Patents by Inventor Haiwang LI

Haiwang LI 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: 12483107
    Abstract: Disclosed is an ultra-micro voice coil motor based on Micro-Electro-Mechanical System (MEMS) three-dimensional coil. The ultra-micro voice coil motor based on MEMS three-dimensional coil comprises a yoke, where an accommodating cavity is formed in the yoke, and a tongue is arranged in the accommodating cavity of the yoke; and two permanent magnets symmetrically arranged at a top and a bottom of the accommodating cavity; the three-dimensional coil is provided with an iron core slot, and the tongue of the yoke passes through the iron core slot to be in clearance fit with the three-dimensional coil; one end of the yoke is provided with a baffle, same poles of two magnets face each other, and a stator of the voice coil motor is the three-dimensional coil or the yoke and the permanent magnets.
    Type: Grant
    Filed: July 7, 2022
    Date of Patent: November 25, 2025
    Assignee: Beihang University
    Inventors: Tiantong Xu, Haiwang Li, Kaiyun Zhu, Zhi Tao, Kaibo Lei, Yanxin Zhai, Xiao Zhang, Yuying Wu, Wenbin Wang, Xiaoda Cao, Weidong Fang
  • Patent number: 12266470
    Abstract: Embodiments of the present application provide a MEMS solenoid transformer, comprising a silicon substrate, a soft magnetic core, a first solenoid and a second solenoid; wherein, the soft magnetic core is wrapped inside the silicon substrate, the silicon substrate is provided with a first spiral channel and a second spiral channel, and two opposite sides of the soft magnetic core respectively pass through a center of the first spiral channel and a center of the second spiral channel; the first solenoid and the second solenoid are respectively disposed in the first spiral channel and the second spiral channel. By disposing the soft magnetic core, the first solenoid and the second solenoid of the transformer inside the silicon substrate completely, the thickness of the silicon substrate is fully utilized, and the obtained transformer has a larger winding cross-sectional area and a higher magnetic flux, increasing the inductance value of the transformer.
    Type: Grant
    Filed: July 8, 2019
    Date of Patent: April 1, 2025
    Assignee: BEIHANG UNIVERSITY
    Inventors: Tiantong Xu, Zhi Tao, Haiwang Li, Hanxiao Wu, Yanxin Zhai, Kaiyun Zhu, Wenbin Wang, Xiaoda Cao, Weidong Fang
  • Publication number: 20240428990
    Abstract: Embodiments of the present application provide a MEMS solenoid transformer, comprising a silicon substrate, a soft magnetic core, a first solenoid and a second solenoid; wherein, the soft magnetic core is wrapped inside the silicon substrate, the silicon substrate is provided with a first spiral channel and a second spiral channel, and two opposite sides of the soft magnetic core respectively pass through a center of the first spiral channel and a center of the second spiral channel; the first solenoid and the second solenoid are respectively disposed in the first spiral channel and the second spiral channel. By disposing the soft magnetic core, the first solenoid and the second solenoid of the transformer inside the silicon substrate completely, the thickness of the silicon substrate is fully utilized, and the obtained transformer has a larger winding cross-sectional area and a higher magnetic flux, increasing the inductance value of the transformer.
    Type: Application
    Filed: July 8, 2019
    Publication date: December 26, 2024
    Inventors: Tiantong XU, Zhi TAO, Haiwang LI, Hanxiao WU, Yanxin ZHAI, Kaiyun ZHU, Wenbin WANG, Xiaoda CAO, Weidong FANG
  • Patent number: 12136509
    Abstract: Embodiments of the present application provides a MEMS solenoid inductor, including: a silicon substrate, a soft magnetic core, and a solenoid; wherein the soft magnetic core is wrapped inside the silicon substrate, the silicon substrate is provided with a spiral channel, the soft magnetic core passes through a center of the spiral channel, and the solenoid is disposed in the spiral channel. By disposing the soft magnetic core and the solenoid of the inductor inside the silicon substrate completely, the thickness of the silicon substrate is fully utilized, and the obtained inductor has a larger winding cross-sectional area and improved magnetic flux, which increases the inductance value of the inductor; at the same time, the silicon substrate plays a protective role on the soft magnetic core and the solenoid, the strength of the inductor is improved, and the good impact resistance is provided.
    Type: Grant
    Filed: July 8, 2019
    Date of Patent: November 5, 2024
    Assignee: BEIHANG UNIVERSITY
    Inventors: Tiantong Xu, Zhi Tao, Haiwang Li, Jiamian Sun, Hanxiao Wu, Kaiyun Zhu, Yanxin Zhai, Xiaoda Cao, Wenbin Wang, Weidong Fang
  • Patent number: 11788914
    Abstract: Provided are a pressure difference sensor, and a manufacturing method and an application thereof. A manner of bonding three layers of wafers is adopted, and the sensor includes an upper structure, an intermediate structure and a lower structure. Each of the upper structure and the intermediate structure is manufactured by a silicon-on-insulator (SOI) wafer, the lower structure is manufactured by patterned doped intrinsic silicon; and a lead pad of each of the upper electrode, and the intermediate electrode and the lower electrode is located on a corresponding one of three-stepped steps at a side of the pressure difference sensor. Annular through holes are formed around the upper electrode and the lower electrode. A constant capacitance of a capacitance signal outputted by an upper capacitor of the sensor by extending an electric field line path of the constant capacitor part.
    Type: Grant
    Filed: February 14, 2023
    Date of Patent: October 17, 2023
    Assignees: LANGFANG ZHICHI POWER TECHNOLOGY LTD., BEIHANG UNIVERSITY
    Inventors: Tiantong Xu, Haiwang Li, Zhi Tao, Xiaoda Cao, Yanxin Zhai, Chunhui Yang, Haonan Lu, Di An, Hengyi Wang, Zhiyang Wang, Kaiyun Zhu, Weidong Fang, Wenbin Wang, Kaibo Lei, Wensong Xiao, Murun Li, Xiao Zhang, Yang Feng
  • Publication number: 20230258521
    Abstract: Provided are a pressure difference sensor, and a manufacturing method and an application thereof. A manner of bonding three layers of wafers is adopted, and the sensor includes an upper structure, an intermediate structure and a lower structure. Each of the upper structure and the intermediate structure is manufactured by a silicon-on-insulator (SOI) wafer, the lower structure is manufactured by patterned doped intrinsic silicon; and a lead pad of each of the upper electrode, and the intermediate electrode and the lower electrode is located on a corresponding one of three-stepped steps at a side of the pressure difference sensor. Annular through holes are formed around the upper electrode and the lower electrode. A constant capacitance of a capacitance signal outputted by an upper capacitor of the sensor by extending an electric field line path of the constant capacitor part.
    Type: Application
    Filed: February 14, 2023
    Publication date: August 17, 2023
    Inventors: Tiantong Xu, Haiwang Li, Zhi Tao, Xiaoda Cao, Yanxin Zhai, Chunhui Yang, Haonan Lu, Di An, Zhiyang Wang, Hengyi Wang, Kaiyun Zhu, Weidong Fang, Wenbin Wang, Kaibo Lei, Wensong Xiao, Murun Li, Xiao Zhang, Yang Feng
  • Publication number: 20230022202
    Abstract: Disclosed is an ultra-micro voice coil motor based on Micro-Electro-Mechanical System (MEMS) three-dimensional coil. The ultra-micro voice coil motor based on MEMS three-dimensional coil comprises a yoke, where an accommodating cavity is formed in the yoke, and a tongue is arranged in the accommodating cavity of the yoke; and two permanent magnets symmetrically arranged at a top and a bottom of the accommodating cavity; the three-dimensional coil is provided with an iron core slot, and the tongue of the yoke passes through the iron core slot to be in clearance fit with the three-dimensional coil; one end of the yoke is provided with a baffle, same poles of two magnets face each other, and a stator of the voice coil motor is the three-dimensional coil or the yoke and the permanent magnets.
    Type: Application
    Filed: July 7, 2022
    Publication date: January 26, 2023
    Applicant: Beihang University
    Inventors: Tiantong XU, Haiwang LI, Kaiyun ZHU, Zhi TAO, Kaibo LEI, Yanxin ZHAI, Xiao ZHANG, Yuying WU, Wenbin WANG, Xiaoda CAO, Weidong FANG
  • Publication number: 20220013275
    Abstract: Embodiments of the present application provides a MEMS solenoid inductor, including: a silicon substrate, a soft magnetic core, and a solenoid; wherein the soft magnetic core is wrapped inside the silicon substrate, the silicon substrate is provided with a spiral channel, the soft magnetic core passes through a center of the spiral channel, and the solenoid is disposed in the spiral channel. By disposing the soft magnetic core and the solenoid of the inductor inside the silicon substrate completely, the thickness of the silicon substrate is fully utilized, and the obtained inductor has a larger winding cross-sectional area and improved magnetic flux, which increases the inductance value of the inductor; at the same time, the silicon substrate plays a protective role on the soft magnetic core and the solenoid, the strength of the inductor is improved, and the good impact resistance is provided.
    Type: Application
    Filed: July 8, 2019
    Publication date: January 13, 2022
    Inventors: Tiantong XU, Zhi TAO, Haiwang LI, Jiamian SUN, Hanxiao WU, Kaiyun ZHU, Yanxin ZHAI, Xiaoda CAO, Wenbin WANG, Weidong FANG
  • Publication number: 20210358688
    Abstract: Embodiments of the present application provides a MEMS solenoid inductor, including: a silicon substrate, a soft magnetic core, and a solenoid; wherein the soft magnetic core is wrapped inside the silicon substrate, the silicon substrate is provided with a spiral channel, the soft magnetic core passes through a center of the spiral channel, and the solenoid is disposed in the spiral channel. By disposing the soft magnetic core and the solenoid of the inductor inside the silicon substrate completely, the thickness of the silicon substrate is fully utilized, and the obtained inductor has a larger winding cross-sectional area and improved magnetic flux, which increases the inductance value of the inductor; at the same time, the silicon substrate plays a protective role on the soft magnetic core and the solenoid, the strength of the inductor is improved, and the good impact resistance is provided.
    Type: Application
    Filed: July 8, 2019
    Publication date: November 18, 2021
    Inventors: Tiantong XU, Zhi TAO, Haiwang LI, Hanxiao WU, Yanxin ZHAI, Kaiyun ZHU, Wenbin WANG, Xiaoda CAO, Weidong FANG