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    • 13. 发明申请
    • METHOD FOR PRODUCING A SECONDARY BATTERY, HOUSING ASSEMBLY FOR SAID SECONDARY BATTERY, SECONDARY BATTERY HAVING THE HOUSING ASSEMBLY, METHOD FOR PRODUCING THE HOUSING ASSEMBLY, METHOD FOR OPERATING THE SECONDARY BATTERY
    • 制造方法的二次电池,壳体组件的二次电池,与壳体组件的二次电池,METHOD FOR壳体单元,METHOD用于操作二次电池中的生产
    • WO2014012654A3
    • 2014-03-20
    • PCT/EP2013002099
    • 2013-07-15
    • LI TEC BATTERY GMBHDAIMLER AG
    • SCHAEFER TIMHUFENBACH WERNERZICHNER MARCODIEBALL DETLEF
    • H01M10/54H01M2/10
    • H01M2/0217H01M2/0434H01M2/1072H01M2/1094H01M10/4257H01M10/441H01M10/482H01M10/54Y02W30/84Y10T29/49108
    • The method according to the invention for producing a secondary battery has the following steps: S1: provision of a used battery or secondary battery requiring disposal, said battery having at least one used secondary cell, the used secondary cell comprising one or more used secondary cells, S2: removal of at least one of the used secondary cells from the used secondary battery, S3: detection of at least one physical parameter, said physical parameter allowing conclusions to be drawn about the functional capability of the used secondary cell and/or reading of operating data relating to the used secondary cell, said operating data allowing conclusions to be drawn about the functional capability of the used secondary cell, S4: classification of the used secondary cell, S5: reconditioning of the used secondary cell if the physical parameter and/or the operating data indicate(s) an insufficient functional capability of the used secondary cell, S6: insertion of the used secondary cell into a receptacle of the secondary battery under production, S7: transmission of operating instructions to the battery control device of the secondary battery under production, said operating instructions being selected in accordance with the physical parameter and/or in accordance with the operating data.
    • 用于制造二次电池的本发明方法包括以下步骤:S1提供使用或以设置二次电池,其具有至少一个用于二次电池,其中包含一种或多种用于辅助小区所使用的二次电池,S2除去使用的二次电池中的至少一个从所述使用 二次电池,S3感应的至少一个物理参数,所述物理参数允许在这些使用的二次电池的可操作性的结论,和/或读取关于所使用的二次电池,其中所述操作数据允许所使用的二次电池的可操作性的结论的操作数据,S4分类所述 使用二次电池,S5修复中使用二次电池时的物理参数和/或操作数据,以一个FUNC不足 建议nsfähigkeit所使用的二次电池,S6插入在制造的二次电池的收容空间的使用的二次电池,S7发送操作指令到所产生的二次电池的电池控制装置,其中,所述操作指令被选择作为物理参数和/或根据操作数据的功能。
    • 15. 发明申请
    • METHOD FOR TREATING AND/OR REPAIRING AN ELECTROCHEMICAL CELL, AND BATTERY HAVING A PLURALITY OF SUCH ELECTROCHEMICAL CELLS
    • 方法与电化学电池的一个号码治疗和/或维修的电化学电池和电池
    • WO2012175169A3
    • 2013-05-02
    • PCT/EP2012002346
    • 2012-06-01
    • LI TEC BATTERY GMBHSCHAEFER TIM
    • SCHAEFER TIM
    • H01M10/42G01R31/00H02J7/00
    • H01M10/4285H01M10/4207H01M2010/4271H01M2220/20
    • The invention relates to a method for treating and/or repairing electrochemical cells for a battery, the method comprising the steps of: (S1) detecting parameter data (DPar.) of an individual electrochemical cell to be examined, in order to determine at least one of the subsequent treatment steps (S5) for the individual electrochemical cell; (S2) transmitting the parameter data (DPar.) to a control unit; (S3) associating the electrochemical cell with the parameter data (DPar.), preferably storing the parameter data (DPar.) for the electrochemical cell; (S4) determining, by way of the control unit, if a predetermined correlation of the parameter data (DPar.) relative to predetermined parameter values (WPar, WPar.1, WPar.2, WPar.3, WPar.4, WPart.5) exists for the parameter data associated with the electrochemical cell, and carrying out a first predetermined treatment step of the electrochemical cell, if the existence of a predetermined correlation of the parameter data (DPar.) relative to the predetermined parameter values (WPar, WPar.1, WPar.2, WPar.3, WPar.4, WPart.5) was determined, and preferably, carrying out a second predetermined treatment step of the electrochemical cell if it was determined that a predetermined correlation of the parameter data (DPar.) relative to the predetermined parameter values (WPar, WPar.1, WPar.2, WPar.3, WPar.4, WPart.5) does not exist.
    • 一种用于治疗和/或电化学电池的修复用于电池的方法包括以下步骤:(S1)检测个体的参数数据要被检查的电化学电池,用于确定个体电化学电池单元的至少一个后续处理步骤(S5),((DPAR)。 S2)的参数的数据(DPAR)发送到控制单元,(S3)分配所述电化学电池的参数数据(DPAR),优选存储(参数数据(DPAR)电化学电池S4)由所述控制器是否确定 分配电化学电池参数数据是参数数据的(DPAR)相对于预定的参数值的预定关系(W参数,Wpar.1,WPar.2,WPar.3,WPar.4,WPar.5)存在,并且执行 电化学电池的第一预定处理步骤当所述参数数据的预定关系的存在(DPAR)在贝祖 克上的预定的参数值(WPAR。,WPar.1,WPar.2,WPar.3,WPar.4,WPart.5)被确定,并且优选地执行电化学电池,当所述的非存在的第二预定处理步骤 相对于所述预定的参数值(WPAR。,WPar.1,WPar.2,WPar.3,WPar.4,WPart.5)参数数据(DPAR)的预先确定的关系已被确定。
    • 18. 发明申请
    • BATTERY MANAGEMENT SYSTEM FOR A POWER SUPPLY SYSTEM WITH A LOW-VOLTAGE REGION AND A HIGH-VOLTAGE REGION
    • 低电压范围和高电压范围的电源系统电池管理系统
    • WO2012052176A2
    • 2012-04-26
    • PCT/EP2011005292
    • 2011-10-20
    • LI TEC BATTERY GMBHSCHAEFER TIM
    • SCHAEFER TIM
    • H02J7/007B60L11/1857B60L11/1864B60L11/1866B60L11/1868B60L2210/10Y02T10/7005Y02T10/7061Y02T10/7066Y02T10/7216
    • A power supply system (1), in particular for an electric drive or hybrid drive of a motor vehicle, has the following components: an electrical energy storage device (2) which supplies a low voltage and which has at least one energy storage cell (3) and/or at least one cell module (4) composed of at least two energy storage cells (3), an electrical load (5) which is operated with a high voltage, a voltage transformer (6), in particular a DC voltage transformer, which transforms a low voltage into a high voltage and/or a high voltage into a low voltage, and a control device (8) for controlling the electrical energy storage device (2). In addition, the power supply system (1) has a low voltage region (9) in which the electrical energy storage device (2) is arranged, and a high-voltage region (10) in which the electrical load (5) is arranged. It is proposed that the control device (8) be arranged essentially in the low-voltage region (9) of the power supply system (1). In one particularly preferred embodiment of the invention, the control device (8) is integrated essentially in the voltage transformer (6).
    • 一种电源系统(1),特别是用于机动车辆的电动或混合动力车驱动器,包括以下部件:一个电能储存装置(2),其提供低电压和由至少一个能量存储单元(3)和/或至少一个电池模块的(4) 至少两个储能电池(3); 一个以高电压工作的电负载(5) 电压转换器(6),特别是将低电压转换为高电压和/或高电压为低电压的DC-DC转换器; 控制装置(8),用于控制电能存储装置(2)。 此外,电力供给系统(1)的低电压区(9),其中,所述电能存储装置被布置成(2),和高的电压区域(10),其中,所述电负载(5)布置。 建议将控制装置(8)基本上布置在供电系统(1)的低压区域(9)中。 在本发明的特别优选的实施例中,控制装置(8)基本上集成在电压转换器(6)中。
    • 19. 发明申请
    • CIRCUIT ASSEMBLY
    • 电路
    • WO2011098206A2
    • 2011-08-18
    • PCT/EP2011000203
    • 2011-01-19
    • LI TEC BATTERY GMBHSCHAEFER TIM
    • SCHAEFER TIM
    • H02J7/0016H02J7/0065Y02T10/7055
    • The invention relates to a circuit assembly (10), comprising a series connection of first and second battery units (11, 12), wherein first and second battery units (11, 12) are arranged alternately, a first inductive storage element (13), wherein in a primary phase first inputs (17) of the first battery units (11) can be connected to a first terminal (19) of the first inductive storage element (13) by means of a first switch assembly (16) and second inputs of the second battery units (18) can be connected to a second terminal (20) of the first inductive storage element (13) by means of the first switch assembly (15), a second inductive storage element (14) which is inductively coupled to the first inductive storage element (13), wherein in a secondary phase by means of a second switch assembly (16) a first terminal of the second inductive storage element (14) can be connected to a first or a second input and a second terminal of the second inductive storage element (14) can be connected to a second or a first input.
    • 电路(10)包括第一和第二电池单元的串联连接(11,12),所述第一和第二电池单元(11,12)被交替地布置,第一电感存储元件(13),在主相的第一输入端(17) 通过第一开关装置(16),其具有第一电感存储元件(13)的第一端子(19)的第一电池单元(11)是所述第二电池单元(18)到所述第一电感存储元件的第二端子(20)的连接和第二输入端( (13)经由连接在第一切换装置15),其被感应地耦接第一电感存储元件(13),通过所述第二电感的第二开关装置(16)的装置中的二次相,其中的第一端子的第二电感存储元件(14) 存储器元件(14),具有第一或第二输入端和所述第二电感Speicherel的第二端子 对此语句(14)被连接到第二或第一输入。
    • 20. 发明申请
    • ENERGY STORAGE APPARATUS COMPRISING AN ENERGY STORAGE DEVICE
    • 与储能装置中的能量储存装置
    • WO2011020547A8
    • 2011-05-12
    • PCT/EP2010004650
    • 2010-07-29
    • LI TEC BATTERY GMBHSCHAEFER TIM
    • SCHAEFER TIM
    • H01M10/44H01M16/00H02J7/34
    • H01M10/441H01M16/00H02J7/0013H02J2007/0067
    • Disclosed is an energy storage apparatus comprising at least one first energy storage device and a second energy storage device which are used for supplying, preferably also consuming, an electric current. Preferably, at least the second energy storage device is designed as an electrochemical energy storage device. The energy storage apparatus also comprises a control device which is used to control at least the supply of an electric current by at least one of the energy storage devices. The control device preferably also controls the consumption of an electric current by at least one of the energy storage devices. The energy storage apparatus is characterized in that the energy density of the second energy storage device is higher than the energy density of the first energy storage device, the energy density being defined as the ratio between the energy that can be stored in the energy storage device in the charged state and the weight of the energy storage device. The control device is used for triggering preferably the first energy storage device in order to supply an electric current when the electric current exceeds a predetermined threshold value for the current strength.
    • 能量存储装置包括至少一个第一能量存储装置和其至少提供了一种用于分配,优选地还用于记录时,电流的第二能量存储装置中。 优选地,第二能量存储装置至少形成为一种电化学能量储存装置。 所述能量存储设备还包括设置通过所述能量存储设备中的至少一个来控​​制的电流的至少输送的控制装置。 优选地,控制器还控制电流通过能量存储装置中的至少一个的接收。 能量存储装置的特征在于,所述第二能量存储装置的能量密度比第一能量存储装置的能量密度,其中,作为从能量储存的比率在充电状态下可存储能量,并且能量存储装置的重量是指被确定的能量密度更高。 所述控制装置被设置用于输送的电流,优选地,所述第一能量存储装置,以当所述电流超过预定电流限制值的控制。