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    • 2. 发明申请
    • PHOTOVOLTAIC DEVICES INSPECTION APPARATUS AND METHOD OF DETERMINING DEFECTS IN PHOTOVOLTAIC DEVICES
    • 光电装置检查装置和确定光伏器件缺陷的方法
    • US20100266196A1
    • 2010-10-21
    • US12810020
    • 2008-12-19
    • Masato KasaharaToshio Shibuya
    • Masato KasaharaToshio Shibuya
    • G06K9/00
    • G01N21/66G01N21/88
    • A photovoltaic devices inspection apparatus and a method of determining defects in photovoltaic devices using electroluminescence of the photovoltaic devices. The apparatus and method can not only determine whether the photovoltaic devices are defective or non-defective at the moment, but also whether the devices have a possibility to become defective in the future.A constant electric current is applied to the photovoltaic cells to cause electroluminescence (S7), the light emitted from each cell is photographed cell by cell (S10), and the photographed cell image is enhanced and a shape of a dark region is analyzed (S50) to determine whether the cell is defective or non-defective. The defective region that is determined to be defective is enhanced and displayed visually (S16).
    • 光伏器件检查装置和使用光电器件的电致发光来确定光伏器件中的缺陷的方法。 该装置和方法不仅可以确定光伏器件当时是有缺陷的还是无缺陷的,而且还可以确定器件是否有可能在将来变得有缺陷。 向光伏电池施加恒定电流以产生电致发光(S7),从单元发射的光被逐个拍摄(S10),并且拍摄的单元图像被增强并且分析暗区的形状(S50 )以确定该小区是否有缺陷或无缺陷。 被确定为有缺陷的缺陷区被增强并可视地显示(S16)。
    • 3. 发明授权
    • Lay-up apparatus
    • 铺设装置
    • US08146643B2
    • 2012-04-03
    • US12361333
    • 2009-01-28
    • Masato KasaharaYutaka Momota
    • Masato KasaharaYutaka Momota
    • B32B37/00B32B37/02B32B38/00B32B38/04
    • B65H35/0066B65H35/0033H01L31/188Y02E10/50Y10T156/1084Y10T156/1092Y10T156/12Y10T156/125Y10T156/13Y10T156/1317Y10T156/1322Y10T156/1348Y10T156/1705
    • To provide a lay-up apparatus capable of precision positioning and laying of thin strips of copper foil or insulation tape on a flat plane even when there are variations in the cut lengths of the strips. A lay-up apparatus lays first and second strips of tape 101, 102 on top of two electrodes 5, 6 deposited on a photovoltaic devices panel 1. The strips of tape are unwound by first and second grippers 112, 122 and cut to predetermined lengths by first and second cutters 113, 123. The cut strips of tape are laid one on top of the other and transported by rotatable moving means 130. The moving means 130 rotates in opposite directions when laying the strips of tape it holds from the electrode 5 toward the electrode 6 and when laying the strips of tape from the electrode 6 toward the electrode 5, while using one end of the strips of tape as a reference and keeping constant the relative positions of the reference end of the strips of tape and that electrode which is nearest the reference end.
    • 为了提供一种能够在平坦的平面上精确定位和铺设薄的铜箔或绝缘胶带的铺设装置,即使当条的切割长度有变化时。 叠层装置在沉积在光伏器件面板1上的两个电极5,6的顶部上放置第一和第二条带101,102。带状带由第一和第二夹持器112,122展开并切割成预定长度 通过第一和第二切割器113,123将切割的条带放置在另一个的顶部并由可旋转的移动装置130传送。当从电极5放置其保持的带条时,移动装置130以相反的方向旋转 朝向电极6并且当将带状条从电极6朝向电极5放置时,同时使用条带的一端作为参考,并且保持带的条带和该电极的参考端的相对位置 最接近参考端。
    • 4. 发明授权
    • Photovoltaic devices inspection apparatus and method of determining defects in photovoltaic device
    • 光伏器件检测装置及光伏器件缺陷的确定方法
    • US08355563B2
    • 2013-01-15
    • US12495553
    • 2009-06-30
    • Masato KasaharaToshio Shibuya
    • Masato KasaharaToshio Shibuya
    • G06K9/00
    • G01N21/8806H02S50/10
    • A photovoltaic devices inspection apparatus and method of determining defects in photovoltaic devices that uses electroluminescence can find both the quality of the photovoltaic devices from the state of electroluminescence and the possibility of the photovoltaic devices becoming defective in the future by applying constant electric current to the photovoltaic devices causing electroluminescence of the photovoltaic devices (S7), photographing the light emitted from each photovoltaic cell of the photovoltaic devices (S10), dividing the photographed image of the photovoltaic cell into a bright region and dark region by using a threshold value and displayed as an enhanced image by binarization, analyzing as classifying each photovoltaic cell defect according to defect types and comparing a shape of the dark region with the defect types (S50), determining the existence of the defect to perform a positive-negative quality judgment on the photovoltaic devices, and displaying images of the problematic regions for visual inspection (S16).
    • 光电器件检查装置和使用电致发光的光电器件中的缺陷的方法可以从电致发光的状态中发现光电器件的质量以及将来通过向光伏器件施加恒定电流来使光电器件在未来变得有缺陷的可能性 引起光电装置的电致发光的装置(S7),拍摄从光伏器件的每个光伏电池发射的光(S10),通过使用阈值将光伏电池的拍摄图像划分为亮区域和暗区域,并显示为 通过二值化进行增强图像,分析根据缺陷类型对每个光伏电池缺陷进行分类,并将暗区的形状与缺陷类型进行比较(S50),确定缺陷的存在以对光伏进行正负质量判断 设备,并显示图像 用于目视检查的边缘区域(S16)。
    • 6. 发明申请
    • LAY-UP APPARATUS
    • LAY-UP设备
    • US20090188628A1
    • 2009-07-30
    • US12361333
    • 2009-01-28
    • Masato KasaharaYutaka Momota
    • Masato KasaharaYutaka Momota
    • B32B37/00
    • B65H35/0066B65H35/0033H01L31/188Y02E10/50Y10T156/1084Y10T156/1092Y10T156/12Y10T156/125Y10T156/13Y10T156/1317Y10T156/1322Y10T156/1348Y10T156/1705
    • To provide a lay-up apparatus capable of precision positioning and laying of thin strips of copper foil or insulation tape on a flat plane even when there are variations in the cut lengths of the strips. A lay-up apparatus lays first and second strips of tape 101, 102 on top of two electrodes 5, 6 deposited on a photovoltaic devices panel 1. The strips of tape are unwound by first and second grippers 112, 122 and cut to predetermined lengths by first and second cutters 113, 123. The cut strips of tape are laid one on top of the other and transported by rotatable moving means 130. The moving means 130 rotates in opposite directions when laying the strips of tape it holds from the electrode 5 toward the electrode 6 and when laying the strips of tape from the electrode 6 toward the electrode 5, while using one end of the strips of tape as a reference and keeping constant the relative positions of the reference end of the strips of tape and that electrode which is nearest the reference end.
    • 为了提供一种能够在平坦的平面上精确定位和铺设薄的铜箔或绝缘胶带的铺设装置,即使当条的切割长度有变化时。 叠层装置在沉积在光伏器件面板1上的两个电极5,6的顶部上放置第一和第二条带101,102。带状带由第一和第二夹持器112,122展开并切割成预定长度 通过第一和第二切割器113,123将切割的条带放置在另一个的顶部并由可旋转的移动装置130传送。当从电极5放置其保持的带条时,移动装置130以相反的方向旋转 朝向电极6并且当将带状条从电极6朝向电极5放置时,同时使用条带的一端作为参考,并且保持带的条带和该电极的参考端的相对位置 最接近参考端。
    • 7. 发明授权
    • Laminator
    • 层压机
    • US07726375B2
    • 2010-06-01
    • US12155493
    • 2008-06-05
    • Masato KasaharaShin Nakamura
    • Masato KasaharaShin Nakamura
    • B32B37/00
    • B32B37/0046B30B5/02B32B2457/12Y10T156/18
    • A laminator 100 in which the diaphragm can be mounted simply and easily without the use of a mounting frame. The laminator 100 includes an upper chamber 110, on the bottom surface of which is mounted the diaphragm 140, and a lower chamber 120 on which the upper chamber 110 is stacked and in which is disposed a support base 130 on which a workpiece A that is to be laminated is set. The diaphragm 140 is larger than the upper chamber 110, and an excess portion of the diaphragm that protrudes outside the upper chamber when the diaphragm is mounted on the upper chamber is folded upward and clamped against the sides of the upper chamber by multiple clamps to fix the diaphragm in place on the upper chamber.
    • 层压机100,其中隔膜可以简单且容易地安装,而不需要使用安装框架。 层压机100包括在其底部表面安装有隔膜140的上室110和其中堆叠上室110的下室120,其中设置有支撑基座130,工件A 被设置。 隔膜140大于上室110,并且当隔膜安装在上室上时突出到上室外部的隔膜的多余部分向上折叠并且通过多个夹具夹紧在上室的侧面以固定 隔膜在上腔室就位。
    • 8. 发明申请
    • PHOTOVOLTAIC DEVICES INSPECTION APPARATUS AND METHOD OF DETERMINING DEFECTS IN PHOTOVOLTAIC DEVICE
    • 光伏器件检测装置及其在光电器件中的缺陷测定方法
    • US20100002932A1
    • 2010-01-07
    • US12495553
    • 2009-06-30
    • Masato KasaharaToshio Shibuya
    • Masato KasaharaToshio Shibuya
    • G06K9/00
    • G01N21/8806H02S50/10
    • A photovoltaic devices inspection apparatus and method of determining defects in photovoltaic devices that uses electroluminescence can find both the quality of the photovoltaic devices from the state of electroluminescence and the possibility of the photovoltaic devices becoming defective in the future by applying constant electric current to the photovoltaic devices causing electroluminescence of the photovoltaic devices (S7), photographing the light emitted from each photovoltaic cell of the photovoltaic devices (S10), dividing the photographed image of the photovoltaic cell into a bright region and dark region by using a threshold value and displayed as an enhanced image by binarization, analyzing as classifying each photovoltaic cell defect according to defect types and comparing a shape of the dark region with the defect types (S50), determining the existence of the defect to perform a positive-negative quality judgment on the photovoltaic devices, and displaying images of the problematic regions for visual inspection (S16).
    • 光电器件检查装置和使用电致发光的光电器件中的缺陷的方法可以从电致发光的状态中发现光电器件的质量以及将来通过向光伏器件施加恒定电流而使光电器件在未来变得有缺陷的可能性 引起光电装置的电致发光的装置(S7),拍摄从光伏器件的每个光伏电池发射的光(S10),通过使用阈值将光伏电池的拍摄图像划分为亮区域和暗区域,并显示为 通过二值化进行增强图像,分析根据缺陷类型对每个光伏电池缺陷进行分类,并将暗区的形状与缺陷类型进行比较(S50),确定缺陷的存在以对光伏进行正负质量判断 设备,并显示图像 用于目视检查的边缘区域(S16)。
    • 10. 发明申请
    • Laminator
    • 层压机
    • US20090000747A1
    • 2009-01-01
    • US12155493
    • 2008-06-05
    • Masato KasaharaShin Nakamura
    • Masato KasaharaShin Nakamura
    • B32B37/00
    • B32B37/0046B30B5/02B32B2457/12Y10T156/18
    • A laminator 100 in which the diaphragm can be mounted simply and easily without the use of a mounting frame. The laminator 100 includes an upper chamber 110, on the bottom surface of which is mounted the diaphragm 140, and a lower chamber 120 on which the upper chamber 110 is stacked and in which is disposed a support base 130 on which a workpiece A that is to be laminated is set. The diaphragm 140 is larger than the upper chamber 110, and an excess portion of the diaphragm that protrudes outside the upper chamber when the diaphragm is mounted on the upper chamber is folded upward and clamped against the sides of the upper chamber by multiple clamps to fix the diaphragm in place on the upper chamber.
    • 层压机100,其中隔膜可以简单且容易地安装,而不需要使用安装框架。 层压机100包括在其底部表面安装有隔膜140的上室110和其中堆叠上室110的下室120,其中设置有支撑基座130,工件A 被设置。 隔膜140大于上室110,并且当隔膜安装在上室上时突出到上室外部的隔膜的多余部分向上折叠并且通过多个夹具夹紧在上室的侧面以固定 隔膜在上腔室就位。