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    • 1. 发明申请
    • CHEMICAL BATH DEPOSITION SYSTEM
    • 化学浴沉积系统
    • US20130118403A1
    • 2013-05-16
    • US13467068
    • 2012-05-09
    • Shih-Wei LeeLung-Chieh WangChih-Lung Lin
    • Shih-Wei LeeLung-Chieh WangChih-Lung Lin
    • B05C3/09B05C11/00
    • H01L31/0322C23C18/1204C23C18/125H01L21/67057H01L31/18Y02E10/541Y02P70/521
    • A chemical bath deposition system is used for forming a buffer layer on a back electrode substrate having a photoelectric transducing layer. The chemical bath deposition system includes a chemical bath tank, a chemical-solution purification device, and a dosing device. The chemical bath tank is used for storing a buffer-layer solution including cation and anion. The cation is adapted to react with the anion to form the buffer layer when the back electrode substrate is immersed in the buffer-layer solution. The chemical-solution purification device is communicated with the chemical bath tank for removing residual cation to obtain a purified solution after the cation reacts with the anion to form the buffer layer. The dosing device is for performing compensation of the cation according to a component ratio of a purified solution.
    • 化学浴沉积系统用于在具有光电转换层的背电极基板上形成缓冲层。 化学浴沉积系统包括化学浴池,化学溶液净化装置和计量装置。 化学浴槽用于储存包含阳离子和阴离子的缓冲层溶液。 当背电极衬底浸入缓冲层溶液中时,阳离子适于与阴离子反应形成缓冲层。 化学溶液净化装置与化学浴池连通,用于除去残余阳离子,在阳离子与阴离子反应形成缓冲层后得到纯化溶液。 计量装置用于根据纯化溶液的组分比来进行阳离子的补偿。
    • 4. 发明申请
    • SOLAR BATTERY MODULE AND MANUFACTURING METHOD THEREOF
    • 太阳能电池组件及其制造方法
    • US20120291834A1
    • 2012-11-22
    • US13205641
    • 2011-08-09
    • Shih-Wei LeeYen-Chun Chen
    • Shih-Wei LeeYen-Chun Chen
    • H01L31/05H01L31/18
    • H01L31/03928H01L31/0463Y02E10/541Y02P70/521
    • A solar battery module includes a substrate, a plurality of first striped electrodes formed on the substrate, and a plurality of striped photoelectric transducing layers respectively formed on the corresponding first striped electrode. The solar battery module further includes a plurality of second striped electrodes respectively formed on the corresponding striped photoelectric transducing layer, a plurality of insulating layers respectively formed between the adjacent first striped electrodes, the adjacent photoelectric transducing layers, and the adjacent second striped electrodes, and a plurality of conducting layers respectively formed between the adjacent insulating layers. Wherein, a width of each photoelectric transducing layer along a first direction is smaller than a width of each striped first striped electrode corresponding to the photoelectric transducing layer along the first direction, and the plurality of first striped electrodes and the plurality of second striped electrodes are in series connection along the first direction.
    • 太阳能电池模块包括基板,形成在基板上的多个第一条纹电极和分别形成在相应的第一条纹电极上的多个条纹光电转换层。 太阳能电池模块还包括分别形成在相应的条形光电转换层上的多个第二条纹电极,分别形成在相邻的第一条纹电极,相邻光电转换层和相邻的第二条纹电极之间的多个绝缘层,以及 分别形成在相邻的绝缘层之间的多个导电层。 其中,沿着第一方向的每个光电转换层的宽度小于沿着第一方向对应于光电转换层的每个带状第一条纹电极的宽度,并且多个第一条形电极和多个第二条纹电极是 沿着第一方向串联连接。
    • 5. 发明申请
    • LASER SCRIBER WITH SELF-CORRECTING MECHANISM AND SELF-CORRECTION METHOD THEREOF
    • 具有自校正机构的激光扫描器及其自校正方法
    • US20100264122A1
    • 2010-10-21
    • US12577318
    • 2009-10-12
    • Shih-Wei LeeChi-Hung HouTsung-Yuan Wu
    • Shih-Wei LeeChi-Hung HouTsung-Yuan Wu
    • B23K26/00
    • H01L21/67115B23K26/40B23K26/702B23K2101/40B23K2103/50
    • A laser scriber with a self-correcting mechanism comprises a laser scribing unit, a detection unit, a control unit and a drive unit. The laser scribing unit scribes a pattern on a solar panel according to a drive signal. The detection unit detects the pattern to generate a correction signal. The control unit corrects a scribing program based on the correction signal. The drive unit generates the above-described drive signal based on the scribing program. A self-correction method of a laser scribing process comprises the steps of: setting a scribing program on a laser scriber; fixing a solar panel to the laser scriber and performing a position calibration procedure; scribing a pattern on the solar panel via the laser scriber based on the scribing program; examining whether the pattern corresponds to a specification or not; and if no, automatically generating a patch program to replace the scribing program.
    • 具有自校正机构的激光划线机包括激光划线单元,检测单元,控制单元和驱动单元。 激光划线单元根据驱动信号在太阳能电池板上刻划图案。 检测单元检测图案以产生校正信号。 控制单元基于校正信号校正划线程序。 驱动单元基于划线程序生成上述驱动信号。 激光划线方法的自校正方法包括以下步骤:在激光刻划机上设置划线程序; 将太阳能电池板固定到激光刻划机上并执行位置校准程序; 基于划线程序,通过激光刻字机在太阳能电池板上划线图案; 检查模式是否符合规范; 如果没有,则自动生成补丁程序来替换划线程序。
    • 6. 发明申请
    • SOLAR BATTERY MODULE AND MANUFACTURING METHOD THEREOF
    • 太阳能电池组件及其制造方法
    • US20130133720A1
    • 2013-05-30
    • US13456192
    • 2012-04-25
    • Shih-Wei LeeMing-Hung LinYao-Tsang Tsai
    • Shih-Wei LeeMing-Hung LinYao-Tsang Tsai
    • H01L31/05H01L31/0224
    • H01L31/046H01L31/0463Y02E10/50
    • A solar battery module includes a substrate, striped metal electrode layers formed alternately on the substrate along a first direction, striped photoelectric transducing layers, striped transparent electrode layers, and electrode lines. Each striped photoelectric transducing layer is formed on the striped metal electrode layer and the substrate along the first direction. Each striped transparent electrode layer is formed on the striped metal electrode layer and the striped photoelectric transducing layer along the first direction. The striped transparent electrode layers and the striped metal electrode layers are in series connection along a second direction. The electrode lines are formed alternately on each striped transparent electrode layer or between each striped photoelectric transducing layer and each striped transparent electrode layer along the second direction. A width of each electrode line is less than an interval between the striped transparent electrode layer and the adjacent striped metal electrode layer.
    • 太阳能电池模块包括基板,沿着第一方向交替地在基板上形成的条状金属电极层,条形光电转换层,条形透明电极层和电极线。 每个带状光电转换层沿着第一方向形成在条状金属电极层和基板上。 每个带状透明电极层沿着第一方向形成在带状金属电极层和带状光电转换层上。 带状透明电极层和条状金属电极层沿着第二方向串联连接。 电极线沿着第二方向交替地形成在每个带状透明电极层上或每个带状光电转换层与每个带状透明电极层之间。 每个电极线的宽度小于带状透明电极层和相邻带状金属电极层之间的间隔。
    • 8. 发明申请
    • FLEXIBLE SOLAR BATTERY MODULE AND RELATED MANUFACTURING METHOD
    • 柔性太阳能电池模块及相关制造方法
    • US20130098421A1
    • 2013-04-25
    • US13448415
    • 2012-04-17
    • Shih-Wei LeeYao-Tsang TsaiMing-Hung Lin
    • Shih-Wei LeeYao-Tsang TsaiMing-Hung Lin
    • H01L31/05H01L31/18
    • H01L31/0504H01L31/0463Y02E10/50
    • A flexible solar battery module includes a flexible insulating base and a plurality of solar batteries separately disposed on the flexible insulating base. The solar battery includes a substrate disposed on the flexible insulating base, a first electrode disposed on the substrate, a photoelectric transducing layer disposed on the first electrode and exposing parts of the first electrode, and a second electrode disposed on the photoelectric transducing layer. The flexible solar battery module further includes an insulating layer disposed on the exposed first electrode of each solar battery and the exposed flexible insulating base between the adjacent solar batteries, and an auxiliary electrode disposed on the second electrode of each solar battery and the exposed first electrode of the adjacent solar battery for setting the plurality of solar batteries in a series connection.
    • 柔性太阳能电池模块包括柔性绝缘基座和分别设置在柔性绝缘基座上的多个太阳能电池。 太阳能电池包括设置在柔性绝缘基体上的基板,设置在基板上的第一电极,设置在第一电极上并暴露第一电极部分的光电转换层和设置在光电转换层上的第二电极。 柔性太阳能电池模块还包括设置在每个太阳能电池的暴露的第一电极上的绝缘层和相邻的太阳能电池之间的暴露的柔性绝缘基底,以及设置在每个太阳能电池的第二电极上的辅助电极和暴露的第一电极 相邻的太阳能电池用于串联连接多个太阳能电池。
    • 9. 发明申请
    • SOLAR TILE STRUCTURE
    • 太阳能结构
    • US20120291855A1
    • 2012-11-22
    • US13205633
    • 2011-08-09
    • Shih-Wei LeeChih-Wei TsengChio-An TsengYen-Chun ChenFu-Lu Jian
    • Shih-Wei LeeChih-Wei TsengChio-An TsengYen-Chun ChenFu-Lu Jian
    • H01L31/048
    • H02S20/25F24S2025/6002Y02B10/12
    • A solar tile structure includes a base, a first hook structure disposed on a first side of the base, a second hook structure dispose on a second side of the base opposite to the first side for engaging with a hook structure of an adjacent solar tile structure so as to constrain the relative movement of the base and the adjacent solar tile structure, a first slot structure disposed on a third side of the base different from the first side for draining water from the base, and a second slot structure disposed on a fourth side of the base opposite to the third side for engaging with a slot structure of other adjacent solar tile structure so as to constrain the relative movement of the base and the other adjacent solar tile structure. A combination of solar tile structures is also provided.
    • 太阳能瓦结构包括基座,设置在基座的第一侧上的第一钩结构,设置在与第一侧相对的基座的第二侧上的第二钩结构,用于与相邻的太阳能瓦结构的钩结构 以限制基座和相邻的太阳能瓦结构的相对移动,设置在不同于第一侧的基座的第三侧上用于从基底排出水的第一槽结构,以及设置在第四槽上的第二槽结构 该底座与第三侧相对,用于与其它相邻的太阳能瓦结构的槽结构接合,以限制基座和另一个相邻的太阳能瓦结构的相对移动。 还提供了太阳能瓦结构的组合。
    • 10. 发明申请
    • SEE-THROUGH SOLAR BATTERY MODULE AND MANUFACTURING METHOD THEREOF
    • 看到太阳能电池模块及其制造方法
    • US20110265843A1
    • 2011-11-03
    • US13095845
    • 2011-04-27
    • Shih-Wei LeeChing-Ju LinWei-Min HuangChi-Hung HouYen-Chun Chen
    • Shih-Wei LeeChing-Ju LinWei-Min HuangChi-Hung HouYen-Chun Chen
    • H01L31/05H01L31/0224
    • H01L31/0468H01L31/046Y02B10/12Y02E10/50
    • A see-through solar battery module includes a transparent substrate, and a plurality of block metal electrodes formed on the transparent substrate as an array. Each block metal electrode does not contact the adjacent block metal electrode along a first direction. The see-through solar battery module further includes a plurality of block photoelectric transducing layers. Each block photoelectric transducing layer is formed on the block metal electrode and the transparent substrate along the first direction and formed on the block metal electrode and the transparent substrate along a second direction as an array, and each block photoelectric transducing layer does not contact the adjacent block photoelectric transducing layer along the first direction. The see-through solar battery module further includes a plurality of striped transparent electrodes. Each striped transparent electrode is formed on the block photoelectric transducing layer, the transparent substrate, and the block metal electrode along the second direction.
    • 透明太阳能电池模块包括透明基板和形成在透明基板上的多个块状金属电极作为阵列。 每个块状金属电极不沿着第一方向接触相邻的块状金属电极。 透明太阳能电池模块还包括多个块状光电转换层。 每个块状光电转换层沿着第一方向形成在块金属电极和透明基板上,沿着第二方向在块状金属电极和透明基板上形成为阵列,并且每个块状光电转换层不与相邻的 沿着第一方向的块状光电转换层。 透明太阳能电池模块还包括多个条状透明电极。 每个带状透明电极沿着第二方向形成在块状光电转换层,透明基板和块状金属电极上。