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    • 2. 发明授权
    • High-speed battery charging device and a control circuit therefor
    • 高速电池充电装置及其控制电路
    • US5241258A
    • 1993-08-31
    • US871811
    • 1992-04-22
    • Kyeongyong Cheon
    • Kyeongyong Cheon
    • H02J7/10H02J7/00
    • H02J7/008Y02B40/90Y02E70/40Y10S320/12Y10S320/21Y10S320/31
    • A battery charging device providing both a rapid high charging rate and a trickle rate for a substantially fully charged battery and employing first, second and third rectifying circuits for rectifying an AC current into a DC current; a charging state switch circuit for outputting information about the charging-state switching of the battery between a high charging rate and a trickle charge rate; charging driving circuits for outputting a driving signal representing high speed charging or trickle charging in accordance with the output of the charging state switch circuit; a charging circuit for performing high speed charging or trickle charging in response to the driving signal; an auxiliary controlling circuit for controlling the battery to be charged with a regulating current during a rapid high charging rate; a battery mounting sensing circuit for sensing the mounting of a battery to be charged; a charging state indicating circuit for indicating a rapid high charging rate of the battery mounting sensing circuit and the charging driving circuit; and a relay controlling circuit for controlling the driving of a relay in the auxiliary controlling circuit.
    • 一种电池充电装置,其对于基本上充满电的电池提供快速高充电速率和涓流速率,并且采用第一,第二和第三整流电路将AC电流整流为DC电流; 充电状态切换电路,用于在高充电率和涓流充电率之间输出关于电池的充电状态切换的信息; 充电驱动电路,用于根据充电状态开关电路的输出输出表示高速充电或涓流充电的驱动信号; 用于响应于驱动信号进行高速充电或涓流充电的充电电路; 辅助控制电路,用于在快速高充电速率期间控制用调节电流充电的电池; 用于感测要充电的电池的安装的电池安装感测电路; 用于指示电池安装感测电路和充电驱动电路的快速高充电率的充电状态指示电路; 以及用于控制辅助控制电路中的继电器的驱动的继电器控制电路。
    • 3. 发明授权
    • Portable electric automotive engine cranking unit
    • 便携式电动汽车发动机起动装置
    • US4309622A
    • 1982-01-05
    • US83595
    • 1979-10-11
    • Gerald G. Cottrell
    • Gerald G. Cottrell
    • F02B1/04F02N11/12F02N11/14H02J7/02H02M7/155H02J7/04
    • F02N11/14F02N11/12H02J7/027H02M7/1552F02B1/04Y10S320/31Y10T307/839Y10T307/858
    • A portable power pack for starting and operating automotive engines includes a transformer having a primary winding provided with wires to be plugged into a standard 110 volt 60 hertz electrical supply and a center-tapped secondary winding connected to a pair of silicon controlled half wave rectifiers to provide a direct current output at approximately 16 volts. A remotely operable trigger or gate circuit is provided to cause the silicon controlled rectifiers to fire only at the time it is desired that electrical power be fed to the automotive engine which is to be started or operated. With the exception of the electrical leads from the standard source of alternating current, to the automotive engine, and to the point of remote operation of the trigger circuit, the entire power pack is potted in a solid, thermally stable, thermally conductive material to rapidly dissipate the heat generated within the potted electrical elements of the power pack when it is delivering electrical power to an automotive engine.
    • 用于启动和操作汽车发动机的便携式电源组包括具有初级绕组的变压器,该初级绕组设有要插入标准110伏特60赫兹电源的导线和连接到一对硅控制半波整流器的中心抽头次级绕组, 提供大约16伏的直流输出。 提供了可远程操作的触发器或门电路,以使得可控硅整流器仅在期望将电力馈送到要启动或操作的汽车发动机时才起火。 除了从标准交流电源到汽车发动机的电引线以及触发电路的远程操作之外,整个电源组件被封装在固体,热稳定的导热材料中以快速 在向电动汽车发动机供电时,消耗电力组件的盆电元件内产生的热量。
    • 5. 发明公开
    • METHOD AND APPARATUS FOR IMPROVING ELECTROCHEMICAL PROCESSES
    • 方法和设备改进电化学方法。
    • EP0309482A1
    • 1989-04-05
    • EP87904583.0
    • 1987-06-10
    • ADAMSON, Hugh Patrick
    • ADAMSON, Hugh Patrick
    • H02J7G05F1
    • H02J7/0093Y10S320/25Y10S320/31
    • Processus électrochimique et dispositif (B) utilisant une électrode positive et une électrode négative. Un courant passe périodiquement à travers un régulateur (20) dans une première direction entre les électrodes pendant tout le processus électrochimique. Le sens du courant est inversé périodiquement dans l'électrolyte pour repolariser les électrodes et le courant s'écoule à travers les résistances (10 et 11), la diode électroluminescente (8), la résistance (12), la diode électroluminescente (14) et le transistor (8) jusqu'à la terre, pour provoquer au moins une diminution de la double couche électrique au niveau des électrodes, et pour exercer l'électrolyte. Le courant traversant la diode (23) est modifié en fonction des variations de tension se produisant à travers les électrodes à la suite des perturbations dans le processus électrochimique lui même, la pente de la fonction de la plage logarithmique de la diode (23) représentant la variation de courant par rapport à une variation de la tension provoquée par les perturbations étant suffisamment importante pour améliorer la repolarisation, la diminution de la double couche électrique et l'exercice de l'électrolyte, afin d'obtenir une amélioration du processus électrochimique.
    • 10. 发明授权
    • Method and apparatus for improving electrochemical processes
    • 改善电化学过程的方法和装置
    • US4728877A
    • 1988-03-01
    • US872690
    • 1986-06-10
    • Hugh P. Adamson
    • Hugh P. Adamson
    • H02J7/10G05F1/46H02J7/00
    • H02J7/0093Y10S320/25Y10S320/31
    • An electrochemical process and apparatus utilizing a positive and negative electrode. A current is periodically provided in a first direction between the electrodes through the electrolyte of the electrochemical process. The direction of the current is periodically reversed through the electrolyte to repolarize the electrodes, to at least decrease the electric double layer at the electrodes, and to exercise the electrolyte. The current is changed in response to voltage changes occuring across the electrodes caused by perturbations in the electrochemical process itself where the slope of the function representing the current change with respect to a voltage change caused by the perturbations is sufficiently large to enhance the repolarizing, the decreasing of the electric double layer and the exercizing of the electrolyte to thus effect improvement in the electrochemical process.
    • 一种利用正极和负极的电化学工艺和装置。 通过电化学过程的电解质在电极之间沿第一方向周期性地设置电流。 电流的方向通过电解质周期性地反转,以使电极复极化,至少减少电极处的双电层并运动电解质。 响应于电化学过程本身的扰动引起的由电极引起的电压变化而改变电流,其中表示相对于由扰动引起的电压变化的电流变化的函数的斜率足够大以增强复极化, 降低电双层并实施电解质,从而改善电化学过程。