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    • 1. 发明授权
    • State monitoring unit for assembled battery
    • 组装电池状态监控单元
    • US08552729B2
    • 2013-10-08
    • US12861870
    • 2010-08-24
    • Masashi SekizakiSatoshi IshikawaKimihiro Matsuura
    • Masashi SekizakiSatoshi IshikawaKimihiro Matsuura
    • G01R31/36H01J7/00
    • H01M10/482G01R31/3658
    • A state monitoring unit monitors a state of an assembled battery in which unit cells are connected in series. The state monitoring unit includes a plurality of voltage monitoring devices and a controller. The controller transmits a common voltage measurement command to the voltage monitoring devices connected in a daisy-chain scheme. Each of the voltage monitoring devices measures the voltage of the corresponding unit cells in response to the command that is received from the controller or the adjacent voltage monitoring device at a leading end of the communication channel, and transmits the command to the adjacent voltage monitoring device at a termination of the communication channel. When received the measured voltage from the adjacent voltage monitoring device at the termination, the voltage monitoring device transmits it with the own measured voltage. The controller determines the abnormality in reception state based on the number of received, measured voltages.
    • 状态监视单元监视其中单元电池串联连接的组合电池的状态。 状态监视单元包括多个电压监视装置和控制器。 控制器向以菊花链方式连接的电压监视装置发送公共电压测量命令。 每个电压监视装置响应于在通信信道的前端从控制器或相邻电压监视装置接收到的命令来测量相应单元的电压,并将该命令发送到相邻的电压监视装置 在通信信道的终止。 在终端接收到相邻电压监测装置的测量电压时,电压监测装置用自己测量的电压进行发送。 控制器基于接收到的测量电压的数量来确定接收状态中的异常。
    • 3. 发明授权
    • Voltage detecting device
    • 电压检测装置
    • US08140281B2
    • 2012-03-20
    • US12314850
    • 2008-12-17
    • Satoshi IshikawaKimihiro MatsuuraMasashi Sekizaki
    • Satoshi IshikawaKimihiro MatsuuraMasashi Sekizaki
    • G01R31/36
    • G01R31/3658G01R31/362
    • The present invention is to provide inexpensively a voltage detecting device for setting an address of each voltage detection IC even if a power source level of each voltage detection IC differs. A first transmitting line LT1 and a first receiving line LR1 connect a plurality of voltage detection ICs in series each other, and connect between the bottom voltage detection IC and the main microcomputer. The main microcomputer transmits an address number 0 to the bottom voltage detection IC. When the respective voltage detection ICs receive an address number through the first receiving line of a lower side from the main microcomputer, an address number adding 1 to the received address number is set as a self-address number. Furthermore, the respective voltage detection ICs transmit the address number which adds 1 to the received address number to the first transmitting line LT1 of an upper side.
    • 本发明即使各电压检测IC的电源电平不同,也能够廉价地提供用于设定各电压检测用IC的地址的电压检测装置。 第一发送线LT1和第一接收线LR1将多个电压检测IC串联连接,并且在底部电压检测IC和主微型计算机之间连接。 主微型计算机将地址号0发送到底部电压检测IC。 当各个电压检测IC通过来自主微型计算机的下侧的第一接收线接收地址号时,将接收到的地址号的地址号加1,将其设置为自身地址号。 此外,各个电压检测IC将向接收到的地址号添加1的地址号发送到上侧的第一发送线LT1。
    • 4. 发明申请
    • VOLTAGE MONITORING DEVICE FOR ASSEMBLED BATTERY
    • 用于组装电池的电压监测装置
    • US20100308835A1
    • 2010-12-09
    • US12794200
    • 2010-06-04
    • Masashi SEKIZAKISatoshi IshikawaKimihiro Matsuura
    • Masashi SEKIZAKISatoshi IshikawaKimihiro Matsuura
    • G01N27/417
    • G01R31/3658G01R31/3689H01M10/482H02J7/0021Y02T10/7055
    • There is provided a voltage monitoring apparatus for monitoring an output voltage of an assembled battery. The voltage monitoring apparatus comprises: voltage monitoring sections, each section monitoring a voltage of each block of the plurality of blocks into which the plurality of unit cells are divided, wherein the voltage monitoring sections are connected one another through communication lines; and a control unit which is connected to the voltage monitoring section through the communication lines. The voltage monitoring section compares the respective detected voltages of the unit cells with the threshold voltage to determine a result of the comparison, and transmits the comparison result to the control unit. In a case where the threshold voltage is changed, the control unit transmits a registration signal indicating the changed threshold voltage, and when received the registration signal, the voltage monitoring section changes the stored threshold voltage to the changed threshold voltage.
    • 提供了用于监视组合电池的输出电压的电压监视装置。 电压监视装置包括:电压监视部,每个部分监视多个单位电池被划分成多个块的每个块的电压,其中电压监视部分通过通信线路彼此连接; 以及通过通信线路连接到电压监视部的控制单元。 电压监视部分将单元的相应检测电压与阈值电压进行比较,以确定比较结果,并将比较结果发送到控制单元。 在阈值电压变化的情况下,控制部发送表示变更后的阈值电压的登录信号,当接收到登记信号时,电压监视部将所存储的阈值电压变更为阈值电压。
    • 5. 发明申请
    • Voltage-detection component and a substrate having the same
    • 电压检测部件和具有该电压检测部件的基板
    • US20100188092A1
    • 2010-07-29
    • US12656349
    • 2010-01-27
    • Masashi SekizakiKimihiro Matsuura
    • Masashi SekizakiKimihiro Matsuura
    • G01N27/416
    • H01M10/48G01R31/396
    • A substrate includes a plurality of voltage-detection components, each of which includes (a) an upper connecting terminal that protrudes from one of a pair of first sides opposite each other of a body of a voltage-detection component and is connected to an adjacent voltage-detection component of an adjacent higher-ordered battery block of the battery pack, and (b) a lower connecting terminal that protrudes from the other of the pair of the first sides of the body and is connected to an adjacent voltage-detection component of an adjacent lower-ordered battery block of the battery pack. The plurality of voltage-detection components are aligned on the substrate in a direction substantially orthogonal to the pair of the first sides of the body of the component.
    • 基板包括多个电压检测部件,每个电压检测部件包括:(a)从电压检测部件的主体相对的一对第一侧中的一个突出的上连接端子,并且连接到相邻的 电池组的相邻较高阶电池块的电压检测部件,以及(b)从主体的一对第一侧突出的并连接到相邻电压检测部件的下连接端子 的电池组的相邻低价电池块。 多个电压检测部件在基板上在与部件的主体的一对第一侧基本正交的方向上对准。
    • 6. 发明授权
    • State monitoring unit for monitoring a state of an assembled battery
    • 状态监视单元,用于监视组合电池的状态
    • US08446123B2
    • 2013-05-21
    • US12861885
    • 2010-08-24
    • Masashi SekizakiSatoshi IshikawaKimihiro Matsuura
    • Masashi SekizakiSatoshi IshikawaKimihiro Matsuura
    • H01M10/46
    • G01R31/3658
    • A state monitoring unit monitors a state of an assembled battery in which a plurality of unit cells are connected in series. The state monitoring unit includes: a plurality of voltage monitoring devices provided in a high voltage side and a controller provided in a low voltage side electrically isolated with the high voltage side. The controller transmits a common voltage measurement command to the respective voltage monitoring devices connected via a communication channel in a daisy-chain scheme. The controller includes a storage for storing latency time determined based on a required time for each of the voltage monitoring devices elapsing from transmission of the common voltage measurement command with respect to the communication channel to voltage measurement of the unit cells, and measures charging/discharging current of the assembled battery when the latency time has elapsed from the transmission of the common voltage measurement command with respect to the communication channel.
    • 状态监视单元监视其中多个单元电池串联连接的组合电池的状态。 状态监视单元包括:设置在高压侧的多个电压监视装置和设置在与高压侧电隔离的低压侧的控制器。 控制器将通用电压测量命令发送到以菊花链方式经由通信信道连接的各个电压监视装置。 控制器包括存储器,用于存储基于通过公共电压测量命令相对于通信信道传输到每个单元的电压测量而经过的每个电压监视装置所需的时间所决定的等待时间,并且测量充电/放电 当从公共电压测量命令相对于通信信道的传输过去了等待时间时,组电池的电流。
    • 8. 发明申请
    • VOLTAGE MEASURING APPARATUS FOR ASSEMBLED BATTERY
    • 用于组装电池的电压测量装置
    • US20110031976A1
    • 2011-02-10
    • US12852559
    • 2010-08-09
    • Satoshi IshikawaKimihiro MatsuuraMasashi Sekizaki
    • Satoshi IshikawaKimihiro MatsuuraMasashi Sekizaki
    • G01N27/416
    • G01R31/3658G01R19/0084G01R31/3648G01R35/00
    • A voltage measuring apparatus measures an output voltage of an assembled battery in which a plurality of unit cells are connected in series and are divided into a plurality of blocks. The apparatus includes: a block voltage detection section which detects a voltage of at least one of the plurality of blocks and provides an analog voltage signal; a reference power supply which generates a reference voltage; a sampling voltage generation section which generates a sampling voltage based on the reference voltage; a storage for storing voltage date corresponding to the sampling voltage; and an A/D conversion section of the block voltage detection section that digitizes the sampling voltage with the reference voltage for A/D conversion. A difference between the digitized sampling voltage and the voltage data is calculated and it is determined that abnormality occurs in the A/D conversion section when the difference is larger than a threshold.
    • 电压测量装置测量其中多个单电池串联连接并被分成多个块的组电池的输出电压。 该装置包括:块电压检测部分,其检测多个块中的至少一个块的电压并提供模拟电压信号; 产生参考电压的参考电源; 采样电压产生部,其基于所述基准电压生成采样电压; 用于存储对应于采样电压的电压日期的存储器; 以及块电压检测部分的A / D转换部分,用于对采样电压进行A / D转换的参考电压的数字化。 计算数字化采样电压和电压数据之间的差异,并且当差值大于阈值时,确定A / D转换部分发生异常。
    • 10. 发明授权
    • Voltage measuring device
    • 电压测量装置
    • US08294423B2
    • 2012-10-23
    • US12825703
    • 2010-06-29
    • Satoshi IshikawaKimihiro MatsuuraMasashi Sekizaki
    • Satoshi IshikawaKimihiro MatsuuraMasashi Sekizaki
    • H01M10/46
    • G01R31/3658
    • A voltage measuring device includes a current detecting section that detects a charging or discharging current of a multiple-set battery; block voltage detecting sections that detect voltages of a plurality blocks respectively; and a control section that outputs a request to the block voltage detecting sections via a first communication line to acquire voltage data. Each of the block voltage detecting sections includes an active power source and a lower-power source. The control section transmits a low-power consumption mode setting signal to the block voltage detecting sections respectively when the charging or discharging current has not been detected by the current detecting section for a first time period. Each of the block voltage detecting sections switches an operating mode from a normal mode to a low-power consumption mode when the low-power consumption mode setting signal is received.
    • 电压测量装置包括检测多组电池的充电或放电电流的电流检测部分; 块电压检测部,分别检测多个块的电压; 以及控制部,其经由第一通信线路向块电压检测部输出请求,以获取电压数据。 每个块电压检测部分包括有源电源和较低功率源。 当电流检测部分没有检测到第一时间段的充电或放电电流时,控制部分分别向块电压检测部分发送低功耗模式设置信号。 当接收到低功耗模式设置信号时,每个块电压检测部分将工作模式从正常模式切换到低功耗模式。