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Resultados 1-10 de 923.251 para loscriterios:(NPCC:JP AND CTR:WO) Oficina(s):all Idioma:ES separación automática de palabras en lexemas: true maximize
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Análisis
Análisis

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TítuloPaísFecha de publicación
Clasificación InternacionalNº de solicitudSolicitanteInventor/a
1. WO/2017/022074 POSITION CORRECTING DEVICE AND ELECTRONIC COMPONENT CONVEYING DEVICE EQUIPPED WITH SAMEWO09.02.2017
H01L 21/68
PCT/JP2015/072058UENO SEIKI CO., LTD.TAKAMATSU, Hajime
Provided are a position correcting device and an electronic component conveying device equipped with the same that can shorten the time required to correct the position of an electronic component without increasing the physical stress acting on the electronic component. A position correcting device 1, which is installed in an electronic component conveying device 2, is provided with: a motor 15 that causes a rotating shaft 16 to rotate clockwise or anticlockwise; and a hole part 11 that is formed in a base 14 which is rotated about the rotating shaft by the motor 15, that is wider than an electronic component 4 and that accommodates the electronic component 4. The hole part 11 is formed at a position that is deviated from the rotating shaft 16, is rotatingly moved through one lap by the motor 15 and guides the electronic component 4 inside thereof to a prescribed position by using the edge of the hole part 11.

2. WO/2017/009925 POWER SUPPLY CIRCUITWO19.01.2017
H01P 1/17
PCT/JP2015/070025MITSUBISHI ELECTRIC CORPORATIONKOMATSU, Shoji
According to the present invention, the orientation of the stepped shape of a septum phase plate (6-1) in a polarized wave separator (3-1) is set opposite to the orientation of the stepped shape of a septum phase plate (6-2) in a polarized wave separator (3-2), and the orientation of the stepped shape of a septum phase plate (9-1) in a polarized wave separator (4-1) is set opposite to the orientation of the stepped shape of a septum phase plate (9-2) in a polarized wave separator (4-2). Accordingly, in waveguide networks (13) and (14), polarized waves of the same type can be synthesized, and thus, each of the waveguide networks (13) and (14) can be configured by a single layer.

3. WO/2017/009912 ENERGY MANAGEMENT DEVICE, ENERGY MANAGEMENT METHOD, AND PROGRAMWO19.01.2017
F24H 1/00
PCT/JP2015/069965MITSUBISHI ELECTRIC CORPORATIONOGAWA Yuki
Provided is an energy management device (100) for controlling a hot-water-storage-type hot water supply system and an air conditioning device, wherein an information acquisition unit (521) acquires a first operation schedule of the hot-water-storage-type hot water supply system, and a second operation schedule of an air conditioning system for performing air conditioning within a building using cold exhaust heat from the hot-water-storage-type hot water supply system. An action control unit (523) controls the action of the hot-water-storage-type hot water supply system, on the basis of the second operation schedule, by using a third operation schedule in which the first operation schedule is changed so as to reduce the amount of power consumed by the air conditioning system.

4. WO/2017/008206 DUAL LENS SYSTEM HAVING A LIGHT SPLITTERWO19.01.2017
H04N 5/228
PCT/CN2015/083783SZ DJI TECHNOLOGY CO., LTD.CAO, Zisheng
Disclosed is a dual lens system having a light splitter and a method for capturing images. The system (200) comprises an optical element (204) configured to separate light (202) into a first light beam (208) and a second light beam (210); a first lens module (214) having a first focal length configured to focus the first light beam; a second lens module (220) having a second focal length configured to focus the second light beam, wherein the second focal length is different from the first focal length; a first sensor (216) configured to capture a first image from the first light beam focused by the first lens module onto the first sensor; and a second sensor (222) configured to capture a second image from the second light beam focused by the second lens module onto the second sensor. The FOVs, focal lengths, and/or sensors of the system may be designed to generate high quality images with arbitrary magnifications.

5. WO/2017/009969 ROTOR, ELECTRIC MOTOR, COMPRESSOR, AND REFRIGERATOR/AIR CONDITIONING EQUIPMENTWO19.01.2017
H02K 1/27
PCT/JP2015/070261MITSUBISHI ELECTRIC CORPORATIONISHIKAWA, Atsushi
A rotor (3) is equipped with an iron core (4) having a cylindrical or columnar shape, and a plurality of magnets disposed at equidistant spacing in the circumferential direction with respect to the center axis (C) of the iron core (4) and implanted into the iron core (4). The iron core (4) has a first end surface section (41), a second end surface section (42), and a center section (43) disposed between the first end surface section (41) and the second end surface section (42). In the first end surface section (41), the second end surface section (42), and the center section (43), respectively, there is formed at least one void (7) at a position further away from the center axis (C) of the iron core (4) than the plurality of magnets. A third cross sectional area of the center section (43) is larger than a first cross sectional area of the first end surface section (41) and a second cross sectional area of the second end surface section (42).

6. WO/2017/009972 ANTENNA APPARATUS AND ANTENNA EXCITATION METHODWO19.01.2017
H01Q 3/26
PCT/JP2015/070264MITSUBISHI ELECTRIC CORPORATIONMATSUKI, Makoto
According to the present invention, a compensation-vector calculating unit 26 is provided which uses a radiation pattern gn (θm) of each element antenna 2-n (n=1, 2, ···, N) in a state where a mutual connection is established among element antennas 2-1 to 2-N, and a radiation pattern E (θm) of a phased array antenna 1 in a state where a mutual connection is not established among the element antennas 2-1 to 2-N, and which calculates a compensation vector wn for compensating the influence of the mutual connection on the element antenna 2-n. A phase shifter control device 27 uses the compensation vector wn calculated by the compensation-vector calculating unit 26, sets excitation phases φ1 to φN of the element antennas 2-1 to 2-N, and indicates the excitation phases φ1 to φN to phase shifters 3-1 to 3-N.

7. WO/2017/008207 SYSTEMS AND METHODS FOR GIMBAL SIMULATIONWO19.01.2017
G09B 9/00
PCT/CN2015/083788SZ DJI TECHNOLOGY CO., LTD.TAO, Ye
Systems (1600), devices and methods are provided for training a user to control a gimbal (105, 1408) in an environment. The systems (1600) and methods provide a simulation environment to control a gimbal (105, 1408) in a virtual environment. The virtual environment closely resembles a real control environment. A controller (101) may be used to transmit simulation commands and receive simulated data for visual display.

8. WO/2017/009965 DISPLAY CONTROL DEVICE AND DISPLAY CONTROL METHODWO19.01.2017
G06F 3/14
PCT/JP2015/070239MITSUBISHI ELECTRIC CORPORATIONSAWATARI Nobumasa
In the present invention, layout information pertaining to each screen layout is divided into a plurality of display elements and each display element is stored in a plurality of databases in correspondence to a language selection flag. The plurality of databases include an alignment/progression database and a component position database. The alignment/progression database stores alignment information and progression information. The component position database stores component position information. By means of a control unit, layout information corresponding to the language selection flag is acquired from each database and a display device is controlled to display, on the basis of the acquired layout information, display information.

9. WO/2017/009970 POWER STEERING ADJUSTMENT DEVICEWO19.01.2017
B62D 6/00
PCT/JP2015/070262MITSUBISHI ELECTRIC CORPORATIONSAKATA, Reiko
According to the present invention, a guide-establishing unit (3) establishes an edit guide that is for adjusting steering feeling in relation to steering control information. An adjustment-information display unit (2) displays the edit guide and, on the same screen, a control-characteristics graph that visually represents the steering control information. When an edit-information input unit (1) has acquired edit information, a graph-editing unit (4) uses the edit information to edit the control-characteristics graph.

10. WO/2017/009949 ANTENNA DEVICEWO19.01.2017
H01Q 3/24
PCT/JP2015/070145MITSUBISHI ELECTRIC CORPORATIONWATANABE, Hikaru
In the present invention, branch circuits (4-1), (4-2) are configured such that even if an output terminal connected to radiation elements (1-1)-(1-4) is switched by switches (5-1)-(5-4), an impedance Z0 does not change and maintains the same value, when viewing the radiation elements (1-1)-(1-4) from measurement points L, K located more toward lines (11), (21) than branching points (12e), (22e) that are branching points of a high frequency signal. Due to this configuration, loss that occurs in a feed circuit from a distribution circuit (2) to the radiation elements (1-1)-(1-4) can be suppressed, and good radiation characteristics can be thereby achieved.


Resultados 1-10 de 923.251 para loscriterios:(NPCC:JP AND CTR:WO) Oficina(s):all Idioma:ES separación automática de palabras en lexemas: true maximize
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