A power semiconductor circuit uses a comparator to monitor load voltage against a reference for precise clamping.
A back-bias voltage generator uses a temperature-sensitive level detector to adjust monitoring levels dynamically.
A comparator circuit uses variable bias current to minimize power consumption while maintaining accuracy.
A current detection circuit adjusts sense reference voltage levels to distinguish transient states from steady states in semiconductor modules.
A stacked power supply monitor uses a sense-replica loop to mirror voltage signals for ground-referenced measurement.
Segmented detection circuits monitor device and load currents independently, preventing breakdown by adjusting thresholds for both components.
A mathematical calculation circuit determines the duty cycle using real-time input and output voltage values.
An isolation circuit uses impedance calculation to control switches for zone separation in fire detection systems.
A regulation circuit manages high side voltage to protect charge pump components from overvoltages and overcurrents.
An LED emulator translates modulated supply current into sense voltage for signal transmission across isolated voltage domains.
Time-multiplexed comparators measure multiple stack-node voltages sequentially, reducing integrated circuit area while maintaining measurement precision.
A resistance ladder circuit scales supply voltage for a comparator to detect on-die droops, reducing sensitivity to process and temperature variations.
A depletion mode pull-up transistor in a compound semiconductor inverter connects to a bias current source at its source terminal.
Dynamic blanking time adjustment optimizes switching timing at resonance valleys, reducing energy loss during high frequency operation.
A memory device uses non-sequential quadrature error correction to manage phase errors in clock signals.
A switching element driving circuit uses a comparator and differential amplifier to control gate voltage for stable operation.
Integrates a power converter control area directly onto the semiconductor chip substrate to achieve high-frequency regulation at lower cost.
Detecting stable signal phases via oversampling resolves path delay skew in multi-pin asynchronous interfaces, maintaining constant data throughput.
Dual feedback loops in an output regulated charge pump adjust input voltage based on load current, reducing ripple without increasing capacitor area.
Correction circuits with resistors and cross-coupled diodes prevent reverse mode activation in ambipolar transistor differential pairs.