Patents by Inventor Xia Huang
Xia Huang 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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Publication number: 20250277440Abstract: A downhole fracturing zone data logger and a downhole fracturing zone data acquisition system. The data logger includes a sphere, at least one mounting cavity is provided on a surface thereof, a data acquisition module for detecting and acquiring environmental data is provided in the mounting cavity, and an opening of the mounting cavity is provided with a soluble plug for plugging. The data acquisition system can effectively monitor downhole temperature and pressure data.Type: ApplicationFiled: May 15, 2025Publication date: September 4, 2025Inventors: Zhaorui Shi, Bodong Li, Xia Huang, Yangjie Tang
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Patent number: 12162920Abstract: Provided in the present invention are an improved hinge area and the use of same in constructing CAR skeleton. The amino acid sequence of the improved hinge area is as shown in SEQ ID NO.1 or SEQ ID NO.2 or SEQ ID NO.3, and the hinge area can prolong the survival of CAR-T cells in vivo and/or improve the capability of CAR-T cells to infiltrate tumors.Type: GrantFiled: December 6, 2018Date of Patent: December 10, 2024Assignee: CHONGQING PRECISION BIOTECH COMPANY LIMITEDInventors: Wei Zhang, JuanJuan Shan, WenXu Zhao, Jun Chen, Xia Huang, YongChun Zhao, YanMin Xu, QianZhen Zhang
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Patent number: 12086980Abstract: A method for analyzing a patient based on a volumetric pulmonary scan includes receiving volumetric pulmonary scan data representative of a patient's pulmonary structure. This method also includes determining a level of transpulmonary pressure defining an effort metric based on one or more characteristics from the received volumetric pulmonary scan data. This method further includes determining one or more physiological or anatomical parameters associated with the transpulmonary pressure based on the received volumetric pulmonary scan data and the effort metric. A non-transitory computer readable medium can be programmed with instructions for causing one or more processors to perform the method for analyzing a patient based on a volumetric pulmonary scan.Type: GrantFiled: October 27, 2021Date of Patent: September 10, 2024Assignee: VIDA Diagnostics, Inc.Inventors: Samuel Peterson, Juerg Tschirren, Xia Huang, John D. Newell, Jr.
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Patent number: 12060288Abstract: A wastewater treatment device has: an ozone generator which supplies ozone; a mixer which mixes ozone supplied from the ozone generator with wastewater and supplies ozone mixed wastewater; an ozone oxidation unit which progresses ozone oxidation in the ozone mixed wastewater while passing the ozone mixed wastewater therethrough and discharges wastewater in which the ozone has been consumed; a biological treatment unit which performs biological treatment on the wastewater discharged from the ozone oxidation unit using microorganisms; and an adjusting device which adjusts the amount of ozone to be mixed with the wastewater by the mixer so that ozone in an amount that inhibits the microorganisms of the biological treatment unit does not remain in the wastewater discharged from the ozone oxidation unit.Type: GrantFiled: February 12, 2022Date of Patent: August 13, 2024Assignee: IHI CORPORATIONInventors: Nobuhiko Kubota, Yuka Yoshida, Xia Huang, Chun Liu, Jing Zhang, Hong Zheng Zhou, Xiao Xuan Chen, Lei Zhang
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Patent number: 11802064Abstract: A capacitive deionization desalination device is provided. The capacitive deionization desalination device includes a mesh spacer and two carbon nanotube composite electrodes. The mesh spacer is located between the two carbon nanotube composite electrodes. Each carbon nanotube composite electrode includes at least one carbon nanotube film structure and a composite carbon layer, and the carbon nanotube film structure includes at least two carbon nanotube films, and the composite carbon layer includes activated carbon and carbon black, and the composite carbon layer is located on the carbon nanotube film structure.Type: GrantFiled: March 18, 2021Date of Patent: October 31, 2023Assignees: Tsinghua University, HON HAI PRECISION INDUSTRY CO., LTD.Inventors: Yang Wu, Shuai Liang, Xia Huang, Shou-Shan Fan
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Patent number: 11772973Abstract: A super-hydrophilic carbon nanotube composite film includes a carbon nanotube layer, a polydopamine layer and a silicon dioxide layer. The carbon nanotube layer includes a plurality of carbon nanotubes and defines two opposite surfaces. The polydopamine layer is on at least one surface of two opposite surfaces of the carbon nanotube layer, and the polydopamine layer includes a plurality of polydopamine nanoparticles. The silicon dioxide layer is on a surface of the polydopamine layer away from the carbon nanotube layer, and the silicon dioxide layer includes a plurality of amino-containing silica nanoparticles, and the plurality of amino-containing silica nanoparticles are grafted onto the surface of the polydopamine layer.Type: GrantFiled: June 9, 2021Date of Patent: October 3, 2023Assignees: Tsinghua University, HON HAI PRECISION INDUSTRY CO., LTD.Inventors: Yang Wu, Shuai Liang, Xia Huang, Shou-Shan Fan
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Publication number: 20230203125Abstract: The present application belongs to the technical field of immunotherapy, and specifically relates to a fusion protein for reversing a tumor microenvironment, a tumor immunosuppressive and resistant CAR and an expression vector, an immune cell and the use. The fusion protein is combined with different CAR structures of different targets, such as CEA, CD19, PSCA and BCMA, to form the tumor immunosuppressive and resistant CAR, or is used in combination with same to target and kill CD47 positive tumor cells; and the tumor immunosuppressive and resistant CAR and immune cells break through the influences of inhibitory signals on the function of CAR-T, which realizes the effectiveness of CAR-T treatment and can also ensure a certain degree of safety at the same time.Type: ApplicationFiled: May 21, 2021Publication date: June 29, 2023Applicants: CHONGQING PRECISION BIOTECH CO., LTD., CHONGQING PRECISION BIOLOGICAL INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE CO., LTD.Inventors: Yanmin XU, Endian MEI, Yongchun ZHAO, Juanjuan SHAN, Yanan QI, Wenxu ZHAO, Jun CHEN, Xia HUANG
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Publication number: 20220162099Abstract: A wastewater treatment device has: an ozone generator which supplies ozone; a mixer which mixes ozone supplied from the ozone generator with wastewater and supplies ozone mixed wastewater; an ozone oxidation unit which progresses ozone oxidation in the ozone mixed wastewater while passing the ozone mixed wastewater therethrough and discharges wastewater in which the ozone has been consumed; a biological treatment unit which performs biological treatment on the wastewater discharged from the ozone oxidation unit using microorganisms; and an adjusting device which adjusts the amount of ozone to be mixed with the wastewater by the mixer so that ozone in an amount that inhibits the microorganisms of the biological treatment unit does not remain in the wastewater discharged from the ozone oxidation unit.Type: ApplicationFiled: February 12, 2022Publication date: May 26, 2022Applicant: IHI CORPORATIONInventors: Nobuhiko KUBOTA, Yuka YOSHIDA, Xia HUANG, Chun LIU, Jing ZHANG, Hong Zheng ZHOU, Xiao Xuan CHEN, Lei ZHANG
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Publication number: 20220130040Abstract: A method for analyzing a patient based on a volumetric pulmonary scan includes receiving volumetric pulmonary scan data representative of a patient's pulmonary structure. This method also includes determining a level of transpulmonary pressure defining an effort metric based on one or more characteristics from the received volumetric pulmonary scan data. This method further includes determining one or more physiological or anatomical parameters associated with the transpulmonary pressure based on the received volumetric pulmonary scan data and the effort metric. A non-transitory computer readable medium can be programmed with instructions for causing one or more processors to perform the method for analyzing a patient based on a volumetric pulmonary scan.Type: ApplicationFiled: October 27, 2021Publication date: April 28, 2022Inventors: Samuel Peterson, Juerg Tschirren, Xia Huang, John D. Newell, JR.
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Patent number: 11279640Abstract: A wastewater treatment device has: an ozone generator which supplies ozone; a mixer which mixes ozone supplied from the ozone generator with wastewater and supplies ozone mixed wastewater; an ozone oxidation unit which progresses ozone oxidation in the ozone mixed wastewater while passing the ozone mixed wastewater therethrough and discharges wastewater in which the ozone has been consumed; a biological treatment unit which performs biological treatment on the wastewater discharged from the ozone oxidation unit using microorganisms; and an adjusting device which adjusts the amount of ozone to be mixed with the wastewater by the mixer so that ozone in an amount that inhibits the microorganisms of the biological treatment unit does not remain in the wastewater discharged from the ozone oxidation unit.Type: GrantFiled: March 13, 2020Date of Patent: March 22, 2022Assignee: IHI CORPORATIONInventors: Nobuhiko Kubota, Yuka Yoshida, Xia Huang, Chun Liu, Jing Zhang, Hong Zheng Zhou, Xiao Xuan Chen, Lei Zhang
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Publication number: 20210395089Abstract: A super-hydrophilic carbon nanotube composite film includes a carbon nanotube layer, a polydopamine layer and a silicon dioxide layer. The carbon nanotube layer includes a plurality of carbon nanotubes and defines two opposite surfaces. The polydopamine layer is on at least one surface of two opposite surfaces of the carbon nanotube layer, and the polydopamine layer includes a plurality of polydopamine nanoparticles. The silicon dioxide layer is on a surface of the polydopamine layer away from the carbon nanotube layer, and the silicon dioxide layer includes a plurality of amino-containing silica nanoparticles, and the plurality of amino-containing silica nanoparticles are grafted onto the surface of the polydopamine layer.Type: ApplicationFiled: June 9, 2021Publication date: December 23, 2021Inventors: YANG WU, SHUAI LIANG, XIA HUANG, SHOU-SHAN FAN
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Publication number: 20210363033Abstract: A capacitive deionization desalination device is provided. The capacitive deionization desalination device includes a mesh spacer and two carbon nanotube composite electrodes. The mesh spacer is located between the two carbon nanotube composite electrodes. Each carbon nanotube composite electrode includes at least one carbon nanotube film structure and a composite carbon layer, and the carbon nanotube film structure includes at least two carbon nanotube films, and the composite carbon layer includes activated carbon and carbon black, and the composite carbon layer is located on the carbon nanotube film structure.Type: ApplicationFiled: March 18, 2021Publication date: November 25, 2021Inventors: YANG WU, SHUAI LIANG, XIA HUANG, SHOU-SHAN FAN
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Publication number: 20210107964Abstract: Provided in the present invention are an improved hinge area and the use of same in constructing CAR skeleton. The amino acid sequence of the improved hinge area is as shown in SEQ ID NO.1 or SEQ ID NO.2 or SEQ ID NO.3, and the hinge area can prolong the survival of CAR-T cells in vivo and/or improve the capability of CAR-T cells to infiltrate tumors.Type: ApplicationFiled: December 6, 2018Publication date: April 15, 2021Applicant: CHONGQING PRECISION BIOTECH COMPANY LIMITEDInventors: Wei ZHANG, JuanJuan SHAN, WenXu ZHAO, Jun CHEN, Xia HUANG, YongChun ZHAO, YanMin XU, QianZhen ZHANG
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Patent number: 10875074Abstract: A die mechanism comprises a first support member and a second support member, the first and second support members extending in a first direction; a plurality of pin modules between the first and second support members, wherein each of the plurality of pin modules extends in a second direction perpendicular to the first direction, and each pin module comprises a plurality of pins; wherein heights of ends of the plurality of pins within each of the plurality of pin modules together define a shape profile for shaping the component during creep-age forming; and wherein: the plurality of pin modules are configured to be movable along the first and second support members in the first direction, and/or the plurality of pins are configured to be movable along respective pin modules in the second direction.Type: GrantFiled: February 18, 2016Date of Patent: December 29, 2020Assignee: AVIC Beijing Aeronautical Manufacturing Technology Research InstituteInventors: Aaron C. L. Lam, Zhusheng Shi, Xia Huang, Yuansong Zeng, Zhiqiang Li, Jianguo Lin
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Publication number: 20200216343Abstract: A wastewater treatment device has: an ozone generator which supplies ozone; a mixer which mixes ozone supplied from the ozone generator with wastewater and supplies ozone mixed wastewater; an ozone oxidation unit which progresses ozone oxidation in the ozone mixed wastewater while passing the ozone mixed wastewater therethrough and discharges wastewater in which the ozone has been consumed; a biological treatment unit which performs biological treatment on the wastewater discharged from the ozone oxidation unit using microorganisms; and an adjusting device which adjusts the amount of ozone to be mixed with the wastewater by the mixer so that ozone in an amount that inhibits the microorganisms of the biological treatment unit does not remain in the wastewater discharged from the ozone oxidation unit.Type: ApplicationFiled: March 13, 2020Publication date: July 9, 2020Applicant: IHI CORPORATIONInventors: Nobuhiko KUBOTA, Yuka YOSHIDA, Xia HUANG, Chun LIU, Jing ZHANG, Hong Zheng ZHOU, Xiao Xuan CHEN, Lei ZHANG
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Patent number: 10626032Abstract: A wastewater treatment device has: an ozone generator which supplies ozone; a mixer which mixes ozone supplied from the ozone generator with wastewater and supplies ozone mixed wastewater; an ozone oxidation unit which progresses ozone oxidation in the ozone mixed wastewater while passing the ozone mixed wastewater therethrough and discharges wastewater in which the ozone has been consumed; a biological treatment unit which performs biological treatment on the wastewater discharged from the ozone oxidation unit using microorganisms; and an adjusting device which adjusts the amount of ozone to be mixed with the wastewater by the mixer so that ozone in an amount that inhibits the microorganisms of the biological treatment unit does not remain in the wastewater discharged from the ozone oxidation unit.Type: GrantFiled: October 22, 2018Date of Patent: April 21, 2020Assignee: IHI CORPORATIONInventors: Nobuhiko Kubota, Yuka Yoshida, Xia Huang, Chun Liu, Jing Zhang, Hong Zheng Zhou, Xiao Xuan Chen, Lei Zhang
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Publication number: 20190092662Abstract: A wastewater treatment device has: an ozone generator which supplies ozone; a mixer which mixes ozone supplied from the ozone generator with wastewater and supplies ozone mixed wastewater; an ozone oxidation unit which progresses ozone oxidation in the ozone mixed wastewater while passing the ozone mixed wastewater therethrough and discharges wastewater in which the ozone has been consumed; a biological treatment unit which performs biological treatment on the wastewater discharged from the ozone oxidation unit using microorganisms; and an adjusting device which adjusts the amount of ozone to be mixed with the wastewater by the mixer so that ozone in an amount that inhibits the microorganisms of the biological treatment unit does not remain in the wastewater discharged from the ozone oxidation unit.Type: ApplicationFiled: October 22, 2018Publication date: March 28, 2019Applicant: IHI CORPORATIONInventors: Nobuhiko KUBOTA, Yuka YOSHIDA, Xia HUANG, Chun LIU, Jing ZHANG, Hong Zheng ZHOU, Xiao Xuan CHEN, Lei ZHANG
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Publication number: 20180065166Abstract: A die mechanism comprises a first support member and a second support member, the first and second support members extending in a first direction; a plurality of pin modules between the first and second support members, wherein each of the plurality of pin modules extends in a second direction perpendicular to the first direction, and each pin module comprises a plurality of pins; wherein heights of ends of the plurality of pins within each of the plurality of pin modules together define a shape profile for shaping the component during creep-age forming; and wherein: the plurality of pin modules are configured to be movable along the first and second support members in the first direction, and/or the plurality of pins are configured to be movable along respective pin modules in the second direction.Type: ApplicationFiled: February 18, 2016Publication date: March 8, 2018Inventors: Aaron C. L. LAM, Zhusheng SHI, Xia HUANG, Yuansong ZENG, Zhiqiang LI, Jianguo LIN
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Patent number: D968141Type: GrantFiled: July 14, 2021Date of Patent: November 1, 2022Inventor: Xia Huang
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Patent number: D974779Type: GrantFiled: September 19, 2022Date of Patent: January 10, 2023Inventor: Xia Huang