An annular groove between loop sections increases magnetic field resonance to correct asymmetrical radiation patterns caused by rectangular antenna shapes.
A split-via structure enables vertical wire bonding on an antenna integrated printed wiring board.
Integrating split-ring resonators alters effective magnetic permeability, reducing antenna height while maintaining reflective performance.
A helical antenna extends along a tubular structure to enhance electromagnetic signal reception and transmission capabilities.
A planar array antenna uses a strip conductor to electromagnetically couple power to loop elements arranged at one-wavelength intervals.
Folded radiators reduce antenna profile height to meet miniaturization demands without sacrificing bandwidth or directivity performance.
Directional antenna shielding reduces electromagnetic interference between distinct wireless technologies while maintaining a compact device form factor.
Embedding a metal staple in the substrate provides structural support that withstands stress during connector attachment, improving mechanical reliability.
A printed antenna uses an arc-shaped guiding portion to define a slot that creates capacitive loading for enhanced radiation.
Rotated spiral antenna patterns prevent resonance frequency interference while minimizing substrate size.
A six-element antenna array measures electromagnetic wave incidence using distinct radiation patterns and a magic tee component.
Fibonacci-distributed apertures in a planar cavity replace mechanical scanning to improve imaging speed and reduce circuit complexity.
Concentric annular reflectors redirect waves from a sectorial magnetic dipole to achieve 180-degree azimuth beam width without complex phase shifting networks.
A radiator with a slot and asymmetric edges expands bandwidth from 2.45 GHz to 7 GHz while minimizing antenna size.
Varying transmission line width reduces high-frequency signal loss by ensuring continuous impedance matching across the NFC device path.
A spiraling surface antenna emits horizontally polarized omni-directional signals via an internal cavity and longitudinal opening.
A multilayer metamaterial isolator uses metallized resonator loops to block electromagnetic energy between adjacent antenna elements.
A tube-shaped substrate with distributed antenna elements enables electronic beam steering without mechanical components.
A leaky-wave antenna uses a composite right/left-handed transmission line to emit vertical and horizontal polarization components.