A power source switching control unit manages transitions between battery and adapter supplies in electronic devices.
Series-connected semiconductor units isolate high voltage DC bus faults, preventing propagation across offshore platform power distribution networks.
Dynamic duty cycle adjustment prevents current hogging in high phase count buck regulators without increasing controller complexity.
Sequential multiplexing reduces circuit complexity and power consumption while maintaining accurate battery temperature detection.
Alternating capacitor charge and discharge cycles prevent voltage reversal in series-connected microbial fuel cells, stabilizing electrode systems.
An on-chip power regulator employs a masking block and reset circuit to eliminate external IO pads while ensuring safe initialization.
Segmented mini-inverters with redundant DC-DC boost converters perform module-level maximum power point tracking.
Segmented high-voltage power units eliminate relay spikes by switching polarity through independent generating circuits, reducing non-detection periods.
A switching power regulator synthesizes a digital waveform to control reference voltage during turn-on.
A calculation method for parallel thyristor converters using equivalent impedance and thermal models to determine maximum output current.