A flexible multilayer RFID patch bonds to the tire inner liner to preserve read reliability without causing layer separation or cord breakage.
Tapered radiation element widths broaden antenna radiation directions while preserving strong radio wave transmission and reception.
Capacitive and inductive coupling members offset impedance in U-band RF feeding, improving power conversion and cable reliability.
A lowered wall structure creates a compact cavity around the radiating layer, boosting antenna gain without enlarging the module.
Overlapping planar electrodes replace metal ball coupling in a liquid crystal phase shifter, improving controllability and simplifying manufacture.
A spherical reflector and split-surface dipole radiators deliver compact ±45° dual polarization with 360° coverage for small cell MIMO.
Printed radiating arms, slots, and metallized pillars shrink 5G MIMO antenna volume while preserving bandwidth, isolation, and gain.
A frequency selective surface and dielectric layer help a display panel boost 5G millimeter-wave antenna gain without harming light transmission.
Embedded dielectric and gas-filled vias tune resonator modes to widen antenna bandwidth while preserving stable radiation and PCB compatibility.
Rotationally symmetric end groups with 180°-rotated center elements improve axial ratio in odd-row circular polarization arrays.
An optical waveguide layer in a flexible PCB carries high-rate data to antennas, cutting interference and easing 5G bandwidth limits.
Phase-tapered splitters and 90° hybrid transformers create multiple high-gain beams without active switching, cutting antenna size and complexity.
Longitudinal through-hole electroplating and patterned cutting stabilize chip antenna production, reducing defects, waste, and cost.
A hard insulating layer over resin-covered RF components eases board-bending stress and improves heat dissipation to limit characteristic degradation.
A tightly spaced sensing metal and grounding path reduce antenna interference while preserving proximity sensing and SAR-responsive signal control.
A localized high-k dielectric zone in a fan-out antenna package improves 5G/6G signal transfer while reducing capacitance, noise, and layout interference.
Parallel LC resonator layouts sharpen attenuation in a frequency selective surface without shrinking conductive line width or spacing.
An external metal layer tied to fixed potential simplifies liquid crystal antenna fabrication, improving yield and lowering production cost.
Elliptical radiating and ground elements with magneto-dielectric coating help compact handheld antennas keep wide bandwidth and stable matching.
A single-feed antenna uses guiding structures to radiate in multiple directions, expanding coverage without complex array feeding.
Four rotationally symmetric element types are sequenced so adjacent antenna elements differ, improving axial ratio in odd-row circular polarization arrays.
A separated ground terminal lets a split-ring resonator work as a standalone part while enabling flexible board connection and improved radiation.
Integrated TIM, heat sink, fan, and coaxial via feeding improve millimeter-wave antenna heat dissipation, impedance matching, and EMI isolation.
Multiple antennas are nested on the frame, support plate, and circuit board to boost signal reception in less space.
Perforated air cavities in a ceramic stacked patch antenna lower effective permittivity to widen dual-band GNSS bandwidth without enlarging size.
A protruding metallized contact aligns the PCB antenna through a board slot and enables reliable reflow-soldered SMT assembly.
Voltage-tuned liquid crystal segments adjust microwave phase with distinct shift states while limiting insertion loss and power use.
Opening-aligned electrodes and microstrip feeds improve Sub-6 GHz bandwidth and radiation efficiency while limiting space loss.
Opposite-side split-ring resonators and crossing feed wires preserve dual polarization while maintaining orthogonal radiation patterns.
Segmented radiation bodies and shared lines boost gain, limit coupling, and preserve transparency in thin flexible displays.
A cross-polarized antenna module uses ground plane openings and spiral segments to improve UWB isolation, gain, and EV pad alignment accuracy.
Angled radiating portions in a single antenna array create orthogonal polarization patterns without multiple antennas or lengthy fine-tuning.
A meander-line microstrip antenna balances electric and magnetic fields at low frequencies to improve near-field wireless power transfer.
Using an LCP substrate, series patch arrays, and concave slots, this radar antenna widens bandwidth and reduces interference.
RFID-based transceiver programming enables tap-and-go provisioning, cuts inventory burden, and supports flexible service-provider configuration.
A twisted Z-shaped three-orthogonal dipole antenna uses λ/4 and λ/2 elements to maintain uniform polarized wave output across device orientations.
A phase-shifting modulator replaces bulky phase shifters to cut loss, power, size, and weight in compact beam-steering antenna arrays.
Multi-plane conductive wires create magnetic and electric dipole resonance to track glucose levels non-invasively through frequency shifts.
Substrate trenches and smaller SMT antenna elements suppress surface waves and coupling, extending phased array scan range.
Controlled TiO2 aspect ratio in a PPE-based resin balances dielectric constant, low dissipation, and moldability for telecom components.
A perforated conductive plate varies opening diameters to focus millimeter waves with low insertion loss, lower weight, and better heat handling.
Placing the electronic component between the second pad and rim strip rubber reduces ply influence, improving layout precision and communication durability.
Opposite-side split-ring elements on a conductive board preserve dual polarization while improving radiation pattern orthogonality.
Staggered cuts in a dummy mesh help conceal the antenna unit while preserving radiation performance and reducing signal loss.
Switchable frequency selective elements replace phase shifters to widen steering angles while preserving directivity in a dual-polarized antenna.
Conductive elements above capacitive pixels boost signal strength on curved or full-screen fingerprint sensors, improving accuracy and comfort.
An adaptation line at the mains conductor matches antenna impedance, cutting PCB area, RF losses, and unnecessary coupler current.
A cryogenic loop antenna and LC oscillator enable coherent quantum microwave transmission through a room-temperature waveguide while suppressing thermal noise.
A hinged lid doubles as a non-slip boat step while guide slots and magnetic retention let the seat stow compactly and deploy easily.
An avoiding groove in the circuit board nests the piezoelectric receiver, freeing display area and enabling a thinner, lighter mobile terminal.