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    • 71. 发明授权
    • Boosting circuit
    • 升压电路
    • US09054683B2
    • 2015-06-09
    • US13779220
    • 2013-02-27
    • Seiko Instruments Inc.
    • Masaya MurataTomohiro Oka
    • H03K5/12G11C5/14G11C8/08G11C16/30H02M3/07H02M1/36
    • H03K5/12G11C5/145G11C8/08G11C16/30H02M1/36H02M3/07
    • A boosting circuit is provided which performs an appropriate boosting operation in accordance with load capacitance. In the boosting circuit, a slope control circuit is provided between a limiter circuit, which limits a high voltage obtained by a charge pump circuit to a desired boosted voltage VPP, and a discharge circuit, which makes the boosted voltage VPP drop quickly to a power supply voltage VCC after the completion of writing, to enable a boosting operation in an appropriate boosted-voltage reach time, by increasing the time taken to reach the boosted voltage VPP in the case where the load capacitance is low, while keeping the time taken to reach the boosted voltage VPP unchanged, irrespective of the presence/absence of the slope control circuit, in the case where the load capacitance is high as in the case of selecting the memory cells collectively.
    • 提供升压电路,其根据负载电容进行适当的升压操作。 在升压电路中,斜率控制电路设置在将电荷泵电路获得的高电压限制为期望的升压电压VPP的限幅电路和放电电路之间,使得升压电压VPP迅速下降到功率 在写入完成后的电源电压VCC,通过在负载电容低的情况下增加到达升压电压VPP所需的时间,同时保持所需的时间,使得能够在适当的升压电压到达时间内进行升压操作 在负载电容高的情况下,与集体选择存储单元的情况相比,不管斜坡控制电路的存在/不存在而使升压电压VPP保持不变。
    • 72. 发明授权
    • Portable apparatus and portable timepiece
    • 便携式仪器和便携式钟表
    • US09046875B2
    • 2015-06-02
    • US14453257
    • 2014-08-06
    • Seiko Instruments Inc.
    • Haruki HiranumaMasahiro Ishida
    • G04B3/04G04B37/10G04C3/00H01H3/12
    • G04B3/048G04B3/10G04B37/106G04C3/001H01H3/12
    • Provision of a portable apparatus which is of a simple construction and which can prevent a lock member arranged at a lock position where a pushbutton is locked from being erroneously rotated to an excessive degree. A pipe inserted into a through-hole of an apparatus exterior body is fixed to the apparatus exterior body. The pipe consists of a single component, and has a male screw portion and a stopper portion on an external arrangement tube portion thereof. A lock member is provided with a female screw portion, a lock part, and a lock portion configured to move toward and away from the stopper portion. The two screw portions and are threadedly engaged with each other, and the lock member is mounted so as to be movable in the axial direction of the pipe. A shaft portion of a pushbutton is passed through the pipe, and the pushbutton is urged toward the exterior of the apparatus exterior body by a spring. A head with which the pushbutton is equipped has an opposing portion facing the lock part. A retaining ring is mounted to a shaft end portion of the shaft portion situated inside the apparatus exterior body, and the pushbutton is prevented from being detached from the pipe.
    • 提供一种简单结构的便携式设备,其可以防止布置在按钮被锁定的锁定位置处的锁定构件被错误地旋转到过度。 插入设备外部主体的通孔中的管被固定到设备外部主体。 该管由单个部件组成,并且在外部安装管部分上具有外螺纹部分和止动部分。 锁定构件设置有阴螺纹部分,锁定部分和被构造成朝向和远离止动部分移动的锁定部分。 两个螺纹部分并且彼此螺纹接合,并且锁定构件被安装成可沿着管的轴向移动。 按钮的轴部通过管道,并且按钮被弹簧推向设备外部主体的外部。 安装有按钮的头部具有面向锁定部的相对部。 保持环安装在位于设备外部主体内部的轴部的轴端部分上,并且防止按钮与管道分离。
    • 73. 发明授权
    • Device identification apparatus and remote control system
    • 设备识别装置和遥控系统
    • US09042733B2
    • 2015-05-26
    • US13785475
    • 2013-03-05
    • Seiko Instruments Inc.
    • Hironori YanoFumiyasu Utsunomiya
    • G08C23/04H04B10/114
    • G08C23/04
    • The device identification apparatus includes: a remote controller signal detecting section for detecting an optical signal from a remote controller; a receiving section for receiving the optical signal from the remote controller; a signal decryption section for decrypting the optical signal received by the receiving section; and a transmitting section for transmitting a device identification signal when the optical signal is a device selecting signal, and configured such that operations of the receiving section, the signal decryption section, and the transmitting section are started in response to a detecting signal of the remote controller signal detecting section, thereby realizing a device identification apparatus in which power consumption during standby is minimized.
    • 装置识别装置包括:遥控器信号检测部分,用于检测来自遥控器的光信号; 接收部分,用于从遥控器接收光信号; 信号解密部分,用于解密由接收部分接收的光信号; 以及发送部,用于当光信号是设备选择信号时发送设备识别信号,并且被配置为使得接收部分,信号解密部分和发送部分的操作响应于远端的检测信号而启动 控制器信号检测部分,从而实现其中待机期间的功耗最小化的装置识别装置。
    • 76. 发明授权
    • Cell balance device and battery system
    • 电池平衡装置和电池系统
    • US09000726B2
    • 2015-04-07
    • US13571572
    • 2012-08-10
    • Atsushi SakuraiHiroshi Saito
    • Atsushi SakuraiHiroshi Saito
    • H02J7/00
    • H02J7/0019H02J7/0016H02J7/0026H02J2007/0039
    • Provided are a cell balance device for protecting a switch circuit from an overcurrent flow. The cell balance device includes: a plurality of electric accumulator connection terminals each connected to one of a node and two terminals of electric accumulators connected in series; a voltage hold device connection terminal connected to a voltage hold device; a plurality of first switch circuits provided between the plurality of electric accumulator connection terminals and the voltage hold device; a control circuit for controlling ON/OFF of the plurality of first switch circuits based on a synchronization signal; and an overcurrent detection circuit for detecting an overcurrent flowing through each of the plurality of first switch circuits.
    • 提供了用于保护开关电路免受过电流的电池平衡装置。 电池平衡装置包括:多个蓄电池连接端子,每个连接到串联连接的蓄电池的节点和两个端子中的一个; 连接到电压保持装置的电压保持装置连接端子; 设置在所述多个蓄电器连接端子与所述电压保持装置之间的多个第一开关电路; 控制电路,用于基于同步信号控制多个第一开关电路的ON / OFF; 以及过电流检测电路,用于检测流过多个第一开关电路中的每一个的过电流。
    • 78. 发明授权
    • Overcharge prevention circuit and semiconductor device
    • 过充电防止电路和半导体器件
    • US08988840B2
    • 2015-03-24
    • US13612130
    • 2012-09-12
    • Makoto MitaniKotaro Watanabe
    • Makoto MitaniKotaro Watanabe
    • H02H3/20H02H9/04H02J7/00
    • H02J7/00H02J7/0029H02J2007/0037Y02E10/566
    • Provided is an overcharge prevention circuit for clamping a voltage value of an electric power generation unit in an overcharged state to a constant value, in which the number of elements is small and which does not consume electric power unnecessarily. The overcharge prevention circuit includes: a backflow prevention diode; a clamping transistor having a gate connected to a cathode of the backflow prevention diode, a source connected to an anode thereof, and a drain connected to an overcharge prevention switch. Upon detection of overcharge, a current is discharged via the clamping transistor and the overcharge prevention switch, thereby clamping a potential of the electric power generation unit to around a voltage of an electricity storage unit.
    • 提供了一种过充电防止电路,用于将过充电状态的发电单元的电压值钳位到元件数量少且不消耗电力的恒定值。 过充电防止电路包括:防回流二极管; 钳位晶体管,其具有连接到防逆二极管的阴极的栅极,连接到其阳极的源极和连接到过充电保护开关的漏极。 当检测到过充电时,通过钳位晶体管和过充电保护开关放电,从而将发电单元的电位钳位在蓄电单元的电压附近。