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    • 72. 发明授权
    • Vacuum insulated switchgear
    • 真空绝缘开关柜
    • US08411418B2
    • 2013-04-02
    • US12853397
    • 2010-08-10
    • Shuichi KikukawaKenji TsuchiyaYuuko KajiyamaDaisuke Sugai
    • Shuichi KikukawaKenji TsuchiyaYuuko KajiyamaDaisuke Sugai
    • H02B1/20H02B11/00
    • H01H33/666H01H33/6606H02B13/0354
    • The vacuum insulated switchgear includes: a housing enclosing a control compartment, a switch compartment, and a busbar compartment, each of the three compartments being partitioned by a metallic earthing plate; a first busbar and second busbar extended from an adjacent panel, in the busbar compartment; and a first busbar-connecting bushing and second busbar-connecting bushing making the first and second busbars connectible/disconnectible; a double-breaking three position vacuum switch, two sets of earthing switches, the first busbar-connecting bushing, and the second busbar-connecting bushing being integrally molded to form a switch provided on an electrical phase-by phase basis independently, wherein the switches for three phases are arranged in order side by side in the housing.
    • 真空绝缘开关装置包括:封闭控制室,开关室和母线室的壳体,三个隔室中的每一个由金属接地板隔开; 在母线槽中从相邻面板延伸的第一母线和第二母线; 以及第一母线连接衬套和第二母线连接衬套,其使得所述第一和第二母线可连接/可分离; 双重三位置真空开关,两组接地开关,第一母线连接衬套和第二母线连接套管,其一体地模制成形成独立设置在电相位基础上的开关,其中开关 三相依次排列在壳体内。
    • 73. 发明授权
    • Switchgear having main circuit switches disposed in separate vacuum chambers
    • 具有设置在分离的真空室中的主电路开关的开关装置
    • US08354607B2
    • 2013-01-15
    • US12025966
    • 2008-02-05
    • Takashi SatoKenji Tsuchiya
    • Takashi SatoKenji Tsuchiya
    • H01H33/666
    • H01H33/6661H01H1/5822H01H31/003H01H33/66207H01H2033/6668
    • A multi circuit type vacuum switchgear with improved ground isolation reliability. The multi circuit type vacuum switchgear has plural main circuit switches in a chamber. The respective main circuit switches, each having a fixed electrode and a movable electrode open/close to the fixed electrode, are respectively accommodated in a non-earthed type vacuum chamber. The respective movable electrodes are connected with flexible conductors. Operating rods are introduced into the non-earthed type vacuum chamber and respectively connected to the respective movable electrodes via insulators. The vacuum switchgear has a molded part having a first insulating member to insulate the main circuit switches and a second insulating member, integrally formed with the first insulating member, to insulate the movable electrode side and the movable operating rod side. The molded part is provided on the periphery of the vacuum chamber.
    • 具有改善接地隔离可靠性的多回路式真空开关设备。 多回路型真空开关装置在室内具有多个主电路开关。 各自的主电路开关分别容纳在非接地型真空室中,每个主电路开关具有固定电极和开/闭固定电极的可动电极。 各可动电极与柔性导体连接。 操作杆被引入到非接地型真空室中,并且经由绝缘体分别连接到各个可移动电极。 真空开关装置具有模制部件,其具有第一绝缘构件以使主电路开关绝缘,以及与第一绝缘构件一体形成的第二绝缘构件,以使可动电极侧和可动操作杆侧绝缘。 模制部件设置在真空室的周边。
    • 74. 发明授权
    • Charged state estimating device and charged state estimating method of secondary battery
    • 二次电池的充电状态估计装置和充电状态估计方法
    • US08274291B2
    • 2012-09-25
    • US12086696
    • 2006-11-30
    • Kenji Tsuchiya
    • Kenji Tsuchiya
    • G01V3/18H02J7/00
    • G01R31/3675G01R31/361G01R31/3651
    • When a battery current is not larger than a limit current set depending on the battery temperature and is flowing continuously for a predetermined time set depending on the battery temperature or longer, a decision is made that a secondary battery is in stable state. When the secondary battery is in stabilized state, the battery voltage is considered to be equal to the open circuit voltage and SOC estimation is performed based on the open circuit voltage-SOC characteristics. When the product of the internal resistance of the secondary battery and the limit current is made substantially constant (constant voltage) by setting the limit current in association with temperature dependence of the internal resistance, estimation error can be kept within a predetermined range in the stabilized state even if SOC estimation is performed while the battery voltage is assumed as the open circuit voltage. Consequently, SOC can be estimated with high precision within a predetermined error by a simple and reliable system under stabilized state.
    • 当电池电流不大于根据电池温度设定的限制电流并且根据电池温度或更长时间连续流动预定时间时,确定二次电池处于稳定状态。 当二次电池处于稳定状态时,认为电池电压等于开路电压,并且基于开路电压SOC特性进行SOC估计。 当通过设定与内部电阻的温度依赖关系相关联的限制电流使二次电池的内部电阻与极限电流的乘积基本恒定(恒定电压)时,估计误差可以保持在预定范围内 即使假定电池电压为开路电压,执行SOC估计。 因此,通过在稳定状态下的简单可靠的系统,可以在预定误差内以高精度估计SOC。
    • 76. 发明申请
    • Charged state estimating device and charged state estimating method of secondary battery
    • 二次电池的充电状态估计装置和充电状态估计方法
    • US20110257914A1
    • 2011-10-20
    • US13067785
    • 2011-06-27
    • Kenji Tsuchiya
    • Kenji Tsuchiya
    • G06F19/00
    • G01R31/3675G01R31/361G01R31/3651
    • When a battery current is not larger than a limit current set depending on the battery temperature and is flowing continuously for a predetermined time set depending on the battery temperature or longer, a decision is made that a secondary battery is in stable state. When the secondary battery is in stabilized state, the battery voltage is considered to be equal to the open circuit voltage and SOC estimation is performed based on the open circuit voltage-SOC characteristics. When the product of the internal resistance of the secondary battery and the limit current is made substantially constant (constant voltage) by setting the limit current in association with temperature dependence of the internal resistance, estimation error can be kept within a predetermined range in the stabilized state even if SOC estimation is performed while the battery voltage is assumed as the open circuit voltage. Consequently, SOC can be estimated with high precision within a predetermined error by a simple and reliable system under stabilized state.
    • 当电池电流不大于根据电池温度设定的限制电流并且根据电池温度或更长时间连续流动预定时间时,确定二次电池处于稳定状态。 当二次电池处于稳定状态时,认为电池电压等于开路电压,并且基于开路电压SOC特性进行SOC估计。 当通过设定与内部电阻的温度依赖关系相关联的限制电流使二次电池的内部电阻与极限电流的乘积基本恒定(恒定电压)时,估计误差可以保持在预定范围内 即使假定电池电压为开路电压,执行SOC估计。 因此,通过在稳定状态下的简单可靠的系统,可以在预定误差内以高精度估计SOC。
    • 77. 发明申请
    • BATTERY CELL AND POWER SUPPLY
    • 电池和电源
    • US20100173190A1
    • 2010-07-08
    • US12663580
    • 2008-06-12
    • Kenji Tsuchiya
    • Kenji Tsuchiya
    • H01M2/24H01M2/02H01M6/42
    • H01M2/08H01M2/20H01M2/305H01M10/0525
    • A battery (2) includes an insulating member (40) fitted into a hole (26) in a case (20), and electrode terminals (60, 70), each being passed through the insulating member (40) and extended out of the case (20). The insulating member (40) includes: a first insulating portion (42) that isolates each of the electrode terminals (60, 70) from the inner surface of the hole (26) and closes the interface between each of the electrode terminals (60, 70) and the inner surface; and a second insulating portion (48) formed along the surface of each of the terminals (60, 70) at the outer end portion of the insulating member (40).
    • 电池(2)包括嵌入到壳体(20)中的孔(26)中的绝缘构件(40)以及各自穿过绝缘构件(40)延伸出来的电极端子(60,70) 情况(20)。 绝缘构件(40)包括:第一绝缘部分(42),其将每个电极端子(60,70)与孔(26)的内表面隔离,并且封闭每个电极端子(60,60)之间的界面, 70)和内表面; 以及在所述绝缘构件(40)的外端部沿着所述端子(60,70)的表面形成的第二绝缘部(48)。
    • 78. 发明申请
    • DISTRIBUTION SWITCHGEAR
    • 分配开关
    • US20080007896A1
    • 2008-01-10
    • US11774786
    • 2007-07-09
    • Kenji TsuchiyaYoshinori NishizawaYuko Kajiyama
    • Kenji TsuchiyaYoshinori NishizawaYuko Kajiyama
    • H02B1/20
    • H02B13/01H02B11/02
    • A distribution switchgear has an equipment room, main busbar room and cable room, which are formed in a distribution panel housing by partitioning the housing, from front to back such that the equipment room is located just behind the front door of the housing, with the busbar room behind the equipment room. In the equipment room, are disposed a circuit breaker, a current transformer on a load side of the circuit breaker and a zero-phase-sequence current transformer on a power supply side of the circuit breaker. The equipment units are vertically arranged in the equipment room. In the busbar room are a solid-insulated main busbar, a solid-insulated link busbar connected with the main busbar and connected with one side of each of the equipment units and a solid-insulated branch busbar connected with the other side of each of the equipment units.
    • 分配开关设备具有设备室,主母线室和电缆室,它们通过从前到后分隔壳体而形成在配电盘壳体中,使得机房位于壳体的前门正后方, 工作室后面的母线室。 在设备室中,在断路器的负载侧设置断路器,电流互感器和断路器的电源侧上的零相电流互感器。 设备单元垂直布置在机房内。 母线室是一个固体绝缘主母线,一个固定绝缘连接母线与主母线连接,并与每个设备单元的一侧连接,而固体绝缘分支母线与每个母线的另一侧相连 设备单位。
    • 80. 发明授权
    • Combination terminal
    • 组合终端
    • US5558531A
    • 1996-09-24
    • US380577
    • 1995-01-30
    • Tomohiro IkedaKenji Tsuchiya
    • Tomohiro IkedaKenji Tsuchiya
    • H01R4/18H01R11/12H01R13/28
    • H01R13/28H01R11/12H01R2201/26H01R4/185Y10S439/907
    • A combination terminal is provided so that it is minimally deformable. The strength of plate terminals constituting the combination terminal is maximized to ensure the prevention of both backlash and accidental disengagement. A plate terminal includes a rectangular plate-like securing member having a substantially circular securing hole in the center, and a joint having a coated clamping member consecutively extended from the end of the securing member and a conductor clamping member. The securing member is perpendicular to the length direction of the joint. The securing member is provided with retaining planes folded stepwise between base planes on opposite sides of the securing hole. The retaining planes are stepped down by the thickness of each base plane. In one end portion of the base plane is a fitting hole bored therein. In the other end portion stands a lock pawl cut downwardly corresponding to the fitting hole of a mating plate terminal.
    • 提供组合端子,使其最小可变形。 构成组合端子的板端子的强度最大化,以确保防止齿隙和意外脱离。 板端子包括在中心具有基本上圆形的固定孔的矩形板状固定构件和具有从固定构件的端部连续延伸的涂覆的夹紧构件和导体夹持构件的接头。 固定构件垂直于接头的长度方向。 固定构件设置有在固定孔的相对侧上的基面之间逐步折叠的保持面。 保持平面按每个基面的厚度逐步降低。 在基面的一个端部是在其中钻孔的装配孔。 另一端部是与配合板端子的嵌合孔对应地向下方切断的锁定爪。