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    • 1. 发明授权
    • Heater with temperature detecting device and battery structure with the heater
    • 加热器带有温度检测装置和电池结构与加热器
    • US08367973B2
    • 2013-02-05
    • US11907482
    • 2007-10-12
    • Masahiko SuzukiJun OkudaYuji ToriiYukie UemuraKunio Kanamaru
    • Masahiko SuzukiJun OkudaYuji ToriiYukie UemuraKunio Kanamaru
    • H05B1/00
    • H05B3/30H05B1/0294
    • A heater with temperature detecting device, arranged to accurately detect the temperature of a laminated sheet heater over long periods, and a battery structure including the same. A first embodiment includes a laminated sheet heater and a temperature sensor having a temperature measuring portion. The laminated sheet heater includes first and second insulating resin films, a heater element, a first metal sheet, and a second metal sheet and includes a heater metallic section in which, any one of only the first metal sheet and only a combination of the first metal sheet and the second metal sheet is arranged in a lamination layering direction of the laminated sheet heater. The temperature sensor is fastened to the heater metallic section with a flat rivet and fixed to an outer surface of the first metal sheet with the temperature measuring portion in contact with the first metal sheet.
    • 一种具有温度检测装置的加热器,被布置成能够长时间地精确地检测层压片式加热器的温度,以及包括该加热器的电池结构。 第一实施例包括层压片式加热器和具有温度测量部分的温度传感器。 层压片材加热器包括第一和第二绝缘树脂膜,加热器元件,第一金属片和第二金属片,并且包括加热器金属部,其中仅第一金属片中的任一个和仅第一金属片的组合 金属片和第二金属片沿层压片式加热器的层压层叠方向布置。 温度传感器用扁平铆钉固定到加热器金属部分,并且固定到第一金属板的外表面,温度测量部分与第一金属片接触。
    • 2. 发明申请
    • Heater with temperature detecting device and battery structure with the heater
    • 加热器带有温度检测装置和电池结构与加热器
    • US20080093353A1
    • 2008-04-24
    • US11907482
    • 2007-10-12
    • Masahiko SuzukiJun OkudaYuji ToriiYukie UemuraKunio Kanamaru
    • Masahiko SuzukiJun OkudaYuji ToriiYukie UemuraKunio Kanamaru
    • H05B1/00
    • H05B3/30H05B1/0294
    • An object of the present invention is to provide a heater with temperature detecting device, arranged to accurately detect the temperature of a laminated sheet heater by use of a temperature detecting device over long periods, and a battery structure including the heater with temperature detecting device. A first heater with temperature detecting device includes a first laminated sheet heater and a temperature sensor having a temperature measuring portion. The first laminated heater is constituted of first and second insulating resin films, a heater element, a first metal sheet, and a second metal sheet and includes a heater metallic section in which, of the first insulating resin film, the second insulating resin film, the heater element, the first metal sheet, and the second metal sheet, any one of only the first metal sheet and only a combination of the first metal sheet and the second metal sheet is arranged in a lamination direction of the laminated heater. The temperature sensor is fastened to the heater metallic section of the first laminated heater with a flat rivet and fixed to an outer surface of the first metal sheet with the temperature measuring portion is in contact with the first metal sheet.
    • 本发明的目的是提供一种具有温度检测装置的加热器,其被设置为通过长时间使用温度检测装置来精确地检测层压片材加热器的温度,以及包括具有温度检测装置的加热器的电池结构。 具有温度检测装置的第一加热器包括第一层压片式加热器和具有温度测量部分的温度传感器。 第一层叠加热器由第一和第二绝缘树脂膜,加热器元件,第一金属片和第二金属片构成,并且包括加热器金属部分,其中第一绝缘树脂膜,第二绝缘树脂膜, 加热器元件,第一金属片和第二金属片,层压加热器的层叠方向上布置了仅第一金属片中的任何一种,仅第一金属片和第二金属片的组合。 温度传感器用扁平铆钉固定在第一层叠加热器的加热器金属部分上,并且固定到第一金属板的外表面,温度测量部分与第一金属片接触。
    • 4. 发明授权
    • Battery voltage detector
    • 电池电压检测器
    • US06462510B1
    • 2002-10-08
    • US09786342
    • 2001-03-09
    • Masahiro TakadaKazuhiko TamesueYuji Torii
    • Masahiro TakadaKazuhiko TamesueYuji Torii
    • H02J700
    • B60L11/1864B60L11/1848B60L11/1866G01R19/16542Y02T10/7005Y02T10/7061Y02T10/7072Y02T90/121Y02T90/128Y02T90/14Y02T90/163Y02T90/169Y04S30/14
    • A battery power source device is composed of a plurality of battery modules, in which each battery module includes a number of serially connected cells. A voltage detection circuit is associated with each battery module. Each voltage detection circuit includes a differential amplifier that detects a voltage across end terminals of the associated battery module, and the detected voltage is digitized and output through a photo-coupler to a controller. The differential amplifier is connected to the battery module through photo-relays, which are closed in response to an open/close control signal only during a voltage detection operation, so that leak currents are eliminated. The differential amplifier and an associated A/D converter are provided with operating power obtained by transforming the voltage of the battery module with regulators, whereby noise effects are eliminated.
    • 电池电源装置由多个电池模块组成,其中每个电池模块包括多个串联的电池。 电压检测电路与每个电池模块相关联。 每个电压检测电路包括差分放大器,其检测相关联的电池模块的两端的电压,并且检测的电压被数字化并通过光耦合器输出到控制器。 差分放大器通过光电继电器连接到电池模块,光电继电器仅在电压检测操作期间响应于打开/关闭控制信号而关闭,从而消除泄漏电流。 差分放大器和相关的A / D转换器具有通过用调节器转换电池模块的电压而获得的工作功率,从而消除噪声效应。
    • 5. 发明授权
    • Power supply device
    • 电源设备
    • US6054840A
    • 2000-04-25
    • US171731
    • 1999-02-10
    • Toshiaki NakanishiYuji Torii
    • Toshiaki NakanishiYuji Torii
    • G01R31/36B60L11/18H01M10/44H02J7/00H02J7/02H02J7/34H01M10/46
    • H02J7/0078H02J7/0011H02J7/0026H02J7/0063Y02T10/7055
    • The present invention relates to a power supply apparatus, more particularly to an improvement of a power supply apparatus provided with a plurality of secondary batteries connected serially, as well as a control of charging and discharging of the secondary batteries to suppress an accelerative deterioration of the secondary battery. The present invention provides to a control unit with a function for stopping the charging when the charged amount in charging becomes larger than the predetermined value, another function for changing the initial set value to a larger value when a variance in the charging capacity among the secondary batteries in charging becomes larger than the predetermined value.
    • PCT No.PCT / JP98 / 00743 Sec。 371日期1999年2月10日 102(e)1999年2月10日PCT 1998年2月23日提交PCT公布。 第WO98 / 38721号公报 日期:1998年9月3日本发明涉及一种电源装置,更具体地涉及一种具有连续串联连接的多个二次电池的供电装置的改进,以及二次电池的充放电控制,以抑制 二次电池的加速劣化。 本发明提供一种控制单元,具有当充电中的充电量变得大于预定值时具有停止充电的功能,当二次侧充电容量的变化变化时,将初始设定值变更为较大值的另一功能 充电中的电池变得大于预定值。