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    • 71. 发明申请
    • Battery state monitoring circuit and battery apparatus
    • 电池状态监测电路和电池装置
    • US20090009133A1
    • 2009-01-08
    • US12217316
    • 2008-07-03
    • Yoshihisa TangeAtsushi SakuraiTakakazu OzawaKiyoshi Yoshikawa
    • Yoshihisa TangeAtsushi SakuraiTakakazu OzawaKiyoshi Yoshikawa
    • H02J7/00
    • H02J7/0021G01R19/16542H01M10/482
    • Provided is a battery state monitoring circuit which is capable of preventing a discharge leak current from a battery so as to eliminate a load conventionally imposed on a user, including: a battery state detector circuit that detects a state of the battery based on a voltage of the battery; a transmitting terminal that transmits battery state information indicative of the state of the battery to an outside; a receiving terminal that receives battery state information of another battery from the outside; a transistor that is used for transmitting the battery state information, and has any one of two terminals except for a control terminal connected to the transmitting terminal; and a diode that is connected in a direction opposite to a direction of a parasitic diode disposed between the two terminals of the transistor, the diode being disposed between the transmitting terminal and one terminal of the transistor.
    • 提供一种电池状态监视电路,其能够防止来自电池的放电泄漏电流,以消除常规施加于用户的负载,包括:电池状态检测器电路,其基于电池的电压检测电池的状态 电池; 将表示电池的状态的电池状态信息发送到外部的发送端子; 从外部接收另一电池的电池状态信息的接收终端; 用于发送电池状态信息的晶体管,除了与发送端子连接的控制端子之外,具有两个端子中的任一个; 以及二极管,其以与设置在晶体管的两个端子之间的寄生二极管的方向相反的方向连接,二极管设置在发送端子和晶体管的一个端子之间。
    • 72. 发明授权
    • Parallel-transmission flat cable equipped with connector unit
    • 配有连接器单元的平行传输扁平电缆
    • US07166803B2
    • 2007-01-23
    • US11119730
    • 2005-05-03
    • Atsushi SakuraiManabu Shimizu
    • Atsushi SakuraiManabu Shimizu
    • H01B7/08
    • H01R13/6585H01R12/592
    • A parallel-transmission flat cable that is equipped with a connector unit is provided. This parallel-transmission flat cable includes: a parallel-transmission flat cable member that has pairs of signal transmission paths and ground portions that are arranged alternately so as to enable parallel transmission, and has pairs of signal terminal portions and ground terminal portions exposed at either end of the parallel-transmission flat cable member; and a connector unit forming member that is provided at either end of the parallel-transmission flat cable member and forms a connector unit that has the signal terminal portions and the ground terminal portions of the parallel-transmission flat cable member serving as terminal portions thereof. In this structure, the connector unit is located at either end of the parallel-transmission flat cable member.
    • 提供了一种配有连接器单元的并行传输扁平电缆。 这种平行传输扁平电缆包括:平行传输扁平电缆部件,其具有交替布置以便能够并行传输的信号传输路径和接地部分,并且具有成对的信号端子部分和接地端子部分暴露于任一 平行传输扁平电缆部件的端部; 以及连接器单元形成构件,其设置在所述平行传输扁平电缆构件的任一端并且形成具有用作其端子部分的所述平行传输扁平电缆构件的信号端子部分和接地端子部分的连接器单元。 在该结构中,连接器单元位于平行传输扁平电缆构件的任一端。
    • 75. 发明授权
    • Battery state monitoring circuit and battery device
    • 电池状态监测电路和电池装置
    • US06940256B2
    • 2005-09-06
    • US10670816
    • 2003-09-25
    • Atsushi Sakurai
    • Atsushi Sakurai
    • H02J7/04H01M10/44H02J7/00H02J7/10H01M10/46
    • H02J7/0031H02J2007/0037H02J2007/004
    • To realize a battery state monitoring circuit in which detection is reliably made even if a continuous noise is entered, and to provide a battery device which has a long life and is safe. In the battery state monitoring circuit, the detecting circuit outputs a signal for controlling a switch circuit in accordance with a state of the secondary battery with respect to one of a specified voltage value and a specified current value. The signal includes one of: a detection signal for starting one of charge protection and discharge protection of the secondary battery; and a release signal for releasing the one of the charge protection and the discharge protection of the secondary battery. A switching rate from the release signal to the detection signal is higher than a switching rate from the detection signal to the release signal.
    • 为了实现即使进入连续的噪声也能够可靠地进行检测的电池状态监视电路,并且提供一种寿命长,安全的电池装置。 在电池状态监视电路中,检测电路根据二次电池的状态相对于指定的电压值和规定的电流值之一输出用于控制开关电路的信号。 该信号包括:用于启动二次电池的充电保护和放电保护的检测信号; 以及用于释放二次电池的充电保护和放电保护中的一个的释放信号。 从释放信号到检测信号的切换速率高于从检测信号到释放信号的切换速率。
    • 79. 发明授权
    • Injection blow molding machine, injection blow molding method and
injection molding machine
    • 注塑吹塑机,注塑吹塑法和注塑机
    • US6156258A
    • 2000-12-05
    • US51956
    • 1998-09-04
    • Minoru TakadaKoichi SatoAtsushi SakuraiYoichi NetsuYoichi Tsuchiya
    • Minoru TakadaKoichi SatoAtsushi SakuraiYoichi NetsuYoichi Tsuchiya
    • B29C35/02B29C35/16B29C45/42B29C49/06B29C49/28B29C49/42B29C49/64
    • B29C49/4215B29C45/42B29C49/28B29C49/4205B29C49/6409B29C2049/067B29C35/02B29C35/16B29C49/06B29C49/064B29K2105/253
    • An injection blow molding system includes an injection molding station 22, a first delivery section 24, a cooling station 26, a heating station 30, a second delivery section 32 and a plurality of blow molding stations 34. The injection molding station 22 is designed to simultaneously injection mold M rows of N preforms 36 arranged in a second direction B perpendicular to a first direction A in which the preforms 36 are carried. The first delivery section 24 is designed to remove the M rows of preforms 36 injection molded by the injection molding station 22 through a removing mechanism 102 in their upright state while decreasing the pitch in the rows. The preforms 36 are inverted with the column pitch being changed by an inverting mechanism 104 before they are delivered to the cooling station in their inverted state. The cooling and heating stations 26, 30 are designed to cool and heat one row of N preforms 36 while parallel carrying them along a first carrying chain 200. The second delivery section 32 is designed to deliver the preforms 36 to two blow molding stations while they are maintained in their inverted state. Each of the blow molding stations 34 is designed to stretch blow mold the N/2 preforms into containers at the same time.
    • PCT No.PCT / JP97 / 03064 Sec。 371日期:1998年9月4日 102(e)1998年9月4日PCT PCT 1997年9月2日PCT公布。 第WO98 / 09793号公报 日期1996年3月12日注射吹塑成型系统包括注塑站22,第一输送部分24,冷却站26,加热站30,第二输送段32和多个吹塑站34。 工位22被设计成同时注射模制M行的N个预成型件36,其沿着第二方向B布置,第二方向B垂直于其中承载预型件36的第一方向A. 第一输送部分24被设计成通过移除机构102在其直立状态下移除注射成型工位22注射成型的M行预成型件36,同时减小行中的间距。 预成型件36在其倒立状态被输送到冷却站之前由反转机构104改变,柱间距变化。 冷却和加热站26,30设计成冷却和排列一排N个预成型件36,同时沿着第一承载链200携带它们。第二输送段32设计成将预型件36输送到两个吹塑站,而它们 保持倒立状态。 每个吹塑工位34被设计成拉伸吹塑N / 2预制件同时进入容器。
    • 80. 发明授权
    • Protective circuit and electric circuit using the protective circuit
    • 保护电路和电路使用保护电路
    • US6091592A
    • 2000-07-18
    • US160395
    • 1998-09-25
    • Atsushi Sakurai
    • Atsushi Sakurai
    • H01L27/04H01L21/822H01L23/60H01L27/02H02H9/04H02H3/22
    • H02H9/042H01L27/0251
    • A protective circuit for protecting a circuit from a destructive voltage or current, comprising a MIS transistor, and at least one resistor connected in series with the MIS transistor for limiting current flow through the MIS transistor, wherein a resistance value R of the at least one resistor connected in series with the MIS transistor satisfies the relation R>(A-B)/C, wherein A is a surge voltage against which protection is provided, B is a hold voltage at a breakdown of the MIS transistor, and C is a maximum allowable current of the MIS transistor. The at least one resistor is connected in series with a source of the MIS transistor, a drain of the MIS transistor, or both the source and the drain of the MIS transistor, and the resistance value of the resistance is preferably smallest value that satisfies the relation R>(A -B)/C.
    • 一种用于保护电路免受包括MIS晶体管的破坏性电压或电流的保护电路,以及与MIS晶体管串联连接的至少一个电阻器,用于限制通过MIS晶体管的电流,其中至少一个电阻值R 与MIS晶体管串联的电阻器满足关系R>(AB)/ C,其中A是提供保护的浪涌电压,B是MIS晶体管击穿时的保持电压,C是允许的最大值 MIS晶体管的电流。 至少一个电阻器与MIS晶体管的源极,MIS晶体管的漏极或MIS晶体管的源极和漏极串联连接,并且电阻的电阻值优选为满足 关系R>(A -B)/ C。