首页> 外国专利> Device for soldering solar cells, comprises a laser soldering device, which is displaceably formed along a surface of the solar cell to be soldered, a holding-down device, a cooling device for cooling solder joints, and a camera

Device for soldering solar cells, comprises a laser soldering device, which is displaceably formed along a surface of the solar cell to be soldered, a holding-down device, a cooling device for cooling solder joints, and a camera

机译:用于焊接太阳能电池的装置,包括:激光焊接装置,其沿着待焊接的太阳能电池的表面可移位地形成;压紧装置;用于冷却焊点的冷却装置;以及照相机。

摘要

The device (1) for soldering solar cells (2), comprises a laser soldering device (3), which is displaceably formed along a surface of the solar cell to be soldered, a holding-down device (7) for holding a solder strip on the solar cell, a cooling device for cooling solder joints, and a camera. The holding-down device is adjacently arranged in front to the laser soldering device and in soldering direction (6), is displaceable together with the laser soldering device related to the solar cell, and is a nozzle device having a nozzle with a diameter of 1-3 mm and a heating device (11). The device (1) for soldering solar cells (2), comprises a laser soldering device (3), which is displaceably formed along a surface of the solar cell to be soldered, a holding-down device (7) for holding a solder strip on the solar cell, a cooling device for cooling solder joints, and a camera. The holding-down device is adjacently arranged in front to the laser soldering device and in soldering direction (6), is displaceable together with the laser soldering device related to the solar cell, and is a nozzle device having a nozzle with a diameter of 1-3 mm and a device (11) for heating gases. The temperature of the heated gases is variably adjustable. The holding-down device has a leaf spring and a roller for contacting the solder strip. A further soldering device is arranged on the opposite side of the soldering device. The holding-down device and/or the laser soldering device are obliquely adjustable in the soldering direction. The distance (d) between the laser beam of the laser soldering device and a nozzle opening of the nozzle is 2-10 mm. An independent claim is included for a method for soldering laminar bodies on solar cells.
机译:用于焊接太阳能电池(2)的装置(1)包括:激光焊接装置(3),其沿着待焊接的太阳能电池的表面可移位地形成;以及保持装置(7),其用于保持焊料带。在太阳能电池上,有一个用于冷却焊点的冷却装置和一个照相机。压紧装置在激光焊接装置的前方并在焊接方向(6)上相邻地布置,并且可与与太阳能电池相关的激光焊接装置一起移动,并且是具有直径为1的喷嘴的喷嘴装置。 -3 mm和加热装置(11)。用于焊接太阳能电池(2)的装置(1)包括:激光焊接装置(3),其沿着待焊接的太阳能电池的表面可移位地形成;以及保持装置(7),其用于保持焊料带。在太阳能电池上,有一个用于冷却焊点的冷却装置和一个照相机。压紧装置在激光焊接装置的前方并在焊接方向(6)上相邻地布置,并且可与与太阳能电池相关的激光焊接装置一起移动,并且是具有直径为1的喷嘴的喷嘴装置。 -3 mm和用于加热气体的装置(11)。加热气体的温度是可变可调的。压紧装置具有板簧和用于接触焊料带的辊。在该焊接装置的相对侧上布置有另一焊接装置。压紧装置和/或激光焊接装置可在焊接方向上倾斜地调节。激光焊接装置的激光束与喷嘴的喷嘴开口之间的距离(d)为2-10mm。包括将层状体焊接在太阳能电池上的方法的独立权利要求。

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