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    • 1. 发明专利
    • Lead wire for nonaqueous electrolyte battery and nonaqueous electrolyte battery
    • 非电解电池电池和非电解电解电池的电线
    • JP2010033888A
    • 2010-02-12
    • JP2008194912
    • 2008-07-29
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • MIYAZAWA KEITAROTANAKA KOSUKE
    • H01M2/30H01M2/06
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To provide a lead wire for a nonaqueous electrolyte battery, made of nickel having hydrofluoric acid-resistant characteristics better than inexpensive surface treatment; and to provide a nonaqueous electrolyte battery using the lead wire. SOLUTION: The nonaqueous electrolyte battery where a positive electrode, a negative electrode, and nonaqueous electrolyte are housed in an enclosing body 3 made of a laminated film 4 including a metallic foil and its lead wire are provided. The lead wire 2 is made of nickel (including nickel plating), the surface of the lead wire pulled out by firmly enclosing in the enclosing body 3 is to be a passive layer 5, and an insulator 6 firmly enclosed in the enclosing body is provided on the surface of the passive layer 5. The passive layer 5 is to be zero or a plus potential in a natural electrical potential against 0.01 wt.% hydrofluoric acid, and the electrical potential is to be 0 V or more and 0.5 V or less. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种非常好的表面处理的耐氢氟酸特性的非水电解质电池用导线, 并提供使用该引线的非水电解质电池。 解决方案:提供由正极,负极和非水电解质容纳在由包括金属箔和引线的层合膜4制成的封闭体3中的非水电解质电池。 引线2由镍(包括镀镍)制成,通过牢固地包围封闭体3而拉出的引线的表面为钝化层5,并且提供牢固地封闭在封闭体内的绝缘体6 在钝化层5的表面上。钝化层5对于0.01重量%的氢氟酸在自然电势中为零或正电位,并且电势为0V以上且0.5V以下 。 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • Waveform shaping method and optical receiver
    • 波形成像方法和光接收机
    • JP2009094894A
    • 2009-04-30
    • JP2007264786
    • 2007-10-10
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • TANAKA KOSUKE
    • H04B3/06H04B10/00H04B10/2513
    • PROBLEM TO BE SOLVED: To provide a waveform shaping method of setting a tap coefficient based on a switched optical transmitter by the time when the optical transmitter is switched, and an optical receiver.
      SOLUTION: A controller is provided, which sets a tap efficient which corresponds to an optical transmitter 20b in which a reception signal is switched from a first optical transmitter 20a on the basis of a time division method and is stored in a storage device 16 in a second EDC (electronic dispersion compensation) circuit 10b within the time when a reception signal received from the first optical transmitter 20a is subjected to waveform shaping by a first EDC circuit 10a and output to the outside through a selector 12, and instructs the selector 12 to output a signal from the second EDC circuit 10b to the outside from the selector 12 when the reception signal is switched from the first optical transmitter 20a to the second optical transmitter 20b.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种在光发射机切换时基于切换式光发射机设置抽头系数的波形整形方法和光接收机。 解决方案:提供一种控制器,其设置对应于基于时分方法从第一光发射机20a切换接收信号的光发射机20b的分接头效率,并将其存储在存储设备 在从第一光发送器20a接收到的接收信号经由第一EDC电路10a进行波形整形并通过选择器12输出到外部的时间内,在第二EDC(电子色散补偿)电路10b中的16指令, 选择器12,当接收信号从第一光发射机20a切换到第二光发射机20b时,从选择器12将来自第二EDC电路10b的信号输出到外部。 版权所有(C)2009,JPO&INPIT
    • 3. 发明专利
    • Optical data link, and compensation coefficient adjustment method
    • 光学数据链接和补偿系数调整方法
    • JP2008294752A
    • 2008-12-04
    • JP2007138189
    • 2007-05-24
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • TANAKA KOSUKE
    • H04B10/2507H04B10/2513H04B10/524H04B10/556
    • PROBLEM TO BE SOLVED: To reduce a transmission error by appropriately setting the characteristic of a dispersion compensator.
      SOLUTION: This optical data link 1 is provided with a laser diode 12, a laser diode driver circuit 11, an optical receiving circuit 5, an electric dispersion compensator (EDC) 6, a pattern 1 generator 8 for generating a first PRBS, a pattern 2 generator 9 for generating a second PRBS, a selector 10, a control circuit 4 and a pattern 1 detector 7 for detecting the first PRBS from an output of the EDC 6, wherein the control circuit 4 adjusts a Tap coefficient in the EDC 6 while the selector 10 is switched so that the first PRBS can be input to the laser diode driver circuit 11, switches the selector 10 so that the second PRBS can be input to the laser diode driver circuit 11 after completing the adjustment and detects the adjustment completion of the Tap coefficient of the opposite side by a detection result of the pattern 1 detector 7.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:通过适当地设定色散补偿器的特性来减小传输误差。 解决方案:该光数据链路1设置有激光二极管12,激光二极管驱动电路11,光接收电路5,电色散补偿器(EDC)6,用于产生第一PRBS的图案1发生器8 ,用于产生第二PRBS的图案2发生器9,选择器10,控制电路4和用于从EDC 6的输出检测第一PRBS的图案1检测器7,其中控制电路4调整 EDC 6,同时选择器10被切换,使得第一PRBS可以被输入到激光二极管驱动电路11,切换选择器10,使得第二PRBS可以在完成调整之后输入到激光二极管驱动电路11,并检测到 通过图案1检测器7的检测结果调整相反侧的Tap系数的完成。版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • Optical transceiver
    • 光学收发器
    • JP2007287850A
    • 2007-11-01
    • JP2006112108
    • 2006-04-14
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • TANAKA KOSUKE
    • H01S5/022G02B6/42
    • G02B6/4246H05K1/189H05K3/3447H05K3/4691H05K2201/10121H05K2201/2009
    • PROBLEM TO BE SOLVED: To provide an optical transceiver with a transmitter-receiver sub-assembly appropriately mounted thereon. SOLUTION: The transmitter-receiver sub-assembly 11 to be mounted on the optical transceiver 10 includes a light emitting sub-assembly 19 and a light receiving sub-assembly 20. A first flexible substrate 33 is connected between the light emitting sub-assembly and a circuit substrate 12. A second flexible substrate 34 is connected between the light receiving sub-assembly and the circuit substrate. The second flexible substrate includes: an erection part 34a extended from the end surface of the circuit substrate and bent to be erected with respect to the circuit substrate; and a connection part 34c extended from the side part of the erection part, bent and connected to the light receiving sub-assembly. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种适当安装在其上的发射机 - 接收机子组件的光收发器。 解决方案:要安装在光收发器10上的发射机 - 接收器子组件11包括发光子组件19和光接收子组件20.第一柔性衬底33连接在发光子组件 组件和电路基板12.第二柔性基板34连接在光接收子组件和电路基板之间。 第二柔性基板包括:从电路基板的端面延伸并弯曲成相对于电路基板竖立的安装部分34a; 以及从安装部的侧部延伸的弯曲并连接到受光子组件的连接部34c。 版权所有(C)2008,JPO&INPIT
    • 5. 发明专利
    • Planar antenna and planar antenna connection body
    • 平面天线和平面天线连接体
    • JP2005064680A
    • 2005-03-10
    • JP2003290023
    • 2003-08-08
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • YOSHINAGA SATOSHITANAKA KOSUKETSUCHIDA KAZUYUKITANAKA KEIICHI
    • H01Q1/38H01Q1/22H01Q1/32H01Q1/40
    • PROBLEM TO BE SOLVED: To provide a planar antenna improved in antenna gain and sufficient in sticking workability.
      SOLUTION: A bonding layer 12 is arranged on one surface of a resin film 11 having electric insulation. A metal rectangular conductor 13 is wired and stuck to the bonding layer 12 as an antenna conductor. A connection part 19 which can be connected to a feeding side connector 18 fitted to a feeding coaxial cable 17 is arranged on one end of the antenna conductor. Since the metal rectangular conductor 13 is stuck to the bonding layer 12 and is wired, productivity can be improved. Since the metal rectangular conductor 13 has width of a certain degree, a rate that the antenna conductor in the resin film 11 occupies becomes large, and the antenna gain can be improved.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供改善天线增益的平面天线,并且具有足够的粘附可加工性。 解决方案:在具有电绝缘性的树脂膜11的一个表面上设置粘结层12。 金属矩形导体13被布线并粘接到作为天线导体的接合层12。 可以连接到装配到馈电同轴电缆17的馈电侧连接器18的连接部分19布置在天线导体的一端上。 由于金属矩形导体13粘接到接合层12并且被布线,所以可以提高生产率。 由于金属矩形导体13具有一定程度的宽度,所以树脂膜11中的天线导体所占据的速率变大,并且可以提高天线增益。 版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • Tapered coated optical fiber and terminal formation method therefor
    • TETERED涂层光纤和终端形成方法
    • JP2003279814A
    • 2003-10-02
    • JP2002080920
    • 2002-03-22
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • IGARASHI MASARUNAGAO YOSHIAKITANAKA KEIICHITANAKA KOSUKE
    • G02B6/44
    • PROBLEM TO BE SOLVED: To provide a tapered coated optical fiber in which branching is performed in an optional form including at least two or more optical fibers as one group at the terminal part of the tapered coated optical fiber, the branching shape is held and a branching form is changed as needed, and the terminal formation method. SOLUTION: A prescribed optical fiber group is branched from a plurality of the optical fibers at the branching part 4 of the tapered like coated optical fiber 1 for which a plurality of the optical fibers are integrated and the tapered coated optical fiber is provided with a first bundling part 10 bundling a plurality of the optical fibers on the branching part 4. A second bundling part 11 bundling the branched prescribed optical fiber group 2 more on a terminal side than the first bundling part 10 is formed. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:为了提供一种锥形涂覆光纤,其中在锥形涂覆光纤的端子部分以包括至少两个或更多个光纤为一组的任选形式进行分支,分支形状为 并且根据需要改变分支形式,以及终端形成方法。 解决方案:规定的光纤组在多个光纤被一体化的锥形包覆光纤1的分支部分4处从多个光纤分支,并且提供锥形涂覆光纤 具有在分支部4上捆扎多根光纤的第一捆扎部10.在第一捆扎部10的端子侧,形成有与分支规定光纤群2捆束的第二捆扎部11。 版权所有(C)2004,JPO
    • 8. 发明专利
    • 光トランシーバ
    • 光学收发器
    • JP2015026333A
    • 2015-02-05
    • JP2013157008
    • 2013-07-29
    • 住友電気工業株式会社Sumitomo Electric Ind Ltd
    • TANAKA KOSUKE
    • G06F13/36
    • H04B10/40G02B6/4292
    • 【課題】ロジックデバイスとマイクロコンピュータとを接続する通信バスとしてシリアル通信バスを採用して小型の光トランシーバを提供すること。【解決手段】外部の上位レイヤ100にMDIOバスL1を介して接続される光トランシーバ1であって、マイクロコンピュータ3と、ロジックデバイス2と、MDIOバスL1と、シリアル通信バス8と、第1の専用信号線9と、を備えている。マイクロコンピュータ3は、MDIOレジスタ4を有する。ロジックデバイス2は、MDIOバスL1を介して上位レイヤ100から命令コードとアドレス情報と単一データとを受信し、シリアル通信バス8を介してアドレス情報と単一データとをマイクロコンピュータ3に送信し、第1の専用信号線9を介してOPコードをマイクロコンピュータ3に送信する。【選択図】図1
    • 要解决的问题:提供一种使用串行通信总线作为连接逻辑设备和微计算机的通信总线的小型光收发器。解决方案:通过MDIO(管理数据输入)与外部上层100连接的光收发器1 /输出)总线L1包括微型计算机3,逻辑装置2,MDIO总线L1,串行通信总线8和第一专用信号线9.微计算机3包括MDIO寄存器4.逻辑装置2接收 指令代码,地址信息和来自上级层100的单个数据经由MDIO总线L1经由串行通信总线8将地址信息和单个数据发送到微计算机3,并将OP(操作)代码发送到 微型计算机3经由第一专用信号线9。
    • 9. 发明专利
    • Lead member for nonaqueous electrolyte power storage device and method of manufacturing the same
    • 非电解电力储存装置的引导构件及其制造方法
    • JP2014135169A
    • 2014-07-24
    • JP2013001700
    • 2013-01-09
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • TAGUCHI AKIHIKOTSUJINO ATSUSHITANAKA KOSUKESHIMADA TAKAAKIOKANO SATOSHI
    • H01M2/30H01M2/06
    • PROBLEM TO BE SOLVED: To provide a lead member for a non-aqueous electrolyte power storage device which easily removes an insulating coating and has a stable electrical contact surface, and also to provide a method of manufacturing the same.SOLUTION: A lead member for a non-aqueous electrolyte power storage device is formed by pasting an insulation resin film 5 on both conductor surfaces so as to protrude from both sides of the conductor width in an intermediate region of a flat conductor on which an electrically-insulating coating 7 is formed by surface treatment. Out of a conductor portion to which the insulation resin film 5 is not stuck and which is exposed, at least a part of a coating of the conductor portion exposing to outside of a nonaqueous electrolyte device is removed by laser irradiation and used as a coating removal surface 8a.
    • 要解决的问题:提供一种容易除去绝缘涂层并且具有稳定的电接触表面的非水电解质蓄电装置的引线构件,并且还提供其制造方法。解决方案:一种用于 通过将绝缘树脂膜5粘贴在两个导体表面上,以便在形成有电绝缘涂层7的扁平导体的中间区域中从导体宽度的两侧突出来形成非水电解质电力存储装置 通过表面处理。 在绝缘树脂膜5未被卡住并露出的导体部分中,暴露于非水电解质器件外侧的导体部分的涂层的至少一部分被激光照射除去并用作涂层去除 表面8a。