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Applications: Low Earth Orbit (LEO) satellites, space stations, deep space probes, and other space applications.
Low Earth orbit satellites have extremely high requirements for lightweight (ultra-thin) photovoltaic cells, resistance to high-energy particle radiation in space, extreme temperature adaptation, and long-life efficiency retention. The ultra-thin ability, radiation self-healing characteristics, low-temperature simple process, and high-efficiency retention at the end of life of P-type HJT are unmatched by other silicon-based technologies. At the same time, compared with traditional gallium arsenide batteries, it has a cost advantage and meets the needs of large-scale satellite deployment by enterprises such as SpaceX.
