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    • 61. 发明专利
    • Non-contact charging device and power receiving device
    • 非接触式充电装置和电力接收装置
    • JP2013090393A
    • 2013-05-13
    • JP2011227108
    • 2011-10-14
    • Aisin Aw Co Ltdアイシン・エィ・ダブリュ株式会社
    • KAYAMA KAZUMICHIYAMANOUCHI RYOICHISUZUKI AKIRA
    • B60L11/18B60L5/00B60M7/00H02J7/00H02J17/00
    • Y02T10/7005
    • PROBLEM TO BE SOLVED: To charge a battery by supplying power from a primary transformer to a secondary transformer through electromagnetic induction because a magnetic flux density in a non-contact space is not sufficiently obtained from a battery charge power.SOLUTION: AC power is induced on a secondary transformer 8 through magnetic flux between a primary transformer 11 and a secondary transformer 8 by energization of a coil of the primary transformer 11. The power is supplied to a battery 7 for charging via a rectifier 9 and a charger 10. Short circuits 40 to be short-circuited via a switch A are arranged in parallel between the secondary transformer 8 and charger 10. Current flowing to the secondary transformer 8 is increased by turning on the switch A, thereby increasing a magnetic flux density of the space.
    • 要解决的问题:通过电磁感应从一次变压器向二次变压器供电来对电池充电,因为从电池充电电力不能充分获得非接触空间中的磁通密度。 解决方案:通过对初级变压器11的线圈通电,在次级变压器8上通过主变压器11和次级变压器8之间的磁通感应出交流电力。电力经由 整流器9和充电器10.经由开关A短路的短路40并联设置在次级变压器8和充电器10之间。通过接通开关A来增加流入次级变压器8的电流,从而增加 空间的磁通密度。 版权所有(C)2013,JPO&INPIT
    • 64. 发明专利
    • Power supply device
    • 电源设备
    • JP2012130173A
    • 2012-07-05
    • JP2010280117
    • 2010-12-16
    • Aisin Aw Co LtdTechnova:Kkアイシン・エィ・ダブリュ株式会社株式会社テクノバ
    • SUZUKI AKIRAOSHIMA ATSUYAYAMANOUCHI RYOICHIYASUDA TOMIOIDA KAZUHIKO
    • H02J17/00B60L5/00B60L11/18B60M7/00H01M10/44H02J7/00
    • Y02T10/7011Y02T10/7241Y02T90/122
    • PROBLEM TO BE SOLVED: To provide a resonance type power supply device for non-contact charge which can suppress decline in charge efficiency without increasing the size, when a relative position between a primary coil and a secondary coil is deviated from an appropriate position.SOLUTION: A resonance type power supply device for non-contact charge includes: a primary side resonance circuit including a primary coil to which AC power is supplied to generate a magnetic field; current detection means detecting a primary side current of the primary side resonance circuit; voltage detection means detecting a primary side voltage of the primary side resonance circuit; power factor calculation means calculating a power factor based on the primary side current and primary side voltage; and characteristic adjusting means comparing the power factor with a threshold value corresponding to target efficiency and adjusting characteristics of the primary resonance circuit to increase the power factor when the power factor is below the threshold value.
    • 要解决的问题:为了提供一种用于非接触电荷的谐振型电源装置,其可以在不增加尺寸的情况下抑制充电效率的下降,当初级线圈和次级线圈之间的相对位置偏离适当的 位置。 解决方案:用于非接触电荷的谐振型电源装置包括:初级侧谐振电路,包括提供AC电力以产生磁场的初级线圈; 电流检测装置,检测一次侧谐振电路的初级侧电流; 电压检测装置,用于检测初级侧谐振电路的初级侧电压; 功率因数计算意味着基于初级侧电流和初级侧电压来计算功率因数; 以及特性调整装置,其将功率因数与对应于目标效率的阈值进行比较,并调整主谐振电路的特性,以在功率因数低于阈值时增加功率因数。 版权所有(C)2012,JPO&INPIT
    • 70. 发明专利
    • MOTOR CONTROL DEVICE
    • JPH08126114A
    • 1996-05-17
    • JP25395894
    • 1994-10-19
    • AISIN AW CO
    • SUZUKI AKIRAKOJIMA HIROYUKI
    • B60K1/00B60L9/18H02P27/06H02P5/41
    • PURPOSE: To suppress the counter-electromotive voltage at the neutral time, to make a motor compact and furthermore to reduce the power consumption. CONSTITUTION: This motor control device has the following means: A number-of- revolution computing means 12 computes the number of revolutions of a motor 49. A torque-command-value computing means 13 computes the torque command value of the motor 49. A voltage detecting means 14 detects the voltage of a power supply source 15. A range detecting means 16 detects the selected range. Furthermore, a memory means 19 stores the number of revolutions of the motor 49, the torque command value of the motor 49 and the amplitude corresponding to the voltage and the current phase of the power supply source 15. An amplitude/current-phase setting means 18 reads the number of revolutions computed by the number-of-revolution computing means 12, the torque command value computed by the torque-command-value computing means 13 and the amplitude corresponding to the voltage and the current phases computed by the voltage detecting means 14.