A control system defines an optimal input voltage for a voltage converter to match rectifier output impedance.
A control circuit adjusts oscillation pulse density in a wireless power transmission device to manage energy flow.
Segmented power architecture uses receiving coils to harvest near-field energy, resolving size constraints while maintaining device longevity.
Direct memory access modules transfer stored PWM values to registers, enabling dynamic power output adjustment for varying load conditions.
Transmitter pulses power levels to record receiver responses, differentiating foreign objects from coil misalignment using calibration baselines.
A variable form factor transmitter adapts its physical shape to transmit RF power across a pre-determined area.
Multi-level electrical distribution control system segments data handling across hierarchical levels to enable autonomous closed-loop operations.
High-value resistive load in passive interface circuit enables charging at low RF energy levels beyond 10 meters.
A wireless power transmitter driver generates cyclic drive signals to control switch elements in a parallel resonance circuit.
A sensing grid detects a receiver location while a two-dimensional linear motor moves the transmitter coil to eliminate precise alignment requirements.
A merging unit control unit determines power quality information from voltage and current input data for substation automation.
A port connection circuit uses a controller to switch between input and output states for a single contact.
A self-powered torque measurement system harvests rotational energy to power strain sensors on a vehicle's rotatable member.
A universal contact input status detection circuit maintains constant wetting current across wide voltage ranges using a current mirror.
Automated analysis of sensory measurement data from mobile inspection devices updates power distribution network models for real-time fault identification.
Distributed agents classify power grid events locally, reducing central processing congestion and improving response speed.
A power monitoring system aligns measured data using a transmission line model to calculate phase shift offsets between remote devices.
Switch controllers activate segment electrodes based on detected currents to reduce power loss and remove position sensors from the high-frequency circuit.
A self-powered condition monitoring device harnesses energy wirelessly through inductive means from the electrical machine.
A monitoring control system transmits digital operation procedures and start confirmation instructions to on-site terminals.