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    • 2. 发明授权
    • Battery unit and information processing system having battery unit mounted therein
    • 具有安装在其中的电池单元的电池单元和信息处理系统
    • US06262494B1
    • 2001-07-17
    • US09221116
    • 1998-12-28
    • Toshiaki TsukuniYoshiro TakedaMitsuo SaekiHidekiyo Ozawa
    • Toshiaki TsukuniYoshiro TakedaMitsuo SaekiHidekiyo Ozawa
    • H02H300
    • H02J7/0047G01R31/362H02J2007/005Y10T307/696
    • A battery unit includes a plurality of cells connected in parallel with one another, and a switch connected in series with at least one of the cells. The battery unit further includes a control circuit for controlling the on or off state of the switch, and a voltage detection terminal at which a voltage produced by a cell, to which the switch is connected, is developed. The switch can be turned off even with the battery unit connected to a load. A cell in series with which the switch is connected is disconnected from the load. In this state, the state of the cell can be detected through the voltage detection terminal. Even when a resistor is substituted for the switch, the same advantage can be provided. Moreover, the battery unit is freely detachably attached to a main unit of an information processing apparatus. The battery unit then supplies power to the main unit. A power supply control circuit for requesting notification of the state of each cell in the battery unit is incorporated in the main unit. The states of the cells can therefore be detected mutually independently.
    • 电池单元包括彼此并联连接的多个单元,以及与至少一个单元串联连接的开关。 电池单元还包括用于控制开关的接通或断开状态的控制电路,以及电容检测端子,开关连接到由开关连接的单元产生的电压。 即使电池单元连接到负载,也可以关闭开关。 与开关连接的串联电池与负载断开连接。 在该状态下,可以通过电压检测端子检测电池的状态。 即使用电阻代替开关,也可以提供相同的优点。 此外,电池单元可自由拆卸地附接到信息处理设备的主单元。 电池单元然后向主机供电。 用于请求通知电池单元中的每个单元的状态的电源控制电路被并入主单元中。 因此,可以相互独立地检测单元的状态。
    • 3. 发明授权
    • Protection circuit and battery unit
    • 保护电路和电池单元
    • US06051955A
    • 2000-04-18
    • US982937
    • 1997-12-01
    • Mitsuo SaekiHidekiyo OzawaToshiaki TsukuniYoshiro Takeda
    • Mitsuo SaekiHidekiyo OzawaToshiaki TsukuniYoshiro Takeda
    • H01M10/42H02H7/18H02J7/00
    • H02J7/0024H02J7/0026
    • A protection circuit is used for a battery unit which has a plurality of cell parts coupled in parallel, and first and second power supplying terminals, where each of the cell parts includes a plurality of battery cells coupled in series, and first and second terminals respectively coupled to the first and second power supplying terminals. The protection circuit includes a plurality of switching elements making an electrical connection to the first terminal of a corresponding one of the cell parts and the first power supplying terminal, and disconnecting the electrical connection in response to an active signal, and a voltage monitoring circuit outputting the active signal to the switching elements when a voltage of at least one battery cell within one cell part falls outside a predetermined range, independently with respect to each of the cell parts.
    • 保护电路用于具有并联耦合的多个电池单元的电池单元以及第一和第二电力供应端子,其中每个电池单元分别包括串联耦合的多个电池单元以及第一和第二端子 耦合到第一和第二电源端子。 所述保护电路包括多个开关元件,其与所述电池单元部件和所述第一供电端子中的相应一个的第一端子进行电连接,并响应于有源信号断开所述电连接;以及电压监视电路,输出 当一个单元部分内的至少一个电池单元的电压相对于每个单元部分独立地落在预定范围之外时,对开关元件的有效信号。
    • 5. 再颁专利
    • Control system for charging batteries and electronic apparatus using same
    • 使用电池和电子设备充电的控制系统
    • USRE43911E1
    • 2013-01-08
    • US10383068
    • 2003-03-07
    • Kouichi MatsudaMitsuo SaekiNobuo TanakaHidekiyo Ozawa
    • Kouichi MatsudaMitsuo SaekiNobuo TanakaHidekiyo Ozawa
    • H02J7/24H02J7/04
    • H02J7/0072H02J9/061
    • A control system for charging enabling efficient charging of rechargeable batteries in an electronic apparatus which charges its rechargeable batteries by using a charger circuit when driving the apparatus by using an external power source, including first detecting unit for detecting a differential value between a maximum permissible charging current allowed by the rechargeable batteries and a charging current flowing to the rechargeable batteries; second detecting unit for detecting a maximum usable current by detecting a differential value between a maximum supplyable current allowed by the external power source and the current consumption of the apparatus; third detecting unit for detecting a differential value between a maximum useable current and the charging current flowing to the rechargeable batteries; and control unit for controlling the system in accordance with the differential values detected by the first and third detecting units so that the charger circuit generates the maximum charging current within the range where the charging current flowing to the rechargeable batteries does not exceed either of the maximum permissible charging current and the maximum useable current.
    • 一种用于充电的控制系统,其能够在通过使用外部电源驱动装置时通过使用充电器电路对其可再充电电池充电的电子设备中进行充电,包括第一检测单元,用于检测最大容许充电 充电电池允许的电流和流入可再充电电池的充电电流; 第二检测单元,用于通过检测由外部电源允许的最大可供电电流和设备的电流消耗之间的差值来检测最大可用电流; 第三检测单元,用于检测最大可用电流与流向可再充电电池的充电电流之间的差值; 以及控制单元,用于根据由第一和第三检测单元检测的差分值来控制系统,使得充电器电路在流过可再充电电池的充电电流不超过最大值的范围内产生最大充电电流 允许充电电流和最大可用电流。
    • 6. 再颁专利
    • Control system for charging batteries and electronic apparatus using same
    • 使用电池和电子设备充电的控制系统
    • USRE42114E1
    • 2011-02-08
    • US09548213
    • 2000-04-12
    • Kouichi MatsudaMitsuo SaekiNobuo TanakaHidekiyo Ozawa
    • Kouichi MatsudaMitsuo SaekiNobuo TanakaHidekiyo Ozawa
    • H01M10/46H02J9/06
    • H02J7/0072H02J9/061
    • A control system for charging enabling efficient charging of rechargeable batteries in an electronic apparatus which charges its rechargeable batteries by using a charger circuit when driving the apparatus by using an external power source, including first detecting unit for detecting a differential value between a maximum permissible charging current allowed by the rechargeable batteries and a charging current flowing to the rechargeable batteries; second detecting unit for detecting a maximum usable current by detecting a differential value between a maximum supplyable current allowed by the external power source and the current consumption of the apparatus; third detecting unit for detecting a differential value between a maximum useable current and the charging current flowing to the rechargeable batteries; and control unit for controlling the system in accordance with the differential values detected by the first and third detecting units so that the charger circuit generates the maximum charging current within the range where the charging current flowing to the rechargeable batteries does not exceed either of the permissible charging current and the maximum useable current.
    • 一种用于充电的控制系统,其能够在通过使用外部电源驱动装置时通过使用充电器电路对其可再充电电池充电的电子设备中进行充电,包括第一检测单元,用于检测最大容许充电 充电电池允许的电流和流入可再充电电池的充电电流; 第二检测单元,用于通过检测由外部电源允许的最大可供电电流和设备的电流消耗之间的差值来检测最大可用电流; 第三检测单元,用于检测最大可用电流与流向可再充电电池的充电电流之间的差值; 以及控制单元,用于根据由第一和第三检测单元检测到的差分值来控制系统,使得充电器电路在流过可再充电电池的充电电流不超过允许的范围内产生最大充电电流 充电电流和最大可用电流。
    • 9. 发明授权
    • DC-DC converter with a plurality of soft-start control circuits
    • DC-DC转换器,具有多个软启动控制电路
    • US07957165B2
    • 2011-06-07
    • US12032016
    • 2008-02-15
    • Morihito HasegawaHidekiyo Ozawa
    • Morihito HasegawaHidekiyo Ozawa
    • H02M1/36
    • H02M1/36H02M1/32H02M3/156Y10S323/901
    • A DC-DC conversion circuit is configured by including a plurality of control signal generation circuits, a plurality of soft-start control circuits, and a start control circuit. The plurality of control signal generation circuits correspond to the plurality of control signals, and generate a corresponding control signal of the plurality of control signals based on a corresponding output value of a plurality of output values. The plurality of soft-start control circuits correspond to the plurality of control signals, and control a variation of the corresponding control signal at a start time of the DC-DC conversion circuit. The start control circuit instructs the corresponding soft-start control circuit to start operation in accordance with a change of the control signal taking part in an output control at the start time of the DC-DC conversion circuit.
    • DC-DC转换电路通过包括多个控制信号生成电路,多个软启动控制电路和起动控制电路构成。 多个控制信号生成电路对应于多个控制信号,并且基于多个输出值的相应输出值生成多个控制信号的对应控制信号。 多个软启动控制电路对应于多个控制信号,并且在DC-DC转换电路的开始时间控制对应的控制信号的变化。 启动控制电路指示相应的软启动控制电路根据在DC-DC转换电路的开始时间中参与输出控制的控制信号的变化而开始工作。