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    • 3. 发明授权
    • Organic borate compounds and the nonaqueous electrolytes and lithium secondary batteries using the compounds
    • 有机硼酸盐化合物和使用该化合物的非水电解质和锂二次电池
    • US06824928B2
    • 2004-11-30
    • US10641085
    • 2003-08-15
    • Juichi AraiHideaki KatayamaMitsuru KobayashiHiroyuki YamaguchiHideki TakahashiMasaru Kato
    • Juichi AraiHideaki KatayamaMitsuru KobayashiHiroyuki YamaguchiHideki TakahashiMasaru Kato
    • H01M616
    • H01M10/0568B60L11/1803B60L11/1851B60L2240/36C07F5/022C07F5/04H01M6/164H01M10/052H01M10/0525H01M10/0569H01M10/48H01M2300/0034H01M2300/0037Y02E60/122Y02T10/7011Y02T10/705
    • The object of the present invention is to supply organic borates highly soluble even in a solvent of a low dielectric constant; nonaqueous electrolytes made from these organic borates and excellent in characteristics; lithium secondary batteries with improved high-temperature storage characteristics; electric appliances that can be free of protection circuits, and; various applications of the electric appliances. The present invention relates to: organic borate compounds represented by structural formula (1) where X denotes lithium or quaternary ammonium or quaternary phosphonium and R1, R2, R3, and R4 each denote an independent halogen-atom displacement alkyl group whose carbon number ranges from 1 to 4, and organic borate compounds whose R1, R2, R3, and R4 are represented by trifluoromethyl groups or pentafluoroethyl groups, in particular, can be easily dissolved to concentrations of at least 0.8 mol/dm−3 in solvent mixtures heavily laden with a fluorinated solvent and offer a maximum electroconductivity value at a low concentration of 0.4 mol/dm−3; lithium secondary batteries using the lithium borates pertaining to the invention; nonaqueous electrolytes that minimize decreases in the high-temperature recovery capacities of these lithium secondary batteries; electric appliances that can be free of protection circuits, and; various applications of the electric appliances.
    • 本发明的目的是提供即使在低介电常数的溶剂中也很高溶解的有机硼酸盐; 由这些有机硼酸盐制成的非水电解质,特性优异; 锂二次电池具有改善的高温储存特性; 可免除保护电路的电器,以及; 本发明涉及:由结构式(1)表示的有机硼酸盐化合物,其中X表示锂或季铵或季鏻,R1,R2,R3和R4各自表示独立的卤素原子位移 碳原子数为1〜4的烷基,R1,R2,R3,R4表示的有机硼酸酯化合物特别是三氟甲基或五氟乙基可以容易地溶解至至少0.8mol / -3>在大量载有氟化溶剂的溶剂混合物中,并以0.4mol / dm 3的低浓度提供最大导电性值; 使用本发明的锂硼酸锂的锂二次电池; 使这些锂二次电池的高温回收能力降低的非水电解液; 可免除保护电路的电器,以及; 各种应用的电器。
    • 6. 发明授权
    • Data transmission method, data transmission apparatus, and data transmission system
    • 数据传输方式,数据传输装置和数据传输系统
    • US07630413B2
    • 2009-12-08
    • US10737763
    • 2003-12-18
    • Mitsuru KobayashiHiroyuki YamaguchiSatoru AdachiKazuo SugimotoSadaatsu Kato
    • Mitsuru KobayashiHiroyuki YamaguchiSatoru AdachiKazuo SugimotoSadaatsu Kato
    • H04J3/04
    • H04L25/14
    • A system for improving the transmission efficiency of channels involved in multilink communication and reducing the load of processing. A first data transmission apparatus changes the number of transmission channels involved in multilink communication from “x” to “y”, acquires SS (sampling size) and SPF(samples per frame) associated with the number of transmission channels “y” from an SS/SPF table, generates multilink frames based on the acquired SS and SPF, and transmits them to a second data transmission apparatus. When it is detected that the number of transmission channels has been changed from “x” to “y”, the second data transmission apparatus acquires the SS and SPF associated with the number of transmission channels “y” from the SS/SPF table, generates multilink frames based on the acquired SS and SPF, and transmits them to the first data transmission apparatus.
    • 一种用于提高多链路通信中涉及的信道的传输效率并减少处理负载的系统。 第一数据传输装置将多链路通信中涉及的传输信道的数量从“x”改变为“y”,从SS获取与传输信道数“y”相关联的SS(采样大小)和SPF(每帧采样) / SPF表,基于所获取的SS和SPF生成多链路帧,并将其发送到第二数据发送装置。 当检测到传输信道的数量已经从“x”变为“y”时,第二数据传输装置从SS / SPF表获取与传输信道数“y”相关联的SS和SPF,产生 基于所获取的SS和SPF的多链路帧,并将它们发送到第一数据发送装置。