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The technical approach to operating and maintaining the NSTTF is to support the six-dish mini power plant and to assure that all EH&S requirements are met. 3. Results and Accomplishments 3.1 S&TF Capital Equipment There is a three-year budget for essential capital equipment associated with the construction and operation of the S&TF. This essential capital equipment includes the following ten work packages, which are divided by status according to the development steps listed above. Projects with contracts awarded and being fabricated: 1. Silicon Chemical Vapor Deposition Cluster Tool 2. Transparent Conducting Oxide (TCO) Sputtering Stand-Alone Tool Projects undergoing budgetary re-scoping: 3. User Characterization Equipment 4. Optical Thickness Profiler Projects developing conceptual specifications: 5. Auger Electron Spectrometer Mobile Tool 6. Chemical Bath Deposition CdS-Controlled Ambient Stand-Alone Tool 7. Polycrystalline Thin-Film Cluster Tool 8. X-rayandUltravioletPhotoelectron Spectrometer Stand-Alone Tool 9. Optical/Processing Cluster Tool 10.Characterization Stand-Alone Tool. Items 1 to 6 will be completed in FY 2006. Items 7 to 10 will be completed in FY 2007/2008. The silicon cluster tool will be completed in approximately March 2006 and operated at the vendor site until the construction of the S&TF is completed (around May 2006). The TCO sputtering tool will be completed at about the same time and shipped to NREL, where it will be operated in the existing facilities until it can be moved to the S&TF. The silicon cluster tool will not only perform thin- film silicon deposition and processing (supporting the technology plan goals), but will also serve as the project’s first test for intra-tool transport having an internal transfer zone containing a vacuum robot. The TCO sputtering tool will not only perform thin-film TCO depositions, but will also serve as the project’s first test for inter-tool transport via the accompanying pod. We are also developing the use of recipe/run control, as well as data logging, using XML-based data transfer. Software is critical to having fully integrated tools, not only for automation, but also for easy access to the data—out of which information can be gleaned and knowledge built. The approach we are pursuing is illustrated in Fig. 1. Currently, the Georgia Institute of Technology is assisting us in the development of the integrated software architecture. Fig.1. Schema for software integration 3.2 Operation and Maintenance of the NSTTF We continued operating the SES six-dish mini power plant and complied with all EH&S requirements. We also hosted a visit from President George Bush (see Fig. 2). Fig. 2. President George Bush visited the NSTTF on August 8, 2005, as part of his signing of the Energy Bill at Sandia National Laboratories. Systems Integration and Coordination 164PDF Image | DOE Solar Energy Technologies Program
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