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    • 12. 发明申请
    • MEMORY SCAN TESTING
    • 内存扫描测试
    • WO2007044286A2
    • 2007-04-19
    • PCT/US2006/038354
    • 2006-10-03
    • TEXAS INSTRUMENTS INCORPORATEDGROSE, William, E.LAMBERT, Lonnie, L.PITZ, Jeanne, KrayerTANAKA, Toru
    • GROSE, William, E.LAMBERT, Lonnie, L.PITZ, Jeanne, KrayerTANAKA, Toru
    • G11C29/00
    • G11C29/12G11C16/04G11C29/48G11C2029/3202
    • A method is provided for testing a semiconductor device that includes both a digital (310) and analog (320) portion. The digital portion may include a plurality of latch devices (361-364), and the analog portion may include a plurality of memory cells (321) and a plurality of selector devices (325). Each of the plurality of selector devices is electrically coupled to a respective one of the memory cells, is at least indirectly coupled to one of the plurality of latch devices, and is controlled by a selector input (215). A load clock (372) is applied to load a pattern into the plurality of latch devices. The selector input is asserted such that a derivative of the pattern is received by the plurality of selectors and returned to the plurality of latch devices. A system clock (371) is applied to the plurality of latch devices such that the derivative of the pattern is loaded into the plurality of latch devices.
    • 提供了一种用于测试包括数字(310)和模拟(320)部分的半导体器件的方法。 数字部分可以包括多个锁存装置(361-364),并且模拟部分可以包括多个存储单元(321)和多个选择器装置(325)。 多个选择器装置中的每一个电耦合到存储器单元中的相应一个存储器单元,至少间接耦合到多个锁存器装置中的一个,并且由选择器输入(215)控制。 加载时钟(372)被用于将图案加载到多个锁存器件中。 选择器输入被断言,使得图案的导数被多个选择器接收并返回到多个锁存装置。 系统时钟(371)被施加到多个锁存器件,使得图案的导数被加载到多个锁存器件中。
    • 14. 发明公开
    • Battery system
    • 电池系统
    • EP2639858A1
    • 2013-09-18
    • EP13156266.2
    • 2013-02-22
    • Hitachi Ltd.
    • YAMAUCHI, ShinTANAKA, ToruURANO, Shinichi
    • H01M2/20
    • H01M2/305H01M2/206
    • A battery system that is compact and lightweight and capable of reducing the effects of induction components even when the wiring length connecting between plural battery elements has become long. A battery module (213) contains multiple battery cells (217-11 through 16) formed into cuboid shapes and connected each of the battery cells. The bus bars (W11, W12) (first current flow path) that electrically connect the battery cells (217-11 through 13) in series, and the bus bars (W14, W15) (second current flow path) that electrically connect the battery cells (217-14 through 16) in series are respectively installed so as to maintain a mutual specified gap. The electrical current flow directions in the bus bars (W11, W12) and the bus bars (W14, W15) are set in mutually different directions at an inverter unit (R1) configured from a positive terminal (Tp14), a negative terminal (Tn13), and a bus bar (W13).
    • 即使在连接多个电池元件的配线长度变长的情况下,也能够实现小型且轻量且能够降低感应部件的影响的电池系统。 电池模块(213)包含形成为长方体形状并连接每个电池单元的多个电池单元(217-11至16)。 将电池单元(217-11至13)串联电连接的母线(W11,W12)(第一电流流动路径)和电连接电池的母线(W14,W15)(第二电流流动路径) 分别安装串联的电池(217-14至16)以保持相互间规定的间隙。 在由正极端子(Tp14),负极端子(Tn13)和负极端子(Tn13)构成的逆变器单元(R1)中,母线(W11,W12)和母线(W14,W15)中的电流的流动方向被设定为彼此不同的方向 )和母线(W13)。
    • 15. 发明公开
    • Battery system and temperature control method therefor
    • Batteriesystem und Temperatursteuerungsverfahrendafür
    • EP2637248A1
    • 2013-09-11
    • EP13156268.8
    • 2013-02-22
    • Hitachi Ltd.
    • TANAKA, ToruYAMAUCHI, ShinINOUE, Takeshi
    • H01M10/48H01M10/50H01M2/10
    • H01M10/482H01M2/1016H01M10/486H01M10/615H01M10/633H01M10/6567
    • Provided are a battery system and temperature control method therefor capable of suppressing excessive cooling of a battery module, diminishing a temperature variance, and leveling the temperatures of plural battery modules. In the battery system including cooling units each of which is provided with a cooling plate (2-1, 2-2) which includes a flow channel through which a refrigerant flows and on which a battery module that is an object of temperature control (1M-1, 1M-2) is placed, and a flow rate adjustment device (8-1, 8-2) that adjusts the flow rate of the refrigerant that flows through the flow channel, temperature sensors (6-1, 6-2) that individually sense the temperatures of the battery modules, and a refrigerant circulation mechanism (4) that branches out the refrigerant into the flow channels accompanying the cooling units, and joins and circulates the refrigerants coming from the flow channels, a control unit (7) adjusts the refrigerant flow rates using the flow rate adjustment devices (8-1, 8-2) according to the temperatures, which are sensed by the temperature sensors (6-1, 6-2), for each of the cooling units.
    • 提供一种电池系统及其温度控制方法,其能够抑制电池模块的过度冷却,降低温度变化,并且使多个电池模块的温度平坦化。 在包括冷却单元的电池系统中,每个冷却单元设置有冷却板(2-1,2-2),该冷却板包括制冷剂流过的流动通道,并且作为温度对象的电池模块(1M -1,1M-2)和调节流过流路的制冷剂的流量的流量调节装置(8-1,8-2),温度传感器(6-1,6-2 ),其分别感测电池模块的温度;以及制冷剂循环机构(4),其将制冷剂分支到伴随冷却单元的流动通道中,并且连接并循环来自流动通道的制冷剂,控制单元(7) )根据由各温度传感器(6-1,6-2)感测的每个冷却单元的温度,使用流量调节装置(8-1,8-2)调节制冷剂流量。
    • 16. 发明公开
    • POWER STORAGE APPARATUS
    • 电力储存设备
    • EP2940754A1
    • 2015-11-04
    • EP12824839.0
    • 2012-12-28
    • Hitachi, Ltd.
    • TANAKA, ToruTANAKA, KatsuyoshiINOMATA, Akira
    • H01M2/10H05K7/20
    • H01M2/1077H01M10/613H01M10/6563
    • A power storage system includes a power storage pack 58 of a power storage device such as a lithium ion secondary battery, supplies electric power to an external load from the power storage device, and charges the power storage device by electric power from outside. The power storage pack 58 is housed in a power storage rack 51 having a top plate 54, a bottom plate 55, and shelf boards 57. A fan case 64 is provided on the power storage rack 51. A ceiling fan 68 is mounted in the fan case 64, and when the ceiling fan 68 is to be attached to the fan case 64 and detached from the fan case 64, the ceiling fan 68 is attached and detached from a front side of an upper surface of the power storage rack 51.
    • 蓄电系统具备锂离子二次电池等蓄电装置的蓄电组件58,从蓄电装置向外部负载供给电力,通过来自外部的电力对蓄电装置进行充电。 蓄电组件58收纳在具有顶板54,底板55以及搁板57的蓄电框架51中。在蓄电框架51上设置有风扇壳体64.在该蓄电框架51上安装有吊扇68。 在将吊扇68安装于风扇壳体64并从风扇壳体64拆下的情况下,吊挂风扇68从蓄电齿条51的上表面的前侧拆装。