Formula
Millivolts = Microvolts × 0.001Direct answer
Multiply the entered microvolts value by 0.001 to express it in millivolts (mV). This converts microvolt (µV) to millivolt (mV) within the documented voltage family.
Variables and formula
- Microvolts (µV): the source value measured in microvolt.
- Millivolts (mV): the same quantity expressed in millivolt.
- Conversion factor: 0.001 millivolts per microvolt.
Millivolts = Microvolts × 0.001
The generator emits numeric factors with at most 15 significant digits. Calculator results keep up to 10 significant digits for display; this formatting does not increase the precision of the measurement.
Unit definitions and named variants
Source unit: microvolt (µV). A microvolt is the SI decimal submultiple formed by applying micro (10^-6) to volt: 1 µV = 0.000001 V. The canonical microvolt definition is used; no alternate named variant is implied. Reference: Bureau International des Poids et Mesures: The International System of Units (SI), 9th edition, version 4.01.
Target unit: millivolt (mV). A millivolt is the SI decimal submultiple formed by applying milli (10^-3) to volt: 1 mV = 0.001 V. The canonical millivolt definition is used; no alternate named variant is implied. Reference: Bureau International des Poids et Mesures: The International System of Units (SI), 9th edition, version 4.01.
The µV-to-mV direction remains inside the voltage quantity; it changes the unit label and numerical scale, not the kind of quantity being measured.
Relationship and precision
The named unit relationships are defined or exact, so the conversion is exact before display rounding and source-measurement uncertainty.
- µV relationship: The decimal-prefix relationship is exact.
- mV relationship: The decimal-prefix relationship is exact.
To audit the factor through the family base unit, divide the raw dataset factors 0.000001 by 0.001. The generator emits that quotient once at 15 significant digits as the canonical direct factor 0.001; runtime calculations do not divide the already-emitted base factors again.
Reproducible example
For 10 microvolts, 10 × 0.001 = 0.01 millivolts. Repeating the same multiplication with the stated factor reproduces the displayed conversion before interface rounding.
Directional scale check
Because one microvolt contains 0.001 millivolts, the target number is smaller than the source number for every positive input. Zero maps to zero, while negative inputs are preserved as signed values under the stated direction convention.
| Source amount | Calculation | Target amount |
|---|---|---|
| 1 µV | 1 × 0.001 |
0.001 mV |
| 10 µV | 10 × 0.001 |
0.01 mV |
| 100 µV | 100 × 0.001 |
0.1 mV |
| 1000 µV | 1000 × 0.001 |
1 mV |
Interpretation
Read the result as millivolts, not microvolts. A value entered as µV leaves the calculator labelled mV; this directional distinction matters even when the two units describe the same voltage quantity.
Assumptions and limitations
- A negative value denotes polarity opposite the chosen positive reference.
- This family performs unit scaling only; it does not distinguish DC, AC RMS, peak, peak-to-peak, line-to-line, line-to-neutral, or phasor values.
- Voltage drop, electromotive force, and electric potential difference can share the volt but require contextual interpretation outside this converter.
Common mistakes
- µV is one thousandth of a millivolt.
- mV means millivolt; MV means megavolt.
Continue within the Voltage family
See the Voltage conversion hub for its five-unit reference table and all 20 directed routes.
- Reverse the direction: Millivolts to Microvolts
- Compare another voltage route: Microvolts to Volts
- Compare another voltage route: Microvolts to Kilovolts
- Compare another voltage route: Microvolts to Megavolts
- Compare another voltage route: Millivolts to Volts
Assumptions
- The entered value uses microvolts exactly as labelled.
- A negative value denotes polarity opposite the chosen positive reference.
- Rounding and measurement uncertainty remain the user's responsibility.
Sources and methodology
CalcMotive publishes the formula and assumptions so you can decide whether the estimate fits your use case. See our methodology standards.
- The International System of Units (SI), 9th edition, version 4.01; Bureau International des Poids et Mesures; accessed Aug 7, 2026