Capacitively coupled regions eliminate conductor-to-conductor contacts, reducing passive intermodulation in high-gain multi-band arrays.
A multi-frequency antenna uses a filtering element between two resonance units to generate distinct resonant frequencies on a compact substrate.
A coupling module enables multiple communication modules to share a single antenna via signal routing and isolation.
A multi-band antenna uses a frequency multiplexing circuit to route signals across multiple bands through a single element.
A communication module combines plate-shaped and three-dimensional antennas with integrated circuits to manage signal processing.
Dual-band resonating elements on a dielectric carrier desensitize antenna performance to slot electromagnetic characteristics.
A parasitic antenna element shifts resonance frequency when loaded by a user body to reduce emitted radiation power.
Gapped groove excited by hinge creates ultra-wideband antenna, resolving isolation issues in narrow bezel devices.
Electromagnetic coupling between a parasitic element and the antenna improves transmission characteristics within compact portable device housings.
Segmented radiation elements and stacked dielectric layers enable a compact multiband antenna with wide bandwidth and circular polarization.
An asymmetric dipole antenna connects metal portions on opposite dielectric surfaces to improve impedance matching and operating bandwidth.
A polyhedral chip antenna receives FM and Bluetooth signals through a winding radiant pattern on a flexible circuit board.
Parasitically coupling WLAN antennas to the handle lug creates a multi-band radiator that eliminates chassis space conflicts and electromagnetic interference.
A MIMO antenna uses parallel and central dipoles on a substrate to enhance signal transmission quality.
A half-wavelength antenna body and quarter-wavelength stub radiate signals while occupying less than 3 millimeters of clearance space.
A handheld device antenna uses a ground plane slot and isolation elements to route signals efficiently.
A multiband monopole slot antenna uses a step-shaped microstrip feedline to excite three distinct resonant slots.
Current reversing elements optimize directional flow across conductive parts, enhancing radiation effectiveness in physically small antennas.
A wearable bezel antenna uses a differential feed structure to excite multiple resonant modes across NFC, Wi-Fi, cellular, Bluetooth, and GPS bands.
Slanted ground plane eliminates azimuth nulls while asymmetrical radiators maintain low profile for aesthetic ceiling mounting.
A hybrid antenna structure merges a slot antenna and planar inverted-F antenna on a flex circuit substrate to support multiple wireless communication bands.
Physical separation of adjacent band filters reduces intermodulation products while antenna swapping maintains minimal circuit complexity.
A wearable device integrates a resonant antenna circuit on an insulated dielectric sidewall within a metal casing.
A dipole antenna uses a conductive bridge to connect elements to a plate, enabling efficient DC grounding without extra components.
A compact antenna structure uses a U-shaped feeding portion nested in a grounding element notch to achieve dual-resonance modes.
A capacitively-coupled dual-band antenna merges monopole and patch elements for high-efficiency omnidirectional radiation.
Cavity antennas isolate resonating elements from conductive housing interference, enabling precise resonance tuning and bandwidth broadening in compact devices.
Dipole arrays on opposite sides of the ground plane merge dual-band signals to achieve high gain and low ripple while maintaining a compact form factor.
Nested monopole and patch radiating elements reduce antenna footprint by 70% while maintaining high radiation efficiency for mobile handsets.
A compact antenna element uses an inductive element to couple radiation metal elements for dual-band operation.
A dual-band antenna uses a serpentine radiation body to transceive 2.4 and 5.0 GHz signals on a substrate.
Punching holes in the dielectric layer lowers the effective dielectric constant, reducing antenna volume and manufacturing costs without sacrificing gain.
Embedding three-dimensional antenna structures inside the mold compound expands operating bandwidth and reduces parasitic radiation.
A multi-band antenna uses spaced radiators and feeder gaps to enable electromagnetic coupling for RF signal transmission.
PUMA array illuminates a modified Luneburg lens to form multiple simultaneous beams across wide angles.
Segmented ground plane slots mediate electromagnetic coupling to prevent frequency shift and enhance front-to-back ratio without increasing antenna size.
A hybrid strip antenna uses a loop and L-shaped element to resonate at specific frequencies.
Nested dual-feed Cassegrain antenna resolves weight constraints by combining X band weather detection with high-resolution W band terrain mapping.
A compact antenna apparatus integrates high-pass and low-pass filtering devices between the antenna body and feeding terminal to enable multi-band operation.
A reverse helical beam antenna uses a conductive polymer composite radiator surrounded by spiral ground structures to transmit signals.
A dielectric block with a groove and conductor supports dual-frequency operation as both a dielectric resonator and Fabry-Perot antenna.
Dynamic impedance matching circuit adjusts antenna radiator connections to support multi-input multi-output and single input single output modes.
Interleaving mMIMO arrays with a distribution network reduces antenna footprint while managing signal routing complexity for 5G site upgrades.
A 5G MIMO antenna uses inverted-U and monopole branches to generate dual resonances for broadband operation.
A broadband antenna uses a U-shaped radiating element to enhance electromagnetic wave reception and transmission efficiency.
A planar multi-band antenna uses folded conductive strips to provide polarization diversity and extended communication range.
Nested dual-frequency patch antenna design expands operational bandwidth while reducing multipath reception through specific protrusion configurations.
Capacitive sensor detects human approach to reduce antenna output power while electrostatic protection element shunts high-voltage transients to ground.
Circular sector magnetic dipole with rectangular notches and shorting pins creates three resonance points for wide-angle scanning.
A wafer-level dipole antenna suspends a center conductor within a coaxial shield to improve high-frequency performance.