NASA has an update on its seminal deep-space exploration project of 2023—that of developing a nuclear power source. Following promising results in the Phase 1 of the project, the researchers are now aiming to boost power generation while reducing size and weight of the power source.
The study focused on the thermodynamics and practicality of developing this radioisotope-powered TRC, emphasizing its compactness and efficiency. The growth of key materials like InAsSb or InPSb was also assessed using metalorganic vapor phase epitaxy. Additionally, the researchers examined how TRC technology could be used to power cubesats accompanying a flagship mission to Uranus.demonstrated the potential for generating 8 watts of electrical power from a 62.
Additionally, the original goal of Phase 1—analyzing the potential of using a radioisotope thermoradiative converter for a cubesat mission to Uranus—will be worked upon in, which would involve a collaboration with NASA Glenn Research Center’s Compass engineering team to integrate the technology into spacecraft design. Finally, a roadmap for the development of TRC components for future missions will also be outlined.
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