Space-Level Perovskite Solar Cell
Produktdetaljer
Spesifikasjoner |
50mm×50mm |
Fotoelektrisk konverteringseffektivitet |
23,9%@AM0,22,7%@AM1.5 |
Høy og lav temperatur slagtest |
Testtemperaturen er -90 ℃ ~ + 90 ℃, oppvarmingshastigheten er 20 ℃/min, og antallet påvirkninger er 500 ganger, som pågår kontinuerlig |
Elektronbestrålingstest |
Under the condition of 1MeV, 3×1014e/cm2 irradiation, after annealing under AM0 irradiation for 24h, the photoelectric conversion efficiency of solar cell decreases from 23.9% to 22.8% |
Vekt |
0,8 kg/m2 (stiv perovskitt solcelle), 0,5 kg/m2 (fleksibel perovskitt solcelle) |
Produkteksempler
Single Junction Kalsium-titan-mineral solcelle
23,9 % effektivitet enkelt kryss Kalsium-titan-mineral solcelle;
Monolithic size :50mm×50mm;
-100℃~+110℃ arbeidstemperatur;
Nedbrytbar sølvkledd samleskinne;
Motstandsdyktig mot protonbestråling/elektronbestråling;
Bakken eldes ved sykling med høy og lav temperatur.
Stacked Perovskite Solar Cell
24,5 % effektivitet stablet Kalsium-titan-mineral solcelle;
Monolithic size :50mm×50mm;
-100℃~+110℃ arbeidstemperatur;
Nedbrytbar sølvkledd samleskinne;
Motstandsdyktig mot protonbestråling/elektronbestråling;
Bakken eldes ved sykling med høy og lav temperatur.
Flexible Perovskite Solar Cell
PI membran integrert design;
Stabil ytelse etter høy bøyespenning;
Adapts to 180° full angle bending.
The Space-Level Calcium-Titanium-Mineral Solar Cell(perovskite solar cell) is a cutting-edge photovoltaic technology designed to deliver high-efficiency energy conversion in extreme conditions, including space applications. It incorporates a unique combination of calcium, titanium, and mineral-based materials to enhance the solar cell’s durability, efficiency, and resistance to radiation, making it ideal for satellite power generation and other space-based energy needs. These solar cells are engineered with advanced coatings and high-performance semiconductor materials to ensure maximum energy absorption and conversion, even in harsh environments. The design allows for optimal thermal stability and resistance to cosmic radiation, ensuring that the solar cell maintains its functionality over prolonged periods in space. Additionally, these cells are lightweight, compact, and capable of operating efficiently in a variety of orientations, making them suitable for use in space missions, low-Earth orbit satellites, and deep space exploration systems.
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