Gallium Arsenide Solar Arrays
Product Examples
Satellite Body Mounted Plate
30% efficiency triple-junction GaAs cells;
PCB board, PI film, etc;
-100℃~+110℃ working temperature;
Appraisal life span of 3 years or less.
Fixed Rigid Solar Panel
30% efficiency triple-junction GaAs cells;
Carbon fiber aluminum honeycomb substrate;
-100℃~+110℃ working temperature;
Appraisal life span of 10 years or less.
Folding Flexible Solar Panel
30% efficiency triple-junction GaAs cells;
Flexible PI film - fiberglass fiber - PI film substrate;
-100℃~+110℃ working temperature;
Appraisal life span of 7 years or less.
Flexible Folding Solar Panel for Flat Panel Satellites
30% efficiency triple-junction GaAs cells (Rigid solar cells);
Flexible PI film - fiberglass fiber - PI film substrate;
-100℃~+110℃ working temperature;
Appraisal life span of 7 years or less.
Gallium Arsenide Solar Arrays are advanced photovoltaic systems that use gallium arsenide (GaAs) as the primary semiconductor material for converting sunlight into electricity. GaAs is known for its high efficiency in energy conversion, particularly in conditions with low or scattered sunlight. These solar arrays are designed for use in space applications, high-performance terrestrial installations, and aerospace power systems, where reliability, efficiency, and durability are crucial. GaAs has a higher efficiency than traditional silicon-based solar cells due to its better photon absorption and ability to operate at higher temperatures. The arrays are engineered with multijunction solar cell technology, which allows for the capture of a broader spectrum of sunlight, further enhancing the overall energy conversion efficiency. Their lightweight design, combined with outstanding radiation resistance, makes them ideal for satellite power generation, space exploration, and high-altitude applications. These solar arrays also feature long operational lifespans and are resistant to environmental degradation, ensuring they can withstand harsh conditions without losing efficiency.
Arsenide Solar Arrays and their superior efficiency.
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