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    • 3. 发明授权
    • Measurement system, moving-object-mounted terminal and data processing apparatus
    • 测量系统,移动物体安装终端和数据处理设备
    • US08954095B2
    • 2015-02-10
    • US13312165
    • 2011-12-06
    • Tsutomu WatanabeTomomi Kageyama
    • Tsutomu WatanabeTomomi Kageyama
    • H04W24/00A61B5/11A61B5/00G07C1/22
    • A61B5/1112A61B5/0002A61B2503/40G07C1/22
    • According to one embodiment, a measurement system includes a wireless relay device, a moving-object-mounted terminal and a data processor. The wireless relay device forms a wireless area for performing wireless communication. The moving-object-mounted terminal is mounted to a moving object within the wireless area. The moving-object-mounted terminal includes a Global Positioning System (GPS) unit and a wireless unit. The GPS unit acquires positional data of the moving object and time data indicating the time when the positional data has been acquired by GPS. The wireless unit converts the positional data and the time data into a wireless signal, and transmits the wireless signal to the wireless relay device. The data processor receives the wireless signal from the moving-object-mounted terminal via the wireless relay device, and calculates time required for the moving object to move a predetermined distance within the wireless area based on the positional data and the time data.
    • 根据一个实施例,测量系统包括无线中继设备,移动物体安装终端和数据处理器。 无线中继装置形成用于执行无线通信的无线区域。 移动物体安装端子安装在无线区域内的移动物体上。 移动物体安装终端包括全球定位系统(GPS)单元和无线单元。 GPS单元获取运动对象的位置数据和指示通过GPS获取位置数据的时间的时间数据。 无线单元将位置数据和时间数据转换为无线信号,并将无线信号发送到无线中继设备。 数据处理器经由无线中继装置从移动物体安装终端接收无线信号,并且基于位置数据和时间数据计算移动对象在无线区域内移动预定距离所需的时间。
    • 4. 发明申请
    • BATTERY AND BATTERY SYSTEM
    • 电池和电池系统
    • US20130171483A1
    • 2013-07-04
    • US13819610
    • 2011-08-26
    • Yohei ShibataYoshinobu YasunagaTsutomu WatanabeTokuo InamasuRyoichi OkuyamaMinoru YagiHiroshi ObuseShinichi Wada
    • Yohei ShibataYoshinobu YasunagaTsutomu WatanabeTokuo InamasuRyoichi OkuyamaMinoru YagiHiroshi ObuseShinichi Wada
    • H01M2/12
    • H01M2/1258H01M2/12H01M2/1235H01M2/345H01M2/348H01M10/04H01M10/52
    • [PROBLEM] In space-conservative fashion, at low cost, and with high efficiency, to carry out absorption of gas produced at the interior of a battery.[SOLUTION MEANS] Secondary battery 21 is provided with case 3 in which positive electrode 10 and negative electrode 11 are sealed together with electrolyte, and with explosion prevention valve 4 for allowing escape of high-pressure gas present at the interior of case 3 when pressure within case 3 rises; and is further provided with gas absorber 13 or 14 for absorbing high-pressure gas. Gas absorber 13, includes gas-absorbent material 6 and capsule 5, which comprises hot-melt material, and is provided within case 3, this capsule 5 including, at the interior thereof, gas-absorbent material 6. Furthermore, gas absorber 14, which may be provided outside case 3, may include gas-absorbent material 6; cartridge case 14a which houses, at the interior thereof, gas-absorbent material 6; gas inlet valve 14b for causing high-pressure gas to flow thereinto; and gas outlet valve 14c for causing high-pressure gas to flow out therefrom.
    • [问题]以空间保守的方式,以低成本,高效率,对电池内部产生的气体进行吸收。 [解决方案]二次电池21设置有壳体3,其中正电极10和负电极11与电解质密封在一起,并具有防爆阀4,用于允许存在于壳体3内部的高压气体逸出,当压力 案件3上升; 并且还设置有用于吸收高压气体的气体吸收器13或14。 气体吸收剂13包括气体吸收材料6和胶囊5,其包括热熔材料,并且设置在壳体3内,该胶囊5在其内部包括吸气材料6.此外,气体吸收体14, 其可以设置在外壳3的外部,可以包括吸收气体材料6; 在其内部容纳吸收气体材料6的盒壳体14a; 用于使高压气体流入的进气阀14b; 以及用于使高压气体从其流出的气体出口阀14c。
    • 5. 发明授权
    • Optical connector
    • 光连接器
    • US08317406B2
    • 2012-11-27
    • US12920060
    • 2008-12-17
    • Yoshikyo TamekuniMasahiro ShibataYukihiro YokomachiToshihiko HonmaTsutomu Watanabe
    • Yoshikyo TamekuniMasahiro ShibataYukihiro YokomachiToshihiko HonmaTsutomu Watanabe
    • G02B6/36G02B6/38G02B6/255
    • G02B6/3846G02B6/2558G02B6/3821G02B6/3887G02B6/3895
    • An optical connector, which is capable of enhancing fittability into a cabinet, or the like on account of compactification and also avoiding problems of an increase of bead loss, a breakage, etc. of an optical fiber, can be provided. In an optical connector 1 that houses a fusion-spliced portion 13, in which a short optical fiber 5 that is fitted previously to an optical connector ferrule 85 and a coated optical fiber 3 are fusion spliced together and holds the fusion-spliced portion 13 therein, one end of a protection sleeve 87 made of the thermal shrinkage material that externally fixes the fusion-spliced portion 13 is coupled to the optical connector ferrule 85. An air escape hole 7ffor escaping an air, which is confined in the protection sleeve 87 when the protection sleeve 87 is thermally shrunk and adhered closely to the optical connector ferrule 85, to the outside is formed in the optical connector ferrule 85.
    • 可以提供一种光纤连接器,其能够通过紧凑化而增强对机柜的适配性等,并且还可以避免光纤的珠损,断线等的增加的问题。 在容纳熔接部13的光连接器1中,其中预先安装到光连接器套圈85的短光纤5和涂覆光纤3熔接在一起并将熔接部13保持在其中 由外部固定熔接部13的热收缩材料制成的保护套筒87的一端与光连接器套圈85相连接。空气泄漏孔7脱离空气,该空气被限制在保护套筒87中 保护套筒87被热收缩并且紧密地粘附到光连接器套圈85,在光连接器套圈85中形成外部。
    • 6. 发明授权
    • Optical connector
    • 光连接器
    • US08047726B2
    • 2011-11-01
    • US11984088
    • 2007-11-13
    • Yoshikyo TamekuniYukihiro YokomachiTsutomu WatanabeToshihiko HonmaMasahiro Shibata
    • Yoshikyo TamekuniYukihiro YokomachiTsutomu WatanabeToshihiko HonmaMasahiro Shibata
    • G02B6/38
    • G02B6/3846G02B6/2551G02B6/2558G02B6/3887
    • An optical connector in which the housing property into a cabinet or the like can be enhanced because of the compactification, and which can solve problems of the increase of the bending loss of an optical fiber, the breakage, and the like is obtained. In an optical connector which houses and holds a fusion spliced portion where a short optical fiber previously fitted to an optical connector ferrule is fusion-spliced with a coated optical fiber, one end of a protection sleeve which armors the fusion spliced portion is coupled to the optical connector ferrule. As a result, the length of the protection sleeve which covers the fusion spliced portion so that the fusion spliced portion is positioned at the middle can be set with reference to an end portion of the optical connector ferrule. Therefore, the protection sleeve can be shortened, and compactification of the optical connector can be realized.
    • 获得由于紧凑化而能够提高壳体等的壳体特性的光连接器,能够解决光纤的弯曲损耗的增加,断裂等的问题。 在容纳和保持融合接合部分的光学连接器中,预先安装到光连接器套圈的短光纤与涂覆的光纤熔接,保护套的一端接合熔接部分, 光连接器套圈。 结果,可以参考光连接器套圈的端部来设置覆盖熔接部的保护套的长度,使得熔接部位于中间。 因此,能够缩短保护套筒,能够实现光连接器的紧凑化。