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  4. Status of C3MJ+ and C4MJ Production Concentrator Solar Cells at Spectrolab
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Category: Photovoltaics Projects
By MTech Projects
MTech Projects
06.Apr
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Status of C3MJ+ and C4MJ Production Concentrator Solar Cells at Spectrolab

PROJECT TITLE :

Status of C3MJ+ and C4MJ Production Concentrator Solar Cells at Spectrolab

ABSTRACT:

Multijunction solar cells based on III–V semiconductors, having recently demonstrated 43.5%, remain the world's most efficient solar cells, and the preferred technology in point-focus and dense-array concentrator photovoltaic (CPV) system architectures. The year 2011 proved to be a pivotal year for CPV technology, with multiple power plant installations in the megawatt to tens of megawatt scale. Spectrolab is working closely with CPV system manufacturers to provide a reliable and well-characterized cell technology, in volumes commensurate with this increasing demand. The evolutionary C3MJ+ and the C4MJ cell technologies are the latest in a sequence of CPV solar cell designs, with conversion efficiencies approaching or greater than 40%. Both technologies have completed detailed characterization and qualification programs, including accelerated laboratory and (for C4MJ) on-sun reliability testing, and have entered into high volume production at Spectrolab's manufacturing facility in Sylmar, CA. The metamorphic C4MJ technology affords new opportunities to optimize cell designs, taking into consideration both the spectral optical transmittance of a particular CPV system and the installation site's average solar resource over a typical meteorological year.

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  • Ga Composition Dictates Macroscopic Photovoltaic and Nanoscopic Electrical Characteristics of Cu(In Ga )Se Thin Films via Grain-Boundary-Type Inversion
  • Bifacial Growth InGaP/GaAs/InGaAs Concentrator Solar Cells
  • High-Efficiency, Multijunction nc-Si:H-Based Solar Cells at High Deposition Rate
  • Reliability Study of Ruthenium-Based Dye-Sensitized Solar Cells (DSCs)
  • A New Technique for Tracking the Global Maximum Power Point of PV Arrays Operating Under Partial-Shading Conditions
  • Compositional Gradients in Cu(In,Ga)Se$_$ Thin Films for Solar Cells and Their Effects on Structural Defects
  • Contactless Qualitative Series Resistance Imaging on Solar Cells
  • Metamorphic GaAsP and InGaP Solar Cells on GaAs
  • New Generation Transparent LPCVD ZnO Electrodes for Enhanced Photocurrent in Micromorph Solar Cells and Modules
  • Single-Variable Optimization Method for Evaluating Solar Cell and Solar Module Parameters
Previous article: Optimal Bandgap Combinations—Does Material Quality Matter? Optimal Bandgap Combinations—Does Material Quality Matter? Next article: Wide Band Gap Gallium Phosphide Solar Cells Wide Band Gap Gallium Phosphide Solar Cells
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