A transmission medium guides electromagnetic waves along utility infrastructure without an electrical return path.
A conical radiator coupled to a patch antenna uses a radome with convex and concave surfaces to shape electromagnetic radiation.
Segmenting macrocell coverage into small cells reduces propagation loss while maintaining high bandwidth capacity.
A satellite antenna integrates an internal anti-vibration unit with multiple damper springs to absorb mechanical disturbances.
Segmented asymmetric dielectric members suppress boundary wave sources that generate side lobes, enabling accurate radar radiation with reduced material costs.
Superposed auxiliary guides enable selective electromagnetic mode coupling through parallel windows in the orthomode transducer.
Interchangeable modules replace custom antennas, reducing manufacturing costs while maintaining measurement precision across diverse applications.
A rotating antenna device uses a radome with two inclined side wall portions to improve isolation between transmission and reception antennas.
Nested turnstile junctions with a coaxial coupling device extract the TM01 mode while maintaining low insertion losses across Ka, Ku, and C-bands.
Spatially varying dielectric constants in the beam shaper increase far-field gain and directionality without adding structural complexity.
A coaxial surface wave communication system guides electromagnetic waves along transmission media to transmit data without an electrical return path.
Segmented waveguide channels in an adapter plate use alignment pins to control launcher spacing, resolving fabrication errors at 60 GHz.
Optimizing cone angle and length via a quasistatic algorithm reduces the Q-factor ratio, enabling broader frequency ranges without increasing antenna size.
Rotating polarizers inside the waveguide adjust signal phase to eliminate losses from separate phase shifters.
Folded printed circuit board panels form a polyhedral horn antenna housing that integrates wireless communication circuitry and an antenna feed.
Asymmetric inclined planes in a frustum horn antenna array enable efficient oblique wave detection while maintaining resolution and detector density.
A tri-band satellite antenna uses a frequency selective surface to route C and Ku bands while transmitting Ka signals through a shared subreflector.
A dielectric antenna uses a stepped impedance converter in its radiating section to guide electromagnetic radiation with high directivity.
Integrated horn antenna eliminates bulky external converters by merging birefringent polarizers with the radiating structure.
Shape memory composite waveguides reduce launch volume by up to 50% while maintaining low signal loss during deployment.
TEM-horn antennas generate broadband microwave beams to resolve weight and size contradictions in high power weapon systems.
Merging feed horn, polarizer, and OMT into one unit reduces moisture ingress risks while minimizing installation complexity.
Rotating an elliptical OMT feeder adjusts relative phases between circular polarization signals to optimize cross-polarization discrimination.
Segmented waveguide antenna elements enable cost-effective mass production by reducing assembly time while maintaining high radiation efficiency.
A dielectric lens focuses high frequency signals through narrow apertures to enable reliable fill level and flow detection.
Infrared laser cutting creates precise metal housing slits with minimal taper, resolving manufacturing efficiency and signal transmission contradictions.
A dielectric antenna redirects electromagnetic beams along transmission media to enable efficient data transfer.
A waveguide mechanically holds a printed circuit board to transfer load away from the electronic component.
A guided wave communication system uses electromagnetic waves bound to transmission media to transmit data without electrical circuits.