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    • 3. 发明申请
    • Method of Controlling an Electronic Dimming Ballast During Low Temperature Conditions
    • 在低温条件下控制电子调光镇流器的方法
    • US20110241561A1
    • 2011-10-06
    • US12955988
    • 2010-11-30
    • Venkatesh ChittaMehmet OzbekJonathan Robert QuayleMark S. TaipaleDragan Veskovic
    • Venkatesh ChittaMehmet OzbekJonathan Robert QuayleMark S. TaipaleDragan Veskovic
    • H05B41/16
    • H05B41/3921H05B41/3925
    • An electronic ballast circuit for driving a gas discharge lamp is operable to control the lamp to avoid flicking and flashing of the intensity of the lamp during low temperature conditions. The ballast circuit includes an inverter circuit for receiving a DC bus voltage and for generating a high-frequency output voltage, a resonant tank circuit for receiving the high-frequency output voltage and generating a sinusoidal voltage for driving said lamp, and a control circuit operatively coupled to the inverter circuit for adjusting an intensity of the lamp between a minimum intensity and a maximum intensity. The control circuit receives a control signal representative of a lamp temperature of the lamp, and increases the minimum intensity of the lamp if the lamp temperature of the lamp drops below a cold temperature threshold. In addition, the ballast circuit may also include a temperature sensing circuit operable to generate the control signal representative of the lamp temperature of the lamp.
    • 用于驱动气体放电灯的电子镇流器电路可操作以控制灯以避免在低温条件下灯的强度的闪烁和闪烁。 镇流器电路包括用于接收直流母线电压并用于产生高频输出电压的反相器电路,用于接收高频输出电压并产生用于驱动所述灯的正弦电压的谐振回路电路,以及可操作地控制电路的控制电路 耦合到逆变器电路,用于在最小强度和最大强度之间调节灯的强度。 控制电路接收表示灯的灯温度的控制信号,并且如果灯的灯温降低到低温阈值以下,则增加灯的最小强度。 此外,镇流器电路还可以包括温度检测电路,其可操作以产生表示灯的灯温度的控制信号。
    • 6. 发明授权
    • Method of controlling an operating frequency of an electronic dimming ballast
    • 控制电子调光镇流器工作频率的方法
    • US08384297B2
    • 2013-02-26
    • US12858662
    • 2010-08-18
    • Jonathan Robert QuayleVenkatesh Chitta
    • Jonathan Robert QuayleVenkatesh Chitta
    • H05B41/36
    • H05B41/295H05B41/2825H05B41/3925H05B41/3927
    • An electronic ballast for driving a gas discharge lamp comprises an inverter circuit, a resonant tank circuit, and a control circuit operable to determine an approximation of a resonant frequency of the resonant tank circuit and to control the inverter circuit in response to the approximation of the resonant frequency. The control circuit determines the approximation of the resonant frequency by adjusting an operating frequency of a high-frequency inverter output voltage provided to the resonant tank circuit from a frequency above the resonant frequency down towards the resonant frequency, measuring the magnitude of a lamp voltage across the lamp, and storing the present value of the operating frequency as the resonant frequency when the magnitude of the lamp voltage reaches a maximum value. The control circuit may control the operating frequency of the inverter output voltage in response to the approximation of the resonant frequency and a target intensity of the lamp.
    • 用于驱动气体放电灯的电子镇流器包括逆变器电路,谐振回路和控制电路,其可操作以确定谐振回路的谐振频率的近似值,并且响应于近似的 谐振频率。 控制电路通过从谐振频率以上的频率向谐振频率调节提供给谐振回路的高频逆变器输出电压的工作频率,来测定谐振频率的近似值,测量灯电压的幅度 并且当灯电压的大小达到最大值时将工作频率的当前值作为谐振频率存储。 响应于谐振频率和灯的目标强度的近似,控制电路可以控制逆变器输出电压的工作频率。
    • 7. 发明申请
    • Method of Measuring a Resonant Frequency in an Electronic Dimming Ballast
    • 电子调光镇流器谐振频率测量方法
    • US20120043903A1
    • 2012-02-23
    • US12858662
    • 2010-08-18
    • Jonathan Robert QuayleVenkatesh Chitta
    • Jonathan Robert QuayleVenkatesh Chitta
    • H05B41/36G01R31/00G01R27/28
    • H05B41/295H05B41/2825H05B41/3925H05B41/3927
    • An electronic ballast for driving a gas discharge lamp comprises an inverter circuit, a resonant tank circuit, and a control circuit operable to determine an approximation of a resonant frequency of the resonant tank circuit and to control the inverter circuit in response to the approximation of the resonant frequency. The control circuit determines the approximation of the resonant frequency by adjusting an operating frequency of a high-frequency inverter output voltage provided to the resonant tank circuit from a frequency above the resonant frequency down towards the resonant frequency, measuring the magnitude of a lamp voltage across the lamp, and storing the present value of the operating frequency as the resonant frequency when the magnitude of the lamp voltage reaches a maximum value. The control circuit may control the operating frequency of the inverter output voltage in response to the approximation of the resonant frequency and a target intensity of the lamp.
    • 用于驱动气体放电灯的电子镇流器包括逆变器电路,谐振回路和控制电路,其可操作以确定谐振回路的谐振频率的近似值,并且响应于近似的 谐振频率。 控制电路通过从谐振频率以上的频率向谐振频率调节提供给谐振回路的高频逆变器输出电压的工作频率,来测定谐振频率的近似值,测量灯电压的幅度 并且当灯电压的大小达到最大值时将工作频率的当前值作为谐振频率存储。 响应于谐振频率和灯的目标强度的近似,控制电路可以控制逆变器输出电压的工作频率。