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    • 3. 发明专利
    • バスバーモジュール装置
    • 总线模块装置
    • JP2015022798A
    • 2015-02-02
    • JP2013147289
    • 2013-07-16
    • 株式会社ジーエスエレテックGs Eletech:Kk東洋アルミニウム株式会社Toyo Aluminium Kk
    • OKUDA SHINGOYASUKAWA HIDENORIKIKUKAWA MASANOBU
    • H01M2/20H01M2/10
    • 【課題】電池集合体3に対する組付け工数の削減を図り、コスト的に有利となるとともに、簡素な構造で迅速組付けが可能となり、車両搭載用として好適となるバスバーモジュール装置6を提供する。【解決手段】可撓性基盤5を折り目線8Aに沿って折り曲げ、副電導箔8をバスバー15を介して主電導箔7に対して導電可能に重ね合せるといった簡単操作で、一方の電池2の正極2aと他方の電池2の負極2bとが電気接続される。これにより、電池集合体3に対するバスバーモジュール装置6の組付け工数の削減が図られ、コスト的に有利となるとともに、バスバーモジュール装置6が簡素な構造となって迅速組付けが可能となる。可撓性基盤5を折り目線8Aに沿って折り曲げることにより、副電導箔8をバスバー15とともに被覆し、外部の塵埃などの異物から保護することができる。【選択図】図1
    • 要解决的问题:提供一种汇流条模块装置6,其通过减少组装到电池组件3的工时而成本有利,并且通过使得能够以简单的结构能够迅速组装而适用于车载包装。解决方案:A 一个电池2的正极2a和另一个电池2的负极2b通过沿着折叠线8A折叠柔性基板5的简单操作而被电连接,并且通过总线将主导电箔7上的副导电箔8重叠 酒吧15以可行的方式。 因此,将汇流条模块装置6组装到电池组件3上的工时减少,汇流条模块装置6的成本变得有利,并且可以以简单的结构快速组装。 通过沿着折叠线8A折叠柔性基板5,副导电箔8与汇流条15一起被覆盖,并且可以被保护以防止异物如外部灰尘。
    • 4. 发明专利
    • Method and device for manufacturing fuel sender
    • 用于制造燃油的方法和装置
    • JP2011002438A
    • 2011-01-06
    • JP2009162211
    • 2009-06-17
    • Gs Eletech:Kk株式会社ジーエスエレテック
    • NISHIMURA TETSUOISOGAI TAKUYA
    • G01F23/36
    • PROBLEM TO BE SOLVED: To provide a method of manufacturing a fuel sender and a manufacturing device for manufacturing a fuel sender with a satisfactory yield by effectively preventing, such a situation that an arm end is compression-deformed, because of failure to mount a washer thereon.SOLUTION: The manufacturing device 1 includes a mount 3 for thereto fixing a float made of synthetic resin with one end side of a wire-like arm put therethrough, the wire-like arm bent in a prescribed shape; a pressure-applying means for compression-deforming the end side of the arm projecting from the float fixed by the mount 3, on the outer side of the washer mounted on the end side; and a detection means for detecting the existence of the washer, by applying electric current to the washer mounted on the end side of the arm put through the float.
    • 要解决的问题:提供一种制造燃料发送器的方法和用于制造具有良好产量的燃料发送器的制造装置,通过有效地防止由于无法安装垫圈而导致臂端部被压缩变形的情况 制造装置1包括用于固定由合成树脂制成的浮子的安装件3,其上放置有线状臂的一端侧,该线状臂弯曲成规定形状; 压力施加装置,用于使安装在所述端部侧的所述垫圈的外侧上的所述臂的端侧从由所述安装件3固定的浮子突出的端部压缩变形; 以及检测装置,用于通过向安装在穿过浮子的臂的端侧上的垫圈施加电流来检测垫圈的存在。
    • 5. 发明专利
    • Holding device of braided shield covered wire
    • 防护罩覆盖线的控制装置
    • JP2007060784A
    • 2007-03-08
    • JP2005242130
    • 2005-08-24
    • Gs Eletech:Kk株式会社ジーエスエレテック
    • SATO TOMONORIKANESHIRO TERUYUKIKAWAWAKI MASAYOSHI
    • H02G1/14
    • PROBLEM TO BE SOLVED: To provide a holding device of a shield covered wire that is advantageous in terms of cost by a simple structure since a shield braid is favorably precessed in braiding, is prevented from being damaged since a folded part protects the covered wire, and achieved in soft structure. SOLUTION: The opening end T of a braided shield 13 is folded, the braided shield 13 can favorably be processed in braiding by sandwiching the folded part inside a gripping piece 6, and a different member is not needed for braid processing, thus making the holding device advantageous in terms of cost. Since a folded end folding part 14 covers a ring collar 10, the coated wires 13A, 13B and 13C are prevented from rubbing against the edge of the ring collar 10, and the covered wires 13A, 13B and 13C are protected. Thus there can be achieved the soft structure wherein an ended-form loop ring 9 alleviates and regulates strong fastening forces transmitted to the covered wires 13A, 13B and 13C from the gripping piece 6. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供一种屏蔽包线的保持装置,由于屏蔽编织物在编织中被有利地进入,因此通过简单的结构在成本方面是有利的,因此防止损坏,因为折叠部分保护 包线,实现软结构。 解决方案:编织屏蔽13的开口端T被折叠,编织屏蔽13可以通过将折叠部分夹在夹紧片6内而被编织而被加工,并且不需要不同的部件用于编织加工,因此 使得保持装置在成本方面是有利的。 由于折叠端折叠部14覆盖环套环10,所以防止涂覆线13A,13B和13C摩擦环套环10的边缘,并且被覆线13A,13B和13C被保护。 因此,可以实现软结构,其中端形环环9减轻并调节从夹持片6传递到包线13A,13B和13C的强紧固力。版权所有(C)2007,JPO&INPIT
    • 9. 发明专利
    • Non-contact type power feeding device
    • 非接触式电力馈电装置
    • JP2014103812A
    • 2014-06-05
    • JP2012255367
    • 2012-11-21
    • Gs Eletech:Kk株式会社ジーエスエレテックToyota Motor East Japan Incトヨタ自動車東日本株式会社Institute Of National Colleges Of Technology Japan独立行政法人国立高等専門学校機構
    • OKUDA SHINGOKATO TAKUMIMATSUI YOICHISASAKI TORUSAKURABA HIROSHIYAMADA HIROSHISATO HIROSHI
    • H02J7/00B60L5/00B60M7/00H02J17/00
    • Y02T10/7241
    • PROBLEM TO BE SOLVED: To provide a non-contact type power feeding device 1 of a prompt power feeding type capable of charging a power-receiving-side capacitor 24 promptly in a short time by using a small-capacitance power source such as a commercial power source for domestic use.SOLUTION: In a power-transmitting-side device A, a power-transmitting-side capacitor 9 which is charged all the time during electrification from a power source 7 is provided as a power-transmitting-side buffer section, such that, in electromagnetic field coupling by a primary coil 18 and a secondary coil 19a, a power-receiving-side capacitor 24 is charged by power Q from the power source 7 and power P from the power-transmitting-side capacitor 9 in an additive manner. Therefore, the power-receiving-side capacitor 24 can be charged promptly in a short time by using not a large capacity power source such as a three-phase AC power source but a small capacity power source such as a lamp line. Namely, when charging the power-receiving-side capacitor 24, the need to select a large capacity power source such as an industrial power source is eliminated, a power source for domestic use is available and versatility is increased.
    • 要解决的问题:提供一种能够通过使用小容量电源(例如商业)在短时间内迅速地对功率接收侧电容器24充电的即时供电型的非接触型馈电装置1 用于家庭用电源。解决方案:在发电侧装置A中,设置从电源7通电期间全部充电的电力发送侧电容器9作为电力发送侧缓冲部 使得在通过初级线圈18和次级线圈19a的电磁场耦合中,受电侧电容器24通过来自电源7的功率Q和来自功率发送侧电容器9的功率P而被充电 加法方式。 因此,可以通过不使用诸如三相交流电源的大容量电源,但是诸如灯管等小容量电源,能够在短时间内对受电侧电容器24进行充电。 也就是说,在对受电侧电容器24进行充电时,不需要选择工业用电源等大容量电源,因此可以使用家用电源,通用性提高。