An optically-fed phased array converts RF signals to optical sidebands for simultaneous multi-user beam steering.
A multiband antenna assembly uses printed circuit board matching elements to eliminate discrete lump components and simplify production.
A single antenna element uses a series inductor and capacitor circuit to generate multiple resonance frequencies for multi-band operation.
A distributed multiband antenna configuration uses a top-mounted PIFA and bottom monopole to optimize high and low frequency performance.
A dielectric substrate antenna unit aligns maximum gain with the surface extension to achieve high directivity and broad band coverage.
A multi-layer antenna arrangement uses a conductive resonator to create a stop band within the operational frequency range.
Segmenting the dielectric sheet from the adhesive layer isolates the electromagnetic field, preventing Q value degradation caused by low adhesive permittivity.
Switching circuits reconfigure antenna radiating portions across gaps to cover multiple frequency bands without increasing physical volume.
A broadband antenna system uses isolated lobes to intersect electric field lines and improve gain across multiple frequency bands.
A nested slot antenna structure feeds two radiators with shared electricity to generate multiple resonance frequencies within a compact footprint.
A wrap-around antenna assembly uses an L-shaped substrate and feed arm extension to route signals along interior and exterior surfaces.
Integrating a V2X module within the shark fin housing removes RF cables that cause signal attenuation and interference, enhancing transmission reliability.
A substrate integrated waveguide antenna uses parasitic patches to shape radiation patterns.
Nested radiating elements within a cup-shaped structure reduce shadowing and inter-band coupling in compact MIMO arrays.
A multilayer antenna module adjusts impedance by shifting feed wire connection points on the feed element.
A quarter-wavelength strip on the main body cancels electric fields, allowing closer spacing while maintaining omnidirectional gain.
A tunable antenna switcher connects at a non-maximum voltage position to enable frequency tuning.
Segmented radiation elements excite ground plane surface currents, reducing antenna area while maintaining high radiation efficiency in thin mobile devices.
A tuner and switch system dynamically reconfigures antenna feed paths to optimize radiation performance across frequency bands.
Nested parallel antenna elements reduce mounting volume while maintaining impedance matching.
An L-shaped band-stop filter suppresses parasitic low frequency resonance in compact cellular phone microstrip antennas.
A multiband antenna uses an asymmetric closed low-frequency radiating element to establish distinct resonance paths across multiple frequency bands.
A reconfigurable planar antenna uses RF switch connections between metallic patch segments to enable rapid electronic beam steering.
Gap-fed conductive camera deco expands the antenna radiation region, resolving interference from metal structures that reduces radiation efficiency.
A polarization-independent spatial power divider aligns beams from orthogonally oriented dual-polarized feeds using composite dielectric plates.
A conducting layer on the back shell couples with a first radiator to form a second radiator that receives and transmits wireless signals.
Segmented antenna units generate perpendicular radiation patterns to eliminate dead zones in IoT deployments.
Switching circuits control current paths between radiating portions, resolving the contradiction between compact device space and multi-band frequency coverage.
Segmented antenna design adjusts connection points on a shared PCB to optimize radiation patterns and maintain regulatory compliance across device variants.
Diamond-shaped dipole elements paired with a multi-function reflector mitigate multipath fading while the varying-width slot expands bandwidth for LTE bands.
Integrating radiators into a metal back cover eliminates substrates, reducing thickness while resolving shielding conflicts in narrow frame designs.
A resonant divider delays current flow in an antenna element to restrict operation to specific frequency bands.
Stacked radiating patches nested within vertical layers enhance resonance bandwidth while maintaining compact device volume constraints.
Asymmetric MIMO antenna arrays minimize mutual coupling to resolve space constraints in sub-6GHz 5G devices.
A mobile terminal uses a grounding portion between feeding portions to manage current flow and reduce antenna interference.
A dual broadband antenna system uses a double-folded ground plane to provide enhanced isolation between radiating elements.
Wireless radiating elements eliminate parasitic radiation interference during high frequency signal transmission between microchips.
Segmented radiation elements generate distinct frequency bands, reducing interference from metal casings to improve communication quality.
A protective screen overlay uses transparent conductive elements to redirect radio frequency energy away from the user.
A dual-arm inverted-F and monopole antenna system uses adjustable capacitors to tune resonating elements across cellular and Wi-Fi bands.
An elastic annular rib with a groove reduces pressing force against thin vehicle roofs, preventing deformation while ensuring waterproofness.
A three-column phased array antenna applies phase shifts to radiate orthogonal beams.
A phased antenna array mounted on a multi-layer substrate with alternating dielectric permittivity levels.
A wide band indoor antenna uses a diplexer to feed modified spiral elements and a bent folded monopole radiator for omni-directional coverage.
A three-element antenna structure uses a third branch to enhance current cancellation at the feed terminal.
Discrete Fourier Transform segmentation enables consistent far-field wave rotation across wideband frequencies, overcoming narrowband limitations.
Non-integer clock ratio modulation reduces Massive MIMO transmitter complexity and cost while maintaining signal quality.
A tunable multiport antenna selects active feed terminals to adjust operating frequencies.
Segmenting the ground element creates a slot region that isolates the radiating branch from metal housing interference, enabling multi-band operation.