MIMOSC circuitry replaces bulky transformers with switched-capacitor units to harvest energy from diverse sources while minimizing device footprint.
Feedback compensation circuit stabilizes multi-output power supply voltages when one output is blocked.
A reverse power Y-adapter combines two lower voltage inputs into a higher output using polarity sensitive isolation devices.
A DC/DC module uses buck-boost and LDO circuits to generate gate voltages for LCD drivers.
A linear regulator circuit partitions current paths to bypass the regulating device.
A portable jump starter uses a detachable lithium backup battery to automatically replenish the main lead acid cell charge.
An assistance device connects a separate power source to an aircraft contactor actuator via relays.
A power path controller implements a delay mechanism to stabilize switching between primary and secondary power sources.
Local string management units balance solar array outputs by isolating weak modules, resolving MPPT inefficiencies from mismatched working points.
An integrated power meter measures frequency and phase angle to synchronize auxiliary AC generators, eliminating dedicated synchronization equipment costs.
Segmented backup circuit switches auxiliary sources to critical loads, suppressing charge voltage reduction without increasing circuit scale.
A shared inductor core uses magnetic isolation to combine coupled and uncoupled windings on a single structure.
An integrated power supply merges constant voltage and current converters to reduce system complexity and manufacturing costs.
Grouping loads by power draw characteristics enables dispatch signals that match grid frequency targets, reducing reliance on costly ancillary generators.
A solid-state circuit disconnects photovoltaic arrays from power lines using high voltage power transistors.
A control system allocates power in energy storage farms based on individual battery state of charge levels.
A buck PFC controller calculates switch on-time from measured input voltage to generate output power.
A double-ended inverter system minimizes power loss by determining an optimal operating point on a constant power line and modulating voltage commands.
A multiple input single output DC-DC converter system balances load across parallel power sources through duty cycle adjustments.
A modulated voltage signal output circuit uses an amplitude control element and electronic switches to alter current flow through energy-storage elements.
A vibration power generator uses an annular coil positioned between segmented magnets to enhance magnetic flux linkage.
An inductive voltage booster steps up low input voltages to drive a MOSFET, reducing power loss during shadowing.