Replacing liquid cooling with internal gas channels eliminates spill risks and maintenance costs while maintaining high-current thermal management.
A self-tuning plasma generation method adjusts resistance to match circuit impedance for maximum peak power delivery.
Adjustable length consumables extend torch reach into tight channels while liquid cooling prevents overheating during high current operations.
Segmented channels in a plasma nozzle prevent arc contact with walls, reducing surface damage while boosting productivity.
Decoupled nanosecond pulses direct energy into chemical bonds, minimizing ionization waste and boosting dissociation efficiency.
An air plasma propulsion system eliminates device complexity by extracting fuel tanks and electrodes, using atmospheric air for autonomous operation.
Bead-like thickening on the cooling tube narrows the gap to the electrode, increasing heat transfer efficiency and reducing overheating.