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    • 2. 发明申请
    • BATTERY UNIT AND BATTERY SYSTEM USING THE BATTERY UNIT
    • 电池组和使用电池单元的电池系统
    • US20100079108A1
    • 2010-04-01
    • US12566997
    • 2009-09-25
    • Yukitaka MONDENRyuichi MorikawaMami MizutaniYuki KuwanoMasayuki KubotaYasuyuki Ito
    • Yukitaka MONDENRyuichi MorikawaMami MizutaniYuki KuwanoMasayuki KubotaYasuyuki Ito
    • H02J7/00
    • H02J7/0026H01M10/48
    • A battery system includes a battery unit in which battery arms are connected in parallel, and a charge/discharge control device that controls charge/discharge of the battery unit. Each of the battery arms includes: a battery composed of one or more battery cells connected in series; a switch connected in series to the battery; and a battery monitoring device that, in a case of having detected abnormality of the battery, opens the switch to thereby isolate the battery arm including the abnormal battery, and sends a switch opening signal indicating that the switch has been opened to the charge/discharge control device. The charge/discharge control device performs a control to reduce a charge/discharge current or charge/discharge power of the battery unit when the switch opening signal is sent from the battery monitoring device of the battery unit to the charge/discharge control device.
    • 电池系统包括并联连接电池臂的电池单元和控制电池单元的充电/放电的充放电控制装置。 每个电池臂包括:由串联连接的一个或多个电池单元组成的电池; 与电池串联的开关; 以及电池监视装置,在检测到电池的异常的情况下,打开开关,使包含异常电池的电池臂隔离,并将表示开关已经打开的开关信号发送到充放电 控制装置 当开关信号从电池单元的电池监视装置发送到充放电控制装置时,充放电控制装置执行减小电池单元的充放电电流或充电/放电功率的控制。
    • 4. 发明申请
    • AUTOMATIC BREAD MAKER
    • 自动面包机
    • US20130000491A1
    • 2013-01-03
    • US13575436
    • 2011-01-31
    • Yasuyuki ItoSyuji FukudaYoshinari ShiraiTakashi Watanabe
    • Yasuyuki ItoSyuji FukudaYoshinari ShiraiTakashi Watanabe
    • A47J37/01
    • B01F7/00058A21B7/005A21C1/02B01F7/0015B01F7/00291
    • An automatic bread maker (1) comprises a bread container into which bread ingredients (50) are put; a body (10) for receiving the bread container (50); an automatic feeding mechanism (19, 80) for enabling a portion of the bread ingredients to be automatically fed into the bread container (50); and a control unit (90) for executing a bread-making procedure for making bread. The bread-making procedure executed by the control unit (90) is provided with a plurality of types of bread-making procedures, including a first bread-making procedure and a second bread-making procedure. The control unit (90) varies the method of control related to the timing with which the bread ingredients are fed using the automatic feeding mechanism in the first bread-making procedure and the second bread-making procedure.
    • 一种自动面包机(1)包括放置面包成分(50)的面包容器; 用于接收所述面包容器(50)的本体(10); 自动进给机构(19,80),用于使面包成分的一部分自动进料到面包容器(50)中; 以及用于执行用于制作面包的面包制作程序的控制单元(90)。 由控制单元(90)执行的面包制作程序具有多种类型的面包制作程序,包括第一面包制作程序和第二面包制作程序。 控制单元(90)在第一面包制作程序和第二面包制作程序中,使用自动进给机构改变与面包成分供给的时间相关的控制方法。
    • 5. 发明授权
    • Wireless connection terminal and roaming method for providing stable wireless connection to access point
    • 无线连接终端和漫游方法,为接入点提供稳定的无线连接
    • US07912010B2
    • 2011-03-22
    • US11870389
    • 2007-10-10
    • Yasuyuki ItoYuzuru KawamuraYuji Yanagisawa
    • Yasuyuki ItoYuzuru KawamuraYuji Yanagisawa
    • H04W4/00
    • H04W36/08H04W36/30
    • A control unit of a wireless connection terminal compares the received signal strength indicator of an access point currently connected to by the wireless connection terminal with the received signal strength indicator of a neighboring access point. If the difference between the two received signal strength indicators is higher than or equal to 40%, the connection to the current access point is severed and roaming in which the connection is switched to the neighboring access point is performed. Even when the difference between the two received signal strength indicators is not higher than or equal to 40%, roaming in which the connection is switched to the neighboring access point is performed if the received signal strength indicator of the access point to which the wireless connection terminal is currently connected becomes lower than or equal to 20%.
    • 无线连接终端的控制单元将由无线连接终端当前连接的接入点的接收信号强度指示符与相邻接入点的接收信号强度指示符进行比较。 如果两个接收信号强度指示符之间的差异大于或等于40%,则切断与当前接入点的连接并且连接切换到相邻接入点的漫游。 即使当两个接收信号强度指示符之间的差别不高于或等于40%时,如果无线连接的接入点的接收信号强度指示符被执行,则连接切换到相邻接入点的漫游 当前连接的终端变为低于或等于20%。
    • 6. 发明授权
    • Wound electric double-layer capacitor
    • 绕线电双层电容器
    • US07881043B2
    • 2011-02-01
    • US12065637
    • 2006-11-21
    • Eri HiroseYoshinori TakamukuYasuyuki ItoSatomi Onishi
    • Eri HiroseYoshinori TakamukuYasuyuki ItoSatomi Onishi
    • H01G9/00
    • H01G9/155H01G9/016H01G9/058H01G11/74H01G11/82Y02E60/13
    • A wound electric double-layer capacitor suppresses electrochemical reaction on polarized electrode layers, reduces characteristic degradation, and has high reliability. The capacitor has a capacitor element formed by winding positive and negative electrodes with a separator interposed between them, a metal case for storing the capacitor element and an electrolyte for driving, and a sealing member for sealing an opening of the metal case. In the positive and negative electrodes, positive and negative electrode lead wires are coupled to exposed parts of current collectors having polarized electrode layers on their both surfaces, respectively. The negative electrode is wound at least one extra turn from the winding end of the positive electrode of the capacitor element, and hence a part where the polarized electrode layers formed in the negative electrode face each other through the separator is formed on the outermost periphery of the capacitor element.
    • 缠绕电双层电容器抑制极化电极层的电化学反应,降低特性劣化,并具有高可靠性。 电容器具有电容器元件,该电容器元件是通过将正极和负极之间夹有隔板而形成的,用于存储电容器元件的金属壳和用于驱动的​​电解质,以及用于密封金属壳的开口的密封构件。 在正极和负极中,正极和负极引线分别与两个表面上具有极化电极层的集电体的露出部分相连。 负极从电容器元件的正极的绕组端缠绕至少一个额外的匝,并且因此形成在负极中的极化电极层通过隔板彼此面对的部分形成在 电容器元件。
    • 10. 发明申请
    • ELECTROLYTE SOLUTION FOR ELECTROCHEMICAL DEVICE AND ELECTROCHEMICAL DEVICE USING SAME
    • 用于电化学装置的电解质溶液和使用该化学设备的电化学装置
    • US20090289211A1
    • 2009-11-26
    • US12088818
    • 2006-09-28
    • Koji FujiokaYoshihiko AkazawaYasuyuki ItoSatomi Onishi
    • Koji FujiokaYoshihiko AkazawaYasuyuki ItoSatomi Onishi
    • H01G9/022
    • H01B1/122H01G9/035H01G9/038H01G11/06H01G11/58H01G11/62Y02E60/13Y02T10/7022
    • The present invention has for its object to provide an electrolyte solution which can dramatically suppress the time degradation in performance of an electrochemical device, especially an electrochemical capacitor.The present invention relates to an electrolyte solution for electrochemical device which comprises an imidazolium salt (A) represented by the general formula (1) as a main component, wherein the content of the imidazolium salt (B) represented by the general formula (2) is not more than 15% by weight to the total weight of the imidazolium salt (A) and imidazolium salt (B); (in the formula, R1, R2 and R3 may be the same or different and each represents an alkyl group containing 1 to 3 carbon atoms; R4 and R5 may be the same or different and each represents an hydrogen atom or an alkyl group containing 1 to 3 carbon atoms; and X− represents a counter anion) (in the formula, R1, R3, R4, R5 and X− are the same as the definition for the general formula (1)).
    • 本发明的目的是提供一种电解质溶液,其可以显着地抑制电化学装置,特别是电化学电容器的性能的时间劣化。 本发明涉及一种电化学装置用电解液,其包含由通式(1)表示的咪唑鎓盐(A)作为主要成分,其中由通式(2)表示的咪唑鎓盐(B)的含量 相对于咪唑鎓盐(A)和咪唑鎓盐(B)的总重量不超过15重量%; (式中,R 1,R 2和R 3可以相同或不同,表示碳原子数1〜3的烷基,R 4,R 5可以相同或不同,表示氢原子或含有1个 至3个碳原子; X表示抗衡阴离子)(式中,R1,R3,R4,R5和X与通式(1)的定义相同)。