Thin dielectric layers and slit radiator patterns let a surface wave generator bend onto curved metal while preserving ISM-band communication.
A dielectric core with partial conductor coverage and outer dielectric stabilizes group delay, reducing intersymbol interference and bit errors.
A spherical tip particle and multi-tap resonant helix keep antenna resonance stable near conductive surfaces while enabling compact multiband operation.
RF waveguide nodes split transmissions into power and data paths, cutting cable weight and interconnect failures in harsh environments.
By thinning dielectric layers and adding a slit radiator pattern, this case enables ISM-band surface wave communication on curved metal surfaces.
Signal synthesizers replace phase shifters and sum-difference devices to widen slant angle adjustment and cut insertion loss in base station antennas.
A low-impedance transmission line with high-impedance taps enables reliable multipoint links while reducing insertion loss and switch-heavy wiring.
Waveguide channels and TEM-to-non-TEM conversion raise PCB-to-component data rates while preserving signal integrity across separable connectors.
RF power and data sent through a dielectric waveguide galvanically isolate hydrogen sensors, reducing spark ignition risk in aircraft.
RF waves through a dielectric waveguide power and read hydrogen sensors without direct wiring, reducing spark ignition risk.
Radiating coax links mesh nodes to keep underground coverage while adding higher-bandwidth, self-healing data, voice, and video transmission.
A split-node layout isolates high-temperature logic from the transponder to keep RF communication working in aircraft engine heat.
A conductive pocket between the patch PCB and hollow waveguide preserves intrinsic safety spacing while maintaining efficient microwave coupling.
Pressurized cooling air routed through hollow waveguides cools remote RF nodes in hot environments without separate cooling hardware.
Phase shifting and waveguide propagation lift data rates to 112 Gbit/s while preserving signal integrity across separable connectors.
A magnetic film on conductive passive media suppresses passive intermodulation by at least 2 dB, improving SNR in wireless networks.
Pressurized cooling air routed through hollow RF waveguides cools remote nodes in hot vehicle environments without added active cooling hardware.
A treated conductive surface and mode converters guide surface waves for low-loss wireless power and data transfer with less alignment sensitivity.
Pre-equalizing I/Q transmitter paths compensates polymer millimetre-wave fibre loss and distortion to cut intersymbol interference and raise throughput.
Reflected RF signals diagnose gas turbine waveguide faults, then switch communication to wireless to maintain operation.
RF nodes split waveguide transmissions into power and data paths, reducing cabling and enabling flexible sensor placement.