Patents Assigned to Leadtrend Technology Corp.
  • Patent number: 9190912
    Abstract: In a switching mode power supply, a power controlling circuit includes a phase generator and a phase controller. The phase generator provides a clock signal. The phase controller detects phases of a phase reference signal and a burst initialization signal so as to generate a burst signal, and causes a phase of the burst signal to not be earlier than the phase of the group reference signal. The burst signal is utilized for switching the power supply between a non-switching state and a switching state. The group reference signal is generated according to the clock signal and has a lower frequency than the clock signal. The burst initialization signal is controlled by an output voltage source of the power supply.
    Type: Grant
    Filed: December 19, 2011
    Date of Patent: November 17, 2015
    Assignee: Leadtrend Technology Corp.
    Inventor: Wen-Chung Yeh
  • Patent number: 9160233
    Abstract: A controller for controlling a power converter to output constant power includes a current sensing module, a voltage generation module, and a voltage regulation module. The current sensing module generates a sensing current according to an output current flowing through a secondary side of the power converter. The voltage generation module generates a set voltage corresponding to a reciprocal of the sensing current according to the sensing current. The voltage regulation module generates a regulation voltage to a feedback circuit of the secondary side of the power converter according to the set voltage and a sensing voltage corresponding to an output voltage of the secondary side of the power converter. The feedback circuit and a primary side of the power converter regulate the output voltage according to the regulation voltage, where a product of the output voltage and the output current is a constant value.
    Type: Grant
    Filed: October 3, 2013
    Date of Patent: October 13, 2015
    Assignee: Leadtrend Technology Corp.
    Inventors: Meng-Jen Tsai, Ming-Chang Tsou
  • Patent number: 9113506
    Abstract: A circuit with adjustable phase delay and a feedback voltage includes a delay setting unit and a phase delay signal generator. The delay setting unit generates a delay time according to an external resistor. The phase delay signal generator includes a plurality of phase delay units. Each phase delay unit includes an edge trigger subunit and a signal generation subunit. The edge trigger subunit receives an input signal, and generates a positive edge trigger signal and a negative edge trigger signal according to a positive edge and a negative edge of the input signal, respectively. The signal generation subunit generates and outputs a phase delay signal according to the positive edge trigger signal, the negative edge trigger signal, and the delay time. The phase delay signal lags the input signal for the delay time.
    Type: Grant
    Filed: March 14, 2013
    Date of Patent: August 18, 2015
    Assignee: Leadtrend Technology Corp.
    Inventors: Hung-Ching Lee, Yeu-Torng Yau, Wei-Chi Huang
  • Patent number: 9101033
    Abstract: Short protection control circuits and related control methods are disclosed. A disclosed short protection control circuit is adapted for controlling a short protection mechanism providing short protection to several LED chains. The disclosed short protection control circuit has a detection circuit, a first logic circuit and a timer. Coupled to the LED chains, the detection circuit asserts an indication signal when one of the node voltages of the LED chains is lower than an under-current reference. When the indication signal is enabled, the first logic circuit starts blocking the short protection mechanism. The timer times to provide a result when the short protection mechanism is blocked. When the result indicates that the short protection mechanism has been blocked for at least a predetermined time period, the first logic circuit resumes the short protection mechanism.
    Type: Grant
    Filed: November 1, 2012
    Date of Patent: August 4, 2015
    Assignee: Leadtrend Technology Corp.
    Inventors: Chung-Wei Lin, Hung-Ching Lee, Wei-Chi Huang, Tsung-Liang Hung, Pai-Feng Liu
  • Patent number: 9077249
    Abstract: A power controller includes a clock generator, a low-frequency clock generator, and a protection circuit. The clock generator provides a clock signal with a clock frequency for periodically switching on and off a power switch. The low-frequency clock generator provides a low-frequency clock signal with a frequency lower than the clock frequency. The protection circuit includes an over-power detection circuit and a logic circuit. The over-power detection circuit determines whether an over power event has occurred according to a feedback signal controlled by an output voltage of the power supply. When the over power event lasts longer than an over power tolerance duration, the logic circuit isolates the power switch from the clock signal to keep the power switch turned off. The over power tolerance duration is equal to a predetermined clock cycles of the low-frequency clock signal.
    Type: Grant
    Filed: October 4, 2012
    Date of Patent: July 7, 2015
    Assignee: Leadtrend Technology Corp.
    Inventors: Ming-Chang Tsou, Kuo-Chien Huang
  • Patent number: 9046382
    Abstract: Power control circuits and methods are disclosed, suitable for a power supplier. A power control circuit has a clock generator, a phase controller and a power limiter. The clock generator provides a clock signal, substantially determining switching cycles of a power supply. The phase controller outputs a burst signal based on a group reference signal and a burst initiation signal, and makes a burst period corresponding to a burst signal not less than a group reference period corresponding to the group reference signal. The burst signal is capable of switching the power supplier between a switching state and a non-switching state. The power limiter limits the power transferred by the power supply in every switching cycle, during a burst-up duration after the power supply is switched from the non-switching state to the switching state. The burst initiation signal correlates to an output voltage of the power supplier.
    Type: Grant
    Filed: January 17, 2013
    Date of Patent: June 2, 2015
    Assignee: Leadtrend Technology Corp.
    Inventors: Chen-Lun Yang, Shun-Chin Chou
  • Patent number: 9048723
    Abstract: An active feedback control integrated circuit applied to an alternating current/direct current converter includes a feedback pin, an operation unit, a control unit, and a controlled-current generation unit. The feedback pin is used for receiving a feedback current of an output feedback unit of the alternating current/direct current converter. The operation unit is used for generating an operation signal according to the feedback current. The control unit is coupled to the operation unit for generating a current control signal. The controlled-current generation unit is coupled to the control unit for generating a controlled current to the feedback pin according to the current control signal.
    Type: Grant
    Filed: March 14, 2013
    Date of Patent: June 2, 2015
    Assignee: Leadtrend Technology Corp.
    Inventors: Ming-Chang Tsou, Meng-Jen Tsai
  • Patent number: 9036385
    Abstract: A power supply can provide brown-out protection and overheat protection. The power supply includes a rectifier, a transformer, and a power management device. The rectifier is used for receiving an alternating current voltage. The alternating current voltage has a voltage cycle. The transformer coupled to the rectifier has an inductor coupled to a switch for supplying an output voltage. The power management device is used for controlling the switch to make the inductor save power or release power. The power management device has a multi-functional pin coupled to the rectifier for receiving a detection voltage corresponding to a positive half cycle of the alternating current voltage. The multi-functional pin is also coupled to a thermistor for receiving an overheat protection signal.
    Type: Grant
    Filed: September 30, 2012
    Date of Patent: May 19, 2015
    Assignee: Leadtrend Technology Corp.
    Inventors: Chin-Ho Wu, Ren-Yi Chen
  • Patent number: 9036377
    Abstract: A method for controlling voltage crossing a power switch of a switched-mode power converter includes the steps of: controlling a switch frequency of the power switch of the switched-mode power converter to a first frequency as activating the switched-mode power converter; and then changing the switch frequency of the power switch to a second frequency after the switched-mode power converter is activated for a predetermined time; wherein the first frequency is lower than the second frequency.
    Type: Grant
    Filed: May 13, 2012
    Date of Patent: May 19, 2015
    Assignee: Leadtrend Technology Corp.
    Inventors: Yuan-Wen Chang, Ren-Yi Chen, Yi-Lun Shen
  • Patent number: 9006985
    Abstract: A light emitting diode driving integrated circuit with a multi-step current setting function includes a regulator circuit, a variable resistor circuit, and a current generation unit. The regulator circuit provides a supply voltage to a first terminal of at least one series of light emitting diodes to drive the at least one series of light emitting diodes, and regulates a second terminal voltage of the at least one series of light emitting diodes to a target voltage. The variable resistor circuit is used for changing a resistance of the variable resistor circuit in a plurality of steps according to a switching signal. The current generation unit is coupled to the variable resistor circuit for changing current flowing through the at least one series of light emitting diodes in a plurality of steps according to a reference voltage and variation of the resistance of the variable resistor circuit.
    Type: Grant
    Filed: October 9, 2012
    Date of Patent: April 14, 2015
    Assignee: Leadtrend Technology Corp.
    Inventor: Chung-Wei Lin
  • Patent number: 8957656
    Abstract: A power controller has a high-side driver, a low-side driver, a voltage divider, and a comparator. The high-side driver drives a high-side power switch, powered by a boost power line and a connection node. The low-side driver drives a low-side power switch, powered by an operation power line and a ground power line. The voltage divider has a first resistor having a first node for providing a detection voltage and a second node coupled to the boost power line or the connection node. The voltage divider has a second resistor coupled between the first node of the first resistor and the ground power line. When the low-side power switch is turned off, the comparator compares the detection voltage with a reference voltage. When the detection voltage is higher than the reference voltage, the comparator renders to turn on the high-side power switch.
    Type: Grant
    Filed: September 6, 2012
    Date of Patent: February 17, 2015
    Assignee: Leadtrend Technology Corp.
    Inventors: Fong-Cheng Yang, Kuo-Chien Huang
  • Patent number: 8913360
    Abstract: Power supplies together with related over voltage protection methods and apparatuses. A power supply has a transformer including a primary winding and an auxiliary winding. A power switch is coupled to the primary winding and a sensing resistor coupled between the power switch and a grounding line. A multi-function terminal of a controller is coupled to the sensing resistor. A diode and a first resistor is coupled between the auxiliary winding and the multi-function terminal.
    Type: Grant
    Filed: November 16, 2011
    Date of Patent: December 16, 2014
    Assignee: Leadtrend Technology Corp.
    Inventors: Kuo-Chien Huang, Ren-Yi Chen
  • Patent number: 8879282
    Abstract: An embodiment provides a control method capable of controlling a switching-mode power supply to provide an output power source. The switching-mode power supply has a winding coupled to an input power source and controlled by a switch to be energized or de-energized. The maximum current peak through the winding is set to be a predetermined value. A discharge time of the winding in a switching cycle period is detected. The switching cycle period of the switch is controlled to keep the ratio of the discharge time to the switching cycle period as a constant.
    Type: Grant
    Filed: January 25, 2013
    Date of Patent: November 4, 2014
    Assignee: Leadtrend Technology Corp.
    Inventor: Wen-Chung Yeh
  • Patent number: 8860315
    Abstract: An integrated circuit is capable of controlling current through several light-emitting diode (LED) chains, each having several LEDs forward-connected in series between a major anode and a major cathode. Each major anode is coupled to a power node. The integrated circuit has several driving circuits, a detection node, a comparator, and a logic controller. The driving circuits can light the LED chains, respectively. Detection voltage at the detection node corresponds to voltage at one of the major cathodes. The comparator asserts a ready signal when the detection voltage exceeds a reference voltage. Receiving a dimming signal and the ready signal, if the dimming signal is asserted and the ready signal has been asserted, the logic controller enables the driving circuits to light the LED chains.
    Type: Grant
    Filed: December 23, 2011
    Date of Patent: October 14, 2014
    Assignee: Leadtrend Technology Corp.
    Inventors: Ching-Tsan Lee, Pai-Feng Liu
  • Patent number: 8854018
    Abstract: A control circuit for reducing touch current of a power converter includes an auxiliary pin, a zero-crossing signal generator, a feedback pin, a frequency limiting signal generator, and a gate signal generator. The auxiliary pin receives a voltage corresponding to an auxiliary winding of the power converter. The zero-crossing signal generator generates a zero-crossing signal according to the voltage and a first reference voltage. The feedback pin receives a feedback voltage corresponding to an output voltage of the power converter. The frequency limiting signal generator generates a frequency limiting signal according to the feedback voltage and a second reference voltage. The frequency limiting signal limits the gate control signal to a predetermined frequency. The gate signal generator generates a gate control signal to a power switch of the power converter according to the frequency limiting signal and the zero-crossing signal.
    Type: Grant
    Filed: March 7, 2013
    Date of Patent: October 7, 2014
    Assignee: Leadtrend Technology Corp.
    Inventors: Kuo-Chien Huang, Chen-Lun Yang, Hsin-Hung Lu
  • Patent number: 8823358
    Abstract: A calibration method for adjusting an offset voltage of a unit is proposed. The unit, capable of operating in a calibration mode or a normal mode, includes a first input terminal, a second input terminal and an output terminal. The calibration method includes: operating the unit in a calibration mode; providing a programmable voltage to the first input terminal; providing a constant voltage to the second input terminal; adjusting the programmable voltage monotonously when an output status of the output terminal is not changed; latching the programmable voltage when the output status toggles; and operating the unit in a normal mode after the output status toggles.
    Type: Grant
    Filed: September 5, 2013
    Date of Patent: September 2, 2014
    Assignee: Leadtrend Technology Corp.
    Inventor: Ching-Tsan Lee
  • Publication number: 20140233268
    Abstract: A controller of a power converter with adjustable jitter amplitude includes a feedback pin, a logic circuit, an auxiliary pin, and a current sensing pin. The feedback pin is used for receiving a feedback voltage from a secondary side of the power converter. The feedback voltage corresponds to an output voltage of the secondary side of the power converter. The logic circuit is used for generating a jitter signal according to a clock, the feedback voltage, and a first resistor. The auxiliary pin is used for receiving a voltage corresponding to an auxiliary winding of the power converter. The current sensing pin is used for generating a detection voltage according to a current flowing through a primary side of the power converter. The voltage, the jitter signal, and the detection voltage determine turning-on time of the primary side of the power converter.
    Type: Application
    Filed: February 21, 2014
    Publication date: August 21, 2014
    Applicant: Leadtrend Technology Corp.
    Inventors: Ming-Chang Tsou, Jiun-Sheng Huang, Kuo-Chien Huang, Ren-Yi Chen
  • Patent number: 8797013
    Abstract: An adaptive slope-compensation method is applied for a switch-mode power supply. The switch-mode power supply has a power switch, and an inductor coupled to an input power. The power switch controls the inductor storing energy or releasing energy to generate an output voltage. The adaptive slope-compensation method includes detecting an inductor current passing through the inductor and to generate an inductor-current detecting voltage, detecting a duty cycle of the power switch, detecting a voltage variation of the inductor-current detecting voltage when the power switch is turned on, generating a slope-compensation signal according to the voltage variation and the duty cycle, and adjusting the timing of turning the power switch on or off. In this way, even if the operation conditions of the input power and the output voltage change, the system still can quickly response and does not generate sub-harmonic oscillation.
    Type: Grant
    Filed: April 1, 2011
    Date of Patent: August 5, 2014
    Assignee: Leadtrend Technology Corp.
    Inventors: Hsing-Kuo Chao, Yi-Shan Chu
  • Publication number: 20140211511
    Abstract: A device for detecting an average output current of a power converter includes a current generation unit, a first voltage generation unit, a first current mirror unit, and a second current mirror unit. The current generation unit generates a first charge current according to an intermediate voltage. The first voltage generation unit generates a first node voltage according to the first charge current, a first discharge current, a turning-on time, and an inverse turning-on time. The first current mirror unit generates a first current according to the first node voltage, and generates a second voltage corresponding to the average output current of a secondary side of the power converter according to the first current. The second current mirror unit generates the first discharge current according to the first current.
    Type: Application
    Filed: January 26, 2014
    Publication date: July 31, 2014
    Applicant: Leadtrend Technology Corp.
    Inventors: Meng-Jen Tsai, Chih-Chi Chang, Ming-Chang Tsou
  • Patent number: 8766670
    Abstract: A sample-and-hold circuit for generating a variable sample delay time of a transformer includes a discharge detection unit, a sample delay time generation unit, and a comparator. The discharge detection unit generates a first voltage according to a first turning-on signal and a first reference current. Length of the first turning-on signal is varied with a discharge time of a present period of the transformer. The sample delay time generation unit generates a second voltage according to the first turning-on signal and a second reference current. The comparator generates a sample signal to a control circuit of the transformer according to a first voltage corresponding to a previous period of the transformer and a second voltage corresponding to the present period of the transformer. The first reference current is K times the second reference current, and 0<K<1.
    Type: Grant
    Filed: March 14, 2013
    Date of Patent: July 1, 2014
    Assignee: Leadtrend Technology Corp.
    Inventors: Ren-Yi Chen, Yi-Lun Shen