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    • 4. 发明申请
    • ELECTRONIC SWITCH FOR SIMULATING A MECHANICAL ROCKER SWITCH
    • 用于模拟机械式开关的电子开关
    • US20150235788A1
    • 2015-08-20
    • US14625221
    • 2015-02-18
    • THOMSON LICENSING
    • Phillippe MARCHANDPhilippe LaunayPhilippe Guillot
    • H01H23/02
    • H01H23/02H01H47/32Y10T307/977
    • The present disclosure relates to an electronic switch for simulating a mechanical rocker switch having a determined current-interrupting capacity, the electronic switch being configured to supply power to an electronic device using an input voltage, and comprises a tact switch for the generation of a control signal, a bistable circuit whose output state depends on said control signal, a switching circuit adapted to the opening and to the closing of a power supply line supplying power to the device, which device consumes a current less than or equal to said determined interrupting capacity, a memory circuit comprising a reservoir capacitor, the tact switch being configured to control opening and closing of the switching circuit and the memory circuit being adapted to the storage of an “open” or a “closed” mechanical position of the electronic switch for a predetermined duration according to the reservoir capacitor.
    • 本发明涉及一种用于模拟具有确定的电流中断能力的机械摇臂开关的电子开关,电子开关被配置为使用输入电压向电子设备供电,并且包括用于产生控制的触觉开关 信号,其输出状态取决于所述控制信号的双稳态电路,适合于向所述装置供电的电源线的断开和闭合的开关电路,所述装置消耗小于或等于所述确定的中断容量的电流 包括储存电容器的记忆电路,所述触觉开关被配置为控制所述开关电路的打开和闭合,并且所述存储器电路适于存储所述电子开关的“开放”或“闭合”机械位置,用于 根据储层电容器预定的持续时间。
    • 5. 发明授权
    • Fault tolerant service switch operation in a utility meter
    • 电力仪表中的容错业务开关操作
    • US08810077B2
    • 2014-08-19
    • US12911715
    • 2010-10-25
    • John T. Voisine
    • John T. Voisine
    • H01H9/54
    • G05B11/01H02J7/0052H02J13/0065Y10T307/944Y10T307/977
    • An arrangement for controllably disconnecting a utility power service from a load includes a meter housing, a service switch, an electrically-powered source of motive force, and energy storage device, and a charging circuit. The meter housing includes metrology circuitry configured to generate metering information regarding electrical power provided to the load. The service switch is configured to controllably interrupt a connection between the utility power service and the load. The electrically-powered source of motive force is configured to cause the service switch to controllably interrupt the connection between the utility power service and the load. The energy storage device is operably connected to provide power to the electrically-powered source of motive force. The charging circuit is configured to provide charging energy to the energy storage device. The energy storage device is configured to provide sufficient power to the electrically-power source of motive force after being at least partially charged by the charging circuit. The arrangement further includes a control circuit configured to provide a first signal to a first switch operably connecting the energy storage device to the electrically powered source of motive force, and to provide a second signal to a second switch operably connecting the charging circuit to the energy storage device. The control circuit is configured to receive a disconnect command signal, and to provide the second signal and the first signal in sequence responsive to receiving the disconnect command signal.
    • 用于可控制地断开公用电力服务与负载的布置包括仪表外壳,维修开关,电动力源和能量存储装置以及充电电路。 仪表壳体包括测量电路,其被配置为产生关于提供给负载的电力的计量信息。 服务开关被配置为可控地中断公用电力服务和负载之间的连接。 电动动力源被配置为使服务开关可控制地中断公用电力服务和负载之间的连接。 能量存储装置可操作地连接以向动力源的动力源提供动力。 充电电路被配置为向能量存储装置提供充电能量。 能量存储装置被配置为在由充电电路至少部分充电之后为动力的电源提供足够的功率。 该装置还包括控制电路,其被配置为向第一开关提供第一信号,第一开关可操作地将能量存储装置连接到电动动力源,并且向可操作地将充电电路连接到能量的第二开关提供第二信号 储存设备。 控制电路被配置为接收断开命令信号,并且响应于接收到断开命令信号而依次提供第二信号和第一信号。
    • 7. 发明授权
    • Control circuit for motorized circuit breaker
    • 电动断路器控制电路
    • US08772983B2
    • 2014-07-08
    • US13228253
    • 2011-09-08
    • Alexander FilippenkoScott Brown
    • Alexander FilippenkoScott Brown
    • H01H3/00
    • H01H71/70H01H3/227Y10T307/937Y10T307/977
    • A circuit breaker module includes an electrically controlled actuator, such as a DC motor, operable to move a breaker contact between open and closed positions. An actuator power supply circuit coupled to an AC power source is configured to selectively energize the actuator, responsive to an actuation input. A processing circuit is configured to control the actuator power supply circuit to activate the actuator in response to breaker command signals, using the actuation input. The processing circuit is further configured to delay activations of the actuator as needed to enforce a predetermined cooling interval between successive actuations.
    • 断路器模块包括电控致动器,例如DC电动机,其可操作以在断开位置和闭合位置之间移动断路器触点。 耦合到AC电源的致动器电源电路被配置为响应于致动输入选择性地激励致动器。 处理电路被配置为使用致动输入来控制致动器电源电路以响应于断路器命令信号激活致动器。 处理电路还被配置为根据需要延迟致动器的激活,以在连续致动之间强制预定的冷却间隔。
    • 8. 发明授权
    • Integrated exciter-igniter
    • 综合励磁机点火器
    • US08653693B2
    • 2014-02-18
    • US13014849
    • 2011-01-27
    • Michael Vincent AulisioGreg Scott TollisElmer L. GriebelerNeil D. Rowe
    • Michael Vincent AulisioGreg Scott TollisElmer L. GriebelerNeil D. Rowe
    • H02J7/00
    • F02K9/95Y10T307/609Y10T307/977
    • An integrated exciter-igniter architecture is disclosed that integrates compact, direct-mounted exciter electronics with an aerospace designed igniter to reduce overall ignition system complexity. The integrated exciter-igniter unit hermetically seals exciter electronics within a stainless steel enclosure or housing. The stainless enclosure enables the exciter electronics to remain near atmospheric pressure while the unit is exposed to vacuum conditions. The exciter electronics include a DC-DC converter, timing circuitry, custom-designed PCBs, a custom-designed main power transformer, and a high voltage ignition coil. All of which are packaged together in the stainless steel enclosure. The integrated exciter-igniter unit allows for efficient energy delivery to the spark gap and eliminates the need for a high voltage cable to distribute the high voltage, high energy pulses.
    • 公开了一种集成的激励器 - 点火器结构,其将紧凑的直接安装的激励器电子器件与航空设计的点火器集成,以降低整体点火系统的复杂性。 集成的激励器 - 点火器单元将不锈钢外壳或外壳内的励磁电子器件密封。 不锈钢外壳使得激光器电子器件在暴露在真空条件下时能保持接近大气压。 激励器电子器件包括DC-DC转换器,定时电路,定制PCB,定制设计的主电源变压器和高压点火线圈。 所有这些都在不锈钢外壳中封装在一起。 集成的激励器 - 点火器单元允许有效的能量传递到火花隙,并且不需要高压电缆来分配高电压的高能量脉冲。