Four coaxial plungers inject and extract signals near the aperture, reducing horn volume for mini satellites while maintaining measurement precision.
A unibody feed horn integrates the waveguide and polarizing septum into a single housing structure.
A rotating polarizer processes linear and circular satellite signals within a single waveguide structure.
A transceiver array suppresses cross-polarization interference using dynamic beamforming and polarization processing circuitry.
A multi-band ship antenna uses a frequency selective surface to enable automatic switching between C, Ku, and Ka bands.
Snap rings secure conical disks to seal radiating openings, reducing production time while ensuring media-tight closure.
A waveguide arrangement with potential separation provides electrical isolation between measurement electronics and antennas.
Segmented 2x2 modules reduce beamforming network mass and volume while ensuring isolation between linear polarizations.
Replacing RF Butler matrices with digital signal processing reduces insertion loss and system complexity while maintaining bearing accuracy.
A hybrid antenna merges a radiating plate with a waveguide to adjust frequency dimensions.
Segmented conical and cylindrical components enable high gain WiFi antennas while reducing manufacturing costs.
Segmented waveguide and dielectric rod withstand high temperatures while minimizing reflections for radar level gauging.
A capacitively grounded cable bracket uses dielectric adhesive tape to feed omnidirectional broadband antennas without galvanic contact.
Recessed walls in a waveguide beam-forming feature shape radiation patterns to reduce grating lobes that degrade radar detection accuracy.
Visible light markers enable precise azimuth and elevation adjustments, resolving millimeter-wave beam misalignment caused by wind-induced platform motion.
A reflecting dielectric antenna system guides wireless signals through aligned reflective surfaces to an aperture.
A cylindrical microwave load uses a rotating reflector to redistribute power density across absorptive coatings.
Conical-column monopoles paired with disc-cone reflecting plates boost high-angle gain, expanding coverage radius while reducing power consumption.
Press fit antenna horns eliminate bulky clamping structures and reduce mass while maintaining signal isolation through integrated compliant coupling members.
Conductorless dielectric cores select specific beam patterns in a single antenna, reducing propagation loss for high-bandwidth data transmission.
A frequency steered phased array antenna uses quarter-wavelength spaced coupling holes in a serial feed line to drive horn antennas for broadband radiation.
Embedding a multiplexer inside the feeding circuit reduces antenna weight and width while supporting more frequency bands.
Curvilinear lenses correct defocusing aberrations from off-center sources, reducing antenna mass and size while maintaining high beam quality.
A phase-conjugate antenna system pairs receive and transmit elements in a mirror-image arrangement to produce overlapping beams.
A tapered cavity resonator antenna guides electromagnetic fields through a dielectric feed to achieve wide bandwidth and high directivity.
A bi-conical antenna uses a meandered counterpoise to transform impedance and shorten physical dimensions.
A monolithic orthomode transducer uses a hybrid spline taper to separate orthogonal polarized microwave signals.
A lens antenna array mounted on vehicle windows directs radio signals through refraction to shape radiation beams.
Stacked azimuth combiners reduce complexity and space requirements while maintaining performance across a broad frequency range.
A dielectric antenna uses a pitted surface pattern filled with high-dielectric material to radiate signals efficiently.
Integral radio frequency waveguides in PCB layers transmit millimeter waves, overcoming copper induction limits and optical costs.
Additive manufacturing merges the antenna element with the PCB substrate, eliminating plug connections that cause impedance changes and reflection losses.
A frequency selective surface panel uses segmented zones with optimized metallic patterns to manage electromagnetic wave transmission and reflection.
A smooth-wall horn antenna uses multiple slope discontinuities to transmit and receive radio frequency signals across 20, 30, and 45 GHz bands.
A low-profile CTS flat-plate array antenna integrates a mode switching layer with H-type single ridge waveguide power dividers.
Variable permittivity dielectrics compensate for pressure and salinity changes, enabling high-speed data transmission without complex external sensing.
Three coupling slots in an orthogonal mode junction coupler separate polarization modes, reducing source mass and complexity while achieving -50 dB decoupling.
A process isolation molded part combines PTFE and polypropylene to protect the coupling unit from environmental influences.
A wideband microstrip antenna uses a coupling patch and air layer to achieve strong directivity.
A dielectric antenna array couples electromagnetic waves into a transmission medium to guide propagation along existing infrastructure.
Evanescent coupling transfers signals between a transmission line and antenna element within parallel conductive waveguide plates.
A threaded connecting component with a conductive sleeve secures a low-noise block converter to a filter while providing an internal grounding path.
Real-time impedance adjustment compensates for variable loading conditions from user physiology, preventing antenna detuning and efficiency degradation.
A horn feed uses coaxial cylindrical dielectric walls to stabilize the central waveguide and enhance coupling efficiency.
A waveguide system generates electromagnetic waves at millimeter frequencies to induce guided propagation of non-fundamental modes.
A reflective plate spaced behind the antenna confines energy to reduce propagation loss and extend transmission distance.