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    • 31. 发明授权
    • Resonant ballast circuit
    • 谐振镇流器电路
    • US07436126B2
    • 2008-10-14
    • US11608080
    • 2006-12-07
    • Ta-yung Yang
    • Ta-yung Yang
    • H05B37/02
    • H05B41/2856Y10S315/05
    • A low cost ballast circuit for fluorescent lamp is provided. A fluorescent lamp is connected in series with a resonant circuit having a transformer. A first switch and a second switch are coupled to switch the resonant circuit. A first winding of the transformer is connected in series with a capacitor to form the resonant circuit. A second winding and a third winding of the transformer are used for generating control signals in response to a switching current of the resonant circuit. The first switch and the second switch are controlled in response to the control signals. Furthermore, soft switching operation for the first switch and the second switch can be achieved by the present invention.
    • 提供了一种用于荧光灯的低成本镇流器电路。 荧光灯与具有变压器的谐振电路串联连接。 耦合第一开关和第二开关以切换谐振电路。 变压器的第一绕组与电容器串联连接以形成谐振电路。 变压器的第二绕组和第三绕组用于响应谐振电路的开关电流产生控制信号。 响应于控制信号来控制第一开关和第二开关。 此外,通过本发明可以实现第一开关和第二开关的软开关操作。
    • 32. 发明申请
    • Control circuit with adaptive minimum on time for power converters
    • 电源转换器具有自适应最小导通时间的控制电路
    • US20080123372A1
    • 2008-05-29
    • US11605302
    • 2006-11-29
    • Ta-yung Yang
    • Ta-yung Yang
    • H02M3/335
    • H02M3/33507H02M2001/0022
    • A control circuit includes a switch coupled to a transformer of a power converter for switching the transformer. A sampling circuit is coupled to the transformer to sample a reflected voltage of the transformer to generate a voltage signal. A switching circuit generates a switching signal to control the switch in response to the voltage signal. The minimum on time of the switching signal is changed in response to the change of an input voltage of the power converter. Because the pulse width of the reflected voltage is narrower at light load, the minimum on time of the switching signal helps the reflected voltage detection.
    • 控制电路包括耦合到用于切换变压器的功率转换器的变压器的开关。 采样电路耦合到变压器以对变压器的反射电压进行采样以产生电压信号。 开关电路产生开关信号以响应于电压信号来控制开关。 响应于功率转换器的输入电压的变化而改变开关信号的最小导通时间。 由于反射电压的脉冲宽度在轻载时较窄,所以开关信号的最小导通时间有助于反射电压的检测。
    • 33. 发明申请
    • CURRENT-MODE RESONANT BALLAST
    • 电流模式谐振器
    • US20080088249A1
    • 2008-04-17
    • US11535988
    • 2006-09-28
    • Jea-Sen LinTa-yung Yang
    • Jea-Sen LinTa-yung Yang
    • H05B41/36
    • H05B41/2825Y10S315/05Y10S315/07
    • A lower-cost ballast circuit for fluorescent lamps is provided. A resonant circuit is formed by a series connection of an inductor and a capacitor to operate the fluorescent lamp. A first circuit and a second circuit are coupled to switch the resonant circuit. Taking the first circuit for instance, a first resistor is connected in series with a first switch for generating a first control signal in response to a switching current of the first switch. The first switch is turned on once the first control signal is lower than a first zero-threshold. After a quarter resonant period of the resonant circuit, the first switch is turned off once the first control signal is lower than a first threshold. Therefore, a soft switching for the first switch is achieved.
    • 提供了一种用于荧光灯的低成本镇流器电路。 谐振电路由电感器和电容器的串联连接形成,以操作荧光灯。 耦合第一电路和第二电路以切换谐振电路。 以第一电路为例,第一电阻器与第一开关串联连接,用于响应于第一开关的开关电流产生第一控制信号。 一旦第一控制信号低于第一零阈值,第一开关被接通。 在谐振电路的四分之一谐振周期之后,一旦第一控制信号低于第一阈值,第一开关被断开。 因此,实现了第一开关的软开关。
    • 35. 发明申请
    • Primary side controlled switching regulator
    • 初级侧控制开关调节器
    • US20070171682A1
    • 2007-07-26
    • US11338791
    • 2006-01-25
    • Ta-yung YangPei-Hsuan Cheng
    • Ta-yung YangPei-Hsuan Cheng
    • H02M3/335
    • H02M1/44H02M3/335H02M2001/0006
    • A switching regulator includes a transformer having a primary winding and an auxiliary winding connected to the supply rail of the switching regulator. The primary winding is coupled to the positive supply rail. The auxiliary winding is coupled to the negative supply rail. A switch is connected in series with the primary winding and the auxiliary winding for switching the transformer. A control circuit is coupled to the switch and the auxiliary winding to generate a switching signal for switching the switch and regulating the output of the switching regulator. A supplied capacitor is connected to the control circuit to supply the power to the control circuit. The auxiliary winding having a leakage inductor stores a stored energy when the switch is on. A diode is coupled from the negative supply rail to the supplied capacitor. The stored energy of the leakage inductor is discharged to the supplied capacitor through the diode once the switch is off. The connection of the transformer and the switch improves the efficiency and reduces the EMI.
    • 开关调节器包括具有初级绕组和连接到开关调节器的电源轨的辅助绕组的变压器。 初级绕组耦合到正电源轨。 辅助绕组耦合到负电源轨。 开关与初级绕组和辅助绕组串联连接,用于切换变压器。 控制电路耦合到开关和辅助绕组,以产生用于切换开关并调节开关调节器的输出的开关信号。 所提供的电容器连接到控制电路以向控制电路供电。 具有漏电感的辅助绕组在开关接通时存储存储的能量。 二极管从负电源轨耦合到所提供的电容器。 一旦开关断开,漏电感器的存储能量通过二极管放电到所提供的电容器。 变压器和开关的连接提高了效率并降低了EMI。
    • 36. 发明申请
    • SWITCHING CONTROLLER HAVING FREQUENCY HOPPING FOR POWER SUPPLIES AND METHOD THEREFOR
    • 具有电力供应频率的开关控制器及其方法
    • US20070139980A1
    • 2007-06-21
    • US11679729
    • 2007-02-27
    • Ta-yung YangGuo-Kiang HungSong-Yi Lin
    • Ta-yung YangGuo-Kiang HungSong-Yi Lin
    • H02M1/12
    • H02M3/33523H02M1/44
    • A switching controller having frequency hopping is used for reducing the EMI of a power supply. A pattern generator generates a digital pattern code in response to a clock signal. An oscillator generates an oscillation signal for determining a switching frequency of a switching signal. A programmable capacitor coupled to the oscillator modulates the switching frequency in response to the variation of the digital pattern code. An attenuator connected to a voltage feedback loop attenuates a feedback signal. The feedback signal controls the pulse width of the switching signal. A programmable resistor coupled to the attenuator determines an attenuation rate of the attenuator in response to the digital pattern code. The attenuation rate is increased as the switching frequency increases. The pulse width of the switching signal is thus reduced, which compensates the decrease of the switching period and keeps the output power and the output voltage constant.
    • 具有跳频的开关控制器用于降低电源的EMI。 模式发生器响应于时钟信号产生数字模式码。 振荡器产生用于确定开关信号的开关频率的振荡信号。 耦合到振荡器的可编程电容器响应于数字图形码的变化来调制开关频率。 连接到电压反馈环路的衰减器衰减反馈信号。 反馈信号控制开关信号的脉冲宽度。 耦合到衰减器的可编程电阻器响应于数字图案码确定衰减器的衰减率。 衰减率随着开关频率的增加而增加。 因此,开关信号的脉冲宽度被减小,这补偿了开关周期的减小并保持输出功率和输出电压恒定。
    • 37. 发明申请
    • Frequency hopping control circuit for reducing EMI of power supplies
    • 用于降低电源EMI的跳频控制电路
    • US20070132440A1
    • 2007-06-14
    • US11298023
    • 2005-12-08
    • Ta-yung Yang
    • Ta-yung Yang
    • G05F3/00
    • G05F1/562
    • A control circuit having frequency hopping capability is used for reducing the EMI of a power supply. A switching circuit is coupled to a feedback circuit to generate a switching signal for regulating an output of the power supply. A first oscillator determines the switching frequency of the switching signal. A second oscillator is coupled to the first oscillator to modulate the switching frequency of the switching signal for reducing the EMI of the power supply. An output of the second oscillator controls the attenuation rate of the feedback signal of the feedback circuit. Therefore, even if the switching frequency is hopped, the output power and the output voltage can still be kept constant.
    • 具有跳频能力的控制电路用于降低电源的EMI。 开关电路耦合到反馈电路以产生用于调节电源的输出的开关信号。 第一振荡器确定开关信号的开关频率。 第二振荡器耦合到第一振荡器以调制开关信号的开关频率以减小电源的EMI。 第二振荡器的输出控制反馈电路的反馈信号的衰减率。 因此,即使跳跃开关频率,输出功率和输出电压仍然可以保持恒定。
    • 38. 发明授权
    • Flyback ballast for fluorescent lamp
    • 荧光灯反激式镇流器
    • US07218060B1
    • 2007-05-15
    • US11370280
    • 2006-03-07
    • Jea-Sen LinTa-yung Yang
    • Jea-Sen LinTa-yung Yang
    • H05B37/02
    • H05B41/295
    • A flyback ballast for fluorescent lamps is provided. A transformer is utilized to control the power delivered to the lamp. A first switch is coupled to the first winding of the transformer. A first filter is coupled to a second filter through a first terminal pair of a lamp. The second switch is coupled to the third switch through a second terminal pair of the lamp. A switching signal is provided to the first switch to control the power of the transformer delivered to the filters. A second switching signal and a third switching signal are provided to the second switch and the third switch respectively to control the power delivered to the lamp. No glow discharge is occurred during the preheating interval.
    • 提供荧光灯的回扫镇流器。 变压器用于控制传递到灯的功率。 第一开关耦合到变压器的第一绕组。 第一滤光器通过灯的第一端子对耦合到第二滤光器。 第二开关通过灯的第二端子对耦合到第三开关。 开关信号被提供给第一开关以控制输送到滤波器的变压器的功率。 第二开关信号和第三开关信号分别提供给第二开关和第三开关,以控制输送到灯的功率。 在预热间隔期间不发生辉光放电。
    • 39. 发明申请
    • Method and apparatus for measuring reflected voltage of transformer
    • 测量变压器反射电压的方法和装置
    • US20070081599A1
    • 2007-04-12
    • US11245650
    • 2005-10-07
    • Ta-yung Yang
    • Ta-yung Yang
    • H04B3/00H04L7/00
    • G01R31/31917G01R31/31924H02M3/33523
    • A method and apparatus of sampling reflected voltage signal of a transformer is proposed. Sampling signals are used for generating hold voltages by sequentially sampling the reflected voltage from the transformer. A buffer circuit generates a buffer signal from the higher voltage of hold voltages. A sampling switch periodically conducts the buffer signal to produce a feedback signal according to an output of the buffer circuit. The feedback signal is proportional to output voltage of the transformer. A threshold signal added by the reflected voltage signal produces a level-shift signal. A discharge-time signal is enabled once the switching signal is disabled. The discharge-time signal is disabled once the level-shift signal is lower than output of the buffer circuit. The pulse width of the discharge-time signal is correlated to the discharge time of the transformer. The sampling signals are enabled to generate hold voltages when discharge-time signal is enabled.
    • 提出了一种对变压器的反射电压信号进行采样的方法和装置。 采样信号用于通过对来自变压器的反射电压进行顺序采样来产生保持电压。 缓冲电路从较高电压的保持电压产生缓冲信号。 采样开关周期性地进行缓冲器信号,根据缓冲电路的输出产生反馈信号。 反馈信号与变压器的输出电压成比例。 由反射电压信号相加的阈值信号产生电平移位信号。 一旦开关信号被禁止,放电时间信号被使能。 一旦电平移位信号低于缓冲电路的输出,放电时间信号被禁止。 放电时间信号的脉冲宽度与变压器的放电时间相关。 当使能放电时间信号时,使能采样信号产生保持电压。