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    • 5. 发明公开
    • CONFIGURATION OF VOLTAGE CONVERTERS IN A POWER SUPPLY SYSTEM
    • 电源转换器在电源系统配置
    • EP3014751A1
    • 2016-05-04
    • EP13732516.3
    • 2013-06-28
    • Telefonaktiebolaget LM Ericsson (publ)
    • HOLMBERG, Torbjörn
    • H02M3/157H02M1/36
    • H02J5/00H02M1/36H02M3/04H02M3/157H02M5/04H02M7/04H02M7/44H02M2001/007
    • A power supply system controller (360) for configuring voltage converters in a power supply system (300) is disclosed. The power supply system comprises a first voltage converter (130-1; 130-2) arranged to convert an input voltage at an input of the first voltage converter to an output voltage at an output of the first voltage converter, wherein the output of the first voltage converter is connected to an input of a second voltage converter (150-1; 150-2; 150-3). Each of the first and second voltage converters comprises: a controller (210) configurable by received first control signals (260) to control the voltage conversion to be performed by the voltage converter; and a power module (270) arranged to derive, from the input (230) of the voltage converter, an operation voltage (V
      operation ) to power the controller (210) such that the controller (210 ) can be configured by the received first control signals (260). The power supply system controller (360) is arranged to: generate first control signals (260) to configure the first voltage converter (130-1; 130-2); following configuration of the first voltage converter, generate second control signals to cause the input of the second voltage converter (150-1; 150-2; 150-3) to be supplied with the output voltage of the first voltage converter (130-1; 130-2), such that the second voltage converter can be configured; and generate first control signals to configure the second voltage converter (150-1; 150-2; 150-3).
    • 6. 发明公开
    • INDEPENDENTLY ADJUSTABLE CURRENT AND VOLTAGE AC-AC CONVERTER
    • UNABHÄNGIGEINSTELLBARER WECHSELSTROM-STROM- UND-SPANNUNGSWANDLER
    • EP2810364A4
    • 2016-03-23
    • EP13743958
    • 2013-01-30
    • DIALIGHT CORP
    • BUENO DAVID LHARVEY CAMERON L
    • H02M5/00H02M5/275H05B37/02
    • H05B37/0209H02M1/12H02M1/42H02M1/4225H02M5/04H02M5/293H05B37/02H05B37/0245H05B41/24Y02B70/126
    • The present disclosure is directed to an alternating current (AC) to AC converter circuit for independently adjusting a current and voltage to adjust a light output of a light operating on AC power. In one embodiment, the AC to AC converter circuit includes a microprocessor, a first switch coupled to the microprocessor, a power factor controller (PFC) module coupled to the first switch, wherein the first switch is controlled by the microprocessor in accordance with a desired power output, one or more boost switches coupled to the PFC module, wherein the one or more boost switches are controlled by the PFC module as a function of an operation of the first switch and one or more load switches coupled to the one or more boost switches, wherein the one or more load switches are controlled by the microprocessor in accordance with the desired power output.
    • 本公开涉及一种用于独立地调节电流和电压以调节在AC功率上工作的光的光输出的交流(AC)至AC转换器电路。 在一个实施例中,AC至AC转换器电路包括微处理器,耦合到微处理器的第一开关,耦合到第一开关的功率因数控制器(PFC)模块,其中第一开关由微处理器根据期望的 功率输出,耦合到所述PFC模块的一个或多个升压开关,其中所述一个或多个升压开关由所述PFC模块控制为所述第一开关的操作和耦合到所述一个或多个升压的一个或多个负载开关的函数 开关,其中所述一个或多个负载开关由所述微处理器根据期望的功率输出来控制。
    • 10. 发明公开
    • AUTOMATIC CONFIGURATION OF A LOAD CONTROL SYSTEM
    • 负载控制系统的自动配置
    • EP3189711A1
    • 2017-07-12
    • EP15745111.3
    • 2015-07-24
    • Lutron Electronics Co., Inc.
    • KNODE, Galen, EdgarKOBER, Steven, J.RANERI, Daniel, CurtisWALSH, III Richard, M.
    • H05B37/02
    • H05B33/0815H02M5/04H05B33/0845H05B37/02H05B37/0245
    • A control module is able to be installed with electrical devices, such as, for example electrical loads (e.g., lighting loads) and/or load regulation devices. The control module may determine whether an LED driver for an LED light source is responsive to one or more of a plurality of control techniques. The control module may be able to automatically determine an appropriate control technique to use to control the connected LED driver and/or LED light source. The control module may sequentially attempt to control the LED driver and/or LED light source using each of the plurality of control techniques and determine if the LED driver and/or LED light source is responsive to the present control technique. The plurality of control techniques may include one or more analog control techniques and one or more digital control techniques.
    • 控制模块能够与电气装置(例如电气负载(例如,照明负载)和/或负载调节装置)一起安装。 控制模块可以确定用于LED光源的LED驱动器是否响应于多个控制技术中的一个或多个。 控制模块可以能够自动确定用于控制连接的LED驱动器和/或LED光源的合适的控制技术。 控制模块可以使用多种控制技术中的每一种来顺序地尝试控制LED驱动器和/或LED光源,并且确定LED驱动器和/或LED光源是否响应于本控制技术。 多个控制技术可以包括一个或多个模拟控制技术和一个或多个数字控制技术。