Patents by Inventor Yanding Liu

Yanding Liu 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).

  • Publication number: 20220255358
    Abstract: A wireless charging receiver, system, and control method, and relates to the field of wireless charging technologies are disclosed. A receiver coil of the receiver converts an alternating magnetic field transmitted by a transmitter to an alternating current, and delivers the alternating current to a compensation network. The compensation network compensates the alternating current, and then delivers the compensated alternating current to a rectifier. The rectifier rectifies the compensated alternating current to a direct current, and supplies the direct current to a load. The compensation network is a compensation circuit with a current source characteristic, so that the receiver coil and the compensation network, acting together with the transmitter, make an input end of the rectifier a constant current source.
    Type: Application
    Filed: April 29, 2022
    Publication date: August 11, 2022
    Inventors: Yunhe MAO, Zhixian WU, Yanding LIU
  • Patent number: 11362527
    Abstract: A charging method, a terminal, a charger, and a system, includes: obtaining, by a terminal, a charging mode supported by a charger connected to the terminal; when the charging mode supported by the charger includes an open-loop fast charging mode, detecting, by the terminal, whether both the terminal and the charger are in an open loop state; when both the terminal and the charger are in the open loop state, sending, by the terminal, an open-loop fast charging instruction to the charger; and receiving, by the terminal, a voltage and a current that are transmitted by the charger according to the open-loop fast charging instruction, and performing charging in the open-loop fast charging mode. When determining that the charger supports charging in the open-loop fast charging mode, the terminal is adjusted to the open loop state to perform charging, so as to shorten a charging time and improve user experience.
    Type: Grant
    Filed: November 21, 2018
    Date of Patent: June 14, 2022
    Assignee: Huawei Technologies Co., Ltd.
    Inventors: Ce Liu, Xujun Liu, Yanding Liu, Yunfeng Liu, Jinbo Ma
  • Publication number: 20220166257
    Abstract: A wireless charging transmitting apparatus and method and a wireless charging system are provided. The transmitting apparatus includes a compensation circuit (206), an inverter circuit (201), a transmitting coil (202), an impedance adjustment circuit (203), and a controller (204). The impedance adjustment circuit (203) includes a leading-bridge-arm impedance adjustment circuit and a lagging-bridge-arm impedance adjustment circuit, and the leading-bridge-arm impedance adjustment circuit and the lagging-bridge-arm impedance adjustment circuit each include an inductive branch, where the inductive branch includes at least one controllable inductive branch, and each controllable inductive branch includes at least one inductor and at least one switch. The controller (204) controls the switches in the controllable inductive branches to be turned on or off, to adjust values of inductive currents injected into a leading bridge arm and a lagging bridge arm through the impedance adjustment circuit (203).
    Type: Application
    Filed: February 11, 2022
    Publication date: May 26, 2022
    Applicant: HUAWEI TECHNOLOGIES CO., LTD.
    Inventors: Yunhe MAO, Yanding LIU
  • Patent number: 11190042
    Abstract: This application discloses wireless charging apparatuses, methods, and systems. One apparatus includes: a direct current to alternating current (DC-to-AC) inverter circuit configured to invert a DC output by a DC power supply to an AC; a compensation circuit configured to compensate the AC output by the DC-to-AC inverter circuit and send the AC obtained after the compensation to a transmitting coil; the transmitting coil configured to receive the AC and generate an AC magnetic field; an impedance adjustment circuit comprising one or more inductive branches; and a controller configured to control on or off of the switch in the inductive branch to change a current flowing out of the lagging bridge arm to enable a controllable switching transistor of the lagging bridge arm to implement zero-voltage switching.
    Type: Grant
    Filed: January 25, 2021
    Date of Patent: November 30, 2021
    Assignee: Huawei Technologies Co., Ltd.
    Inventors: Yunhe Mao, Yanding Liu
  • Publication number: 20210249889
    Abstract: A wireless charging receiving apparatus is provided, which includes a receiver coil, a rectifier, and a controller. The receiver coil is configured to receive electromagnetic energy and output an alternating current. The rectifier includes at least two controllable switches, and is configured to rectify the alternating current from the receiver coil to a direct current s. The controller is configured to perform phase-locking on a phase of a current fundamental component of the alternating current received by the rectifier, to obtain a periodic signal having a same frequency as the current fundamental component; and the controller is further configured to: generate a synchronization reference signal having the same frequency as the periodic signal, generate drive signals of the controllable switches in the rectifier based on the synchronization reference signal, and control, based on the drive signals, controllable switches in the rectifier to convert the alternating current into the direct current.
    Type: Application
    Filed: April 29, 2021
    Publication date: August 12, 2021
    Inventors: Yunhe Mao, Zhixian Wu, Xiaosheng Zeng, Yanding Liu
  • Publication number: 20210226473
    Abstract: Example wireless charging systems and methods are disclosed. One example system includes a receive end and a transmit end. The receive end includes a receive coil, a receive end compensation circuit, a rectifier, and a controller. The controller adjusts a phase difference between a first bridge arm and a second bridge arm of the rectifier, and adjusts a phase-shift angle between a bridge arm voltage of the rectifier and a fundamental component of an input current of the rectifier, so that zero-voltage switching is implemented for controllable switching transistors of the rectifier. An inductance compensation module may weaken a capacitive part of the equivalent impedance, and reduce reactive power of the wireless charging system.
    Type: Application
    Filed: April 9, 2021
    Publication date: July 22, 2021
    Inventors: Yunhe MAO, Yanding LIU
  • Publication number: 20210152013
    Abstract: This application discloses wireless charging apparatuses, methods, and systems. One apparatus includes: a direct current to alternating current (DC-to-AC) inverter circuit configured to invert a DC output by a DC power supply to an AC; a compensation circuit configured to compensate the AC output by the DC-to-AC inverter circuit and send the AC obtained after the compensation to a transmitting coil; the transmitting coil configured to receive the AC and generate an AC magnetic field; an impedance adjustment circuit comprising one or more inductive branches; and a controller configured to control on or off of the switch in the inductive branch to change a current flowing out of the lagging bridge arm to enable a controllable switching transistor of the lagging bridge arm to implement zero-voltage switching.
    Type: Application
    Filed: January 25, 2021
    Publication date: May 20, 2021
    Inventors: Yunhe MAO, Yanding LIU
  • Publication number: 20210119494
    Abstract: An apparatus and a method for detecting a metal foreign matter in a wireless charging system, and a device are provided. The apparatus includes a phase-lock control module, an excitation module, a resonance module, a signal collection module, and a determining module. The phase-lock control module is configured to: adjust a frequency of a first signal and output the first signal to the excitation module and the determining module. The excitation module is configured to: generate a second signal based on the first signal, and output the second signal to the resonance module. The resonance module is configured to output the third signal to the signal collection module under excitation of the second signal. The determining module is configured to determine whether there is a metal foreign matter in an area of the target coil.
    Type: Application
    Filed: December 24, 2020
    Publication date: April 22, 2021
    Inventors: Yunhe Mao, Zhixian Wu, Yanding Liu, Furong Xiao
  • Publication number: 20210091599
    Abstract: A wireless charging apparatus includes a receive end coil, a switch selection circuit, a plurality of charging circuits, and a receive end controller. An input end of the switch selection circuit is connected to an output end of the receive end coil, and an output end of the switch selection circuit is connected to an input end of each of the charging circuits.
    Type: Application
    Filed: December 7, 2020
    Publication date: March 25, 2021
    Inventors: Qitang Liu, Ce Liu, Weiliang Shu, Yanding Liu, Pinghua Wang, Yong Cao
  • Publication number: 20200350772
    Abstract: Example batteries, terminals, and charging systems are described. One example battery includes a battery charging port, a battery discharging port, a battery negative port, an overcurrent protection element, a protection integrated circuit, a control switch, and an electrochemical cell. The battery charging port is connected to a positive electrode of the electrochemical cell. The control switch is connected in series between a negative electrode of the electrochemical cell and the battery negative port. The protection integrated circuit is connected in parallel to two ends of the electrochemical cell. The protection integrated circuit is further connected to the control switch so as to send a control signal to the control switch. In addition, the overcurrent protection element is connected in series between the battery discharging port and the positive electrode of the electrochemical cell. The battery provided in the present application has both a charging path and a discharging path.
    Type: Application
    Filed: July 22, 2020
    Publication date: November 5, 2020
    Inventors: Xinyu LIU, Pinghua WANG, Ce LIU, Yanding LIU, Jinbo MA
  • Publication number: 20200343756
    Abstract: A terminal and a fast charging method includes sending, by the terminal, instruction information to a charger connected to the terminal in order to instruct the charger to adjust an output voltage and an output current, converting, by the terminal, the output voltage of the charger into 1/K times the output voltage, and converting the output current of the charger into K times the output current such that a charging circuit between two sides of a battery charges the battery with the 1/K times the output voltage and the K times the output current, where K is a conversion coefficient of a conversion circuit with a fixed conversion ratio in the terminal and is a constant value, and K is any real number greater than one.
    Type: Application
    Filed: July 9, 2020
    Publication date: October 29, 2020
    Inventors: Xujun Liu, Ce Liu, Yanding Liu, Jinbo Ma, Pinghua Wang
  • Patent number: 10819127
    Abstract: A charging circuit in a terminal, or a charging system, is respectively coupled to a charger, a terminal load, and a battery. The charging circuit includes a first adjustment circuit, a current detection circuit, a voltage detection circuit, and a control circuit. A first end of the first adjustment circuit is coupled to the charger, a second end of the first adjustment circuit is further coupled to the terminal load, a third end of the first adjustment circuit is coupled to the control circuit, and a second end of the current detection circuit is coupled to a positive electrode of the battery.
    Type: Grant
    Filed: March 20, 2019
    Date of Patent: October 27, 2020
    Assignee: HUAWEI TECHNOLOGIES CO., LTD.
    Inventors: Xinyu Liu, Yanding Liu, Ce Liu, Pinghua Wang, Jinbo Ma
  • Patent number: 10797493
    Abstract: An example battery, a terminal, or a charging system can include a battery charging port, a battery discharging port, a battery negative port, an overcurrent protection element, a protection integrated circuit, a control switch, and an electrochemical cell. The battery charging port is connected to a positive electrode of the electrochemical cell, the control switch is connected in series between a negative electrode of the electrochemical cell and the battery negative port, the protection integrated circuit is connected in parallel to two ends of the electrochemical cell, and the protection integrated circuit is further connected to the control switch, so as to send a control signal to the control switch. In addition, the overcurrent protection element is connected in series between the battery discharging port and the positive electrode of the electrochemical cell.
    Type: Grant
    Filed: March 20, 2019
    Date of Patent: October 6, 2020
    Assignee: Huawei Technologies Co., Ltd.
    Inventors: Xinyu Liu, Pinghua Wang, Ce Liu, Yanding Liu, Jinbo Ma
  • Patent number: 10749357
    Abstract: An example battery, a terminal, or a charging system can include a battery charging port, a battery discharging port, a battery negative port, an overcurrent protection element, a protection integrated circuit, a control switch, and an electrochemical cell. The battery charging port is connected to a positive electrode of the electrochemical cell, the control switch is connected in series between a negative electrode of the electrochemical cell and the battery negative port, the protection integrated circuit is connected in parallel to two ends of the electrochemical cell, and the protection integrated circuit is further connected to the control switch, so as to send a control signal to the control switch. In addition, the overcurrent protection element is connected in series between the battery discharging port and the positive electrode of the electrochemical cell.
    Type: Grant
    Filed: March 20, 2019
    Date of Patent: August 18, 2020
    Assignee: Huawei Technologies Co., Ltd.
    Inventors: Xinyu Liu, Pinghua Wang, Ce Liu, Yanding Liu, Jinbo Ma
  • Patent number: 10734830
    Abstract: A terminal and a fast charging method to fast charge the terminal, where the method includes sending, by the terminal, instruction information to a charger connected to the terminal in order to instruct the charger to adjust an output voltage and an output current, converting, by the terminal, the output voltage of the charger into 1/K times the output voltage, and converting the output current of the charger into K times the output current such that a charging circuit between two sides of a battery charges the battery with the 1/K times the output voltage and the K times the output current, where K is a conversion coefficient of a conversion circuit with a fixed conversion ratio in the terminal and is a constant value, and K is any real number greater than one.
    Type: Grant
    Filed: October 1, 2018
    Date of Patent: August 4, 2020
    Assignee: HUAWEI TECHNOLOGIES CO., LTD.
    Inventors: Xujun Liu, Ce Liu, Yanding Liu, Jinbo Ma, Pinghua Wang
  • Publication number: 20200220347
    Abstract: A power protection apparatus includes a protection integrated circuit (IC), a switch transistor group, and a sampling resistor. The protection IC is respectively connected to a positive electrode and a negative electrode of the cell and includes a mirror current input port, a mirror current output port, an operational amplifier, a voltage regulation switch transistor, and a charge-discharge protection circuit. The operational amplifier includes a positive input pin, a negative input pin, and an output pin. The switch transistor group is connected between the positive electrode of the cell and the load and is configured to turn on or turn off a charge-discharge loop of the cell, and the at least one control circuit is connected to the at least one charge-discharge protection circuit of the protection IC and is configured to receive a control signal of the protection IC to control the switch transistor group to be turned off to implement abnormity protection of the cell.
    Type: Application
    Filed: March 20, 2020
    Publication date: July 9, 2020
    Inventors: Xinyu LIU, Yanding LIU, Ce LIU, Pinghua WANG, Yong CAO
  • Publication number: 20200220346
    Abstract: A battery protection apparatus power protection apparatus is configured to protect an electrochemical cell connected to a load, and includes a protection IC, a switching transistor group, and a sampling resistor. The protection IC includes two power input terminals respectively connected to positive and negative electrodes of the electrochemical cell, and an operational amplifier, where the operational amplifier includes a positive input pin, a negative input pin, and an output pin. The switching transistor group is connected between the negative electrode of the electrochemical cell and the load, and is configured to control turn-on and turn-off of a charge and discharge circuit of the electrochemical cell. The sampling detection resistor Rs is serially connected between the sampling circuit detection terminal and the output pin, where the main circuit detection terminal is connected to the positive input pin, and the sampling circuit detection terminal is connected to the negative input pin.
    Type: Application
    Filed: March 20, 2020
    Publication date: July 9, 2020
    Inventors: Xinyu LIU, Yanding LIU, Ce LIU, Pinghua WANG, Yong CAO
  • Publication number: 20190222041
    Abstract: A charging circuit in a terminal, or a charging system, is respectively coupled to a charger, a terminal load, and a battery. The charging circuit includes a first adjustment circuit, a current detection circuit, a voltage detection circuit, and a control circuit. A first end of the first adjustment circuit is coupled to the charger, a second end of the first adjustment circuit is further coupled to the terminal load, a third end of the first adjustment circuit is coupled to the control circuit, and a second end of the current detection circuit is coupled to a positive electrode of the battery.
    Type: Application
    Filed: March 20, 2019
    Publication date: July 18, 2019
    Inventors: Xinyu Liu, Yanding Liu, Ce Liu, Pinghua Wang, Jinbo Ma
  • Publication number: 20190222039
    Abstract: An example battery, a terminal, or a charging system can include a battery charging port, a battery discharging port, a battery negative port, an overcurrent protection element, a protection integrated circuit, a control switch, and an electrochemical cell. The battery charging port is connected to a positive electrode of the electrochemical cell, the control switch is connected in series between a negative electrode of the electrochemical cell and the battery negative port, the protection integrated circuit is connected in parallel to two ends of the electrochemical cell, and the protection integrated circuit is further connected to the control switch, so as to send a control signal to the control switch. In addition, the overcurrent protection element is connected in series between the battery discharging port and the positive electrode of the electrochemical cell.
    Type: Application
    Filed: March 20, 2019
    Publication date: July 18, 2019
    Inventors: Xinyu LIU, Pinghua WANG, Ce LIU, Yanding LIU, Jinbo MA
  • Publication number: 20190089170
    Abstract: A charging method, a terminal, a charger, and a system, includes: obtaining, by a terminal, a charging mode supported by a charger connected to the terminal; when the charging mode supported by the charger includes an open-loop fast charging mode, detecting, by the terminal, whether both the terminal and the charger are in an open loop state; when both the terminal and the charger are in the open loop state, sending, by the terminal, an open-loop fast charging instruction to the charger; and receiving, by the terminal, a voltage and a current that are transmitted by the charger according to the open-loop fast charging instruction, and performing charging in the open-loop fast charging mode. When determining that the charger supports charging in the open-loop fast charging mode, the terminal is adjusted to the open loop state to perform charging, so as to shorten a charging time and improve user experience.
    Type: Application
    Filed: November 21, 2018
    Publication date: March 21, 2019
    Inventors: Ce LIU, Xujun LIU, Yanding LIU, Yunfeng LIU, Jinbo MA