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    • 2. 发明专利
    • Power supply device and wireless power supply system
    • 电源设备和无线供电系统
    • JP2012019648A
    • 2012-01-26
    • JP2010156548
    • 2010-07-09
    • Sony Corpソニー株式会社
    • KOSAKAI OSAMUMITA HIROYUKI
    • H02J17/00H02J7/00
    • H02J50/70H01F27/36H01F38/14H02J5/005H02J50/12H02J50/90Y10T307/469Y10T307/707Y10T307/718
    • PROBLEM TO BE SOLVED: To provide a power supply device and a wireless power supply system that can greatly increase the distance between coils, greatly attenuate distant electromagnetic field intensity while keeping neighboring magnetic field intensity and satisfy any electromagnetic field intensity regulation of each country while keeping power transmission characteristic.SOLUTION: The power supply device comprises: a power supply unit 21 that can supply power in a wireless style; and a housing body 22 in which the power supply unit 21 is mounted. The housing body 22 contains a main body 221, a first housing portion 222 which is formed in the main body and in which the power supply unit is mounted, and at least one second housing portion 223 to which power of the power supply portion mounted in the first housing portion is supplied and into/from which a power receiving device as a mount target object of the main body can be taken. The main body has at least magnetic shield portion 23 at the outer peripheral portion thereof, and the second housing portion 223 forms a magnetic closed space under the state that the second housing portion 223 is mounted in the main body 221.
    • 要解决的问题:为了提供可以大大增加线圈之间的距离的电源装置和无线电源系统,在保持相邻的磁场强度的同时极大地衰减远的电磁场强度,并且满足每个电磁场强度的任何电磁场强度调节 国家同时保持电力传输特性。 解决方案:电源装置包括:能够以无线方式供电的电源单元21; 以及安装电源单元21的壳体22。 壳体22包括主体221,形成在主体中并且其中安装有电源单元的第一壳体部分222和至少一个第二壳体部分223,电源部分的电力被安装在 第一壳体部分被供给并作为主体的安装目标物体的动力接收装置进入/从该容纳装置。 主体在其外周部至少具有磁屏蔽部23,第二壳体部223在第二壳体部223安装在主体221的状态下形成磁性封闭空间。 (C)2012,JPO&INPIT
    • 3. 发明专利
    • Contactless power supplying communication apparatus, contactless power receiving communication device, power-supplying communication control method, and power receiving communication control method
    • 无连接电源通信装置,接收电力接收通信装置,供电通信控制方法和接收电力通信控制方法
    • JP2011029799A
    • 2011-02-10
    • JP2009171799
    • 2009-07-23
    • Sony Corpソニー株式会社
    • KOSAKAI OSAMU
    • H04B5/02H02J17/00
    • H02J50/12H02J7/025H02J50/40H02J50/90
    • PROBLEM TO BE SOLVED: To properly share an element used as an antenna by contactless power supply and short-range radio communication so as to make power supply efficiency compatible with communication performance.
      SOLUTION: A communication part 14 shares a resonance element 13 for power transmission as an antenna. A first limiting means 15a is provided between a driven element 12 and an AC power supply 11 while a second limiting means 15b is provided between the communication part 14 and the resonance element 13. An impedance of the resonance element 13 is limited by the second limiting means 15b so as to make the characteristics of the resonance element 13 suitable for power supply. When executing a short-range radio communication, an impedance of the driven element 12 is limited by the first limiting means 15 so as to prevent a signal, coming from the driven element 12, from affecting the short-range radio communication.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:通过非接触电源和短距离无线电通信正确共享用作天线的元件,以使电源效率与通信性能兼容。 解决方案:通信部分14共享用于电力传输的谐振元件13作为天线。 第一限制装置15a设置在从动元件12和AC电源11之间,而第二限制装置15b设置在通信部分14和谐振元件13之间。谐振元件13的阻抗受到第二限制 以使谐振元件13的特性适合供电。 当执行短距离无线电通信时,由第一限制装置15限制从动元件12的阻抗,以防止来自被驱动元件12的信号影响短距离无线电通信。 版权所有(C)2011,JPO&INPIT
    • 7. 发明专利
    • Power supply device, power reception device, and wireless power supply system
    • 电源设备,电源接收设备和无线电源系统
    • JP2011223739A
    • 2011-11-04
    • JP2010090079
    • 2010-04-09
    • Sony Corpソニー株式会社
    • KOSAKAI OSAMUMIYAMOTO SOMURAYAMA YUJI
    • H02J17/00
    • H03F1/565H02J50/20Y10T307/469Y10T307/707Y10T307/718
    • PROBLEM TO BE SOLVED: To provide a power supply device, power reception device and wireless power supply system, capable of suppressing increases in circuit scale, cost and power loss and implementing impedance adjustment on both sides of power supply and power reception.SOLUTION: The power supply device 20 comprises: a power generation part 14 for generating electric power to be supplied; a feed element 211 formed from a coil to which electric power generated by the power generation part is supplied; a resonance element 212 coupled by electromagnetic induction; an impedance detection part 23 for detecting an impedance on the feed side; a variable matching part 22 including an impedance matching function at a feeding point of the feed element of electric power according to a control signal; a storage part 27 for storing impedance characteristic estimation information as a reference table; and a control part 26 which obtains a state of the variable matching part to be adjusted from at least the detected impedance information and the reference table information of the storage part and which outputs a control signal to the variable matching part so as to reach the obtained state.
    • 要解决的问题:提供一种能够抑制电路规模的增加,成本和功率损耗的电力供应装置,受电装置和无线电力供应系统,并且在电源和电力接收两侧实现阻抗调整。 解决方案:电源装置20包括:用于产生要供电的电力的发电部14; 由供给由发电部产生的电力的线圈形成的供给元件211; 通过电磁感应耦合的谐振元件212; 用于检测馈电侧的阻抗的阻抗检测部23; 可变匹配部分22,其根据控制信号在电力馈送元件的馈电点处包括阻抗匹配功能; 用于存储阻抗特性估计信息作为参考表的存储部分27; 以及控制部分26,其从至少检测到的阻抗信息和存储部分的参考表信息中获得待调整的可变匹配部分的状态,并将控制信号输出到可变匹配部分,以便达到所获得的 州。 版权所有(C)2012,JPO&INPIT
    • 9. 发明专利
    • ANTENNA DEVICE AND RADIO COMMUNICATION EQUIPMENT
    • JP2002176307A
    • 2002-06-21
    • JP2000373496
    • 2000-12-07
    • SONY CORP
    • KOSAKAI OSAMU
    • H01Q13/08H01Q1/10H01Q1/24H01Q1/50H04B1/38H04B1/3822
    • PROBLEM TO BE SOLVED: To accurately secure satisfactory speech communication quality regardless of the displacement of an antenna element. SOLUTION: A desired antenna characteristics can be obtained while the impedance of an antenna is made almost constant regardless of displacement of an antenna element electrically connected to a first feeder terminal when a displacing means displaces the antenna element up to a prescribed position in one direction of making the antenna element close to the ground board, electrically connecting to a second feeder terminal when the displacing means displaces the antenna element up to a prescribed position in the other direction of separating the antenna element from the ground board, connecting electrically to an element to match the impedance of an antenna consisting of the antenna element and the ground board when the antenna element is electrically connected to at least one between the first and second feeder terminals. Thus, it is possible to accurately secure satisfactory speech communication quality regardless of the displacement of the antenna element.