Method of making semiconductor film

4670293
Add to folder: View Folders  
Keywords to Highlight:

full-text

print

pdf

permalink

Inventors

Yamano, Masaru
Kuwano, Yukinori
Nakano, Shoichi
Matsuoka, Tsugufumi
Sakai, Souichi
Yagi, Hirosato
Okuda, Nobuhiro

Application #

899789

Filed

Aug-22-1986

Published

Jun-2-1987

Current US Class

136/244
136/258
136/291
257/E21.101
257/E27.125
257/E31.042
427/569
427/578
438/485
438/96

International Classes

B05D 003/06

Field of Search

427/39 427/86

Assignee

Sanyo Electric Co., Ltd. (Osaka, JP)

Examiners

Pianalto; Bernard D.

Attorney, Agent or Firm

Armstrong, Nikaido, Marmelstein & Kubovcik

US Patent References

4064521   Semiconductor dev...
4252837   Blade shields
4452828   Production of amor...
4461783   Non-single-crystalli...
4473597   Method and structu...
4515107   Apparatus for the...
4569719   Glow discharge me...

Referenced by:

View Backward References

Citation

Cite This Patent

More From Subclass 244

6624351   Folding photovoltai...
4968354   Thin film solar cell...
5180442   Integration system f...
6194651   Electrostatic discha...
4433200   Roll formed pan so...
4913744   Solar cell arrange...
5437735   Photovoltaic shingl...
4265422   Pole mounting sola...
5071491   Frame for solar cel...
5660646   Solar battery module
6903261   Solar concentrator
6284966   Power sphere nano...
6372978   Wind/sun solar coll...
5261968   Photovoltaic cell an...
6552258   Solar cell module
4378006   Solar panel founda...
5082505   Self-sustaining pow...
6437236   Solar cell panel
5575861   Photovoltaic shingl...
4527006   Photoelectric conve...
5590495   Solar roofing system
7022910   Photovoltaic cells ut...
6421966   Sunshade for build...
4481562   Solar power station
5289999   Apparatus for mou...
4534502   Automatic solder m...
4340803   Method for intercon...
5202271   Manufacturing met...
4540843   Solar cell
4595789   Solar cell assembly
5660643   Solar cell system
6093885   Photovoltaic power...
5043024   Solar cell device
4965655   Interconnected sem...
4680855   Electronic device...
6313394   Electric vehicle ph...
4981525   Photovoltaic device
4697041   Integrated solar cells
6489552   Photovoltaic cell m...
4334120   Sunlight-into-energ...
6034322   Solar cell assembly
4063963   Terrestrial photovolt...
5127964   Flexible photovoltai...
4753683   Gallium arsenide s...
6534703   Multi-position photo...
4824488   Photovoltaic device
6201181   Portable solar mod...
5118361   Terrestrial concentr...
6459033   Removably mount...
5288337   Photovoltaic modul...
5232518   Photovoltaic roof sy...
6455766   Contact-less probe...
6066797   Solar cell module
5510272   Method for fabricat...
6667434   Solar cell module
6346670   Solar battery system
6620996   Photoelectric conve...
4776896   Amorphous silicon...
4567642   Method of making...
6130465   Micro-solar assembly
5066338   Solar powered navi...
6841728   Solar cell stringing...
4232070   Non-arcing dielectr...
4770716   Stabilization of intr...
3956765   Integrated semicon...
4040867   Solar cell shingle
6528716   Solar concentrator
6091017   Solar concentrator...
6329588   Photovoltaic modul...
4370509   Solar cell array
4350836   Solar array constru...
 

More From Class 136

4481562   Solar power station
5680033   Solar powered war...
6610919   Solar battery
4510514   Ohmic contacts for...
6495750   Stabilized PV system
4082570   High intensity solar...
4636578   Photocell assembly
6903261   Solar concentrator
6706963   Photovoltaic cell int...
6300556   Solar cell module
4456782   Solar cell device
4371739   Terminal assembly...
3976508   Tubular solar cell...
4873790   Plant spinner
4502225   Mechanical scriber...
 
Abstract
A method of making a semiconductor film on a substrate having a non-flat surface, by placing the substrate in a reaction chamber including at least a pair of discharge electrodes, an inlet of a reaction gas for producing a desired semiconductor film, and an outlet for reduced pressure, and performing a discharge in the presence of said reacrion gas for producing said semiconductor film, while arranging said non-flat surface of said substrate outside a plasma region formed between said discharge electrodes and further locating said non-flat surface substantially in a vertical direction with respect to electrode surfaces of said discharge electrodes, thereby semiconductor film being directly and uniformly deposited on said non-flat surface of said substrate, which is of worth in the production of, e.g., roofing tile-shaped photovoltaic devices.
 
Claims
What we claim is:

1. A method of forming a semiconductor film on a substrate, consisting essentially of:

placing a substrate having a deposition surface in a reaction chamber having therein at least one pair of opposed discharge electrodes having opposing electrode surfaces, said reaction chamber further including an inlet of a reaction gas for producing a desired semiconductor by a plasma glow discharge decomposition reaction thereof, and an outlet for reducing the pressure within said reaction chamber; and

performing a discharge between said at least one pair of discharge electrodes in said reaction chamber in the presence of said reaction gas for producing said semiconductor, while arranging said deposition surface of said substrate just outside a plasma region formed between said discharge electrodes and locating said substrate deposition surface in substantially perpendicular relation with respect to said opposing electrode surfaces of said discharge electrodes,



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

This invention relates to a method of making a semiconductor film, and more particularly to a method of making a semiconductor film and a photovoltaic device for depositing a semiconductor film by plasma decomposition of a reaction gas on a non-flat surface combined with a curved or flat surface of a substrate.

2. Description of the Prior Art

A semiconductor film of an amorphous silicon system obtained by the plasma decomposition of the reaction gas has been used as photovoltaic devices, so called solar cells for directly converting solar energy to electrical energy, photoconductive drums for electronic photography or copiers, and the like. Since photovoltaic devices employ inexhaustible solar energy as an energy source, they have attracted the attention as a solution to the problem associated with exhaustion of energy resources. The sun renders the energy of about 1 kW/m.sup.2 to the ground during fine weather. When the photovoltaic device for converting such solar energy to electrical enerry is used in a home as a power source, it is generally installed on the rooftop or roof of the house.
 
  An apparatus for making a photovoltaic module having a plurality of cell strips. The apparatus (10) includes a frame (11) and a support drum (25) rotatably...  Mutually spaced apart TCO film portions are formed on a glass substrate. An amorphous silicon film of PIN junction type is formed to cover these TCO film...