A dual-textile sleeve with conductive securing areas expands over connectors while preserving cable shielding and reducing sleeve weight.
A linear absorber structure limits cross-section and occupancy to cut scattering and maintain strong radio wave absorption at oblique angles.
Surface-controlled hexagonal ferrite powder improves radio wave transmission attenuation in absorbers, boosting automotive radar recognition reliability.
An overlapping power supply member layout cancels magnetic fields between switch terminals, cutting inductance and improving power conversion efficiency.
A rubber-carbon-iron oxide absorber uses magnetic resonance to attenuate millimeter-wave radiation on flexible or non-flat surfaces.
A dual fiber-reinforced housing balances radio-wave transmission, low warpage, heat resistance, and moisture-stable dimensional accuracy.
Strategic incisions let a metal-foil laminate stretch over complex 3D shapes without tear propagation while preserving electromagnetic shielding.
A detachable cover encloses open pulse inverter electronics during assembly, blocking dirt, impact, and electrostatic discharge.
Passive superconducting shielding uses the Meissner effect and cooling channels to keep fusion reactor structures out of direct plasma contact.
A thin conductive-layer film attenuates millimeter-wave noise using discrete metal plates and a planar inductor while fitting device housings.
A composite layer using epsilon-type iron oxide and thermally conductive material absorbs high-frequency radio waves while dissipating heat.