Patents by Inventor Po-Yin Chao

Po-Yin Chao 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).

  • Patent number: 11567113
    Abstract: The present invention discloses an AC impedance measurement circuit with a calibration function, which is characterized in that only one calibration impedance is needed, associated with a switch circuit. Based on the measurement results of the two calibration modes, an equivalent impedance of the switch circuit, circuit gain and phase offset can be calculated. Based on the above results, the equivalent impedance of the internal circuit is deducted from the measurement result of the measurement mode to accurately calculate an AC conductance and a phase of the AC conductance for impedance to be measured. In addition, by adjusting a phase difference between an input sine wave signal and a sampling clock signal, impedance of the same phase and impedance of the quadrature phase can be obtained, respectively, and the AC impedance and phase angle of the impedance to be measured can be calculated.
    Type: Grant
    Filed: October 28, 2021
    Date of Patent: January 31, 2023
    Assignee: Hycon Technology Corporation
    Inventors: Po-Yin Chao, Shui-Chu Lee, Yu-Wei Chuang
  • Patent number: 11353483
    Abstract: Disclosed is a sensor with compensation circuit for compensating offset by use of a switching circuit. The sensor has two operation modes for generating two output voltages, respectively. Offset is compensated by adding the two output voltages, and magnitude of the offset is calculated by subtracting the two output voltages. A noise threshold is set for checking if the circuit is affected by interference. When the circuit is affected by interference, the adding result of the two output voltages will be larger than the noise threshold, the output data will be hold and not updated, then a reminding signal will be issued to show that the circuit is affected by interference, and the output data flickers on a display unit when the adding result of the two output voltages is larger than the noise threshold for showing the circuit is affected by interference.
    Type: Grant
    Filed: March 19, 2019
    Date of Patent: June 7, 2022
    Assignee: HYCON TECHNOLOGY CORP.
    Inventors: Po-Yin Chao, Hung-Wei Chen, Shui-Chu Lee
  • Patent number: 11280818
    Abstract: The present invention discloses an AC impedance measurement circuit with a calibration function, which is characterized in that only one calibration impedance is needed, associated with a switch circuit. Based on the measurement results of the two calibration modes, an equivalent impedance of the switch circuit, circuit gain and phase offset can be calculated. Based on the above results, the equivalent impedance of the internal circuit is deducted from the measurement result of the measurement mode to accurately calculate an AC conductance and a phase of the AC conductance for impedance to be measured. In addition, by adjusting a phase difference between an input sine wave signal and a sampling clock signal, impedance of the same phase and impedance of the quadrature phase can be obtained, respectively, and the AC impedance and phase angle of the impedance to be measured can be calculated.
    Type: Grant
    Filed: June 8, 2020
    Date of Patent: March 22, 2022
    Assignee: Hycon Technology Corporation
    Inventors: Po-Yin Chao, Shui-Chu Lee, Yu-Wei Chuang
  • Publication number: 20220074980
    Abstract: The present invention discloses an AC impedance measurement circuit with a calibration function, which is characterized in that only one calibration impedance is needed, associated with a switch circuit. Based on the measurement results of the two calibration modes, an equivalent impedance of the switch circuit, circuit gain and phase offset can be calculated. Based on the above results, the equivalent impedance of the internal circuit is deducted from the measurement result of the measurement mode to accurately calculate an AC conductance and a phase of the AC conductance for impedance to be measured. In addition, by adjusting a phase difference between an input sine wave signal and a sampling clock signal, impedance of the same phase and impedance of the quadrature phase can be obtained, respectively, and the AC impedance and phase angle of the impedance to be measured can be calculated.
    Type: Application
    Filed: October 28, 2021
    Publication date: March 10, 2022
    Inventors: Po-Yin Chao, Shui-Chu Lee, Yu-Wei Chuang
  • Publication number: 20210382100
    Abstract: The present invention discloses an AC impedance measurement circuit with a calibration function, which is characterized in that only one calibration impedance is needed, associated with a switch circuit. Based on the measurement results of the two calibration modes, an equivalent impedance of the switch circuit, circuit gain and phase offset can be calculated. Based on the above results, the equivalent impedance of the internal circuit is deducted from the measurement result of the measurement mode to accurately calculate an AC conductance and a phase of the AC conductance for impedance to be measured. In addition, by adjusting a phase difference between an input sine wave signal and a sampling clock signal, impedance of the same phase and impedance of the quadrature phase can be obtained, respectively, and the AC impedance and phase angle of the impedance to be measured can be calculated.
    Type: Application
    Filed: June 8, 2020
    Publication date: December 9, 2021
    Inventors: Po-Yin Chao, Shui-Chu Lee, Yu-Wei Chuang
  • Patent number: 10826449
    Abstract: Disclosed is a high accurate measurement circuit, and the feature is using bias switching circuit for compensating front end offset, and the back end offset of amplifier is also cancelled. In the real measurement environment, offset exists in the amplifier of the measurement circuit has, and non-ideal effects also exist in the interface between measurement terminal and the measurement circuit, such as leakage current of chip package pins or mismatch of the circuit. The above non-ideal effects belong to front end offset and cannot be compensated by the prior arts. The disclosed structure uses the bias switch circuit and uses different switching method in the two measurement timings. By subtracting the measurement results for the two measurement timings, the front end offset is compensated, and the back end offset of the amplifier is also cancelled.
    Type: Grant
    Filed: January 16, 2019
    Date of Patent: November 3, 2020
    Assignee: HYCON TECHNOLOGY CORP.
    Inventors: Po-Yin Chao, Hung-Wei Chen, Shui-Chu Lee
  • Publication number: 20200300897
    Abstract: Disclosed is a sensor with compensation circuit for compensating offset by use of a switching circuit. The sensor has two operation modes for generating two output voltages, respectively. Offset is compensated by adding the two output voltages, and magnitude of the offset is calculated by subtracting the two output voltages. A noise threshold is set for checking if the circuit is affected by interference. When the circuit is affected by interference, the adding result of the two output voltages will be larger than the noise threshold, the output data will be hold and not updated, then a reminding signal will be issued to show that the circuit is affected by interference, and the output data flickers on a display unit when the adding result of the two output voltages is larger than the noise threshold for showing the circuit is affected by interference.
    Type: Application
    Filed: March 19, 2019
    Publication date: September 24, 2020
    Inventors: Po-Yin CHAO, Hung-Wei CHEN, Shui-Chu LEE
  • Patent number: 10715172
    Abstract: Disclosed is an analog-to-digital converter with an adjustable operation frequency for noise reduction. The operation frequency of the analog-to-digital converter is adjustable, and if an input signal or a circuit is affected by a noise, the noise can be reduced by spreading the frequency distribution of the noise. A clock generator generates a clock signal for controlling the operation frequency of the analog-to-digital converter. Additionally, a clock controller receives a setting signal and a counting signal, controls the clock generator, and adjusts the frequency of the clock signal. In addition, a counter counts the number of periods of the clock signal, and generates the counting signal. Furthermore, a selecting signal makes the frequency of the clock signal gradually increase or decrease with time, thereby allowing change rate or change amount of the frequency of the clock signal to be adjustable.
    Type: Grant
    Filed: July 2, 2019
    Date of Patent: July 14, 2020
    Assignee: HYCON TECHNOLOGY CORP
    Inventors: Po-Yin Chao, Hung-Wei Chen, Shui-Chu Lee
  • Publication number: 20200186109
    Abstract: Disclosed is a high accurate measurement circuit, and the feature is using bias switching circuit for compensating front end offset, and the back end offset of amplifier is also cancelled. In the real measurement environment, offset exists in the amplifier of the measurement circuit has, and non-ideal effects also exist in the interface between measurement terminal and the measurement circuit, such as leakage current of chip package pins or mismatch of the circuit. The above non-ideal effects belong to front end offset and cannot be compensated by the prior arts. The disclosed structure uses the bias switch circuit and uses different switching method in the two measurement timings. By subtracting the measurement results for the two measurement timings, the front end offset is compensated, and the back end offset of the amplifier is also cancelled.
    Type: Application
    Filed: January 16, 2019
    Publication date: June 11, 2020
    Inventors: PO-YIN CHAO, HUNG-WEI CHEN, SHUI-CHU LEE
  • Patent number: 9595836
    Abstract: A power transfer circuit for achieving power transfer between stacked rechargeable battery cells is disclosed. The power transfer circuit includes an inductor, a first switch, a second switch and a controller. A loop of the rechargeable battery cell having higher power and the inductor is conducted so that the inductor stores power until the current flowing through the inductor meets the cutoff amount. Then, a loop of the rechargeable battery cell having lower power and the inductor is conducted so that the inductor releases the power saved in the inductor to the rechargeable battery cell having lower power until current flowing through the inductor changes direction. Therefore, balance between the rechargeable battery cells can be achieved.
    Type: Grant
    Filed: February 16, 2016
    Date of Patent: March 14, 2017
    Assignee: Hycon Technology Corp.
    Inventors: Chuan Sheng Wang, Po Yin Chao, Jui Chien Liu
  • Publication number: 20160164314
    Abstract: A power transfer circuit for achieving power transfer between stacked rechargeable battery cells is disclosed. The power transfer circuit includes an inductor, a first switch, a second switch and a controller. A loop of the rechargeable battery cell having higher power and the inductor is conducted so that the inductor stores power until the current flowing through the inductor meets the cutoff amount. Then, a loop of the rechargeable battery cell having lower power and the inductor is conducted so that the inductor releases the power saved in the inductor to the rechargeable battery cell having lower power until current flowing through the inductor changes direction. Therefore, balance between the rechargeable battery cells can be achieved.
    Type: Application
    Filed: February 16, 2016
    Publication date: June 9, 2016
    Applicant: HYCON TECHNOLOGY CORP.
    Inventors: Chuan Sheng WANG, Po Yin CHAO, Jui Chien LIU
  • Patent number: 9197090
    Abstract: A system of communication between stacked integrated circuits powered by different voltage supply levels in a multiple cell-stacked battery pack is disclosed. The system includes a number of battery cells and a number of integrated circuits. Each integrated circuit includes a battery detecting unit, a data transceiving unit and a power acquiring unit. Since the data transceiving unit transmits signals by toggling voltage level, current flow which causes higher power consumption can be avoided. Meanwhile, the system of communication can therefore be applied to many internal communicating protocols.
    Type: Grant
    Filed: March 4, 2014
    Date of Patent: November 24, 2015
    Assignee: Hycon Technology Corp.
    Inventors: Po Yin Chao, Chuan Sheng Wang, Kuo Yuan Yuan
  • Publication number: 20150255997
    Abstract: A system of communication between stacked integrated circuits powered by different voltage supply levels in a multiple cell-stacked battery pack is disclosed. The system includes a number of battery cells and a number of integrated circuits. Each integrated circuit includes a battery detecting unit, a data transceiving unit and a power acquiring unit. Since the data transceiving unit transmits signals by toggling voltage level, current flow which causes higher power consumption can be avoided. Meanwhile, the system of communication can therefore be applied to many internal communicating protocols.
    Type: Application
    Filed: March 4, 2014
    Publication date: September 10, 2015
    Applicant: HYCON TECHNOLOGY CORP.
    Inventors: Po Yin CHAO, Chuan Sheng WANG, Kuo Yuan YUAN
  • Publication number: 20150222137
    Abstract: A control method for achieving power transfer between stacked rechargeable battery cells and a power transfer circuit are disclosed. The power transfer circuit includes an inductor, a first switch, a second switch and a controller. A loop of the rechargeable battery cell having higher power and the inductor is conducted so that the inductor stores power until the current flowing through the inductor meets the cutoff amount. Then, a loop of the rechargeable battery cell having lower power and the inductor is conducted so that the inductor releases the power saved in the inductor to the rechargeable battery cell having lower power until current flowing through the inductor changes direction. Therefore, balance between the rechargeable battery cells can be achieved.
    Type: Application
    Filed: February 4, 2014
    Publication date: August 6, 2015
    Applicant: HYCON TECHNOLOGY CORP.
    Inventors: Chuan Sheng WANG, Po Yin CHAO, Jui Chien LIU
  • Patent number: 9069027
    Abstract: A cell voltage monitoring and self-calibrating device for a plurality of battery cells connected in series is disclosed. The device includes a first voltage measurement unit, a second voltage measurement unit, a first compensation unit, a second compensation unit and a calculating unit. It can measure voltages of each cell in a battery pack which provides power to electric equipment and calibrates itself during measurement.
    Type: Grant
    Filed: July 17, 2012
    Date of Patent: June 30, 2015
    Assignee: Hycon Technology Corp.
    Inventors: Po Yin Chao, Chuan Sheng Wang, Hung Wei Chen
  • Patent number: 8890548
    Abstract: A compensating circuit which has a programmable capacitance array for measuring AC voltage is disclosed in the present invention. The compensating circuit includes a pair of first leads for linking to an AC circuit; a variable capacitor, electrically linked to the first leads, for providing different capacitance value according to a programmable capacitance array; and a control unit, electrically linked to the first leads, for changing the capacitance value of the variable capacitor as one capacitance of the programmable capacitance array according to an external instruction. Since the capacitance of the compensating circuit is changeable, and AC voltage meter designed with the compensating circuit is able to measure voltage in wider range of frequency.
    Type: Grant
    Filed: August 20, 2012
    Date of Patent: November 18, 2014
    Assignee: Hycon Technology Corp.
    Inventor: Po Yin Chao
  • Publication number: 20140049275
    Abstract: A compensating circuit which has a programmable capacitance array for measuring AC voltage is disclosed in the present invention. The compensating circuit includes a pair of first leads for linking to an AC circuit; a variable capacitor, electrically linked to the first leads, for providing different capacitance value according to a programmable capacitance array; and a control unit, electrically linked to the first leads, for changing the capacitance value of the variable capacitor as one capacitance of the programmable capacitance array according to an external instruction. Since the capacitance of the compensating circuit is changeable, and AC voltage meter designed with the compensating circuit is able to measure voltage in wider range of frequency.
    Type: Application
    Filed: August 20, 2012
    Publication date: February 20, 2014
    Inventor: Po Yin CHAO
  • Publication number: 20140052397
    Abstract: An inrush current measuring device is disclosed in the present invention. The device includes a current sensing unit, an analog-to-digital converter, a filter, a microcontroller, and a display unit. The inrush current measuring device of the present invention can determine an inrush current by use of at least five sampling current values and does not need to depend on an observation starting point for detecting current value of the inrush current or a continuous detecting time period to obtain accurate measurement of inrush current.
    Type: Application
    Filed: August 20, 2012
    Publication date: February 20, 2014
    Inventors: Po Yin CHAO, Kuo Yuan YUAN, Yao-Jen CHANG, Yi-Ta HSIEH
  • Publication number: 20140025323
    Abstract: A cell voltage monitoring and self-calibrating device for a plurality of battery cells connected in series is disclosed. The device includes a first voltage measurement unit, a second voltage measurement unit, a first compensation unit, a second compensation unit and a calculating unit. It can measure voltages of each cell in a battery pack which provides power to electric equipment and calibrates itself during measurement.
    Type: Application
    Filed: July 17, 2012
    Publication date: January 23, 2014
    Inventors: Po Yin CHAO, Chuan Sheng WANG, Hung Wei CHEN
  • Publication number: 20120277931
    Abstract: The present invention is to disclose a micro control unit for an electric device. It includes a charge pump regulator, connected to an external DC power source, for boosting and regulating voltage outputted from the DC power source; and a controller, switched between the external DC power source while a current of the DC power source is stable and the charge pump regulator while the current is unstable, for outputting a stable voltage to the electric device, thereby eliminating damage to the electric device caused by input surge current.
    Type: Application
    Filed: April 28, 2011
    Publication date: November 1, 2012
    Applicant: HYCON TECHNOLOGY CORP.
    Inventors: Po-Yin Chao, Ean-Sue Lee, Shui-Chu Lee, Shu-Lan Xie