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    • 3. 发明授权
    • Control circuit for offline power converter without input capacitor
    • 无输入电容的离线电源转换器的控制电路
    • US09093918B2
    • 2015-07-28
    • US13604339
    • 2012-09-05
    • Ta-Yung YangChih-Hsien HsiehJung-Sheng Chen
    • Ta-Yung YangChih-Hsien HsiehJung-Sheng Chen
    • H02M1/42H02M3/335
    • H02M1/4258H02M3/33507Y02B70/126
    • The present invention provides a control circuit for a power converter. The control circuit includes a switching circuit, an input-voltage detection circuit and a current-limit threshold. The switching circuit generates a switching signal coupled to switch a transformer of the power converter for regulating an output of the power converter in response to a feedback signal. The input-voltage detection circuit generates a control signal when an input voltage of the power converter is lower than a low-input threshold. The feedback signal is generated in response to the output of the power converter. A maximum duty of the switching signal is increased in response to the control signal. The current-limit threshold is for limiting a maximum value of a switching current flowing through the transformer. The current-limit threshold is increased in response to the control signal. An input of the power converter doesn't connect with electrolytic bulk capacitors.
    • 本发明提供了一种用于功率转换器的控制电路。 控制电路包括开关电路,输入电压检测电路和限流阈值。 开关电路产生耦合以切换功率转换器的变压器的开关信号,用于响应于反馈信号调节功率转换器的输出。 当电力转换器的输入电压低于低输入阈值时,输入电压检测电路产生控制信号。 响应于功率转换器的输出产生反馈信号。 开关信号的最大占空比响应于控制信号而增加。 限流阈值用于限制流过变压器的开关电流的最大值。 响应于控制信号增加限流阈值。 电源转换器的输入不与电解大容量电容器连接。
    • 7. 发明授权
    • Controller with valley switching and limited maximum frequency for quasi-resonant power converters
    • 具有谷底开关的控制器和准谐振功率转换器的最大频率受限
    • US08488338B2
    • 2013-07-16
    • US13009639
    • 2011-01-19
    • Ta-Yung YangJung-Sheng ChenLi Lin
    • Ta-Yung YangJung-Sheng ChenLi Lin
    • H02M3/335
    • H02M3/33507H02M2001/0035Y02B70/1433Y02B70/16
    • A controller for a power converter is provided. The controller includes a PWM circuit, a detection circuit, a signal generation circuit and an oscillation circuit. The PWM circuit generates a switching signal coupled to switch a transformer of the power converter. A feedback signal is coupled to the PWM circuit to disable the switching signal. The detection circuit is coupled to the transformer via a resistor for generating a valley signal in response to a signal waveform of the transformer. The signal generation circuit is coupled to receive the feedback signal and the valley signal for generating an enabling signal. The oscillation circuit generates a maximum frequency signal. The maximum frequency signal associates with the enabling signal to generate a pulse signal. The feedback signal is correlated to an output load of the power converter. The maximum frequency of the pulse signal is limited.
    • 提供一种用于功率转换器的控制器。 控制器包括PWM电路,检测电路,信号发生电路和振荡电路。 PWM电路产生耦合以切换功率转换器的变压器的开关信号。 反馈信号耦合到PWM电路以禁用开关信号。 检测电路经由电阻器耦合到变压器,用于响应于变压器的信号波形产生谷值信号。 信号发生电路被耦合以接收反馈信号和谷信号以产生使能信号。 振荡电路产生最大频率信号。 最大频率信号与使能信号相关联以产生脉冲信号。 反馈信号与功率转换器的输出负载相关。 脉冲信号的最大频率受到限制。
    • 8. 发明授权
    • Control circuit for controlling the maximum output current of power converter and method thereof
    • 用于控制功率转换器的最大输出电流的控制电路及其方法
    • US08908396B2
    • 2014-12-09
    • US13611091
    • 2012-09-12
    • Ta-Yung YangLi LinYue-Hong TangJung-Sheng Chen
    • Ta-Yung YangLi LinYue-Hong TangJung-Sheng Chen
    • H02M3/335H02M1/00
    • H02M3/33507H02M2001/0003
    • A control circuit of the power converter according to the present invention comprises a feedback circuit, an output circuit and an adaptive clamping circuit. The feedback circuit generates a feedback signal in accordance with an output of the power converter. The output circuit generates a switching signal in accordance with the feedback signal for regulating the output of the power converter. The adaptive clamping circuit limits the level of the feedback signal under a first level for a first load condition. The feedback circuit determines a slew rate of the feedback signal for increasing the level of the feedback signal from the first level to a second level. The adaptive clamping circuit is disabled and the level of the feedback signal can be increased to the second level for a second load condition.
    • 根据本发明的功率转换器的控制电路包括反馈电路,输出电路和自适应钳位电路。 反馈电路根据功率转换器的输出产生反馈信号。 输出电路根据用于调节功率转换器的输出的反馈信号产生开关信号。 自适应钳位电路在第一负载条件下将反馈信号的电平限制在第一电平。 反馈电路确定用于将反馈信号的电平从第一电平增加到第二电平的反馈信号的转换速率。 自适应钳位电路被禁用,并且反馈信号的电平可以在第二负载条件下增加到第二电平。
    • 9. 发明申请
    • Sputtering Target Having Alarm Function
    • 具有报警功能的溅射目标
    • US20130206589A1
    • 2013-08-15
    • US13372579
    • 2012-02-14
    • Shu-Hua HuMing-Chang LuPai-Ying SuJung-Sheng ChenHsin-Chun Yin
    • Shu-Hua HuMing-Chang LuPai-Ying SuJung-Sheng ChenHsin-Chun Yin
    • C23C14/54C23C14/34
    • C23C14/3407C23C14/54
    • The present invention provides a sputtering target having alarm function. The sputtering target comprises: a target body including a target material and having a bonding plane; a backing body bonded with the bonding plane of the target body; and at least one alarm body embedded in the target body. Wherein, a length of each alarm body, ratios of an area of each alarm body and the sum of area(s) of the at least one alarm body projected onto the bonding plane relative to an area of the bonding plane are controlled in a suitable range. Thus, the bonding strength and the heat-removing efficiency of the sputtering target can be maintained, and the distinguishable material of the alarm body can evolve a gas component distinguishable from a sputtering environment serving as an alarm signal for stopping the sputtering process in time.
    • 本发明提供具有报警功能的溅射靶。 溅射靶包括:包括目标材料并具有接合平面的靶体; 与目标体的接合面接合的背衬体; 以及至少一个嵌入目标体内的报警体。 其中,每个报警主体的长度,每个报警主体的面积的比率和投影到接合平面上相对于接合平面的区域的至少一个报警体的面积之和被控制在合适的 范围。 因此,可以保持溅射靶的接合强度和除热效率,并且报警体的可区分材料可以放出与作为用于在时间上停止溅射处理的报警信号的溅射环境可区分的气体成分。
    • 10. 发明授权
    • Current source circuit
    • 电流源电路
    • US07808309B2
    • 2010-10-05
    • US12022979
    • 2008-01-30
    • Ming-Dou KerJung-Sheng ChenChun-Yuan Hsu
    • Ming-Dou KerJung-Sheng ChenChun-Yuan Hsu
    • G05F1/10G05F3/02
    • G05F3/242
    • A current source circuit is provided. The circuit includes a first transistor and at least one second transistor. A first source/drain terminal of the first transistor is coupled to a bias voltage. A second source/drain terminal of the first transistor is used to receive a current signal, and the second source/drain terminal of the first transistor is coupled to a gate terminal of the first transistor. A first source/drain terminal of the second transistor is grounded. A second source/drain terminal of the second transistor is coupled to a voltage source and outputs a bias current. A gate terminal of the second transistor is coupled to the gate terminal of the first transistor.
    • 提供电流源电路。 该电路包括第一晶体管和至少一个第二晶体管。 第一晶体管的第一源极/漏极端子耦合到偏置电压。 第一晶体管的第二源极/漏极端子用于接收电流信号,并且第一晶体管的第二源极/漏极端子耦合到第一晶体管的栅极端子。 第二晶体管的第一源极/漏极端子接地。 第二晶体管的第二源极/漏极端子耦合到电压源并输出偏置电流。 第二晶体管的栅极端子耦合到第一晶体管的栅极端子。