Inner and outer shielding structures let adjacent dual-band patch antennas stay compact while improving isolation and mode clarity.
By merging the sensing pad with the radiation element, this antenna maintains WLAN efficiency while supporting SAR compliance.
A rigid-flex PCB transmission path replaces coaxial cables to cut noise, line loss, material cost, and assembly defects in tight portable devices.
Capacitive feed coupling lets one antenna loop cover multiple RF bands, cutting antenna footprint and complexity while limiting detuning.
Internal antennas, a heat sink, and a heat shield make the access point more compact, durable, and easier for users to live with.
Phase shifters steer 24-52 GHz radiation patterns without antenna movement, while magnetic dipole elements sustain circular polarization.
Hinged, adjustable RET linkages let one antenna linkage fit different phase shifter distances and orientations, cutting parts count and inventory complexity.
A 3D support structure with switchable impedance matching extends compact antenna coverage from 699 MHz to 2155 MHz without ground clearance.
A three-antenna vertical layout expands vehicle coverage from 4G to 5G, Wi-Fi 6E, and V2X without separate antenna installations.
A hinged housing uses a capacitively coupled opposing conductor and tunable impedance to keep antenna radiation strong when folded.
A coaxial waveguide around an inner circular waveguide enables compact dual-band antenna feeding with efficient mode conversion and lower tower complexity.
Separated arc-edge radiators and parasitic elements expand 5G FR2 bandwidth and isolation while preserving a compact antenna volume.