Photovoltaic Manufacturing Cost and Throughput Improvements for Thin Film CIGS-Based Modules: Final Technical Report, July 1998 -- September 2001
This report describes the marked improvements made of the production line under the PVMaT program: successfully developed a high-speed, all-laser, monolithic integration process for CIGS-based modules on polyimide substrates; exceeded PVMaT goals for scribing rate and total interconnect width; developed robust, well-controlled techniques for selective scribing; improved CIGS evaporation sources to allow uniform, controllable delivery; completed foundation required to integrate higher CIGS deposition rates into the production line; developed well-controlled Se delivery system to minimize Se consumption; successfully integrated the parallel-detector spectroscope ellipsometer (PDSE) into a production CIGS deposition chamber; collected useful, in-situ data with PDSE; validated the performance of the X-ray fluorescometry (XRF) sensor in the production CIGS deposition chamber; and successfully incorporated the XRF sensor into the control architecture of the production CIGS deposition chamber .
- Research Organization:
- National Renewable Energy Lab. (NREL), Golden, CO (United States)
- Sponsoring Organization:
- US Department of Energy (US)
- DOE Contract Number:
- AC36-99-GO10337
- OSTI ID:
- 15000424
- Report Number(s):
- NREL/SR-520-32072; ZAX-8-17647-11; TRN: US200325%%269
- Resource Relation:
- Other Information: PBD: 1 Apr 2002; Related Information: Work performed by Global Solar Energy, Tucson, Arizona
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
ARCHITECTURE
DEPOSITION
ELLIPSOMETERS
EVAPORATION
MANUFACTURING
PERFORMANCE
PRODUCTION
SUBSTRATES
THIN FILMS
PV
LASER SCRIBING PROCESS
HIGH-RATE DEPOSITION
EFFUSION SOURCE
REAL-TIME PROCESSING PARALLEL DETECTOR SPECTROSCOPIC ELLIPSOMETER (PDSE)
BAND GAP
X-RAY FLUORESCOMETRY (XRF)
PVMAT
CIGS
SOLAR ENERGY - PHOTOVOLTAICS