This optical element driving device comprises: a movable side member that moves in a direction orthogonal to an optical axis by driving of a driving part while holding an optical element; a fixed side member that is disposed at a position separate from the movable side member in an optical axis direction, and supports the movable side member movably in the direction orthogonal to the optical axis via a rolling member; and a wire that is buried in the movable side member and/or the fixed side member and electrically connected to the driving part. The movable side member and the fixed side member each have a housing part forming surface that forms a housing part of the rolling member, and are exposed in a portion of the housing part forming surface such that the wire comes into contact with the rolling member.
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
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
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 23/55 - Pièces optiques spécialement adaptées aux capteurs d'images électroniques; Leur montage
H04N 23/57 - Caméras ou modules de caméras comprenant des capteurs d'images électroniques; Leur commande - Détails mécaniques ou électriques de caméras ou de modules de caméras spécialement adaptés pour être intégrés dans d'autres dispositifs
2.
OPTICAL ELEMENT DRIVING DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
This optical element driving device (1) for driving an optical element comprises: a retaining part (10) having an opening that surrounds the outer periphery of an optical element and is capable of retaining the optical element; an accommodating part (20) for accommodating the retaining part in the inside thereof; and support parts (40A) having a plurality of contact parts (31) that come in contact with the retaining part in at least three positions distributed in the circumferential direction inside the accommodating part, the support parts (40A) supporting the retaining part so as to be able to move in an optical axis direction while the retaining part is pressed toward the inside of the opening by the plurality of contact parts.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/02 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
An optical element driving device according to the present invention comprises a moving part which is capable of holding an optical element, a driving part which drives the moving part by vibrating a piezoelectric element, and a voltage-raising part which raises input voltage that is input into the piezoelectric element, wherein the voltage-raising part has an inductor connected in series to the piezoelectric element and a capacitor connected in parallel to the piezoelectric element. A camera module according to the present invention comprises an optical element driving device and an imaging part which captures a subject image formed by an optical element. A camera-mounted device according to the present invention comprises a camera module and an image processing part which processes image information acquired by the camera module.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
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
This optical element driving device comprises: a first movable part configured to be movable in an optical axis direction by a first driving part in a state of holding an optical element; and a second movable part configured by stacking a first stage and a second stage on a base so as to be movable in a direction orthogonal to the optical axis together with the first movable part by a second driving part. The second driving part is disposed along each of two side surfaces orthogonal to each other of the second movable part, and the first driving part is disposed at each of diagonal positions of the second movable part.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/08 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement adaptés pour fonctionner en combinaison avec un mécanisme de télécommande
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
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
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
A central part (11) has a hollow part (11a) that extends in a forward/backward direction. A conductive wire (12) is wound about the central part (11). A first core and a second core are formed of a material including a magnetic substance. The first core has: a first inner portion (131a) that extends from one end of the central part (11) in the forward/backward direction into the hollow part (11a); and a first outer portion (131b) that is opposed to the conductive wire (12) at least from the upward direction and from a left-right direction. The second core has: a second inner portion (132a) that extends from the other end of the central part (11) in the forward/backward direction into the hollow part (11a); and a second outer portion (132b) that is opposed to the conductive wire (12) at least from the upward direction and from the left-right direction. A tip end of the first inner portion (131a) and a tip end of the second inner portion (132a) are opposed to each other in the forward/backward direction. The diameter of the tip end of the first inner portion (131a) is different from the diameter of the tip end of the second inner portion (132a).
A projection device 1 includes: a first pattern plate 11a having a first pattern; a second pattern plate 11b having a second pattern; a light source 12 for radiating light onto the first pattern plate 11a and the second pattern plate 11b; and a projection optical system 13 for projecting the first pattern and the second pattern onto an object 200 by focusing transmitted light which has been transmitted through the first pattern plate 11a and the second pattern plate 11b. The first pattern plate 11a and the second pattern plate 11b are provided between the light source 12 and the projection optical system 13 on an optical axis OA of the projection optical system 13.
G01C 3/06 - Utilisation de moyens électriques pour obtenir une indication finale
G01B 11/00 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques
G02B 7/32 - Systèmes pour la génération automatique de signaux de mise au point utilisant un triangle parallactique avec une ligne de base utilisant des moyens actifs, p.ex. un émetteur de lumière
G02B 7/36 - Systèmes pour la génération automatique de signaux de mise au point utilisant des techniques liées à la netteté de l'image
G03B 13/36 - Systèmes de mise au point automatique
G03B 35/04 - Photographie stéréoscopique par enregistrement subséquent avec mouvement d’organes sélecteurs de rayons dans un système déterminant plusieurs points de vue
This optical element driving device comprises: a movable part that can hold an optical element and has a circuit for driving the optical element; a fixing part that is disposed via a support member at a position spaced apart from the movable part in an optical axis direction and that oscillatably supports the movable part by the support member in an optical axis orthogonal direction orthogonal to the optical axis direction; a connection member that elastically connects the movable part and the fixing part so as to hold a state where the movable part and the fixing part hold the support member therebetween and that forms a conductive path between the circuit and the fixing part; and a non-conductive member that is formed from a non-conductive material and that is disposed so as to surround at least a portion of the periphery of the connection member such that the connection member opposes a portion elastically deformed in the optical axis orthogonal direction.
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
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
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
The present invention allows the voltages of a plurality of cells of a fuel battery to be measured without using an additional component such as another connector or wiring even when the number of channels for measurement of a measuring instrument is limited. A cell voltage cell monitor connector (1) for a fuel battery includes: a plurality of cell voltage measuring terminals (2) respectively connected to a plurality of cells (110) of a cell unit; a zero set voltage measuring terminal (3) connected to a cell (110) stacked from the negative direction side of a stacking direction on a cell located first on the negative direction side of the stacking direction among the plurality of cells (110) of the cell unit; and a housing (4) holding the plurality of cell voltage measuring terminals (2) and the zero set voltage measuring terminal (3).
A flow creation system 1 comprises: a beacon transmitter 3 that transmits a beacon signal 31 with a predetermined frequency of transmission; a cluster-type network CN that includes an end receiver layer composed of a plurality of end receiver units ER configured to receive the beacon signal 31 transmitted from the beacon transmitter 3 and a reporter layer composed of a plurality of reporter units R configured to receive first report data 7 on the intensity of the beacon signal 31, which is received by each of the plurality of end receiver units ER, from each of the plurality of end receiver units ER and generate second report data 8; and an application device 5 that creates, on the basis of the second report data 8, a flow to be tracked.
G08G 1/13 - Systèmes de commande du trafic pour véhicules routiers indiquant la position de véhicules, p.ex. de véhicules à horaire déterminé à une station centrale l'indicateur étant sous la forme d'une carte
G06Q 30/06 - Transactions d’achat, de vente ou de crédit-bail
G01S 5/02 - Localisation par coordination de plusieurs déterminations de direction ou de ligne de position; Localisation par coordination de plusieurs déterminations de distance utilisant les ondes radioélectriques
10.
CONTAINER, CONTAINER SUPPORT, VEHICLE DETECTION DEVICE, AND CONTAINER EMBEDDING METHOD
A container that is disposed and used inside a housing hole formed in a road surface and comprises a support that extends towards the outside from a side surface of the main body of the container, curves when the main body is inserted into the housing hole, an outer end section abutting an inside wall of the housing hole, and supports the main body so as to maintain the position of the main body inside the housing hole. The vehicle detection device comprises: a vehicle detection unit that detects the presence of a vehicle; and a container that houses the vehicle detection unit therein. The container support supports, inside the housing hole formed in a road surface, a container disposed and used inside the housing hole, and comprises: a holding unit that detachably holds the container; and a support that extends from the holding unit so as to face the outside from a side surface of the container, curves when the container is inserted into the housing hole, an outer end section abutting an inside wall of the housing hole, and supports the container so as to maintain the position of the container inside the housing hole.
E01F 11/00 - Bourrelets ou autres dispositifs sensibles encastrés dans les pavés ou autres revêtements routiers
G08G 1/042 - Détection du mouvement du trafic pour le comptage ou la commande utilisant des détecteurs inductifs ou magnétiques
E01F 9/506 - Marquages à la surface des routes; Bordures de trottoirs ou bords de routes, spécialement adaptés pour avertir les usagers de la route caractérisés par le matériau de marquage de la surface des routes, p.ex. comprenant des additifs pour améliorer la friction ou le pouvoir réfléchissant; Procédés pour former, installer ou appliquer des marquages dans, sur ou à la surface des routes
An antenna device comprising: a chassis; a substrate; a flat antenna unit disposed on a first surface of the substrate on a side opposite a predetermined wall; a circuit unit disposed on a second surface of the substrate on the predetermined wall side, and electrically connected to the flat antenna unit; and a shield member disposed in a position in a part of the predetermined wall opposite the circuit unit, to shield unwanted waves emitted from the circuit unit.
This incorrect insertion prevention structure 250 includes: a screw hole 261 that can be engaged with a lock screw 1060 when a plug terminal 1030 in a normal orientation P1 is connected with a receptacle 810; and a protrusion 270 that protrudes from the perimeter of the receptacle 810, allows connection of the receptacle 810 and the plug terminal 1030 in the normal orientation P1, and restricts connection of the receptacle 810 and the plug terminal 1030 while in a reverse orientation P2.
In a camera 100, a lens unit 420 and an image capturing element 600 that receives light input thereto from the lens unit 420 are connected to each other via a distance increasing member 110 and a distance decreasing member 120, the distance increasing member 110 increasing the separation distance D between the lens unit 420 and the image capturing element 600 in response to a thermal variation, and the distance decreasing member 120 decreasing the separation distance D between the lens unit 420 and the image capturing element 600 in response to a thermal variation.
G02B 7/02 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
A camera 100 has a cylinder 300 and a lens assembly 400 positioned inside the cylinder 300. The cylinder 300 has: a small-diameter section 310 having a screw thread 311 formed in the outer circumference thereof; a medium-diameter section 320 positioned to the rear of the small-diameter section 310 and having a larger outer diameter than does the small-diameter section 310; a large-diameter section 330 positioned to the rear of the medium-diameter section 320 and having a larger outer diameter than does the medium-diameter section 320; and a stepped surface 350 positioned between the medium-diameter section 320 and the large-diameter section 330. The cylinder 300 is inserted into a through-hole 2040 of an attachment 2000, and a fastener 2900 is fastened to the attachment 2000 by being screwed onto the screw threads 311 from the light-receiving side of the attachment 2000 in the optical axis direction while the stepped surface 350 abuts the attachment 2000.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
A camera 100 comprises a cylinder 300, a lens assembly 400 that is disposed within the cylinder 300, an imaging element 600 that receives light incident from the lens assembly 400, and a moving mechanism 500 that moves the lens assembly 400 in an optical axis direction LL within the cylinder 300 by applying, to the lens assembly 400, force in the optical axis direction LL from the image formation side in the optical axis direction LL.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/08 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement adaptés pour fonctionner en combinaison avec un mécanisme de télécommande
A lens cover assembly 900 includes: a cap 910 that comprises a ring-shaped body portion 911, a ring-shaped wall portion 912 extending from the body portion 910, a receiving portion 913 formed on the inner circumferential surface of the wall portion 912, and an engaging portion 914 protruding outwardly from the outer circumferential surface of the wall portion 912; a lens cover 920 that is accommodated in the receiving portion 913 of the cap 910; and a fixing member 930 that comprises a ring-shaped body portion 931, a wall portion 932 extending from the outer edge of the body portion 931, and a tab portion 933 protruding inwardly from the inner circumferential surface of the wall portion 932. By engaging the engaging portion 914 of the cap 910 with the tab portion 933 of the fixing member 930, the fixing member 930 is attached to the cap 910, and the lens cover 920 is retained in the receiving portion 913 of the cap 910.
The present invention suppresses the unnecessary detection of an occurence of a person being left behind in a vehicle. A vehicle occupant detection device (100) comprises: a distance detection unit (101) that detects the relative distance between a vehicle (200) and a first occupant; an occupant detection unit (102) that detects the presence/absence of a second occupant in the vehicle (200); and an execution timing controller (103) that, according to the detected relative distance, controls the execution timing of the detection operation by the occupant detection unit (102).
G08B 21/22 - Alarmes de situation réagissant à la présence ou à l'absence de personnes
G08B 25/04 - 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 une ligne de signalisation unique, p.ex. en boucle fermée
18.
OPTICAL ELEMENT DRIVING DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
This optical element driving device comprises: a movable part that can hold an optical element for bending incident light; a guide part for guiding movement of the movable part; a drive part for driving the movable part so as to move on the guide part; a rolling body disposed between the movable part and the guide part; and a preload generation part for generating preload to attract the movable part to the guide part side via the rolling body.
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
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
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
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
19.
OPTICAL ELEMENT DRIVING DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
This optical element driving device comprises: a moveable part which can hold an optical element; a drive part which rotationally drives the moveable part; a fixed part which rotatably supports the moveable part; a plurality of interposed parts which are interposed between the moveable part and the fixed part, and which are driven by the rotational movement of the moveable part; and a spacing-maintaining part which is disposed between the moveable part and the fixed part, and which maintains the spacing between the plurality of interposed parts in the rotational direction of the moveable part.
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
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
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
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
20.
OPTICAL ELEMENT DRIVE DEVICE, CAMERA MODULE, AND CAMERA MOUNTING DEVICE
This optical element drive device comprises: a movable part; a drive unit; a substrate part that can supply power to the movable part; and a power supply path unit that constitutes a power supply path between the substrate part and the movable part by extending so as to connect a substrate-part-side terminal and a movable-part side terminal that are set apart from each other in a second direction, the power supply path unit having in at least a portion a coil part that can extend and contract in accordance with the movement of the movable part.
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
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
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
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
21.
ANOMALY DETECTION DEVICE, ANOMALY DETECTION METHOD, ANOMALY DETECTION PROGRAM, AND SYSTEM FOR DETECTING ANOMALY IN BEARING
This anomaly detection device has: a data acquisition unit that acquires a signal that captures the passing vibration of a rolling element; a data processing unit that, using said signal, calculates a feature value indicating the ratio between the amplitude of a frequency indicating the passing vibration of the rolling element and the amplitude of a signal component of the Nth harmonic of a frequency indicating the passing vibration; and an anomaly determination unit that, on the basis of said feature value, determines whether or not the state of a measured object including the rolling element is abnormal.
F16C 19/06 - Paliers à contact de roulement pour mouvement de rotation exclusivement avec roulements à billes essentiellement du même calibre, en une ou plusieurs rangées circulaires pour charges radiales principalement avec une seule rangée de billes
F16C 19/52 - Paliers à contact de roulement pour mouvement de rotation exclusivement avec dispositifs affectés par des conditions anormales ou indésirables
F16C 33/58 - Chemins de roulement; Bagues de roulement
G01H 17/00 - Mesure des vibrations mécaniques ou des ondes ultrasonores, sonores ou infrasonores non prévue dans les autres groupes de la présente sous-classe
G01M 99/00 - Matière non prévue dans les autres groupes de la présente sous-classe
22.
OPTICAL ELEMENT DRIVING DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
Provided are an optical element driving device, a camera module, and a camera-equipped device, whereby it is possible to suppress a decrease in drive performance over time that accompanies wear of an active element or a passive element. The optical element driving device comprises: a fixed part; a movable part positioned apart from the fixed part; a support part for supporting the movable part in relation to the fixed part; and a drive unit (30) having an ultrasonic motor which has a piezoelectric element (32) and an active element (31) that resonates with vibration of the piezoelectric element (32), and a passive element (34) that contacts the active element (31) in a state of being urged thereby and moves relative to the active element (31). Passive-side contact parts (343) of the passive element (34) are formed of a ceramic material having higher hardness than active-side contact parts (312) of the active element (31).
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
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
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
H02N 2/04 - Machines électriques en général utilisant l'effet piézo-électrique, l'électrostriction ou la magnétostriction produisant un mouvement linéaire, p.ex. actionneurs; Positionneurs linéaires - Détails de structure
An electronic shelf label system 1 includes: a cluster type network CN that is formed by a plurality of electronic shelf label devices; and an application device 3 that is communicatively connected to the cluster type network CN. The cluster type network CN includes: a shelf label hierarchical layer configured from a plurality of electronic shelf label devices 4 that serve as shelf labels for a plurality of commodities; and a relay hierarchical layer configured from a plurality of electronic shelf label devices 4 for relaying a signal to be transmitted from the application device 3 to any of the plurality of electronic shelf label devices 4 of the shelf label hierarchical layer.
An optical actuator that comprises an inside holder that can hold an optical path bending member, an outside holder that supports the inside holder such that the inside holder can pivot around a first axis, and a drive unit that makes the inside holder pivot. Either end part of the inside holder in a direction parallel to the first axis is rotatably supported on the outside holder via a bearing part. The drive unit has: an ultrasonic motor that is supported on the outside holder; and an intermediate part that is supported on the inside holder. The ultrasonic motor has an oscillator that resonates, and the intermediate part has a fan-shaped contact part that contacts the oscillator.
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
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
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
H02N 2/12 - Machines électriques en général utilisant l'effet piézo-électrique, l'électrostriction ou la magnétostriction produisant un mouvement rotatif, p.ex. moteurs rotatifs - Détails de structure
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
G02B 7/198 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour miroirs pour miroirs avec des moyens pour régler la position du miroir par rapport à son support
25.
DRIVE UNIT, LENS DRIVING DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
This drive unit comprises: an ultrasonic motor that converts the oscillation of a piezoelectric element to linear movement; a contact part that contacts a resonating part; a support part that is connected to a moveable part and supports the contact part; and an impelling part which is coupled to the contact part and which impels the contact part toward the resonating part so that the contact part moves in accordance with the resonance of the resonating part and transmits impelling force to the moveable part via the support part.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
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
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
H02N 2/04 - Machines électriques en général utilisant l'effet piézo-électrique, l'électrostriction ou la magnétostriction produisant un mouvement linéaire, p.ex. actionneurs; Positionneurs linéaires - Détails de structure
H04N 5/232 - Dispositifs pour la commande des caméras de télévision, p.ex. commande à distance
26.
OPTICAL ELEMENT DRIVING DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
Provided are an optical element driving device, a camera module, and a camera-equipped device which can achieve size reduction and height reduction and improve driving performance and sound-reducing performance. This optical element driving device comprises: a fixed part; a movable part disposed apart from the fixed part; a support part which supports the movable part with respect to the fixed part; and a driving unit which has an ultrasonic motor that converts a vibration motion into a linear motion and a power transmission part that transmits the driving force of the ultrasonic motor to the movable part, and moves the movable part with respect to the fixed part, wherein the power transmission part has a plate which is in contact with a resonance part of the ultrasonic motor, and a damper material is disposed on a second surface side opposite to a first surface which is in contact with the resonance part in the plate.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/08 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement adaptés pour fonctionner en combinaison avec un mécanisme de télécommande
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
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
Provided are an optical element drive device, a camera module, and a camera-equipped device that are small and low-profile but also improve drive performance and noise reduction performance. An optical element drive device that comprises a fixed part, a mobile part that is separated from the fixed part in the optical axis direction, a support part that supports the mobile part on the fixed part, a drive unit that moves the mobile part relative to the fixed part within an optical axis orthogonal plane that is orthogonal to the optical axis direction, and a tension coil spring that connects the fixed part and the mobile part and urges the fixed part and the mobile part toward each other. A damper material is provided to the tension coil spring.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/08 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement adaptés pour fonctionner en combinaison avec un mécanisme de télécommande
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
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
This parking detection device comprises: a magnetism detection unit that, in a first parking area, detects magnetism (first magnetism in a height direction in the first parking area, second magnetism in a first intersecting direction that intersects with the height direction, and third magnetism in a second intersecting direction that intersects with the height direction and that is different from the first intersecting direction); a difference value calculation unit that calculates a difference value, which is the difference between the detected magnetism and magnetism when the first parking area is empty; and a determination unit that, when the calculated difference value repeatedly increases and decreases, determines that a vehicle that has entered the first parking area has moved to a second parking area adjacent to the first parking area.
This parking detection device comprises: a magnetism detection unit that detects first magnetism in the height direction of a first parking area and second magnetism in a direction intersecting the height direction; a time difference calculation unit that calculates a time difference between a point in time when a first changing rate, which is the rate at which the first magnetism changes, increases and then returns to the state before the increase, and a point in time when a second changing rate, which is the rate at which the second magnetism changes, increases and then returns to the state before the increase; and a determination unit that determines, on the basis of the time difference, parking states in the first parking area and a second parking area adjacent to the first parking area.
This parking detection device is provided with: a magnetism detection unit for detecting magnetism in a first parking area; a predicted value calculation unit for calculating a first predicted value corresponding to an output value of the magnetism detection unit in a first case, in which the first parking area is in a vacant state and a second parking area around the first parking area is in a vacant state, and a second predicted value corresponding to an output value of the magnetism detection unit in a second case, in which the first parking area is in the vacant state and the second parking area is in a parked vehicle state; and a vacancy determination unit for determining whether the first parking area is in the vacant state, on the basis of the output value of the magnetic sensor and the first predicted value or second predicted value.
This lens driving device comprises a movable part, a driving part that has an ultrasonic motor and drives the movable part in the direction of an optical axis, and a shaft part that extends in the direction of the optical axis and supports the movable part. The driving part has a move section that is supported by the shaft part so as to be movable in the direction of the optical axis, and a support section that is connected to the move section and supports the movable part at a position closer to the optical axis side than the shaft part.
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
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
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
32.
DRIVE UNIT, OPTICAL ELEMENT DRIVE DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
This drive unit comprises: a piezoelectric element that generates oscillation through the application of a voltage; an active element that has an arm section which deforms by resonating with the oscillation of the piezoelectric element, and that converts the oscillation of the piezoelectric element to a linear motion; and a passive element that is disposed so as to be in contact with the arm section in a biased state, and that moves relative to the active element. The passive element has a coating layer on the surface contacting the active element, and the hardness and the shear strength of the coating layer are greater than in the active element.
H02N 2/12 - Machines électriques en général utilisant l'effet piézo-électrique, l'électrostriction ou la magnétostriction produisant un mouvement rotatif, p.ex. moteurs rotatifs - Détails de structure
33.
DC-DC CONVERTER, SEMICONDUCTOR INTEGRATED CIRCUIT FOR CONTROLLING POWER SUPPLY, AND POWER SUPPLY DEVICE
The present invention is equipped with: a control circuit (11) for controlling a transistor or a switching element connected between a voltage input terminal and a voltage output terminal according to the potential difference between feedback voltage proportional to the output voltage and a prescribed reference voltage; an electric current supply circuit (15) for causing a prescribed current to flow; a voltage correction circuit (41) for correcting the reference voltage or feedback voltage; and a switching means (SW1) for outputting the electric current of the electric current supply circuit toward the voltage output terminal in response to a significant change in the level of an externally supplied signal for controlling the execution/stoppage of a circuit operation. Therein, the voltage correction circuit is configured so as to determine the voltage correction amount on the basis of information about the externally inputted load-side resistance when the current of the electric current supply circuit is outputted.
H02M 3/155 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant continu sans transformation intermédiaire en courant alternatif par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande utilisant des dispositifs du type triode ou transistor exigeant l'application continue d'un signal de commande utilisant uniquement des dispositifs à semi-conducteurs
34.
OPTICAL ELEMENT DRIVING DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
This optical element driving device is provided with: a movable part capable of holding an optical element; a driving part that includes an ultrasonic motor and drives the movable part; a voltage boosting part having an inductor that boosts input voltage inputted to the driving part and supplies the boosted input voltage to the ultrasonic motor; a position detection part that detects the position of the movable part; and a substrate part on which the position detection part and the voltage boosting part are disposed.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/08 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement adaptés pour fonctionner en combinaison avec un mécanisme de télécommande
35.
OPTICAL ELEMENT ACTUATION DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
Provided is an optical element actuation device, a camera module, and a camera-equipped device that are capable of reducing the effects of external magnetism, and that allow for a more compact device with a slimmer profile. An optical element actuation device (1) comprises: a first fixed part (12); a first movable part (11) that is disposed inward of the first fixed part in the radial direction; a first supporting part (15) that is interposed between the first fixed part and the first movable part and supports the first movable part with respect to the first fixed part; a Z-directional actuating part (14) that has an ultrasonic motor for converting vibration to linear motion, and moves the first movable part in the optical axis direction through linear motion; and a first biasing part (18), disposed on the first fixed part, that biases the first supporting part toward the first movable part. The first biasing part has an elastic member (181) that biases the first supporting part, and a spacer (182) disposed between the elastic member and the first supporting part.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/08 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement adaptés pour fonctionner en combinaison avec un mécanisme de télécommande
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
36.
LENS DRIVING DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
This lens driving device is provided with a movable part, a driving part, a magnet part having a first pole and a second pole, and a position detection part that is disposed to face the magnet part, and detects the position of the magnet part by detecting a magnetic field on a plane including an optical axis direction and a width direction. A boundary extends while bending such that the angle formed with the optical axis direction changes.
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
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
37.
LENS DRIVING DEVICE, CAMERA MODULE, AND CAMERA MOUNT DEVICE
This lens driving device comprises: a first movable part and a second movable part; a first driving part and a second driving part that are respectively disposed on the first movable part and on the second movable part, on one end side thereof; and a guide part. A first ultrasound motor and a second ultrasound motor are arranged on the one end side. The guide part includes a plurality of guide shafts that support both a first frame and a second frame in a movable manner.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
Provided is a camera device having a camera part that is driven with high reliability, accuracy, and responsiveness, and with which it is possible to obtain captured images over a wide range. Also provided is an imaging system. A camera device (1) comprises: a camera part (300); a movable magnet (161) that is fixed to a shaft (141) to which the camera part is connected; and a driving unit (200) that includes core bodies (210) and coil bodies (220) for generating magnetic flux in the core bodies (210) when electric current is flowing, and uses the electromagnetic interaction between the magnetic flux generated from the core bodies (210) and the movable magnet (161) to drive reciprocating rotation of the movable magnet (161), wherein the driving unit (200) is provided with a magnet position-holding part (240) that holds the movable magnet (161) in a reference position by magnetic attraction. The magnet position-holding part (240) is a magnetic body that is provided opposite the movable magnet (161).
This lens drive device is provided with: a first movable part; a second movable part; a first drive part; and a second drive part. The first drive part and the second drive part respectively have a first ultrasonic motor and a second ultrasonic motor. The first ultrasonic motor and the second ultrasonic motor are arranged on sides opposite to each other with respect an optical axis, and independently drive the first movable part and the second movable part in the optical axis direction.
G02B 7/02 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
A driving-unit operation method according to the present invention includes: a step for generating pulse blocks on the basis of driving pulses; and a step for modifying a driving signal in accordance with a position error signal. In the step for modifying the driving signal, when the position error signal is in a first range, the shape of the driving pulses is modified so as to form a first driving-pulse shape, and the pulse-block duty cycle is set to a first pulse-block duty cycle value (C-83, C-84), whereas when the position error signal is in a second range, the shape of the driving pulses is modified so as to form a second driving-pulse shape, and the pulse-block duty cycle is set to a second pulse-block duty cycle value (C-85, C-86).
H02N 2/00 - Machines électriques en général utilisant l'effet piézo-électrique, l'électrostriction ou la magnétostriction
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
H04N 5/232 - Dispositifs pour la commande des caméras de télévision, p.ex. commande à distance
This optical scanning device (100) includes: a shaft part (141) to which a mirror part (120) is connected; a movable magnet (161); a base part (110); a ball bearing (151); a core unit (200) that has a core body (210) and a coil body (220) and rotationally drives the movable magnet (161); and a magnet position holding member (240) that is a magnetic body provided facing the movable magnet (161) and magnetically attracts the movable magnet (161) to a reference position. The core unit (200) is disposed on the outer surface side of one wall section (111a) of a pair of wall sections (111a, 111b) of the base part (110). An angle sensor unit (130) for detecting the rotation angle position of the shaft part (141) is disposed between the core unit (200) and the one wall section (111).
B81B 5/00 - Dispositifs comportant des éléments mobiles les uns par rapport aux autres, p.ex. comportant des éléments coulissants ou rotatifs
G02B 26/08 - Dispositifs ou dispositions optiques pour la commande de la lumière utilisant des éléments optiques mobiles ou déformables pour commander la direction de la lumière
Provided are: a lens drive device that is capable of reducing the effects of external magnetism and can be made compact and low-profile; a camera module; and a camera-equipped device. This lens drive device is provided with: a first fixed part; a first mobile part disposed on the radially inner side of the first fixed part; a first support part that supports the first mobile part on the first fixed part, and a Z-direction drive part that is provided to the first fixed part and causes the first mobile part to move in an optical axis direction with respect to the first fixed part. The shape of the lens drive device is rectangular in plan view in the optical axis direction. The first mobile part includes a drive transmission section that is disposed so as to protrude radially outward. The Z-direction drive part comprises an ultrasonic motor that converts vibratory motion to linear motion and is disposed on the first side of a rectangle so as to abut the drive transmission section. The first mobile part is supported, via the first support part, on the first fixed part in a state in which the first mobile part is biased in a bias direction orthogonal to the optical axis.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/02 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles
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 magnetic detection device that comprises an amplification circuit (11) amplifying a detection signal from a magnetic sensor that is positioned, for example, in a location where an alternating current magnetic field enters as noise, and detects an alternating current magnetic field targeted for monitoring, said magnetic detection device further comprising: timer circuits (12A, 12B) that are activated in response to a change in the output of the amplification circuit, and if these clock a prescribed time, the outputs thereof change; a logic circuit (14) that treats the outputs of the timer circuits as inputs; and an oscillation circuit (13) for generating an operation clock signal for the timer circuits. The timer circuits are structured such that if the output of the amplification circuit changes to a different direction before the clocking of the prescribed time is complete, the timer circuits are reset, thereby disallowing a change in the output of the logic circuit due to an alternating current magnetic field with a half cycle that is shorter than the prescribed time.
Provided are a parking detection sensor, and a parking position registration method and a program for a portable terminal, said sensor, method, and program enabling a user to be precisely informed of the parking position while saving the labor required for placement of a beacon transmitter, and enabling reduction in power consumption. A parking detection sensor (100) has: a battery (140); a sensor unit (110) that detects a vehicle parking state; a beacon transmission unit (130) that transmits a beacon signal (S1); and a case for housing the battery (140), the sensor unit (110), and the beacon transmission unit (130).
G08G 1/005 - Systèmes de commande du trafic pour véhicules routiers comprenant un indicateur pour guider les piétons
G08G 1/14 - Systèmes de commande du trafic pour véhicules routiers indiquant des places libres individuelles dans des parcs de stationnement
E04H 6/42 - Dispositifs ou dispositions particulières aux garages, non couverts ailleurs, p.ex. dispositifs de blocage, dispositifs de sécurité
G01V 8/20 - Détection, p.ex. en utilisant des barrières de lumière en utilisant plusieurs émetteurs ou récepteurs
G01S 1/68 - Marqueur, balise d'extrémité, indicatif d'appel ou toutes balises analogues transmettant des signaux ne portant pas d'information directionnelle
H04W 4/38 - Services spécialement adaptés à des environnements, à des situations ou à des fins spécifiques pour la collecte d’informations de capteurs
A parking detection sensor (100) has a Doppler sensor (110), a magnetic sensor (120) that detects magnetism on XYZ axes, a change point detection unit (130) that detects a change point in the output of the Doppler sensor (110) and the magnetic sensor (120), a level difference detection unit (140) that detects the magnetic level difference over time in the output of the Doppler sensor (110) and the magnetic sensor (120), and a state assessment unit (150) that assesses the parking state of a vehicle on the basis of the detection results of the change point detection unit (130) and the detection results of the level difference detection unit (140).
E04H 6/00 - Bâtiments pour garer des voitures, du matériel roulant, des avions, des bateaux ou d’autres véhicules, p.ex. garages
E04H 6/14 - Garages pour de nombreux véhicules avec moyens mécaniques pour déplacer ou élever les véhicules avec transporteur à chaîne sans fin ayant des éléments porteurs se déplaçant verticalement, p.ex. ascenseurs du type "paternoster"
G01V 3/08 - Prospection ou détection électrique ou magnétique; Mesure des caractéristiques du champ magnétique de la terre, p.ex. de la déclinaison ou de la déviation fonctionnant au moyen de champs magnétiques ou électriques produits ou modifiés par les objets ou les structures géologiques, ou par les dispositifs de détection
G01V 3/12 - Prospection ou détection électrique ou magnétique; Mesure des caractéristiques du champ magnétique de la terre, p.ex. de la déclinaison ou de la déviation fonctionnant par ondes électromagnétiques
G01S 13/56 - Discrimination entre objets fixes et mobiles ou entre objets se déplaçant à différentes vitesses pour la détection de présence
46.
LENS DRIVE DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
Provided are a lens drive device capable of reducing the effects of external magnetism and which can be made compact and low-profile, a camera module, and a camera-equipped device. A lens drive device (1) is provided with a first fixed part (12), a first movable part (11), a first supporting part (14), and a Z-direction drive unit (13) which moves the first movable section in an optical axis direction (the Z-direction) relative to the first fixed part and is constituted by an ultrasonic motor that converts vibration motion into rotational motion. The lens drive device further has a rotating body (15) which rotates around the optical axis in response to rotational motion of the Z-direction drive unit, and a mechanical element which converts the rotational motion of the rotating body into linear motion in the optical axis direction, the first movable part being moved in the optical axis direction by rotation of the rotating body.
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
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
H02N 2/04 - Machines électriques en général utilisant l'effet piézo-électrique, l'électrostriction ou la magnétostriction produisant un mouvement linéaire, p.ex. actionneurs; Positionneurs linéaires - Détails de structure
H02N 2/12 - Machines électriques en général utilisant l'effet piézo-électrique, l'électrostriction ou la magnétostriction produisant un mouvement rotatif, p.ex. moteurs rotatifs - Détails de structure
Provided are a lens driving device, a camera module, and a camera-mounted apparatus which exhibit high versatility, and are suited for reduction in size and weight. This lens driving device is configured separately from a lens unit which has a liquid lens, and is provided with: a fixed part; a movable part disposed away from the fixed part; a support part that supports the movable part with respect to the fixed part; a driving unit that is formed from a voice coil motor comprising a coil and a magnet and that moves the movable part in an optical axis direction with respect to the fixed part; and a lens deformation unit that is connected to the movable part and that applies, in association with the movement of the movable part, a force to the liquid lens in the optical axis direction. The movable part has a plurality of movable units, and the driving unit drives the movable units independently so as to change the curvature of the liquid lens or to change the optical axis of the liquid lens.
G02B 3/14 - Lentilles remplies d'un fluide ou à l'intérieur desquelles le vide a été fait à distance focale variable
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
G02B 7/02 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
Provided is a lens driving device, a camera module, and a camera-mounted device which can reduce the impact of external magnetism and which allow miniaturization and a reduction in height. This lens driving device comprises: a first fixing part; a first movable part disposed so as to be separated from the first fixing part; a first support part supporting the first movable part with respect to the first fixing part; and a Z-direction driving part that is disposed on the first fixing part and moves the first movable part in the optical axis direction with respect to the first fixing part. The Z-direction driving part has a piezoelectric element and a resonance part, and is composed of an ultrasonic motor that converts vibration motion into linear motion. The resonance part has a trunk portion held by the piezoelectric element, and first and second arm portions extending in the same direction from the trunk portion. The first and second arm portions deform when resonating with the vibration of the piezoelectric element, and only the first arm portion is in contact with the first movable part.
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
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/08 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement adaptés pour fonctionner en combinaison avec un mécanisme de télécommande
An intraoral observation system 1 comprises: an intraoral observation device 2 for observing the inside of the oral cavity of an individual to be examined; and a charging base 3 which includes a body part 31 that accommodates a transmission coil 35 for performing wireless charging, and a receiving portion 32 for holding the intraoral observation device 2. The intraoral observation device 2 includes a long grip portion 211 that is to be held by an operator and a charging unit 27 that is provided inside a base end of the grip portion 211. The grip portion 211 has an asymmetrical cross-sectional shape in a plane orthogonal to the longitudinal direction of the grip portion 211. The receiving portion 32 of the charging base 3 has an insertion port 322 that has a shape corresponding to the asymmetrical cross-sectional shape of the grip portion 211.
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. endoscopes; Dispositions pour l'éclairage dans ces instruments pour la bouche, c. à d. stomatoscopes, p.ex. portant des abaisse-langue; Instruments pour ouvrir la bouche ou la maintenir ouverte
This distance measurement camera 1 is provided with: a first optical system OS1 for forming a first subject image; a second optical system OS2 for forming a second subject image; an imaging unit S for capturing the first subject image and the second subject image; and a distance calculation unit 4 that calculates the distance to a subject 100 on the basis of the image magnification ratio of the magnification of the first subject image and the magnification of the second subject image by performing calculation in accordance with the image heights of distance measurement target points of the first subject image and the second subject image corresponding to a distance measurement target point of the subject 100.
An authentication device 1 is provided with: a light source LS for irradiating the face of an authentication subject 100 with light L of a specific wavelength band; a first imaging system IS1 and a second imaging system IS2 for acquiring a first face image and a second face image of the authentication subject 100; a feature point extraction unit 3 for extracting a plurality of feature points of the face of the authentication subject 100 on the basis of the first and second face images; a three-dimensional information generation unit 4 for generating three-dimensional information of the face of the authentication subject 100 on the basis of the plurality of feature points of the face of the authentication subject 100; and an authentication unit 6 configured so as to be able to execute three-dimensional face authentication of the authentication subject 100. The plurality of feature points of the face of the authentication subject 100 include biological information of the face of the authentication subject 100 that becomes observable by irradiation of the face of the authentication subject 100 with the light L of the specific wavelength band.
This lens driving device is provided with a first holder configured to be capable of holding a lens portion, a second holder provided around a lens holder, a supporting member for resiliently supporting the first holder with respect to the second holder, and an actuator which comprises a coil having a winding arranged in the first holder in such a way as to surround the lens portion, and a magnet provided in the second holder in such a way as to face the coil, and which moves the first holder relative to the second holder in an optical axis direction, wherein an end portion of the winding has an upright terminal which is provided upright with respect to a winding plane of the winding, and which is electrically connected to the support member, and the first holder has a terminal arrangement portion for internally accommodating the upright terminal.
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
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
An oral observation device (1) comprises: a body (2) that includes a gripping part (21), an arm part (22) that extends from the tip end of the gripping part (21) along the longitudinal direction of the gripping part (21), a camera module storage part (23) formed at the tip end of the arm part (22), and a light-emitting element storage part (24) formed at the arm part (22); a camera module (3) provided inside the camera module storage part (23); and a light-emitting element (4) provided inside the light-emitting element storage part (24). The light-emitting element (4) is provided inside the light-emitting element storage part (24) in a state where the light-emitting element (4) is inclined relative to the longitudinal direction of the gripping part (21) such that the light-emitting element (4) uniformly illuminates the imaging range of the camera module (3).
G02B 23/24 - Instruments pour regarder l'intérieur de corps creux, p.ex. endoscopes à fibres
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. endoscopes; Dispositions pour l'éclairage dans ces instruments
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. endoscopes; Dispositions pour l'éclairage dans ces instruments avec dispositifs d'éclairement
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. endoscopes; Dispositions pour l'éclairage dans ces instruments pour la bouche, c. à d. stomatoscopes, p.ex. portant des abaisse-langue; Instruments pour ouvrir la bouche ou la maintenir ouverte
A61C 19/04 - Instruments de mesure spécialement conçus pour la technique dentaire
54.
LENS DRIVING DEVICE, CAMERA MODULE, AND CAMERA MOUNTING DEVICE
Provided are a lens driving device, a camera module, and a camera mounting device with which miniaturization and weight reduction can be achieved. This lens driving device is provide with: a stationary part; and a movable part configured to be capable of holding a lens part and movably connected to the stationary part, wherein the stationary part has a flat plate-like base, the base has a thick part and a thin part having a smaller thickness than the thick part, and a reinforcing plate is embedded into the thin part. Specifically, the reinforcing plate is formed of a metal material and is embedded into the resin base by insert-molding.
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
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
G02B 7/02 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
An imaging device 1 is provided with: a long cylindrical housing 2 having a tip end side opening 21 and a base end side opening 22; a control unit 4 provided in the housing 2 and having a control processor 42 and a memory 43; a camera module 5 provided in the housing 2 so as to be able to photograph, in accordance with control from the control processor 42 of the control unit 4, the outside on the tip end side of the housing 2 from the tip end side opening 21 of the housing 2; and a connector 6 provided in the housing 2 such that a tip end part thereof is exposed from the base end side opening 22 of the housing 2 to the outside on the base end side of the housing 2. The memory 43 of the control unit 4 stores a parameter for correcting distortion of an image acquired by the camera module 5.
Provided are a sensing device and sensing system whereby the precision of discrimination of a subject can be increased. This sensing device comprises: a rotating member having a main body capable of reciprocally oscillating in a rotation direction about a shaft, and a fixing part to which a subject is fixed, the fixing part being provided in the main body in a position separated in the centrifugal direction from the shaft; an actuator for driving the rotating member so as to cause the rotating member to reciprocally oscillate in the rotation direction at a plurality of mutually different oscillation frequencies; and a measurement unit for measuring the acceleration in the rotation direction of the rotating member, generated by the reciprocal oscillation.
G01N 19/00 - Recherche sur les matériaux par des procédés mécaniques
G01N 11/00 - Recherche des propriétés d'écoulement des matériaux, p.ex. la viscosité, la plasticité; Analyse des matériaux en déterminant les propriétés d'écoulement
A ranging camera 1 is provided with: a first imaging system IS1 for acquiring a first image; a second imaging system IS2 for acquiring a second image; and a size acquiring unit 3 for acquiring the size of a first subject image in the first image by measuring the distances between a plurality of feature points of the first subject image, and for acquiring the size of a second subject image by measuring the distances between a plurality of feature points of the second subject image, corresponding to each of the plurality of feature points of the first subject image. The size acquiring unit 3 detects the plurality of feature points of the second subject image by searching on epipolar lines in only a search region of the second image in which a first imaging region corresponding to the first image and a second imaging region corresponding to the second image can overlap.
This actuator for a camera is provided with a stationary-side member, a movable-side member which is provided to the stationary-side member in a displaceable manner and which holds a lens section, and a drive section which displaces the movable-side member in a plane including a first direction and a second direction which is perpendicular to the first direction. The movable-side member has a magnet affixation section for affixing a magnet section thereto such that the magnet section faces the stationary-side member, the magnet section being used for detecting the position of the movable-side member in either the first direction or the second direction. The surface of the magnet affixation section, to which the magnet section is mounted, is formed from metal.
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
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
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
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/08 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement adaptés pour fonctionner en combinaison avec un mécanisme de télécommande
A mobile body detection device according to the present invention has: a transmission antenna through which a transmission wave is radiated toward a mobile body; an array antenna that has a plurality of first reception antennas for receiving a reflected wave from the mobile body; a second reception antenna for receiving the reflected wave; a transmission unit that generates a transmission signal and supplies the transmission signal to the transmission antenna; a first reception unit that generates a first signal to be used for acquiring direction information of the mobile body from a reception signal of the reflected wave received through the array antenna; and a second reception unit that generates a second signal to be used for acquiring rotation information of the mobile body from the reception signal of the reflected wave received through the second reception antenna.
G01S 7/41 - DÉTERMINATION DE LA DIRECTION PAR RADIO; RADIO-NAVIGATION; DÉTERMINATION DE LA DISTANCE OU DE LA VITESSE EN UTILISANT DES ONDES RADIO; LOCALISATION OU DÉTECTION DE LA PRÉSENCE EN UTILISANT LA RÉFLEXION OU LA RERADIATION D'ONDES RADIO; DISPOSITIONS ANALOGUES UTILISANT D'AUTRES ONDES - Détails des systèmes correspondant aux groupes , , de systèmes selon le groupe utilisant l'analyse du signal d'écho pour la caractérisation de la cible; Signature de cible; Surface équivalente de cible
G01S 7/02 - DÉTERMINATION DE LA DIRECTION PAR RADIO; RADIO-NAVIGATION; DÉTERMINATION DE LA DISTANCE OU DE LA VITESSE EN UTILISANT DES ONDES RADIO; LOCALISATION OU DÉTECTION DE LA PRÉSENCE EN UTILISANT LA RÉFLEXION OU LA RERADIATION D'ONDES RADIO; DISPOSITIONS ANALOGUES UTILISANT D'AUTRES ONDES - Détails des systèmes correspondant aux groupes , , de systèmes selon le groupe
G01S 7/03 - DÉTERMINATION DE LA DIRECTION PAR RADIO; RADIO-NAVIGATION; DÉTERMINATION DE LA DISTANCE OU DE LA VITESSE EN UTILISANT DES ONDES RADIO; LOCALISATION OU DÉTECTION DE LA PRÉSENCE EN UTILISANT LA RÉFLEXION OU LA RERADIATION D'ONDES RADIO; DISPOSITIONS ANALOGUES UTILISANT D'AUTRES ONDES - Détails des systèmes correspondant aux groupes , , de systèmes selon le groupe - Détails de sous-ensembles HF spécialement adaptés à ceux-ci, p.ex. communs à l'émetteur et au récepteur
Provided are: a camera module in which shake correction performance can be enhanced without remarkably increasing the power consumption of a device, such as a portable terminal, equipped with the camera module; and a camera-equipped device provided with the camera module. [Solution] This camera module has: a lens holder for holding a lens unit; an image sensor holding unit that is arranged spaced apart from the lens holder in a first direction along the optical axis of the lens unit and holds an image sensor; and a drive unit that moves the image sensor holding unit with respect to the lens holder in a second direction and a third direction which are perpendicular to the optical axis and are perpendicular to each other, and that rotates the image sensor holding unit around the optical axis.
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
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
A lens driving device, a camera module, and a camera-mounted device are provided, which are capable of reducing the effect of external magnetism and of being reduced in size and profile thereof. The lens driving device includes an AF driving part configured to move, with respect to an AF fixing part, an AF movable part in a Z-direction extending along an optical axis, and an OIS driving part configured to move, with respect to an OIS fixing part, an OIS movable part in an X-direction and a Y direction each orthogonal to optical axis. The OIS driving part and the AF driving part are each composed of an ultrasonic motor. In a rectangle defined by two sides where the OIS driving part is disposed, the AF driving part is disposed along a side different from the two sides.
This distance measurement camera 1 comprises: a first imaging system IS1 for acquiring a first image including a first subject image; a second imaging system IS2 for acquiring a second image including a second subject image; a size acquisition unit 3 for detecting a plurality of feature points on the first subject image in the first image, acquiring the size of the first subject image by measuring the distance between the feature points, using an epipolar line to detect a plurality of feature points on the second subject image in the second image that correspond to the plurality of feature points on the first subject image, and acquiring the size of the second subject image by measuring the distance between the feature points; and a distance calculation unit 5 for calculating the distance to the subject 100 on the basis of the image magnification ratio between the magnification of the first subject image and the magnification of the second subject image.
A ranging camera 1 is provided with: a first imaging system IS1 for acquiring a first image including a first subject image; a second imaging system IS2 for acquiring a second image including a second subject image; a size acquiring unit 3 for acquiring the size of the first subject image by detecting a plurality of feature points of the first subject image in the first image and measuring the distance between the feature points, and for acquiring the size of the second subject image by detecting a plurality of feature points of the second subject image in the second image, corresponding to each of the plurality of feature points of the first subject image, by utilizing epipolar lines, and measuring the distance between said feature points; and a distance calculating unit 5 for calculating the distance to a subject 100 on the basis of an image magnification ratio between the magnification of the first subject image and the magnification of the second subject image.
A camera actuator comprises: a fixed-side member; a light path bending member that bends light that is incident along a first direction in a second direction; a movable-side member that holds the light path bending member; a first actuator that causes the movable-side member to swing in relation to the fixed-side member about a swinging center axis that is orthogonal to the first direction and the second direction; and an elastic support member that elastically supports the movable-side member in relation to the fixed-side member, the elastic support member comprising a first fixed part that is fixed to the movable-side member in a position corresponding to the position of the swinging center axis, a pair of second fixed parts that sandwich the position of the swinging center axis and are fixed to the fixed-side member at mutually separated positions, and connection parts that extend from each of the pair of second fixed parts toward the position of the swinging center axis and connect to the first fixed part.
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
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
H02K 33/02 - Moteurs avec un aimant, un induit ou un système de bobines à mouvement alternatif, oscillant ou vibrant avec des induits entraînés dans un sens par application d'énergie à un système à une seule bobine et ramenés par une force d'origine mécanique, p.ex. par des ressorts
A distance-measurement camera 1 comprises: a first optical system OS1 for forming a first subject image; a second optical system OS2 for forming a second subject image; an image-capture unit S for capturing the first subject image and the second subject image; and a distance calculation unit 4 for calculating a first candidate of the distance to a subject 100 on the basis of an image magnification ratio of the magnification of the first subject image and the magnification of the second subject image as captured by the image-capture unit S, and furthermore calculating a second candidate of the distance to the subject 100 on the basis of translation parallax between the first subject image and the second subject image. The distance calculation unit 4 selects either the first candidate or the second candidate as the distance to the subject 100, the selection being made in accordance with a prescribed condition.
A rotary reciprocating drive actuator comprising: a movable body having a shaft part and a movable magnet secured to the shaft part; and a fixed body having a coil and a core on which the coil is wound, the core having two magnetic poles, and the fixed body supporting the shaft part so that the shaft part can rotate, the rotary reciprocating drive actuator reciprocally and rotationally driving the movable body about the shaft part in relation to the fixed body by the electromagnetic mutual effect of the coil and the movable magnet, wherein the movable magnet is magnetized in the radial direction of the shaft part, the two magnetic poles are disposed facing each other across an air gap in the radial direction of the movable magnet and the shaft part, and the fixed body has a rotation-angle-holding part disposed facing the movable magnet across the air gap, the rotation-angle-holding part holding the rotation angle position of the movable magnet by the magnetic attraction force generated with the movable magnet.
H02K 33/14 - Moteurs avec un aimant, un induit ou un système de bobines à mouvement alternatif, oscillant ou vibrant avec des induits se déplaçant dans des directions opposées par alimentation alternée de systèmes à deux bobines dans lesquels les mises sous tension et hors tension alternées des systèmes à deux bobines sont effectuées ou commandées par le mouvement des induits
G02B 26/08 - Dispositifs ou dispositions optiques pour la commande de la lumière utilisant des éléments optiques mobiles ou déformables pour commander la direction de la lumière
A communication method S100 comprises: a step S120 for writing the BD address of a communication device and the device ID of an information processing device in a memory of the information processing device, and thereafter breaking a connection between the communication device and the information processing device; a step S 130 for transmitting, to each of a plurality of information processing devices 20, a broadcast command including a BD address and a device ID; and a step S140 for, when the BD address and device ID written in the memory of the information processing device and the BD address and device ID included in the broadcast command match, executing processing complying with the broadcast command.
A camera actuator comprises: a fixed-side member; a movable-side member provided so as to be displaced in relation to the fixed-side member, the movable-side member holding a lens unit; and a drive unit that generates drive force to displace the movable-side member within a plane including a first direction and a second direction orthogonal to the first direction, the drive unit generating as drive force a combined force obtained by combining a propulsion force that displaces the movable-side member in a specified direction that is either the first direction or the second direction, and a resistance force that resists an external force acting so as to cause the movable-side member to deviate from the specified direction.
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
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
This switch has: a base having a recess in one surface thereof; a click spring having a domed shape, the click spring being provided in the recess so that the opening side of the domed shape is in contact with the bottom surface of the recess; a cover provided so as to cover the recess and house the click spring in the recess; and a strain detection element affixed to the other surface of the base. The strain detection element senses the strain in the base generated in accordance with the amount by which the click spring is pressed in by being pressed.
H01H 13/00 - Interrupteurs ayant un organe moteur à mouvement rectiligne ou des organes adaptés pour pousser ou tirer dans une seule direction, p.ex. interrupteur à bouton-poussoir
H01H 13/64 - Interrupteurs ayant un organe moteur à mouvement rectiligne ou des organes adaptés pour pousser ou tirer dans une seule direction, p.ex. interrupteur à bouton-poussoir ayant un seul élément d'actionnement dans lequel l'interrupteur a plus de deux positions électriquement distinctives, p.ex. interrupteurs, bouton-poussoir à plusieurs positions
Provided is a short-distance sensor (100) comprising a reception circuit (122) for receiving a reflection signal, from an object, of an FM-CW signal transmitted from a transmission unit (110), a DC component acquiring unit (average-value calculating unit 125) for acquiring a DC component included in the reflection signal received by the reception circuit (122), and a determination unit (threshold determining unit 128) for determining whether a short-distance object is present or not on the basis of the DC component acquired by the DC component acquiring unit (average-value calculating unit 125). This allows implementation of a short-distance sensor (100) capable of eliminating the effects of objects other than the short-distance object that is a target to be detected and more accurately detecting, in various environments, whether the short-distance object is present or not.
G01S 13/04 - Systèmes déterminant la présence d'une cible
G01S 13/34 - Systèmes pour mesurer la distance uniquement utilisant la transmission d'ondes continues, soit modulées en amplitude, en fréquence ou en phase, soit non modulées utilisant la transmission d'ondes continues modulées en fréquence, tout en faisant un hétérodynage du signal reçu, ou d’un signal dérivé, avec un signal généré localement, associé au signal transmis simultanément
This distance measurement camera 1 comprises: a first optical system OS1 for converging light from a subject 100 and forming a first subject image, a second optical system OS2 for converging light from the subject 100 and forming a second subject image, an imaging unit S for imaging the first subject image formed by the first optical system OS1 and the second subject image formed by the second optical system OS2, and a distance calculation unit 4 for calculating the distance to the subject 100 on the basis of the first subject image and second subject image imaged by the imaging unit S. The distance calculation unit 4 calculates the distance to the subject 100 on the basis of the image magnification ratio between the magnification of the first subject image and the magnification of the second subject image.
A sensing system 1 includes: a vibration device 10 for applying a vibration to an agricultural product 100, the vibration device 10 being fastened to the stalk 102 of the agricultural product 100; at least one sensor 20 for sensing vibration of the agricultural product generated by the vibration applied to the agricultural product 100 by the vibration device 10, and transmitting vibration information pertaining to the vibration of the agricultural product 100, the sensor 20 being fastened to the stalk 102 of the agricultural product 100; and a calculation device 30 that specifies, as a resonance frequency of the vibration of the agricultural product 100, one local maximum value from among a plurality of local maximum values on a frequency spectrum obtained from vibration information received from at least one of the sensors 20, the calculation device 30 furthermore determining, on the basis of the specified resonance frequency, the degree of growth of the fruit 101 of the agricultural product 100.
Provided are a lens drive device, a camera module, and a camera mounting device, with which a reduction in size and weight can be achieved and reliability can be increased. The lens drive device comprises: a shake correction fixed unit; a shake correction movable unit that is capable of swinging within a plane orthogonal to an optical axis; a shake correction support unit that supports the shake correction movable unit in a state in which the shake correction movable unit is separated in the optical axis direction from the shake correction fixed unit; and a drive source that swings the shake correction movable unit. One of the shake correction fixed unit and the shake correction movable unit has a projection part that projects in the optical axis direction. The other of the shake correction fixed unit and the shake correction movable unit has a flat part that abuts the projection part. The projection part and the flat part slide relative to each other during shake correction. The projection part is elastically displaceable in the optical axis direction.
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
G02B 7/02 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
This pressure sensor device comprises: a first substrate which has an external connection terminal; a second substrate which is superposed on the upper surface of the first substrate, and which is provided with a first through opening and a second through opening; a pressure sensor element which has a diaphragm structure and is mounted on the upper surface of the second substrate so as to close the first through opening by means of the diaphragm structure; and a cover which is mounted on the upper surface of the second substrate so as to cover the pressure sensor element, and which is provided with a first flow path that guides a first fluid to the upper surface of the diaphragm structure. A second flow path which is in communication with the second through opening and the first through opening so as to guide a second fluid to the lower surface of the diaphragm structure is formed between the first substrate and the second substrate.
G01L 19/00 - MESURE DES FORCES, DES CONTRAINTES, DES COUPLES, DU TRAVAIL, DE LA PUISSANCE MÉCANIQUE, DU RENDEMENT MÉCANIQUE OU DE LA PRESSION DES FLUIDES - Détails ou accessoires des appareils pour la mesure de la pression permanente ou quasi permanente d'un milieu fluent dans la mesure où ces détails ou accessoires ne sont pas particuliers à des types particuliers de manomètres
75.
CAMERA ACTUATOR, CAMERA MODULE, AND CAMERA MOUNT DEVICE
A camera actuator comprises: a fixed-side member; a movable-side member disposed separated from the fixed-side member in a direction orthogonal to a light axis, the movable-side member holding a lens unit; a first lens drive actuator that displaces the movable-side member in at least a prescribed direction; an elastic support member that extends in the direction orthogonal to the light axis, and supports the movable-side member in relation to the fixed-side member so as to allow the displacement in at least the prescribed direction; and a damping member that is disposed between the movable-side member or a member fixed to the movable-side member, and the fixed-side member or a member fixed to the fixed-side member.
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
G02B 7/02 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/18 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour miroirs
A camera 1 is provided with: a first light distribution member 5a for distributing infrared light emitted from an infrared light emission unit 4 over a front seat area in a vehicle; a second light distribution member 5b for distributing infrared light emitted from the infrared light emission unit over a rear seat area in the vehicle; and an imaging unit for capturing an image of the interior of the vehicle irradiated with the infrared light distributed by the first light distribution member 5a and the infrared light distributed by the second light distribution member 5b. The first and second light distribution members 5a, 5b are configured such that the average value of infrared lighting intensity in the front seat area becomes substantially equal to the average value of infrared lighting intensity in the rear seat area.
A camera actuator comprises: a fixed-side member; a movable-side member disposed separated from the fixed-side member in a direction orthogonal to a light axis, the movable-side member holding a lens unit; a first lens drive actuator that displaces the movable-side member in at least a prescribed direction; an elastic support member that extends in the direction orthogonal to the light axis, and supports the movable-side member in relation to the fixed-side member so as to allow the displacement in at least the prescribed direction; and a gel-like first damping member provided to the elastic support member.
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
G02B 7/02 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G02B 7/18 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour miroirs
An authentication device 1 comprising: a first imaging system IS1 for capturing a first optical image of an authentication subject 100; a second imaging system IS2 for capturing a second optical image of the authentication subject 100; a distance calculation unit 4 for calculating a distance a to each of a plurality of sites on the face of the authentication subject 100 on the basis of the first optical image and the second optical image; a three-dimensional information generation unit 5 for generating three-dimensional information for the face of the authentication subject 100 on the basis of the distance a to each of the plurality of sites on the face of the authentication subject 100 as calculated by the distance calculation unit 4; and an authentication unit 7 configured so as to be capable of using the three-dimensional information for the face of the authentication subject 100 as calculated by the three-dimensional information generation unit 5 to execute a three-dimensional face authentication of the authentication subject 100.
The present invention provides a remote control device that transmits a light signal having a pulse pattern capable of reducing the possibility of false detection, a communication device comprising the remote control device and a sensor, a variable device further comprising an apparatus that changes the state thereof while tracking the remote control device, and a lighting device further comprising a moving light that performs lighting while tracking the remote control device. This remote control device transmits a light signal having a pulse pattern to be detected by a sensor. The pulse pattern has first on periods and second on periods alternately, and has an off period between the first on period and the second on period. The first on period and the second on period are longer than twice a sampling time T of the sensor, the first on period and the second on period are different from each other, and the off period is longer than the sampling time T.
H04Q 9/00 - Dispositions dans les systèmes de commande à distance ou de télémétrie pour appeler sélectivement une sous-station à partir d'une station principale, sous-station dans laquelle un appareil recherché est choisi pour appliquer un signal de commande ou
Provided is a droplet sensor having a wide detection surface area and high sensitivity with a simple configuration. This droplet sensor has: an optical cover having a curved surface that forms a portion of a revolving ellipsoid; a light source disposed at a first focal position of the ellipse and facing the curved surface; and a light detector disposed at a second focal position of the ellipse, wherein the eccentricity of the ellipse is set so that the curved surface has an effective detection area which satisfies the condition of total reflection at the interface with a gas and does not satisfy the condition of total reflection at the interface with a liquid.
This distance measuring camera 1 is provided with: a first optical system OS1 for condensing light from a subject 100 and forming a first subject image; a second optical system OS2 for condensing light from the subject 100 and forming a second subject image; an image-capturing unit S for capturing the first subject image formed by the first optical system OS1 and the second subject image formed by the second optical system OS2; and a distance calculating unit 4 for calculating the distance to the subject 100 on the basis of the first subject image and the second subject image captured by the image-capturing unit S. The distance calculating unit 4 calculates the distance to the subject 100 on the basis of the ratio of the magnification of the first subject image to the magnification of the second subject image.
An electronic device 1 for administering a stimulus to a subject by striking the subject comprises: a housing 2 having a first surface 211, and a second surface 221 on the opposite side from the first surface 211; a vibration unit 3 provided inside the housing 2, the vibration unit 3 being capable of vibrating in a prescribed direction; and a resonance member 4 connected to the vibration unit 3, the resonance member 4 including a plurality of resonators 42a-42d that each have different resonance frequencies. Each of the plurality of resonators 42a-42d is configured so as to strike the subject and administer a stimulus to the subject when resonating due to vibration applied from the vibration unit 3.
B06B 1/04 - Procédés ou appareils pour produire des vibrations mécaniques de fréquence infrasonore, sonore ou ultrasonore utilisant l'énergie électrique fonctionnant par électromagnétisme
83.
ELECTRONIC DEVICE, WEARABLE DEVICE, AND PORTABLE DEVICE
Provided is an electronic device 1 for stimulating a subject by resonance including a housing 2 having a first surface 211 and a second surface 221 opposite to the first surface 211, a vibration portion 3 provided inside the housing 2 and capable of vibrating in a predetermined direction, and a resonant member 4 connected directly to the vibration portion 3 and having a plurality of resonators 42a to 42d having mutually different resonant frequencies. The vibration of the vibration portion 3 is applied directly to the resonant member 4 without passing through other members, and when the vibration of the vibration portion 3 is directly applied to the resonant member 4, the plurality of resonators 42a to 42d of the resonant member 4 resonate, thereby stimulating the subject by resonance.
B06B 1/04 - Procédés ou appareils pour produire des vibrations mécaniques de fréquence infrasonore, sonore ou ultrasonore utilisant l'énergie électrique fonctionnant par électromagnétisme
A ranging camera 1 is provided with: a beam irradiation unit 3 for irradiating a subject with a beam B3; an image pickup unit 4 for acquiring an image by picking up an image of the subject irradiated with the beam B3; and a distance calculation unit 6 for calculating the distance to the subject on the basis of the size of the beam B3 on the subject, said beam being included in the image acquired by the image pickup unit 4.
G01C 3/06 - Utilisation de moyens électriques pour obtenir une indication finale
G02B 7/32 - Systèmes pour la génération automatique de signaux de mise au point utilisant un triangle parallactique avec une ligne de base utilisant des moyens actifs, p.ex. un émetteur de lumière
G03B 13/36 - Systèmes de mise au point automatique
This strain gauge has: a flexible substrate; a resistor formed from a material including chromium and/or nickel, the resistor being formed on the substrate; a pair of wiring patterns electrically connected to both end parts of the resistor, the wiring patterns being formed on the substrate; and a pair of electrodes electrically connected to the respective wiring patterns, the electrodes being formed on the substrate. The wiring patterns include a first layer extending from the resistor, and a second layer laminated on the first layer, the second layer having lower resistance than does the first layer. The substrate has demarcated thereon an electronic-component-mounting region on which can be mounted electronic components that are electrically connected to the electrodes.
G01B 7/16 - Dispositions pour la mesure caractérisées par l'utilisation de techniques électriques ou magnétiques pour mesurer les déformations dans un solide, p.ex. au moyen d'une jauge de contrainte à résistance
Provided are a radar device and an object detection method that can detect the movement direction of an object in a short time, without detecting a change in the position of the object. The radar device comprises: a transmission unit that transmits, to an object, a transmission wave based on a transmission signal; a reception unit that receives a reflected wave created by the reflection of the transmission wave by the object, and generates a reception signal; and an object detection unit that acquires information relating to the object on the basis of the transmission signal and the reception signal. The object detection unit calculates, for each of a plurality of detection points within the same object: an azimuth angle φ indicating the azimuth of the detection point with respect to the radar device; and a velocity component V(φ) of the relative velocity A of the object along the azimuth. The object detection unit derives a relational expression for the azimuth angle φ and the velocity component V(φ), and derives a movement angle θ (= π/2-φ) indicating the movement direction of the object from the azimuth angle φ when V(φ) = 0.
This radar device can recognize the type of a specific target (in particular, a two-wheeled vehicle) with high precision, using only the radar device. The radar device comprises: a transmission unit that transmits a transmission wave, based on a transmission signal, toward the target; a receiving unit that receives a reflected wave generated by the transmission wave being reflected by the target, and thereby generates a reception signal; and a target detection unit that acquires information on the target on the basis of the transmission signal and the reception signal. The target detection unit calculates the relative speeds of a plurality of detection points within the same target, and determines the type of the target on the basis of the spread of the relative speeds.
Provided is a radar device that can acquire three-dimensional information while mitigating an increase in the complexity and size of the device structure. A radar device 100 comprises: an antenna 110 having frequency characteristics in which the emission angle of the elevation angle direction changes according to the supplied frequency; a transmission signal formation unit (control/processing unit 101, oscillator 102, amplifier 103) that supplies a chirp signal to the antenna 110; and a reception processing unit (control/processing unit 101) that acquires a detection point for each frequency band using a reception signal for a transmission signal of each frequency band included in the chirp signal, and that acquires information regarding the height direction on the basis of the presence or absence of the detection points across a plurality of frequency bands.
G01S 13/42 - Mesure simultanée de la distance et d'autres coordonnées
G01S 7/03 - DÉTERMINATION DE LA DIRECTION PAR RADIO; RADIO-NAVIGATION; DÉTERMINATION DE LA DISTANCE OU DE LA VITESSE EN UTILISANT DES ONDES RADIO; LOCALISATION OU DÉTECTION DE LA PRÉSENCE EN UTILISANT LA RÉFLEXION OU LA RERADIATION D'ONDES RADIO; DISPOSITIONS ANALOGUES UTILISANT D'AUTRES ONDES - Détails des systèmes correspondant aux groupes , , de systèmes selon le groupe - Détails de sous-ensembles HF spécialement adaptés à ceux-ci, p.ex. communs à l'émetteur et au récepteur
G01S 13/34 - Systèmes pour mesurer la distance uniquement utilisant la transmission d'ondes continues, soit modulées en amplitude, en fréquence ou en phase, soit non modulées utilisant la transmission d'ondes continues modulées en fréquence, tout en faisant un hétérodynage du signal reçu, ou d’un signal dérivé, avec un signal généré localement, associé au signal transmis simultanément
Provided is a radar device having improved measuring performance and which, in addition to having a high azimuth angle resolution, reduces imparted interference and received interference occurring between the radar device and another radar device. A radar device 100 includes a phased array antenna unit configured from a phase shifter 115 and an antenna 116, and in addition includes a frequency hopping unit configured from a fractional N synthesizer 120 and a frequency hopping control unit 113. The radar device 100 radiates from different beams by frequency hopping a chirp signal, by means of the frequency hopping unit, with two or more chirp waveforms serving as a minimum unit, and by controlling the phases of chirp signals having different hopping frequencies, by means of the phased array antenna unit.
G01S 13/34 - Systèmes pour mesurer la distance uniquement utilisant la transmission d'ondes continues, soit modulées en amplitude, en fréquence ou en phase, soit non modulées utilisant la transmission d'ondes continues modulées en fréquence, tout en faisant un hétérodynage du signal reçu, ou d’un signal dérivé, avec un signal généré localement, associé au signal transmis simultanément
G01S 7/02 - DÉTERMINATION DE LA DIRECTION PAR RADIO; RADIO-NAVIGATION; DÉTERMINATION DE LA DISTANCE OU DE LA VITESSE EN UTILISANT DES ONDES RADIO; LOCALISATION OU DÉTECTION DE LA PRÉSENCE EN UTILISANT LA RÉFLEXION OU LA RERADIATION D'ONDES RADIO; DISPOSITIONS ANALOGUES UTILISANT D'AUTRES ONDES - Détails des systèmes correspondant aux groupes , , de systèmes selon le groupe
G01S 13/93 - Radar ou systèmes analogues, spécialement adaptés pour des applications spécifiques pour prévenir les collisions
A distance measuring camera 1 includes a first optical system OS1 for collecting light from a subject 100 to form a first subject image, a second optical system OS2 for collecting the light from the subject 100 to form a second subject image, an imaging part S for imaging the first subject image formed by the first optical system OS1 and the second subject image formed by the second optical system OS2, and a distance calculating part 4 for calculating a distance to the subject 100 based on the first subject image and the second subject image imaged by the imaging part S. The first optical system OS1 and the second optical system OS2 are configured so that a change of a magnification of the first subject image according to the distance to the subject 100 is different from a change of a magnification of the second subject image according to the distance to the subject 100.
A lens drive device for shifting a movable unit in a direction orthogonal to an optical axis and correcting shake is provided with: a stationary unit separated from the movable unit toward an image-forming side in the direction of the optical axis; a cover for covering the movable unit on at least a light-receiving side in the direction of the optical axis; and a plurality of suspension wires for supporting the movable unit relative to the stationary unit such that the movable unit can be displaced in a direction orthogonal to the optical axis, one ends of the suspension wires being secured to the stationary unit and the other ends being secured to the movable unit, respectively. The movable unit is configured so as to be provided with: a damper material comprising a viscous fluid, the damper material being disposed so as to come in contact with the suspension wires; a stopper protrusion provided, projecting in the direction of the optical axis, near a portion of the light-receiving-side surface where the other ends of the suspension wires are secured, the tip end of the stopper protrusion facing the inner surface of the cover in the direction of the optical axis; and a flow-stopping unit capable of obstructing the flow of the damper material toward the tip end of the stopper protrusion. There is thereby provided a lens drive device in which the damper material does not readily adhere to the tip end surface of the stopper protrusion.
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
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
G03B 15/00 - Procédés particuliers pour prendre des photographies; Appareillage à cet effet
This distance measuring camera 1 is provided with: an optical system 3 which forms an image using light from a subject; an imaging element 5 which is provided with a plurality of colour filters, captures a subject image formed by the optical system 3, and acquires a plurality of colour image signals corresponding to each of the plurality of colour filters; a blur detection unit 6 which detects the amount of blur in the subject image in each of the plurality of colour image signals; and a distance calculation unit 8 which calculates the distance to the subject on the basis of the amount of blur in the subject image in each of the plurality of colour image signals, said amount of blur having been detected by the blur detection unit 6.
This water-repellant antireflection structural body 1 is provided with: a base part 2; a plurality of truncated cone protrusions 3 formed on the surface of the base part 2 and having flat parts 31 on the tip sides; and a water-repellant layer 4 provided so as to cover the plurality of truncated cone protrusions 3. The occupancy ratio of the flat parts 31 of the plurality of truncated cone protrusions 3 is 6-40% with respect to the surface of the base part 2 as seen in a plan view, and the average value of the widths of the flat parts 31 on the plurality of truncated cone protrusions 3 is 12-100 nm.
G02B 1/118 - Revêtements antiréfléchissants ayant des structures de surface de longueur d’onde sous-optique conçues pour améliorer la transmission, p.ex. structures du type œil de mite
B32B 3/30 - Produits stratifiés caractérisés essentiellement par le fait qu'une des couches comporte des discontinuités ou des rugosités externes ou internes, ou bien qu'une des couches est de forme générale non plane; Produits stratifiés caractérisés essentiellement par des particularismes de forme caractérisés par une couche comportant des cavités ou des vides internes caractérisés par une couche comportant des retraits ou des saillies, p.ex. des gorges, des nervures
C03C 17/42 - Traitement de surface du verre, p.ex. du verre dévitrifié, autre que sous forme de fibres ou de filaments, par revêtement avec au moins deux revêtements ayant des compositions différentes un revêtement au moins étant une substance organique et un revêtement au moins étant un non-métal
G02B 1/18 - Revêtements pour garder des surfaces optiques propres, p.ex. films hydrophobes ou photocatalytiques
94.
CAMERA ACTUATOR, CAMERA MODULE, AND CAMERA MOUNTED DEVICE
This camera actuator comprises: an optical path bending member; a lens unit disposed at a subsequent stage of the optical path bending member; a first actuator that is disposed near the optical path bending member and displaces the optical path bending member; and a second actuator and a third actuator that are disposed near the lens unit so as to be apart from each other in a first direction, and that respectively displace the lens unit in a second direction and a third direction that are orthogonal to the first direction and orthogonal to each other. As a result, the present invention provides a camera actuator capable of improving the degree of freedom of design around the optical path bending member.
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
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement
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
A detection system 1 comprises: a sensing device 10 including a vibration unit 11 which is mounted to an object 100 to be inspected and is used for applying vibration to the object 100 to be inspected, a drive circuit 12 for supplying an electric signal for driving the vibration unit 11 to the vibration unit 11, and a sensor 13 for detecting vibration of the object 100 to be inspected generated by the vibration applied by the vibration unit 11; and a detection processing device 20 for receiving, from the sensing device 10, vibration information related to the vibration of the object 100 to be inspected detected by the sensor 13, and detecting the state change of the object 100 to be inspected on the basis of the vibration information. The vibration unit 11 includes a coil 112, a spring 113, and a magnet 114b.
This humidity sensor is provided with: a lower electrode formed on a substrate; a first moisture-sensitive film covering the lower electrode; an upper electrode formed on the first moisture-sensitive film and having a predetermined opening pattern; and a second moisture-sensitive film covering the upper electrode and connected to the first moisture-sensitive film at an opening portion of the upper electrode, wherein the area of the upper electrode is larger than the area of the lower electrode and smaller than the area of the first moisture-sensitive film.
G01N 27/22 - Recherche ou analyse des matériaux par l'emploi de moyens électriques, électrochimiques ou magnétiques en recherchant l'impédance en recherchant la capacité
97.
FACIAL AUTHENTICATION DEVICE AND FACIAL AUTHENTICATION METHOD
This facial authentication device is provided with: a 3-dimensional facial information recording unit for preserving at least one piece of 3-dimensional facial information; an imaging optical system for forming an optical image including the face of an authentication subject (S130); an image-capturing element for capturing the optical image of the authentication subject, and acquiring 2-dimensional image data and image plane phase difference information about the face of the authentication subject (S140); and a facial authentication processing unit for performing 3-dimensional facial authentication on the authentication subject by performing matching of the 3-dimensionaal facial information preserved in the 3-dimensional facial information recording unit with the face of the authentication subject on the basis of the 2-dimensional image data and the image plane phase difference information (S160) acquired by the image-capturing element.
This method for manufacturing an optical module has: a step for mounting a light-emitting element face down on a substrate having a plurality of electrodes on the surface thereof; a step for disposing a resin sheet that contains a light wavelength conversion substance and a light-emitting-element mounting surface of the substrate so as to face each other, and filling a first light-transmitting resin into a space between the resin sheet and the substrate including between the resin sheet and the light-emitting element; a step for covering the surface of the resin sheet on the side opposite the surface filled with the first light-transmitting resin using a second light-transmitting resin; a step for forming a groove that reaches from the upper surface of the second light-transmitting resin to a prescribed depth in the substrate so as to surround the light-emitting element; a step for filling a light reflective resin into the groove and also covering the upper surface of the second light-transmitting resin using the light-reflective resin; a step for removing the light-reflective resin on the second light-transmitting resin; and a step for leaving a portion of the light-reflective resin filled in the groove, performing dicing along the light-reflective resin so that the outside surface is covered by the light-reflective resin, and dividing the light-emitting element.
H01L 33/54 - Encapsulations ayant une forme particulière
H01L 21/56 - Capsulations, p.ex. couches de capsulation, revêtements
H01L 33/50 - DISPOSITIFS À SEMI-CONDUCTEURS NON COUVERTS PAR LA CLASSE - Détails caractérisés par les éléments du boîtier des corps semi-conducteurs Éléments de conversion de la longueur d'onde
99.
VIBRATION DEVICE, WEARABLE TERMINAL AND INCOMING CALL NOTIFICATION DEVICE
A vibration device capable of appropriately imparting a large sensible vibration without an increase in the size of vibration actuators. Said vibration device, which is provided with vibration actuators with which a moving body elastically supported on a fixed body can be vibrated linearly with respect to the fixed body at a resonance frequency, has a mounting case in which multiple vibration actuators are mounted. The multiple vibration actuators oscillate at roughly the same resonance frequency, and in a manner such that the respective oscillation axis lines along the oscillation directions of the moving bodies are parallel to each other and that the center of gravity of the mounting case is interposed between the oscillation axis lines, the vibration actuators are disposed in orientations according to which the actuators excite oscillations in mutually opposite directions on the respective oscillation axis lines.
B06B 1/04 - Procédés ou appareils pour produire des vibrations mécaniques de fréquence infrasonore, sonore ou ultrasonore utilisant l'énergie électrique fonctionnant par électromagnétisme
G06F 3/01 - Dispositions d'entrée ou dispositions d'entrée et de sortie combinées pour l'interaction entre l'utilisateur et le calculateur
H02K 33/16 - Moteurs avec un aimant, un induit ou un système de bobines à mouvement alternatif, oscillant ou vibrant avec des induits polarisés se déplaçant dans des directions opposées par inversion de la tension appliquée au système à une seule bobine
H04M 1/02 - Caractéristiques de structure des appareils téléphoniques
100.
LENS DRIVE DEVICE, CAMERA MODULE, AND CAMERA-EQUIPPED DEVICE
Provided are a lens drive device, a camera module, and a camera-equipped device. A set consisting of an image-stabilization coil part and an image-stabilization magnet part in the lens drive device is disposed along a first side and a second side that are adjacent to each other. An autofocus movable part is disposed eccentrically with respect to a central axis along the direction of the optical axis. An image-stabilization fixed part includes connection terminal parts that are respectively disposed on the first side and the second side, and are connected to power supply wiring of the image-stabilization coil part.
G02B 7/04 - Montures, moyens de réglage ou raccords étanches à la lumière pour éléments optiques pour lentilles avec mécanisme de mise au point ou pour faire varier le grossissement