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Equipment Grounding Conductor Size Calculator (NEC Table 250.122)

Find your required EGC size instantly.

Inputs

ℹ️The equipment grounding conductor's own material — not necessarily the same as the circuit's ungrounded conductors. Table 250.122 uses genuinely different size boundaries for copper and aluminum — aluminum EGCs run one to two sizes larger than the equivalent copper size.

A

ℹ️The rating or setting of the automatic overcurrent device (breaker or fuse) protecting the circuit ahead of the equipment — not the ampacity of the circuit conductors themselves. Common standard sizes: 15, 20, 30, 40, 60, 100, 150, 200, 400A, up to 6000A for large services — an adjustable-trip breaker's actual setting (e.g. 201A) works too, since Table 250.122 keys off the OCPD's "rating or setting," not just standard sizes.

Ungrounded Conductors Upsized?

Increased for Voltage Drop or Another Reason?

Cost

Enable Cost Estimation?

Required Equipment Grounding Conductor: 8 AWG (Copper)

Sized directly from NEC Table 250.122, no proportional increase applies

NEC Table 250.122 Lookup

OCPD (breaker/fuse) rating: 100 A

Table row: Over 60 through 100 A

Table-derived EGC size: 8 AWG

250.122(B) Upsize Check

Not checked — enable the upsize toggle if ungrounded conductors were increased for voltage drop or another reason

Assumptions Used

NEC Table 250.122 (minimum size equipment grounding conductors), NEC 250.122(B) proportional increase where ungrounded conductors are upsized. Assumes a single, homogeneous conductor material for both the ungrounded conductors and the EGC, and a single (non-parallel) raceway or cable run. This is a reference estimate — confirm against the code edition adopted in your jurisdiction and a licensed electrician before final installation.

Want the full walkthrough on Table 250.122, the 250.122(B) upsize rule, and how this differs from grounding electrode conductor sizing? Equipment Grounding Conductor Sizing Guide →

Equipment Grounding ConductorPanel100 AUngrounded conductor (OCPD-protected)8 AWGEquipmentFault current returns via the EGC — not through earthDiagram simplified for clarity (not to scale)

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Equipment Grounding Conductor Size Calculator.

General equipment grounding conductor size estimate

This page gives the full combined result — the Table 250.122 lookup and the 250.122(B) upsize check — from one OCPD rating and material selection.

It's the same calculator behind every other equipment grounding conductor variant on this site, just without a specific scenario pre-selected — useful for a general estimate before finalizing the exact installation with a licensed electrician.

  • Looks up NEC Table 250.122 directly from your circuit's OCPD rating and material.
  • Applies the NEC 250.122(B) proportional increase automatically when ungrounded conductors were upsized.
  • Supports copper and aluminum, and covers OCPD ratings from 15A branch circuits up to 6000A services.

Equipment Grounding Conductor Formula: How Is the Size Determined?

Two steps: a direct NEC Table 250.122 lookup from the OCPD rating, then a 250.122(B) proportional-increase check.

Step 1 — Table 250.122 Lookup

Find the Table 250.122 row whose OCPD-rating range contains the circuit's breaker/fuse rating

Table EGC Size = that row's EGC size, for the selected material (Cu or Al)

Table 250.122 has 19 rows, each covering a range of overcurrent device ratings, with separate copper and aluminum/copper-clad aluminum columns — sized from the OCPD rating, not the ampacity of the circuit conductors themselves.

Step 2 — 250.122(B) Proportional Increase

If ungrounded conductors were increased for voltage drop (or another reason besides temperature/conductor-count derating):

Ratio = Actual Installed Ungrounded Conductor CM ÷ Minimum Required Ungrounded Conductor CM

Final EGC = next standard size ≥ (Table EGC Size CM × Ratio), never larger than the ungrounded conductor itself

A 2020+ NEC exception also permits a qualified person to determine an alternative EGC size using engineering judgment instead of the strict circular-mil proportion — that professional-judgment path isn't modeled here, since it depends on site-specific analysis this calculator can't perform.

Worked Example

This example walks through your current inputs above, using the same steps as the Formula section.

Input Values Used

InputValueWhy it is used
OCPD rating100 ASets the Table 250.122 row
EGC materialCopperSets the Table 250.122 column
Ungrounded conductors upsized?NoDetermines whether the 250.122(B) proportional increase applies

Step 1 — Table 250.122 Lookup

CalculationResult
Table rowOver 60 through 100 A
Table-derived EGC size8 AWG

Step 2 — 250.122(B) Upsize Check

CalculationResult
Upsize checkNot checked — ungrounded conductors not marked as upsized
Final recommended size8 AWG (copper)

Therefore, for a 100 A circuit, you need approximately 8 AWG copper for the equipment grounding conductor.

Disclaimer: This calculator provides approximate results for planning and estimation purposes only. Actual requirements may vary based on site conditions, materials, workmanship, and local building regulations. Always consult a qualified engineer, architect, or construction professional before making final decisions.

FAQ

The rating or setting of the circuit's overcurrent device (breaker or fuse), and the EGC's own material (copper or aluminum) — Table 250.122 is looked up directly from those two values, not the ampacity of the circuit's ungrounded conductors.
Yes — enable the upsize toggle and enter the minimum required and actual installed ungrounded conductor sizes, and the calculator applies the correct proportional increase automatically.