Electron-tunneling RF witness films improve electromagnetic signal sensitivity and distinguish reversible from non-reversible breakdowns.
A separating barrier keeps potting compound out of the antenna-lens gap, preserving beam shaping, sidelobe suppression, and explosion-proof radar reliability.
Embedded antennas in glass-core package substrates replace wiring to improve high-frequency signal integrity, bandwidth, and package density.
A hermetic RF module uses a coupling pin into the waveguide cavity to amplify and process Ka-band signals in tight CubeSat mast space.
A foldable manpack antenna uses support rods and a flexible connector to maintain near-4π Ku/K/Ka coverage in motion or at the halt.
Biased hinges and a flexible conductive layer let a horn antenna stow compactly in small satellites and deploy with low signal loss.
Embedded radiating horns and phase shifters turn a missile nose cone into a compact radar array with low sidelobes and minimal aerodynamic penalty.
Electromagnetic Doppler sensing replaces optical image tracking, enabling pointing motion detection on glass, metal, and single-color surfaces.
An engineered plastic-water dielectric structure matches tissue permittivity to cut on-body antenna loss across wide frequencies.
By nesting the antenna module in a main board through hole, this case saves space for slim mmWave devices without sacrificing signal transmission.
A metallized 3D-printed plastic antenna cuts radar weight and power use while preserving wide-field obstacle detection on unmanned vehicles.
A thin low-k shell filled with high-permittivity powder forms a lighter compact antenna lens that flattens phase fronts and eases support.
A stacked dual-radiator AiP extends the vertical current path with a metal connector to raise 28 GHz end-fire antenna bandwidth and gain.