A modular fixture integrates a load cell to detect item weight changes via a crossbar mechanism.
A deadband DC converter generates a rectified sine waveform with recurring zero-voltage periods to enable safe power transmission.
A vehicle electrical system uses segmented energy storage units connected via relays and a step-down converter to manage power distribution.
Dynamic pad adjustment compensates for road-induced misalignment to maximize wireless charging efficiency.
A dual power supply system switches to a secondary source during voltage drops, maintaining electronic unit operation without boost converters.
An inverter generates a negative voltage signal to pre-compensate input fluctuations in power conversion stages.
A hybrid energy management system coordinates autonomous vehicle subsystems to optimize overall power distribution.
A voltage regulator circuit uses a selector to activate only one driver from multiple power supplies based on input levels.
Smart output adaptor adjusts converter voltage and current to match diverse vehicle electrical loads, reducing system complexity and design costs.
A step-up converter drive circuit generates pulse-width-modulated signals using input voltage data.
A single regulation loop adaptive voltage scaling system adjusts supply voltage via performance monitoring circuitry.
Switching controller uses phase-shift signals and integration circuits to manage parallel power supplies.
A dynamic bias soft start control system manages the transition from static to dynamic bias modes during power-on sequences.
Controller opens auxiliary switch during shutdown to cut standby consumption from 400 mW to 5 mW.
Separating buck-boost and boost converters reduces semiconductor count and control logic complexity while maintaining high efficiency.
A MEMS switch on-load tap changer coordinates switching operations to adjust transformer winding turns ratios.
A partial discharge monitoring system breaks electrical signals into frequency components for detailed spectral analysis.
A multi-phase power converter modulates channel on-times to balance currents across parallel channels.
An adaptive offset voltage compensates for mode transition shifts, reducing voltage deviation and enhancing transient response in switching regulators.
A linear motor control device adjusts voltage using variable proportional gains to manage current command values.