A lockable end cap and protective sleeve secure unused antenna RF ports, preventing exposure and unauthorized access during reconfiguration.
A sliding antenna array on a guide rail combines lens focusing and phase shifting to widen beam sweep while keeping CPE antenna height low.
A conductive cavity draws heat from the patch to support high-power RF transmission while limiting dielectric damage and frequency drift.
A thermally conductive cavity draws heat from a patch antenna, enabling high-power operation with lower temperature and stable resonance.
Dual-row active modules, clamping beams, and heat-transfer ducts enable a compact high-power antenna with thermal control under vibration loads.
A modular connector with MOVs, choke coil, and a Faraday cage protects radios, antennas, and other coupled electronics from EMP damage.
A hybrid-coupled Vivaldi radiator layout delivers omnidirectional dual-slant polarization with high current protection in a low-profile train antenna.
Antenna states are switched by detected folding angle when communication drops, improving OTA performance and data throughput.
A common module interface separates sensing from protocol handling, cutting IIoT sensor cost and complexity across WirelessHART, WiFi, cellular, and LoRaWAN.
A staggered slotted waveguide array uses elliptical slots and a dielectric radome to deliver high-gain microwave radiation in a compact conformal form.
A bent air-strip feed line shifts routing above the base to cut radiating-element interference while preserving low dielectric loss.
Adjustable metal links on conductive plates absorb undesirable currents, reducing coupling and masking phenomena while extending the frequency band.
Z-axis subreflector tracking mechanism reduces signal gain losses from asymmetric thermal distortion by maintaining beam alignment.
Axially spaced mountings with differing thermal expansion coefficients constrain lateral feed chain movement.