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Solar Energy Technologies Program

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Solar Energy Technologies Program ( solar-energy-technologies-program )

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4.1.1.5 Schedule and Milestones Table 4.1.1-7 shows the milestones for the PV Subprogram. Milestone Table 4.1.1-7. Milestones for Flat-Plate PV Subprogram Task Title Estimated CY Date Quarter 03 Q4 03 Q4 04 Q4 04 Q4 05 Q4 06 Q4 06 Q4 06 Q4 07 Q4 07 Q4 05 Q4 06 Q4 06 Q4 06 Q4 03 Q3 03 Q4 07 Q4 04 Q4 05 Q4 06 Q4 07 Q4 03 Q3 03 Q3 05 Q4 1 1 2 1 3 1 4 1 5 1 6 1 7 1 8 1 9 1 10 1 11 2 12 2 13 2 14 3 15 4 16 4 17 4 18 5 19 5 20 5 21 5 22 6 23 6 24 6 Complete installation of a state-of-the-art, high-resolution transmission electron microscope and apply new capabilities to a technologically important problem in silicon. Complete Title I design of NREL Science and Technology Facility. Start construction of NREL Science and Technology Facility. Obtain ISO 17025 accreditation for secondary cell calibration under ASTM and IEC standards. Develop characterization platforms that support the NREL Science and Technology Facility process-integration concept. Start operations of NREL Science and Technology Facility. Assess NCPV research facilities and prepare multi-year capital equipment plan. Select university center of excellence for crystalline-silicon PV research and education. Demonstrate competitive efficiency and cost potential of thin-crystalline- silicon technologies. Demonstrate rapid validation of a next-generation material or cell structure through application of combinatorial research techniques. Achieve 13%-efficient thin-crystalline silicon cell (<3 microns) on low-cost substrate. Assist industry in demonstrating 19%-efficient, large-area multicrystalline- silicon solar cell using commercial processes. Fabricate dual-junction polycrystalline thin-film cell of 15% efficiency. Reduce direct module-manufacturing costs to $1.75 and achieve module- manufacturing processes capable of $1.50/watt direct module- manufacturing costs with 500-megawatt production capacity. Demonstrate a monolithic, series-connected, multijunction thin-film device and identify critical-loss mechanisms. Demonstrate alternative junctions in CIGS and CdTe using process control of carrier concentrations. Demonstrate 13%-efficient a-Si cell (stable, total area). Demonstrate 10%-efficient commercial CdTe module. Complete solutions for device-level issues supporting industry 10-year warranties for CIS and CdTe modules. Demonstrate superior control of CIGS growth using process designed to exploit knowledge and control of microstructural mechanisms. Complete solutions for device-level issues supporting industry 20-year warranties for CIS and CdTe modules. Refine and transfer manufacturing-friendly, electro-optical-based diagnostic to the PV industry. Investigate and document dominant factors influencing energy production by PV module technologies. Complete next in series of international module-performance inter- comparisons. Solar Energy Technologies Program Multi-Year Technical Plan 62

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