Patents Assigned to Front Edge Technology
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Patent number: 10964925Abstract: Vertical via connections to a battery are hermetically sealed to prevent environmental factors (e.g. moisture, oxygen, and nitrogen) from entering the internals of the battery through porous conductive material filling the vias resulting in reduced battery performance and battery failure.Type: GrantFiled: February 22, 2019Date of Patent: March 30, 2021Assignees: International Business Machines Corporation, Front Edge Technology, IncInventors: Bing Dang, Qianwen Chen, Yu Luo, John Knickerbocker, Jae-Woong Nah, Kai Liu, Po-wen Cheng, Tung-hsiu Shih, Mengnian Niu, Kai-wei Nieh
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Patent number: 9905895Abstract: A pulse mode apparatus comprises a mismatched battery electrically connected to a pulse mode device having a pulse duty cycle with a power-on time period and a power-off time period. The mismatched battery comprises a first battery cell having a first internal resistance and first charge capacity, and a second battery cell having a second internal resistance and second charge capacity, and the battery comprises at least one of the following: (1) the second internal resistance is less than the first internal resistance, and (2) the second charge capacity is less than the first charge capacity. The battery also has a pair of electrical connectors electrically coupling the first and second battery cells in parallel, a pair of terminals connected to the first or second battery cells, and a casing around the first and second battery cells with the terminals extending out of the casing.Type: GrantFiled: August 31, 2015Date of Patent: February 27, 2018Assignee: Front Edge Technology, Inc.Inventors: Tung-Hsiu Shih, Kai Wei Nieh, Victor Krasnov
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Patent number: 9887429Abstract: A lithium battery comprises at least one battery cell on a support, the battery cell comprising a plurality of electrodes about an electrolyte. A protective casing comprises a cover spaced apart from and covering the battery cell to form a gap therebetween with a polymer filling the gap. In one version, the polymer comprises polyvinylidene chloride polymer. First and second terminals extend out of the protective casing, the first and second terminals being connected to different electrodes of the battery cell.Type: GrantFiled: December 21, 2011Date of Patent: February 6, 2018Assignee: Front Edge Technology Inc.Inventors: Tung-Hsiu Shih, Kai Wei Nieh, Victor Krasnov, Jiuh-Ming Liang
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Patent number: 8870974Abstract: A method of fabricating a battery comprises selecting a battery substrate having cleavage planes, and depositing on the battery substrate, one or more battery component films comprising electrode films that at least partially surround an electrolyte film. Pulsed laser beam bursts are applied to the battery component films at a sufficiently high power level to vaporize portions of the films to form shaped battery features. The pulsed laser bursts shape the films substantially without causing fractures along the cleavage planes of the battery substrate. Pulsed laser shaping can be used to replace the use of a mask in the fabrication of shaped battery components.Type: GrantFiled: February 18, 2008Date of Patent: October 28, 2014Assignee: Front Edge Technology, Inc.Inventors: Kai-Wei Nieh, Jianchao Li, Tung-Hsiu Shih
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Patent number: 8865340Abstract: A battery packaging method comprises providing a battery comprising at least one battery cell on a substrate, the battery cell comprising a plurality of electrodes about an electrolyte, and the battery having at least one open peripheral side surface. A thermoplastic bead is provided at an open peripheral side surface of the battery. A cap is placed over the battery and in contact with the thermoplastic bead. The thermoplastic bead is locally heated by directing an energy beam onto the thermoplastic bead, the energy beam having a beam width sized sufficiently small to heat a beam incident region on the thermoplastic bead substantially without heating adjacent regions.Type: GrantFiled: October 20, 2011Date of Patent: October 21, 2014Assignee: Front Edge Technology Inc.Inventors: Jiuh-Ming Liang, Kai Wei Nieh
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Patent number: 8864954Abstract: A method of depositing lithium-containing films on a battery substrate in a sputtering chamber is provided. At least one pair of sputtering targets that each comprise a lithium-containing sputtering member is provided in the sputtering chamber, the sputtering targets selected to each have a conductivity of at least about 5×10?6 S·cm?1. A substrate carrier holding at least one battery substrate is placed in the sputtering chamber. A pressure of sputtering gas is maintained in the sputtering chamber. The sputtering gas is energized by applying to the pair of sputtering targets, an electrical power at a frequency of from about 10 to about 100 kHz.Type: GrantFiled: December 23, 2011Date of Patent: October 21, 2014Assignee: Front Edge Technology Inc.Inventors: Kai Wei Nieh, Jiuh-Ming Liang, Victor Krasnov
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Patent number: 8753724Abstract: A plasma deposition method deposits a battery component material on a partially fabricated battery cell comprising a battery component layer containing charge-carrying metal species and having an exposed surface. A mesh screen is maintained at a preset distance from the exposed surface, the mesh screen having a plurality of mesh openings. A process gas is energized to form a plasma by applying an electrical power to deposit the battery component material onto the exposed surface of the battery component layer. The mesh screen reduces migration of the charge-carrying metal species in the battery component layer to the exposed surface of the partially fabricated battery cell.Type: GrantFiled: September 26, 2012Date of Patent: June 17, 2014Assignee: Front Edge Technology Inc.Inventors: Kai Wei Nieh, Jiuh-Ming Liang, Victor Krasnov
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Patent number: 8728176Abstract: A battery fabrication method comprises forming at least one battery cell on a battery substrate by depositing a plurality of battery component films on the battery substrate, the battery component films comprising at least a pair of electrodes about an electrolyte. An overlying protective multilayer coating is formed over the battery cell. A plurality of pulsed laser bursts of a pulsed laser beam is applied to the battery substrate, the pulsed laser bursts having sufficient power and duration to cut through the battery substrate and the overlying protective multilayer coating.Type: GrantFiled: January 4, 2011Date of Patent: May 20, 2014Assignee: Front Edge Technology, Inc.Inventors: Jianchao Li, Kai-Wei Nieh, Sandeep Makhar
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Patent number: 8679674Abstract: A battery comprises at least one battery cell on a support, the battery cell comprising a plurality of electrodes about an electrolyte, and having a surface. A thermoplastic material covers the surface of the battery cell, the thermoplastic material comprising a nitrogen permeability or oxygen permeability that is less than 20 cm3*mm/(m2*day). A cap covers the thermoplastic material.Type: GrantFiled: December 8, 2010Date of Patent: March 25, 2014Assignee: Front Edge Technology, Inc.Inventors: Jiuh-Ming Liang, Kai-Wei Nieh
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Patent number: 8628645Abstract: A thin film battery manufacturing method is provided for deposition of lithium metal oxide films onto a battery substrate. The films are deposited in a sputtering chamber having a plurality of sputtering targets and magnetrons. The sputtering gas is energized by applying a voltage bias between a pair of the sputtering targets at a frequency of between about 10 and about 100 kHz. The method can provide a deposition rate of lithium cobalt oxide of between about 0.2 and about 4 microns/hr with improved film quality.Type: GrantFiled: September 4, 2007Date of Patent: January 14, 2014Assignee: Front Edge Technology, Inc.Inventors: Weng-Chung Wang, Kai-Wei Nieh
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Patent number: 8502494Abstract: A method and apparatus for charging a rechargeable battery comprises determining a safe charging voltage Vsafe that is the maximum open circuit voltage of the battery which provides a minimum battery capacity for a predetermined number of charge and discharge cycles of the battery. The battery is charged with a voltage Vhv which is higher than the Vsafe. The charging voltage is removed and open circuit voltage of the battery is measured. The charging and measuring steps are repeated when the open circuit voltage is less than Vsafe, and the charging process is terminated when the open circuit voltage is substantially equal to Vsafe.Type: GrantFiled: August 27, 2010Date of Patent: August 6, 2013Assignee: Front Edge Technology, Inc.Inventors: Kai-Wei Nieh, Tung-Hsiu Shih
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Patent number: 8475955Abstract: A thin film battery comprises a substrate having a surface, and a plurality of battery cells on the substrate surface. Each battery cell comprises an electrolyte having opposing surfaces, and a plurality of conductors in electrical contact with at least one of the opposing surfaces of the electrolyte, the plurality of conductors including a first conductor in electrical contact with a surface of the electrolyte and a second conductor in electrical contact with the opposing surface of the electrolyte. At least one electrical connector strip connects a conductor of a first battery cell to a conductor of a second battery cell to electrically couple the first and second battery cells to one another.Type: GrantFiled: May 1, 2012Date of Patent: July 2, 2013Assignee: Front Edge Technology, Inc.Inventors: Victor Krasnov, Kai-Wei Nieh
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Patent number: 8168322Abstract: A battery comprises a substrate comprising a first surface comprising a first battery cell having a first non-contact surface, a pliable dielectric abutting the first non-contact surface, the pliable dielectric comprising a peripheral edge, and a first cap about the pliable dielectric.Type: GrantFiled: May 19, 2010Date of Patent: May 1, 2012Assignee: Front Edge Technology, Inc.Inventors: Victor Krasnov, Kai-Wei Nieh
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Patent number: 7862627Abstract: A method of fabricating a battery comprises selecting a battery substrate having cleavage planes, and cutting the battery substrate with pulsed laser bursts from a pulsed laser beam to control or limit fracture along the cleavage planes. The pulsed laser beam was also found to work well on thin substrates which are sized less than 100 microns. Before or after the cutting step, a plurality of battery component films can be deposited on the battery substrate. The battery component films include at least a pair of electrodes about an electrolyte which cooperate to form a battery.Type: GrantFiled: April 27, 2007Date of Patent: January 4, 2011Assignee: Front Edge Technology, Inc.Inventors: Jianchao Li, Kai-Wei Nieh, Sandeep Makhar
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Patent number: 7862927Abstract: In a method of fabricating a battery, a substrate is annealed to reduce surface contaminants or even water of crystallization from the substrate. A series of battery component films are deposited on a substrate, including an adhesion film, electrode films, and an electrolyte film. An adhesion film is deposited on the substrate and regions of the adhesion film are exposed to oxygen. An overlying stack of cathode films is deposited in successive deposition and annealing steps.Type: GrantFiled: March 2, 2007Date of Patent: January 4, 2011Assignee: Front Edge TechnologyInventors: Victor Krasnov, Kai-Wei Nieh, Jianchao Li
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Patent number: 7186479Abstract: A thin film battery comprises a substrate with a front side and a back side. A first battery cell is provided on the front side of the substrate, the first battery cell including an electrolyte between a pair of electrodes. A second battery cell is provided on the back side of the substrate, the second battery cell also including an electrolyte between a pair of electrodes. The battery is capable of providing an energy density of more than 700 wh/l and a specific energy of more than 250 wh/kg. A method of annealing a deposited thin film is also described.Type: GrantFiled: December 7, 2004Date of Patent: March 6, 2007Assignee: Front Edge Technology, Inc.Inventors: Victor Krasnov, Kai-Wei Nieh, Su-Jen Ting
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Patent number: 7056620Abstract: A battery comprises a substrate having a cathode with a lower surface contacting the substrate and an opposing upper surface. A cathode current collector comprises conducting lines that contact the upper surface of the cathode. An electrolyte at least partially extends through the cathode current collector and contacts the cathode. An anode contacts the electrolyte, and optionally, an anode current collector contacts the anode. Also, because the cathode is formed on the substrate before the cathode current collector, the cathode current collector advantageously does not have to be fabricated out of a metal that is capable of withstanding further processing of the cathode, such as annealing of the cathode.Type: GrantFiled: March 22, 2001Date of Patent: June 6, 2006Assignee: Front Edge Technology, Inc.Inventors: Victor Krasnov, Kai-Wei Nieh
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Patent number: 6921464Abstract: In a method of manufacturing a thin film battery in a chamber, a target comprising LiCoO2 is provided on a magnetron cathode in the chamber, and a substrate is placed facing the target. A process gas is introduced into the chamber and the process gas is energized to form a plasma to sputter the target to deposit LiCoO2 on the substrate. An ion flux of from about 0.1 to about 5 mA/cm2 is delivered from the plasma to the substrate to enhance the crystallinity of the deposited LiCoO2 material on the substrate. The process gas is exhausted from the chamber. The target can also be made of other materials.Type: GrantFiled: August 12, 2003Date of Patent: July 26, 2005Assignee: Front Edge TechnologyInventors: Victor Krasnov, Kai-Wei Nieh, Su-Jen Ting
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Patent number: 6863699Abstract: A method of depositing lithium phosphorus oxynitride on a substrate, the method comprising loading a substrate into a vacuum chamber having a target comprising lithium phosphate, introducing a process gas comprising nitrogen into the chamber and maintaining the gas at a pressure of less than about 15 mTorr; and forming a plasma of the process gas in the chamber to deposit lithium phosphorous oxynitride on the substrate.Type: GrantFiled: November 3, 2000Date of Patent: March 8, 2005Assignee: Front Edge Technology, Inc.Inventors: Victor Krasnov, Kai-Wei Nieh, Su-Jen Ting, Paul Tang, Fan-Hsiu Chang, Chun-Ting Lin
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Publication number: 20040064937Abstract: In a method of manufacturing a thin film battery in a chamber, a target comprising LiCoO2 is provided on a magnetron cathode in the chamber, and a substrate is placed facing the target. A process gas is introduced into the chamber and the process gas is energized to form a plasma to sputter the target to deposit LiCoO2 on the substrate. An ion flux of from about 0.1 to about 5 mA/cm2 is delivered from the plasma to the substrate to enhance the crystallinity of the deposited LiCoO2 material on the substrate. The process gas is exhausted from the chamber. The target can also be made of other materials.Type: ApplicationFiled: August 12, 2003Publication date: April 8, 2004Applicant: Front Edge Technology, Inc.Inventors: Victor Krasnov, Kai-Wei Nieh, Su-Jen Ting