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    • 1. 发明授权
    • Split shell battery enclosure
    • 分体式电池外壳
    • US5536595A
    • 1996-07-16
    • US316289
    • 1994-09-30
    • Mark S. InkmannMichael T. ReherDavid W. Saari
    • Mark S. InkmannMichael T. ReherDavid W. Saari
    • B60R16/04H01M2/10H01M10/50
    • B60R16/04H01M2/1072H01M2/1094
    • A split-shell enclosure for a storage battery for motor vehicle includes identical first and second enclosure members which are dimensioned to fit around the battery, forming a shell structure, that is open at its top and bottom and partially encloses the battery on two sides and completely encloses the battery on the other two sides, forming a heat shield for protecting the battery from hot underhood temperatures, the enclosure members being adapted to snap together upon installation and to be held together by interlocking tongue and groove portions of mating sides of the enclosure members, upper portions of the enclosure members being disposed in juxtaposed relation with the handle brackets of the battery so that if the battery is lifted by the enclosure, the enclosure members will engage the handle brackets of the battery and the battery will effectively be lifted by its handle brackets and no load will be placed on the latches that hold the two sections of the enclosure together, and lower portions of the front and back walls of the enclosure being open to accommodate standard holddown mechanisms for the battery.
    • 用于机动车辆的蓄电池的分体外壳包括相同的第一和第二外壳构件,其尺寸适于围绕电池装配,形成外壳结构,其在其顶部和底部是敞开的,并且在两侧部分地包围电池, 完全将电池封闭在另外两侧,形成一个防护罩,用于保护电池不受热内底温度的影响,外壳部件适合于安装时卡扣在一起,并通过外壳的配合侧的互锁榫槽部分保持在一起 构件,外壳构件的上部与电池的手柄支架并置设置,使得如果电池被外壳提升,外壳构件将与电池的手柄支架接合,并且电池将有效地被提升 其手柄支架和无负载将被放置在将外壳的两个部分保持在一起的闩锁上 并且外壳的前壁和后壁的下部部分是敞开的,以适应电池的标准压紧机构。
    • 4. 发明授权
    • Connection arrangement for battery monitoring circuits
    • 电池监控电路的连接布置
    • US5449570A
    • 1995-09-12
    • US316616
    • 1994-09-30
    • Mark S. InkmannMichael T. ReherBradley N. KoeppelBrett M. Lenhardt
    • Mark S. InkmannMichael T. ReherBradley N. KoeppelBrett M. Lenhardt
    • H01M10/48
    • H01M10/48
    • An arrangement for mounting a battery monitoring circuit on the cover of the battery and for connecting the terminal ends of first and second lead wires of a battery monitoring circuit to the positive and negative terminals of the battery, the arrangement including a cavity formed in the battery cover for mounting the battery monitoring circuit, first and second battery terminal bushings which are molded integrally with the cover and are adapted to be mounted on and connected to the positive and negative battery terminals when the battery cover is installed on the battery, each of the battery terminal bushings including a pad having an upwardly directed mounting post that is adapted to receive and secure the terminal end of one of the lead wires of the battery monitoring circuit, the battery cover having first and second lead wire slots in its surface which extend from the cavity in which the battery monitoring circuit is mounted, to the locations of the battery terminal bushings for directing the lead wires to the mounting posts and for protecting the leads from damage during use.
    • 一种用于将电池监视电路安装在电池盖上并用于将电池监视电路的第一和第二引线的末端连接到电池的正极和负极端子的装置,该装置包括形成在电池中的空腔 用于安装电池监视电路的盖,与盖一体模制的第一和第二电池端子衬套,并且当电池盖安装在电池上时适于安装在正极和负极电池端子上并连接到正极和负极电池端子 电池端子衬套包括具有向上指向的安装柱的焊盘,其适于接收和固定电池监视电路的一根引线的终端,电池盖具有在其表面中延伸的第一和第二引线槽 其中安装有电池监视电路的空腔到达电池端子衬套的位置 将引线导向安装柱,并在使用过程中保护引线免受损坏。
    • 6. 发明授权
    • Battery monitor and method for providing operating parameters
    • 电池监视器和提供操作参数的方法
    • US5321627A
    • 1994-06-14
    • US850405
    • 1992-03-11
    • Michael T. Reher
    • Michael T. Reher
    • G01R31/36H01M10/48
    • G01R31/3624G01R31/3648G01R31/3651G01R31/3668G01R31/3675H01M10/48Y10S320/21
    • A battery monitor which monitors the operating parameters of a battery to provide an indication of, for example, the absolute state of charge, the relative state of charge, and the capacity of the battery under battery discharge, rest, and recharge conditions. The battery monitor includes a current sensor for sensing battery current, a voltage sensor for sensing battery voltage, and a temperature sensor for sensing battery temperature. A processor approximates to a high level of accuracy the battery parameters utilizing an iterative process based upon predetermined relationships, employing empirically determined constants and parameters determined in the immediately proceeding iteration stored in memory. Output signals indicative of the determined parameters are provided and may be utilized for many different battery applications.
    • 一种电池监视器,其监视电池的操作参数,以提供例如绝对充电状态,相对充电状态和电池在电池放电,休息和充电条件下的容量的指示。 电池监视器包括用于感测电池电流的电流传感器,用于感测电池电压的电压传感器和用于感测电池温度的温度传感器。 处理器利用基于预定关系的迭代过程使用经验确定的常数和在存储在存储器中的立即进行的迭代中确定的参数的参数来逼近电池参数的高准确度。 提供指示确定的参数的输出信号,并且可以用于许多不同的电池应用。
    • 7. 发明授权
    • Battery thermal control system and method
    • 电池热控系统及方法
    • US5215834A
    • 1993-06-01
    • US837861
    • 1992-02-18
    • Michael T. ReherBradley N. Koeppel
    • Michael T. ReherBradley N. Koeppel
    • G01R31/36H01M10/50
    • B60L11/1861G01R31/3606H01M10/613H01M10/615H01M10/625H01M10/637H01M10/6561B60L2240/545B60L2240/547B60L2240/549Y02T10/7005Y02T10/7044Y02T10/705
    • A battery thermal control system and method is provided which selectively heats or cools a storage battery in accordance with the battery temperature and state of charge. The thermal control system includes a battery housing having an internal airspace between the battery and the housing which extends between two openings in the battery housing, a reversible fan configured to generate an airstream along the airspace, a temperature sensor mounted to detect the temperature of the battery, and a control circuit for monitoring battery temperature and voltage and for controlling the operation of the fan. Battery state of charge is approximated by measuring battery voltage and monitored to prevent excessive battery discharge by the thermal control system. When the battery voltage exceeds a predetermined voltage and the battery temperature is outside of a predetermined range of suitable operating and storage temperatures, the thermal control system operates the fan to heat or cool the battery, as needed.
    • 提供了一种电池热控制系统和方法,其根据电池温度和充电状态选择性地加热或冷却蓄电池。 所述热控制系统包括电池壳体,所述电池壳体在所述电池和所述壳体之间具有在所述电池壳体中的两个开口之间延伸的内部空气空间,被配置成沿着所述空气空间产生气流的可逆风扇;安装成检测所述电池壳体的温度的温度传感器 电池,以及用于监测电池温度和电压并控制风扇的操作的控制电路。 电池充电状态通过测量电池电压进行近似,并进行监控,以防止热控制系统过度的电池放电。 当电池电压超过预定电压并且电池温度超出适当的操作和存储温度的预定范围时,热控制系统根据需要操作风扇以加热或冷却电池。
    • 8. 发明授权
    • State of charge indicator for deep-cycle application
    • 深循环应用状态指示灯
    • US5416402A
    • 1995-05-16
    • US30648
    • 1993-03-12
    • Michael T. ReherBradley N. Koeppel
    • Michael T. ReherBradley N. Koeppel
    • G01R19/165G01R31/36G01N27/20
    • G01R31/3682G01R19/16542Y10S320/21
    • A state of charge indicator monitors a voltage produced by a depletable energy source and provides an indication when the state of charge of the depletable energy source falls below a predetermined threshold. The state of charge indicator includes an input circuit for sensing the voltage and producing a plurality of tap voltages. The state of charge indicator further includes a monitor circuit for comparing each tap voltage with a corresponding threshold voltage and producing a result for each tap voltage falling below its corresponding threshold. The state of charge indicator still further includes a storage device for storing each result and producing an accumulated status and an output circuit for producing the indication when the accumulated status exceeds an accumulated status threshold.
    • 充电指示器监视由可消耗能量源产生的电压,并且当可消耗能量源的充电状态下降到预定阈值以下时提供指示。 充电状态指示器包括用于感测电压并产生多个抽头电压的输入电路。 充电状态指示器还包括用于将每个抽头电压与相应的阈值电压进行比较并产生低于其对应阈值的每个抽头电压的结果的监视器电路。 充电状态指示器还包括用于存储每个结果并产生累加状态的存储装置和用于当累积状态超过累积状态阈值时产生指示的输出电路。