Dual-surface joint patterns couple via capacitance and induction to support multiple resonance bands while maintaining a simple single-substrate configuration.
A quad-band horn antenna system uses slope discontinuities to support radio frequency signals across multiple bands.
Bent planar antenna structure reduces height above ground plane while maintaining radiation efficiency across multiple frequency bands.
A vehicle antenna system uses switches to route signals to dedicated amplifiers and tuners.
A five-element antenna structure minimizes metal interference while maintaining wideband impedance matching.
A broadband antenna uses near-field coupling between a self-resonant element and conductive arms to operate across multiple frequency bands.
A mobile terminal antenna array uses dielectrics as resonators to generate 5G frequencies.
A multi-band antenna couples a monopole element with a parasitic T-monopole to generate additional resonant modes.
Multi-layer loop antenna reduces terahertz radiation losses and interference via high impedance surface shielding.
Active tuning elements adjust the frequency response of an isolated magnetic dipole antenna to resolve volume constraints for low-frequency signal reception.
A metamaterial ground plane antenna structure enhances circular polarization reception across wide bandwidths.
Vertical spatial stacking and ground plate isolation reduce current coupling while maintaining multi-band resonance in compact terminals.
A penta-band internal antenna uses capacitive coupling between radiating elements and PCB slots to generate resonance across multiple frequency bands.
A hybrid patch and monopole antenna system radiates electromagnetic energy across a wide angular range for stable connectivity.
All-metal antenna assembly separates signal and ground conductors with air to eliminate substrate losses.
A multi-band antenna design integrates multiple feeding sources to share clearance space within compact wireless devices.
A compact antenna structure uses a protruding portion to create a second resonating point that expands operational bandwidth.
Parasitic coupling eliminates armor apertures, maintaining protection while boosting gain.
Stacked patch antennas with optically transmissive mesh layers integrate photovoltaic functions to reduce device volume and power consumption.
A compact dual band monopole antenna uses a serpentine conductive trace to compress volumetric space while maintaining radiation performance.
Segmenting the radiating portion into distinct metal sections enables multi-band operation across GSM and UMTS standards while minimizing antenna volume.
A multiband antenna uses a segmented conductive coating on a dielectric substrate to form independent resonators for separate frequency bands.
A broadband antenna uses perpendicularly connected radiation areas to enhance signal transmission across multiple frequency bands.
A segmented antenna module uses a protective case structure to shield patterns from external pressure.
Nested radiation elements enhance antenna gain within a compact substrate, resolving the trade-off between device size and signal strength.
Protruding coupling patterns reduce electromagnetic bottlenecks in mmWave signals, maintaining gain and bandwidth while minimizing interference.