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    • 4. 发明授权
    • System and method for charging a control device from a lighting system
    • 从照明系统对控制装置充电的系统和方法
    • US07851737B2
    • 2010-12-14
    • US12094608
    • 2006-11-27
    • Kent E. CrouseLing WangWilliam L. Keith
    • Kent E. CrouseLing WangWilliam L. Keith
    • G01J1/32
    • H05B37/0272H02J7/345H02J7/35
    • A lighting system control device charging system and method including a control device charged from a light source in a lighting system, including control photovoltaic cell 28 responsive to control light 46 from the light source and generating control charging power 44; a capacitor storing the control charging power 44 and generating control supply power 42; and a control microcontroller unit (MCU)/transceiver 24 powered by control supply power 42 and generating a communications signal 40 to the lighting system. The control microcontroller unit (MCU)/transceiver 24 monitors charge state of the capacitor and directs the lighting system to increase the control light 46 when the charge state is below a low charge setpoint.
    • 一种照明系统控制装置充电系统和方法,包括从照明系统中的光源充电的控制装置,包括响应于来自光源的控制光46并产生控制充电功率的控制光伏电池28; 存储控制充电电力44并产生控制电源42的电容器; 以及由控制电源42供电并且向照明系统生成通信信号40的控制微控制器单元(MCU)/收发器24。 控制微控制器单元(MCU)/收发器24监视电容器的充电状态并引导照明系统在充电状态低于低电荷设定点时增加控制光46。
    • 6. 发明授权
    • Universal RF wireless sensor interface
    • 通用射频无线传感器接口
    • US08514072B2
    • 2013-08-20
    • US12093335
    • 2006-11-13
    • Kent E. CrouseWilliam L. KeithAndrew C. Brown
    • Kent E. CrouseWilliam L. KeithAndrew C. Brown
    • G08B1/08
    • G08C17/02
    • A RF wireless sensor interface (20) interfaces one or more of a variety of sensors (12, 13) to a RF wireless network (11). A power converter (30) of the interface (20) converts a primary power (PPRM) into a DC power (PDC) that is supplied to the sensor(s) (12, 13). A microcontroller (60) of the interface (20) receives sensor detection information (SDI) from the sensor(s) (12, 13) in response to the sensor(s) (12, 13) receiving the DC power (PDC) from the power converter (30). A RF transmitter/transceiver (50) of the interface (20) executes a sensor detection information RF transmission (SDIRF) and/or a sensor control signal RF transmission (SCSRF) to the RF wireless network (11) in response to the microcontroller (60) receiving the sensor detection information (SDI). The power converter (30), the microcontroller (60) and the RF transmitter/transceiver (50) are located within a modular housing (80).
    • RF无线传感器接口(20)将各种传感器(12,13)中的一个或多个接口连接到RF无线网络(11)。 接口(20)的电源转换器(30)将主电源(PPRM)转换为提供给传感器(12,13)的直流电源(PDC)。 接口(20)的微控制器(60)响应于接收直流电力(PDC)的传感器(12,13)从传感器(12,13)接收传感器检测信息(SDI) 功率转换器(30)。 接口(20)的RF发射器/收发器(50)响应于微控制器(RF)向RF无线网络(11)执行传感器检测信息RF传输(SDIRF)和/或传感器控制信号RF传输(SCSRF) 60)接收传感器检测信息(SDI)。 功率转换器(30),微控制器(60)和RF发射器/收发器(50)位于模块化壳体(80)内。
    • 7. 发明授权
    • Electronic ballast with lamp type determination
    • 电子镇流器用灯泡类型测定
    • US07521876B2
    • 2009-04-21
    • US10596330
    • 2004-12-09
    • William L. KeithGeorge L. GrouevKent E. Crouse
    • William L. KeithGeorge L. GrouevKent E. Crouse
    • H05B37/02
    • H05B41/2828H05B41/2985
    • An electronic ballast includes open circuit voltage regulation comprises an filament current sensing circuit 224 operably connected to an output of the electronic ballast and generating a sensed output voltage signal, and a regulating pulse width modulator U3 receiving the sensed output voltage signal and operably connected to control voltage at the output of the electronic ballast, the regulating pulse width modulator U3 having an output voltage threshold limit. The regulating pulse width modulator U3 limits the voltage at the output of the electronic ballast when the sensed output voltage signal exceeds the output voltage threshold limit. The regulating pulse width modulator U3 can limit the output voltage by limiting the pulse width to the high voltage driver and the resonant half bridge. The filament current sensing circuit 224 can sense the output voltage indirectly, such as by sensing tank current, or can sense the output voltage directly.
    • 电子镇流器包括开路电压调节,其包括可操作地连接到电子镇流器的输出并产生感测的输出电压信号的灯丝电流感测电路224,以及接收感测的输出电压信号并可操作地连接到控制的调节脉宽调制器U3 在电子镇流器的输出处的电压,具有输出电压阈值极限的调节脉冲宽度调制器U3。 当检测到的输出电压信号超过输出电压阈值限制时,调节脉冲宽度调制器U3限制电子镇流器输出端的电压。 调节脉冲宽度调制器U3可以通过将脉冲宽度限制到高电压驱动器和谐振半桥来限制输出电压。 灯丝电流检测电路224可以例如通过感测电池电流来间接感测输出电压,或者可以直接感测输出电压。
    • 8. 发明申请
    • Universal Rf Wireless Sensor Interface
    • 通用Rf无线传感器接口
    • US20080266050A1
    • 2008-10-30
    • US12093335
    • 2006-11-13
    • Kent E. CrouseWilliam L. KeithAndrew C. Brown
    • Kent E. CrouseWilliam L. KeithAndrew C. Brown
    • G05B23/02
    • G08C17/02
    • A RF wireless sensor interface (20) interfaces one or more of a variety of sensors (12, 13) to a RF wireless network (11). A power converter (30) of the interface (20) converts a primary power (PPRM) into a DC power (PDC) that is supplied to the sensor(s) (12, 13). A microcontroller (60) of the interface (20) receives sensor detection information (SDI) from the sensor(s) (12, 13) in response to the sensor(s) (12, 13) receiving the DC power (PDC) from the power converter (30). A RF transmitter/transceiver (50) of the interface (20) executes a sensor detection information RF transmission (SDIRF) and/or a sensor control signal RF transmission (SCSRF) to the RF wireless network (11) in response to the microcontroller (60) receiving the sensor detection information (SDI). The power converter (30), the microcontroller (60) and the RF transmitter/transceiver (50) are located within a modular housing (80).
    • RF无线传感器接口(20)将各种传感器(12,13)中的一个或多个接口连接到RF无线网络(11)。 接口(20)的电源转换器(30)将主电源(P SUB PRM )转换为提供给传感器的直流电源(P DC ) )(12,13)。 接口(20)的微控制器(60)响应于接收直流电力的传感器(12,13)从传感器(12,13)接收传感器检测信息(SDI)(P DC )。 接口(20)的RF发射器/收发器(50)执行传感器检测信息RF传输(SDI< RF)和/或传感器控制信号RF传输(SCS< SUB> 响应于接收传感器检测信息(SDI)的微控制器(60)向RF无线网络(11)发送信号。 功率转换器(30),微控制器(60)和RF发射器/收发器(50)位于模块化壳体(80)内。
    • 10. 发明授权
    • Electronic ballast having open circuit in output
    • 电子镇流器在输出端有开路
    • US06720741B2
    • 2004-04-13
    • US10066059
    • 2002-02-01
    • Kent E. CrouseGueorgui L. GrouevWilliam L. KeithJacek Cachel
    • Kent E. CrouseGueorgui L. GrouevWilliam L. KeithJacek Cachel
    • H05B3700
    • H05B41/2851
    • Gas discharge lamps may conduct current from the common rail to earthen ground through a fixture containing the lamps. A transistor is coupled in series in the current path to the common rail. When the ballast is placed in a quiescent state, the transistor is rendered non-conducting, thereby solating the lamps from the common rail and preventing flicker. In accordance with another aspect of the invention, the control electrode of the transistor is coupled to a source of low voltage and the transistor is rendered non-conducting when the source of low voltage is turned off. The lamps can also be isolated from the common rail by using a semiconductor switch in the rectifier section or by referencing the output of the inverter to the high voltage rail.
    • 气体放电灯可以通过包含灯的固定装置将电流从共轨传导到土地。 晶体管在共轨的电流路径中串联耦合。 当镇流器处于静止状态时,晶体管变得不导通,从而从共轨引导灯并防止闪烁。 根据本发明的另一方面,晶体管的控制电极耦合到低电压源,并且当低电压源关闭时,晶体管变为不导通。 灯也可以通过在整流器部分中使用半导体开关或通过将逆变器的输出引用到高压轨道而与共轨隔离。