Picofarads to Statfarads Converter

Convert picofarads to statfarads instantly with our free capacitance conversion calculator. Enter any value for accurate results.

pF
=
stF
0.898755
Statfarads (stF)
1 pF = 0.898755 stF
🔄 Swap Units (Statfarads → Picofarads)
1 pF
=
0.898755 stF
1 Picofarad = 0.898755 Statfarads

How to Convert Picofarads to Statfarads

To convert a capacitance measurement from picofarads to statfarads, divide the capacitance value by the conversion factor. Since one picofarad is equal to 0.898755 statfarads, you can use this formula:

statfarads = picofarads ÷ 1.11265

The capacitance in statfarads is equal to the picofarads divided by 1.11265.

Example: Convert 5 picofarads to statfarads.

Using the formula: statfarads = picofarads ÷ 1.11265

statfarads = 5 pF ÷ 1.11265 = 4.49378 stF

Therefore, 5 picofarads is equal to 4.49378 statfarads.

How Many Statfarads Are in a Picofarad?

There are 0.898755 statfarads in one picofarad, which is why we use this value in the formula above.

1 pF = 0.898755 stF

What Is a Picofarad?

The picofarad (symbol: pF) is a unit of electrical capacitance equal to one trillionth (10−¹²) of a farad. The prefix "pico" comes from the Spanish "pico" meaning small quantity, and denotes a factor of 10−¹² in the metric system. Picofarads are the standard unit for very small capacitances, commonly found in radio frequency (RF) circuits, antenna matching networks, oscillator circuits, and high-speed digital logic. Small ceramic capacitors, trimmer capacitors, and the parasitic capacitances of circuit board traces and semiconductor junctions are typically measured in picofarads. In older notation, the picofarad was sometimes called a "micro-microfarad" (μμF) or abbreviated as "mmf" or "pfd." The modern standard symbol is pF. Typical applications include RF tuning circuits (1–500 pF), oscillator feedback networks (10–100 pF), and ESD protection devices. The capacitance between adjacent pins on an integrated circuit package is typically in the range of 1–5 pF.

One picofarad is equal to:

  • 10-12 farads (F)
  • 10-9 millifarads (mF)
  • 0.000001 microfarads (μF)
  • 0.001 nanofarads (nF)
  • 10-21 abfarads (abF)
  • 0.8988 statfarads (stF)

What Is a Statfarad?

The statfarad (symbol: stF) is the unit of electrical capacitance in the centimetre–gram–second (CGS) electrostatic system of units. It is defined as the capacitance of a capacitor that has a potential difference of one statvolt when charged by one statcoulomb of electricity. One statfarad is approximately equal to 1.1126 picofarads (1.1126 × 10−¹² farads). This makes the statfarad a very small unit of capacitance, though it is much more practically sized than the farad for describing the capacitances of small components. The conversion factor between farads and statfarads is derived from the speed of light in vacuum (c ≈ 2.998 × 10¹&sup0; cm/s), as the relationship between SI and CGS electrostatic units depends on this fundamental constant. Specifically, 1 farad = c² × 10−&sup5; statfarads ≈ 898,755,224,014.74 statfarads. Like the abfarad, the statfarad is primarily of historical and theoretical interest. It appears in older physics literature using the CGS electrostatic system. Modern practice favors SI units for all capacitance measurements, though understanding CGS units remains important for reading historical scientific papers.

One statfarad is equal to:

  • ≈ 1.1126 × 10-12 farads (F)
  • ≈ 1.1126 × 10-9 millifarads (mF)
  • ≈ 1.1126 × 10-6 microfarads (μF)
  • ≈ 0.001113 nanofarads (nF)
  • ≈ 1.1126 picofarads (pF)
  • ≈ 1.1126 × 10-21 abfarads (abF)

Understanding Capacitance

Capacitance is a fundamental electrical property that describes a component's ability to store electrical energy in an electric field. A capacitor, the component that exhibits capacitance, consists of two conductive plates separated by an insulating material called a dielectric.

When a voltage is applied across a capacitor, positive charge accumulates on one plate and negative charge on the other, creating an electric field in the dielectric. The capacitance (C) is defined as the ratio of the electric charge (Q) stored on each plate to the voltage (V) across the capacitor: C = Q / V.

The SI unit of capacitance is the farad (F), named after Michael Faraday. One farad equals the capacitance when one coulomb of charge produces one volt of potential difference. In practice, a farad is an extremely large unit, so capacitance values in electronic circuits are typically expressed in sub-multiples: millifarads (mF), microfarads (μF), nanofarads (nF), and picofarads (pF).

SI vs. CGS Units

The International System of Units (SI) uses the farad and its metric prefixed sub-multiples. The older centimetre–gram–second (CGS) system includes two capacitance units: the abfarad (from the electromagnetic sub-system, equal to 10&sup9; farads) and the statfarad (from the electrostatic sub-system, approximately 1.1126 × 10−¹² farads).

While CGS units are largely obsolete in modern engineering, they still appear in some physics textbooks and older scientific literature. Understanding the conversion between these systems is important for interpreting historical data and theoretical calculations.

Factors Affecting Capacitance

  • Plate area — Larger plate area increases capacitance
  • Distance between plates — Smaller separation increases capacitance
  • Dielectric material — Higher dielectric constant (κ) increases capacitance
  • Temperature — Can affect the dielectric constant and thus capacitance

Common Capacitance Values in Electronics

  • Supercapacitors: 0.1 F to 3,000+ F
  • Electrolytic capacitors: 0.1 μF to 100,000 μF
  • Film capacitors: 1 nF to 100 μF
  • Ceramic capacitors: 1 pF to 100 μF
  • Trimmer/variable capacitors: 1 pF to 500 pF

Practical Tips for Capacitance Conversion

  • When working with SI capacitance units (F, mF, μF, nF, pF), remember that each step is a factor of 1,000: 1 F = 1,000 mF = 1,000,000 μF = 1,000,000,000 nF = 1,000,000,000,000 pF.
  • To convert between adjacent SI prefix levels, simply move the decimal point three places. For example, 4,700 pF = 4.7 nF = 0.0047 μF.
  • Capacitor markings on small components (like ceramic capacitors) are often in picofarads using a three-digit code. The first two digits are significant figures and the third is the multiplier (number of zeros). For example, "473" means 47,000 pF = 47 nF.
  • When reading schematics, pay close attention to the unit prefix. Confusing μF and nF (a factor of 1,000 difference) is a common source of circuit errors.
  • For CGS units (abfarads and statfarads), remember that 1 abfarad = 10&sup9; F is enormous, while 1 statfarad ≈ 1.1126 pF is tiny. These units are rarely used in modern practice.
  • Online calculators and conversion tools are helpful, but always double-check critical calculations by hand, especially for precision applications in filter design or timing circuits.

Picofarads to Statfarads Conversion Table

The following table shows conversions from picofarads to statfarads.

Picofarads Statfarads (stF)
1 pF0.898755
2 pF1.79751
3 pF2.69627
4 pF3.59502
5 pF4.49378
6 pF5.39253
7 pF6.29129
8 pF7.19004
9 pF8.0888
10 pF8.98755
11 pF9.88631
12 pF10.7851
13 pF11.6838
14 pF12.5826
15 pF13.4813
16 pF14.3801
17 pF15.2788
18 pF16.1776
19 pF17.0763
20 pF17.9751
21 pF18.8739
22 pF19.7726
23 pF20.6714
24 pF21.5701
25 pF22.4689
26 pF23.3676
27 pF24.2664
28 pF25.1651
29 pF26.0639
30 pF26.9627
31 pF27.8614
32 pF28.7602
33 pF29.6589
34 pF30.5577
35 pF31.4564
36 pF32.3552
37 pF33.2539
38 pF34.1527
39 pF35.0515
40 pF35.9502

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