Patents Issued in March 5, 2024
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Patent number: 11923463Abstract: This disclosure provides a diode including a semiconductor region having at least one two-dimensional carrier channel of a first conductivity type. The diode also includes a plurality of sidewalls exposed in the semiconductor region defining at least one trench extending through the at least one two-dimensional carrier channel and a material of a second conductivity type, the second conductivity type being the other of the n-type and the p-type conductivity, disposed on the plurality of sidewalls and in contact with the at least one two-dimensional carrier channel. The diode also includes an anode material in contact with at least a portion of the semiconductor region and in contact with at least a portion of the material of the second conductivity type, and a cathode material in contact with the at least one two-dimensional carrier channel.Type: GrantFiled: April 29, 2021Date of Patent: March 5, 2024Assignee: Virginia Tech Intellectual Properties, Inc.Inventors: Yuhao Zhang, Ming Xiao
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Patent number: 11923464Abstract: A Schottky barrier diode includes a semiconductor layer including a Ga2O3-based single crystal, an anode electrode that forms a Schottky junction with the semiconductor layer and is configured so that a portion in contact with the semiconductor layer includes Mo or W, and a cathode electrode. A turn-on voltage thereof is not less than 0.3 V and not more than 0.5 V.Type: GrantFiled: June 12, 2018Date of Patent: March 5, 2024Assignees: Tamura Corporation, Novel Crystal Technology, Inc.Inventors: Kohei Sasaki, Daiki Wakimoto, Yuki Koishikawa, Quang Tu Thieu
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Patent number: 11923465Abstract: The present disclosure concerns a photodiode including at least one memory area, each memory area including at least two charge storage regions.Type: GrantFiled: December 17, 2020Date of Patent: March 5, 2024Assignee: STMicroelectronics (Crolles 2) SASInventors: Arnaud Tournier, Boris Rodrigues Goncalves, Frederic Lalanne
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Patent number: 11923466Abstract: A photodetector with an integrated reflective grating structure includes a substrate, an active layer disposed on the substrate, and a grating structure disposed between the substrate and the active layer. A first doped region is formed on the substrate at a location near the grating structure. A second doped region is formed on a surface of the active layer away from the grating structure. The doping type of the second doped region is different from that of the first doped region.Type: GrantFiled: March 3, 2020Date of Patent: March 5, 2024Assignee: INNOLIGHT TECHNOLOGY (SUZHOU) LTD.Inventors: Chih-Kuo Tseng, Guoliang Chen, Xiaoyao Li, Yuzhou Sun, Yue Xiao
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Patent number: 11923467Abstract: A semiconductor device for infrared detection comprises a stack of a first semiconductor layer, a second semiconductor layer and an optical coupling layer. The first semiconductor layer has a first type of conductivity and the second semiconductor layer has a second type of conductivity. The optical coupling layer comprises an optical coupler and at least a first lateral absorber region. The optical coupler is configured to deflect incident light towards the first lateral absorber region. The first lateral absorber region comprises an absorber material with a bandgap Eg in the infrared, IR.Type: GrantFiled: June 4, 2020Date of Patent: March 5, 2024Assignee: AMS AGInventors: Gerald Meinhardt, Ingrid Jonak-Auer, Gernot Fasching, Bernhard Löffler
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Patent number: 11923468Abstract: A photovoltaic cell is provided, including a substrate having a front surface with metal and non-metal pattern regions, first and second pyramid structures in each metal pattern region, third and fourth pyramid structures in each non-metal pattern region, a first tunneling layer and a first doped conductive layer on a portion of the front surface in a respective metal pattern region, and a second tunneling layer and a second doped conductive layer on a rear surface of the substrate. A dimension of a bottom portion of each first pyramid structure is greater than that of each second pyramid structure. A dimension of a bottom portion of each third pyramid structure is greater than that of each fourth pyramid structure. An area proportion of the first pyramid structures in the metal pattern region is greater than that of the third pyramid structures in a respective non-metal pattern region.Type: GrantFiled: October 5, 2022Date of Patent: March 5, 2024Assignees: ZHEJIANG JINKO SOLAR CO., LTD., JINKO SOLAR CO., LTD.Inventors: Jie Mao, Zhao Wang, Peiting Zheng, Jie Yang, Xinyu Zhang
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Patent number: 11923469Abstract: An optical solar enhancer comprises a panel that has a top surface and a bottom surface and an imaginary central plane that extends between the top surface and the bottom surface. The panel includes a plurality of generally parallel features configured to variably increase radiant energy entering the top surface at an acute angle relative to the central plane such that the effect is strongest at lower angles (early morning and late day sun) and weakest at higher angles (mid-day sun) and then redirect the increased radiant energy through the bottom surface.Type: GrantFiled: April 12, 2022Date of Patent: March 5, 2024Assignee: SEC Optics LLCInventors: John Magno, John Casper, Thomas Whitonis, David Stoler
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Patent number: 11923470Abstract: A method includes forming an assembly of layers including an InP cap layer on an InGaAs absorption region layer, wherein the InGaAs layer is on an n-InP layer, and wherein an underlying substrate layer underlies the n-InP layer. The method includes removing a portion of the InP cap and n-InP layer by dry etching.Type: GrantFiled: October 24, 2022Date of Patent: March 5, 2024Assignee: Sensors Unlimited, Inc.Inventors: Wei Zhang, Douglas Stewart Malchow, Michael J. Evans, Paul L. Bereznycky, Sean T. Houlihan
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Patent number: 11923471Abstract: An avalanche diode including a gain region and a readout structure including an n-type (p-type) region having electrically isolated segments each including implanted regions; a p-type (n-type) region; and a first electrode on each of the segments. The gain region includes a p-n junction buried between the n-type region and the p-type region: an n+-type region having a higher n-type dopant density than the n-type region; a p+-type region having a higher p-type dopant density than the p-type region; and the p-n junction between the n+-type region and the p+-type region. A bias between the first electrodes and a second electrode (ohmically contacting the p-type (n-type) region) reverse biases the p-n junction. Electrons generated in response to electromagnetic radiation or charged particles generate additional electrons m the gain region through impact ionization but the segmented region comprises a low field region isolating the gain region from the first electrodes.Type: GrantFiled: October 30, 2020Date of Patent: March 5, 2024Assignee: THE REGENTS OF THE UNIVERSITY OF CALIFORNIAInventors: Carolyn Gee, Simone Michele Mazza, Bruce A. Schumm, Yuzhan Zhao
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Patent number: 11923472Abstract: A deformable array of semiconductor devices, and a method of manufacturing such a deformable array. The deformable array comprises a plurality of islands, where each island contains at least one semiconductor device, and the plurality of islands are arranged in an auxetic geometry.Type: GrantFiled: October 30, 2019Date of Patent: March 5, 2024Assignee: The United States of America as represented by the Secretary of the ArmyInventors: Sabrina M. Curtis, Haotian Wang, Gabriel P. Anfinrud, Alexander O. Randolph, Gabriel L. Smith, Nathan S. Lazarus
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Patent number: 11923473Abstract: A high efficiency configuration for a solar cell module comprises solar cells arranged in an overlapping shingled manner and methods for assembling solar cells in a shingled manner. Solar cells in the module are electrically connected in series by front side ribbons and separate rear side ribbons. The front-side ribbons have a smaller cross-sectional width while the rear-side ribbons are thinner and wider.Type: GrantFiled: December 6, 2022Date of Patent: March 5, 2024Assignee: Maxeon Solar Pte. Ltd.Inventors: Jianfang Si, Yafu Lin
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Patent number: 11923474Abstract: A solar cell can include a conductive foil having a first portion with a first yield strength coupled to a semiconductor region of the solar cell. The solar cell can be interconnected with another solar cell via an interconnect structure that includes a second portion of the conductive foil, with the interconnect structure having a second yield strength greater than the first yield strength.Type: GrantFiled: December 7, 2017Date of Patent: March 5, 2024Assignee: Maxeon Solar Pte. Ltd.Inventors: Thomas P. Pass, Gabriel Harley, David Fredric Joel Kavulak, Richard Hamilton Sewell
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Patent number: 11923475Abstract: The present invention relates to a method of making a light converting optical system. The method involves providing a first optical layer having a microstructured front surface comprising an array of linear grooves that reflect first light rays using total internal reflection and deflect second light rays using refraction. A thin sheet of reflective light scattering material is positioned parallel to the first optical layer. A second optical layer is provided with a microstructured front surface. A continuous photoabsorptive film layer comprising a light converting semiconductor material is positioned between the first optical layer and the reflective material, with a thickness less than the minimum thickness required for absorbing all light traversing through the film layer. The method further involves providing a light source and positioning the second optical layer on the light path between the light source and the photoabsorptive film layer.Type: GrantFiled: March 24, 2023Date of Patent: March 5, 2024Assignee: S.V.V. TECHNOLOGY INNOVATIONS, INC.Inventor: Sergiy Vasylyev
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Patent number: 11923476Abstract: A method of manufacturing a display device includes forming a first light-emitting area on a substrate, and forming a first color adjustment pattern on the first light-emitting area by emitting first light from the first light-emitting area, wherein the first light-emitting area includes a first semiconductor layer, a second semiconductor layer provided on the first semiconductor layer, a first active layer arranged between the first semiconductor layer and the second semiconductor layer, a first contact electrically connecting the substrate and the first semiconductor layer, and a first preliminary common electrode electrically connected to the second semiconductor layer.Type: GrantFiled: October 17, 2022Date of Patent: March 5, 2024Assignee: SAMSUNG ELECTRONICS CO., LTD.Inventors: Nakhyun Kim, Junhee Choi, Kiho Kong, Deukseok Chung
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Patent number: 11923477Abstract: A method of manufacturing an electronic device, including the successive steps of: a) performing an ion implantation of indium or of aluminum into an upper portion of a first single-crystal gallium nitride layer, to make the upper portion of the first layer amorphous and to preserve the crystal structure of a lower portion of the first layer; and b) performing a solid phase recrystallization anneal of the upper portion of the first layer, resulting in transforming the upper portion of the first layer into a crystalline indium gallium nitride or aluminum gallium nitride layer.Type: GrantFiled: September 17, 2019Date of Patent: March 5, 2024Assignee: Commissariat à l'Énergie Atomique et aux Énergies AlternativesInventor: Hubert Bono
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Patent number: 11923478Abstract: Devices, systems, and methods for providing wireless personal area networks (PANs) and local area networks (LANs) using visible and near-visible optical spectrum. Various constructions and material selections are provided herein. According to one embodiment, a free space optical (FSO) communication apparatus includes a digital data port, an array of light-emitting diodes (LEDs) each configured to have a transient response time of less than 500 picoseconds (ps), and current drive circuitry coupled between the digital data port and the array of LEDs.Type: GrantFiled: January 24, 2022Date of Patent: March 5, 2024Assignee: LUMEOVA, INC.Inventors: Mohammad Ali Khatibzadeh, ARunesh Goswami
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Patent number: 11923479Abstract: A light-emitting element and an electronic apparatus capable of reducing the element area and realizing a stable electrical connection. A light-emitting element according to the present technology includes a first semiconductor layer, a light-emitting layer, and a second semiconductor layer laminated in this order, and a light-emitting surface, a non-light-emitting surface, and a side surface connecting the light-emitting surface and the non-light-emitting surface. The side surface is inclined. A first electrode is in a concave portion in the light-emitting surface at a periphery of the first semiconductor layer. A second electrode is on a non-light-emitting surface side of the laminate. A third electrode is on the non-light-emitting surface side of the laminate and is insulated from the second electrode. The side wiring electrically connects the first electrode and the third electrode via the side surface.Type: GrantFiled: August 7, 2019Date of Patent: March 5, 2024Assignee: SONY SEMICONDUCTOR SOLUTIONS CORPORATIONInventors: Nobuhiro Sugawara, Yasunari Hanzawa, Shinsuke Nozawa, Masaki Shiozaki, Takeshi Satou
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Patent number: 11923480Abstract: A light-emitting device and a display device using the same are disclosed. The light-emitting device improves the reliability of a process of disposing light-emitting devices. The light-emitting device is configured to ensure electrical connections even if the light-emitting device is inverted while being disposed on a substrate. The light-emitting device includes an n-type semiconductor layer and a p-type semiconductor layer. N-type electrodes and p-type electrodes are disposed on both sides of top and bottom surfaces of the light-emitting device. Contact holes are provided to electrically connect one of the n-type electrodes to the n-type semiconductor layer and one of the p-type electrodes to the p-type semiconductor layer. When the light-emitting device is inverted while being disposed on a substrate, the light-emitting device operates ordinarily, thereby reducing the defect rate of a display device.Type: GrantFiled: March 17, 2022Date of Patent: March 5, 2024Assignee: LG DISPLAY CO., LTD.Inventors: Taeil Jung, Il-Soo Kim, YongSeok Kwak
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Patent number: 11923481Abstract: A light-emitting diode (LED) chip with reflective layers having high reflectivity is disclosed. The LED chip may include an active LED structure including an active layer between an n-type layer and a p-type layer. A first reflective layer is adjacent the active LED structure and comprises a plurality of dielectric layers with varying optical thicknesses. The plurality of dielectric layers may include a plurality of first dielectric layers and a plurality of second dielectric layers of varying thicknesses and compositions. The LED chip may further include a second reflective layer that includes an electrically conductive path through the first reflective layer. An adhesion layer may be provided between the first reflective layer and the second reflective layer. The adhesion layer may comprise a metal oxide that promotes improved adhesion with reduced optical losses.Type: GrantFiled: June 23, 2022Date of Patent: March 5, 2024Assignee: CreeLED, Inc.Inventors: Michael Check, Kevin Haberern
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Patent number: 11923482Abstract: A light emitting device and method of forming a light emitting device are disclosed. The light emitting device includes a light emitting diode and a phosphor layer formed on the light emitting diode, the phosphor layer including a plurality of phosphor particles formed in a particle layer, the particle layer including interstices between the phosphor particles, and a matrix material disposed in a portion of the interstices. A plurality of cavities may be disposed in a remaining portion of the interstices.Type: GrantFiled: September 29, 2020Date of Patent: March 5, 2024Assignee: Lumileds LLCInventors: Joerg Feldmann, Marcel Rene Bohmer, Marinus Johannes Petrus Maria van Gerwen, Yu-Chen Shen
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Patent number: 11923483Abstract: The present invention relates to method for producing LED by one step film lamination. The method comprises: laminating two or more LEDs with two or more colored phosphor films by one step film lamination; wherein each of the colored phosphor film comprises each other different colored phosphor composition which has a Maximum tan ?; and the difference of each Maximum tan ? varies within a range of 0-30%. In the present invention, the method for producing a LED may greatly improve production efficiency (i.e., dual and multi-color LEDs in one step) and lower cost of ownership. Further, it may improve uniformity of phosphor dispersion, thereby improve color quality of LEDs.Type: GrantFiled: May 18, 2018Date of Patent: March 5, 2024Assignees: DDP SPECIALTY ELECTRONIC MATERIALS US, LLC, ROHM AND HAAS ELECTRONC MATERIALS LLCInventors: Anna Ya Ching Feng, Lu Zhou
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Patent number: 11923484Abstract: An exemplary method of manufacturing a white light emitting device may include providing first LEDs and second LEDs operable to generate excitation light having a dominant wavelength in a range from 440 nm to 480 nm; providing a first photoluminescence material which generates light having a peak emission wavelength in a range from 500 nm to 590 nm; providing a second photoluminescence material which generates light having a peak emission wavelength in a range from 600 nm to 650 nm; disposing the second photoluminescence material over and into direct contact with the second LED; and disposing the first photoluminescence material over the first and second LEDs.Type: GrantFiled: April 5, 2021Date of Patent: March 5, 2024Assignee: Bridgelux, Inc.Inventor: Tao Xu
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Patent number: 11923485Abstract: An optical device includes an LED chip, a visible-light luminescent material, and a near-infrared luminescent material, wherein a luminous power of light emitted by the near-infrared and visible-light luminescent materials in a band of 650-1000 nm under the excitation of the LED chip is A, and a sum of a luminous power of light emitted by the near-infrared and visible-light luminescent materials in a band of 350-650 nm under the excitation of the LED chip and a luminous power of residual light emitted by the LED chip in the band of 350-650 nm after the LED chip excites the near-infrared and visible-light luminescent materials is B, with B/A*100% being 0.1%-10%. According to the implementation where the optical device employs the LED chip to combine the near-infrared luminescent material and the visible-light luminescent material simultaneously.Type: GrantFiled: August 22, 2019Date of Patent: March 5, 2024Assignee: GRIREM ADVANCED MATERIALS CO., LTD.Inventors: Ronghui Liu, Yuanhong Liu, Xiaoxia Chen, Yuan Xue, Xiaole Ma
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Patent number: 11923486Abstract: A light-emitting module and a light-emitting diode are provided. The light-emitting diode includes an epitaxial light-emitting structure to generate a light beam with a broadband blue spectrum. A spectrum waveform of the broadband blue spectrum has a full width at half maximum (FWHM) larger than or equal to 30 nm. The spectrum waveform has a plurality of peak inflection points, and a difference between two wavelength values to which any two adjacent ones of the peak inflection points respectively correspond is less than or equal to 18 nm.Type: GrantFiled: July 20, 2022Date of Patent: March 5, 2024Assignee: KAISTAR LIGHTING(XIAMEN) CO., LTD.Inventors: Jing-Qiong Zhang, Ben-Jie Fan, Hung-Chih Yang, Shuen-Ta Teng
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Patent number: 11923487Abstract: In an embodiment a method includes providing a carrier with an optoelectronic semiconductor chip-component arranged on a top side of the carrier, arranging a first potting material on the top side of the carrier, arranging a second potting material on the first potting material, wherein the second potting material comprises a higher density than the first potting material, wherein a top side of the optoelectronic semiconductor chip-component is covered by neither the first potting material nor the second potting material and allowing a force to act on the first potting material and the second potting material such that the second potting material migrates in a direction toward the top side of the carrier.Type: GrantFiled: December 3, 2019Date of Patent: March 5, 2024Assignee: OSRAM Opto Semiconductors GmbHInventors: Gregory Bellynck, Ivar Tangring
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Patent number: 11923488Abstract: A light emitting device includes: a light emitting element having a top surface; and a light-transmissive member covering at least the top surface of the light emitting element, the light-transmissive member having a principal surface located above the top surface of the light emitting element. The principal surface of the light-transmissive member comprises a plurality of concave portions.Type: GrantFiled: June 18, 2021Date of Patent: March 5, 2024Assignee: NICHIA CORPORATIONInventors: Naoki Musashi, Takayoshi Wakaki
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Patent number: 11923489Abstract: A growth substrate and the display panel include a substrate, including chip growth regions arranged at intervals and in an array and a non-growth region located among chip growth regions. The growth substrate includes a refraction structure disposed on the substrate. An orthographic projection of the refraction structure on the substrate covers the non-growth region without overlapping with at least parts of the chip growth regions. The refraction structure is configured to refract light corresponding to the non-growth region to positions corresponding to the chip growth regions. The substrate has a first surface and a second surface and light emitting chips are grown in the chip growth regions of the first surface. The refraction structure is disposed on the second surface, an orthographic projection on the substrate covers the non-growth region, and one side, away from the substrate, of the refraction structure is a light incident side.Type: GrantFiled: June 8, 2023Date of Patent: March 5, 2024Assignee: HKC CORPORATION LIMITEDInventors: Yang Pu, Baohong Kang
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Patent number: 11923490Abstract: A semiconductor light-emitting device includes a substrate, a connection structure disposed on the substrate, a semiconductor light-emitting unit disposed on the connection structure, and first and second electrodes. The connection structure includes an insulating layer formed with a through hole, a first electrically connecting layer disposed on the insulating layer and electrically connected to the first electrode, and a second electrically connecting layer disposed between the substrate and the insulating layer and extending through the through hole to be electrically connected to the second electrode. A projection of the second electrode on the insulating layer covers a portion of the insulating layer.Type: GrantFiled: February 12, 2021Date of Patent: March 5, 2024Assignee: QUANZHOU SAN'AN SEMICONDUCTOR TECHNOLOGY CO., LTD.Inventors: Liqin Zhu, Daquan Lin, Lixun Yang, Cheng Yu
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Patent number: 11923491Abstract: An electronic device, including a substrate, an edge wire, a first protection layer, and a second protection layer, is provided. The substrate has a first surface, a second surface, and a side surface connecting the first surface and the second surface. A normal vector of the side surface is different from the first surface and the second surface. The edge wire is configured on the substrate, extending from the first surface to the second surface while passing through the side surface. The first protection layer is configured on the edge wire. The edge wire is sandwiched between the substrate and the first protection layer. The edge wire and the first protection layer form an undercut structure. The second protection layer is configured on the substrate and fills the undercut structure. A manufacturing method of an electronic device is also provided.Type: GrantFiled: July 15, 2021Date of Patent: March 5, 2024Assignee: Au Optronics CorporationInventors: Chih-Wen Lu, Hao-An Chuang, Chun-Yueh Hou
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Patent number: 11923492Abstract: An apparatus for manufacturing a bagged electrode includes a conveying unit, a first bonding unit, a second bonding unit, and a separating unit. The conveying unit conveys an electrode in a manner interposed between a pair of long separator materials unwound from a pair of rolls. The first bonding unit bonds the pair of long separator materials outside the electrode along a conveyance direction without stopping conveyance of the electrode and the pair of long separator materials. The second bonding unit bonds the pair of long separator materials outside the electrode along a direction intersecting the conveyance direction without stopping conveyance of the electrode and the pair of long separator materials. The separating unit cuts the pair of long separator materials along the direction intersecting the conveyance direction to cut off the bagged electrode without stopping conveyance of the electrode and the pair of long separator materials.Type: GrantFiled: February 27, 2020Date of Patent: March 5, 2024Assignee: Kabushiki Kaisha ToshibaInventors: Yuko Kobayashi, Misato Ishikawa, Shunsuke Hattori, Takamitsu Sunaoshi, Takahiro Kokubo
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Patent number: 11923493Abstract: A stacking system of a battery cell repeatedly and sequentially stacks a battery cell, in which a negative electrode plate, a separator, and a positive electrode plate are stacked and packaged by an exterior material, along with a pad to manufacture a battery module. The stacking system includes a pad supply unit to which a pad is supplied, a plurality of battery cell supply units to which the battery cell is respectively supplied, an applying unit disposed on one battery cell supply unit among a plurality of battery cell supply units and applying an adhesive to the upper surface of the supplied battery cell, and a stacking unit for stacking and exhausting the battery cell, the pad, and the battery cell applied with the adhesive in a predetermined order by a predetermined number while selectively moving the pad supply unit, and the battery cell supply unit through a main frame.Type: GrantFiled: September 29, 2021Date of Patent: March 5, 2024Assignees: HYUNDAI MOTOR COMPANY, KIA CORPORATIONInventor: Kyungmo Kim
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Patent number: 11923494Abstract: Energy storage devices, battery cells, and batteries of the present technology may include a base plate. The batteries may include a first circuit board overlying the base plate. The batteries may include a battery stack overlying the first circuit board and electrically coupled with the first circuit board. The battery stack may include a plurality of battery cells. The battery stack may define an aperture through an active region of the battery stack. The batteries may include a second circuit board overlying the battery stack and electrically coupled with the battery stack. The batteries may include a compression plate overlying the second circuit board. The batteries may include a retaining member compressibly coupling the compression plate with the base plate. The retaining member may extend through the aperture through the active region of the battery stack.Type: GrantFiled: September 8, 2020Date of Patent: March 5, 2024Assignee: Apple Inc.Inventors: Dylan Erb, Abraham B. Caulk, Ross L. Johnstal, Paul W. Firehammer, Edward T. Hillstrom, Zhongying Shi, Ian E. O'Connor, Alexander J. Clarabut
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Patent number: 11923495Abstract: Systems and methods for applying pressure to electrochemical devices are generally described. In some aspects, batteries including an electrochemical cell and an associated deformable solid are provided. The deformable solid may be configured to apply an anisotropic force (e.g., during cycling), which may improve the performance and/or durability of the electrochemical cell. In some instances (for example, in certain cases where the deformable solid includes a piezoelectric array and/or an electroactive polymer), the battery may be able to make dynamic adjustments to a pressure experienced by the electrochemical cell (e.g., based on signals from a pressure sensor). The systems and methods described herein can, in some instances, provide for relatively uniform pressure distributions across an electrochemical cell and/or throughout a stack of multiple electrochemical cells.Type: GrantFiled: March 12, 2021Date of Patent: March 5, 2024Assignee: Sion Power CorporationInventors: Michael G. Laramie, Glenn Alan Hamblin, Shane Harrel
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Patent number: 11923496Abstract: A separator for a rechargeable lithium battery and a rechargeable lithium battery, the separator including a porous substrate; and a coating layer on at least one surface of the porous substrate, wherein the coating layer includes a binder and inorganic particles, the binder including a polyurethane and a polyvinyl alcohol, and the polyurethane and the polyvinyl alcohol are included in a weight ratio of about 5:5 to about 9:1.Type: GrantFiled: March 3, 2020Date of Patent: March 5, 2024Assignees: SAMSUNG SDI CO., LTD., SAMSUNG ELECTRONICS CO., LTD.Inventors: Jungsue Jang, Minho Cho, Hana Kim, Myungkook Park, Seung Rim Yang, Byungmin Lee, Bokyung Jung, Rae Sung Kim
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Patent number: 11923497Abstract: Described herein, are battery separators, comprising the following: a microporous polymeric film; and an optional coating layer on at least one side of the microporous polymeric film, wherein at least one of the microporous polymeric film and the optional coating comprises an additive. The additive is selected from the group consisting of a lubricating agent, a plasticizing agent, a nucleating agent, a shrinkage reducing agent, a surfactant, an SEI improving agent, a cathode protection agent, a flame retardant additive, LiPF6 salt stabilizer, an overcharge protector, an aluminum corrosion inhibitor, a lithium deposition agent or improver, or a solvation enhancer, an aluminum corrosion inhibitor, a wetting agent, and a viscosity improver. Also, described herein are batteries, including lithium-ion batteries, comprising one or more of the described separators. Methods for making the battery separators are also described.Type: GrantFiled: November 1, 2021Date of Patent: March 5, 2024Assignee: Celgard, LLCInventors: Changqing Wang Adams, Kang Karen Xiao, Stefan Reinartz, Masaaki Okada, Brian R. Stepp, Yao Lu, Eric Robert White, Katharine Chemelewski
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Patent number: 11923498Abstract: A lithium-ion battery having desirable safety performance includes a positive plate having a positive film, a negative plate having a negative film, a separator between the positive plate and the negative plate, and electrolyte. The positive film is provided with a first recess and a positive lead is soldered in the first recess. The negative film is provided with a second recess and a negative lead is soldered in the second recess. A first insulating glue layer is formed on an upper surface and below a lower surface of the positive lead. Surface of the positive film corresponding to the second recess is pasted with a second insulating glue layer.Type: GrantFiled: May 17, 2022Date of Patent: March 5, 2024Assignee: NINGDE AMPEREX TECHNOLOGY LIMITEDInventors: Tao Tao, Ming Liang Mo
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Patent number: 11923499Abstract: The adhesion between metal foil serving as a current collector and a negative electrode active material is increased to enable long-term reliability. An electrode active material layer (including a negative electrode active material or a positive electrode active material) is formed over a base, a metal film is formed over the electrode active material layer by sputtering, and then the base and the electrode active material layer are separated at the interface therebetween; thus, an electrode is formed. The electrode active material particles in contact with the metal film are bonded by being covered with the metal film formed by the sputtering. The electrode active material is used for at least one of a pair of electrodes (a negative electrode or a positive electrode) in a lithium-ion secondary battery.Type: GrantFiled: February 27, 2023Date of Patent: March 5, 2024Assignee: Semiconductor Energy Laboratory Co., Ltd.Inventors: Shunpei Yamazaki, Minoru Takahashi
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Patent number: 11923500Abstract: A packaging material for batteries including a laminate in which at least a base material layer, a metal layer, and a sealant layer are laminated in order. The battery packaging material satisfies the relationships of: (A1?A2)?60 N/15 mm; and (B1?B2)?50 N/15 mm. A1 is a stress in elongation by 10% in the MD direction and B1 is a stress in elongation by 10% in the TD direction in the laminate, and A2 is a stress in elongation by 10% in the MD direction and B2 is a stress in elongation by 10% in the TD direction in the base material layer.Type: GrantFiled: May 8, 2023Date of Patent: March 5, 2024Assignee: DAI NIPPON PRINTING CO., LTD.Inventors: Atsuko Takahagi, Rikiya Yamashita, Daisuke Yasuda
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Patent number: 11923501Abstract: A solid-state electrolyte for a multilayer solid-state electrochemical cell is described herein. The electrolyte comprises a lithium electrolyte salt and nanofibers of a cubic phase lithium lanthanum zirconium oxide (c-LLZO), and a polymer interspersed with the nanofibers and electrolyte salt. Electrochemical cells comprising the solid-state electrolyte, and solid-state cathodes comprising the nanofibers of c-LLZO are also described herein.Type: GrantFiled: September 30, 2021Date of Patent: March 5, 2024Assignee: UCHICAGO ARGONNE, LLCInventors: Yuepeng Zhang, Sanja Tepavcevic, Devon J. Powers, Peter Zapol, John N. Hryn, Gregory K. Krumdick, Ozgenur Kahvecioglu, Krzystof Z. Pupek, Michael John Counihan
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Patent number: 11923502Abstract: An all-solid secondary battery includes a solid electrolyte layer disposed between an anode layer and a cathode layer, where the solid electrolyte layer contains a first solid electrolyte layer including a first solid electrolyte and a second electrolyte layer including a second solid electrolyte, where the first solid electrolyte is disposed proximate to the anode layer, the second solid electrolyte layer is disposed proximate to the cathode layer, and the first solid electrolyte has a lithium ion conductivity greater than a lithium ion conductivity of the second solid electrolyte, where a difference between the lithium ion conductivity of the first solid electrolyte and the lithium ion conductivity of the second solid electrolyte is equal to or greater than about 2 mS/cm.Type: GrantFiled: July 13, 2020Date of Patent: March 5, 2024Assignee: SAMSUNG SDI CO., LTD.Inventors: Junhwan Ku, Toshinori Sugimoto
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Patent number: 11923503Abstract: A solid electrolyte material comprises Li, T, X and A wherein T is at least one of P, As, Si, Ge, Al, Sb, W, and B; X is one or more halogens and/or N; A is one or more of S or Se. The solid electrolyte material has peaks at 14.9°±0.50°, 20.4°±0.50°, and 25.4°±0.50° in X-ray diffraction measurement with Cu—K?(1,2)=1.5418? and may include glass ceramic and/or mixed crystalline phases.Type: GrantFiled: March 16, 2021Date of Patent: March 5, 2024Assignee: Solid Power Operating, Inc.Inventors: Brian E. Francisco, Benjamin Carlson
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Patent number: 11923504Abstract: The invention provides a novel anionic polymer useful as a solid electrolyte in a lithium battery. The electrolyte matrix provides directional, flexible, polymeric ion channels with 100% lithium conduction with low-to-no affinity of the matrix for the lithium ion, in part due to the low concentration or absence of lone pair electrons in the anionic polymer.Type: GrantFiled: March 28, 2017Date of Patent: March 5, 2024Assignee: Temple University—Of The Commonwealth System of Higher EducationInventors: Mike Zdilla, Stephanie Wunder
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Patent number: 11923505Abstract: There is disclosed an electrolyte composition comprising one or two or more polymers, oxide particles having a hydrophobic surface, at least one electrolyte salt selected from the group consisting of a lithium salt, a sodium salt, a calcium salt, and a magnesium salt, and an ionic liquid.Type: GrantFiled: May 31, 2018Date of Patent: March 5, 2024Assignee: LG ENERGY SOLUTION, LTD.Inventors: Takuya Nishimura, Hiroki Mikuni
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Patent number: 11923506Abstract: Electrolytes and electrolyte additives for energy storage devices comprising an ether compound are disclosed. The energy storage device comprises a first electrode and a second electrode, wherein at least one of the first electrode and the second electrode is a Si-based electrode, a separator between the first electrode and the second electrode, an electrolyte, and at least one electrolyte additive selected from ether compounds.Type: GrantFiled: May 31, 2022Date of Patent: March 5, 2024Assignee: Enevate CorporationInventors: Liwen Ji, Benjamin Yong Park, Heidi Anderson, Sung Won Choi
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Electrochemical cell with TMCCC electrodes in an acetonitrile solvent including a dinitrile additive
Patent number: 11923507Abstract: A system and method for a liquid electrolyte used in secondary electrochemical cells having at least one electrode including a TMCCC material, the liquid electrolyte enabling an increased lifetime while allowing for fast discharge to extremely high depth of discharge. The addition of dinitriles to liquid electrolytes in electrochemical cells in which energy storage is achieved by ion intercalation in transition metal cyanide coordination compounds (TMCCC) has the advantage of increasing device lifetime by inhibiting common chemical and electrochemical degradation mechanisms.Type: GrantFiled: November 10, 2022Date of Patent: March 5, 2024Assignee: Natron Energy, Inc.Inventors: Majid Keshavarz, Daniel Friebel, Peter Benjamin Herman, Grace Marjorie Yee, Alex J. Klevay -
Patent number: 11923508Abstract: Provided is an electrolyte solution for a lithium secondary battery and a lithium secondary battery including the electrolyte solution. The electrolyte solution includes an additive represented by a specific chemical formula, an organic solvent and a lithium salt. The lithium secondary battery including the electrolyte solution provide enhanced high-temperature properties.Type: GrantFiled: July 10, 2023Date of Patent: March 5, 2024Assignees: SK On Co., Ltd., SK Innovation Co., Ltd.Inventors: Ki Sung Park, Myoung Lae Kim
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Patent number: 11923509Abstract: An electrolyte for a lithium secondary battery is disclosed herein. In some embodiments, an electrolyte includes a lithium salt present in a concentration of 1.6 M to 5 M, an oligomer mixture including a first oligomer containing a unit represented by Formula 1 and a second oligomer containing a unit represented by Formula 2, and an organic solvent.Type: GrantFiled: July 26, 2019Date of Patent: March 5, 2024Inventors: Won Kyung Shin, Kyoung Ho Ahn, Chul Haeng Lee, Min Jung Kim, Jung Hoon Lee
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Patent number: 11923510Abstract: A solid-state battery that exhibits improved battery performance includes: a positive-electrode collector; a negative-electrode collector; a positive electrode layer formed on the positive-electrode collector and containing a positive-electrode active material and a solid electrolyte; a negative electrode layer formed on the negative-electrode collector and containing a negative-electrode active material and a solid electrolyte; and a solid electrolyte layer disposed between the positive electrode layer and the negative electrode layer and containing a solid electrolyte. At least one of the solid electrolyte and the solid electrolyte partly represents a porous solid electrolyte.Type: GrantFiled: January 9, 2020Date of Patent: March 5, 2024Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.Inventors: Shuzo Tsuchida, Kazufumi Miyatake, Akihiro Horikawa
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Patent number: 11923511Abstract: A novel wound electrode assembly for a lithium oxyhalide electrochemical cell is described. The electrode assembly comprises an elongate cathode of an electrochemically non-active but electrically conductive carbonaceous material disposed between an inner elongate portion and an outer elongate portion of a unitary lithium anode. That way, lithium faces the entire length of the opposed major sides of the cathode. This inner anode portion/cathode/outer anode portion configuration is rolled into a wound-shaped electrode assembly that is housed inside a cylindrically-shaped casing. A cylindrically-shaped sheet-type spring centered in the electrode assembly presses outwardly to limit axial movement of the electrode assembly. In one embodiment, all the non-active components, except for the cathode current collector which is nickel, are made of stainless-steel. This provides the cell with a low magnetic signature without adversely affecting the cell's high-rate capability.Type: GrantFiled: July 10, 2020Date of Patent: March 5, 2024Assignee: Electrochem Solutions, Inc.Inventors: Yufei Wang, John S. Miller, John Hession, Arden P Johnson
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Patent number: 11923512Abstract: In a secondary batter, dead spaces between a wound electrode body and the inner peripheral surfaces of a rectangular battery case are made small. The secondary battery includes a wound electrode body in which a positive electrode sheet, a negative electrode sheet, and a separator interposed between the positive electrode sheet and the negative electrode sheet are superimposed and wound around a winding axis, and a rectangular battery case that houses the wound electrode body. The wound electrode body has a first flat surface, a second flat surface, a third flat surface, and a fourth flat surface positioned on the outer peripheral surfaces around the winding axis. The first flat surface and the second flat surface face each other with the winding axis interposed therebetween. The third flat surface and the fourth flat surface face each other with the winding axis interposed therebetween.Type: GrantFiled: September 10, 2021Date of Patent: March 5, 2024Assignee: PRIME PLANET ENERGY & SOLUTIONS, INC.Inventor: Kodai Shintani