A phased array sets transmit element phases using a fitted basis function to determine optimal electromagnetic signal delivery.
Segmented titanium housings with nonconductive seals reduce eddy currents to improve wireless recharge efficiency.
Encapsulating commands store instruction sequences in RFID tags for later autonomous execution.
Inductive coils supply power to a wireless thermal printhead, removing fragile cables that cause noise interference and complicate maintenance.
Shield members block high-frequency magnetic fields to prevent radio communication interference between transmitting and receiving units.
Alternating electric fields enable contactless sensing of polyisoprene wear without compromising material elasticity.
A radio IC chip mounts on a small feeder circuit board to determine signal frequencies via electromagnetic coupling.
Communication module enables ad hoc mesh networking to resolve network configuration complexity in smart home environments.
Asymmetric contacts and magnetic fields prevent polarity reversal during insertion, resolving complex mechanical coding issues.
A wireless power transmitter adjusts antenna phases to maximize receiver power.
Integrated transformer module collects electrical and network data via wireless mesh transmission.
A multi-layer electromagnetic coupler arrangement uses a differential transmission line loop to achieve efficient reactive near-field coupling with RFID tags.
A single test set generates signals routed through merging units to verify protection relay operation.
A smart install application guides users through intuitive questions to configure display constructs accurately.
A wireless power transmitting coil uses segmented magnet units to attract and position diverse electronic devices for charging.
Surrounding electrical cables with isolated conductive patches harvests energy via capacitive coupling without direct conductor contact.
Slicing rolled metal foil rods into thin disks resolves low throughput and high resistance trade-offs in flat coil manufacturing.
Replacing mechanical switches with an LED operating element eliminates wear and space requirements while maintaining reliable switching operations.
An RF hydration sensor wirelessly receives power to drive a thermal source for temperature sensing.
Resonant cavities in a photovoltaic collector convert optical energy to electrical power, removing bulky electrical connections from implantable devices.
Asymmetric spacing between resonant capacitors reduces heat accumulation, improving thermal resistance during high-power wireless transmission.
A position estimator compares test parameters to calibration data for spatial positions.
Integrating radio receivers into standard switchboxes eliminates complex wiring upgrades while maintaining system reliability.
A non-contact power feeding device employs a sub-coil and second rectifier circuit to clamp excessive output voltage caused by coil positional shifts.
A power control apparatus updates load instruction values and voltage parameters to adjust alternating current output in wireless transmission systems.
A protective mobile case integrates wireless charging coils, detachable modem modules, and environmental sensors to extend device functionality.
A 4P6T multi-way switch consolidates transmission and reception ports, reducing link loss and improving SRS switching efficiency across four antennas.
A dual-conductor assembly generates electromagnetic oscillation to transmit energy in wave form.
Inclined end face refracts parallel light onto a semiconductor receiving section for efficient photoelectric conversion.
A wireless power transmitter adapts foreign object detection using receiver load indications.
A relay apparatus in a wireless power transmission system uses amplitude modulation and feedback control to transmit data.
A transformer steps down voltage for the primary winding, enabling electromagnetic induction that eliminates electric discharge risks in damp environments.
nMOS and pMOS limiter circuits constrain antenna tank signals, eliminating high-voltage component requirements.
A power supply apparatus uses a control unit and user interface to manage electricity flow through one-time activation codes.
An asymmetric loop antenna intersection cancels electromagnetic wave noise while maintaining wireless power transmission capability.