Convert Coulombs per Square Centimeter to Coulombs per Square Inch
Coulomb per Square Centimeter (C/cm²) to Coulomb per Square Inch (C/in²) surface charge density conversion — enter any value below to get an instant result, or use the table for common values.
Results from this calculator are estimates provided for general informational purposes only, based on formulas, rates, and standards commonly accepted as of 2026. Figures may differ slightly from other calculators or professional sources due to rounding methods, differing assumptions, or regional regulations, and rules may change over time. Always consult a qualified professional — such as a financial advisor, healthcare provider, or other relevant specialist — before making decisions based on these results.
Result
1 C/cm² = 6.4516 C/in²
1 Coulomb per Square Centimeter = 6.4516 Coulombs per Square Inch
1 Coulomb per Square Inch = 0.15500031 Coulombs per Square Centimeter
1 C/cm² in every supported unit
Conversion chart: Coulomb per Square Centimeter to Coulombs per Square Inch
Conversion table
| Coulomb per Square Centimeter (C/cm²) | Coulomb per Square Inch (C/in²) |
|---|---|
| 0.01 C/cm² | 0.064516 C/in² |
| 0.1 C/cm² | 0.64516 C/in² |
| 1 C/cm² | 6.4516 C/in² |
| 2 C/cm² | 12.9032 C/in² |
| 3 C/cm² | 19.3548 C/in² |
| 5 C/cm² | 32.258 C/in² |
| 10 C/cm² | 64.516 C/in² |
| 20 C/cm² | 129.032 C/in² |
| 50 C/cm² | 322.58 C/in² |
| 100 C/cm² | 645.16 C/in² |
| 1000 C/cm² | 6451.6 C/in² |
Coulomb per Square Centimeter (C/cm²)
Definition: A metric surface charge density unit scaled to the square centimeter, giving a more convenient figure when the charged surface being measured is itself only centimeters across, such as a small capacitor plate or test electrode.
History: It arises directly from the centimeter's fixed relationship to the meter, applied to the coulomb-per-square-meter base unit rather than being independently defined.
Current use: Common in laboratory-scale capacitor and electrode surface-charge measurements, where sample areas are naturally reported in square centimeters.
Coulomb per Square Inch (C/in²)
Definition: A mixed metric-customary surface charge density unit expressing coulombs of charge per square inch of surface area, used where the charged surface's area is specified in US customary units.
History: It exists purely as a unit-conversion convenience for US engineering contexts, following directly from the fixed inch-to-meter relationship squared rather than having an independent physical origin.
Current use: Occasionally seen in US electrical engineering documentation that specifies plate or electrode areas in square inches rather than metric units.
Supported Units
| Unit | Symbol | In C/m² |
|---|---|---|
| Coulomb per Square Meter | C/m² | 1 C/m² |
| Coulomb per Square Centimeter | C/cm² | 10000 C/m² |
| Coulomb per Square Inch | C/in² | 1550.0031 C/m² |
| Abcoulomb per Square Meter | abC/m² | 10 C/m² |
| Abcoulomb per Square Centimeter | abC/cm² | 100000 C/m² |
| Abcoulomb per Square Inch | abC/in² | 15500.031 C/m² |
About These Parameters
- Value
- The surface charge density value you want to convert, expressed in the "From" unit. Accepts decimals, and can represent anything from a lightly charged capacitor plate to a densely charged conductor surface in a field-theory problem.
- From Unit
- The unit your input value is currently measured in — a modern coulomb-per-square-meter (or per-square-centimeter) figure, or an older CGS-based abcoulomb-per-area figure from legacy electromagnetism literature.
- To Unit
- The unit you want the result converted into. Use the swap button to flip From and To instantly, which is handy when moving between metric and CGS charge-per-area conventions.
How Surface Charge Density Conversion Works
The Formula
Every unit here is defined by a fixed multiplier relative to the coulomb per square meter. To convert a value from one unit to another:
result = value × (factor of "From" unit ÷ factor of "To" unit)
For Coulomb per Square Centimeter → Coulomb per Square Inch: multiply by 6.4516. For example, 1 C/cm² × 6.4516 = 6.4516 C/in².
Why Charge Per Area, Not Just Total Charge?
A charged plate's total charge alone doesn't tell you how strong the electric field is right at its surface — a small, densely charged plate and a large, lightly charged plate can carry the same total charge but produce very different field strengths near the surface. Surface charge density solves this by normalizing charge to the area it covers, so the same density figure describes the field-generating behavior of the surface regardless of the plate's total size. That's exactly why it appears directly in Gauss's law's boundary condition for the field just outside a conductor, E = σ / ε₀, where σ is the surface charge density.
Metric vs. CGS Charge-Per-Area Units
The coulomb-per-square-meter family follows directly from the SI coulomb and square meter, while the abcoulomb-per-area family is built from the CGS-EMU system's abcoulomb (10 coulombs) paired with square-centimeter, square-meter, or square-inch areas. Because the CGS system predates SI's international standardization, older capacitor and electrostatics literature sometimes expresses surface charge density in abcoulombs per square centimeter rather than coulombs per square meter — this converter bridges both conventions directly.
Example
A surface charge density of 1 C/cm² equals 6.4516 C/in². For scale, the plates of a typical parallel-plate capacitor charged to a few volts carry surface charge densities on the order of nanocoulombs to microcoulombs per square meter, far below the density that would trigger dielectric breakdown of the air between them.
Frequently Asked Questions
How many Coulombs per Square Inch are in 1 Coulomb per Square Centimeter?
1 Coulomb per Square Centimeter (C/cm²) equals exactly 6.4516 Coulombs per Square Inch (C/in²).
What's the difference between surface charge density and linear charge density?
Linear charge density (coulombs per meter) describes charge spread along a one-dimensional line or wire, while surface charge density (coulombs per square meter) describes charge spread across a two-dimensional area, such as a capacitor plate or conductor surface. They're used in different field-calculation formulas because the geometry of the charge distribution is different.
Why does abcoulomb per square meter equal 10 coulombs per square meter?
Because the abcoulomb itself is defined as exactly 10 coulombs within the CGS electromagnetic (EMU) unit system, and pairing it with the same SI square meter used elsewhere on this page simply carries that fixed 10x relationship straight through into the surface charge density unit.
Where does surface charge density actually get used?
It's central to capacitor design and any electrostatics problem involving charged conducting surfaces — the field just outside a charged conductor, the charge stored on capacitor plates for a given plate area, and boundary-value problems in electromagnetism that use Gauss's law at a conductor's surface.