Patents Assigned to System General Corp.
  • Patent number: 8710813
    Abstract: A low drop-out regulator is disclosed. An unregulated DC input terminal receives an input voltage. A pass circuit is coupled between the unregulated DC input terminal and a regulated DC output terminal for supplying a power to the regulated DC output terminal. An amplifying circuit controls the pass circuit for providing a constant voltage or/and a constant current in response to an output voltage or/and an output current.
    Type: Grant
    Filed: April 8, 2009
    Date of Patent: April 29, 2014
    Assignee: System General Corp.
    Inventors: Ta-Yung Yang, Jenn-Yu Lin
  • Publication number: 20140103909
    Abstract: A method and a circuit for detecting positions for a motor are provided. The circuit includes a control circuit for generating PWM signals, high-side transistors and low-side transistors, resistors and a microcontroller. The high-side transistors and the low-side transistors generate voltage signals configured to drive the motor. The resistors coupled to the low-side transistors generate sensing signals in response to motor currents and back-EMF signals. The microcontroller controls the control circuit. the PWM signals are utilized to control the high-side transistors and the low-side transistor for generating the voltage signals. The high-side transistors are coupled to the input power source. The low-side transistors are coupled to the ground via the resistors. The control circuit determines the motor position in accordance with the sensing signals.
    Type: Application
    Filed: October 8, 2013
    Publication date: April 17, 2014
    Applicant: SYSTEM GENERAL CORP.
    Inventors: Yi-Chi Lin, Yung-Sheng Wu
  • Patent number: 8698474
    Abstract: A start-up circuit with low standby power loss for power converters according to present invention comprises a first diode and a second diode coupled to an input voltage of the power converter. A start-up resistor is coupled to the join of the first diode and the second diode. A high-voltage switch is coupled to the start-up resistor to generate a power source. A control circuit generates a switching signal for switching a transformer. A detection circuit generates a disable signal in response to the input voltage to disable the switching signal. A winding of the transformer is coupled to the power source to generate the power for the power source. The high-voltage switch is turned off to cut off the start-up resistor for saving the power loss once the voltage of the power source is higher than a threshold.
    Type: Grant
    Filed: April 27, 2011
    Date of Patent: April 15, 2014
    Assignee: System General Corp.
    Inventors: Ta-Yung Yang, Wei-Hsuan Huang, Rui-Hong Lu
  • Publication number: 20140092645
    Abstract: A control circuit of a power converter is provided. It comprises a signal generation circuit generating an oscillation signal in accordance with an output load. A PWM circuit generates a switching signal according to a voltage-loop signal, a current-loop signal and the oscillation signal for regulating an output of the power converter. A regulation circuit receives a compensation signal for an output cable compensation and a wake-up. The compensation signal is coupled to increase a switching frequency of the switching signal once the output of the power converter is lower than a low-voltage threshold. The control circuit reduces the voltage drop of the output when the output load is changed.
    Type: Application
    Filed: September 30, 2013
    Publication date: April 3, 2014
    Applicant: SYSTEM GENERAL CORP.
    Inventor: TA-YUNG YANG
  • Patent number: 8669728
    Abstract: An angle detection apparatus for a rotor of a motor includes a period counter, a step period generator, and an angle generator. The period counter receives a rotor sensing signal, and calculates a plurality of time ranges of a plurality of pulses of the rotor sensing signal. The step period generator generates a ratio value and an error signal according to an average time range value of the time ranges and a set value. The step period generator further adjusts the ratio value according to the error signal, and generates a step time according to the adjusted ratio value and the average time range value. The angle generator receives the step time and the rotor sensing signal, and obtains an angle detection result according to the rotor sensing signal and the step time.
    Type: Grant
    Filed: January 17, 2012
    Date of Patent: March 11, 2014
    Assignee: System General Corp.
    Inventors: Yi-Min Hsu, Chung-Hui Yeh, Pei-Sheng Tsu
  • Patent number: 8665621
    Abstract: The power supply according to the present invention comprises a transformer, a power switch, a signal generating circuit, an on-time detection circuit, and a delay circuit. The transformer receives an input voltage and generates an output voltage. The power switch switches the transformer for regulating the output voltage. The signal generating circuit generates a switching signal for controlling switching of the power switch. The on-time detection circuit detects an on-time of the power switch and generates a short-circuit signal. The delay circuit counts to a first delay time or to a second delay time in response to a feedback signal of the power supply and the short-circuit signal to generate a turn off signal for controlling the signal generating circuit to latch the switching signal.
    Type: Grant
    Filed: October 28, 2011
    Date of Patent: March 4, 2014
    Assignee: System General Corp.
    Inventors: Meng-Jen Tsai, Ho-Tzu Chueh, Cheng-Chi Hsueh, Chien-Yuan Lin
  • Patent number: 8659916
    Abstract: A control circuit for a resonant power converter and a control method thereof are disclosed. The control circuit comprises a first transistor and a second transistor switching a transformer through a resonant tank. A controller receives a feedback signal for generating a first switching signal and a second switching signal coupled to drive the first transistor and the second transistor respectively. The feedback signal is correlated to an output of the resonant power converter. A diode is coupled to the second transistor for detecting the state of the second transistor for the controller. The first switching signal and the second switching signal are modulated to achieve a zero voltage switching (ZVS) for the second transistor.
    Type: Grant
    Filed: May 23, 2012
    Date of Patent: February 25, 2014
    Assignee: System General Corp.
    Inventors: Ta-Yung Yang, Tien-Chi Lin
  • Patent number: 8654546
    Abstract: A control circuit of a resonant power converter is disclosed. The control circuit comprises a first transistor and a second transistor for switching a transformer and a resonant tank comprising a capacitor and an inductor. A controller is configured to receive a feedback signal correlated to the output of the power converter for generating a first switching signal and a second switching signal to drive the first transistor and the second transistor, respectively. A diode coupled to the first transistor and the resonant tank for detecting the state of the first transistor and generating a detection signal for the controller. The detection signal indicates if the transistors are in a zero voltage switching (ZVS) state. If the transistors are not in the ZVS state, the switching frequency of the transistors will be increased.
    Type: Grant
    Filed: March 21, 2012
    Date of Patent: February 18, 2014
    Assignee: System General Corp.
    Inventors: Tien-Chi Lin, Hang-Seok Choi, Ta-Yung Yang
  • Publication number: 20140043002
    Abstract: A control circuit with deep burst mode for power converter according to the present invention comprises a load detection circuit and a PWM circuit. The load detection circuit generates a switching control signal in response to a feedback signal. The feedback signal is correlated to a load condition of the power converter. The PWM circuit generates a switching signal to regulate an output of the power converter in response to the switching control signal and the feedback signal. The control circuit performs a deep burst mode to switch the switching signal only one time during each deep burst period when the load condition of the power converter is a very light-load. Therefore, switching loss is reduced so that the power consumption of the power converter is also reduced.
    Type: Application
    Filed: August 13, 2012
    Publication date: February 13, 2014
    Applicant: SYSTEM GENERAL CORP.
    Inventors: CHI-CHEN CHUNG, WEI-HSUAN HUANG
  • Publication number: 20140036548
    Abstract: A control circuit of a power converter is provided. It comprises a voltage detection circuit detecting a reflected signal for generating a voltage-loop signal. A current detection circuit detects a current of a transformer for generating a current-loop signal. An oscillator generates an oscillation signal in accordance with an output load of the power converter. A PWM circuit generates a switching signal according to the voltage-loop signal, the current-loop signal and the oscillation signal for regulating an output of the power converter. A load detection circuit receives a detection signal through an signal-transfer device for increasing a switching frequency of the switching signal. The detection signal is generated once the output is lower than a low-voltage threshold. The oscillation signal determines the switching frequency of the switching signal. The control circuit reduces the voltage drop of the output when the output load is changed.
    Type: Application
    Filed: August 2, 2013
    Publication date: February 6, 2014
    Applicant: SYSTEM GENERAL CORP.
    Inventors: TA-YUNG YANG, LI LIN, JUNG-SHENG CHEN
  • Publication number: 20140035500
    Abstract: A back electromotive force (EMF) detector for a motor is disclosed. The back EMF detector includes an upper switch, a lower switch, a current sensing resistor and a first to third resistance providers. The upper and lower switches are controlled by a first and a second control signal respectively. The current sensing resistor coupled between the lower switch and a reference ground voltage. A first terminal of the first resistance provider coupled to the upper switch, and a back EMF detection result is generated at a second terminal of the first resistance provider. The second resistance provider coupled between the reference ground voltage and the first resistance provider. The third resistance provider is coupled between the coupled terminal of the first and second resistance provider and the lower switch. Wherein, the first to the third resistance providers are determined by at least one characteristic parameter of the motor.
    Type: Application
    Filed: July 31, 2012
    Publication date: February 6, 2014
    Applicant: SYSTEM GENERAL CORP.
    Inventors: Yi-Chi Lin, Chih-Ping Yin, Shih-Jen Yang
  • Publication number: 20140009976
    Abstract: A control circuit and a method for controlling a power converter are provided. The method for controlling the power converter includes the following steps. A detection signal is received from the secondary side of the power transformer and a first switching signal is generated in accordance with the detection signal. A second switching signal is generated in accordance with the first switching signal. A voltage signal is generated in accordance with the second switching signal. A comparison signal is generated in accordance with the first switching signal and the second switching signal. The voltage signal and the comparison signal are compared for outputting a comparison result. A gate signal is generated in accordance with the detection signal and the comparison result to control on and off states of a synchronization switch.
    Type: Application
    Filed: July 3, 2013
    Publication date: January 9, 2014
    Applicant: SYSTEM GENERAL CORP.
    Inventors: Chou-Sheng Wang, Chia-Yo Yeh, Rui-Hong Lu, Jhih-Da Hsu, Ying-Chieh Su
  • Publication number: 20130329464
    Abstract: A control circuit for a power converter and a digital power control circuit for a power converter are provided. The control circuit comprises a microcontroller, an oscillation circuit, an analog-to-digital converter and a signal generator. The microcontroller comprises a flash memory. The oscillation circuit comprises a phase lock loop for generating a clock signal. The analog-to-digital converter generates a digital feedback signal for the microcontroller corresponding to an output of the power converter. The signal generator is configured to receive the clock signal and data of the microcontroller for generating a switching signal. The switching signal is configured to switch a transformer for regulating the output of the power converter corresponding to the output of the microcontroller.
    Type: Application
    Filed: May 23, 2013
    Publication date: December 12, 2013
    Applicant: SYSTEM GENERAL CORP.
    Inventors: Ta-Yung Yang, Pei-Sheng Tsu, Yi-Min Hsu, Chung-Hui Yeh
  • Patent number: 8593833
    Abstract: A control circuit of a power converter according to the present invention comprises an output circuit, at least one input circuit and an input-voltage detection circuit. The output circuit generates a switching signal for regulating an output of the power converter in response to at least one feedback signal. The switching signal is coupled to switch a transformer of the power converter. The input circuit samples at least one input signal for generating the feedback signal. The input signal is correlated to the output of the power converter. The input-voltage detection circuit generates an input-voltage signal in response to the level of the an input voltage of the power converter. The input circuit will not sample the input signal when the input-voltage signal is lower than a threshold. The control circuit can eliminate the need of the input capacitor for improving the reliability of the power converter.
    Type: Grant
    Filed: January 25, 2011
    Date of Patent: November 26, 2013
    Assignee: System General Corp.
    Inventors: Ta-Yung Yang, Li Lin
  • Patent number: 8587964
    Abstract: A control circuit for power converter according to the present invention comprises a PWM circuit generating a switching signal coupled to switch a transformer of the power converter. A feedback input circuit is coupled to an output of the power converter for generating a feedback signal. The feedback signal is coupled to turn off the switching signal. A detection circuit is coupled to the transformer for generating a valley signal in response to a waveform of the transformer. A frequency-variation circuit is coupled to receive the feedback signal and the valley signal for generating a frequency-variation signal. The frequency-variation signal is coupled to turn on the switching signal. A burst circuit is coupled to receive the feedback signal for generating a burst signal to disable the switching signal.
    Type: Grant
    Filed: July 14, 2011
    Date of Patent: November 19, 2013
    Assignee: System General Corp.
    Inventors: Ta-yung Yang, Jung-Sheng Chen, Chuh-Ching Li, Chih-Hsien Hsieh
  • Patent number: 8576595
    Abstract: A biased current-limit circuit for limiting a maximum output power of a power converter includes an oscillator for generating a pulse signal and an oscillation signal. A waveform generator generates a waveform signal in response to the oscillation signal. A sample-hold circuit is used to sample the waveform signal to generate a hold signal in response to a switching signal. The sample-hold circuit further samples the hold signal to generate a current-limit threshold in response to a second-sampling signal. A current comparator is utilized to compare a current-sensing signal with the current-limit threshold to limit a maximum on-time of the switching signal.
    Type: Grant
    Filed: September 21, 2011
    Date of Patent: November 5, 2013
    Assignee: System General Corp.
    Inventors: Shao-Chun Huang, Chien-Tsun Hsu, Jian-Ming Fu, Wei-Hsuan Huang, Ta-Yung Yang
  • Publication number: 20130279220
    Abstract: A switching control circuit of a power converter according to the present invention comprises an input circuit and a clock generator. The input circuit is coupled to receive a feedback signal for generating a switching signal. The clock generator generates a clock signal to determine a switching frequency of the switching signal. The feedback signal is correlated to an output of the power converter. The switching signal is coupled to switch a transformer of the power converter for regulating the output of the power converter. The pulse width of the switching signal is reduced before the switching frequency of the switching signal is changed from a low frequency to a high frequency.
    Type: Application
    Filed: April 22, 2013
    Publication date: October 24, 2013
    Applicant: SYSTEM GENERAL CORP.
    Inventor: TA-YUNG YANG
  • Publication number: 20130279206
    Abstract: A control circuit for an inverter according to the present invention comprises a PWM circuit and a controller. The PWM circuit generates switching signals in accordance with a PWM control signal. The switching signals are coupled to switch a transformer through transistors for generating an output of the inverter. The controller is coupled to receive a command signal and an input signal for generating the PWM control signal. The input signal is correlated to an input voltage waveform of the inverter. The command signal is utilized to determine a power level of the output of the inverter. The advantages of the control circuit are lower cost, small size, good power factor and higher reliability.
    Type: Application
    Filed: April 18, 2013
    Publication date: October 24, 2013
    Applicant: SYSTEM GENERAL CORP.
    Inventor: TA-YUNG YANG
  • Publication number: 20130271271
    Abstract: A wall control interface for power management includes a transmitting circuit that generates a switching signal to control a switch and achieve a phase modulation to a power line signal in response to a transmitting-data. A receiving circuit is coupled to detect the phase of the power line signal for generating a data signal and a receiving-data in response to the phase of the power line signal. The receiving circuit further generates a control signal to control power of a load in accordance with the data signal or the receiving-data. The phase modulation is achieved by controlling a turn-on angle of the power line signal. The switch remains in a turn-on state during the normal condition, which achieves good power and low current harmonic. The phase modulation is only performed during the communication of the power management.
    Type: Application
    Filed: May 15, 2013
    Publication date: October 17, 2013
    Applicant: SYSTEM GENERAL CORP.
    Inventors: Ta-Yung Yang, Jenn-Yu G. Lin, Yi-Chi Lin, Cheng-Chi Hsueh
  • Patent number: 8559196
    Abstract: A control circuit of a power converter for light-load power saving according to the present invention comprises a first feedback circuit coupled to an output voltage of the power converter to receive a first feedback signal. A second feedback circuit is coupled to the output voltage to receive a second feedback signal. A control circuit generates a switching signal for switching a transformer of the power converter and regulating the output voltage of the power converter in response to the first feedback signal and the second feedback signal. The switching signal is generated in accordance with the first feedback signal when an output load is high. The switching signal is generated in accordance with the second feedback signal during a light-load condition.
    Type: Grant
    Filed: March 9, 2010
    Date of Patent: October 15, 2013
    Assignee: System General Corp.
    Inventors: Ta-Yung Yang, Wei-Hsuan Huang, Chuh-Ching Li, Rui-Hong Lu, Jenn-Yu G. Lin