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    • 2. 发明申请
    • LED DRIVING CIRCUIT
    • LED驱动电路
    • US20120268011A1
    • 2012-10-25
    • US13244653
    • 2011-09-25
    • Shian-Sung ShiuLi-Min LeeChung-Che YuXi TuYing Wang
    • Shian-Sung ShiuLi-Min LeeChung-Che YuXi TuYing Wang
    • H05B37/02
    • H05B33/0815H05B33/0827
    • An LED driving circuit includes a first and a second LED modules, a first and a second switching converters, an extreme voltage detecting and selecting circuit, a current balance circuit and a controller. The first switching converter transforms electric power of an input power supply into a first output voltage for lighting the first LED module. The second switching converter transforms electric power of the input power supply into a second output voltage for lighting the second LED module. The current balance circuit balances the currents flowing through the first and the second LED modules. The extreme voltage detecting and selecting circuit detects the first and the second LED modules and selects to output one of detecting results. The controller controls the transforming of the first switching converter and the second switching converter to light the first and the second LED modules in response to the outputted detecting result.
    • LED驱动电路包括第一和第二LED模块,第一和第二开关转换器,极值电压检测和选择电路,电流平衡电路和控制器。 第一开关转换器将输入电源的电力变换为第一输出电压以点亮第一LED模块。 第二开关转换器将输入电源的电力转换成用于照亮第二LED模块的第二输出电压。 电流平衡电路平衡流经第一和第二LED模块的电流。 极端电压检测和选择电路检测第一和第二LED模块,并选择输出检测结果之一。 控制器控制第一开关转换器和第二开关转换器的变换,以响应于输出的检测结果点亮第一和第二LED模块。
    • 3. 发明申请
    • NON-LINEAR LOAD DRIVING CIRCUIT AND CONTROLLER
    • 非线性负载驱动电路和控制器
    • US20120104967A1
    • 2012-05-03
    • US13118557
    • 2011-05-30
    • Li-Min LeeShian-Sung ShiuChung-Che YuXi Tu
    • Li-Min LeeShian-Sung ShiuChung-Che YuXi Tu
    • H05B37/02H03K5/04
    • H05B33/0824H05B33/0815
    • A non-linear load driving circuit and a controller for controlling a conversion circuit to drive a non-linear load are provided. The controller includes a feedback unit, a pulse width control unit, and an overshoot reduction unit. The feedback unit generates a feedback signal according to a current feedback signal that represents a load current flowing through the non-linear load. The pulse width control unit generates a control signal according to the feedback signal to control a power output of the conversion circuit. The overshoot reduction unit generates an overshoot reduction signal when the load current changes from being smaller than to being greater than a predetermined value according to the current feedback signal. The pulse width control unit receives the overshoot reduction signal and reduces the duty cycle of the control signal accordingly. Thereby, stability of feedback control is improved and damage to circuit is prevented.
    • 提供了非线性负载驱动电路和用于控制转换电路以驱动非线性负载的控制器。 控制器包括反馈单元,脉冲宽度控制单元和过冲减少单元。 反馈单元根据表示流过非线性负载的负载电流的电流反馈信号产生反馈信号。 脉冲宽度控制单元根据反馈信号产生控制信号,以控制转换电路的功率输出。 当负载电流根据电流反馈信号从小于大于预定值变化时,过冲减少单元产生过冲减小信号。 脉冲宽度控制单元接收过冲减小信号并相应地减小控制信号的占空比。 由此,能够提高反馈控制的稳定性,防止对电路的损坏。
    • 5. 发明授权
    • Non-linear load driving circuit and controller
    • 非线性负载驱动电路和控制器
    • US08558483B2
    • 2013-10-15
    • US13118557
    • 2011-05-30
    • Li-Min LeeShian-Sung ShiuChung-Che YuXi Tu
    • Li-Min LeeShian-Sung ShiuChung-Che YuXi Tu
    • H05B37/02
    • H05B33/0824H05B33/0815
    • A non-linear load driving circuit and a controller for controlling a conversion circuit to drive a non-linear load are provided. The controller includes a feedback unit, a pulse width control unit, and an overshoot reduction unit. The feedback unit generates a feedback signal according to a current feedback signal that represents a load current flowing through the non-linear load. The pulse width control unit generates a control signal according to the feedback signal to control a power output of the conversion circuit. The overshoot reduction unit generates an overshoot reduction signal when the load current changes from being smaller than to being greater than a predetermined value according to the current feedback signal. The pulse width control unit receives the overshoot reduction signal and reduces the duty cycle of the control signal accordingly. Thereby, stability of feedback control is improved and damage to circuit is prevented.
    • 提供了非线性负载驱动电路和用于控制转换电路以驱动非线性负载的控制器。 控制器包括反馈单元,脉冲宽度控制单元和过冲减少单元。 反馈单元根据表示流过非线性负载的负载电流的电流反馈信号产生反馈信号。 脉冲宽度控制单元根据反馈信号产生控制信号,以控制转换电路的功率输出。 当负载电流根据电流反馈信号从小于大于预定值变化时,过冲减少单元产生过冲减小信号。 脉冲宽度控制单元接收过冲减小信号并相应地减小控制信号的占空比。 由此,能够提高反馈控制的稳定性,防止对电路的损坏。
    • 6. 发明授权
    • LED driving circuit
    • LED驱动电路
    • US08446098B2
    • 2013-05-21
    • US13244653
    • 2011-09-25
    • Shian-Sung ShiuLi-Min LeeChung-Che YuXi TuYing Wang
    • Shian-Sung ShiuLi-Min LeeChung-Che YuXi TuYing Wang
    • H05B41/16
    • H05B33/0815H05B33/0827
    • An LED driving circuit includes a first and a second LED modules, a first and a second switching converters, an extreme voltage detecting and selecting circuit, a current balance circuit and a controller. The first switching converter transforms electric power of an input power supply into a first output voltage for lighting the first LED module. The second switching converter transforms electric power of the input power supply into a second output voltage for lighting the second LED module. The current balance circuit balances the currents flowing through the first and the second LED modules. The extreme voltage detecting and selecting circuit detects the first and the second LED modules and selects to output one of detecting results. The controller controls the transforming of the first switching converter and the second switching converter to light the first and the second LED modules in response to the outputted detecting result.
    • LED驱动电路包括第一和第二LED模块,第一和第二开关转换器,极值电压检测和选择电路,电流平衡电路和控制器。 第一开关转换器将输入电源的电力变换为第一输出电压以点亮第一LED模块。 第二开关转换器将输入电源的电力转换成用于照亮第二LED模块的第二输出电压。 电流平衡电路平衡流经第一和第二LED模块的电流。 极端电压检测和选择电路检测第一和第二LED模块,并选择输出检测结果之一。 控制器控制第一开关转换器和第二开关转换器的变换,以响应于输出的检测结果点亮第一和第二LED模块。
    • 7. 发明授权
    • Resonant converting circuit and resonant controller
    • 谐振转换电路和谐振控制器
    • US08971059B2
    • 2015-03-03
    • US13447285
    • 2012-04-16
    • Ke PengLi-Min LeeChung-Che YuShian-Sung Shiu
    • Ke PengLi-Min LeeChung-Che YuShian-Sung Shiu
    • H02M3/335H02H7/10H02M1/36H02M3/337H02M1/00
    • H02H7/10H02M1/36H02M3/335H02M3/3376H02M2001/0058Y02B70/1433Y02B70/1491Y02P80/112
    • A current detecting circuit detects a resonant current in a primary side of a resonant converting circuit to generate a current detecting signal. An output detecting circuit generates a feedback signal according to the output voltage. A resonant controller generates a clock signal and adjusts an operating frequency of the clock signal in response to the feedback signal for modulating the output voltage of the resonant circuit. The resonant controller includes a resonance deviation protection unit which detects the current detecting signal according to a phase of the clock signal to determine whether the resonant circuit enters a region of zero current switching or not. When the resonant circuit enters the region of zero current switching, the resonant controller executes a corresponding protection process in response to that the resonant controller operates in a starting mode or a normal operating mode.
    • 电流检测电路检测谐振转换电路的初级侧的谐振电流以产生电流检测信号。 输出检测电路根据输出电压产生反馈信号。 谐振控制器响应于用于调制谐振电路的输出电压的反馈信号而产生时钟信号并调整时钟信号的工作频率。 谐振控制器包括谐振偏差保护单元,其根据时钟信号的相位检测电流检测信号,以确定谐振电路是否进入零电流切换的区域。 当谐振电路进入零电流切换区域时,谐振控制器响应于谐振控制器在启动模式或正常工作模式下运行而执行相应的保护处理。
    • 8. 发明申请
    • MULTI-PHASE DC-DC CONVERTER AND METHOD OF CONTROLLING THE SAME
    • 多相DC-DC转换器及其控制方法
    • US20130169249A1
    • 2013-07-04
    • US13449321
    • 2012-04-18
    • Li-Min LeeQuan GanChung-Che YuShian-Sung Shiu
    • Li-Min LeeQuan GanChung-Che YuShian-Sung Shiu
    • G05F1/00
    • H02M3/1584
    • A multi-phase DC-DC converter and a method of controlling a multi-phase DC-DC converter are disclosed. The multi-phase DC-DC converter is adapted to control a plurality of channels in a multi-phase DC-DC converting circuit for providing an output voltage. The multi-phase DC-DC converter comprises a constant on unit, a plurality of PWM units and a pulse width logic unit. The constant on unit determines a time point of generating a turning on signal indicative of a preset time period according to the output voltage. Each PWM unit generates a PWM signal, and a pulse width thereof is determined according to the turning on signal and currents of the channels. The pulse width logic unit controls the channels according to the corresponding PWM signals generated by the plurality of PWM units.
    • 公开了一种多相DC-DC转换器和一种控制多相DC-DC转换器的方法。 多相DC-DC转换器适于在多相DC-DC转换电路中控制多个通道以提供输出电压。 多相DC-DC转换器包括恒定单元,多个PWM单元和脉冲宽度逻辑单元。 常数单元根据输出电压确定产生指示预设时间段的导通信号的时间点。 每个PWM单元产生PWM信号,并且其脉冲宽度根据通道的导通信号和电流确定。 脉冲宽度逻辑单元根据由多个PWM单元产生的对应的PWM信号控制信道。
    • 9. 发明授权
    • Power converter and pulse width modulation signal controlling apparatus thereof
    • 功率转换器及其脉宽调制信号控制装置
    • US08421511B2
    • 2013-04-16
    • US12909838
    • 2010-10-22
    • Li-Min LeeShian-Sung ShiuChung-Che YuJi-Ming Chen
    • Li-Min LeeShian-Sung ShiuChung-Che YuJi-Ming Chen
    • H03K7/08
    • H02M1/08
    • A pulse width modulation signal controlling apparatus including a signal pin, a core circuit, a setting judging circuit, a signal adjusting and selecting circuit, and a timer circuit is disclosed. The signal pin is connected to a setting device for receiving an external input signal. The setting judging circuit receives and compares a setting signal with a reference value to generate a setting judgment result. The signal adjusting and selecting circuit couples the signal pin to the setting judging circuit and adjusts the external input signal into the setting signal according to the setting device in a first state, and couples the signal pin to the core circuit in a second state. The timer circuit controls the state of the signal adjusting and selecting circuit, wherein the timer circuit sets the signal adjusting and selecting circuit in the first state during a predetermined time period.
    • 公开了一种包括信号引脚,核心电路,设定判断电路,信号调整和选择电路以及定时器电路的脉宽调制信号控制装置。 信号引脚连接到用于接收外部输入信号的设置装置。 设置判断电路接收并将设置信号与参考值进行比较以产生设置判断结果。 信号调节和选择电路将信号引脚耦合到设置判断电路,并根据第一状态的设置装置将外部输入信号调整为设置信号,并将信号引脚耦合到核心电路处于第二状态。 定时器电路控制信号调整和选择电路的状态,其中定时器电路在预定时间段内将信号调节和选择电路设置在第一状态。