Patents Assigned to System General Corporation
  • Patent number: 8102133
    Abstract: A BLDC (brushless direct current) motor system of the present invention includes a control circuit, a sequencer, a driving circuit, and a BLDC motor. The control circuit determines the maximum torque and the maximum speed of the BLDC motor. The control circuit includes an over-current detection circuit to generate a reset signal in response to a switching current of the BLDC motor. The reset signal is generated when the switching current of the BLDC motor exceeds a threshold. A pulse width of the PWM signal is correlated to the level of a speed-control signal and the level of the torque-control signal. The pulse width of the PWM signal is also controlled by the reset signal generated by the over-current detection circuit.
    Type: Grant
    Filed: June 22, 2009
    Date of Patent: January 24, 2012
    Assignee: System General Corporation
    Inventors: Ta-Yung Yang, Pei-Sheng Tsu, Shih-Jen Yang, Yi-Min Hsu, Chung-Hui Yeh
  • Publication number: 20110305053
    Abstract: A switching control circuit for a switching power converter is provided. The switching control circuit is coupled to a switching device and an auxiliary winding of a transformer. The switching control circuit includes a valley detecting circuit, a valley lock circuit, and a PWM circuit. The valley detecting circuit is coupled to receive a reflected voltage signal from the auxiliary winding of the transformer for outputting a control signal in response to the reflected voltage signal. The valley lock circuit is coupled to receive the control signal for outputting a judging signal in response to the control signal during a first period and a second period following the first period. The PWM circuit outputs a switching signal in response to the judging signal.
    Type: Application
    Filed: December 8, 2010
    Publication date: December 15, 2011
    Applicant: SYSTEM GENERAL CORPORATION
    Inventors: Chao-Chih Lin, Ying-Chieh Su, Jhih-Da Hsu, Chia-Yo Yeh, Wei-Ting Wang
  • Patent number: 8072787
    Abstract: An synchronous rectifying apparatus or synchronous rectifying circuit of a soft switching power converter is provided to improve the efficiency. The integrated synchronous rectifying circuit includes: a power transistor connected from a transformer to the output of the power converter for rectifying; a controller having a latch circuit generates a drive signal to control the power transistor in response to a switching signal generated by a winding of the transformer in response to the switching of the transformer. The controller turns off the power transistor when the switching signal is lower than a low-threshold. The power transistor is turned on when the switching signal is higher than a high-threshold. Furthermore, a maximum-on-time circuit provided in the controller is applied to generate a maximum-on-time signal for limiting the maximum on time of the power transistor.
    Type: Grant
    Filed: October 26, 2007
    Date of Patent: December 6, 2011
    Assignee: System General Corporation
    Inventors: Ta-Yung Yang, Wei-Li Hsu, Chou-Sheng Wang
  • Publication number: 20110292702
    Abstract: A synchronous rectifying circuit for a switching power converter is provided. The synchronous rectifying circuit includes a power transistor, a diode, and a control circuit. The power transistor and the diode are coupled to a transformer and an output of the power converter for rectification. The control circuit generates a drive signal to switch on the power transistor once the diode is forward biased. The control circuit includes a monitor circuit. The monitor circuit generates a monitor signal an off signal to switch off the power transistor in response to a pulse width of the drive signal for generating an off signal to switch off the power transistor. The monitor circuit further reduces the pulse width of the drive signal in response to a change of a feedback signal. The feedback signal is correlated to an output load of the power converter.
    Type: Application
    Filed: May 25, 2010
    Publication date: December 1, 2011
    Applicant: SYSTEM GENERAL CORPORATION
    Inventors: Tien-Chi Lin, Ying-Chieh Su, Chou-Sheng Wang
  • Publication number: 20110267850
    Abstract: A method and an apparatus of operating a primary-side-regulation power converter at both continuous current mode and discontinuous current mode are provided. The apparatus includes a switching circuit, a signal generator, a correlation circuit, and a feedback modulator. The signal generator generates a half signal and a second sampling pulse in response to a switching signal. The correlation circuit receives the half signal, the second sampling pulse and a switching-current signal for generating a modulating current. The feedback modulator modulates a feedback signal in response to the modulating current, a detection signal and the switching signal. The detection signal obtained from a transformer is correlated to an output voltage of the primary-side-regulation power converter. An on-period of the half signal is half of an on-period of the switching signal. The switching-current signal is sampled at a falling-edge of the half signal.
    Type: Application
    Filed: June 21, 2010
    Publication date: November 3, 2011
    Applicant: SYSTEM GENERAL CORPORATION
    Inventors: Li Lin, Rui-Hong Lu
  • Patent number: 8049448
    Abstract: A BLDC (brushless direct current) motor system of the present invention includes a control circuit, a sequencer, a driving circuit, and a BLDC motor. The control circuit comprises a speed-feedback loop and a torque-feedback loop to control the maximum speed and the maximum torque of the BLDC motor in parallel configuration. The speed-feedback loop generates a speed-control signal. The torque-feedback loop generates a torque-control signal. A PWM circuit receives the speed-control signal and the torque-control signal to generate a PWM signal. A pulse width of the PWM signal is correlated to the level of the speed-control signal and/or the level of the torque-control signal.
    Type: Grant
    Filed: May 14, 2009
    Date of Patent: November 1, 2011
    Assignee: System General Corporation
    Inventors: Ta-Yung Yang, Yi-Min Hsu, Pei-Sheng Tsu, Chung-Hui Yeh, Shih-Jen Yang
  • Patent number: 8050057
    Abstract: A mounting structure for fixing an electronic element on a heat dissipation unit is provided. The mounting structure includes a heat dissipation unit, a fixing member, electronic elements and elastic elements. The fixing member is fixed on the heat dissipation unit. The elastic elements are sandwiched between the electronic elements and the fixing member, wherein the fixing member and the elastic elements press the electronic elements to make the electronic elements tightly contact the heat dissipation unit.
    Type: Grant
    Filed: July 13, 2009
    Date of Patent: November 1, 2011
    Assignee: System General Corporation
    Inventors: Shih-Jen Yang, Hung-Sen Tu
  • Publication number: 20110254498
    Abstract: A speed-control circuit for a BLDC motor is provided. The speed-control circuit includes a pulse generator, a current source circuit, a filter circuit, an error amplification circuit and a PWM circuit. The pulse generator detects a speed signal of the BLDC motor to generate a pulse signal. The filter circuit is coupled to the current source circuit to generate an average signal. The error amplification circuit receives the average signal and a speed-reference signal for generating a speed-control signal. The PWM circuit generates a switching signal to drive the BLDC motor in response to the speed-control signal. A pulse width of the switching signal is determined by the speed-control signal.
    Type: Application
    Filed: July 7, 2010
    Publication date: October 20, 2011
    Applicant: SYSTEM GENERAL CORPORATION
    Inventors: Ta-Yung Yang, Ta-Hsu Huang, Chung-Hui Yeh, Pei-Sheng Tsu, Yi-Min Hsu, Shih-Jen Yang
  • Publication number: 20110255309
    Abstract: A controller for a power converter includes a clamping circuit, a switching circuit and a pulse generator. The clamping circuit is coupled to an input terminal of the controller for detecting a detection signal from a transformer. The switching circuit generates a switching signal to switch the transformer in response to the detection signal for regulating the power converter. A maximum level of the detection signal is clamped to be under a level of a threshold voltage during an off-period of the switching signal. Since the maximum level of the detection signal is clamped and the oscillating energy of the reflected signal is discharged, the speed of detecting the detection signal is increased. Therefore, the regulation of the primary-side controlled power converter can be improved accordingly.
    Type: Application
    Filed: July 21, 2010
    Publication date: October 20, 2011
    Applicant: SYSTEM GENERAL CORPORATION
    Inventors: Ta-Yung Yang, Li Lin, Chuh-Ching Li, Sheng-Fu Hsu, Rui-Hong Lu
  • Patent number: 7990739
    Abstract: A resonant power converter is provided and includes a capacitor, an inductive device, a first transistor, a second transistor, and a control circuit. The capacitor and the inductive device develop a resonant tank. The first transistor and the second transistor are coupled to switch the resonant tank. The control circuit generates a first signal and a second signal to control the first transistor and the second transistor respectively. Frequencies of the first signal and the second signal are changed for regulating output of the resonant power converter. The control circuit is further coupled to detect an input voltage of the resonant power converter. A pulse width of the second signal is modulated in response to change of the input voltage.
    Type: Grant
    Filed: August 24, 2009
    Date of Patent: August 2, 2011
    Assignee: System General Corporation
    Inventors: Ta-Yung Yang, Ying-Chieh Su, Tien-Chi Lin, Shih-Hung Hsieh
  • Patent number: 7983061
    Abstract: The present invention provides a switching controller capable of reducing acoustic noise of a transformer for a power converter. The switching controller includes a switching circuit, a comparison circuit, an activation circuit, and an acoustic-noise eliminating circuit. The acoustic-noise eliminating circuit comprises a first-check circuit, a second-check circuit, a pulse-shrinking circuit, and a limit circuit. The first-check circuit receives a switching-current signal which is correlated to a switching current of the power converter and a PWM signal to generate a trigger signal. The second-check circuit receives the trigger signal to generate a control signal. When the frequency of the trigger signal falls into audio band, the control signal will be enabled to limit the switching current. Therefore, the acoustic noise of the transformer can be eliminated.
    Type: Grant
    Filed: February 10, 2009
    Date of Patent: July 19, 2011
    Assignee: System General Corporation
    Inventor: Ta-Yung Yang
  • Patent number: 7965528
    Abstract: An apparatus for detecting a switching current of the power converter, wherein the apparatus includes a signal generation circuit, a sample-and-hold circuit, and a calculating circuit. The signal generation circuit generates a sample signal in accordance with the pulse width of a switching signal. The sample-and-hold circuit is coupled to receive the sample signal and switching current signal for generating a first current signal and a second current signal. The calculating circuit is coupled to receive the first current signal and the second current signal for generating output signals. The switching signal is used for switching the magnetic device of the power converter, and the switching current signal is correlated to the switching current of the power converter; the output signals are correlated to the value of the switching current of the power converter.
    Type: Grant
    Filed: October 21, 2008
    Date of Patent: June 21, 2011
    Assignee: System General Corporation
    Inventors: Ta-Yung Yang, Chuh-Ching Li, Sheng-Fu Hsu, Li Lin, Jung-Sheng Chen
  • Patent number: 7911031
    Abstract: Voltage-controlled semiconductor structures, voltage-controlled resistors, and manufacturing processes are provided. The semiconductor structure comprises a substrate, a first doped well, and a second doped well. The substrate is doped with a first type of ions. The first doped well is with a second type of ions and is formed in the substrate. The second doped well is with the second type of ions and is formed in the substrate. The first type of ions and the second type of ions are complementary. A resistor is formed between the first doped well and the second doped well. A resistivity of the resistor is controlled by a differential voltage. A resistivity of the resistor relates to a first depth of the first doped well, a second depth of the second doped well, and a distance between the first doped well and the second doped well. The resistivity of the resistor is higher than that of a well resistor formed in a single doped well with the second type of ions.
    Type: Grant
    Filed: August 21, 2006
    Date of Patent: March 22, 2011
    Assignee: System General Corporation
    Inventors: Chiu-Chih Chiang, Chih-Feng Huang
  • Publication number: 20110037443
    Abstract: A parallel PFC converter comprises a first PFC circuit, a second PFC circuit, and a voltage divider. The second PFC circuit is connected in parallel with the first PFC circuit for generating an output voltage of the parallel PFC converter. The voltage divider is coupled to receive the output voltage for generating a first feedback signal and a second feedback signal. The first feedback signal is higher than the second feedback signal. The first PFC circuit and the second PFC circuit respectively comprises a first switching control circuit and a second switching control circuit for regulating the output voltage. It is an object of the present invention to reduce the power loss for improving the efficiency of the PFC converter.
    Type: Application
    Filed: March 5, 2010
    Publication date: February 17, 2011
    Applicant: SYSTEM GENERAL CORPORATION
    Inventors: Ta-Yung Yang, Ming-Hsuan Lee, Jian Chang, Shih-Jen Yang
  • Publication number: 20110038183
    Abstract: A switching regulator of a power converter is provided and includes a feedback-input circuit, a programming circuit, and a peak-current-threshold circuit. The feedback-input circuit is coupled to a terminal of the switching regulator for receiving a feedback signal. The feedback-input circuit is operated in a first range of a terminal signal. The programming circuit is coupled to the terminal for generating a programming signal. The programming signal is operated in a second range of the feedback signal. The peak-current-threshold circuit generates a threshold signal in accordance with the programming signal. The feedback signal is coupled to regulate the output of the power converter, and the threshold signal is coupled to limit a peak switching current of the power converter.
    Type: Application
    Filed: March 29, 2010
    Publication date: February 17, 2011
    Applicant: SYSTEM GENERAL CORPORATION
    Inventors: Ta-Yung Yang, Shao-Chun Huang, Chen-Hui Chan, Jenn-Yu G. Lin
  • Patent number: 7888835
    Abstract: A rotating shaft disclosed by the present invention includes a plurality of bumps spacedly formed along an outer circumferential surface thereof. The bumps are each formed with two engagement portions extending outwardly and bilaterally and a deformation space therebetween. The engagement portions undergo resilient deformation toward the deformation space when subjected to a force, thus providing stable engagement with a magnetic body, protecting the magnetic body from cracks and damages during assembling, and enhancing yield. The present invention further discloses a motor rotor having the above-described rotating shaft.
    Type: Grant
    Filed: October 1, 2007
    Date of Patent: February 15, 2011
    Assignee: System General Corporation
    Inventors: Shih-Jen Yang, Hung-Sen Tu, I-Hsing Chen, Chen-Cha Yang
  • Patent number: 7881076
    Abstract: A buck-boost PFC converter is provided and includes an inductor, first and second transistors, a first diode, and a control circuit. The inductor has a first terminal and a second terminal. The first transistor is coupled to a positive-power rail and the first terminal of the inductor. The second transistor is coupled to the second terminal of the inductor and a negative-power rail. The first diode is connected from the second terminal of the inductor to an output of the buck-boost PFC converter. The control circuit generates a first signal and a second signal coupled to control the first transistor and the second transistor respectively. The first signal is utilized to turn on the first transistor for conducting the positive-power rail to the inductor. The second signal is utilized to turn on the second transistor for conducting the inductor to the negative-power rail.
    Type: Grant
    Filed: January 22, 2009
    Date of Patent: February 1, 2011
    Assignee: System General Corporation
    Inventor: Ta-Yung Yang
  • Publication number: 20100309645
    Abstract: A mounting structure for fixing an electronic element on a heat dissipation unit is provided. The mounting structure includes a heat dissipation unit, a fixing member, electronic elements and elastic elements. The fixing member is fixed on the heat dissipation unit. The elastic elements are sandwiched between the electronic elements and the fixing member, wherein the fixing member and the elastic elements press the electronic elements to make the electronic elements tightly contact the heat dissipation unit.
    Type: Application
    Filed: July 13, 2009
    Publication date: December 9, 2010
    Applicant: SYSTEM GENERAL CORPORATION
    Inventors: Shih-Jen Yang, Hung-Sen Tu
  • Publication number: 20100232182
    Abstract: An exemplary embodiment of a flyback power converter includes a transformer for power transfer, a high-side transistor, a low-side transistor, two diodes, a control circuit, and a high-side drive circuit. The high-side transistor and the low-side transistor are coupled to switch the transformer. The two diodes are coupled to said transformer to circulate energy of leakage inductance of the transformer to an input power rail of the power converter. The control circuit generates a switching signal coupled to control the high-side transistor and the low-side transistor. The high-side drive circuit is coupled to receive the switching signal for driving the high-side transistor. The transformer has an auxiliary winding generating a floating power to provide power supply for said high-side drive circuit.
    Type: Application
    Filed: November 24, 2009
    Publication date: September 16, 2010
    Applicant: SYSTEM GENERAL CORPORATION
    Inventors: Ta-Yung Yang, Ying-Chieh Su, Jhih-Da Hsu
  • Publication number: 20100230749
    Abstract: A semiconductor device is provided and includes a substrate of a first conductivity type, a deep well of a second conductivity type, and a first high-side device. The deep well is formed on the substrate. The first high-side device is disposed within the deep well and includes an insulation layer of the second conductivity type, a well of the first conductivity type, first and second regions of the second conductivity type, and a first poly-silicon material. The insulation layer is formed on the substrate. The well is formed within the deep well. The first and second regions are formed within the well. The first poly-silicon material is disposed between the first region and the second region and on the deep well.
    Type: Application
    Filed: October 7, 2009
    Publication date: September 16, 2010
    Applicant: SYSTEM GENERAL CORPORATION
    Inventors: Hsin-Chih Chiang, Han-Chung Tai