Layered dielectric films tune surface lattice resonance in absorption metamaterials, preserving peak intensity across air, liquid, and moving environments.
Internal LO signals and adjacent-tile coupling enable startup phase alignment across phased array tiles without external hardware.
CORDIC-based phase shifting cuts multiplications in digital beamforming, lowering phased array antenna power use without losing phase control.
A reflector redirects antenna output to an RIS plate, improving radio wave propagation while reducing heat and integration complexity.
Additive-doped fiber composites absorb radar energy within the load-bearing matrix, cutting signature without heavy coatings or bonding steps.
Layered transparent conductive patterns tune EM wave loss and phase to preserve stealth performance while avoiding visible flicker.
Meta-structure antenna elements steer sounding signals to detect object location and mobility with faster scanning and lower processing load.
Two rotated antenna layers let the full metalens surface form two focal points with stronger focusing and controllable relative intensity.
A dual-substrate air-gap absorber uses resistive FSS and metasurfaces to widen bandwidth while staying thin and stable at oblique angles.
Faceted RF-photonic phased arrays use optical up/down-conversion and photonic ICs to maintain beam forming across wide solid angles.
Adjustable tuning stubs in a tapered slot waveguide transition enable tunable passbands, low loss, and better out-of-band attenuation.