a direction connecting the one end and the other end, and a first end surface connecting the pair of principal surfaces to each other and located at the other end. At least one of the side surfaces has at least one recess including a first end on the one end side and a second end on the other end side. A distance D1 between the first end surface and the second end is 0.05 L1 or more, where the L1 represents a distance between the one end and the other end.
A security monitoring device according to one aspect of the present disclosure includes: a receiver that receives a first alert generated by a first security product detecting a threat and a second alert generated by a second security product detecting a threat, the second security product being different from the first security product; a similarity calculator that calculates a similarity between the first alert and the second alert; and a first determiner that determines whether the first alert and the second alert are alerts generated by detecting a same threat, based on the similarity between the first alert and the second alert.
The present disclosure provides a plant disease resistance inducing agent that can effectively induce resistance to a plant disease. A plant disease resistance inducing agent according to the present disclosure contains a secretion product of a cyanobacterium.
The present disclosure is directed to an optical system internally having an intermediate imaging position that is conjugate with each of a magnification conjugate point on a magnification side and a reduction conjugate point on a reduction side, the optical system comprising: a magnification optical system including a plurality of lens elements and positioned on the magnification side with respect to the intermediate imaging position; and a relay optical system including a plurality of lens elements and positioned on the reduction side with respect to the intermediate imaging position; wherein a first lens element positioned closest to the magnification side of the magnification optical system has a positive power, and the optical system satisfies the following condition (1): 0.9≤f1/f2≤1.5 . . . (1), where f1 is a focal length of the magnification optical system, and f2 is a focal length of the relay optical system.
G02B 13/00 - Objectifs optiques spécialement conçus pour les emplois spécifiés ci-dessous
G02B 9/64 - Objectifs optiques caractérisés à la fois par le nombre de leurs composants et la façon dont ceux-ci sont disposés selon leur signe, c.-à-d. + ou — ayant plus de six composants
G02B 13/02 - Télé-objectifs photographiques, c.-à-d. systèmes du type + — dans lesquels la distance du sommet de l'angle avant au plan de l'image est inférieure à la distance focale équivalente
G02B 15/14 - Objectifs optiques avec moyens de faire varier le grossissement par déplacement axial d'au moins une lentille ou de groupes de lentilles relativement au plan de l'image afin de faire varier de façon continue la distance focale équivalente de l'objectif
A solid electrolyte according to the present disclosure contains Li, Pr, Zr, O, and M and includes a crystalline phase having a garnet-type crystal structure, wherein the M is at least one selected from the group consisting of Sb, Bi, As, Ge, and Te. An electricity storage device according to the present disclosure may be, for example, a battery. The battery includes a positive electrode, a negative electrode, and an electrolyte layer provided between the positive electrode and the negative electrode. At least one selected from the group consisting of the positive electrode, the negative electrode, and the electrolyte layer may include the solid electrolyte according to the present disclosure.
In the present invention, this positive electrode is provided with: a collector; and a composite material layer that is formed on at least one surface of the collector. The composite material layer includes a particulate aggregate formed from inorganic substance particles which do not occlude or emit Li, a conductive material, and a binding material for binding the inorganic particles and the conductive material. According to an exemplary embodiment, the aggregate is present closer to the collector side at least with respect to the thickness-direction center of the composite material layer, and accounts for at least 1.3 vol % with respect to the volume of the composite material layer.
H01M 4/13 - Électrodes pour accumulateurs à électrolyte non aqueux, p. ex. pour accumulateurs au lithiumLeurs procédés de fabrication
H01M 4/36 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs
H01M 4/48 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques
H01M 4/62 - Emploi de substances spécifiées inactives comme ingrédients pour les masses actives, p. ex. liants, charges
H01M 10/0525 - Batteries du type "rocking chair" ou "fauteuil à bascule", p. ex. batteries à insertion ou intercalation de lithium dans les deux électrodesBatteries à l'ion lithium
An imaging system includes an imaging device, a blur correction assembly that corrects a blur along a moving direction in a captured image, and a controller that controls an imaging timing of the imaging device. The blur correction assembly drives a blur corrector to make a blur correction along the moving direction. The blur corrector has a drive range including a reference position where an axis perpendicular to an imaging target surface is parallel to an optical axis of the imaging device, the optical axis being an axis of light injecting to the blur corrector from the imaging target surface. The controller causes the imaging device to start imaging when the blur corrector is located within a range where a difference from the reference position is less than or equal to a threshold during driving of the blur corrector.
H04N 23/68 - Commande des caméras ou des modules de caméras pour une prise de vue stable de la scène, p. ex. en compensant les vibrations du boîtier de l'appareil photo
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
An imaging device includes a first pixel and a second pixel adjacent to the first pixel. Each of the first pixel and the second pixel includes a first electrode, a second electrode positioned on or above the first electrode and facing the first electrode, a photoelectric conversion layer positioned between the first electrode and the second electrode, and a first charge-blocking layer positioned between the first electrode and the photoelectric conversion layer. The first charge-blocking layer of the first pixel is separated from the first charge-blocking layer of the second pixel. The photoelectric conversion layer is disposed continuously to the first pixel and the second pixel. An area of the first charge-blocking layer of the first pixel is larger than an area of the first electrode of the first pixel in plan view.
H10K 30/30 - Dispositifs organiques sensibles au rayonnement infrarouge, à la lumière, au rayonnement électromagnétique de plus courte longueur d'onde ou au rayonnement corpusculaire comprenant des hétérojonctions de masse, p. ex. des réseaux interpénétrés de domaines de matériaux donneurs et accepteurs
64.
DATA ANALYSIS DEVICE, DATA ANALYSIS METHOD, AND PROGRAM
Data analysis device (1) includes data acquisition unit (10) that acquires a plurality of explanatory variables X and E and objective variable Y that can take different values depending on a time, first model derivation unit (30) that performs multiple regression analysis by using the plurality of explanatory variables X and E and objective variable Y and derives first model M1 indicating a relationship between the plurality of explanatory variables X and E and objective variable Y, change point detection unit (50) that detects change point Tc that is a time when a predetermined explanatory variable (for example, E) among the plurality of explanatory variables X and E changes beyond a predetermined range, and second model derivation unit (60) that corrects first model M1 based on predetermined explanatory variable E starting from change point Tc and derives second model M2 that is a corrected model.
This positive electrode comprises a positive electrode current collector, and a positive electrode mixture layer disposed on the positive electrode current collector, wherein: the positive electrode mixture layer has a positive electrode active material containing a lithium-containing composite oxide composed of secondary particles in which primary particles are aggregated; the lithium-containing composite oxide has a Nb element; the average particle diameter of the primary particles is 1 μm or less; and in a depth profile obtained by time-of-flight secondary ion mass spectrometry (TOF-SIMS) of a cross-section of the positive electrode mixture layer, when the minimum ionic strength of Nb in the region from the surface of the positive electrode mixture layer to 500 nm in the thickness direction is Imin and the maximum ionic strength of Nb in a region from 500 nm to 1000 nm in the thickness direction is Imax, Imax/Imin is at least 1.5.
H01M 4/525 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques de nickel, de cobalt ou de fer d'oxydes ou d'hydroxydes mixtes contenant du fer, du cobalt ou du nickel pour insérer ou intercaler des métaux légers, p. ex. LiNiO2, LiCoO2 ou LiCoOxFy
H01M 4/02 - Électrodes composées d'un ou comprenant un matériau actif
H01M 10/0525 - Batteries du type "rocking chair" ou "fauteuil à bascule", p. ex. batteries à insertion ou intercalation de lithium dans les deux électrodesBatteries à l'ion lithium
66.
ANOMALY DETERMINATION METHOD AND PRODUCTION MANAGEMENT SYSTEM
An anomaly determination method, in a production management system that manages a production line including first, second, and third production devices, includes: obtaining, from among first, second, and third operating status data of the first, second, and third production devices, respectively, at least the first and third operating status data; when it is determined that the second operating status data was not obtained, predicting a dummy operation timepoint corresponding to a planned production quantity of the second production device, and generating dummy operating status data including the planned production quantity and the dummy operation timepoint; performing anomaly determination processing on production processes as a whole based on the first and third operating status data and the dummy operating status data; and outputting determination result information representing a result of the anomaly determination processing to display the determination result information on a display device included in the production management system.
A battery module includes a plurality of batteries, current collector plates each connecting the plurality of batteries, and an upper holder including a part disposed between the plurality of batteries and the current collector plates. The plurality of batteries is arranged in a direction orthogonal to the height direction of the batteries. The upper holder includes a plurality of inclined surface parts which is inclined with respect to the arrangement direction and on which the current collector plate is mounted. A plurality of inclined surface parts is disposed in a row.
H01M 50/507 - Interconnecteurs pour connecter les bornes des batteries adjacentesInterconnecteurs pour connecter les cellules en dehors d'un boîtier de batterie comprenant un arrangement de plusieurs barres omnibus réunies dans une structure de conteneur, p. ex. modules de barres omnibus
H01G 11/72 - Collecteurs de courant spécialement adaptés pour être intégrés dans des condensateurs hybrides ou EDL multiples ou empilés
H01M 50/213 - Bâtis, modules ou blocs de multiples batteries ou de multiples cellules caractérisés par leur forme adaptés aux cellules ayant une section transversale courbée, p. ex. ronde ou elliptique
H01M 50/258 - Batteries modulairesBoîtiers pourvus de moyens d’assemblage
H01M 50/262 - MonturesBoîtiers secondaires ou cadresBâtis, modules ou blocsDispositifs de suspensionAmortisseursDispositifs de transport ou de manutentionSupports avec des moyens de fixation, p. ex. des serrures
H01M 50/289 - MonturesBoîtiers secondaires ou cadresBâtis, modules ou blocsDispositifs de suspensionAmortisseursDispositifs de transport ou de manutentionSupports caractérisés par des éléments d’espacement ou des moyens de positionnement dans les racks, les cadres ou les blocs
A battery module includes a plurality of batteries arranged in a row, and a plurality of current collector plates electrically connected to the plurality of electric power storage devices, wherein the plurality of batteries is arranged in a direction orthogonal to a height direction of each battery. The plurality of current collector plates includes a flat plate shaped current collector main body that is inclined with respect to an arrangement direction of the plurality of batteries, and arranged in a row. The plurality of current collector plates includes a first current collector plate and a second current collector plate that are adjacent to each other, and a part of the current collector main body in the first current collector plate overlaps at least a part of the current collector main body in the second current collector plate in the height direction.
H01M 50/507 - Interconnecteurs pour connecter les bornes des batteries adjacentesInterconnecteurs pour connecter les cellules en dehors d'un boîtier de batterie comprenant un arrangement de plusieurs barres omnibus réunies dans une structure de conteneur, p. ex. modules de barres omnibus
H01M 50/48 - Éléments d'espacement à l'intérieur des cellules autres que les séparateurs, les membranes ou les diaphragmesLeurs procédés de fabrication caractérisés par le matériau
H01M 50/503 - Interconnecteurs pour connecter les bornes des batteries adjacentesInterconnecteurs pour connecter les cellules en dehors d'un boîtier de batterie caractérisées par la forme des interconnecteurs
A power storage device (battery) includes: an outer covering can in a bottomed cylindrical shape, the outer covering can accommodating an electrode body; and a sealing member that closes an opening of the outer covering can. The sealing member includes a sealing plate and a reinforcing plate that is disposed on an outer peripheral side of the sealing plate, the reinforcing plate being joined with the sealing plate at a boundary extending in a thickness direction of the sealing plate, and the reinforcing plate is made of a member having a rigidity higher than rigidity of the sealing plate.
H01M 50/107 - Boîtiers primairesFourreaux ou enveloppes caractérisés par leur forme ou leur structure physique ayant une section transversale courbe, p. ex. ronde ou elliptique
H01M 50/169 - Couvercles caractérisés par le procédé d’assemblage des boîtiers avec des couvercles par soudage, brasage ou brasage tendre
A battery 1000 according to the present disclosure includes a first electrode 101, a second electrode 103, and an electrolyte layer 102 positioned between the first electrode 101 and the second electrode 103. The first electrode 101 includes a current collector 100 and an active material layer 104 positioned between the current collector 100 and the electrolyte layer 102. The active material layer 104 includes an alloy, and the alloy includes Bi and Mn. A method for producing an electrode according to the present disclosure includes: forming a plating layer on a current collector by electroplating, the plating layer including a Bi plating film and a Mn plating film; and heating the current collector and the plating layer to obtain an electrode in which an active material layer including an alloy is formed on the current collector, the alloy including Bi and Mn.
An electrode is provided with a conductive intermediate layer that is arranged between a core material and a mixture layer. The mixture layer contains an active material and a first binder; and the intermediate layer contains a conductive material and a second binder. The conductive material has a particle size distribution which has a first peak that is within the particle diameter range from 0.005 μm to 0.07 μm and a second peak that is within the particle diameter range from 0.5 μm to 10 μm. The content of the particles that constitute the first peak is 1% by mass to 40% by mass of the mass of the conductive material. The second binder is mainly composed of a thermoplastic resin that has a melting point of 100° C. to 200° C., and has a composition that is different from the composition of the first binder.
A high-frequency processing device includes a high-frequency power supply, a high-frequency power radiation unit, an impedance adjustment unit, a power detection unit, and a control unit. The high-frequency power supply generates high-frequency power of variable magnitude. The high-frequency power radiation unit emits the high-frequency power toward a target object. The impedance adjustment unit adjusts a load impedance. The power detection unit detects supplied power and reflected power. The control unit calculates a reflectance and a phase difference to obtain the load impedance. The control unit determines whether or not the load impedance falls within a predetermined impedance region corresponding to output power of the high-frequency power supply. The control unit causes the impedance adjustment unit to guide the load impedance to and maintain the load impedance within the predetermined impedance region corresponding to the output power of the high-frequency power supply.
H02J 50/20 - Circuits ou systèmes pour l'alimentation ou la distribution sans fil d'énergie électrique utilisant des micro-ondes ou des ondes radio fréquence
73.
ELECTROLYTIC CAPACITOR AND METHOD FOR PRODUCING ELECTROLYTIC CAPACITOR
A disclosed manufacturing method is a method for manufacturing an electrolytic capacitor that includes an anode foil having a dielectric layer formed on a surface thereof, a cathode foil, and a separator. The manufacturing method includes, in the following order: a polymer layer formation step of forming a conductive polymer layer containing a conductive polymer component on the separator and at least one surface selected from a surface of the dielectric layer and a surface of the cathode foil; a stacked body formation step of forming a stacked body by stacking the anode foil, the cathode foil, and the separator; a liquid application step of impregnating the conductive polymer layer included in the stacked body with a liquid that includes water and an organic compound that does not boil at 100° C. under 1 atm; a removal step of removing a portion of the liquid with which the conductive polymer layer has been impregnated, such that the organic compound remains in the conductive polymer layer; and an impregnation step of impregnating the stacked body subjected to the removal step with a liquid component.
H01G 9/00 - Condensateurs électrolytiques, redresseurs électrolytiques, détecteurs électrolytiques, dispositifs de commutation électrolytiques, dispositifs électrolytiques photosensibles ou sensibles à la températureProcédés pour leur fabrication
A magnetic scale is disposed alongside of a magnetic sensor in a first direction and moves relative to the magnetic sensor in a second direction intersecting with the first direction. A moving distance transformer receives an output signal of the magnetic sensor and transforms the output signal into moving distance information. A controller receives the moving distance from the transformer and gives a movement instruction to either the magnetic sensor or the magnetic scale. The moving distance transformer includes a hysteresis corrector. The controller provides the hysteresis corrector with moving direction information about the magnetic sensor. The hysteresis corrector transforms the output signal into the moving distance information by making hysteresis correction to the output signal based on the moving direction information.
G01D 5/245 - Moyens mécaniques pour le transfert de la grandeur de sortie d'un organe sensibleMoyens pour convertir la grandeur de sortie d'un organe sensible en une autre variable, lorsque la forme ou la nature de l'organe sensible n'imposent pas un moyen de conversion déterminéTransducteurs non spécialement adaptés à une variable particulière utilisant des moyens électriques ou magnétiques influençant les caractéristiques d'impulsionsMoyens mécaniques pour le transfert de la grandeur de sortie d'un organe sensibleMoyens pour convertir la grandeur de sortie d'un organe sensible en une autre variable, lorsque la forme ou la nature de l'organe sensible n'imposent pas un moyen de conversion déterminéTransducteurs non spécialement adaptés à une variable particulière utilisant des moyens électriques ou magnétiques produisant des impulsions ou des trains d'impulsions utilisant un nombre variable d'impulsions dans un train
G01D 18/00 - Test ou étalonnage des appareils ou des dispositions prévus dans les groupes
75.
Method for controlling power transmitting device, method for detecting foreign object, and power transmitting device in wireless power transmission system
A power transmitting device includes a power transmitting coil for providing output power to a power receiving coil, a thermal sensor that detects a temperature around the power transmitting coil, and a power transmission control circuit that controls the power transmitting device. The power transmission control circuit causes the power transmitting coil to provide first output power, the power transmitting coil to provide second output power to the power receiving coil for charging a battery connected to the power receiving coil, the thermal sensor to detect the temperature around the power transmitting coil, and, if the detected temperature is equal to or higher than a threshold because of existing a metal foreign object, the power transmitting coil to reduce a level of the output power or stop the output power. The level of the first output power is lower than the level of the second output power.
H02J 7/00 - Circuits pour la charge ou la dépolarisation des batteries ou pour alimenter des charges par des batteries
B60L 50/50 - Propulsion électrique par source d'énergie intérieure au véhicule utilisant de la puissance de propulsion fournie par des batteries ou des piles à combustible
B60L 53/124 - Détection ou suppression de corps étrangers
B60M 7/00 - Lignes ou rails d'alimentation en énergie spécialement adaptés pour véhicules à propulsion électrique d'un type particuliers, p. ex. véhicules suspendus, téléfériques, chemins de fer souterrains
H02J 50/10 - Circuits ou systèmes pour l'alimentation ou la distribution sans fil d'énergie électrique utilisant un couplage inductif
H02J 50/12 - Circuits ou systèmes pour l'alimentation ou la distribution sans fil d'énergie électrique utilisant un couplage inductif du type couplage à résonance
H02J 50/60 - Circuits ou systèmes pour l'alimentation ou la distribution sans fil d'énergie électrique sensibles à la présence d’objets étrangers, p. ex. détection d'êtres vivants
H02J 50/90 - Circuits ou systèmes pour l'alimentation ou la distribution sans fil d'énergie électrique mettant en œuvre la détection ou l'optimisation de la position, p. ex. de l'alignement
H02J 50/80 - Circuits ou systèmes pour l'alimentation ou la distribution sans fil d'énergie électrique mettant en œuvre l’échange de données, concernant l’alimentation ou la distribution d’énergie électrique, entre les dispositifs de transmission et les dispositifs de réception
76.
ESTIMATION METHOD, RECORDING MEDIUM, AND ESTIMATION DEVICE
An estimation method includes: obtaining a first voice feature group of a plurality of persons who speak a first language; obtaining a second voice feature group of a plurality of persons who speak a second language; obtaining a voice feature of a subject; correcting the voice feature of the subject according to a relationship between the first voice feature group and the second voice feature group; estimating, from the voice feature of the subject that has been corrected, an oral function or a cognitive function of the subject by using an estimation process for an oral function or a cognitive function based on the second language; and outputting a result of estimation of the oral function or the cognitive function of the subject.
G10L 15/22 - Procédures utilisées pendant le processus de reconnaissance de la parole, p. ex. dialogue homme-machine
G10L 25/51 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes spécialement adaptées pour un usage particulier pour comparaison ou différentiation
77.
NEGATIVE ELECTRODE FOR SECONDARY BATTERY, AND SECONDARY BATTERY
A negative electrode for a secondary battery includes a negative electrode current collector and a negative electrode mixture layer including a negative electrode active material, wherein the negative electrode active material includes carbon particles and Si-containing particles, and in a distribution in a plane direction of the negative electrode mixture layer of a presence probability of Si element in a thickness direction of the negative electrode mixture layer, a difference of an upper limit value Rmax and a lower limit value Rmin in a 1σ region: Rmax−Rmin is 20% or less.
Provided are branch part (103) that distributes a refrigerant having flowed out of condenser (104) into main circuit (130) communicating with evaporator (108) and bypass circuit (140) that bypasses evaporator (108), confluence part (112) that merges the refrigerant from main circuit (130) and the refrigerant from bypass circuit (140), first throttle (106) that decompresses and expands the refrigerant between condenser (104) and evaporator (108), first inter-refrigerant heat exchanger (114) that exchanges heat between the refrigerant between condenser (104) and first throttle (106), and the refrigerant between confluence part (112) and suction into compressor (102), second throttle (110) that is disposed in bypass circuit (140), and decompresses and expands the refrigerant distributed at branch part (103), and second inter-refrigerant heat exchanger (111) that is disposed in bypass circuit (140) and exchanges heat between the refrigerant decompressed and expanded by second throttle (110) and the refrigerant having flowed out of the condensation-side outlet of first inter-refrigerant heat exchanger (114).
A management server stores administrator setting information for managing an expanded rental mode for each battery station based on specification by an administrator, controls, by referring to the administrator setting information, switching between the expanded rental mode and a normal rental mode which permits rental of only fully charged battery devices at each battery station, and displays a station guidance screen on a user terminal, the station guidance screen providing the user with guidance on the battery stations based on control of the rental mode thereof and including information on a transition state to the expanded rental mode at each battery station.
An information processing device is an information processing device that outputs a video stream by using a video captured by an imaging device capable of changing at least one parameter among pan, tilt, and zoom, and includes a parameter controller that controls at least one parameter of the imaging device. The parameter controller instructs the imaging device to change the at least one parameter, and outputs a switching permission signal for permitting switching of the video stream output from the information processing device when the change of the at least one parameter of the imaging device is completed.
H04N 23/695 - Commande de la direction de la caméra pour modifier le champ de vision, p. ex. par un panoramique, une inclinaison ou en fonction du suivi des objets
H04N 7/18 - Systèmes de télévision en circuit fermé [CCTV], c.-à-d. systèmes dans lesquels le signal vidéo n'est pas diffusé
H04N 23/69 - Commande de moyens permettant de modifier l'angle du champ de vision, p. ex. des objectifs de zoom optique ou un zoom électronique
Water softening device (1) of the present disclosure includes water softening tank (3), neutralization tank (4), electrolytic tank (12), water pump (19), current value detector (18), and controller (17) that controls a regeneration treatment. In the regeneration treatment, controller (17) continues the regeneration treatment when a current value of water pump (19) detected by current value detector (18) is more than or equal to a predetermined value, and stops the regeneration treatment and shifts to a hardness component discharge treatment of discharging a hardness component in the water softening device to the outside of the water softening device when the current value of water pump (19) detected by current value detector (18) is less than the predetermined value.
A disclosed electrolytic capacitor includes a stacked body and a liquid component with which the stacked body is impregnated. The stacked body includes an anode foil having a dielectric layer formed on a surface thereof, a cathode foil, a separator, and conductive polymer layers. The conductive polymer layers include a first conductive polymer layer formed on the dielectric layer, a second conductive polymer layer formed on the cathode foil, and a third conductive polymer layer formed on the separator. The first conductive polymer layer and the third conductive polymer layer are in contact with each other at a first interface, and the second conductive polymer layer and the third conductive polymer layer are in contact with each other at a second interface. When the amount of the liquid component contained in the stacked body has decreased, an electrical resistance between the first conductive polymer layer and the third conductive polymer layer and an electrical resistance between the second conductive polymer layer and the third conductive polymer layer increase.
H01G 9/028 - Électrolytes organiques semi-conducteurs, p. ex. TCNQ
H01G 9/00 - Condensateurs électrolytiques, redresseurs électrolytiques, détecteurs électrolytiques, dispositifs de commutation électrolytiques, dispositifs électrolytiques photosensibles ou sensibles à la températureProcédés pour leur fabrication
H01G 9/035 - Électrolytes liquides, p. ex. matériaux d'imprégnation
The solid electrolyte material of the present disclosure is a solid electrolyte material containing Li, Ti, and F, comprising an amorphous substance containing Li, Ti, and F. The solid electrolyte material of the present disclosure may further comprise a crystalline phase containing Li, Ti, and F. The solid electrolyte material production method of the present disclosure comprises: (A) synthesizing a compound comprising a crystalline phase containing Li, Ti, and F; and (B) performing a treatment to disturb the crystal of the compound. The compound may be mechanochemically treated in the step (B).
An optical axis changing assembly changes an optical axis of an imaging device to states of k optical axes, so that the optical axis of the imaging device changes from a state of a first optical axis of the imaging device during capturing a first image to a state of a second optical axis displaced in a second direction intersecting a first direction during capturing a second image, to sequentially change the optical axis of the imaging device in a second direction. The imaging device is installed with an installation inclination so that a predetermined optical axis among the k optical axes is inclined at a predetermined angle smaller than an optical axis change angle of the optical axis changing assembly with respect to a direction from an installation position of the imaging device to an imaging target region in a plane including the k optical axes.
H04N 23/695 - Commande de la direction de la caméra pour modifier le champ de vision, p. ex. par un panoramique, une inclinaison ou en fonction du suivi des objets
G03B 5/06 - Objectif basculant autour d'un axe perpendiculaire à l'axe optique
G03B 30/00 - Modules photographiques comprenant des objectifs et des unités d'imagerie intégrés, spécialement adaptés pour être intégrés dans d'autres dispositifs, p. ex. des téléphones mobiles ou des véhicules
H04N 23/667 - Changement de mode de fonctionnement de la caméra, p. ex. entre les modes photo et vidéo, sport et normal ou haute et basse résolutions
H04N 23/68 - Commande des caméras ou des modules de caméras pour une prise de vue stable de la scène, p. ex. en compensant les vibrations du boîtier de l'appareil photo
85.
POWER TRANSMISSION UNIT FOR ELECTRIC BICYCLES, AND ELECTRIC BICYCLE
A motor unit comprises a case, a motor, an input shaft, an output structure, a transmission member, a first tooth portion, a torque detection unit, and a rotator. The case includes a first supporting portion located at a first end of an inside of the case in the axial direction and rotatably supporting the rotator, and a second supporting portion located at a second end of the inside of the case in the axial direction and rotatably supporting the rotator. The rotator includes a second tooth portion meshing with the first tooth portion. A meshing part of the first tooth portion with the second tooth portion is arranged between the input shaft and the rotator in a direction perpendicular to the axis and is arranged radially outward of the rotator than the first supporting portion and the second supporting portion.
B62J 45/421 - Agencements de capteursLeur montage caractérisés par le montage sur la manivelle de pédalier
B62M 6/70 - Cycles propulsés par le conducteur avec moteur électrique auxiliaire motopropulsés au niveau d'un seul organe souple sans fin, p. ex. une chaîne, entre le vilebrequin et l'axe de moyeu du cycle, le moteur électrique venant en prise avec l'organe souple sans fin
F16D 41/30 - Roues libres ou embrayages à roue libre spécialement adaptés aux bicyclettes avec cliquet articulé coopérant avec des dents, des tenons ou des éléments analogues
86.
OBJECT AMOUNT CALCULATION APPARATUS AND OBJECT AMOUNT CALCULATION METHOD
An object amount calculation apparatus includes: a receiver configured to obtain a first three-dimensional model and a second three-dimensional model different from the first three-dimensional model, each of the first three-dimensional model and the second three-dimensional model representing a same space, each of the first three-dimensional model and the second three-dimensional model being constituted with regions having respective attributes; and a processor configured to: align the first three-dimensional model and the second three-dimensional model based on at least one attribute of the first three-dimensional model and the second three-dimensional model; calculate, for each of the attributes, a difference between the first three-dimensional model aligned and the second three-dimensional model aligned; and output (i) a total amount of differences corresponding to two or more attributes among the attributes and (ii) information on the two or more attributes.
G06T 7/33 - Détermination des paramètres de transformation pour l'alignement des images, c.-à-d. recalage des images utilisant des procédés basés sur les caractéristiques
G06T 17/00 - Modélisation tridimensionnelle [3D] pour infographie
G06T 19/20 - Édition d'images tridimensionnelles [3D], p. ex. modification de formes ou de couleurs, alignement d'objets ou positionnements de parties
87.
IMAGING SYSTEM AND MOBILE OBJECT PROVIDED WITH SAME
An imaging system includes an imaging device performing imaging in a first imaging state and a second imaging state of different optical axes, an attitude detector that detects an attitude change amount of the mobile object, an optical axis changing assembly that changes, while the mobile object is moving in a first direction, an optical axis of the imaging device from a state of a first optical axis at a time when the imaging device performs imaging in the first imaging state to a state of a second optical axis inclined in a second direction intersecting the first direction at a time of imaging in the second imaging state, and a controller that sets an optical axis change amount by which the optical axis changing assembly changes the optical axis of the imaging device, based on the attitude change amount.
G03B 5/00 - Réglage du système optique relatif à l'image ou à la surface du sujet, autre que pour la mise au point présentant un intérêt général pour les appareils photographiques, les appareils de projection ou les tireuses
A method for connecting an optical waveguide includes supplying adhesive (3) to near a light input unit on an optical circuit board, aligning optical fiber block (2) holding optical fiber (2a) with respect to the optical circuit board to maximize intensity of light emitted from the optical circuit board, starting curing of the adhesive, measuring a curing degree of the adhesive and an adhesive curing time during the curing of the adhesive, and repeating the alignment of the optical fiber block holding the optical fiber with respect to the optical circuit board to maximize the intensity of the light emitted from the optical circuit board in a state where the degree of curing is less than or equal to a certain threshold value.
A conductive porous material includes a skeleton structure containing a fibrous carbonaceous material of biological origin, and graphene held by the skeleton structure. A volume resistivity of the conductive porous material measured under pressure of less than or equal to 10 MPa is 1.0×10−3 to 1.0×100 Ω·cm. A biomass degree of the conductive porous material, as measured by accelerator mass spectrometry (AMS) method, is in a range of 5 to 55 pMC. An electrode includes the conductive porous material.
A laser device includes a first optical comb laser, a second optical comb laser having a repetition frequency different from the first optical comb laser, a detection unit that detects interfering light between light output from the first optical comb laser and light output from the second optical comb laser and a control circuit. The control circuit controls at least one of a first CEO frequency, which is a carrier-envelope offset frequency of the first optical comb laser, or a second CEO frequency, which is a carrier-envelope offset frequency of the second optical comb laser, on the basis of output of the detection unit and thus changes a difference frequency, which is a difference between the first CEO frequency and the second CEO frequency.
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 3/13 - Stabilisation de paramètres de sortie de laser, p. ex. fréquence ou amplitude
91.
VIDEO RECEPTION METHOD, VIDEO TRANSMISSION METHOD, VIDEO RECEPTION APPARATUS, AND VIDEO TRANSMISSION APPARATUS
Provided is a video reception method performed by a video reception apparatus including a display. The video reception method includes: receiving a reception signal multiplexed from video data and audio data; outputting, as first transfer characteristics information, transfer characteristics obtained by demultiplexing the reception signal; outputting, as second transfer characteristics information, transfer characteristics obtained by decoding the video data, the second transfer characteristics information being information for specifying, at frame accuracy, a transfer function corresponding to a luminance dynamic range of the video data; and displaying the video data while controlling a luminance dynamic range of the display at frame accuracy according to the second transfer characteristics information.
H04N 19/98 - Codage de plage-dynamique adaptative [ADRC]
H04N 19/136 - Caractéristiques ou propriétés du signal vidéo entrant
H04N 19/44 - Décodeurs spécialement adaptés à cet effet, p. ex. décodeurs vidéo asymétriques par rapport à l’encodeur
H04N 19/46 - Inclusion d’information supplémentaire dans le signal vidéo pendant le processus de compression
H04N 19/895 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le pré-traitement ou le post-traitement spécialement adaptés pour la compression vidéo mettant en œuvre des procédés ou des dispositions de détection d'erreurs de transmission au niveau du décodeur combiné à la dissimulation d’erreurs
H04N 21/236 - Assemblage d'un flux multiplexé, p. ex. flux de transport, en combinant un flux vidéo avec d'autres contenus ou données additionnelles, p. ex. insertion d'une adresse universelle [URL] dans un flux vidéo, multiplexage de données de logiciel dans un flux vidéoRemultiplexage de flux multiplexésInsertion de bits de remplissage dans le flux multiplexé, p. ex. pour obtenir un débit constantAssemblage d'un flux élémentaire mis en paquets
H04N 21/2362 - Génération ou traitement d'informations de service [SI]
H04N 21/431 - Génération d'interfaces visuellesRendu de contenu ou données additionnelles
H04N 21/434 - Désassemblage d'un flux multiplexé, p. ex. démultiplexage de flux audio et vidéo, extraction de données additionnelles d'un flux vidéoRemultiplexage de flux multiplexésExtraction ou traitement de SIDésassemblage d'un flux élémentaire mis en paquets
H04N 21/845 - Structuration du contenu, p. ex. décomposition du contenu en segments temporels
A capacitor element includes an anode body including a first portion including a first end and a second portion including a second end, and a separation part disposed on a part positioned between the first end and the second end of the anode body. The conductive polymer layer includes an inner layer filled in at least a part of the porous part, and an outer layer positioned outside a principal surface of the anode body. The separation part includes an end A and an end B, the end B being positioned closer to the second end than the end A is. A filling proportion in a region C included in a cross section of a portion of the porous part from the end B to 0.05L is more than or equal to 46%, where L represents a length from the end B to an end of the cathode part at the second end side.
A vanadium oxide of the present disclosure is represented by a composition formula (1): Li3+x+αV1-xMxO4+α2. In the composition formula (1), 0.03<α<1.0 and 0≤x<1.0 are satisfied, and M is at least one selected from the group consisting of tetravalent metal elements. A battery 1000 of the present disclosure includes a positive electrode 201, a negative electrode 203, and an electrolyte layer 202 disposed between the positive electrode 201 and the negative electrode 203. The negative electrode 203 includes the vanadium oxide of the present disclosure.
H01M 4/485 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques d'oxydes ou d'hydroxydes mixtes pour insérer ou intercaler des métaux légers, p. ex. LiTi2O4 ou LiTi2OxFy
A mounting head includes a drive part that moves in a vertical direction to apply a load to an electronic component, a float part supported by the drive part in a vertically movable manner, and a linear motor that applies a vertical upward pressing force to the float part. The linear motor includes a stator fixed on the drive part and a moving member fixed on the float part. The drive part moves downward in the vertical direction to apply the load due to own weight of the float part to the electronic component to mount the electronic component onto the board. The linear motor is driven to control a magnitude of 10 the load applied to the electronic component by applying the vertical upward pressing force to the float part.
A lighting device that emits light to a lighting target surface and includes a light source, and a lens having an incident surface that receives light emitted from the light source and an emission surface that emits the light received by the incident surface. The emission surface is a convex curved surface. The curvature of the emission surface along a first direction perpendicular to an optical axis direction of the lens is smaller than the curvature of the emission surface along a second direction perpendicular to the optical axis direction and the first direction.
Evaluation device (100) is a device that evaluates, by Bayesian optimization, unknown characteristic points corresponding to a plurality of candidate control points at a second time following a first time based on known characteristic points corresponding to controlled control points at the first time, the device including: reception controller (10) that acquires control result data (222) indicating the controlled control points at the first time and the known characteristic points at the first time, purpose data (212) indicating an optimization purpose, constraint condition data (213) indicating a constraint condition, and region reduction rule data (214); evaluation value calculating unit (12) that calculates an evaluation value of each of the plurality of unknown characteristic points based on control result data (222), purpose data (212), constraint condition data (213), and region reduction rule data (214); and evaluation value output unit (13) that outputs an evaluation value.
G05B 13/02 - Systèmes de commande adaptatifs, c.-à-d. systèmes se réglant eux-mêmes automatiquement pour obtenir un rendement optimal suivant un critère prédéterminé électriques
G06N 7/01 - Modèles graphiques probabilistes, p. ex. réseaux probabilistes
97.
SHAPE MEASUREMENT METHOD AND SHAPE MEASUREMENT DEVICE
A shape measurement method of the present disclosure is configured to measure a three-dimensional shape of a surface of a measurement object, the shape measuring method including the steps of: dividing the surface of the measurement object into a plurality of measurement regions; acquiring a plurality of sets of partial measurement data; calculating a first coordinate transformation parameter for performing global alignment of the plurality of sets of partial measurement data; acquiring error calculation data including a normal line at each of a plurality of measurement points of the plurality of sets of partial measurement data; extracting an overlapping region based on the plurality of sets of partial measurement data and the first coordinate transformation parameter; calculating a second coordinate transformation parameter for performing local alignment of the plurality of sets of partial measurement data based on the error calculation data in the extracted overlapping region; and generating composite data by combining the plurality of sets of partial measurement data based on the first coordinate transformation parameter and the second coordinate transformation parameter.
The composite resin composition includes: a base resin; a low molecular weight resin; a compatibilizer; and a filler. The low molecular weight resin and the base resin belong to a same kind of resin, a molecular weight of the low molecular weight resin is lower than a molecular weight of the base resin, and the compatibilizer has a molecular structure that is substantially a same as a molecular structure of the base resin.
An imaging device includes a semiconductor substrate and pixels. Each of the pixels includes a first capacitive element including a first electrode provided above the semiconductor substrate, a second electrode provided above the semiconductor substrate, and a dielectric layer located between the first electrode and the second electrode. At least one selected from the group consisting of the first electrode and the second electrode has a first electrical contact point electrically connected to a first electrical element and a second electrical contact point electrically connected to a second electrical element different from the first electrical element. The first capacitive element includes at least one trench portion having a trench shape.
A cellulose fiber composite resin composition includes: a base resin; a cellulose fiber, and a dispersant. The cellulose fiber is contained in an amount of 50 mass % or more and 90 mass % or less, the cellulose fiber has an average particle diameter of 10 μm or more and 70 μm or less, the cellulose fiber includes a cellulose fiber having a particle diameter of 710 μm or less in a ratio of 95% or more, and the cellulose fiber includes a cellulose fiber having an aspect ratio of 5 or more and 100 or less in a ratio of 95% or more.