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    • 1. 发明申请
    • BATTERY MOUNTING STRUCTURE
    • 电池安装结构
    • US20130052501A1
    • 2013-02-28
    • US13592714
    • 2012-08-23
    • Masashi OYAMA
    • Masashi OYAMA
    • H01M2/10
    • H01M2/1083H01M2220/20
    • A mounting portion of a battery is provided with a bracket that is placed to face a front face of the battery. A wire harness is placed forward of the battery in a vehicle and is displaced to one side of the bracket in a vehicle width direction, and a terminal that is connected to the wire harness is connected to an electrode. A guiding portion extends from an upper end portion of the bracket to a side portion of the bracket on one side in the vehicle width direction, and the wire harness can be slid along the guiding portion when the wire harness contacts the guiding portion from above. Accordingly, the wire harness is guided by the guiding portion to a position in a routed state in the vehicle width direction.
    • 电池的安装部分设置有与电池的前表面相对放置的支架。 线束被放置在车辆的电池前方,并且在车辆宽度方向上移动到支架的一侧,并且连接到线束的端子连接到电极。 引导部从托架的上端部向车宽方向一侧的托架的侧部延伸,并且线束可以在线束从上方接触引导部时沿引导部滑动。 因此,线束被引导部引导到沿车辆宽度方向的布线状态的位置。
    • 2. 发明申请
    • PHOTOVOLTAIC ELEMENT AND METHOD FOR MANUFACTURING SAME
    • 光伏元件及其制造方法
    • US20110197967A1
    • 2011-08-18
    • US13124902
    • 2009-10-19
    • Akira KaijoMasashi Oyama
    • Akira KaijoMasashi Oyama
    • H01L31/0224H01L31/18
    • H01L31/1884H01L31/022466H01L31/022483H01L31/03923H01L31/046H01L31/0463Y02E10/541
    • On a p-type conductive light absorption layer provided by a chalcopyrite structure compound that is layered bridging a pair of backside electrode layers provided on a side of a glass substrate, a light-transmissive n-type buffer layer that forms a p-n junction with the light absorption layer is layered. A light-transmissive transparent electrode layer is layered on the buffer layer to extend from a side of the light absorption layer and the buffer layer to one of the pair of backside electrode layers. The transparent electrode layer is formed in an amorphous film containing indium oxide and zinc oxide as primary components, the transparent electrode layer exhibiting a film stress of ±1×109 Pa or less. A photovoltaic element can be favorably processed without causing cracking and damage even by an easily processable mechanical scribing, so that productivity can be enhanced and yield rate can be improved.
    • 在由布置在玻璃基板一侧的一对背面电极层上层叠的黄铜矿结构化合物提供的p型导电性光吸收层上,形成与该玻璃基板的pn结形成的透光性n型缓冲层 光吸收层分层。 透光透明电极层层叠在缓冲层上,从光吸收层和缓冲层的一侧延伸到一对背面电极层之一。 透明电极层以含有氧化铟和氧化锌为主成分的非晶体膜形成,透明电极层的膜应力为±1×10 9 Pa以下。 即使通过容易加工的机械划线也能够有利地进行光电元件的加工而不产生开裂和损伤,从而可以提高生产率,并且可以提高成品率。
    • 3. 发明授权
    • Battery mounting structure
    • 电池安装结构
    • US09118060B2
    • 2015-08-25
    • US13592714
    • 2012-08-23
    • Masashi Oyama
    • Masashi Oyama
    • H01M2/10
    • H01M2/1083H01M2220/20
    • A mounting portion of a battery is provided with a bracket that is placed to face a front face of the battery. A wire harness is placed forward of the battery in a vehicle and is displaced to one side of the bracket in a vehicle width direction, and a terminal that is connected to the wire harness is connected to an electrode. A guiding portion extends from an upper end portion of the bracket to a side portion of the bracket on one side in the vehicle width direction, and the wire harness can be slid along the guiding portion when the wire harness contacts the guiding portion from above. Accordingly, the wire harness is guided by the guiding portion to a position in a routed state in the vehicle width direction.
    • 电池的安装部分设置有与电池的前表面相对放置的支架。 线束被放置在车辆的电池前方,并且在车辆宽度方向上移动到支架的一侧,并且连接到线束的端子连接到电极。 引导部从支架的上端部向车宽方向一侧的支架的侧部延伸,并且当线束从上方接触引导部时,线束可以沿引导部滑动。 因此,线束被引导部引导到沿车辆宽度方向的布线状态的位置。