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DETERMINATION OF THE EFFECTIVE OPTICAL WIDTH OF SCREEN-PRINTED AND AEROSOL-PRINTED AND PLATED FINGERS

机译:测定丝网印刷和气溶胶印刷和电镀手指的有效光学宽度

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One main efficiency loss in industrial solar cells is the shading of the cell due to the metal front side contacts. With the aerosol printing technique followed by a light induced plating (LIP) step, not only the geometrical contact is narrowed compared to screen-printed contacts but also the geometry of the finger changes. In this work the optical behaviour of different finger types is analysed with two different measurement methods. The analysis of the finger was carried out with both encapsulated fingers (module) and not encapsulated fingers (cell). The essential parameter for characterising the finger is the effective width which can be reduced drastically compared to the geometrical width due to total internal reflection at the glass-air layer and the direct reflection from the roundish edges of the contact fingers into the cell. This parameter was determined with different methods. The measured values are compared to a theoretical model for an aerosol-printed and plated finger and are in good agreement.
机译:由于金属前侧触点,工业太阳能电池中的一个主要效率损失是电池的阴影。利用气溶胶印刷技术,然后是光诱导电镀(唇)步骤,不仅与丝网印刷的触点相比,几何接触变窄,而且手指的几何形状变化。在这项工作中,用两种不同的测量方法分析不同手指类型的光学行为。用封装的手指(模块)和不封装的手指(细胞)进行对手指的分析。用于表征手指的基本参数是由于玻璃空气层的全内反射和从接触手指的圆形边缘进入电池的圆形边缘的直接反射而与几何宽度相比,可以大大减小的有效宽度。使用不同的方法确定该参数。将测量值与气溶胶印刷和电镀手指的理论模型进行比较,并且非常一致。

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