Removing dielectric substrates eliminates loss in millimeter wave antennas, enabling 32 dBi gain and doubled data transfer rates.
Embedded metalized waveguide cavity reduces signal attenuation and manufacturing complexity for millimeter wave applications.
A waveguide fed stripline antenna merges transmission lines on a single substrate to enable high-frequency signal transfer.
A tapered transmission line expands width to maintain constant impedance for efficient electromagnetic wave radiation.
This integrated adapter merges waveguide-to-coax transition with RF board mounting using nested conductors and lamination processes to reduce device volume and weight.
Segmented corporate waveguide networks connect divided polarizer outputs to common ports, minimizing inter-element distance and preventing grating lobes.
A substrate integrated waveguide antenna radiates orthogonal electromagnetic waves using a parallel plate resonator.
A blind mate waveguide flange provides tool-free connections with relaxed alignment tolerances.
An integrated circuit package uses a conductive waveguide to route high-frequency signals, reducing power loss and improving transmission efficiency.
Circuit antennas launch electromagnetic waves to induce guided propagation along transmission media, resolving bandwidth and loss trade-offs.
A monopole antenna system within a co-located vent structure uses grounding walls to define aperture width and direct electromagnetic radiation.
Waveguide coupling eliminates substrate heating losses in 77 GHz automotive radar, enabling efficient power division and beamforming.
Integrating waveguide and stripline on one substrate eliminates bulky intermediate adapters, reducing transition weight while maintaining low insertion loss.
A dielectric waveguide antenna matching unit controls serial and parallel reactance to perform impedance matching between the radiator and air.