Patents by Inventor Jie Gong
Jie Gong 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: 20150154989Abstract: Disclosed herein is an apparatus that includes a near field transducer positioned adjacent to an air bearing surface of the apparatus; a first magnetic pole; and a heat sink positioned between the first magnetic pole and the near field transducer, wherein the heat sink includes a first and second portion, with the first portion being adjacent the near field transducer and the second portion being adjacent the first magnetic pole, the first portion including a plasmonic material, and the second portion including a diffusion blocking material.Type: ApplicationFiled: December 1, 2014Publication date: June 4, 2015Inventors: Tong Zhao, Ibro Tabakovic, Michael C. Kautzky, Venkatram Venkatasamy, Jie Gong
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Patent number: 8999118Abstract: A method is disclosed for defining discrete magnetic and non-magnetic regions on the magnetic film layer of a storage media substrate. The method applies anodic oxidation of a cobalt-containing magnetic film layer to remove cobalt, followed by controlled deposition of a non-magnetic matrix into the regions where the cobalt has been removed. Deposition may either be electrodeposition, collimated vacuum deposition, or other methods depending upon the composition of the non-magnetic matrix being deposited. The method may be performed in a single electrochemical cell.Type: GrantFiled: March 15, 2013Date of Patent: April 7, 2015Assignee: Seagate Technology LLCInventors: Ibro Tabakovic, Steve Riemer, Jie Gong, Mark Thomas Kief, Ming Sun
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Publication number: 20150083601Abstract: Methods of forming near field transducers (NFTs) including electrodepositing a plasmonic material.Type: ApplicationFiled: September 25, 2013Publication date: March 26, 2015Applicant: SEAGATE TECHNOLOGY LLCInventors: Lien Lee, Jie Gong, Venkatram Venkatasamy, Yongjun Zhao, Lijuan Zou, Dongsung Hong, Ibro Tabakovic, Mark Ostrowski
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Publication number: 20150075531Abstract: Applicant has disclosed a “replaceable cushion system” which allows for a cushion frame with an integral cushion (e.g., a gel bladder) to be quickly and easily swapped in and out of a respiratory mask (e.g., a CPAP mask) while maintaining an effective seal via the compression of a gasket. In all of the preferred embodiments, the cushion frame (with an affixed cushion) is removably attached to a mask shell by a press-fit and by associated prongs and notches. The prongs can be located in the mask shell with the notches in the cushion frame, or vice versa.Type: ApplicationFiled: September 16, 2014Publication date: March 19, 2015Applicant: SLEEPNET CORPORATIONInventor: Jia Jie Gong
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Patent number: 8942757Abstract: Disclosed are a communication control device, a communication control method and the system thereof, which provide efficient multi-base station joint services in a mobile communication system using dynamic clustering. Optimal base station clustering is chosen according to the communication state between a terminal and each base station. The communication control device connects with multiple base stations through a network, and clusters the multiple base stations dynamically so that the clustered multiple base stations can provide services for the mobile terminal in union. The communication control device comprises: an interface, connecting with multiple base stations, receiving channel state information related to the mobile terminal from each base station; a memory unit, storing the channel state information of the mobile terminal received from the interface; a control unit, clustering each base station dynamically according to the channel state information of the mobile terminal stored in the memory unit.Type: GrantFiled: April 29, 2010Date of Patent: January 27, 2015Assignee: Hitachi, Ltd.Inventors: Yunjian Jia, Kenzaburo Fujishima, Hideya Yoshiuchi, Peng Yang, Yuanchen Ma, Lu Geng, Sheng Zhou, Zhisheng Niu, Jie Gong
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Publication number: 20140376352Abstract: A device including a near field transducer, the near field transducer including gold (Au), silver (Ag), copper (Cu), or aluminum (Al), and at least two other secondary atoms, the at least two other secondary atoms selected from: boron (B), bismuth (Bi), indium (In), sulfur (S), silicon (Si), tin (Sn), manganese (Mn), tellurium (Te), holmium (Ho), lutetium (Lu), praseodymium (Pr), scandium (Sc), uranium (U), barium (Ba), chlorine (Cl), cesium (Cs), dysprosium (Dy), europium (Eu), fluorine (F), germanium (Ge), hydrogen (H), iodine (I), rubidium (Rb), selenium (Se), terbium (Tb), nitrogen (N), oxygen (O), carbon (C), antimony (Sb), gadolinium (Gd), samarium (Sm), thallium (Tl), cadmium (Cd), neodymium (Nd), phosphorus (P), lead (Pb), hafnium (Hf), niobium (Nb), erbium (Er), zinc (Zn), magnesium (Mg), palladium (Pd), vanadium (V), zinc (Zn), chromium (Cr), iron (Fe), lithium (Li), nickel (Ni), platinum (Pt), sodium (Na), strontium (Sr), calcium (Ca), yttrium (Y), thorium (Th), beryllium (Be), thulium (Tm), erbiumType: ApplicationFiled: June 24, 2014Publication date: December 25, 2014Inventors: Yuhang Cheng, Tong Zhao, Michael C. Kautzky, Ed F. Rejda, Kurt W. Wierman, Scott Franzen, Sethuraman Jayashankar, Sarbeswar Sahoo, Justin Glen Brons, Steve C. Riemer, Jie Gong, Michael Allen Seigler
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Publication number: 20140376351Abstract: A device including a near field transducer, the near field transducer including gold (Au) and at least one other secondary atom, the at least one other secondary atom selected from: boron (B), bismuth (Bi), indium (In), sulfur (S), silicon (Si), tin (Sn), hafnium (Hf), niobium (Nb), manganese (Mn), antimony (Sb), tellurium (Te), carbon (C), nitrogen (N), and oxygen (O), and combinations thereof erbium (Er), holmium (Ho), lutetium (Lu), praseodymium (Pr), scandium (Sc), uranium (U), zinc (Zn), and combinations thereof and barium (Ba), chlorine (Cl), cesium (Cs), dysprosium (Dy), europium (Eu), fluorine (F), gadolinium (Gd), germanium (Ge), hydrogen (H), iodine (I), osmium (Os), phosphorus (P), rubidium (Rb), rhenium (Re), selenium (Se), samarium (Sm), terbium (Tb), thallium (Th), and combinations thereof.Type: ApplicationFiled: June 24, 2014Publication date: December 25, 2014Inventors: Yuhang Cheng, Tong Zhao, Michael C. Kautzky, Ed F. Rejda, Kurt W. Wierman, Scott Franzen, Sethuraman Jayashankar, Sarbeswar Sahoo, Jie Gong, Michael Allen Seigler
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Patent number: 8917484Abstract: A magnetoresistive data writer and reader may be generally configured at least with a magnetoresistive (MR) element contacting a magnetic shield that is constructed of (Ni78Fe22)99.8O0.2 material. The magnetic shield may be formed with an electrodeposition process that uses ?-diketones derivatives to form nano-crystalline grain structure after a subsequent annealing at temperatures above 400° C.Type: GrantFiled: March 12, 2013Date of Patent: December 23, 2014Assignee: Seagate Technology LLCInventors: Jie Gong, Ibro Tabakovic, Steve Riemer, Michael Christopher Kautzky
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Patent number: 8902719Abstract: Disclosed herein is an apparatus that includes a near field transducer positioned adjacent to an air bearing surface of the apparatus; a first magnetic pole; and a heat sink positioned between the first magnetic pole and the near field transducer, wherein the heat sink includes a first and second portion, with the first portion being adjacent the near field transducer and the second portion being adjacent the first magnetic pole, the first portion including a plasmonic material, and the second portion including a diffusion blocking material.Type: GrantFiled: March 12, 2013Date of Patent: December 2, 2014Assignee: Seagate Technology LLCInventors: Tong Zhao, Ibro Tabakovic, Michael C. Kautzky, Venkatram Venkatasamy, Jie Gong
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Patent number: 8848315Abstract: A method for forming a magnetic write pole with a trapezoidal cross-section is described. The method consists of first forming a magnetic seedlayer on a base followed by depositing a removable material layer on the seedlayer, and then a resist layer on the removable material layer. A trench is then formed in the resist, and the resist is heated to cause the cross -sectional profile of the trench to assume a trapezoidal shape. The resist is then capped with another resist layer and further heated to cause the width of the trapezoidal trench to become narrower. The cap layer and removable material layer at the bottom of the trench are then removed and the trench filled with magnetic material by electroplating. The resist and seedlayer external to the trench are finally removed to form a write pole with a trapezoidal cross-section.Type: GrantFiled: September 4, 2012Date of Patent: September 30, 2014Assignee: Seagate Technology LLCInventors: XiaoMin Yang, Shuaigang Xiao, Jie Gong, Michael Seigler
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Publication number: 20140269235Abstract: A magnetoresistive data writer and reader may be generally configured at least with a magnetoresistive (MR) element contacting a magnetic shield that is contrasted of (Ni78Fe22)99.8O0.2 material. The magnetic shield may be formed with an electrodeposition process that uses ?-diketones derivatives to form nano-crystalline grain structure after a subsequent annealing at temperatures above 400° C.Type: ApplicationFiled: March 12, 2013Publication date: September 18, 2014Applicant: SEAGATE TECHNOLOGY LLCInventors: Jie Gong, Ibro Tabakovic, Steve Riemer, Michael Christopher Kautzky
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Publication number: 20140256330Abstract: It is provided a renewable energy base station, which is used in a wireless cellular system, including: an adjustment request determining part for determining whether an adjustment to a coverage area is required; an adjustment request transceiver in case where it is determined that the adjustment to the coverage area is required, sending a coverage area adjustment request to neighboring base stations in the wireless cellular system, and receiving an adjustment request response from the neighboring base stations; an adjustment request responding part for determining whether the coverage area adjustment request from the one of the neighboring base stations is allowed in case where receiving the coverage area adjustment request from one of the neighboring base stations; and a response transmitter for sending the adjustment request response to the neighboring base stations based on a result of the determination made by the adjustment request responding part.Type: ApplicationFiled: March 5, 2014Publication date: September 11, 2014Applicant: HITACHI, LTD.Inventors: Chunguang LIU, Peng YANG, Jie GONG, Sheng ZHOU, Mika MIZUTANI, Zhisheng NIU
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Publication number: 20140094836Abstract: Disclosed is a pericardiocentesis needle component (10), comprising a guide wire (13) and a puncture needle (12). The guide wire (13) extends into and through the puncture needle (12), and the guide wire (13) comprises a bent section (32) at the distal end and a straight section at the proximal end. The bent section (32) at the distal end is formed by bending the guide wire (13), and the end of the bent section is a pointed-shape structure. The guide wire (13) is made of a highly elastic material. The pointed end rotates at least 90 degrees within a range of no more than 3 mm starting from the pointed end at the bent section (32) of the guide wire. The pericardiocentesis needle component (10) of the present invention is less likely to damage a heart during a pericardiocentesis procedure.Type: ApplicationFiled: May 25, 2012Publication date: April 3, 2014Inventors: Ji Feng, Jie Gong, Xin Hua, Sophia Wang Hansen
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Patent number: 8661905Abstract: Non-contact microelectronic device inspection systems and methods are discussed and provided. Some embodiments include a method of generating a virtual reference device (or chip). This approach uses a statistics to find devices in a sample set that are most similar and then averages their time domain signals to generate the virtual reference. Signals associated with the virtual reference can then be correlated with time domain signals obtained from the packages under inspection to obtain a quality signature. Defective and non-defective devices are separated by estimating a beta distribution that fits a quality signature histogram of inspected packages and determining a cutoff threshold for an acceptable quality signature. Other aspects, features, and embodiments are also claimed and described.Type: GrantFiled: November 9, 2010Date of Patent: March 4, 2014Assignee: Georgia Tech Research CorporationInventors: Ifeanyi Charles Ume, Abel Valdes, Jie Gong, Razid Ahmad
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Publication number: 20130286804Abstract: Disclosed herein is an apparatus that includes a near field transducer positioned adjacent to an air bearing surface of the apparatus; a first magnetic pole; and a heat sink positioned between the first magnetic pole and the near field transducer, wherein the heat sink includes a first and second portion, with the first portion being adjacent the near field transducer and the second portion being adjacent the first magnetic pole, the first portion including a plasmonic material, and the second portion including a diffusion blocking material.Type: ApplicationFiled: March 12, 2013Publication date: October 31, 2013Applicant: SEAGATE TECHNOLOGY LLCInventors: Tong Zhao, Ibro Tabakovic, Michael C. Kautzky, Venkatram Venkatasamy, Jie Gong
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Publication number: 20130186765Abstract: Methods of depositing a magnetic material on a substrate, the methods including placing a substrate in an plating solution, the plating solution including an additive selected from malonic acid derivatives; ?-diketones and ?-diketone derivatives; and C6C3 compounds and C6C3 compound derivatives; and electrochemically depositing a magnetic material on the substrate by pulsing an electrical current connected to the substrate on and off.Type: ApplicationFiled: January 23, 2012Publication date: July 25, 2013Applicant: SEAGATE TECHNOLOGY LLCInventors: Jie Gong, Ibro Tabakovic, Steve Riemer, Michael Christopher Kautzky
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Patent number: 8435399Abstract: A method is disclosed for defining discrete magnetic and non-magnetic regions on the magnetic film layer of a storage media substrate. The method applies anodic oxidation of a cobalt-containing magnetic film layer to remove cobalt, followed by controlled deposition of a non-magnetic matrix into the regions where the cobalt has been removed. Deposition may either be electrodeposition, collimated vacuum deposition, or other methods depending upon the composition of the non-magnetic matrix being deposited. The method may be performed in a single electrochemical cell.Type: GrantFiled: January 11, 2010Date of Patent: May 7, 2013Assignee: Seagate Technology LLCInventors: Ibro Takakovic, Steve Riemer, Jie Gong, Mark Thomas Kief, Ming Sun
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Patent number: 8405932Abstract: An apparatus includes a waveguide having an end adjacent to an air bearing surface, first and second poles positioned on opposite sides of the waveguide, and wherein the first pole includes a first portion spaced from the waveguide and a second portion extending from the first portion to the air bearing surface, with the second portion being structured such that an end of the second portion is closer to the waveguide than the first portion.Type: GrantFiled: August 20, 2012Date of Patent: March 26, 2013Assignee: Seagate Technology LLCInventors: Michael Allen Seigler, Sharat Batra, Robert Earl Rottmayer, Hua Zhou, Thomas William Clinton, Jie Gong
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Publication number: 20130010387Abstract: A method for forming a magnetic write pole with a trapezoidal cross-section is described. The method consists of first forming a magnetic seedlayer on a base followed by depositing a removable material layer on the seedlayer, and then a resist layer on the removable material layer. A trench is then formed in the resist, and the resist is heated to cause the cross-sectional profile of the trench to assume a trapezoidal shape. The resist is then capped with another resist layer and further heated to cause the width of the trapezoidal trench to become narrower. The cap layer and removable material layer at the bottom of the trench are then removed and the trench filled with magnetic material by electroplating. The resist and seedlayer external to the trench are finally removed to form a write pole with a trapezoidal cross-section.Type: ApplicationFiled: September 4, 2012Publication date: January 10, 2013Applicant: SEAGATE TECHNOLOGY LLCInventors: XiaoMin Yang, Shuaigang Xiao, Jie Gong, Michael Seigler
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Publication number: 20120314547Abstract: An apparatus includes a waveguide having an end adjacent to an air bearing surface, first and second poles positioned on opposite sides of the waveguide, and wherein the first pole includes a first portion spaced from the waveguide and a second portion extending from the first portion to the air bearing surface, with the second portion being structured such that an end of the second portion is closer to the waveguide than the first portion.Type: ApplicationFiled: August 20, 2012Publication date: December 13, 2012Applicant: SEAGATE TECHNOLOGY LLCInventors: Michael Allen Seigler, Sharat Batra, Robert Earl Rottmayer, Hua Zhou, Thomas William Clinton, Jie Gong