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    • 1. 发明授权
    • Mobile electronic equipment and battery charger cradle
    • 移动电子设备和电池充电座
    • US07830116B2
    • 2010-11-09
    • US12385831
    • 2009-04-21
    • Shoichi ToyaYasunari MizoguchiToshiki NakashoKyozo Terao
    • Shoichi ToyaYasunari MizoguchiToshiki NakashoKyozo Terao
    • H02J7/00
    • H02J7/025H02J7/0044H02J50/10H02J50/40H02J50/70H02J50/90
    • Mobile electronic equipment incorporating an induction coil and a battery; and a battery charger cradle for recharging the battery in the mobile electronic equipment. Regarding the charger cradle, a bottom surface of a mounting portion is curved in a U-grooved shape, and a primary coil is incorporated inside the U-grooved bottom surface, with the primary coil being connected to a power source. Regarding the mobile equipment, its rear surface placed on the mounting portion of the charger cradle is curved to match with the U-grooved bottom surface, and the induction coil is incorporated inside the curved rear surface. When the mobile equipment is placed on the mounting portion of the charger cradle, the electric power is carried from the primary coil to the induction coil which are electromagnetically coupled with each other, and the battery in the mobile equipment is recharged by the electric power induced to the induction coil.
    • 装有感应线圈和电池的移动电子设备; 以及用于为移动电子设备中的电池充电的电池充电器支架。 关于充电器支架,安装部的底面以U形槽的形状弯曲,并且在U槽的底面内并入有初级线圈,初级线圈与电源连接。 关于移动设备,其放置在充电器支架的安装部分上的后表面弯曲以与U形槽底面匹配,并且感应线圈被并入弯曲的后表面内。 当移动设备被放置在充电器支架的安装部分上时,电力从初级线圈传递到感应线圈,它们彼此电磁耦合,并且移动设备中的电池被电力引起的充电 到感应线圈。
    • 2. 发明申请
    • Mobile electronic equipment and battery charger cradle
    • 移动电子设备和电池充电座
    • US20090267559A1
    • 2009-10-29
    • US12385831
    • 2009-04-21
    • Shoichi ToyaYasunari MizoguchiToshiki NakashoKyozo Terao
    • Shoichi ToyaYasunari MizoguchiToshiki NakashoKyozo Terao
    • H02J7/00
    • H02J7/025H02J7/0044H02J50/10H02J50/40H02J50/70H02J50/90
    • Mobile electronic equipment incorporating an induction coil and a battery; and a battery charger cradle for recharging the battery in the mobile electronic equipment. Regarding the charger cradle, a bottom surface of a mounting portion is curved in a U-grooved shape, and a primary coil is incorporated inside the U-grooved bottom surface, with the primary coil being connected to a power source. Regarding the mobile equipment, its rear surface placed on the mounting portion of the charger cradle is curved to match with the U-grooved bottom surface, and the induction coil is incorporated inside the curved rear surface. When the mobile equipment is placed on the mounting portion of the charger cradle, the electric power is carried from the primary coil to the induction coil which are electromagnetically coupled with each other, and the battery in the mobile equipment is recharged by the electric power induced to the induction coil.
    • 装有感应线圈和电池的移动电子设备; 以及用于为移动电子设备中的电池充电的电池充电器支架。 关于充电器支架,安装部的底面以U形槽的形状弯曲,并且在U槽的底面内并入有初级线圈,初级线圈与电源连接。 关于移动设备,其放置在充电器支架的安装部分上的后表面弯曲以与U形槽底面匹配,并且感应线圈被并入弯曲的后表面内。 当移动设备被放置在充电器支架的安装部分上时,电力从初级线圈传送到感应线圈,它们彼此电磁耦合,并且移动设备中的电池被电力引起的充电 到感应线圈。
    • 3. 发明申请
    • Battery charger cradle
    • 电池充电器支架
    • US20090153098A1
    • 2009-06-18
    • US12314743
    • 2008-12-16
    • Shoichi ToyaYasunari MizoguchiEiji SatsumaKyozo Terao
    • Shoichi ToyaYasunari MizoguchiEiji SatsumaKyozo Terao
    • H02J7/00
    • H02J7/0045H02J7/025H02J7/027H02J7/045H02J17/00H02J50/12H02J50/60H02J50/80H02J50/90
    • In a battery charger cradle, a battery incorporated in a battery built-in device is charged by electric power induced to an induction coil. The cradle includes a primary coil inducing electromotive force to the induction coil, a casing having a top plate atop of which the battery built-in device is placed, a movement mechanism moving the primary coil along an inner surface of the top plate, and a position detection controller detecting a position of the battery built-in device placed on the top plate and controlling the movement mechanism to bring the primary coil closer to the induction coil in the battery built-in device. When the battery built-in device is placed on the top plate, the position detection controller detects the position of the battery built-in device, and the movement mechanism moves the primary coil to be brought closer to the induction coil in the battery built-in device.
    • 在电池充电器支架中,内置在电池内置装置中的电池通过感应线圈感应的电力来充电。 支架包括感应电感线圈的初级线圈,具有放置电池内置装置的顶板的壳体,沿着顶板的内表面移动初级线圈的移动机构,以及 位置检测控制器检测放置在顶板上的电池内置装置的位置,并控制移动机构使初级线圈靠近电池内置装置中的感应线圈。 当电池内置装置放置在顶板上时,位置检测控制器检测电池内置装置的位置,并且移动机构移动初级线圈使其更靠近电池内置装置中的感应线圈, 在设备中。
    • 5. 发明授权
    • Battery charger cradle
    • 电池充电器支架
    • US08305036B2
    • 2012-11-06
    • US12314743
    • 2008-12-16
    • Shoichi ToyaYasunari MizoguchiEiji SatsumaKyozo Terao
    • Shoichi ToyaYasunari MizoguchiEiji SatsumaKyozo Terao
    • H02J7/00
    • H02J7/0045H02J7/025H02J7/027H02J7/045H02J17/00H02J50/12H02J50/60H02J50/80H02J50/90
    • In a battery charger cradle, a battery incorporated in a battery built-in device is charged by electric power induced to an induction coil. The cradle includes a primary coil for inducing electromotive force to the induction coil, a casing having a top plate atop of which the battery built-in device is placed, a movement mechanism for moving the primary coil along an inner surface of the top plate, and a position detection controller for detecting a position of the battery built-in device placed on the top plate and controlling the movement mechanism to bring the primary coil closer to the induction coil in the battery built-in device. When the battery built-in device is placed on the top plate, the position detection controller detects the position of the battery built-in device, and the movement mechanism moves the primary coil closer to the induction coil in the battery built-in device.
    • 在电池充电器支架中,内置在电池内置装置中的电池通过感应线圈感应的电力来充电。 所述支架包括用于感应所述感应线圈的电动势的初级线圈,具有放置所述电池内置装置的顶板的壳体,用于沿着所述顶板的内表面移动所述初级线圈的移动机构, 以及位置检测控制器,用于检测放置在顶板上的电池内置装置的位置,并且控制移动机构以使初级线圈更靠近电池内置装置中的感应线圈。 当电池内置装置放置在顶板上时,位置检测控制器检测电池内置装置的位置,并且移动机构使初级线圈更靠近电池内置装置中的感应线圈。
    • 6. 发明申请
    • BATTERY-CONTAINING UNIT AND CHARGING BASE
    • 电池单元和充电基座
    • US20090278505A1
    • 2009-11-12
    • US12437761
    • 2009-05-08
    • Shoichi TOYAYasunari MizoguchiEiji SatsumaKyozo Terao
    • Shoichi TOYAYasunari MizoguchiEiji SatsumaKyozo Terao
    • H02J7/04
    • H02J7/025H01F38/14H01M10/052H01M10/46H02J50/10H02J50/40H02J50/60H02J50/70H02J50/80H02J50/90
    • A battery-containing unit and a charging base are a battery-containing unit includes a lithium ion battery, and a charging base to which the battery-containing unit to be charged is placed. The battery-containing unit includes a charging circuit that converts an alternating current produced in an energized coil into a direct current, and a transmitter that detects the voltage of the lithium ion battery and transmits a voltage signal to the charging base. The charging base includes a receiver that receives the signal from the transmitter and detects the voltage signal, and a high frequency power supply that provides AC power to the energizing coil The power supply of the charging base detects the voltage of the lithium ion battery through the receiver and the transmitter, and is controlled to charge the lithium ion battery so that the voltage of lithium ion battery does not exceed a predetermined voltage.
    • 含电池单元和充电基座是包括锂离子电池的电池容纳单元和被充电的电池单元所在的充电基座。 含电池单元包括将在通电线圈中产生的交流电转换成直流电的充电电路,以及检测锂离子电池的电压并将电压信号发送到充电基座的发送器。 充电座包括接收来自发射机的信号并检测电压信号的接收机以及向激励线圈提供AC电力的高频电源。充电座的电源通过该充电座检测锂离子电池的电压 接收器和发射器,并且被控制为锂离子电池充电,使得锂离子电池的电压不超过预定电压。
    • 7. 发明授权
    • Intrusion detection system using three pyroelectric sensors
    • 入侵检测系统采用三个热释电传感器
    • US4943800A
    • 1990-07-24
    • US207983
    • 1988-06-17
    • Masami IkedaYasuhiro YamadaMahito TujiAkimasa TamanoYasunari Mizoguchi
    • Masami IkedaYasuhiro YamadaMahito TujiAkimasa TamanoYasunari Mizoguchi
    • G08B13/191G08B13/18
    • G08B13/191Y10S250/01
    • The intrusion detection system of the invention, in which three pyroelectric detectors are disposed in line with a interval and an adjoining two of the three pyroelectric detectors are electrically connected to cancel electrical charges generated by each pyroelectric detector, detects intrusion of an infrared ray radiating object such as a human body for example by output signals outputted from the adjoining two and the other of the three pyroelectric detectors or by output signals outputted from the pyroelectric detector disposed at the center and adjoining one and output signals outputted from the one disposed at the center and adjoining another one of these pyroelectric detectors, so that precise and secure intrusion detection is possible by reducing erroneous signals generated by those pyroelectric detectors due to variation of the atmospheric temperature and the like.
    • 本发明的入侵检测系统,其中三个热电检测器被设置成与间隔一致,并且三个热电检测器中相邻的两个电气检测器电连接以消除由每个热电检测器产生的电荷,检测红外线辐射物体的侵入 例如通过从三个热电检测器中的相邻的两个和另一个输出的输出信号,或者通过从设置在中心并邻接一个的热电检测器输出的输出信号和从设置在中心处的一个输出的输出信号 并且与这些热电检测器中的另一个相邻,使得通过减小由于大气温度等的变化而由那些热电检测器产生的错误信号,可以进行精确和安全的入侵检测。