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    • 11. 发明授权
    • Battery pack, electronic appliance, and method of detecting remaining amount of battery
    • 电池组,电子设备以及检测电池剩余量的方法
    • US08359174B2
    • 2013-01-22
    • US11912845
    • 2007-02-26
    • Ryoichi NakashimaMasashi KumadaHideyuki SatoYoshio HaradaMichihiro KanekoKentaro Suzuki
    • Ryoichi NakashimaMasashi KumadaHideyuki SatoYoshio HaradaMichihiro KanekoKentaro Suzuki
    • G01R31/36G01R19/00
    • G01R19/16542G01R31/3648G01R31/3655G01R31/3679H01M10/052H01M10/44H01M10/48H02J7/0047H02J2007/005
    • A battery pack has a charge and discharge count measuring part (131) configured to measure the number of times of charges and discharges of a secondary battery based on the summed value of the charge current for the secondary battery, and a decay rate output part (132) configured to compute a decay rate that indicates a degree of decay of the secondary battery based on the number of times of charges and discharges measured by the charge and discharge count measuring part (131) and to output it to a device being a discharge load. For example, the charge and discharge count measuring part (131) repeatedly sums the detected values of the charge current to a predetermined threshold, and counts up the number of times of charges and discharges every time when the summed value reaches the threshold. Accordingly, even though charges and discharges are repeated at finer steps in a relatively narrow voltage range, the number of times of charges and discharges can be counted accurately, and the computing accuracy of the decay rate is improved. In the battery pack in which the secondary battery is accommodated, parameters for detecting the remaining amount of the battery are detected more accurately.
    • 电池组具有充电和放电计数测量部分(131),其被配置为基于二次电池的充电电流的相加值和衰减速率输出部分(...)来测量二次电池的充电和放电的次数 132),被配置为基于由所述充放电计数测量部(131)测量的充电和放电的次数来计算指示所述二次电池的衰减程度的衰减率,并将其输出到放电 加载。 例如,充电和放电计数测量部分(131)将检测到的充电电流的值重复地相加到预定阈值,并且每当累加值达到阈值时对每次充电和放电的次数进行计数。 因此,即使在比较窄的电压范围内以更细的步骤重复充电和放电,也可以精确地计数充放电次数,提高衰减率的计算精度。 在容纳二次电池的电池组中,更准确地检测用于检测电池剩余量的参数。
    • 12. 发明申请
    • INFORMATION PROCESSING APPARATUS, POWER-SUPPLY CONTROL METHOD, PROGRAM, AND POWER-SUPPLY CONTROL SYSTEM
    • 信息处理装置,电源控制方法,程序和电源控制系统
    • US20110102136A1
    • 2011-05-05
    • US12911980
    • 2010-10-26
    • Ryoichi Nakashima
    • Ryoichi Nakashima
    • G05B19/00
    • G06F1/263H04N5/23241Y10T307/696
    • An information processing apparatus includes: a first connection section to which a first power-supply device is connected; a second connection section to which a second power-supply device is connected; a setting determiner that determines whether or not identification information is to be set for each power-supply device on the basis of connection states and setting control information; an authenticator that selectively obtains, when the setting determiner determines that identification information is not to be set, identification information from the power-supply devices connected to each connection section and that authenticates the obtained identification information; an identification-information setter that causes, when the setting determiner determines that identification information is to be set, unique identification information to be set for each power-supply device; and a processor that selectively performs executable power-supply-related processing on the basis of a result of the authentication or the identification-information setting and of processing control information.
    • 一种信息处理设备,包括:连接第一电源设备的第一连接部分; 连接第二电源装置的第二连接部分; 基于连接状态和设定控制信息来决定是否对每个电源装置设定识别信息的设定决定部; 当设置确定器确定不设置识别信息时,选择性地获得来自连接到每个连接部分的电源装置的识别信息,并认证所获得的识别信息; 识别信息设定器,当设置确定器确定要设置识别信息时,导致为每个电源设备设置的唯一识别信息; 以及处理器,其基于认证或识别信息设置的结果和处理控制信息选择性地执行可执行的电源相关处理。
    • 13. 发明授权
    • Battery residual quantity display method and electronic equipment
    • 电池剩余量显示方式和电子设备
    • US07864065B2
    • 2011-01-04
    • US12037714
    • 2008-02-26
    • Ryoichi NakashimaHideyuki SatoYukio TsuchiyaKazuyasu Nawa
    • Ryoichi NakashimaHideyuki SatoYukio TsuchiyaKazuyasu Nawa
    • G08B21/00
    • G06F1/3203G01R31/3682G06F21/81H01M10/4221H01M10/4257H01M10/48H01M10/488H04L63/08
    • A battery pack detachably connectable to an equipment body to supply power to the equipment body, the battery pack including a battery cell, a microcomputer for communicating with the equipment body, a connection terminal connected to the microcomputer, a positive power supply input terminal connected to a cathode of the battery cell; and a negative power supply input terminal connected to an anode of the battery cell. After the power of the equipment body is turned on, the microcomputer alternately sends to the equipment body by serial communication via the connection terminal information to be used in authentication processing executed by the equipment body and information to be used in a battery residual quantity count executed by the equipment body. After the authentication processing is complete, the microcomputer sends to the equipment body information to be used in updating the battery residual quantity count executed by the equipment body.
    • 一种可拆卸地连接到设备主体以向设备主体供电的电池组,电池组包括电池单元,与设备主体通信的微型计算机,连接到微型计算机的连接端子,正电源输入端子,连接到 电池单元的阴极; 以及连接到电池单元的阳极的负电源输入端子。 在设备主体的电源接通之后,微型计算机通过连接终端信息通过连接终端信息交替地发送到设备主体,用于由设备机构执行的认证处理中使用的信息和用于执行的电池剩余数量计数的信息 由设备机构。 认证处理完成后,微机向设备机构发送用于更新由设备机构执行的电池剩余数量计数的信息。
    • 15. 发明申请
    • Battery device
    • 电池装置
    • US20070080661A1
    • 2007-04-12
    • US11526738
    • 2006-09-26
    • Ryoichi NakashimaHideyuki SatoYukio Tsuchiya
    • Ryoichi NakashimaHideyuki SatoYukio Tsuchiya
    • H02J7/00
    • H02J7/0031H01M10/425H01M10/44H01M10/48H02J7/0004
    • A battery device includes a battery cell including a cell terminal, a case that houses the battery cell, a battery terminal provided to the case and electrically connected to the cell terminal, and a control section that is housed in the case and allows and inhibits charge and discharge of the battery cell, wherein the control section includes a detection section that detects an output voltage value of the cell terminal at an interval, and assuming that the latest output voltage value detected by the detection section is V1, and the output voltage value detected by the detection section immediately before the latest output voltage value V1 is V0, the control section allows charge and discharge of the battery cell if |ΔV| (ΔV=V1−V0) is smaller than a reference value, and to inhibit charge and discharge of the battery cell if |ΔV| is equal to and greater than the reference value.
    • 电池装置包括:电池单元,包括电池端子,容纳电池单元的壳体,设置在壳体上并电连接到电池端子的电池端子;以及控制部,其容纳在壳体中并允许和禁止电荷 以及电池单元的放电,其中所述控制部分包括检测部分,其以间隔检测所述电池端子的输出电压值,并且假定由所述检测部分检测到的最新输出电压值为V 1,并且所述输出电压 在最近的输出电压值V 1为V 0之前由检测部检测出的值,如果| DeltaV | (ΔV= V 1 -V 0)小于参考值,并且如果| DeltaV | 等于并且大于参考值。
    • 16. 发明授权
    • Information processing apparatus, power supply control method, program and power supply control system to define processing depending on types of power supply apparatus connected
    • 信息处理装置,电源控制方法,程序和电源控制系统,根据连接的电源设备的类型来定义处理
    • US08527784B2
    • 2013-09-03
    • US12912060
    • 2010-10-26
    • Ryoichi Nakashima
    • Ryoichi Nakashima
    • G06F1/00G06F1/26H02J7/00
    • G06F1/263H01M10/052H01M10/44
    • There is provided an information processing apparatus including a first connection unit with power supply type information, a second connection unit with power supply type information, a connection state determination unit for determining whether the connection states of the first and second connection units have changed, a power supply identification information acquisition unit for selectively acquiring the power supply type information from the first power supply apparatus and from the second power supply apparatus if the connection state determination unit determines that the connection states have changed, a power supply identification information management unit for managing connected-power-supply identification information, and a power supply control unit for controlling a feed from the power supply apparatuses connected to the first and second connection units and a charge on the first power supply apparatus connected to the first connection unit.
    • 提供了一种信息处理装置,包括具有电源类型信息的第一连接单元,具有电源类型信息的第二连接单元,用于确定第一和第二连接单元的连接状态是否已改变的连接状态确定单元, 电源识别信息获取单元,用于如果连接状态确定单元确定连接状态已经改变,则从第一电源设备和第二电源设备选择性地获取电源类型信息;电源识别信息管理单元,用于管理 连接电源识别信息,以及电源控制单元,用于控制来自连接到第一和第二连接单元的电源设备的馈电和连接到第一连接单元的第一电源设备上的电荷。
    • 17. 发明授权
    • Battery residual quantity display method and electronic equipment
    • 电池剩余量显示方式和电子设备
    • US08368356B2
    • 2013-02-05
    • US12504022
    • 2009-07-16
    • Ryoichi NakashimaHideyuki SatoYukio TsuchiyaKazuyasu Nawa
    • Ryoichi NakashimaHideyuki SatoYukio TsuchiyaKazuyasu Nawa
    • H02J7/16
    • G06F1/3203G01R31/3682G06F21/81H01M10/4221H01M10/4257H01M10/48H01M10/488H04L63/08
    • A battery pack detachably connectable to an equipment body to supply power to the equipment body, the battery pack including a battery cell, a microcomputer for communicating with the equipment body, a connection terminal connected to the microcomputer, a positive power supply input terminal connected to a cathode of the battery cell; and a negative power supply input terminal connected to an anode of the battery cell. After the power of the equipment body is turned on, the microcomputer alternately sends to the equipment body by serial communication via the connection terminal information to be used in authentication processing executed by the equipment body and information to be used in a battery residual quantity count executed by the equipment body. After the authentication processing is complete, the microcomputer sends to the equipment body information to be used in updating the battery residual quantity count executed by the equipment body.
    • 一种可拆卸地连接到设备主体以向设备主体供电的电池组,电池组包括电池单元,与设备主体通信的微型计算机,连接到微型计算机的连接端子,正电源输入端子,连接到 电池单元的阴极; 以及连接到电池单元的阳极的负电源输入端子。 在设备主体的电源接通之后,微型计算机通过连接终端信息通过连接终端信息交替地发送到设备主体,用于由设备机构执行的认证处理中使用的信息和用于执行的电池剩余数量计数的信息 由设备机构。 认证处理完成后,微机向设备机构发送用于更新由设备机构执行的电池剩余数量计数的信息。
    • 18. 发明授权
    • Battery residual quantity display method and electronic equipment
    • 电池剩余量显示方式和电子设备
    • US07619536B2
    • 2009-11-17
    • US10587256
    • 2006-02-20
    • Ryoichi NakashimaHideyuki SatoYukio TsuchiyaKazuyasu Nawa
    • Ryoichi NakashimaHideyuki SatoYukio TsuchiyaKazuyasu Nawa
    • G08B3/00
    • G06F1/3203G01R31/3682G06F21/81H01M10/4221H01M10/4257H01M10/48H01M10/488H04L63/08
    • The present invention is directed to a battery residual quantity display method for performing display of battery residual quantity of a battery pack mounted at an electronic equipment and serving to supply power to the electronic equipment. When power is turned ON, a first microcomputer (3) of the camera body (1) side serves to first acquire, by serial communication, information for battery residual quantity display from a second microcomputer (7) of the battery pack (2) side loaded at the camera body to perform battery residual quantity display on the basis of the acquired information to subsequently acquire, by serial communication, information for authentication processing from the second microcomputer of the battery pack side to perform an authentication processing for judging on the basis of the acquired information as to whether or not the battery pack connected to the camera body is genuine battery pack to update, after the authentication processing, the content of the battery residual quantity display on the basis of information for battery residual quantity display acquired by serial communication from the microcomputer of the battery pack side.
    • 本发明涉及一种电池剩余量显示方法,用于执行安装在电子设备上并用于向电子设备供电的电池组的电池剩余量的显示。 当电源接通时,照相机主体(1)侧的第一微型计算机(3)用于首先通过串行通信从电池组(2)侧的第二微计算机(7)获取用于电池剩余量显示的信息 根据获取的信息进行电池剩余量显示,通过串行通信从电池组侧的第二微型计算机获取用于认证处理的信息,进行基于以下的判定的认证处理: 根据通过串行通信获取的电池剩余量显示的信息,获取的关于连接到照相机机体的电池组是否是正确的电池组,在认证处理之后更新电池剩余量显示的内容 从电池组侧的微型计算机。
    • 19. 发明申请
    • Battery Pack, Electronic Appliance, And Method of Detecting Remaining Amount of Battery
    • 电池组,电子设备及检测剩余电量的方法
    • US20090171598A1
    • 2009-07-02
    • US11912845
    • 2007-02-26
    • Ryoichi NakashimaMasashi KumadaHideyuki SatoYoshio HaradaMichihiro KanekoKentaro Suzuki
    • Ryoichi NakashimaMasashi KumadaHideyuki SatoYoshio HaradaMichihiro KanekoKentaro Suzuki
    • G01R31/36
    • G01R19/16542G01R31/3648G01R31/3655G01R31/3679H01M10/052H01M10/44H01M10/48H02J7/0047H02J2007/005
    • A battery pack has a charge and discharge count measuring part (131) configured to measure the number of times of charges and discharges of a secondary battery based on the summed value of the charge current for the secondary battery, and a decay rate output part (132) configured to compute a decay rate that indicates a degree of decay of the secondary battery based on the number of times of charges and discharges measured by the charge and discharge count measuring part (131) and to output it to a device being a discharge load. For example, the charge and discharge count measuring part (131) repeatedly sums the detected values of the charge current to a predetermined threshold, and counts up the number of times of charges and discharges every time when the summed value reaches the threshold. Accordingly, even though charges and discharges are repeated at finer steps in a relatively narrow voltage range, the number of times of charges and discharges can be counted accurately, and the computing accuracy of the decay rate is improved. In the battery pack in which the secondary battery is accommodated, parameters for detecting the remaining amount of the battery are detected more accurately.
    • 电池组具有充电和放电计数测量部分(131),其被配置为基于二次电池的充电电流的相加值和衰减速率输出部分(...)来测量二次电池的充电和放电的次数 132),被配置为基于由所述充放电计数测量部(131)测量的充电和放电的次数来计算指示所述二次电池的衰减程度的衰减率,并将其输出到放电 加载。 例如,充电和放电计数测量部分(131)将检测到的充电电流的值重复地相加到预定阈值,并且每当累加值达到阈值时对每次充电和放电的次数进行计数。 因此,即使在比较窄的电压范围内以更细的步骤重复充电和放电,也可以精确地计数充放电次数,提高衰减率的计算精度。 在容纳二次电池的电池组中,更准确地检测用于检测电池剩余量的参数。
    • 20. 发明申请
    • Battery Residual Quantity Display Method and Electronic Equipment
    • 电池残留量显示方法和电子设备
    • US20080266126A1
    • 2008-10-30
    • US10587256
    • 2006-02-20
    • Ryoichi NakashimaHideyuki SatoYukio TsuchiyaKazuyasu Nawa
    • Ryoichi NakashimaHideyuki SatoYukio TsuchiyaKazuyasu Nawa
    • G08B21/00
    • G06F1/3203G01R31/3682G06F21/81H01M10/4221H01M10/4257H01M10/48H01M10/488H04L63/08
    • The present invention is directed to a battery residual quantity display method for performing display of battery residual quantity of a battery pack mounted at an electronic equipment and serving to supply power to the electronic equipment. When power is turned ON, a first microcomputer (3) of the camera body (1) side serves to first acquire, by serial communication, information for battery residual quantity display from a second microcomputer (7) of the battery pack (2) side loaded at the camera body to perform battery residual quantity display on the basis of the acquired information to subsequently acquire, by serial communication, information for authentication processing from the second microcomputer of the battery pack side to perform an authentication processing for judging on the basis of the acquired information as to whether or not the battery pack connected to the camera body is genuine battery pack to update, after the authentication processing, the content of the battery residual quantity display on the basis of information for battery residual quantity display acquired by serial communication from the microcomputer of the battery pack side.
    • 本发明涉及一种电池剩余量显示方法,用于执行安装在电子设备上并用于向电子设备供电的电池组的电池剩余量的显示。 当电源接通时,照相机主体(1)侧的第一微型计算机(3)用于首先通过串行通信从电池组(2)侧的第二微计算机(7)获取用于电池剩余量显示的信息 根据获取的信息进行电池剩余量显示,通过串行通信从电池组侧的第二微型计算机获取用于认证处理的信息,进行基于以下的判定的认证处理: 根据通过串行通信获取的电池剩余量显示的信息,获取的关于连接到照相机机体的电池组是否是正确的电池组,在认证处理之后更新电池剩余量显示的内容 从电池组侧的微型计算机。