Method for manufacturing solar battery

6846696
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Inventors

Adachi, Hiroki
Nishi, Kazuo
Yonezawa, Masato
Isobe, Yukihiro
Shinohara, Hisato

Application #

151300

Filed

May-21-2002

Published

Jan-25-2005

Current US Class

136/244
136/252
136/256
257/431
257/443
257/621
438/114
438/461
438/462
438/463
438/73
438/80

International Classes

H01L 031/042; H01L 031/18; H01L 021/77

Field of Search

136/244 136/256 136/252 257/443 257/431 257/621 438/80 438/73 438/114 438/461 438/462 438/463

Assignee

Semiconductor Energy Laboratory Co., Ltd. (Kanagawa-ken, JP); TDK Corporation (Tokyo, JP)

Examiners

Diamond; Alan

Attorney, Agent or Firm

Nixon Peabody LLP, Costellia; Jeffrey L.

US Patent References

4292092   Laser processing te...
4981525   Photovoltaic device
5296043   Multi-cells integrate...
5821597   Photoelectric conve...
6225552   Planar solar cell ar...
6455347   Method of fabricati...

Referenced by:

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Citation

Cite This Patent

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Abstract
The invention is aimed to prevent that fall of characteristic of a solar battery and producing yield caused by particles of powder condition generating from working part at laser beam process in the method producing the solar battery by laser beam process. The constitution of the invention is characterized by comprising: a first step forming the lower electrode and the semiconductor layer on the insulating substrate by laminating; a second step forming a protective film on surface of the semiconductor; a third step forming an opening portion at the semiconductor layer, or the semiconductor layer and the lower electrode by laser beam process after the second step; and a fourth step removing the protective film.
 
Claims
What is claimed is:

1. A method for manufacturing a solar battery laminating a lower electrode, a semiconductor layer and an upper electrode on an insulating substrate in order, comprising:

forming the lower electrode and the semiconductor layer on the insulating substrate by laminating, the semiconductor layer having a lower surface on the lower electrode and an upper surface;

forming a protective film on and in direct contact with the upper surface of the semiconductor layer;

forming an opening portion at the semiconductor layer, or the semiconductor layer and the lower electrode by laser beam process;

removing the protective film; and

after removing the protective film, forming the upper electrode on the semiconductor layer and the lower electrode.



Description
BACKGROUND OF THE INVENTION

The present invention relates to a method for producing a solar battery having semiconductor film on insulating substrate, particularly to a method for producing an integrated solar battery produced using laser beam processing.

In recent years, a thin film solar battery in which non-monocrystal silicon film is formed on an insulating substrate is getting attention. Here, the substance applied as non-monocrystal silicon is amorphous silicon, microcrystal silicon, thin film polycrystal silicon, and compound thereof. A thin film solar battery is characterized in that production cost is kept low and material used for production is little. By using plastic film substrate having flexibility as an insulation substrate, shape of the solar battery is set freely. It is one of important characteristics to make an integrated structure possible on the insulation substrate, where desired voltage is obtained by dividing an element to plural elements on single substrate and connecting the elements in series. It is possible to use a substrate having an insulating surface, for example a conductive substrate on which an insulating film is provided.
 
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