Patents by Inventor Zhenxiao Fu

Zhenxiao Fu 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: 12281047
    Abstract: Disclosed is a low temperature co-fired dielectric material with an adjustable dielectric constant, wherein it comprises a zirconia main phase and a silicon-based amorphous filler, a weight ratio of the zirconia main phase to the silicon-based amorphous filler is 40-65:35-60; a weight percentage of SiO2 in the silicon-based amorphous filler is ?50%. The dielectric constant of low temperature co-fired dielectric material can be continuously adjusted in a wide range of 7-12, the dielectric loss can be as low as 0.1% at 1 MHz. The material system can be sintered at 800-900° C. and co-fired with silver electrode. It can be used as the low temperature co-fired dielectric material. The invention also discloses a method for preparing the low temperature co-fired dielectric material with an adjustable dielectric constant.
    Type: Grant
    Filed: May 3, 2021
    Date of Patent: April 22, 2025
    Assignee: GUANGDONG FENGHUA ADVANCED TECHNOLOGY HOLDING CO., LTD.
    Inventors: Shiwo Ta, Xiaozhou Wang, Tao Chen, Yun Liu, Terry James Frankcombe, Zhenxiao Fu, Xiuhua Cao, Chunyuan Hu
  • Patent number: 12145887
    Abstract: The present invention discloses a multiphase ceramic material with a giant dielectric constant, wherein the multiphase ceramic material has a general formula of AxBnxTi1?(n+1)xO2; wherein A is at least one selected from the group consisting of Nb, Ta, V, Mo, and Sb, B is at least one selected from the group consisting of In, Ga, Al, Co, Cr, Sc, Fe (III), and a trivalent rare-earth cation; n is a molar ratio of B to A, 1<n?5, 0<x?0.1. The multiphase ceramic material possesses outstanding properties including a giant dielectric constant, a low dielectric loss, and excellent frequency- and temperature-stability. In particular, it exhibits a high insulation resistivity of higher than 1011?·cm and a high breakdown voltage, which implies it can be applied in high-energy storage devices and supercapacitors. This invention also provides a method to synthesize the multiphase ceramic material.
    Type: Grant
    Filed: March 29, 2020
    Date of Patent: November 19, 2024
    Assignee: GUANGDONG FENGHUA ADVANCED TECHNOLOGY HOLDING CO., LTD.
    Inventors: Xiuhua Cao, Jianmei Liu, Dehong Chen, Haidong Ren, Yun Liu, Terry James Frankcombe, Zhenxiao Fu, Shiwo Ta
  • Patent number: 12037290
    Abstract: Disclosed herein is a doped perovskite barium stannate material, which has a chemical general formula of BaAxBxSn1-2xO3, where A is at least one of In, Y, Bi and La; B is at least one of Nb and Ta, and 0<x?0.025. The doped perovskite barium stannate material disclosed in the invention has a high dielectric constant, low dielectric loss and good temperature-stability, and it can be used not only as low-frequency ceramic capacitor dielectrics, but also as microwave dielectric ceramics because of its excellent microwave dielectric properties, implying the potential application in the field of microwave communication. What's more, disclosed is a method to prepare the doped perovskite barium stannate material and the application of the doped perovskite barium stannate material in a low-frequency ceramic capacitor or microwave communication dielectric ceramics.
    Type: Grant
    Filed: May 3, 2021
    Date of Patent: July 16, 2024
    Assignee: GUANGDONG FENGHUA ADVANCED TECHNOLOGY HOLDING CO., LTD.
    Inventors: Zhenxiao Fu, Jianmei Liu, Haidong Ren, Yun Liu, Terry James Frankcombe, Xiuhua Cao, Shiwo Ta
  • Patent number: 11459265
    Abstract: The disclosure relates to a Low Temperature Co-fired Ceramic (LTCC) substrate and a preparation method thereof, and in particular to a dielectric-constant-adjustable LTCC substrate and a preparation method thereof. The LTCC substrate of the disclosure includes the following components: glass, SiO2 and Al2O3, a weight percentage of the SiO2 in the LTCC substrate is 10% to 25%.
    Type: Grant
    Filed: November 7, 2019
    Date of Patent: October 4, 2022
    Assignee: GUANGDONG FENGHUA ADVANCED TECHNOLOGY HOLDING CO., LTD.
    Inventors: Tao Chen, Kun Huang, Shiwo Ta, Zhenxiao Fu, Yun Liu
  • Publication number: 20220127197
    Abstract: The present invention discloses a multiphase ceramic material with a giant dielectric constant, wherein the multiphase ceramic material has a general formula of AxBnxTi1?(n+1)xO2; wherein A is at least one selected from the group consisting of Nb, Ta, V, Mo, and Sb, B is at least one selected from the group consisting of In, Ga, Al, Co, Cr, Sc, Fe (III), and a trivalent rare-earth cation; n is a molar ratio of B to A, 1<n?5 , 0<x?0.1. The multiphase ceramic material possesses outstanding properties including a giant dielectric constant, a low dielectric loss, and excellent frequency- and temperature-stability. In particular, it exhibits a high insulation resistivity of higher than 1011 ?·cm and a high breakdown voltage, which implies it can be applied in high-energy storage devices and supercapacitors. This invention also provides a method to synthesize the multiphase ceramic material.
    Type: Application
    Filed: March 29, 2020
    Publication date: April 28, 2022
    Inventors: Xiuhua Cao, Jianmei Liu, Dehong Chen, Haidong Ren, Yun Liu, Terry James Frankcombe, Zhenxiao Fu, Shiwo Ta
  • Publication number: 20210387890
    Abstract: The disclosure relates to a Low Temperature Co-fired Ceramic (LTCC) substrate and a preparation method thereof, and in particular to a dielectric-constant-adjustable LTCC substrate and a preparation method thereof. The LTCC substrate of the disclosure includes the following components: glass, SiO2 and Al2O3, a weight percentage of the SiO2 in the LTCC substrate is 10% to 25%.
    Type: Application
    Filed: November 7, 2019
    Publication date: December 16, 2021
    Inventors: Tao CHEN, Kun HUANG, Shiwo TA, Zhenxiao FU, Yun LIU
  • Publication number: 20210355035
    Abstract: An LTCC microwave dielectric material, including the following components: a Ba5Si8O21+(1?a) (MgxCaySrzBa1-x-y-z)WO4+Ba—B—Si glass; wherein 0.4?a?0.8, 0?x?1, 0?y?1, 0?z?1. By adjusting the amounts of Ba5Si8O21 and (MgxCaySrzBa1-x-y-z)WO4, the temperature coefficient of resonance frequency can be adjusted to nearly zero. The material is suitable for the fields of high-frequency communication and radiofrequency. Also disclosed is a method for preparing the LTCC microwave dielectric material.
    Type: Application
    Filed: July 29, 2021
    Publication date: November 18, 2021
    Inventors: Tao Chen, Kai Cheng, Xiuhua Cao, Shiwo Ta, Zhenxiao Fu
  • Publication number: 20210309578
    Abstract: Disclosed is a low temperature co-fired dielectric material with an adjustable dielectric constant, wherein it comprises a zirconia main phase and a silicon-based amorphous filler, a weight ratio of the zirconia main phase to the silicon-based amorphous filler is 40-65: 35-60; a weight percentage of SiO2. in the silicon-based amorphous filler is ?50%. The dielectric constant of low temperature co-fired dielectric material can be continuously adjusted in a wide range of 7-12, the dielectric loss can be as low as 0.1% at 1 MHz. The material system can be sintered at 800-900° C. and co-fired with silver electrode. It can be used as the low temperature co-fired dielectric material. The invention also discloses a method for preparing the low temperature co-fired dielectric material with an adjustable dielectric constant.
    Type: Application
    Filed: May 3, 2021
    Publication date: October 7, 2021
    Inventors: Shiwo Ta, Xiaozhou Wang, Tao Chen, Yun Liu, Terry James Frankcombe, Zhenxiao Fu, Xiuhua Cao, Chunyuan Hu
  • Publication number: 20210300827
    Abstract: Disclosed herein is a doped perovskite barium stannate material, which has a chemical general formula of BaAxBxSn1-2xO3, where A is at least one of In, Y, Bi and La; B is at least one of Nb and Ta, and 0<x?0.025. The doped perovskite barium stannate material disclosed in the invention has a high dielectric constant, low dielectric loss and good temperature-stability, and it can be used not only as low-frequency ceramic capacitor dielectrics, but also as microwave dielectric ceramics because of its excellent microwave dielectric properties, implying the potential application in the field of microwave communication. What's more, disclosed is a method to prepare the doped perovskite barium stannate material and the application of the doped perovskite barium stannate material in a low-frequency ceramic capacitor or microwave communication dielectric ceramics.
    Type: Application
    Filed: May 3, 2021
    Publication date: September 30, 2021
    Inventors: Zhenxiao Fu, Jianmei Liu, Haidong Ren, Yun Liu, Terry James Frankcombe, Xiuhua Cao, Shiwo Ta
  • Patent number: 10899669
    Abstract: The present invention relates to a boroaluminosilicate mineral material, a low temperature co-fired ceramic composite material, a low temperature co-fired ceramic, a composite substrate and preparation methods thereof. A boroaluminosilicate mineral material for a low temperature co-fired ceramic, the boroaluminosilicate mineral material comprises the following components expressed in mass percentages of the following oxides: 0.41%-1.15% of Na2O, 14.15%-23.67% of K2O, 1.17%-4.10% of CaO, 0-2.56% of Al2O3, 13.19%-20.00% of B2O3, and 53.47%-67.17% of SiO2. The aforementioned boroaluminosilicate mineral material is chemically stable; a low temperature co-fired ceramic prepared from it not only has excellent dielectric properties, but also has a low sintering temperature, a low thermal expansion coefficient, and high insulation resistance; it is also well-matched with the LTCC process and can be widely used in the field of LTCC package substrates.
    Type: Grant
    Filed: March 13, 2018
    Date of Patent: January 26, 2021
    Assignee: GUANGDONG FENGHUA ADVANCED TECHNOLOGY HOLDING CO., LTD.
    Inventors: Zhe Song, Yun Liu, Kun Huang, Luwei Fu, Zhenxiao Fu, Joanna Chu, Lasse Noren, Tao Chen, Shiwo Ta
  • Publication number: 20200123059
    Abstract: The present invention relates to a boroaluminosilicate mineral material, a low temperature co-fired ceramic composite material, a low temperature co-fired ceramic, a composite substrate and preparation methods thereof. A boroaluminosilicate mineral material for a low temperature co-fired ceramic, the boroaluminosilicate mineral material comprises the following components expressed in mass percentages of the following oxides: 0.41%-1.15% of Na2O, 14.15%-23.67% of K2O, 1.17%-4.10% of CaO, 0-2.56% of Al2O3, 13.19%-20.00% of B2O3, and 53.47%-67.17% of SiO2. The aforementioned boroaluminosilicate mineral material is chemically stable; a low temperature co-fired ceramic prepared from it not only has excellent dielectric properties, but also has a low sintering temperature, a low thermal expansion coefficient, and high insulation resistance; it is also well-matched with the LTCC process and can be widely used in the field of LTCC package substrates.
    Type: Application
    Filed: March 13, 2018
    Publication date: April 23, 2020
    Inventors: Zhe Song, Yun Liu, Kun Huang, Luwei Fu, Zhenxiao Fu, Joanna Chu, Lasse Noren, Tao Chen, Shiwo Ta