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    • 1. 发明申请
    • METHOD OF CONTROLLING A BALLAST FOR A HIGH INTENSITY DISCHARGE LAMP AND RELATED SYSTEM
    • 控制高强度放电灯和相关系统的方法
    • US20100060201A1
    • 2010-03-11
    • US12469870
    • 2009-05-21
    • Li-Ling LEEChing-Ran LeeJia-Hong ChenChin-Sien MooSheng-Yi Tang
    • Li-Ling LEEChing-Ran LeeJia-Hong ChenChin-Sien MooSheng-Yi Tang
    • H05B41/36
    • H05B41/2886H05B41/38
    • A method of controlling a ballast for a high intensity discharge (HID) lamp and related system. The method includes setting initial operating parameters of the ballast to turn on the HID lamp, generating starting transient electric characteristic values of the HID lamp by measuring actual electric parameters at a predetermined time during a transient process after the HID lamp is turned on, searching stored data for a rated power corresponding to the starting transient electric characteristic value range of the HID lamp after determining that the starting transient electric characteristic value is within stored starting transient electric characteristic value ranges of the HID lamp, and searching the stored data for a corresponding ballast operating parameter, to allow the HID lamp to operate in the corresponding rated power, and realize that a single ballast can be adapted to and control the HID lamps to operable in their respective specific rated power.
    • 一种控制高强度放电(HID)灯和相关系统的镇流器的方法。 该方法包括设置镇流器的初始操作参数以打开HID灯,通过在HID灯开启之后的瞬态过程中的预定时间测量HID灯的启动瞬态电特性值,搜索存储 在确定启动瞬态电特性值在HID灯的存储起始瞬态电特性值范围内之前,对应于HID灯的启动瞬态电特性值范围的额定功率的数据,并且搜索存储的数据以获得相应的镇流器 操作参数,以允许HID灯以相应的额定功率工作,并且实现单个镇流器可以适应并控制HID灯在各自的特定额定功率下操作。
    • 2. 发明授权
    • Method of controlling a ballast for a high intensity discharge lamp and related system
    • 控制高强度放电灯和相关系统的镇流器的方法
    • US08148920B2
    • 2012-04-03
    • US12469870
    • 2009-05-21
    • Li-Ling LeeChing-Ran LeeJia-Hong ChenChin-Sien MooSheng-Yi Tang
    • Li-Ling LeeChing-Ran LeeJia-Hong ChenChin-Sien MooSheng-Yi Tang
    • H05B41/36
    • H05B41/2886H05B41/38
    • A method of controlling a ballast for a high intensity discharge (HID) lamp and related system. The method includes setting initial operating parameters of the ballast to turn on the HID lamp, generating starting transient electric characteristic values of the HID lamp by measuring actual electric parameters at a predetermined time during a transient process after the HID lamp is turned on, searching stored data for a rated power corresponding to the starting transient electric characteristic value range of the HID lamp after determining that the starting transient electric characteristic value is within stored starting transient electric characteristic value ranges of the HID lamp, and searching the stored data for a corresponding ballast operating parameter, to allow the HID lamp to operate in the corresponding rated power, and realize that a single ballast can be adapted to and control the HID lamps to operable in their respective specific rated power.
    • 一种控制高强度放电(HID)灯和相关系统的镇流器的方法。 该方法包括设置镇流器的初始操作参数以打开HID灯,通过在HID灯开启之后的瞬态过程中的预定时间测量HID灯的启动瞬态电特性值,搜索存储 在确定启动瞬态电特性值在HID灯的存储起始瞬态电特性值范围内之前,对应于HID灯的启动瞬态电特性值范围的额定功率的数据,并且搜索存储的数据以获得相应的镇流器 操作参数,以允许HID灯以相应的额定功率工作,并且实现单个镇流器可以适应并控制HID灯在各自的特定额定功率下操作。
    • 3. 发明申请
    • LAMP CONTROL SYSTEM, LAMP POWER-SAVING SYSTEM AND METHOD THEREFOR
    • 灯控制系统,灯管节能系统及其方法
    • US20130162143A1
    • 2013-06-27
    • US13612712
    • 2012-09-12
    • Sui-Tsung ChenChing-Ran LeeJia-Hong Chen
    • Sui-Tsung ChenChing-Ran LeeJia-Hong Chen
    • H05B41/36H01J61/52
    • H01J61/52H01J61/72H05B41/295
    • A power-saving method for a lamp power-saving system is provided. The method includes the following steps. A lamp control unit is provided to control a fluorescent lamp. The lamp control unit includes a power conversion circuit and a preheat and lighting circuit. The preheat and lighting circuit, coupled to the power conversion circuit and two terminals of the fluorescent lamp, preheats and activates the fluorescent lamp, and outputs a feedback signal indicating a current passing through the fluorescent lamp. When the feedback signal indicates the fluorescent lamp is in a preheat mode, a resonant circuit of the preheat and lighting circuit is enabled to preheat the fluorescent lamp via a current path provided by a diode bridge of the preheat and lighting circuit. When the feedback signal indicates the fluorescent lamp is lighted, the current path of the preheat and lighting circuit is disconnected to stop preheating.
    • 提供了一种用于灯节电系统的省电方法。 该方法包括以下步骤。 提供灯控制单元来控制荧光灯。 灯控制单元包括电源转换电路和预热和照明电路。 耦合到功率转换电路和荧光灯的两个端子的预热和照明电路预热并激活荧光灯,并输出指示通过荧光灯的电流的反馈信号。 当反馈信号指示荧光灯处于预热模式时,预热和点亮电路的谐振电路能够通过由预热和照明电路的二极管桥提供的电流路径预热荧光灯。 当反馈信号指示荧光灯点亮时,预热和点亮电路的电流路径断开,停止预热。
    • 4. 发明授权
    • Lamp control system, lamp power-saving system and method therefor
    • 灯控系统,灯管节能系统及其方法
    • US09041293B2
    • 2015-05-26
    • US13612712
    • 2012-09-12
    • Sui-Tsung ChenChing-Ran LeeJia-Hong Chen
    • Sui-Tsung ChenChing-Ran LeeJia-Hong Chen
    • H05B41/36H01J61/52H05B41/295H01J61/72
    • H01J61/52H01J61/72H05B41/295
    • A power-saving method for a lamp power-saving system is provided. The method includes the following steps. A lamp control unit is provided to control a fluorescent lamp. The lamp control unit includes a power conversion circuit and a preheat and lighting circuit. The preheat and lighting circuit, coupled to the power conversion circuit and two terminals of the fluorescent lamp, preheats and activates the fluorescent lamp, and outputs a feedback signal indicating a current passing through the fluorescent lamp. When the feedback signal indicates the fluorescent lamp is in a preheat mode, a resonant circuit of the preheat and lighting circuit is enabled to preheat the fluorescent lamp via a current path provided by a diode bridge of the preheat and lighting circuit. When the feedback signal indicates the fluorescent lamp is lighted, the current path of the preheat and lighting circuit is disconnected to stop preheating.
    • 提供了一种用于灯节电系统的省电方法。 该方法包括以下步骤。 提供灯控制单元来控制荧光灯。 灯控制单元包括电源转换电路和预热和照明电路。 耦合到功率转换电路和荧光灯的两个端子的预热和照明电路预热并激活荧光灯,并输出指示通过荧光灯的电流的反馈信号。 当反馈信号指示荧光灯处于预热模式时,预热和点亮电路的谐振电路能够通过由预热和照明电路的二极管桥提供的电流路径预热荧光灯。 当反馈信号指示荧光灯点亮时,预热和点亮电路的电流路径断开,停止预热。
    • 5. 发明授权
    • Constant power control apparatus and control method thereof
    • 恒功率控制装置及其控制方法
    • US08242757B2
    • 2012-08-14
    • US12535741
    • 2009-08-05
    • Yao-Te HuangChing-Ran LeeLi-Ling Lee
    • Yao-Te HuangChing-Ran LeeLi-Ling Lee
    • G05F1/00H02J3/12H05B37/02H05B39/04H05B41/36
    • H05B41/3928Y02B20/202
    • A constant power control apparatus and a controlling method thereof are provided. The constant power control apparatus outputs output power to a load element. The constant power control apparatus includes a compensation and modification device, a constant power control device, and a power generation circuit. The compensation and modification device receives an expected output power voltage and a voltage feedback signal relating to the output power. The compensation and modification device transforms the expected output power voltage into a current reference value, and modifies the current reference value to generate a modified current reference value according to the voltage feedback signal. The constant power control device receives the modified current reference value and a current feedback signal relating to the output power, and generates a control signal for use in power modulation. The power generation circuit receives the control signal and outputs the output power.
    • 提供了一种恒功率控制装置及其控制方法。 恒定功率控制装置向负载​​元件输出输出功率。 恒功率控制装置包括补偿和修改装置,恒定功率控制装置和发电电路。 补偿和修改装置接收与输出功率有关的预期输出功率电压和电压反馈信号。 补偿和修改装置将预期输出功率电压转换为电流参考值,并根据电压反馈信号修改电流参考值以产生修正的电流参考值。 恒功率控制装置接收修正的电流基准值和与输出功率相关的电流反馈信号,并产生用于功率调制的控制信号。 发电电路接收控制信号并输出​​输出功率。
    • 6. 发明申请
    • LED Mixture Control Device and Controlling Method Thereof
    • LED混合控制装置及其控制方法
    • US20110121762A1
    • 2011-05-26
    • US12787609
    • 2010-05-26
    • Po-Yen ChenChing-Ran LeeLi-Ling LeeChing-Tsai Pan
    • Po-Yen ChenChing-Ran LeeLi-Ling LeeChing-Tsai Pan
    • H05B37/02
    • H05B33/086
    • A light source mixture control device for controlling a light source emitting different spectrums is provided. A coordination conversion unit receives and converts a hue signal and a luminance signal into a first to a third undecoupled color light component. A first color light component decoupling control unit decouples a first color light component from the first to the third undecoupled color light component. A second color light component decoupling control unit decouples the first undecoupled color light component into a first decoupled color light component. A third color light component decoupling control unit decouples the second undecoupled color light component into a second decoupled color light component. A fourth color light component decoupling control unit decouples the third undecoupled color light component into a third decoupled color light component. The first to the third decoupled color light component respectively control the light source.
    • 提供了一种用于控制发射不同光谱的光源的光源混合物控制装置。 协调转换单元接收并将色调信号和亮度信号转换为第一至第三未耦合的彩色光分量。 第一颜色光分量去耦控制单元将第一颜色光分量与第一至第三未耦合的彩色光分量分离。 第二颜色光分量去耦控制单元将第一未耦合的彩色光分量分离成第一去耦颜色光分量。 第三颜色光分量去耦控制单元将第二未耦合的彩色光分量分离成第二去耦颜色光分量。 第四颜色光分量去耦控制单元将第三未耦合的彩色光分量分离成第三去耦颜色光分量。 第一到第三去耦颜色光分量分别控制光源。
    • 7. 发明授权
    • LED mixture control device and controlling method thereof
    • LED混合控制装置及其控制方法
    • US08278847B2
    • 2012-10-02
    • US12787609
    • 2010-05-26
    • Po-Yen ChenChing-Ran LeeLi-Ling LeeChing-Tsai Pan
    • Po-Yen ChenChing-Ran LeeLi-Ling LeeChing-Tsai Pan
    • H05B37/02
    • H05B33/086
    • A light source mixture control device for controlling a light source emitting different spectrums is provided. A coordination conversion unit receives and converts a hue signal and a luminance signal into a first to a third undecoupled color light component. A first color light component decoupling control unit decouples a first color light component from the first to the third undecoupled color light component. A second color light component decoupling control unit decouples the first undecoupled color light component into a first decoupled color light component. A third color light component decoupling control unit decouples the second undecoupled color light component into a second decoupled color light component. A fourth color light component decoupling control unit decouples the third undecoupled color light component into a third decoupled color light component. The first to the third decoupled color light component respectively control the light source.
    • 提供了一种用于控制发射不同光谱的光源的光源混合物控制装置。 协调转换单元接收并将色调信号和亮度信号转换为第一至第三未耦合的彩色光分量。 第一颜色光分量去耦控制单元将第一颜色光分量与第一至第三未耦合的彩色光分量分离。 第二颜色光分量去耦控制单元将第一未耦合的彩色光分量分离成第一去耦颜色光分量。 第三颜色光分量去耦控制单元将第二未耦合的彩色光分量分离成第二去耦颜色光分量。 第四颜色光分量去耦控制单元将第三未耦合的彩色光分量分离成第三去耦颜色光分量。 第一到第三去耦颜色光分量分别控制光源。
    • 10. 发明申请
    • CONSTANT POWER CONTROL APPARATUS AND CONTROL METHOD THEREOF
    • 恒功率控制装置及其控制方法
    • US20100277139A1
    • 2010-11-04
    • US12535741
    • 2009-08-05
    • Yao-Te HuangChing-Ran LeeLi-Ling Lee
    • Yao-Te HuangChing-Ran LeeLi-Ling Lee
    • G05F1/10
    • H05B41/3928Y02B20/202
    • A constant power control apparatus and a controlling method thereof are provided. The constant power control apparatus outputs output power to a load element. The constant power control apparatus includes a compensation and modification device, a constant power control device, and a power generation circuit. The compensation and modification device receives an expected output power voltage and a voltage feedback signal relating to the output power. The compensation and modification device transforms the expected output power voltage into a current reference value, and modifies the current reference value to generate a modified current reference value according to the voltage feedback signal. The constant power control device receives the modified current reference value and a current feedback signal relating to the output power, and generates a control signal for use in power modulation. The power generation circuit receives the control signal and outputs the output power.
    • 提供了一种恒功率控制装置及其控制方法。 恒定功率控制装置向负载​​元件输出输出功率。 恒功率控制装置包括补偿和修改装置,恒定功率控制装置和发电电路。 补偿和修改装置接收与输出功率有关的预期输出功率电压和电压反馈信号。 补偿和修改装置将预期输出功率电压转换为电流参考值,并根据电压反馈信号修改电流参考值以产生修正的电流参考值。 恒功率控制装置接收修正的电流基准值和与输出功率相关的电流反馈信号,并产生用于功率调制的控制信号。 发电电路接收控制信号并输出​​输出功率。