Patents by Inventor Justin Shi
Justin Shi has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 9077259Abstract: A driver circuit includes first switch, configured to selectively couple a first driving node to a power supply node, and a second switch, configured to selectively couple a second driving node to a ground node. The first driving node is coupled to each transistor in a first set of PMOS transistor(s) and the second driving node is coupled to each transistor in a second set of NMOS transistor(s). The driver circuit is configured to propagate a first drive signal in a first direction along an electrical path for biasing the first and second sets of transistors when the transistors in the first set, before receiving the first drive signal, are in a first state. The driver circuit is configured to propagate a second drive signal in a second direction along the path when the transistors in the first set, before receiving the second drive signal, are in a second state.Type: GrantFiled: September 5, 2012Date of Patent: July 7, 2015Assignee: Taiwan Semiconductor Manufacturing Co., Ltd.Inventor: Justin Shi
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Publication number: 20150155859Abstract: A comparator circuit includes a comparator, a first selection circuit, and a switched-capacitor circuit. The comparator has a first terminal, a second terminal, and an output terminal. The comparator is configured to generate an output signal at the output terminal based on a first signal on the first terminal and a second signal on the second terminal. The first selection circuit is coupled with the first terminal of the comparator and configured to selectively set a first input signal or a first calibration signal as the first signal in response to a control signal. The switched-capacitor circuit is coupled with the output terminal and the second terminal of the comparator. The switched-capacitor circuit is configured to adjust and output the second signal based on the output signal.Type: ApplicationFiled: February 9, 2015Publication date: June 4, 2015Inventors: Eric SOENEN, Alan ROTH, Justin SHI
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Patent number: 9041353Abstract: A battery fuel gauge apparatus comprises a current amplifier formed by a first transistor and a second transistor. Both transistors operate in the same operation conditions except that the second transistor has a smaller channel width in comparison with that of the first transistor. The first transistor is connected in series with a battery pack. The second transistor is connected in series with a sensing device. The sensing device comprises a first resistor and a second resistor connected in series. The first resistor has a positive temperature coefficient and the second resistor has a negative temperature coefficient.Type: GrantFiled: August 18, 2011Date of Patent: May 26, 2015Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.Inventor: Justin Shi
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Patent number: 9013341Abstract: A circuit including an analog-to-digital converter (ADC). The ADC is configured to receive an analog feedback signal and an analog input signal and generate a digital output. The circuit further includes a noise shaper. The noise shaper is configured to truncate the digital output and generate a noise shaper output having a lower number of bits than the digital output, and to shape quantization noise generated during truncation. The circuit further includes a pulse width modulation digital-to-analog converter (PWM DAC). The PWM DAC configured to process the truncated digital output of the noise shaper output and generate a PWM DAC output.Type: GrantFiled: September 14, 2012Date of Patent: April 21, 2015Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.Inventors: Eric Soenen, Alan Roth, Martin Kinyua, Justin Shi, Justin Gaither
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Patent number: 9000745Abstract: A switching regulator includes a high side driver electrically coupled with a power line that is configured to provide a supply voltage. A low side driver is electrically coupled between the high side driver and ground. A regulator control circuit is electrically coupled with a gate of the high side driver and a gate of the low side driver. The regulator control circuit is configured to pre-charge a first node between the regulator control circuit and the gate of the high side driver to a first voltage level and to boost the first node to a second voltage level that is higher than the first voltage level to turn on the high side driver.Type: GrantFiled: August 15, 2011Date of Patent: April 7, 2015Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.Inventor: Justin Shi
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Patent number: 8988113Abstract: A comparator has a first terminal, a second terminal, and an output terminal. A selection circuit is coupled to the first terminal. A calibration circuit is coupled to the output terminal and the second terminal. The comparator is configured to operate in a first mode when the selection circuit provides a first input signal to the first terminal and the calibration circuit provides a second input signal to the second terminal. The comparator is configured to operate in a second mode when the selection circuit provides a first calibration signal to the first terminal and the calibration circuit provides a second calibration signal to the second terminal based on an output signal at the output terminal. The comparator generates the output signal based on the first calibration signal and the second calibration signal.Type: GrantFiled: March 14, 2013Date of Patent: March 24, 2015Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.Inventors: Eric Soenen, Alan Roth, Justin Shi
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Patent number: 8674751Abstract: A method for generating a reference voltage in an integrated circuit device that is powered by a low voltage power includes generating a coarse first reference voltage using a coarse reference generator, routing the coarse first reference voltage to a boost regulator as an input reference voltage by a hand-off switch circuit, the boost regulator generating an initial-state stepped-up supply based on the first reference voltage, and generating at least two outputs of a second, more accurate, reference voltage from the stepped-up supply voltage using a fine-resolution reference generator. The second reference can be then looped back to the boost regulator, thus, generating a more accurate steady-state stepped-up supply voltage.Type: GrantFiled: April 16, 2012Date of Patent: March 18, 2014Assignee: Taiwan Semiconductor Manufacturing Co., Ltd.Inventors: Justin Shi, Yue-Der Chih
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Publication number: 20140062542Abstract: A driver circuit includes first switch, configured to selectively couple a first driving node to a power supply node, and a second switch, configured to selectively couple a second driving node to a ground node. The first driving node is coupled to each transistor in a first set of PMOS transistor(s) and the second driving node is coupled to each transistor in a second set of NMOS transistor(s). The driver circuit is configured to propagate a first drive signal in a first direction along an electrical path for biasing the first and second sets of transistors when the transistors in the first set, before receiving the first drive signal, are in a first state. The driver circuit is configured to propagate a second drive signal in a second direction along the path when the transistors in the first set, before receiving the second drive signal, are in a second state.Type: ApplicationFiled: September 5, 2012Publication date: March 6, 2014Applicant: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD.Inventor: Justin SHI
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Patent number: 8618784Abstract: A regulator control circuit includes a high side driver that is configured to receive a supply voltage. A capacitor is configured to store charges. A first transistor is coupled between the capacitor at a first node and a gate of a high side driver at a second node. The first node is capable of being boosted to a voltage to operate the first transistor at a saturation mode for a charge sharing between the first node and the second node so as to substantially turn on the high side driver.Type: GrantFiled: March 30, 2010Date of Patent: December 31, 2013Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.Inventors: Justin Shi, Alan Roth, Eric Soenen
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Patent number: 8598854Abstract: An amplifier drives the gate of a master source follower and of at least one slave source follower to form a low-dropout (LDO) regulator. Alternatively, a charge pump drives the master source follower to form the regulator. Additional slave source followers may be used in conjunction with the charge pump and the master source follower to improve the regulator performance.Type: GrantFiled: August 16, 2010Date of Patent: December 3, 2013Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.Inventors: Eric Soenen, Alan Roth, Justin Shi, Ying-Chih Hsu, Guang-Cheng Wang, Wen-Shen Chou
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Publication number: 20130271207Abstract: A method for generating a reference voltage in an integrated circuit device that is powered by a low voltage power includes generating a coarse first reference voltage using a coarse reference generator, routing the coarse first reference voltage to a boost regulator as an input reference voltage by a hand-off switch circuit, the boost regulator generating an initial-state stepped-up supply based on the first reference voltage, and generating at least two outputs of a second, more accurate, reference voltage from the stepped-up supply voltage using a fine-resolution reference generator. The second reference can be then looped back to the boost regulator, thus, generating a more accurate steady-state stepped-up supply voltage.Type: ApplicationFiled: April 16, 2012Publication date: October 17, 2013Applicant: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD.Inventors: Justin SHI, Yue-Der CHIH
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Publication number: 20130134953Abstract: A power converter includes a first stage voltage modulator configured to receive an input voltage and provide a modulated voltage. A second stage power converter is configured to receive the modulated voltage and vary a switching frequency of the second stage power converter in accordance with the modulated voltage to provide an output voltage.Type: ApplicationFiled: February 27, 2012Publication date: May 30, 2013Applicant: TAIWAN SEMICONDUCTOR MANUFACTURING COMPANY, LTD.Inventor: Justin SHI
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Patent number: 8450990Abstract: A method of controlling a regulator includes turning on a first driver during a first cycle for a first time period. A second driver is turned on during the first cycle for a second time period. The first and second drivers are off during the first cycle for a third time period. The first time period is adjusted to become an adjusted first time period for a second cycle based on a ratio and a voltage difference between a peak value of the output voltage and a first voltage during the first cycle. The ratio refers to the first time period over the first time period and the second time period.Type: GrantFiled: August 16, 2010Date of Patent: May 28, 2013Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.Inventors: Justin Shi, Alan Roth, Justin Gaither, Eric Soenen
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Publication number: 20130119511Abstract: The present application discloses an inductor including a substrate, a first conductive line and a second conductive line formed over the substrate, a passivation layer formed over the first and the second conductive lines, and a bond wire coupling an end of the first conductive line and an end of the second conductive line. At least a portion of the at least one bond wire is positioned above an upper surface of the passivation layer. The first conductive line, the bond wire, and the second conductive line are connected to form a coil.Type: ApplicationFiled: November 10, 2011Publication date: May 16, 2013Applicant: TAIWAN SEMICONDUCTOR MANUFACTURING COMPANY, LTD.Inventors: Justin SHI, Eric SOENEN, Alan ROTH
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Patent number: 8441235Abstract: A digital controlled battery charger comprises a power converter, a voltage sensor, a current senor, a mode selector and a digital controller. The voltage sensor and current sensor detect the voltage of a rechargeable battery and the current flowing through the rechargeable battery respectively. The mode selector selects a feedback signal from either the output of the voltage sensor or the output of the current sensor. The digital controller receives the selected feedback signal and generates a pulse width modulated signal for the power converter. Additionally, the digital controller is capable of dynamically adjusting its coefficients so that the control loop can maintain a stable system when the battery charger operates in different battery charging phases.Type: GrantFiled: February 23, 2011Date of Patent: May 14, 2013Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.Inventors: Justin Shi, Eric Soenen, Alan Roth
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Publication number: 20130082668Abstract: A DC to DC converter includes a switching circuit and a controller. The switching circuit includes an inductor coupled to first and second voltage supply nodes and to a plurality of output loads. The controller is configured to monitor a current through the inductor and to selectively couple the inductor to each of the plurality of output loads such that at least one of the following criteria is met: 1) an average current through the inductor is minimized for the particular output loads coupled to the switching circuit, or 2) minimize a number of times the switching circuit is switched during a charging period for the particular output loads coupled to the switching circuit.Type: ApplicationFiled: December 30, 2011Publication date: April 4, 2013Applicant: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD.Inventors: Chien-Chung Tseng, Eric Soenen, Alan Roth, Justin Shi
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Publication number: 20130045404Abstract: A battery fuel gauge apparatus comprises a current amplifier formed by a first transistor and a second transistor. Both transistors operate in the same operation conditions except that the second transistor has a smaller channel width in comparison with that of the first transistor. The first transistor is connected in series with a battery pack. The second transistor is connected in series with a sensing device. The sensing device comprises a first resistor and a second resistor connected in series. The first resistor has a positive temperature coefficient and the second resistor has a negative temperature coefficient.Type: ApplicationFiled: August 18, 2011Publication date: February 21, 2013Applicant: Taiwan Semiconductor Manufacturing Company, Ltd.Inventor: Justin Shi
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Publication number: 20130015827Abstract: A power management circuit and method are described. In the method, whether a first voltage and/or a voltage source are present is determined. Based on a first result of the determination, the first voltage is converted to a second voltage. A boost converter is used to convert the second voltage to a third voltage, Alternatively, based on a second result of the determination, a buck converter is used to convert the third voltage to the second voltage.Type: ApplicationFiled: July 11, 2011Publication date: January 17, 2013Applicant: TAIWAN SEMICONDUCTOR MANUFACTURING COMPANY, LTD.Inventor: Justin SHI
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Publication number: 20130009795Abstract: A circuit including an analog-to-digital converter (ADC). The ADC is configured to receive an analog feedback signal and an analog input signal and generate a digital output. The circuit further includes a noise shaper. The noise shaper is configured to truncate the digital output and generate a noise shaper output having a lower number of bits than the digital output, and to shape quantization noise generated during truncation. The circuit further includes a pulse width modulation digital-to-analog converter (PWM DAC). The PWM DAC configured to process the truncated digital output of the noise shaper output and generate a PWM DAC output.Type: ApplicationFiled: September 14, 2012Publication date: January 10, 2013Applicant: TAIWAN SEMICONDUCTOR MANUFACTURING COMPANY, LTD.Inventors: Eric SOENEN, Alan ROTH, Martin KINYUA, Justin SHI, Justin GAITHER
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Patent number: 8324955Abstract: A level shifter receives an input voltage signal and produces an output voltage signal. The level shifter includes a first inverter, configured to operate at a potential difference between a first voltage V1 and a second voltage V2. The output from the invert is capacitively coupled to an input of a latch circuit via a capacitor. The capacitor has a first terminal connected to the output terminal of the first inverter, and further has a second terminal. The level shifter has a resistor connected to a third voltage V3 and to the capacitor for tying the input to the latch circuit to a desired voltage. The latch circuit is configured to operate at a potential difference between a fourth voltage V4 and a fifth voltage V5. The latch has an input node connected to the resistor and the capacitor, and further has an output node connected to an output node of the level shifter.Type: GrantFiled: March 18, 2011Date of Patent: December 4, 2012Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.Inventors: Alan Roth, Ying-Chih Hsu, Justin Shi, Eric Soenen