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    • 3. 发明授权
    • Substrate connector
    • 基板连接器
    • US5211571A
    • 1993-05-18
    • US655859
    • 1991-02-15
    • Tatsuya AraiHiroshi OhkawaHirokatsu YaegashiMorio SuzukiHiroshi Kouzai
    • Tatsuya AraiHiroshi OhkawaHirokatsu YaegashiMorio SuzukiHiroshi Kouzai
    • H01R13/62
    • H01R12/7005
    • A print substrate connector having a main body comprising a pair of supporting portions. A lock arm 26 is provided on a sidewall of a substrate mounting groove 22 formed in the main body of the substrate connector, into which groove 22 a terminal connecting portion 30 of the print substrate 29 is inserted. The part of the sidewall of the substrate mounting groove 22, on which part the lock arm 26 is placed, faces a vacant portion at the sides of the terminal connecting portion 30 of the print substrate 29, on which vacant portion no element is mounted. In operation or when the print substrate 29 is inserted into the mounting groove 22 of the main body, a locking claw 28 formed on the lock arm 26 is adapted to engage with a locking hole 32 formed on the vacant portion of the print conveniently used as a locking means of the substrate without a bad influence on a high density mounting of elements mounted on the substrate. A supporting foundation 34 of the lock arm 26 placed in parallel with the inner face of the sidewall of the connector main body 20a and has a forked end leaving a dent 35 on the bottom face of the forked end.
    • 一种印刷基板连接器,其具有包括一对支撑部分的主体。 锁定臂26设置在形成在基板连接器的主体中的基板安装槽22的侧壁上,印刷基板29的端子连接部分30插入槽22中。 基板安装槽22的侧壁部分,其上放置有锁定臂26的部分,面向打印基板29的端子连接部分30的侧面上的空的部分,在其上没有安装空白部分。 在操作中或当打印基板29插入主体的安装槽22中时,形成在锁定臂26上的锁定爪28适于与形成在打印机的空白部分上的锁定孔32接合,其方便地用作 衬底的锁定装置,而对安装在衬底上的元件的高密度安装没有不利影响。 锁定臂26的支撑基座34与连接器主体20a的侧壁的内表面平行设置,并且具有叉形端部,在叉形端部的底面上留下凹部35。
    • 5. 发明授权
    • Contact of connector
    • 连接器的接触
    • US4632478A
    • 1986-12-30
    • US705541
    • 1985-02-26
    • Hiroshi KozaiMorio SuzukiMatsuo KatohToshiaki Suzuki
    • Hiroshi KozaiMorio SuzukiMatsuo KatohToshiaki Suzuki
    • F16K31/06H05K1/00H05K1/11
    • H01R12/721
    • A contact of a connector made of an elongated resilient material and having an inner end fixed to a connector housing and a midway to be in contact with a mating contact of another connector. According to the invention, the contact comprises a substantially straight portion extending from a contacting portion of the midway with the mating contact to the fixed inner end, and an outer portion being bent in zigzag extending from the contacting portion to the distal end abutting against a surface of the connector housing, thereby obtaining a sufficient contacting resilient pressure to realize stable and reliable connecting condition with the mating contact and simultaneously achieving small-sized connectors and high speed signal transmission.
    • 由细长的弹性材料制成的连接器的接触件,其内端固定到连接器壳体和中途与另一连接器的配合触头相接触。 根据本发明,触点包括从中途的接触部分与配合触头延伸到固定的内端的基本上直的部分,以及从接触部分延伸到远端的Z字形弯曲的外部部分, 从而获得足够的接触弹性压力,以实现与配合触点的稳定可靠的连接状态,同时实现小型连接器和高速信号传输。
    • 6. 发明申请
    • ASSEMBLED BATTERY SYSTEM AND FAILURE DETECTION METHOD OF ASSEMBLED BATTERY SYSTEM
    • 组装电池系统和组装电池系统故障检测方法
    • US20120146652A1
    • 2012-06-14
    • US13312751
    • 2011-12-06
    • Hironobu AokiMami MizutaniYuuki KuwanoTakehiro UsumoriMorio SuzukiTakashi Morimoto
    • Hironobu AokiMami MizutaniYuuki KuwanoTakehiro UsumoriMorio SuzukiTakashi Morimoto
    • G01N27/416
    • G01R31/3658G01R31/026
    • An assembled battery system is disclosed that includes a plurality of serially-connected battery cells; voltage detecting lines connectable at one ends to electrodes of the battery cells of the assembled battery; electric resistors serially-connected at one ends to the other ends of the voltage detecting lines; capacitors connected to the other ends of the electric resistors, each of the capacitors being configured to electrically interconnect one of the voltage detecting lines and the other voltage detecting line; voltage measuring circuits connected respectively to each of the voltage detecting lines; electrically openable short-circuiting switches arranged between the capacitors and the voltage measuring circuits and parallel-connected to the capacitors; and a monitoring circuit that detects a difference between a first measurement result and a second measurement result with respect to each of the short-circuiting switches and a failure of the voltage detecting lines, the short-circuiting switches or the voltage measuring circuits.
    • 公开了一种组合电池系统,其包括多个串联连接的电池单元; 一端的电压检测线与组电池的电池单元的电极连接; 电阻器一端串联连接到电压检测线的另一端; 连接到电阻器的另一端的电容器,每个电容器被配置为电气互连电压检测线路和另一个电压检测线路之一; 电压测量电路分别连接到每个电压检测线; 布置在电容器和电压测量电路之间并并联连接到电容器的电可开启短路开关; 以及监视电路,其针对每个短路开关检测第一测量结果和第二测量结果之间的差异以及电压检测线,短路开关或电压测量电路的故障。
    • 10. 发明授权
    • Multicore cable and a method of manufacturing thereof
    • 多芯电缆及其制造方法
    • US06310296B1
    • 2001-10-30
    • US09442457
    • 1999-11-18
    • Yasushi NishiKiyofumi TanakaMorio Suzuki
    • Yasushi NishiKiyofumi TanakaMorio Suzuki
    • H01B708
    • H01R4/04Y10T29/49123Y10T29/49174Y10T29/49176
    • A multicore cable includes a plurality of cables in parallel and is formed by fusion-welding the plurality of cables with a resin jacket. Each of the plurality of cables is formed by winding a shield around a signaling core wire, which is covered with an insulating material, and a grounding core wire. The resin jacket and the shield are stripped so that a stair portion is formed. The stair portion is coated with an electrically conductive adhesive. A vibration is exerted on the grounding core wire, thereby connecting the shield with the grounding core wire with the electrically conductive adhesive. Eventually, the shield and the grounding core wire are bonded with the electrically conductive adhesive. This allows an electrical connection between the shield and the grounding core wire to be maintained in a desirable condition, thus making it possible to suppress a characteristic impedance variation of the signaling core wire caused by an external factor.
    • 多芯电缆包括并联的多根电缆,并且通过用树脂护套将多根电缆熔接而形成。 多个电缆中的每一个通过围绕由绝缘材料覆盖的信号芯线和接地芯线缠绕屏蔽来形成。 剥离树脂护套和护罩,形成台阶部。 楼梯部分涂有导电粘合剂。 在接地芯线上施加振动,从而将屏蔽与接地芯线与导电粘合剂连接。 最后,屏蔽层和接地芯线与导电粘合剂结合。 这样就可以将屏蔽层和接地芯线之间的电连接保持在期望的状态,从而可以抑制由外部因素引起的信号芯线的特性阻抗变化。