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    • 1. 发明授权
    • Adaptive sampling circuit for detecting the demagnetized voltage of the transformer
    • 用于检测变压器退磁电压的自适应采样电路
    • US09344002B2
    • 2016-05-17
    • US13742529
    • 2013-01-16
    • SYSTEM GENERAL CORP.
    • Ta-Yung YangLi LinJung-Sheng ChenChih-Hsien Hsieh
    • H02M7/48H02M3/335G01R31/42
    • H02M7/48G01R31/42H02M3/33523
    • An adaptive sampling circuit of the power converter according to the present invention comprises a sample-and-hold unit and a signal-generation circuit. The sample-and-hold unit is coupled to a transformer to generate a feedback signal by sampling a demagnetized voltage of the transformer in response to a sample signal. The signal-generation circuit generates the sample signal in response to a magnetized voltage of the transformer, the demagnetized voltage of the transformer, a switching signal and a code. The sample signal is used for sampling the demagnetized voltage. The feedback signal is correlated to an output voltage of the power converter. The switching signal is generated in response to the feedback signal for switching the transformer and regulating the output of the power converter. The adaptive sampling circuit is used to precisely measure the demagnetized voltage of the transformer without the limitation of the transformer design.
    • 根据本发明的功率转换器的自适应采样电路包括采样保持单元和信号发生电路。 采样和保持单元耦合到变压器以通过响应于采样信号对变压器的退磁电压进行采样来产生反馈信号。 信号发生电路响应于变压器的磁化电压,变压器的退磁电压,开关信号和代码产生采样信号。 采样信号用于对退磁电压进行采样。 反馈信号与功率转换器的输出电压相关。 响应于用于切换变压器的反馈信号和调节功率转换器的输出而产生开关信号。 自适应采样电路用于精确测量变压器的退磁电压,而不受变压器设计的限制。
    • 6. 发明申请
    • METHOD FOR PROGRAMMABLE PRIMARY-SIDE-REGULATED POWER CONVERTER
    • 可编程原边调节功率转换器的方法
    • US20140362608A1
    • 2014-12-11
    • US14295329
    • 2014-06-03
    • SYSTEM GENERAL CORP.
    • Ta-Yung Yang
    • H02M3/335
    • H02M3/33576H02M2001/0032Y02B70/16
    • The invention discloses a method for controlling a programmable primary-side-regulated power converter. The method includes the following steps. A light load situation is enabled for a first time period at a secondary side of a transformer. A transmit-code is generated at the secondary side of the transformer. A current pulse signal is generated at the secondary side of the transformer according to the transmit-code after the first time period. The light load situation is detected at a primary side of the transformer for the first time period. A current signal is detected by detecting a primary side switching current of the transformer. A receive-code is generated according to the current signal. An output current and/or an output voltage of the power converter is generated in accordance with the receive-code. The transmit-code and the receive-code are correlated. The current pulse signal and the current signal are correlated.
    • 本发明公开了一种用于控制可编程一次侧调节功率转换器的方法。 该方法包括以下步骤。 在变压器的次级侧,第一时间段使能轻负载情况。 在变压器的次级侧产生发送代码。 根据第一时间段之后的发送代码,在变压器的次级侧产生电流脉冲信号。 第一次在变压器的初级侧检测到轻负载情况。 通过检测变压器的初级侧开关电流来检测电流信号。 根据当前信号生成接收码。 根据接收码产生功率转换器的输出电流和/或输出电压。 发送代码和接收代码是相关的。 当前脉冲信号和电流信号相关。
    • 7. 发明授权
    • Successive approximation multiplier-divider for signal process and method for signal process
    • 用于信号处理的逐次逼近乘法器和信号处理方法
    • US08729930B2
    • 2014-05-20
    • US13666080
    • 2012-11-01
    • System General Corp.
    • Ta-Yung Yang
    • H03K25/00H03K23/00H03K21/00
    • H03M1/66
    • A multiplier-divider circuit for signal process according to the present invention comprises a digital-to-analog converter, a first counter, a second counter, an oscillation circuit, and a control-logic apparatus. The digital-to-analog converter generates an output signal of the multiplier-divider circuit in accordance with the value of an input signal and a first signal. The first counter generates the first signal in response to a clock signal and the duty cycle of the input signal. The second counter generates a second signal in response to the clock signal and the period of the input signal. The oscillation circuit generates the clock signal in accordance with a third signal. The control-logic apparatus generates the third signal in response to the second signal and a constant. The first signal is correlated to the duty cycle of the input signal. The second signal is correlated to the period of the input signal.
    • 根据本发明的用于信号处理的乘法器分频器电路包括数模转换器,第一计数器,第二计数器,振荡电路和控制逻辑器件。 数模转换器根据输入信号和第一信号的值产生乘法器 - 分频器电路的输出信号。 第一计数器响应于时钟信号和输入信号的占空比产生第一信号。 第二计数器响应于时钟信号和输入信号的周期产生第二信号。 振荡电路根据第三信号产生时钟信号。 控制逻辑装置响应于第二信号产生第三信号和常数。 第一个信号与输入信号的占空比相关。 第二信号与输入信号的周期相关。
    • 9. 发明申请
    • CONTROL CIRCUIT OF POWER CONVERTER AND METHOD THEREFORE
    • 电源转换器的控制电路及其方法
    • US20150042303A1
    • 2015-02-12
    • US14453618
    • 2014-08-07
    • SYSTEM GENERAL CORP.
    • Ta-Yung YangHung-Chun Chen
    • H02M3/156
    • H02M3/156H02M3/33523H02M2001/0032Y02B70/16
    • A control circuit of a power converter and a method therefore are provided. The control circuit comprises an input circuit, an amplifier, a PWM circuit, and a power management circuit. The input circuit is coupled to a transformer to generate a sensing signal related to an output voltage of the power converter. The amplifier generates a feedback signal according to the sensing signal and a reference signal. The PWM circuit generates a switching signal according to the feedback signal for switching the transformer and regulating the output voltage of the power converter. The power management circuit controls the reference signal according to the feedback signal. The power management circuit includes a timer for determining a period, and the output voltage of the power converter decreases while an output power of the power converter is lower than a light-load threshold. A method for controlling the control circuit is also disclosed.
    • 因此,提供了功率转换器的控制电路及其方法。 控制电路包括输入电路,放大器,PWM电路和电源管理电路。 输入电路耦合到变压器以产生与功率转换器的输出电压相关的感测信号。 放大器根据感测信号和参考信号产生反馈信号。 PWM电路根据反馈信号产生开关信号,用于切换变压器并调节功率转换器的输出电压。 电源管理电路根据反馈信号控制参考信号。 功率管理电路包括用于确定周期的定时器,并且功率转换器的输出功率低于轻负载阈值时功率转换器的输出电压降低。 还公开了一种用于控制控制电路的方法。