Thermoelectric coolers target antenna subsets based on array visibility and activation, reducing cooling weight while keeping temperatures stable.
A filled dielectric path between the feed circuit and radiating electrode suppresses lens-interface mismatch, reducing reflection and preserving antenna gain.
A foldable housing spaces UWB antennas by device state to preserve positioning accuracy while using internal space across separate housings.
Compressed heat sheets and a protruding heat sink keep millimeter-wave RF elements in thermal contact despite substrate warping.
A cavity antenna layout uses black-border and clearance areas to cut metal-housing signal shielding while preserving strength and appearance.
An inclined antenna and FPCB layout uses side-wall space near the camera to shorten routing, reduce noise, and improve radiation performance.
A camera support member and compression member secure the camera module without brackets, cutting assembly cost while reducing detachment and vignetting.
An annular signal channel and separated grounding layout let an NFC antenna work through the touch pad without disrupting electrode sensing.
A flooded waveguide boosts radar reflections through a permeable window, enabling reliable fill level sensing of low-permittivity media like liquid hydrogen.
A grooved metal shield and perforated sensing area isolate motherboard interference while preserving thin NFC transmission and reading distance.
A guide rail, bracket, and lever let heavy RRH units slide into antenna connectors quickly while maintaining robust RF contact under vibration.
A ring-shaped ground unit doubles as a radiating element to widen bandwidth and cut antenna interference in compact electronic layouts.
A conductive support frame grounds the coaxial shielding layer to improve antenna impedance matching while saving space in smart glasses.
A circular polarized spiral antenna uses multiple arms and two field components to keep hearing aid links stable across changing orientations.
Segmented flexible PCBs and a shielding layer protect sliding display circuits from deformation and external signal interference.
Housing angle detection switches wireless modes to match antenna spacing in foldable devices, reducing short-range link degradation and latency.
A metal-insulator-metal antenna integrates rectification into each patch to convert high-frequency AC signals to DC without extra diodes.
Acute-angle radiating elements suppress upper sidelobes without amplitude weighting, preserving antenna efficiency and satellite coexistence.
Gaps in a conductive stiffening layer protect a semiconductor antenna package from fragility while preserving antenna operation and heat flow.
A shared feed network lets one antenna port drive two columns with band-specific phase shifts, expanding beam coverage while cutting phase shifters.
Concealing wireless radios inside a billboard support pole preserves streetscape aesthetics while avoiding ad-slat interference with signal radiation.
Curved end caps, ridges, and surface protuberances delay airflow separation to cut antenna drag and wind load without reducing RF capacity.
Layer thickness tuned to minimize reflected waves helps glass-integrated antennas maintain GHz signal strength across changing incident angles.
Filling the space between the radiating electrode and lens with dielectric resin removes the air layer, suppressing reflection and gain loss.
Curved U-shaped differential lines routed around support-plate openings cut signal loss in the bendable section of foldable displays.
A multi-material radome uses a hydrophobic outer layer, spacer, and elongated members to protect antennas while limiting RF attenuation.
Electronic phase shifting and antenna selection steer OAM radio waves in multiple directions without mechanical rotation.
Optical LO signals and a Mach-Zehnder modulator drive a UTC photodiode antenna above 100 GHz while reusing the same path for transmit and receive.
Slits in the antenna structure redirect PCB magnetic fields toward the rear surface, reducing front and side radiation that harms hearing aid compatibility.
A staggered dual-polarized and 3D end-fire layout raises massive MIMO panel gain in limited aperture area while preserving scanning.
Low-loss dielectric layers, a superstrate, and a radome help millimeter-wave antenna arrays cut attenuation, warpage, and link instability.
Segmented connection members across a multi-hinge fold reduce stress concentration and improve board-to-board reliability in compact large-screen devices.
A PCB matching structure switches radiating elements between blocked and passing modes to reshape antenna gain without moving parts or phased arrays.
A stacked battery-antenna layout uses overlapping end-surface projections and a flexible board to save space while limiting earphone signal interference.
Alternating fixed and inverted antenna phases speeds wireless power phase setting and raises received power for charging.
A protruding panel antenna layout improves radiation and limits interference while adding wireless communication and proximity sensing without extra display space.
A flat transparent antenna between glass layers replaces shark-fin modules, preserving aerodynamics, aesthetics, and GNSS reception.
A selector circuit lets multiple ID storage circuits share one antenna and RF front end, cutting tag count, space, and lifecycle tracking conflicts.
Redistribution routing and insulating encapsulation improve 3D IC component integration, electrical connection yield, and packaging cost.
An integrated phase shifter and calibration board uses meander traces and equal RF cables to prevent phase mismatch in beamforming antennas.
Integrated amplifiers and tunable couplers in metasurface antenna elements improve beam steering, gain, and reflection loss control.
Modular wood units, laminar covers, and a tensegrity wire net cut corrosion, visual impact, and maintenance burden in telecom towers.
A hollow foamed connector supports the antenna secondary reflector while minimizing wave blockage and resisting heat-humidity deformation.
A window-facing array antenna uses conductor spacing and separated grounds to suppress downward radiation while maintaining transmission through glass.
Multi-feeding lets fewer millimeter-wave antenna elements keep gain while reducing space and limiting interference in electronic devices.
Passive panels redirect and absorb horizontal antenna radiation to cut 5G base station interference without changing the gateway antenna.
Dual-state sub-array switching suppresses upper side lobes across beam tilt ranges, cutting inter-cell interference without mechanical RET cost.
An air layer around the display antenna cuts dielectric loss and unintended radiation, improving high-frequency gain and signal reliability.
A minimum-voltage radiator tap separates capacitive sensing from the RF path, improving proximity detection accuracy and layout flexibility.
A nested RF-in-baseband mounting layout beside the antenna cuts installation space and IF cable length while improving maintenance access.
Strategic gaps in the RF module mounting board cushion thermal deformation, reducing stress and characteristic degradation during temperature cycling.
A coaxial PCB path couples the MMIC directly to a ridge waveguide, cutting RF transition losses and improving radar sensitivity.
A gap-fed metal-frame antenna layout uses extension members to separate feed points from slits and adjacent antennas, preserving feeding performance.
Dual antennas placed near the nib and pen end switch around hand effects, saving barrel space while keeping stylus wireless performance stable.
A hinged flexible dipole end enables gap-free capacitive antenna coupling without soldering, reducing assembly time and alignment tolerance.
Nested side slots and dual capacitive feeds let this antenna cover multiple bands from flexible positions while meeting SAR limits.
A tuned metal wall in an SIW antenna boosts gain while keeping array spacing narrow for beam control and amplifier integration.
A folded dipole antenna array improves wireless microphone range and signal stability by using spatially separated elements to reduce dropouts.
Segmented RFID tracking regions let implanted sensors identify multiple animals at once and capture core temperature without video lighting limits.
Multiple concentric OAM antenna arrays with shrinking radius gaps and phase shifters improve channel response and beam transmission efficiency.
UE location data guides base station radiation angle steering to expand 5G coverage and maintain signal intensity with lower propagation loss.
Interleaved heatsinks, fan airflow, and foldable integrated antennas make the UAV controller easier to cool, store, and reconfigure.