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    • 2. 发明申请
    • NONAQUEOUS ELECTROLYTE BATTERY
    • 非电解电解质电池
    • US20130216920A1
    • 2013-08-22
    • US13820823
    • 2011-09-05
    • Tomonobu TsujikawaMasayasu ArakawaMasayuki TeradaKoji Hayashi
    • Tomonobu TsujikawaMasayasu ArakawaMasayuki TeradaKoji Hayashi
    • H01M10/056H01M10/052
    • H01M10/056H01M4/485H01M4/505H01M4/587H01M4/661H01M10/052H01M10/0525H01M10/0568H01M10/0569H01M10/4235Y02T10/7011
    • A non-aqueous electrolyte battery capable of flattening of a voltage property and securing safety at a time of battery abnormality is provided. A lithium-ion secondary battery 20 has an electrode group 6 in which a positive and a negative electrode plates are wound. A non-aqueous electrolyte is formed by adding LiBF4 to a mixed solvent of EC and DMC. In the positive electrode plate, a positive electrode mixture layer W2 including a positive electrode active material is formed at both surfaces of an aluminum foil W1. A lithium manganese magnesium complex oxide having a spinel crystal structure is used as the positive electrode active material. A flame retardant layer W6 including a phosphazene compound is formed at a surface of the positive electrode mixture layer W2. In the negative electrode plate, a negative electrode mixture layer W4 including a negative electrode active material is formed at both surfaces of a rolled copper foil W3. A carbon material that a surface of graphite is coated by pyrolytic carbon is used as the negative electrode active material. The phosphazene compound demonstrates non-flammability, and a voltage property is flattened by the graphite material.
    • 提供能够使电压特性变平且在电池异常时确保安全性的非水电解质电池。 锂离子二次电池20具有缠绕有正极板和负极板的电极组6。 通过将LiBF 4加入到EC和DMC的混合溶剂中形成非水电解质。 在正极板中,在铝箔W1的两面形成有包含正极活性物质的正极合剂层W2。 使用具有尖晶石晶体结构的锂锰镁复合氧化物作为正极活性物质。 在正极合剂层W2的表面形成有包含磷腈化合物的阻燃层W6。 在负极板中,在轧制的铜箔W3的两面形成有负极活性物质的负极合剂层W4。 作为负极活性物质,使用石墨的表面被热解碳覆盖的碳材料。 磷腈化合物显示出不可燃性,并且电压特性被石墨材料压平。
    • 5. 发明授权
    • Non-aqueous electrolyte battery
    • 非水电解液电池
    • US09515353B2
    • 2016-12-06
    • US13820817
    • 2011-09-05
    • Tomonobu TsujikawaMasayasu ArakawaKenji KuritaMasayuki Terada
    • Tomonobu TsujikawaMasayasu ArakawaKenji KuritaMasayuki Terada
    • H01M10/42H01M4/587H01M4/66H01M10/0525
    • H01M10/4235H01M4/587H01M4/661H01M10/0525Y02E60/122
    • A non-aqueous electrolyte, lithium-ion secondary battery includes an electrode group in which positive and negative electrode plates are wound via a separator accommodated into a battery container into which a non-aqueous electrolyte is injected. In the positive electrode plate, a positive electrode mixture layer including a lithium transition metal complex oxide is formed at both surfaces of an aluminum foil. A flame retardant layer containing a phosphazene compound as a flame retardant and a polyethylene oxide of a binder having ionic conductivity is formed at a surface of the positive electrode mixture layer. In the negative electrode plate, a negative electrode mixture layer including a carbon material of a negative electrode active material is formed at both surfaces of rolled copper foil. Ionic conductivity is secured by the polyethylene oxide, and the phosphazene compound decomposes when a battery temperature rises due to battery abnormality.
    • 非水电解质锂离子二次电池包括电极组,其中正极板和负极板通过容纳在其中注入非水电解质的电池容器中的隔板卷绕。 在正极板中,在铝箔的两面形成包含锂过渡金属复合氧化物的正极合剂层。 在正极混合层的表面形成有含有作为阻燃剂的磷腈化合物和具有离子导电性的粘合剂的聚环氧乙烷的阻燃层。 在负极板中,在轧制铜箔的两面形成负极活性物质的碳材料的负极混合层。 离子导电性由聚环氧乙烷保证,当电池温度由于电池异常而升高时,磷腈化合物分解。
    • 6. 发明申请
    • NON-AQUEOUS ELECTROLYTE BATTERY
    • 非水电解电池
    • US20130252090A1
    • 2013-09-26
    • US13820817
    • 2011-09-05
    • Tomonobu TsujikawaMasayasu ArakawaKenji KuritaMasayuki Terada
    • Tomonobu TsujikawaMasayasu ArakawaKenji KuritaMasayuki Terada
    • H01M10/42
    • H01M10/4235H01M4/587H01M4/661H01M10/0525Y02E60/122
    • A non-aqueous electrolyte battery capable of securing safety at a time of battery abnormality and restricting a drop in capacity or output at a time of battery use is provided. In a lithium-ion secondary battery 20, an electrode group 6 that positive and negative electrode plates are wound via a separator is accommodated into a battery container 7 into which a non-aqueous electrolyte is injected. In the positive electrode plate, a positive electrode mixture layer W2 including a lithium transition metal complex oxide is formed at both surfaces of an aluminum foil W1. A flame retardant layer W6 containing a phosphazene compound of a flame retardant and a polyethylene oxide of a binder having ionic conductivity is formed at a surface of the positive electrode mixture layer W2. In the negative electrode plate, a negative electrode mixture layer W6 including a carbon material of a negative electrode active material is formed at both surfaces of rolled copper foil W3. Ionic conductivity is secured by the polyethylene oxide and the phosphazene compound decomposes when a battery temperature goes up due to battery abnormality.
    • 提供一种能够在电池异常时确保安全性并限制电池使用时的容量下降或输出的非水电解质电池。 在锂离子二次电池20中,将正极板和负极板经由隔膜卷绕的电极组6容纳在其中注入非水电解质的电池容器7中。 在正极板中,在铝箔W1的两面形成有包含锂过渡金属复合氧化物的正极合剂层W2。 在正极合剂层W2的表面形成有含有阻燃剂的磷腈化合物和具有离子导电性的粘合剂的聚环氧乙烷的阻燃层W6。 在负极板中,在轧制的铜箔W3的两面形成有包含负极活性物质的碳材料的负极合剂层W6。 当电池温度由于电池异常而升高时,通过聚环氧乙烷确保离子传导性,磷腈化合物分解。
    • 7. 发明申请
    • TERMINAL-COUNT ESTIMATION DEVICE AND TERMINAL-COUNT ESTIMATION METHOD
    • 终端计数估计装置和终端计数估计方法
    • US20130157689A1
    • 2013-06-20
    • US13819009
    • 2012-01-24
    • Masayuki TeradaMotonari KobayashiToru OdawaraIchiro Okajima
    • Masayuki TeradaMotonari KobayashiToru OdawaraIchiro Okajima
    • H04W64/00
    • H04W64/006H04W4/021H04W60/00
    • A number-of-terminals estimation device includes: a location data acquisition unit to acquire location data which are a collection of multiple pieces of location information including location registration information; a first presence count estimation unit to estimate a first presence count to be the number of terminals in observation area during observation period, based on the location data; a signal removal unit to extract location data in accordance with a type of location data from the location data; a second presence count estimation unit to estimate a second presence count to be the number of terminals in observation area during observation period, based on extracted location data; and a third presence count estimation unit to estimate a third presence count to be the number of terminals in observation area during observation period, based on one or both of first and second presence counts.
    • 终端终端估计装置包括:位置数据获取单元,用于获取作为包括位置登记信息的多个位置信息的集合的位置数据; 第一存在计数估计单元,基于所述位置数据,将所述第一存在计数估计为观察期间的观察区域中的终端的数量; 信号去除单元,用于根据位置数据的位置数据类型提取位置数据; 第二存在计数估计单元,基于提取的位置数据,将第二存在计数估计为观察期间的观察区域中的终端的数量; 以及第三存在计数估计单元,其基于第一和第二存在计数中的一个或两个来将第三存在计数估计为观察期间的观察区域中的终端的数量。
    • 10. 发明授权
    • Electronic value exchange method, user device, and third-party device
    • 电子价值交换方式,用户设备和第三方设备
    • US07865438B2
    • 2011-01-04
    • US11371106
    • 2006-03-09
    • Masayuki TeradaKensaku MoriKazuhiko IshiiSadayuki Hongo
    • Masayuki TeradaKensaku MoriKazuhiko IshiiSadayuki Hongo
    • G06Q20/00G06F17/60
    • G06Q20/02G06Q20/04G06Q20/105G06Q20/3825G06Q20/40G06Q20/407
    • A user device uses, instead of agreement information, only second session information contained in the agreement information, to generate an electronic signature for information containing the session information and information indicating an abort request, and outputs abort request information containing the session information, the information indicating the abort request, and the electronic signature, whereby transmission/reception can be performed without unnecessary information. Similarly, it may be configured to use only the second session information to generate an electronic signature for information containing the session information and information indicating a commitment request, and to output commitment request information containing the electronic signature. Since a third-party device defines a third session state as abort in correspondence to the second session information, it is able to manage states while appropriately discriminating a plurality of concurrent electronic value exchanges.
    • 用户设备使用协议信息中仅包含协议信息的第二会话信息来生成包含会话信息的信息和指示中止请求的信息的电子签名,并输出包含会话信息的中止请求信息,信息 指示中止请求和电子签名,从而可以在不需要的信息的情况下执行发送/接收。 类似地,它可以被配置为仅使用第二会话信息来生成用于包含会话信息的信息的电子签名和指示承诺请求的信息,并且输出包含电子签名的承诺请求信息。 由于第三方设备将第三会话状态定义为与第二会话信息相对应的中止,所以能够在适当地区分多个并行电子价值交换的同时管理状态。