Calculadora de Llenado de Caja
Calcula el volumen requerido de la caja eléctrica a partir de conductores, dispositivos y tierras (NEC 314.16).
Tabla de amortización
| # | Pago | Capital | Interés | Saldo |
|---|---|---|---|---|
Crecimiento a lo largo del tiempo
| Año | Invertido | Valor |
|---|---|---|
Introducción
Box Fill Calculator — Calculate required electrical box volume from conductors, devices, and grounds (NEC 314.16). Enter # of 14 AWG conductors, # of 12 AWG conductors, # of 10 AWG conductors, Device yokes (switches/receptacles), to get an instant, accurate result.
Fórmula
NEC 314.16(B): required box volume = Σ(conductor count × per-conductor volume allowance by gauge) + (2 × largest-conductor allowance × device yokes) + (largest-conductor allowance, counted once, if any equipment grounding conductors are present).
Paso a paso
- Enter the # of 14 AWG conductors.
- Enter the # of 12 AWG conductors.
- Enter the # of 10 AWG conductors.
- Enter the Device yokes (switches/receptacles).
- Toggle "Ground wires present" on or off as needed.
- Click Calculate to see your result instantly.
Ejemplo del mundo real
Example: With # of 14 AWG conductors = 0, # of 12 AWG conductors = 3, # of 10 AWG conductors = 0, Device yokes (switches/receptacles) = 1, Ground wires present = yes, the Box Fill Calculator gives Required Volume Cu In: 13.5, Basis: NEC Table 314.16(B).
Preguntas Frecuentes
Why do device yokes (switches/receptacles) count double?
Why are all grounding conductors counted as just one allowance?
Does this cover every box-fill exception?
What inputs does the Box Fill Calculator need?
How accurate is the Box Fill Calculator?
Is the Box Fill Calculator free to use?
Acerca de Calculadora de Llenado de Caja
The Box Fill Calculator uses a real, verifiable formula — NEC 314.16(B): required box volume = Σ(conductor count × per-conductor volume allowance by gauge) + (2 × largest-conductor allowance × device yokes) + (largest-conductor allowance, counted once, if any equipment grounding conductors are present). — so results are accurate every time, not an approximation.