Sample And Hold Droop Rate
Calculate the magnitude of sample-and-hold voltage droop per second from leakage current divided by hold capacitance.
Description
Calculate the magnitude of sample-and-hold voltage droop per second from leakage current divided by hold capacitance.
Sample And Hold Droop Rate: Calculate the magnitude of sample-and-hold voltage droop per second from leakage current divided by hold capacitance.
When to use Sample And Hold Droop Rate
Use this electronics calculation for a first-pass component, converter, signal, motor, or sensor estimate when the stated operating conditions and units match the device data.
- Leakage Current (A) (A)
- Required number input.
- Hold Capacitance (F) (F)
- Required number input.
How Sample And Hold Droop Rate works
Calculate the magnitude of sample-and-hold voltage droop per second from leakage current divided by hold capacitance. The tool evaluates the supplied inputs together and returns the named outputs below; it does not infer omitted operating conditions or change the units shown.1
- Droop (V/s) (V/s)
- The resulting droop (v/s) returned as a number.
Limitations and assumptions
- Acquisition and droop estimates depend on source impedance, switch resistance, hold capacitance, leakage, dielectric absorption, aperture error, settling criterion, temperature, and downstream loading. Datasheet acquisition time may assume a particular source and accuracy target.
- Use finite inputs in the displayed units and preserve more precision than the final presentation requires. Independently verify safety-critical, financial, compliance, or production decisions.
Alternative or Complementary approaches
Check the result against the current datasheet and worst-case operating corners, then verify the circuit or measurement with simulation and bench testing where failure matters.
References
-
Sample and hold — Wikipedia contributors
Similar or alternative tools
- Gyroscope Voltage Output
Calculate linear analog gyroscope voltage from zero-rate voltage, sensitivity in volts per degree per second, and signed angular rate.
- Motor Power Factor At Load
Calculate balanced three-phase motor power factor as real input power divided by √3 times line voltage and line current; the result is a magnitude.
- Ac Motor Reactive Power
Calculate positive reactive-power magnitude for a balanced three-phase motor from line voltage, line current, and power factor.