9/30/2019»»Monday

Capacitor Conversion Chart Pdf

9/30/2019
  1. Capacitance Conversion Chart
  2. Capacitor Code Conversion
  3. Capacitor Value Chart
  4. Inductor Conversion Chart Pdf
  5. Capacitor Conversion Chart Pdf
  6. Capacitor Part Number Conversion Chart
  7. Capacitor Calculator Chart

Capacitance Tutorial Includes:
CapacitanceCapacitor formulasCapacitive reactanceParallel capacitorsSeries capacitorsDielectric constant & relative permittivityDissipation factor, loss tangent, ESRCapacitor conversion chart

  • Capacitor uF - nF - pF Conversion Chart When reading schematics, repairing radios and buying capacitors, you often must convert between uF, nF and pF. Paper and electrolytic capacitors are usually expressed in terms of uF (microfarads). Short forms for micro farad include uF, mfd, MFD, MF and UF. Mica capacitors are usually expressed in.
  • Download, Fill In And Print Capacitor Conversion Chart Pdf Online Here For Free. Capacitor Conversion Chart Is Often Used In Capacitor Conversion Chart, Conversion Chart And Life.
  • CAPACITOR CONVERSION CHART – uF / MFD nF pF / MMFD uF / MFD nF pF / MMFD 1000 uF / MFD 1000000 nF pF / MMFD 6.8 uF / MFD 6800 nF.

But just to be complete here it is in a table. Third digit Multiplier (this times the first two digits gives you the value in Pico-Farads) 0 1 1 10 2 100 3 1,000 4 10,000 5 100,000 6 not used 7 not used 8.01 9.1 Now for an example: A capacitor marked 104 is 10 with 4 more zeros or 100,000pF which is otherwise referred to as a.1 uF capacitor.

Capacitors are a very common form of electronic component and capacitor values are generally expressed in terms of microfarads, µF (sometimes uF when a micro character is not available), nanofarads, nF and picofarads, pF.

Often there is an overlap between these multipliers. For example 0.1µF can also be expressed as 100nF, and there are many more examples of this type of notation confusion.

Also in some areas the use of nanofarad, nF is less widespread with values being expressed in fractions of a µF and large multiples of picofarads, pF. Under these circumstances it may be necessary to convert to nanofards, nF when components marked in nanofarad are available.

It can sometimes be confusing when a circuit diagram or components list may mention the value in terms of picofarads for example and the listings for an electronic component distributor of electronic components store may mention it in another.

The capacitor conversion chart below reveals the equivalents between µF, nF and pF in an easy to use table format. Often when buying from an electronic components distributor or electronic components store, the markings of specifications may use different notations and it may be necessary to convert them.

Capacitor values can be of over 109 range, and even more as super capacitors are now being used. To prevent confusion with large numbers of zeros attached to the values of the different capacitors the common prefixes pico (10-12), nano (10-9) and micro (10-6 are widely used. When converting between these it is sometimes useful to have a capacitor conversion chart or capacitor conversion table for the different capacitor values.

A further requirement for capacitance conversion is that for some capacitor marking schemes, the actual capacitance value is given in picofarads, then requiring the value to be converted to the more usual nanofarads or microfarads is required.

Capacitance conversion calculator

The capacitance value conversion calculator below provides easy conversions between values expressed in microfarads: µF, nanofarads: nF and picofarads: pF. Simple enter the value and what it is expressed in, and the value will be displayed in µF, nF and pF, as well as the value in Farads!

Capacitance Conversion Calculator

Convert electrostatic capacitance.

Result:

pF
µF
nF
F

Capacitor conversion chart

A chart or table proving an easy translation between micro-farads,µF; nanofarads, nF, and picofarads, pF is given below. This helps reduce the confusion that can occur when having to change between the different multipliers of values.


Capacitor Value Conversion Chart
pF to nF, µ to nF, etc . .
microfarads (µF)Nanofarads (nF)Picofarads (pF)
0.0000010.001 1
0.000010.0110
0.00010.1100
0.00111000
0.011010000
0.1100 100000
110001000000
101000010000000
100100000 100000000

This capacitor conversion chart or capacitor conversion table enables quick and easy reference of the different values given for capacitors and conversion between picofarads, nanofarads and microfarads.

Popular capacitor conversions

There are a few popular ways of writing capacitor values. Often for example a ceramic capacitor may be given as a value of 100nF. If used in circuits with electrolytic capacitors, it is often interesting to realise that this is 0.1µF. These useful conversions can help when designing, building, or maintaining circuits.


Common Capacitor Conversions
100pF = 0.1nF
1000pf = 1 nF
100nF = 0.1µF

When designing circuits or using capacitors in any way, it is often useful to have these capacitor conversions in mind as values transition from picofarads to nanofarads and then nanofarads to microfarads.

A more comprehensive table of conversion factors to convert between the different values, nF to pF, µF to nF etc is given below.

Table of conversion factors to convert between µF, nF, and pF
ConvertMultiply by:
pF to nF1 x 10-3
pF to µF1 x 10-6
nF to pF1 x 103
nF to µF1 x 10-3
µF to pF1 x 106
µF to nF1 x 103

Capacitor conversion nomenclature

Although most modern circuits and component descriptions use the nomenclature of µF, nF and pF for detailing capacitor values, often older circuit diagrams, circuit descriptions and even the components themselves may use a host of non-standard abbreviations and it may not always be clear exactly what they mean.

The main variations for the various capacitance sub-multiples are given below:

  • Micro-Farad, µF : The values for larger value capacitors like electrolytic capacitors, tantalum capacitors, and even some paper capacitors measured in micro-Farads might have been designated in uF, mfd, MFD, MF or UF. All of these refer to the value measured in µF. This terminology is normally associated with electrolytic capacitors and tantalum capacitors.
  • Nano-Farad, nF: The terminology of nF or nano-Farads was not widely used before the standardisation of terminology, and therefore this submultiple did not have a variety of abbreviations. The term nanofarad has come into much greater use in recent years, although in some countries its use is not as widespread, with values being expressed in large numbers of picofarads, e.g. 1000pF for 1 nF, or fractions of a microfarad, e.g. 0.001µF, again for a nanofarad. This terminology is generally associated with ceramic capacitors, metalised film capacitors including surface mount multilayer ceramic capacitors, and even some modern silver mica capacitors.
  • Pico-Farad, pF: Again a variety of abbreviations were used to indicate the value in picoFarads, pF. Terms used included: microromicroFarads, mmfd, MMFD, uff, µµF. All of these refer to values in pF. Capacitor values measured in picofarads are often used in radio frequency, RF circuits and equipment. Accordingly this terminology is used chiefly with ceramic capacitors, but it is also used for silver mica capacitors and some film capacitors.

The standardisation of terminology has assisted in the conversion of values from one submultiple to the next. It has meant that there is considerably less room for misunderstanding. It is easier converting from µF to nF and pF. Sai flexi pro v12 cracked version. This is often useful when a circuit diagram may mention a capacitor value mentioned in one way, and the electronic components distributor lists may mention it in another.

The capacitance conversion chart is very useful because different electronic component manufacturers may mark components differently, sometimes labelling as multiple of nanofarad, whereas other manufacturers may mark their equivalent capacitors as a faction of a microfarad and so forth. Obviously the electronic components distributors and electronic component stores will tend to use the manufacturers nomenclature.

Similarly circuit diagrams may mark components differently, often to keep commonality, etc. Accordingly it helps to be able to convert from picofarads to nanofarad and microfarads and vice versa. This can help identify components marked in values expressed in nanofarad when the bill of materials or parts list for the circuit may have values expressed in microfarads, µF and picofarads, pF.

Often it is helpful to be able to use a capacitance conversion calculator like the one above, but often one becomes familiar with the conversions and the popular equivalents like 1000pF is a nanofarad and 100nF is 0.1µF.

When using electronic components and designing electronic circuits, these conversions quickly become second nature, but even so the capacitance conversion tables and calculators can often be very useful.


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http://www.uF-nF-pF.com
nF
uF / MFD
pF / MMFD
1000000 nF
6.8 uF / MFD
6800000 pF / MMFD
680000 nF
5.6 uF / MFD
5600000 pF / MMFD
470000 nF
5.0 uF / MFD
5000000 pF / MMFD
240000 nF
4.7 uF / MFD
4700000 pF / MMFD
220000 nF
4.0 uF / MFD
4000000 pF / MMFD
150000 nF
3.9 uF / MFD
3900000 pF / MMFD
100000 nF
3.3 uF / MFD
3300000 pF / MMFD
88000 nF
3 uF / MFD
3000000 pF / MMFD
85000 nF
2.7 uF / MFD
2700000 pF / MMFD
82000 nF
2.2 uF / MFD
2200000 pF / MMFD
80000 nF
2 uF / MFD
2000000 pF / MMFD
75000 nF
1.8 uF / MFD
1800000 pF / MMFD
72000 nF
1.2 uF / MFD
1200000 pF / MMFD
70000 nF
1.0 uF / MFD
1000000 pF / MMFD
68000 nF
0.82 uF / MFD
820000 pF / MMFD
65000 nF
0.68 uF / MFD
680000 pF / MMFD
64000 nF
0.47 uF / MFD
470000 pF / MMFD
60000 nF
0.33 uF / MFD
330000 pF / MMFD
56000 nF
0.22 uF / MFD
220000 pF / MMFD
53000 nF
0.20 uF / MFD
200000 pF / MMFD
50000 nF
0.10 uF / MFD
100000 pF / MMFD
47000 nF
0.01 uF / MFD
10000 pF / MMFD
45000 nF
0.0068 uF / MFD
6800 pF / MMFD
43000 nF
0.0047 uF / MFD
4700 pF / MMFD
40000 nF
0.0033 uF / MFD
3300 pF / MMFD
39000 nF
0.0022 uF / MFD
2200 pF / MMFD
36000 nF
0.0015 uF / MFD
1500 pF / MMFD
35000 nF
0.001 uF / MFD
1000 pF / MMFD
33000 nF
0.00068 uF / MFD
680 pF / MMFD
30000 nF
0.00047 uF / MFD
470 pF / MMFD
27500 nF
0.00033 uF / MFD
330 pF / MMFD
27000 nF
0.00022 uF / MFD
220 pF / MMFD
25000 nF
0.00015 uF / MFD
150 pF / MMFD
24000 nF
0.0001 uF / MFD
100 pF / MMFD
22000 nF
0.000068 uF / MFD
68 pF / MMFD
21000 nF
0.000047 uF / MFD
47 pF / MMFD
20000 nF
0.000033 uF / MFD
33 pF / MMFD
19000 nF
0.000022 uF / MFD
22 pF / MMFD
18000 nF
0.000015 uF / MFD
15 pF / MMFD
16000 nF
0.00001 uF / MFD
10 pF / MMFD
15000 nF
0.0000068 uF / MFD
6.8 pF / MMFD
12000 nF
0.0000047 uF / MFD
4.7 pF / MMFD
10000 nF
0.0000033 uF / MFD
3.3 pF / MMFD
8200 nF
0.0000022 uF / MFD
2.2 pF / MMFD
8000 nF
0.0000015 uF / MFD
1.5 pF / MMFD
7500 nF
0.000001 uF / MFD
1 pF / MMFD
http://www.uF-nF-pF.com
nF
uF / MFD
pF / MMFD
1000000 nF
6.8 uF / MFD
6800000 pF / MMFD
680000 nF
5.6 uF / MFD

Capacitance Conversion Chart

5600000 pF / MMFD
470000 nF
5.0 uF / MFD
5000000 pF / MMFD
240000 nF
4.7 uF / MFD
4700000 pF / MMFD
220000 nF
4.0 uF / MFD
4000000 pF / MMFD
150000 nF
3.9 uF / MFD
3900000 pF / MMFD
100000 nF
3.3 uF / MFD
3300000 pF / MMFD
88000 nF
3 uF / MFD
3000000 pF / MMFD
85000 nF
2.7 uF / MFD
2700000 pF / MMFD
82000 nF
2.2 uF / MFD
2200000 pF / MMFD
80000 nF
2 uF / MFD
2000000 pF / MMFD
75000 nF
1.8 uF / MFD
1800000 pF / MMFD
72000 nF
1.2 uF / MFD
1200000 pF / MMFD
70000 nF
1.0 uF / MFD
1000000 pF / MMFD
68000 nF
0.82 uF / MFD
820000 pF / MMFD
65000 nF
0.68 uF / MFD
680000 pF / MMFD
64000 nF
0.47 uF / MFD
470000 pF / MMFD
60000 nF
0.33 uF / MFD
330000 pF / MMFD
56000 nF
0.22 uF / MFD
220000 pF / MMFD
53000 nF
0.20 uF / MFD
200000 pF / MMFD
50000 nF
0.10 uF / MFD
100000 pF / MMFD
47000 nF
0.01 uF / MFD
10000 pF / MMFD
45000 nF
0.0068 uF / MFD
6800 pF / MMFD
43000 nF
0.0047 uF / MFD

Capacitor Code Conversion

4700 pF / MMFD
40000 nF
0.0033 uF / MFD
3300 pF / MMFD
39000 nF
0.0022 uF / MFD
2200 pF / MMFD
36000 nF
0.0015 uF / MFD
1500 pF / MMFD
35000 nF
0.001 uF / MFD
1000 pF / MMFD
33000 nF
0.00068 uF / MFD
680 pF / MMFD
30000 nF
0.00047 uF / MFD
470 pF / MMFD
27500 nF
0.00033 uF / MFD
330 pF / MMFD
27000 nF
0.00022 uF / MFD
220 pF / MMFD
25000 nF
0.00015 uF / MFD
150 pF / MMFD
24000 nF
0.0001 uF / MFD
100 pF / MMFD
22000 nF
0.000068 uF / MFD
68 pF / MMFD
21000 nF
0.000047 uF / MFD
47 pF / MMFD
20000 nF
0.000033 uF / MFD
33 pF / MMFD
19000 nF
0.000022 uF / MFD
22 pF / MMFD
18000 nF
0.000015 uF / MFD
15 pF / MMFD
16000 nF
0.00001 uF / MFD

Capacitor Value Chart

10 pF / MMFD
15000 nF

Inductor Conversion Chart Pdf

0.0000068 uF / MFD
6.8 pF / MMFD
12000 nF
0.0000047 uF / MFD
4.7 pF / MMFD
10000 nF
0.0000033 uF / MFD
3.3 pF / MMFD
8200 nF
0.0000022 uF / MFD
2.2 pF / MMFD

Capacitor Conversion Chart Pdf

8000 nF
0.0000015 uF / MFD

Capacitor Part Number Conversion Chart

1.5 pF / MMFD

Capacitor Calculator Chart

7500 nF
0.000001 uF / MFD
1 pF / MMFD

Download Capacitor Conversion Chart

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