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    • 91. 发明申请
    • HIGH VOLTAGE POWER SUPPLY FOR POWERING A MAGNETRON IN A UV CURING LAMP ASSEMBLY
    • 用于为UV固化灯组件中的磁体供电的高压电源
    • US20120019148A1
    • 2012-01-26
    • US13189847
    • 2011-07-25
    • Yixin Yang
    • Yixin Yang
    • H05B37/02
    • H02M3/335H02M2001/0077Y10T307/305Y10T307/713Y10T307/735
    • A power supply for use in a UV curing lamp assembly is disclosed. The power supply is powered by two intermediate frequency (200-400 Hz) low voltage sinusoidal power sources that drive the primary windings of a dual laminated transformer. The low voltage sinusoidal power sources are configured to have different phases. The out-of-phase low voltage sine wave sources are converted to high voltage sine waves on the secondary windings of the dual laminated transformer having the same phase difference relationship. A single rectifier comprising six high voltage diodes, called a ladder rectifier, combine the two out-of-phase sine waves into a single, approximately DC output power source. By modulating a phase difference between two input sine wave power sources, the approximate DC output voltage exiting the ladder rectifier may be alternated between a low ripple mode of about a 13.84% ripple, a high current mode, a high voltage mode, and an intermediate mode with a ripple in the range of about 13.84% to about 100%.
    • 公开了一种用于UV固化灯组件的电源。 电源由两个中频(200-400 Hz)低压正弦电源供电,驱动双层压变压器的初级绕组。 低压正弦电源被配置为具有不同的相位。 异相低压正弦波源在具有相同相位差关系的双层叠变压器的次级绕组上转换为高压正弦波。 包括六个高压二极管(称为梯形整流器)的单个整流器将两个异相正弦波组合成单个大约直流输出电源。 通过调制两个输入正弦波电源之间的相位差,离开梯形整流器的近似直流输出电压可以在大约13.84%纹波的低纹波模式,高电流模式,高电压模式和中间 波纹在约13.84%至约100%的范围内。
    • 92. 发明授权
    • Adaptive power system
    • 自适应电力系统
    • US08103387B2
    • 2012-01-24
    • US12385998
    • 2009-04-27
    • Joseph A. Gothard
    • Joseph A. Gothard
    • G06F19/00
    • G06F1/263G06F1/30H02J1/102H02J1/14H02J7/1423H02J7/34H02J9/06Y10T307/305
    • Aspects of the disclosure provides an adaptive power system to relieve manual efforts for performing appropriate power procedures. The adaptive power system can include a power source unit including a plurality of power sources and a power bus. The power source unit can be configured to provide electrical power from one or more of the power sources to the power bus. Further, the adaptive power system can include a power distribution unit configured to distribute electrical power from the power bus to a plurality of electrical devices. In addition, the adaptive power system can include a power control unit configured to control a power sequence for the power distribution unit to distribute electrical power from the power bus to the plurality of electrical devices in a coordinated manner consistent with load or time interval for each of the electrical devices.
    • 本公开的方面提供了一种自适应电力系统,以减轻用于执行适当电力程序的手动努力。 自适应电力系统可以包括包括多个电源和电力总线的电源单元。 电源单元可以被配置为从一个或多个电源向电力总线提供电力。 此外,自适应电力系统可以包括被配置为将电力从电力总线分配到多个电气设备的配电单元。 此外,自适应电力系统可以包括功率控制单元,其被配置为控制功率分配单元的功率顺序,以将电力从电力总线分配到多个电气设备,以与每个 的电气设备。
    • 95. 发明申请
    • POWER SUPPLY METHOD WITH PARALLEL-CONNECTED BATTERIES
    • 具有并联电池的电源方法
    • US20110285208A1
    • 2011-11-24
    • US12786383
    • 2010-05-24
    • YAN YI XIAO
    • YAN YI XIAO
    • G05F1/10H02J7/00
    • H02J1/108H02J1/102Y10T307/305Y10T307/707
    • A power supply method with parallel-connected batteries employs at least two parallel-connected power supply branches, each of which includes a battery, a step-up circuit, and a step-down circuit, and each of which is installed with an individual control unit. The battery offers a low voltage transformed into a high voltage via the stepping-up. The high voltage thence acquires a needed power-supply voltage through the transformation executed by the step-down circuit. An anode of an output of the power supply branch serially connected with a diode prevents the other power supply branch from a reverse current. A cathode of the output serially connected with a current limiting resistance balances the currents on each power supply branch. Accordingly, the present invention diminishes the workload of the device maintenance, lessens users' investment pressure, and provides electricity systems of the power plant and the substation with a consistent direct current power source.
    • 具有并联电池的电源方法采用至少两个并联连接的电源分支,每个电源分支包括电池,升压电路和降压电路,并且每个电源分别安装有单独的控制 单元。 电池通过升压将低电压转换成高电压。 因此,高电压通过由降压电路执行的变换获得所需的电源电压。 与二极管串联连接的电源分支的输出的阳极防止另一个电源分支反向电流。 与限流电阻串联连接的输出阴极平衡每个电源分支上的电流。 因此,本发明减少了设备维护的工作量,降低了用户的投资压力,并为发电厂和变电站的电力系统提供了一致的直流电源。
    • 96. 发明授权
    • Cogeneration system with first and second power plants
    • 热电联产系统与第一和第二发电厂
    • US08039991B2
    • 2011-10-18
    • US12069924
    • 2008-02-12
    • Tsutomu WakitaniYoshinori NakagawaHiroyuki Eguchi
    • Tsutomu WakitaniYoshinori NakagawaHiroyuki Eguchi
    • H02J1/00H02J3/00
    • H02J9/062H02J3/005Y10T307/25Y10T307/305Y10T307/50Y10T307/696
    • In a cogeneration system having a first power plant connected to an AC power feed line between a power network and an electrical load and a first internal combustion engine for driving the first power plant such that exhaust heat of the first engine is supplied to a thermal load, power supply from the first power plant to the power network is interrupted by turning off a switch installed in the feed line, when outage of the power network is detected and a second power plant is operated, such that outputs of the first and second power plants are supplied to the electrical load. With this, it becomes possible to respond to a commercial power network outage for preventing reverse flow of the power output by the cogeneration system into the power network and supplying as much electric power as possible to the electrical load.
    • 在具有连接到电力网络和电力负载之间的AC供电线路的第一发电厂和用于驱动第一发电厂的第一内燃机的热电联产系统中,使得第一发动机的排热被供应到热负荷 当检测到电力网络中断并且第二发电厂运行时,通过关闭安装在馈电线路中的开关来中断从第一发电厂到电力网络的电力供应,使得第一和第二电力的输出 工厂供应给电气负载。 由此,可以应对商业电力网络中断,以防止热电联产系统输出到电力网络的功率输出的反向流动,并向电力负载提供尽可能多的电力。