Sliding substrates within a holding part resolve the contradiction between compact space utilization and maintenance access in power conversion apparatuses.
A flexible dielectric support carries a magneto-dielectric coating layer applied via screen printing to form composite antenna structures.
Expandable graphite with carbon nanotube-coated magnetic particles creates a conductive network.
A conductive line layer in the peripheral area of a display apparatus discharges electrostatic charges from the driver IC bonding region.
Auxiliary magnet members and boundary coils reduce interference between adjacent driving assemblies in compact camera modules.
A cable structure uses an elastic ring to insulate the everted braid portion from the metal shield.
Side-mounted shield tabs reduce short circuit risks while maintaining effective electromagnetic shielding.
A polyarylene sulfide resin composition reinforced with carbon or glass fibers maintains high residual fiber lengths during melt processing.
Integrating circuit and resonator patterns on a single substrate reduces overall thickness while maintaining reliable wireless charging efficiency.
A conductive sheet disperses carbon nanotubes in resin to form uniform electrical paths.
An internal conductor covers electrode facing portions to dissipate heat, preventing melting and maintaining stable discharge gaps.
A polyamide composite emits probiotic frequencies to counteract electromagnetic radiation exposure.
A magnetic attachment system secures rooftop equipment to metallic roof plates without penetrating the roofing membrane.
Dual-sided nanostructure tape absorbs and reflects electromagnetic waves, preventing signal quality deterioration from interference.
Recessed EMI shield interiors filled with UV-curable dielectric material prevent electrical shorting and enhance shielding reliability.