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    • 1. 发明授权
    • Method of manufacturing solar cell module
    • 制造太阳能电池模块的方法
    • US08298363B2
    • 2012-10-30
    • US12668608
    • 2008-06-25
    • Haruhisa HashimotoYukihiro YoshimineYasufumi Tsunomura
    • Haruhisa HashimotoYukihiro YoshimineYasufumi Tsunomura
    • B32B37/00
    • H01L31/188H01L31/0504H01L31/0512Y02E10/547
    • A manufacturing method of a solar module according the embodiment includes a step A of disposing one of the wiring members 11 on the light receiving surface of one solar cell of n solar cells, with a thermosetting resin adhesive 12 interposed therebetween, the wiring member being to be connected to a solar cell adjacently located on one side of the one solar cell, and disposing another one of the wiring members 11 on the back surface of the one solar cell with the resin adhesive 12 interposed therebetween, the wiring member 11 being to be connected to a solar cell 10 adjacently located on the other side of the one solar cell; a step B of bonding the wiring members 11 to the one solar cell by heating the resin adhesive 12 at a temperature higher than a softening temperature of the resin adhesive 12 but lower than a hardening temperature of the resin adhesive 12; a step C of bonding the wiring members 11 to all the n solar cells by repeating the step A and the step B alternately; and a step D of hardening the resin adhesive 12 by heating the resin adhesive 12 at a temperature equal to or higher than the hardening temperature of the resin adhesive 12 with the resin adhesive 12 being pressed against the wiring members 11.
    • 本实施方式的太阳能电池组件的制造方法包括将n个太阳能电池的一个太阳能电池的一个太阳能电池的配光部件11配置在其间的热固性树脂粘接剂12的工序A, 连接到位于一个太阳能电池的一侧的太阳能电池,并且在该太阳能电池单元的后表面上插入另一个配线构件11,其间插入有树脂粘合剂12,配线构件11为 连接到相邻地位于一个太阳能电池的另一侧的太阳能电池10; 通过在高于树脂粘合剂12的软化温度但低于树脂粘合剂12的硬化温度的温度下加热树脂粘合剂12将布线部件11接合到一个太阳能电池的步骤B; 通过交替地重复步骤A和步骤B将配线构件11接合到所有n个太阳能电池的步骤C; 以及树脂粘合剂12通过在树脂粘合剂12被压在布线构件11上的同时,在树脂粘合剂12的硬化温度以上的温度下加热而使树脂粘合剂12硬化的工序D。
    • 2. 发明申请
    • SOLAR CELL MODULE
    • 太阳能电池模块
    • US20120156822A1
    • 2012-06-21
    • US13407500
    • 2012-02-28
    • Yasufumi TSUNOMURAYukihiro YOSHIMINEHaruhisa HASHIMOTO
    • Yasufumi TSUNOMURAYukihiro YOSHIMINEHaruhisa HASHIMOTO
    • H01L31/18
    • H01L31/0508Y02E10/50
    • A solar cell module is provided that comprises: a solar cell; a connection electrode provided on each of a light-receiving surface and back surface of the solar cell; a conductive resin adhesive arranged on an upper surface of the connection electrode; and a wiring material electrically connected to the solar cell and connected with the connection electrode and the conductive resin adhesive, wherein the conductive resin adhesive changes color upon curing, and the conductive resin adhesive on the upper surface of the connection electrode provided on the light-receiving surface of the solar cell is arranged within a region corresponding to at least one of the connection electrode and the wiring material, on a projection plane parallel with the light-receiving surface and exposed on a light-receiving surface side.
    • 提供一种太阳能电池模块,包括:太阳能电池; 设置在所述太阳能电池的受光面和背面的每一个上的连接电极; 布置在所述连接电极的上表面上的导电树脂粘合剂; 电连接到太阳能电池并与连接电极和导电树脂粘合剂连接的布线材料,其中导电树脂粘合剂在固化时改变颜色,并且在连接电极的上表面上设置导电树脂粘合剂, 太阳能电池的接收表面布置在与光接收表面平行的投影平面上的与连接电极和布线材料中的至少一个相对应的区域中,并在受光面侧露出。
    • 5. 发明申请
    • SOLAR CELL MODULE
    • 太阳能电池模块
    • US20100032000A1
    • 2010-02-11
    • US12516218
    • 2007-11-26
    • Yukihiro Yoshimine
    • Yukihiro Yoshimine
    • H01L31/042
    • H01L31/0512H01L31/022425H01L31/048Y02E10/50
    • Provided is a solar cell module capable of restraining a decrease in the module output. In the solar cell module, a plurality of solar cells are arranged between a light-receiving surface protection member 40 and a back-surface protection member 60, and electrodes 10, 30 of the solar cells are electrically connected to each other through wiring members 70. Each of the electrodes 10, 30 includes a bus bar electrode formed of a resin-type conductive paste. The solar cell module includes an adhesive layer made of a resin 90 between the bus bar electrode and the wiring member 70. Moreover, the residual stress of the resin 90 of the adhesive layer is smaller than the residual stress of a resin contained in the bus bar electrode.
    • 提供能够抑制模块输出减少的太阳能电池模块。 在太阳能电池模块中,在受光面保护构件40和背面保护构件60之间配置有多个太阳能电池,并且太阳能电池的电极10,30通过配线构件70电连接 每个电极10,30包括由树脂型导电膏形成的母线电极。 太阳能电池模块包括在母线电极和布线构件70之间由树脂90制成的粘合层。此外,粘合剂层的树脂90的残余应力小于总线中包含的树脂的残余应力 棒电极。
    • 6. 发明申请
    • Solar cell module
    • 太阳能电池组件
    • US20050199279A1
    • 2005-09-15
    • US11044583
    • 2005-01-28
    • Yukihiro YoshimineKunimoto Ninomiya
    • Yukihiro YoshimineKunimoto Ninomiya
    • H01L31/0224H01L31/00
    • H01L31/0747H01L31/022425H01L31/048H01L31/0504Y02E10/50
    • A solar cell module of the present invention was made to improve adhesion between electrodes, which is formed with thermosetting resin containing silver paste, of a solar cell element and connecting tabs coated with lead (Pb) free solder. To achieve this purpose, the solar cell module is comprised of a front surface member, a rear surface protective member, a plurality of solar cell elements provided between the front surface member and the rear surface protective member, and connecting tabs for electrically connecting the solar cell elements to each other through electrodes with the use of lead free solder. The electrodes of the solar cell elements are made of silver paste containing thermosetting resin and silver powder. The thermosetting resin contains epoxy resin at volume ratio of 70% or more having a glass transition rate of 80° C. to 200° C. measured by a TMA method. The connecting tabs coated with lead free solder are soldered to the electrodes.
    • 制造本发明的太阳能电池模块,以改善由包含银浆的热固性树脂,太阳能电池元件和涂覆有无铅(Pb)焊料的连接片形成的电极之间的粘附。 为了达到这个目的,太阳能电池组件包括前表面件,后表面保护件,设置在前表面件和后表面保护件之间的多个太阳能电池元件以及用于电连接太阳能的连接片 通过使用无铅焊料的电极将电池元件彼此连接。 太阳能电池元件的电极由含有热固性树脂和银粉的银膏制成。 热固性树脂含有通过TMA法测定的玻璃化转变率为80〜200℃的体积比为70%以上的环氧树脂。 涂有无铅焊料的连接片焊接到电极。