Patents Assigned to Sharp Laboratories
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Publication number: 20170105013Abstract: A device may be configured to receive video data including a sequence of frames. The sequence of video frames may have a high frame rate. A high frame rate may include frame rate of 120 Hz or higher. In one example, for every other frame included in the sequence of frames, the device may generate a modified frame. A modified frame may include a frame based on a weighted average of a current frame and a previous frame.Type: ApplicationFiled: October 7, 2016Publication date: April 13, 2017Applicant: Sharp Laboratories of America, Inc.Inventors: Jon Arthur FAIRHURST, Christopher Andrew SEGALL, Sachin G. DESHPANDE
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Patent number: 9620815Abstract: A method is provided for the self-repair of a transition metal cyanometallate (TMCM) battery electrode. The battery is made from a TMCM cathode, an anode, and an electrolyte including solution formed from a solvent and an alkali or alkaline earth salt. The electrolyte includes an additive represented as G-R-g: where G and g are independently include materials with nitrogen (N) sulfur (S), oxygen (O), or combinations of the above-recited elements; and where R is an alkene or alkane group. In response to charging and discharging the battery in a plurality of cycles, the method creates vacancies in a surface of the TMCM cathode. Then, the method fills the vacancies in the surface of the TMCM cathode with the electrolyte additive. An electrolyte and TMCM battery using the above-mentioned additives are also provided.Type: GrantFiled: June 30, 2014Date of Patent: April 11, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Yuhao Lu, Long Wang, Sean Vail
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Patent number: 9622322Abstract: A system that determines the task of the viewer and/or gestures made by the user. Based upon the determined task and/or the gestures, the lighting provided to the viewer may be modified.Type: GrantFiled: December 23, 2013Date of Patent: April 11, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Miao Liao, Xiao-Fan Feng, Xu Chen
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Patent number: 9613295Abstract: A system for image processing that matches a model image with an input image. The matching process includes using a feature location index for the model image.Type: GrantFiled: January 7, 2016Date of Patent: April 4, 2017Assignee: Sharp Laboratories of America, Inc.Inventor: Petrus J. L. Van Beek
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Patent number: 9614169Abstract: A method is provided for forming a back contact perovskite solar cell. A substrate is coated with a positive electrode layer. The positive electrode layer is then conformally coated with a first insulator. A plurality of negative electrode segments are selectively deposited overlying the first insulator layer, and a second insulator layer is conformally deposited overlying the negative electrode segments and first insulator layer. The second insulator layer is selectively etched to expose the negative electrode segments, and an n-type semiconductor is selectively deposited overlying each exposed negative electrode segment to form n-type contacts. The first and second insulator layers are then selectively etched to expose positive electrode segments. A p-type semiconductor is selectively deposited over each exposed positive electrode segment to form p-type contacts. Finally, a hybrid organic/inorganic perovskite (e.g., CH3NH3Pbl3-XClX) layer is conformally deposited overlying the p-type and n-type contacts.Type: GrantFiled: September 10, 2014Date of Patent: April 4, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Alexey Koposov, Wei Pan
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Patent number: 9608268Abstract: A battery structure is provided for making alkali ion and alkaline-earth ion batteries. The battery has a hexacyanometallate cathode, a non-metal anode, and non-aqueous electrolyte. A method is provided for forming the hexacyanometallate battery cathode and non-metal battery anode prior to the battery assembly. The cathode includes hexacyanometallate particles overlying a current collector. The hexacyanometallate particles have the chemical formula A?n?AmM1xM2y(CN)6, and have a Prussian Blue hexacyanometallate crystal structure.Type: GrantFiled: April 29, 2015Date of Patent: March 28, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Yuhao Lu, Jong-Jan Lee, Motoaki Nishijima, Seizoh Kakimoto
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Patent number: 9608264Abstract: An air cathode battery is provided that uses a zinc slurry anode with carbon additives. The battery is made from an air cathode and a zinc slurry anode. The zinc slurry anode includes zinc particles, an alkaline electrolyte, with a complexing agent and carbon additives in the alkaline electrolyte. A water permeable ion-exchange membrane and electrolyte chamber separate the zinc slurry from the air cathode. The carbon additives may, for example, be graphite, carbon fiber, carbon black, or carbon nanoparticles. The proportion of carbon additives to zinc is in the range of 2.5 to 10% by weight. The proportion of alkaline electrolyte in the zinc slurry is in the range of 50 to 80% by volume.Type: GrantFiled: August 29, 2014Date of Patent: March 28, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Hidayat Kisdarjono, Yuhao Lu, Jong-Jan Lee, David Evans, Long Wang
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Patent number: 9602762Abstract: A system for frame rate conversion of a video that includes detecting low quality of a received frame and determining an interpolated frame of the video based upon the detected low quality of the received frame.Type: GrantFiled: June 12, 2015Date of Patent: March 21, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Xu Chen, Petrus J. L. Van Beek
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Patent number: 9602830Abstract: A technique for decoding video including receiving quantized coefficient level values representative of a block of video representative of a plurality of pixels and a quantization parameter related to the block of video. The technique includes dequantizing the quantized coefficient level values based upon the quantized coefficient level values and the quantization parameter only if the quantized coefficient level values and the quantization parameter are jointly within a predefined range of acceptable values. The technique also includes inverse transforming the dequantized coefficients to determine a decoded residue.Type: GrantFiled: August 7, 2015Date of Patent: March 21, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Louis Joseph Kerofsky, Kiran Misra, Christopher A. Segall
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Patent number: 9598283Abstract: Methods are provided for controlling the shape of antimony selenide (Sb2Se3) synthesized nanostructures. The method dissolves an antimony (III) salt in a first amount of carboxylic acid, forming an antimony precursor. In one aspect, antimony (III) chloride is dissolved in oleic acid. Separately, selenourea is dissolved in oleylamine, forming a selenium precursor. The antimony precursor is combined with the selenium precursor to form a first solution and cause a reaction. The reaction is quenched with a solvent having a low boiling point. In response to quenching the reaction in the first solution, antimony selenide nanorods are formed, having a length in the range of 150-200 nanometers (nm) and a diameter in the range of 20 to 30 nm. Related methods can be used to create, shorter nanorods, nanocrystals, and hollow nanospheres.Type: GrantFiled: September 25, 2015Date of Patent: March 21, 2017Assignee: Sharp Laboratories of America, Inc.Inventor: Alexey Koposov
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Patent number: 9595706Abstract: A protected transition metal hexacyanoferrate (TMHCF) battery cathode is presented, made from AxMyFez(CN)n.mH2O particles, where the A cations are either alkali or alkaline-earth cations, and M is a transition metal. In one aspect the cathode pas tion layer may be materials such as oxides, simple salts, carbonaceous materials, or polymers that form a film overlying the AxMyFez(CN)n.mH2O particles. In another aspect, the cathode passivation layer is a material such as oxygen, nitrogen, sulfur, fluorine, chlorine, or iodine that interacts with the AxMyFez(CN)n.mH2O particles, to cure defects in the AxMyFez(CN)n.mH2O crystal lattice structure. Also presented are TMHCF battery synthesis methods.Type: GrantFiled: December 11, 2015Date of Patent: March 14, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Yuhao Lu, Jong-Jan Lee, David Evans
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Patent number: 9589323Abstract: A method for image enhancement may include selecting a plurality of patches of an image and determining at least one dimensionally reduced feature for each of the plurality of patches. The system may further determine a generally closest cluster from a set of clusters for each of the dimensionally reduced features and select a corresponding set of regression coefficients for each of the set of generally closest cluster. The system may also apply the selected set of regression coefficients to a corresponding patch to enhance the image.Type: GrantFiled: August 14, 2015Date of Patent: March 7, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Anustup Kumar Choudhury, Xu Chen, Petrus J. L. van Beek
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Patent number: 9583751Abstract: A method is provided for fabricating a battery using an anode preloaded with consumable metals. The method forms an ion-permeable membrane immersed in an electrolyte. A preloaded anode is immersed in the electrolyte, comprising MeaX, where X is a material such as carbon, metal capable of being alloyed with Me, intercalation oxides, electrochemically active organic compounds, and combinations of the above-listed materials. Me is a metal such as alkali metals, alkaline earth metals, and combinations of the above-listed metals. A cathode is also immersed in the electrolyte and separated from the preloaded anode by the ion-permeable membrane. The cathode comprises M1YM2Z(CN)N.MH2O. After a plurality of initial charge and discharge operations are preformed, an anode is formed comprising MebX overlying the current collector in a battery discharge state, where 0?b<a.Type: GrantFiled: March 6, 2014Date of Patent: February 28, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Yuhao Lu, Long Wang, Jong-Jan Lee
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Patent number: 9567231Abstract: A system and method are presented for the large scale synthesis of metal cyanometallates (MCMs). First and second precursor solutions are added to a main reactor, where the first precursor includes M1 metal cations. The second precursor solution includes AX?M2(CN)Z?, where M1 and M2 are from a first group of metals and A is from a second group of metals including alkali or alkaline earth metals. In response to stirring the first and second precursors, MCM particles are formed with the formula AXM1NM2M(CN)Z.d[H2O]ZEO.e[H2O]BND, in solution. In response to aging in the secondary reactor, the size of the MCM particles is increases. The aged MCM particles in solution are then transferred to a separation tank, where the aged MCM particles are filtered from the solution and collected. The solution reclaimed from the separation tank back is added back into the main reactor.Type: GrantFiled: August 6, 2016Date of Patent: February 14, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Yuhao Lu, Wei Pan, Sean Vail, Jong-Jan Lee
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Patent number: 9559358Abstract: A battery structure is provided for making alkali ion and alkaline-earth ion batteries. The battery has a hexacyanometallate cathode, a non-metal anode, and non-aqueous electrolyte. A method is provided for forming the hexacyanometallate battery cathode and non-metal battery anode prior to the battery assembly. The cathode includes hexacyanometallate particles overlying a current collector. The hexacyanometallate particles have the chemical formula A?n?AmM1xM2y(CN)6, and have a Prussian Blue hexacyanometallate crystal structure.Type: GrantFiled: April 17, 2012Date of Patent: January 31, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Yuhao Lu, Jong-Jan Lee, Motoaki Nishijima, Seizoh Kakimoto
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Patent number: 9546097Abstract: A method is provided for synthesizing iron hexacyanoferrate (FeHCF). The method forms a first solution of a ferrocyanide source [A4Fe(CN)6.PH2O] material dissolved in a first solvent, where “A” is an alkali metal ion. A second solution is formed of a Fe(II) source dissolved in a second solvent. A reducing agent is added and, optionally, an alkali metal salt. The first and second solutions may be purged with an inert gas. The second solution is combined with the first solution to form a third solution in a low oxygen environment. The third solution is agitated in a low oxygen environment, and AX+1Fe2(CN)6.ZH2O is formed, where X is in the range of 0 to 1. The method isolates the AX+1Fe2(CN)6.ZH2O from the third solution, and dries the AX+1Fe2(CN)6.ZH2O under vacuum at a temperature greater than 60 degrees C.Type: GrantFiled: August 28, 2014Date of Patent: January 17, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Sean Vail, Yuhao Lu, Jong-Jan Lee
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Patent number: 9547799Abstract: Aspects of the present invention are related to systems and methods for automatically determining the content boundaries in a digital image. A gradient field may be generated using an edge detector, and the gradient field may be thresholded, by magnitude, to retain strong edges. The resulting localized edge positions may be projected onto a first direction and a second direction to form two projection histograms. The projection histograms may be analyzed to determine the boundaries of the image content. Corners of a cropping rectangle may be computed, and the digital image may be cropped according to the content boundaries.Type: GrantFiled: July 17, 2008Date of Patent: January 17, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Lawrence Shao-hsien Chen, John E. Dolan
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Patent number: 9544602Abstract: A transmission systems suitable for video.Type: GrantFiled: June 30, 2006Date of Patent: January 10, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Mehmet Umut Demircin, Petrus J. L. van Beek
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Patent number: 9537131Abstract: A method is presented for fabricating an anode preloaded with consumable metals. The method provides a material (X), which may be one of the following materials: carbon, metals able to be electrochemically alloyed with a metal (Me), intercalation oxides, electrochemically active organic compounds, and combinations of the above-listed materials. The method loads the metal (Me) into the material (X). Typically, Me is an alkali metal, alkaline earth metal, or a combination of the two. As a result, the method forms a preloaded anode comprising Me/X for use in a battery comprising a M1YM2Z(CN)N.MH2O cathode, where M1 and M2 are transition metals. The method loads the metal (Me) into the material (X) using physical (mechanical) mixing, a chemical reaction, or an electrochemical reaction. Also provided is preloaded anode, preloaded with consumable metals.Type: GrantFiled: March 6, 2014Date of Patent: January 3, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Long Wang, Yuhao Lu, Jong-Jan Lee
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Patent number: 9537616Abstract: A user equipment (UE) is described. The UE determines a duplex method of each serving cell for frequency-division duplexing (FDD) and time-division duplexing (TDD) carrier aggregation. At least one serving cell is a TDD cell and at least one serving cell is a FDD cell. The UE also determines a subframe offset. The UE further determines physical downlink shared channel (PDSCH) Hybrid Automatic Repeat Request Acknowledgement/Negative Acknowledgement (HARQ-ACK/NACK) transmission timing for a serving cell. When a primary cell is a TDD cell, the PDSCH HARQ-ACK/NACK transmission timing for the serving cell is determined based on a downlink (DL) association set with the subframe offset for the serving cell. The UE additionally sends PDSCH HARQ-ACK/NACK information based on the PDSCH HARQ-ACK/NACK transmission timing.Type: GrantFiled: September 25, 2014Date of Patent: January 3, 2017Assignee: Sharp Laboratories of America, Inc.Inventors: Zhanping Yin, Shohei Yamada