A protruding sensor electrode routes first and second threads to keep steering wheel conduction stable despite corrosion and force at thread intersections.
A laminated resin composite with soft magnetic alloy and carbon nanotubes blocks low-frequency EMI, absorbs high-frequency waves, and conducts heat.
Iron-based nanocrystalline shield layers guide magnetic flux and cut eddy current loss to sustain wireless charging efficiency.
Controlled rapid solidification and reshaping keep surface crystallization below 23%, improving ductility and strip reliability over long lengths.
Discontinuous ESD wiring along substrate edges protects micro LED display modules while cutting dense device placement and processing time.
Rotating internal magnets lock foldable device portions without latches, improving reliability while containing magnetic field leakage.
A multilayer nanocrystalline shielding sheet uses heat-resistant adhesive and magnet cracking to keep inductance and resistance stable above 200°C.
A brief magnetic-field alignment plus thermal phase separation locks flake fillers in place, boosting film permeability and saturation with low voids.
Boron-tuned Fe nanowires cut coercivity while keeping high magnetization, enabling thin electromagnetic absorbers for 5G and millimeter-wave bands.
Aligned edge surfaces and a metal-covered shielding film improve electromagnetic blocking, reduce sawing breakage, and raise assembly yield.