Millivolts example sentences

Related (5): voltage, microvolts, picovolts, nanovolts, kilovolts

"Millivolts" Example Sentences

1. The voltage drop across the resistor is measured in millivolts.
2. The sensor output is in millivolts per degree Fahrenheit.
3. The high impedance input can measure signals as low as a few millivolts.
4. The battery voltage is only a few millivolts below the cutoff threshold.
5. The oscillator circuit produces a sine wave with a peak-to-peak amplitude of 1.5 millivolts.
6. The amplifier has a gain of 1000, so the output is 10 volts for an input of 10 millivolts.
7. The voltage reference is stable to within 2 millivolts over a wide temperature range.
8. The signal from the thermistor is amplified and converted to millivolts using an analog-to-digital converter.
9. The output voltage of the op-amp varies by only a few millivolts as the input changes.
10. The thermocouple produces a voltage of a few millivolts when subjected to a temperature difference.
11. The voltage across the capacitor is only a few millivolts after several seconds.
12. The sensor measures the current flowing through the shunt resistor and converts it to millivolts.
13. The maximum input voltage is 600 millivolts, which corresponds to a full-scale reading on the meter.
14. The amplifier circuit amplifies the voltage from the thermocouple by a factor of 10 to produce a millivolt output.
15. The voltage drop across the diode is approximately 0.7 millivolts.
16. The input impedance of the voltmeter is 10 megohms, allowing it to measure signals as low as a few millivolts without loading the circuit.
17. The reference voltage is generated by a precision voltage source that is accurate to within 1 millivolt.
18. The resistance of the thermistor changes with temperature, causing the voltage across it to vary by a few millivolts.
19. The output voltage of the sensor is proportional to the magnetic field strength, typically ranging from a few millivolts to several volts.
20. The input voltage to the op-amp is only a few millivolts, so the output swings from 0 to 5 volts.
21. The voltage across the load resistor is measured in millivolts and converted to a digital signal for processing.
22. The output from the signal conditioner is typically in the range of a few millivolts to several volts.
23. The battery output voltage is regulated to within 10 millivolts, regardless of load current or temperature.
24. The sensor output is processed by a microcontroller that converts it to millivolts per degree Celsius for display on an LCD screen.
25. The voltage across the zener diode is maintained at a constant value of 5.6 volts plus or minus a few millivolts.
26. The input resistance of the amplifier is 100 kilohms, allowing it to measure millivolt-level signals without significant loading.
27. The voltage drop across the LED is typically 1.8 to 2.2 millivolts, depending on the current flowing through it.
28. The amplifier circuit includes a high-pass filter that removes signals below a few millivolts to reduce noise.
29. The output voltage of the thermopile is typically a few millivolts per degree Celsius, making it useful for temperature sensing.
30. The audio signal from the microphone is amplified and converted to millivolts using an impedance-matching circuit.

Common Phases

1. The voltage drop across the resistor is measured in millivolts;
2. The output of the sensor is in millivolts;
3. The maximum allowable noise level is 50 millivolts;
4. The system requires a millivolt amplifier;
5. The signal strength is measured in millivolts.

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