Pioneering ultra-wide-temperature energy architectures, high-torque in-wheel electric drives, and predictive thermal management algorithms capable of sustaining heavy mobility operations from arctic frontiers to extraterrestrial surfaces.
Solid-state electrolyte battery chemistries with integrated self-heating phase-change materials to maintain energy density without thermal runaway.
Direct-drive axial flux electric hub motors offering instantaneous microsecond torque correction across high-slip loose-regolith substrates.
Multi-stage energy recapture converting steep descent gravitational kinetic force into high-current pack recharge without brake pad friction wear.
Chassis specifications, battery topologies, and dynamic simulation results.
Modular solid-state battery architecture and thermal scavenging for extreme environments.