DocumentCode :
2899703
Title :
Production of low cost silicon wafers by continuous casting method-development of drip-controlled method
Author :
Goda, Shinji ; Moritani, Toshiaki ; Hatanaka, Yuji ; Shimizu, Hiroaki ; Hide, Ichiro
Author_Institution :
Chitose Lab., DAIDO HOXAN Inc., Hokkaido, Japan
Volume :
2
fYear :
1994
fDate :
5-9 Dec 1994
Firstpage :
1227
Abstract :
The continuous casting method (CCM) has been designed to obtain low cost silicon wafers. This method has the objective of wafer cost reduction production effect through the installation of a pre-heating zone and a crystal growth and cooling zone separately on both sides of a silicon melting and injecting zone. We have developed the drip-controlled method (DCM) as a casting method for CCM. In DCM, the injection of molten silicon and the crystal growth are carried out simultaneously and the heat of molten silicon is utilized actively as a heat source to control the crystal growth. DCM is the most effective casting method for continuous casting. Batch-type ingots with a size of 320 mm square, height 260-300 mm, were produced by DCM. An oxygen content of 5-15 ppma and a carbon content of less than 5 ppma were obtained throughout the ingots. The cell efficiency yield of more than 13.5% was 80% against the growth direction, with a wafer size of 100 mm×100 mm using our standard cell process. A maximum value was found of 14.3% measured in JQA. The solar cell efficiency, the carrier lifetime and the diffusion length measured in this study showed DCM had an advantage for obtaining one-directional growth and columnar structure
Keywords :
carrier lifetime; casting; crystal growth from melt; elemental semiconductors; semiconductor materials; silicon; solar cells; Si; carrier lifetime; columnar structure; continuous casting method; cooling zone; crystal growth control; crystal growth zone; diffusion length; drip-controlled method; heat source; low cost silicon wafers; molten silicon injection; one-directional growth structure; pre-heating zone; solar cell efficiency; Casting; Continuous production; Cooling; Costs; Mass production; Photovoltaic cells; Silicon; Size control; Solar heating; Temperature control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Energy Conversion, 1994., Conference Record of the Twenty Fourth. IEEE Photovoltaic Specialists Conference - 1994, 1994 IEEE First World Conference on
Conference_Location :
Waikoloa, HI
Print_ISBN :
0-7803-1460-3
Type :
conf
DOI :
10.1109/WCPEC.1994.519953
Filename :
519953
Link To Document :
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