Hostname: page-component-586b7cd67f-vdxz6 Total loading time: 0 Render date: 2024-11-24T10:28:21.506Z Has data issue: false hasContentIssue false

Progress in Research and Mass Production of Large-Scale Tandem Thin Film Si Solar Modules at Chint Solar

Published online by Cambridge University Press:  11 July 2012

X. Niu
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
C. Yu
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
M. Wang
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
G. Li
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
X. Zhu
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
B. Cheng
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
Z. Chen
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
G. Wang
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
C. Zhou
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
S. Liu
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
H. Deng
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
J. Xiao
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
K. Fung
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
L. Yang
Affiliation:
Chint Solar (Zhejiang) Co. Ltd., 1335 Binan Lu, Binjiang District Hangzhou 310053, China
Get access

Abstract

Over the past decade, the PV industry has witnessed tremendous growth in manufacturing scale and technology advancement, with PV generated electricity cost ever approaching grid parity. Among them, Si based thin film technology has made substantial progress in demonstrating its inherent advantages in lower material cost, ease of manufacturing and higher energy yield, etc. More recently, reduced product prices and competing technologies from crystalline silicon and other thin film technologies have made amorphous and microcrystalline silicon based thin film technology very challenging, and requires further increase in module efficiency and decrease in manufacturing cost. As one of the few companies in the world with significant manufacturing capacity for tandem thin film Si PV products, Chint Solar (Astronergy) has been at the forefront of technology development for the mass production of large-scale (Gen. 5, 1.43m2) Si thin film solar modules in the last 5 years. We will review major technology advancements which have been mass production proven and led to the mass produced tandem silicon thin film module with 10.0% plus stabilized efficiency, along with the field performance of those modules.

Type
Articles
Copyright
Copyright © Materials Research Society 2012

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

Despeisse, M. et al. . 25th European Photovoltaic Solar Energy Conference and Exhibition, pp. 27932797 (2010)Google Scholar
Xi, J. et al. ., First WCPEC, pp. 401404 (1994)Google Scholar
Gupta, Y., et al. ., 16th IEEE Photovoltaic Specialist Conference, pp. 1902 (1982)Google Scholar
Ganguly, G. et al. ., Applied Physics Letters 85-3, 479481 (2004)CrossRefGoogle Scholar
Veneri, Paola Delli et al. ., 25th European Photovoltaic Solar Energy Conference and Exhibition, pp. 27532758 (2010)Google Scholar
Despeisse, M., et al. ., Applied Physics Letters 96, 073507 (2010)CrossRefGoogle Scholar