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- W27885275 abstract "The development of two hexagonal solar cell process sequences, a laser-scribing process technique for scribing hexagonal and modified hexagonal solar cells, a large throughput diffusion process, and two surface macrostructure processes suitable for large scale production are described. Experimental analysis was made on automated spin-on antireflective coating equipment and high pressure wafer cleaning equipment. Six hexagonal solar cell modules were fabricated; they demonstrated that module efficiency can be significantly improved by the utilization of hexagonal or modified hexagonal solar cells replacing round cells due to increased solar cell packing ratio and increased solar cell photovoltaic energy conversion efficiency. A detailed theoretical analysis on the optimum silicon utilization by modified hexagonal solar cells for low-cost, high energy-per-unit-area solar cell modules is given. It is shown that an optimum modified hexagonal solar cell module will produce a cost savings compared to a round cell module. A cost analysis was performed using SAMICS on all process steps in this program. Two model companies were studied: CELLCO, a company that produces solar cells from silicon wafers, and MODULCO, a company that assembles solar cell modules from solar cells and encapsulant materials. The SAMICS method was applied to the hexagonal solar cell module using Sensormore » Technology's current proprietary process steps and three new process procedures: surface macrostructure, diffusion, and laserscribe. The conclusions show that the 1978 LSSA cost goal of $7/Wpk for solar cell modules is achievable. It is recommended, however, that significant development efforts be directed toward low-cost silicon wafer materials, low-cost encapsulant materials, and process automation.« less" @default.
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- W27885275 date "1978-04-01" @default.
- W27885275 modified "2023-09-27" @default.
- W27885275 title "Development of low-cost, high energy-per-unit-area solar cell modules. Final report" @default.
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