Patents Assigned to Advanced Analog Technology, Inc
  • Patent number: 7551008
    Abstract: The circuit for fixing the peak current of an inductor includes an operating current, a ramp-type boost converter and a comparator. The magnitude of the operating current is proportional to that of the voltage source of the inductor. The ramp-type boost converter is connected to the operating current. One input end of the comparator is connected to a reference voltage, and the other end is connected to the output of the ramp-type boost converter. The output of the comparator is connected to the gate of a power transistor, which controls the turn-on time of the inductor.
    Type: Grant
    Filed: March 19, 2007
    Date of Patent: June 23, 2009
    Assignee: Advanced Analog Technology, Inc.
    Inventors: Mao Chuan Chien, Chu Yu Chu, Yu Min Sun
  • Patent number: 7501908
    Abstract: The oscillation circuit includes an output current mirror, a P-N complementary current mirror, a P-type current mirror and an N-type current mirror. The P-N complementary current mirror has the same structure as the output current mirror but has current that is only 1/k times the current of the output current mirror, wherein k is greater than 1. The P-type current mirror connects to the P-N complementary current mirror, and has current that is m times the current of the P-N complementary current mirror, where m is greater than 1. The N-type current mirror has one end connected to the P-type current mirror and another end connected to the output current mirror. The N-type current mirror has current that is n times the current of the P-type current mirror, where m × n k ? 1 , and n is greater than 1.
    Type: Grant
    Filed: March 29, 2007
    Date of Patent: March 10, 2009
    Assignee: Advanced Analog Technology, Inc.
    Inventors: Mao Chuan Chien, Yu Min Sun, Chu Yu Chu
  • Patent number: 7495499
    Abstract: The power transistor circuit with high-voltage endurance includes a first power transistor, a second power transistor and an enabling circuit. The first power transistor includes a first voltage endurance and a first inner resistance, while the second power transistor includes a second voltage endurance and a second inner resistance. The first voltage endurance and the first inner resistance are smaller than the second voltage endurance and the second inner resistance, respectively. The drain of the second power transistor is connected to the drain of the first power transistor and the enabling circuit. The enabling circuit enables the second power transistor first, and when the drain voltage of the first power transistor is smaller than the first endurance, the enabling circuit then enables the first power transistor.
    Type: Grant
    Filed: April 10, 2007
    Date of Patent: February 24, 2009
    Assignee: Advanced Analog Technology, Inc.
    Inventors: Chien Chuan Chung, Chu Yu Chu, Yu Min Sun
  • Patent number: 7471117
    Abstract: The circuit for detecting the maximal frequency of the pulse frequency modulation includes an oscillator-controlling unit, a delay circuit and a master-slave register. The oscillator-controlling unit is connected to an oscillator, which generates the pulse frequency modulation signals, and includes a first-half pulse-generating module and a second-half pulse-generating module. The delay circuit is connected to the second-half pulse-generating module. The master-slave register includes a clock, an input end and an output end, wherein the input end is connected to the oscillator-controlling unit, and the clock is connected to the delay circuit.
    Type: Grant
    Filed: March 20, 2007
    Date of Patent: December 30, 2008
    Assignee: Advanced Analog Technology, Inc.
    Inventors: Li Chieh Chen, Yu Min Sun, Chu Yu Chu
  • Publication number: 20080315307
    Abstract: A high voltage device includes a semiconductor substrate and a gate. The semiconductor substrate includes a first doped region having a first conductive type, a second doped region having a second conductive type, a third doped region having the second conductive type, a fourth doped region surrounding the third doped region and having the second conductive type, and a fifth doped region surrounding the third doped region and having the second conductive type. The gate is disposed between two spacers to separate the second doped region from the third doped region, so as to control the conduction of the second doped region and the third doped region. In the high voltage device, the fifth doped region surrounds the third doped region, so as to strengthen the coverage for the third doped region and improve the ion concentration uniformity on the bottom of the third doped region to reduce leakage current.
    Type: Application
    Filed: September 4, 2008
    Publication date: December 25, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, Inc.
    Inventors: Cheng Yu FANG, Sheng Yuan Yang, Wei Jung Chen
  • Patent number: 7456622
    Abstract: The low voltage circuit for starting up a synchronous step-up DC/DC converter, which connects to a voltage source through an inductor, includes a P-type power transistor, an N-type power transistor and a controller. The P-type power transistor includes a body diode, and one end of the P-type power transistor acts as a power source of an oscillator. The N-type power transistor connects the P-type power transistor in series, and both of the power transistors are not enabled at the same time. The oscillator electrically connects to the controller, which enables the P-type power transistor at initialization time, and enables the N-type power transistor a period after the initialization time.
    Type: Grant
    Filed: April 10, 2007
    Date of Patent: November 25, 2008
    Assignee: Advanced Analog Technology, Inc.
    Inventors: Mao Chuan Chien, Chu Yu Chu, Yu Min Sun
  • Patent number: 7446621
    Abstract: The switching method between pulse frequency modulation and pulse width modulation signals is first based on an output voltage of a power transistor to generate a corresponding pulse frequency modulation signal. Next, it is determined whether the corresponding pulse frequency modulation signal has reached its maximal frequency. If so, the initial pulse width modulation signal is adjusted to have the same width as the pulse frequency modulation signal. Thereafter, the adjusted pulse width modulation signal is outputted.
    Type: Grant
    Filed: June 6, 2007
    Date of Patent: November 4, 2008
    Assignee: Advanced Analog Technology, Inc.
    Inventors: Li Chieh Chen, Yu Min Sun, Chu Yu Chu
  • Publication number: 20080231348
    Abstract: The circuit for fixing the peak current of an inductor includes an operating current, a ramp-type boost converter and a comparator. The magnitude of the operating current is proportional to that of the voltage source of the inductor. The ramp-type boost converter is connected to the operating current. One input end of the comparator is connected to a reference voltage, and the other end is connected to the output of the ramp-type boost converter. The output of the comparator is connected to the gate of a power transistor, which controls the turn-on time of the inductor.
    Type: Application
    Filed: March 19, 2007
    Publication date: September 25, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, INC.
    Inventors: Mao Chuan Chien, Chu Yu Chu, Yu Min Sun
  • Publication number: 20080231386
    Abstract: The oscillation circuit includes an output current mirror, a P-N complementary current mirror, a P-type current mirror and an N-type current mirror. The P-N complementary current mirror has the same structure as the output current mirror but has current that is only 1/k times the current of the output current mirror, wherein k is greater than 1. The P-type current mirror connects to the P-N complementary current mirror, and has current that is m times the current of the P-N complementary current mirror, where m is greater than 1. The N-type current mirror has one end connected to the P-type current mirror and another end connected to the output current mirror. The N-type current mirror has current that is n times the current of the P-type current mirror, where m × n k ? 1 , and n is greater than 1.
    Type: Application
    Filed: March 29, 2007
    Publication date: September 25, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, INC.
    Inventors: Mao Chuan Chien, Yu Min Sun, Chu Yu Chu
  • Publication number: 20080225034
    Abstract: The image sticking erasing circuit includes a detection circuit and a switching circuit connected to the detection circuit. The detection circuit is for use in detecting a first voltage signal, which closely follows the variation of the voltage source, and a reference voltage, which loosely follows the variation of the voltage source. When the detection circuit determines that the first voltage signal is lower than a first threshold value, the switching circuit switches the gate of a driving transistor to a second voltage signal, which loosely follows the voltage source. When the detection circuit determines that the reference voltage signal is lower than a second threshold value, the switching circuit switches the gate of a driving transistor to a low voltage state.
    Type: Application
    Filed: March 29, 2007
    Publication date: September 18, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, INC.
    Inventors: Wen Chia Pi, Yung Ching Chang, Yen Kuo Lo, Ko Ching Su
  • Publication number: 20080224673
    Abstract: The low voltage circuit for starting up a synchronous step-up DC/DC converter, which connects to a voltage source through an inductor, includes a P-type power transistor, an N-type power transistor and a controller. The P-type power transistor includes a body diode, and one end of the P-type power transistor acts as a power source of an oscillator. The N-type power transistor connects the P-type power transistor in series, and both of the power transistors are not enabled at the same time. The oscillator electrically connects to the controller, which enables the P-type power transistor at initialization time, and enables the N-type power transistor a period after the initialization time.
    Type: Application
    Filed: April 10, 2007
    Publication date: September 18, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, INC.
    Inventors: Mao Chuan Chien, Chu Yu Chu, Yu Min Sun
  • Publication number: 20080221851
    Abstract: The aid design system for analog ICs includes an analog IC database, a peripheral component database, an input module, a computing simulation module, a selection module and an output module. The analog IC database includes parameters of a plurality of analog ICs. The peripheral component database includes parameters of the peripheral components cooperating with the analog ICs. The input module is for use in inputting a desirable parameter specification or specific IC according to the user's discretion. The computing simulation module includes transfer functions of the analog ICs. The selection module is for use in picking out suggested peripheral components based on the computing result of the computing simulation module. The output module is for use in displaying the suggested peripheral components or analog ICs.
    Type: Application
    Filed: March 29, 2007
    Publication date: September 11, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, INC.
    Inventors: Dong Min Chen, Chen Chang Peng
  • Publication number: 20080218284
    Abstract: The switching method between pulse frequency modulation and pulse width modulation signals is first based on an output voltage of a power transistor to generate a corresponding pulse frequency modulation signal. Next, it is determined whether the corresponding pulse frequency modulation signal has reached its maximal frequency. If so, the initial pulse width modulation signal is adjusted to have the same width as the pulse frequency modulation signal. Thereafter, the adjusted pulse width modulation signal is outputted.
    Type: Application
    Filed: June 6, 2007
    Publication date: September 11, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, INC.
    Inventors: Li Chieh Chen, Yu Min Sun, Chu Yu Chu
  • Publication number: 20080205099
    Abstract: The power transistor circuit with high-voltage endurance includes a first power transistor, a second power transistor and an enabling circuit. The first power transistor includes a first voltage endurance and a first inner resistance, while the second power transistor includes a second voltage endurance and a second inner resistance. The first voltage endurance and the first inner resistance are smaller than the second voltage endurance and the second inner resistance, respectively. The drain of the second power transistor is connected to the drain of the first power transistor and the enabling circuit. The enabling circuit enables the second power transistor first, and when the drain voltage of the first power transistor is smaller than the first endurance, the enabling circuit then enables the first power transistor.
    Type: Application
    Filed: April 10, 2007
    Publication date: August 28, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, INC.
    Inventors: Chien Chuan Chung, Chu Yu Chu, Yu Min Sun
  • Publication number: 20080197885
    Abstract: The circuit for detecting the maximal frequency of the pulse frequency modulation includes an oscillator-controlling unit, a delay circuit and a master-slave register. The oscillator-controlling unit is connected to an oscillator, which generates the pulse frequency modulation signals, and includes a first-half pulse-generating module and a second-half pulse-generating module. The delay circuit is connected to the second-half pulse-generating module. The master-slave register includes a clock, an input end and an output end, wherein the input end is connected to the oscillator-controlling unit, and the clock is connected to the delay circuit.
    Type: Application
    Filed: March 20, 2007
    Publication date: August 21, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, INC.
    Inventors: Li Chieh Chen, Yu Min Sun, Chu Yu Chu
  • Publication number: 20080106216
    Abstract: A dimming method for light emitting diodes (LEDs), which is applied in a pulse width modulation boost circuit system, includes the following steps: (a) equally dividing a cycle into a plurality of intervals; (b) providing a plurality of control signals having the cycle and a pulse duration, wherein the pulse duration of each of the control signals is sequentially generated in the cycle; and (c) using the plurality of control signals to control a plurality of corresponding switches for dimming the LEDs connected to the switches.
    Type: Application
    Filed: February 1, 2007
    Publication date: May 8, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, Inc.
    Inventors: Chien Peng YU, Yi Cheng WANG, Ye Hsuan YAN
  • Publication number: 20080084232
    Abstract: A negative voltage detector includes a first n-channel transistor having a coupled gate node and drain node, a second n-channel transistor having a gate coupled to the gate of the first n-channel transistor, a first current source coupled to a drain of the first n-channel transistor, a second current source coupled to a drain of the second n-channel transistor, an output terminal coupled to the drain of the second n-channel transistor, and an input terminal coupled to a source of the first n-channel transistor. The gate voltage of the first n-channel transistor, i.e., the gate voltage of the second n-channel transistor, depends on its source voltage (the voltage of the input terminal), and the switching operation of the second n-channel transistor can be performed by controlling the voltage of the input terminal to change the output voltage of the output terminal.
    Type: Application
    Filed: November 8, 2006
    Publication date: April 10, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, Inc.
    Inventors: Chao Hsing Huang, Chih Chi Hsu, Chun Liang Yeh
  • Patent number: 7352162
    Abstract: A PWM (pulse width modulation) boost system includes a boost circuit, a voltage dividing circuit, a comparator, a PWM circuit, a pre-oscillator, and a current limit circuit. A start-up method of the PWM boost system includes (1) providing an error voltage; (2) generating a PWM signal according to the error voltage; (3) controlling a switch in a boost circuit with the PWM signal, so as to control an inductor current flowing through a boost inductor in the boost circuit; (4) charging a capacitor in the boost circuit with the inductor current, wherein charges stored in the capacitor define a DC output voltage; and (5) providing a feedback voltage according to the DC output voltage to adjust the error voltage.
    Type: Grant
    Filed: January 9, 2007
    Date of Patent: April 1, 2008
    Assignee: Advanced Analog Technology, Inc.
    Inventors: Yung Ching Chang, Yen Kuo Lo, Wen Chia Pi
  • Publication number: 20080074089
    Abstract: A feedback signal sensing method includes the steps of: providing a pulse width modulation (PWM) signal having a period; charging a capacitor by a current source during a pulse duration of the period, so as to form an equivalent slope compensation ramp signal; conducting an inductor current flowing from a boost inductor to flow through an equivalent resistor during the pulse duration of the period, so as to form an equivalent inductor current signal; and using a coupling characteristic of the capacitor together with the equivalent slope compensation ramp signal and the equivalent inductor current signal to form a feedback signal.
    Type: Application
    Filed: February 1, 2007
    Publication date: March 27, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, Inc.
    Inventors: Chien Peng YU, Yi Cheng WANG, Ye Hsuan YAN
  • Publication number: 20080067985
    Abstract: A PWM (pulse width modulation) boost system includes a boost circuit, a voltage dividing circuit, a comparator, a PWM circuit, a pre-oscillator, and a current limit circuit. A start-up method of the PWM boost system includes (1) providing an error voltage; (2) generating a PWM signal according to the error voltage; (3) controlling a switch in a boost circuit with the PWM signal, so as to control an inductor current flowing through a boost inductor in the boost circuit; (4) charging a capacitor in the boost circuit with the inductor current, wherein charges stored in the capacitor define a DC output voltage; and (5) providing a feedback voltage according to the DC output voltage to adjust the error voltage.
    Type: Application
    Filed: January 9, 2007
    Publication date: March 20, 2008
    Applicant: ADVANCED ANALOG TECHNOLOGY, Inc.
    Inventors: Yung Ching Chang, Yen Kuo Lo, Wen Chia Pi