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    • 104. 发明专利
    • Parallel light solar simulator
    • 并联光太阳能模拟器
    • JP2010186890A
    • 2010-08-26
    • JP2009030442
    • 2009-02-12
    • Nisshinbo Holdings Inc日清紡ホールディングス株式会社
    • SHIMOTOMAI MITSUHIRO
    • H01L31/04G02B5/10
    • G01J1/08F21S8/006G02B17/06H02S50/10
    • PROBLEM TO BE SOLVED: To provide a parallel light solar simulator capable of easily performing irradiation with parallel light of high precision. SOLUTION: The parallel light solar simulator 10 irradiates a solar cell with the parallel light and measures its output characteristics, and includes a paraboloid mirror 15 having a principal axis Lp parallel to an axis orthogonal to a light reception surface 18 of the solar cell 17, and a light source 11 disposed apart from a focus F of the paraboloid mirror 15 to be at a position equivalent to the focus F. The light emitted by the light source 11 disposed at the position equivalent to the focus F is reflected by the paraboloid mirror 15 to become the parallel light of high precision and to irradiate the light reception surface 18 of the solar cell 17 with the parallel light. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种能够以高精度容易地进行平行光照射的平行光太阳能模拟器。 解决方案:平行光太阳能模拟器10用平行光照射太阳能电池并测量其输出特性,并且包括具有平行于与太阳能的光接收表面18正交的轴的主轴Lp的抛物面反射镜15 单元17和与抛物面镜15的焦点F分开设置的光源11处于与焦点F相当的位置。由设置在与焦点F相当的位置处的光源11发射的光被反射 抛物面镜15成为高精度的平行光,并且以平行光照射太阳能电池17的光接收表面18。 版权所有(C)2010,JPO&INPIT
    • 105. 发明专利
    • Connector connection device for solar cell panel
    • 太阳能电池板连接器连接装置
    • JP2010186790A
    • 2010-08-26
    • JP2009028392
    • 2009-02-10
    • Nisshinbo Holdings Inc日清紡ホールディングス株式会社
    • SHIMOTOMAI MITSUHIROTAKESHITA SUMITO
    • H01L31/04H01R43/00
    • H01L31/188H01R43/26H01R2201/20Y02E10/50
    • PROBLEM TO BE SOLVED: To provide a connector connection device for a solar cell panel, wherein connection between a cable-side connector of a solar cell panel and an inspection device-side connector is automated when a solar cell panel is inspected or measured. SOLUTION: The connector connection device connects the cable-side connector 33 at the tip of a cable 32 extending from the solar cell panel 200 to the inspection device-side connector 53. The device includes a housing hook 48 which holds the cable while moving forward and backward to correct the posture of the cable, and pushes the cable-side connector to move the cable-side connector to a predetermined position, a connector clamp 49 for gripping the moved cable-side connector, and a mounting member 55 for holding the inspection device-side connector as an opposite side. At least one of the connector clamp and mounting member is moved to the other side to couple the cable-side connector and inspection device-side connector to each other. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于太阳能电池板的连接器连接装置,其中当检查太阳能电池板时,太阳能电池板的电缆侧连接器和检查装置侧连接器之间的连接是自动的,或者 测量。

      解决方案:连接器连接装置将从太阳能电池板200延伸到电缆32的电缆32的末端处的电缆侧连接器33连接到检查装置侧连接器53.该装置包括壳体钩48, 同时向前和向后移动以校正电缆的姿势,并推动电缆侧连接器将电缆侧连接器移动到预定位置,用于夹持移动的电缆侧连接器的连接器夹具49和安装构件55 用于将检查装置侧连接器保持为相对侧。 连接器夹具和安装构件中的至少一个移动到另一侧,以将电缆侧连接器和检查装置侧连接器彼此连接。 版权所有(C)2010,JPO&INPIT

    • 108. 发明专利
    • Polymer treating agent and dope
    • 聚合物处理剂和DOPE
    • JP2010111707A
    • 2010-05-20
    • JP2007041682
    • 2007-02-22
    • Nisshinbo Holdings Inc日清紡ホールディングス株式会社
    • KUBOTA YUJIHASEGAWA OSAMU
    • C08L101/00C08K5/17C09K3/00
    • C08B1/003C08J3/096C08J2301/00C08L1/00C08L67/04C08L2666/26
    • PROBLEM TO BE SOLVED: To provide a polymer treating agent including an ionic liquid taking a liquid form at around room temperature, and excellent in handling properties owing to low viscosity.
      SOLUTION: The polymer treating agent includes an ionic liquid represented by formula (1) and aprotic solvent, e.g. DMSO, and takes a liquid form at 30°C, (wherein R
      1 -R
      3 may be same or different representing 1-5C alkyl, 3-5C alkenyl, or alkoxyalkyl represented by formula: R
      4 -O-(CH
      2 )
      n -; R
      4 represents methyl or ethyl; n represents a number of 1 or 2; and Y represents a halide ion, carboxylate ion having 1 to 3 carbon atoms in total, perchlorate ion, pseudo-halide ion, cyanamide ion or dicyanamide ion).
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种聚合物处理剂,其包括在室温附近呈液体形式的离子液体,并且由于低粘度而具有优异的处理性能。 解决方案:聚合物处理剂包括由式(1)表示的离子液体和非质子溶剂,例如, DMSO,并且在30℃下呈液体形式,其中R 1可以相同或不同,表示1-5C烷基,3-5C烯基或 由式R 4表示的烷氧基烷基-O-(CH 2 SB 2)-SR 4表示甲基或 乙基; n表示1或2的数; Y表示卤素离子,总计有1至3个碳原子的羧酸根离子,高氯酸根离子,假卤素离子,氰酰胺离子或二氰酰胺离子)。 版权所有(C)2010,JPO&INPIT
    • 110. 发明专利
    • Inspection apparatus of solar battery, method for inspecting the solar battery, program, and system for inspecting the solar battery
    • 太阳能电池检查装置,用于检查太阳能电池的方法,用于检查太阳能电池的程序和系统
    • JP2010093010A
    • 2010-04-22
    • JP2008260405
    • 2008-10-07
    • Nisshinbo Holdings Inc日清紡ホールディングス株式会社
    • SHIMOTOMAI MITSUHIROISHIKAWA MAKOTOSASABE KOJI
    • H01L31/04
    • H01L31/186Y02E10/50Y02P70/521
    • PROBLEM TO BE SOLVED: To provide an inspection apparatus of a solar battery which can discriminate a dark area to be detected as a defect.
      SOLUTION: This inspection apparatus 10 of the solar battery includes: an image obtaining part 13 for obtaining a cell image representing a solar battery cell in an energization state; a crack positional information generating part 14 for specifying a line-shaped pixel group having a lower lightness than surroundings inside the cell image to generate positional information on a crack; a dark area position information generating part 15 for specifying a pixel group which collects pixels having a lightness equal to or less than a given lightness, and has an area equal to or more than a given area in the cell image to generate the positional information on the dark area; and a dark area determining part 16 for determining whether or not the dark area is one caused by a crack, based on a positional relationship between the dark area and the crack.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种太阳能电池的检查装置,其可以将要检测的暗区域区分为缺陷。 解决方案:该太阳能电池的检查装置10包括:图像获取部13,用于获得表示通电状态的太阳能电池单元的单元图像; 裂纹位置信息生成部分14,用于指定在单元图像内具有比周围环境更浅的线状像素组,以生成关于裂纹的位置信息; 暗区位置信息生成部15,用于指定聚集具有等于或小于给定亮度的亮度的像素的像素组,并且具有等于或大于单元图像中的给定区域的面积以产生位置信息 黑暗的地区; 以及黑暗区域确定部分16,用于基于黑暗区域和裂缝之间的位置关系来确定由裂纹引起的暗区域是否为黑色区域。 版权所有(C)2010,JPO&INPIT