Inductive reactance calculator
Online calculator for formulas used in electronic circuit design and electrical engineering.
Basic electric calculations:
Ohm's Law,
Ohm's Law with power,
DC power,
AC real power,
LC resonant frequency,
Capacitor charging/discharging,
Capacitive reactance,
Capacitive current + reactive power,
Capacitor energy,
Capacitor Δ energy,
RC discharging,
Inductor square pulse,
Inductive reactance,
Inductive current + reactive power,
Inductor energy,
2 parallel resistors,
3 parallel resistors,
2 parallel inductors,
2 series capacitors,
System bandwidth,
Bandwidth ↔ rise time,
frequency ↔ period
Wire and winding calculations:
Calculate Inductive reactance: nH, 465kHz, 23.30575041173mΩ
This calculation can calculate the inductive reactance X
L of an inductor knowing its inductance and the frequency.
You can also calculate the inductance knowing the desired reactance and frequency, or calculate the frequency knowing the inductive reactance and inductance.
X
L = 2 π f L
Enter any 2 values, the 3rd one will be calculated:
Standard EIA Decade Values of inductors - decade 1 to 10 nH
| E6 | E12 | E24 |
1.0 nH
1.5 nH
2.2 nH
3.3 nH
4.7 nH
6.8 nH
| 1.0 nH, 1.2 nH
1.5 nH, 1.8 nH
2.2 nH, 2.7 nH
3.3 nH, 3.9 nH
4.7 nH, 5.6 nH
6.8 nH, 8.2 nH
| 1.0 nH, 1.1 nH, 1.2 nH, 1.3 nH
1.5 nH, 1.6 nH, 1.8 nH, 2.0 nH
2.2 nH, 2.4 nH, 2.7 nH, 3.0 nH
3.3 nH, 3.6 nH, 3.9 nH, 4.3 nH
4.7 nH, 5.1 nH, 5.6 nH, 6.2 nH
6.8 nH, 7.5 nH, 8.2 nH, 9.1 nH
|
Other inductance decades:
100 - 1000 pH,
1 - 10 nH,
10 - 100 nH,
100 - 1000 nH,
1 - 10 uH,
10 - 100 uH,
100 - 1000 uH,
1 - 10 mH,
10 - 100 mH,
100 - 1000 mH,
1 - 10 H,
10 - 100 H,
Some common standard frequencies:
Inductive reactance formula says:
•The inductive reactance (X
L) of a 7.976828775253nH (seven point nine seven six eight two eight seven seven five two five three nanohenrys) inductor at 465kHz (four hundred and sixty-five kilohertz) is 23.30575041173mΩ (twenty-three point three zero five seven five zero four one one seven three milliohms).
•For a 23.30575041173mΩ (twenty-three point three zero five seven five zero four one one seven three milliohms) inductive reactance at 465kHz (four hundred and sixty-five kilohertz), you need a 7.976828775253nH (seven point nine seven six eight two eight seven seven five two five three nanohenrys) inductor.
•A 7.976828775253nH (seven point nine seven six eight two eight seven seven five two five three nanohenrys) inductor would have a 23.30575041173mΩ (twenty-three point three zero five seven five zero four one one seven three milliohms) reactance at 465kHz (four hundred and sixty-five kilohertz) frequency.
This is a simple online calculator for formulas used in electronic engineering and design.
This online calculator is for reference only. I do not guarantee it to work correctly. You use this at your own risk only.