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Past Projects

ScintSol is proud to share with you our previous work! Scroll down to learn more about our successfully completed projects. 

Airplane Mid-Flight

US Department of Defense, USAF
NASA ULI (PI: UIUC), CHEETA

Megawatt-Class Power Distribution Systems for Large Size More Electric Aircraft

In partnership with AFRL, NASA, and Aerovironment.  Our main role was designing, modeling, fabricating, assembling, and testing the Electrical Wiring and Interconnection System (EWIS) for the CHEETA ground-based demonstrator.  Patent-pending (US20250172507A1) method to detect quench in superconducting cables using RF interrogation.

Flames Against Black
Illuminated Light Bulb

US Department of Defense, USAF

Thermal Scavenging Power and Thermal Management for Next Generation Air and Space Vehicles

In partnership with AFRL and Aerovironment.  Our main role was in examining SWaP-C and the design for different power systems including thermoelectric, thermophotovoltiac, MHD, thermionics, batteries, supercapacitors, and fuel cells.  Patent pending (US-20230174434-A1) on ceramic-ceramic composite.

Rocket And Balloons

US Department of Defense, Advanced Research Projects Agency (DARPA),

Rubble to Rockets (R2R)

In partnership with Skuld LLC, TGV Rockets, and Foundry Casting Systems LLC, and John Hopkins Advanced Physics Laboratory. Our main role was in developing a materials property prediction program.  This involved computational thermodynamics and neural network programming. 

US Department of Energy, Advanced Research Projects Agency - Energy (ARPA-E),

Aviation-class Synergistically Cooled Electric-motors with iNtegrated Drives (ASCEND)

Abstract Pattern 9

In partnership with University of California Santa Cruz and Air Force Research Laboratory, we have been working to develop the next generation of lightweight propulsion for electrified aircraft.  Our main role has been in the design, fabrication, and testing of cryogenic thermal management systems.  Patent-pending (WO 2023/225478 A2) method to reduce flux leakage and increase motor power density.

Abstract Pattern 16

Dexmat Inc.

Laboratory Consulting (2017)

As part of a materials study for multiple programs, an atmospherically controlled and variable temperature 4-point probe station for corrosive environments was designed from the ground up.  This included the development of user-friendly digital data acquisition.

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