There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top...

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There are no FREE lunches
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    20-Dec-2015
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Transcript of There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top...

Page 1: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

There are no FREE lunches

Page 2: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

Anti-reflective coating

A anti-reflective coating is deposited on the top side to help

transmit more of the incident sunlight

Page 3: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

Because the top side conductor has been already

fabricated and only low temperature process can be used, the typical process to

deposit anti-reflective coating is PECVD

Page 4: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

PECVD• Plasma

• Enhanced

• Chemical

• Vapor

• Deposition

PECVD is used extensively in the manufacture of microelectronic devices because it allows for lower temperature processes

Page 5: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

Just like in sputtering, a plasma is formed in an electric

field

The plasma allows for the deposition or growth of films at lower temperature than would

normally be required in just a CVD process

Page 6: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

Trion ORION III PECVD tool

Page 7: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

Typical PECVD Process• The wafer is loaded in into the vacuum

chamber

• The chamber is pumped to vacuum conditions

• The wafer is heated to deposition temperatures (300oC typical)

• Gas are introduced that will acts as precursors to the film growth

Page 8: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

Typical PECVD Process (continued)

• Chamber pressure is regulated to provide an equilibrium pressure ( gas in, pumping out)

• RF power is applied to the chamber creating a plasma

• A film is grown based on the gases introduced

Page 9: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

For our solar cell

• We will be using SiO2 as the antireflective coating

• There are better anti-reflective coatings but not available in the Cameron clean room such as SiN or ITO

Page 10: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

Trion ORION III PECVDChamber lid open

Heated substrate stageCan accommodate up to 8”

wafers

Page 11: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

Trion ORION III water chiller and dry (no oil) chemical vacuum pump

Page 12: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

Trion ORION III process gas cabinet TEOS (tetraethylorthosilicon) SiO2 precursor

Page 13: There are no FREE lunches. Anti-reflective coating A anti-reflective coating is deposited on the top side to help transmit more of the incident sunlight.

The blue tint to the solar cell is the anti-reflective coating