A radio network node segments antenna elements into interleaved sparse sub-arrays served by independent transceiver subsets.
A multilayer circuit board integrates a folded loop antenna to distribute surface currents across multiple planes.
A dual-band strip line monopole antenna system uses optimized RF chokes and reflector elements to achieve directional beam patterns at multiple frequencies.
A coaxial cable outer conductor serves as a parasitic element for a lower-frequency antenna, reducing overall device size.
A radio communication device uses a spiral conductive object and nested integrated circuits to resolve mutual interference between LF, HF, and UHF bands.
A multi-band antenna structure uses a grounded isolation portion between radiating elements to enhance signal separation and radiation efficiency.
A shorted monopole antenna uses a single folded metal sheet to create a compact radiating structure.
Capacitive coupling between dual antennas generates distinct resonant modes, covering the LTE-700 band without a switch structure.
A switched tuning line antenna assembly couples a parasitic tuning plate to a radiator element via a sandwiched dielectric region.
Segmented slits on the oscillator body expand effective bandwidth and improve signal intensity without external matching circuits.
Magnetic field electrode connects feeder portion to radiation electrode on insulator board.
A reconfigurable input matching circuit couples a diversity radiator to a ground plane, extending the electrical length of the reference structure.
A compact multiband antenna uses a coupling unit to expand frequency range via capacitive effects.
Merging a PIFA resonator with a dielectric-filled slot structure enables multi-band operation while maintaining compact vertical dimensions.
A reflective superstrate with a narrow gap regulates wireless signal phase within a compact antenna module.
A sensor module embeds a radiator in resin while using an insulated metal member as a parasitic element to resonate radio waves.
A full band sleeve monopole antenna extends resonant electrical length using matching elements to achieve compact physical dimensions.
Split return paths bridge gaps between grounds and resonators, stabilizing signal performance against external interference.
Integrating two dipoles with a central slot fills dead zones in the radiation pattern, achieving omni-directional coverage for MIMO systems.
A multi-tap switchable antenna apparatus alters operational frequency bands by dynamically changing electrical length through discrete switching devices.
Segmented winding sections with triangular structures provide broadband coverage across separated frequency gaps while reducing aerodynamic drag.
Vertical stacking of juxtaposed antenna assemblies achieves high peak gain while reducing overall length for miniaturized access points.
Segmented antenna arms toggle via a switch to balance performance in limited space while avoiding coupling issues.
Embedding a tag chip within a dielectric layer using via-holes connects terminals while protecting the chip from external impacts and humidity.
Varying resonator surface areas in a tapered antenna array distribute the electrical field uniformly, reducing mid-portion concentration and side lobes.
A multi-band antenna employs a planar reflector and inductor-capacitor circuits to reduce interference and distortion between radiating elements.
A nested antenna structure uses a second element between the first element and ground conductor to resonate at distinct frequencies.
A hybrid on-board unit integrates WAVE-V2X and LTE-V2X modules with a controller that selects signals based on intensity for transmission.
A tunable multi-feed antenna adjusts frequency characteristics by varying signal phase and amplitude across multiple feeds.
A dual-band dual-polarized antenna uses square and cross-shaped dipole modules to transmit orthogonal polarizations across two frequency bands.
Dynamic feed switching shifts current hotspots to maintain performance stability when user interaction detunes compact antennas.
An open slot trap forms a high impedance path with the dipole antenna lower half to provide reliable electrical isolation on standard circuit boards.
A frequency selective grounding circuit uses resonators to form a harmonic trap that grounds specific frequencies on a metallic housing ring.
Frequency selective impedance surface converts surface wave energy into leaky-wave radiation to improve antenna gain.
A multi-band compound loop antenna merges a magnetic loop with an electric field radiator to radiate signals at independent frequency bands.
Nested conductive tracks on a dielectric substrate reduce insertion loss while maintaining compact size across multiple frequency bands.
A compact antenna device uses a reflection board between radiators to direct main beams in the same direction.
A broadband antenna uses multiple radiation bodies and a coupling loop to generate distinct resonance frequencies for efficient signal feed-in.
Merging radiating elements into the terminal's structural frame supports multi-band frequencies without increasing device volume.
A base station antenna uses orthogonal oscillator units and power dividers to distribute signals efficiently.
A surface-mount multi-band antenna uses a three-dimensional radiator arrangement on a ceramic carrier to optimize signal transmission.
Series-connected pillar radiators expand bandwidth and sensitivity while solving the trade-off between small antenna size and wide frequency range.
A three-dimensional phased array antenna system steers electromagnetic signals electronically across all azimuth and elevation angles.
A dielectric resonator antenna embeds within a multilayer substrate using stacked conductive plates and metal via holes to form vertical interfaces.
A dual-band antenna uses an insulating support portion to position radiating components securely on a substrate.
Separating detection capacitance from the feeding path preserves antenna bandwidth and prevents proximity sensors from degrading signal transmission efficiency.
Nested planar antenna elements reduce launch volume for small satellites while preserving isoflux radiation patterns and dual polarization capabilities.
A segmented metal frame acts as an antenna resonance arm to radiate signals across multiple frequencies.
Integrating quarter wavelength VHF and UHF radiation lines on one substrate enables full frequency reception without active amplifiers or telescopic mechanisms.