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Commercial Refrigeration MCA & MOCP Calculator (NEC Article 440)

Size a commercial refrigeration circuit.

Inputs

Input Method
A

ℹ️Minimum Circuit Ampacity, printed directly on the equipment's nameplate — this sets the minimum required wire ampacity.

A

ℹ️Maximum Overcurrent Protection (sometimes labeled MOP or MFS for max fuse size), printed directly on the nameplate — this sets the maximum allowed breaker/fuse size.

ℹ️Copper and aluminum have different ampacity tables — aluminum needs a larger wire size for the same MCA.

ℹ️The wire's own temperature rating (e.g. THHN is 90°C).

ℹ️Per NEC 110.14(C), the equipment/breaker terminal rating governs if it's lower than the wire's own insulation rating — most residential equipment is rated 60°C or 75°C even when 90°C wire is used.

Derating

Apply Ambient Temperature / Conductor Count Derating?

Cost

Enable Cost Estimation?

Wire Size (Copper)

8 AWG

Breaker / Fuse Size

50 A

MCA — Minimum Circuit Ampacity

MCA used: 32 A

Wire ampacity (base): 50 A

Entered directly from nameplate

MOCP — Max Overcurrent Protection

MOCP used: 50 A

Entered directly from nameplate

Assumptions Used

NEC Article 440 (440.32 MCA, 440.22 MOCP), NEC Table 310.16 conductor ampacity, NEC 240.6(A) standard overcurrent device sizes. Manufacturer nameplate MCA/MOCP values, where marked, take precedence over any from-scratch calculation — this reflects UL listing testing specific to that equipment. The 175%-to-225% MOCP rounding step has genuinely documented interpretation differences across published sources (see the note above when calculating from component ratings). This is a reference estimate — confirm against the code edition adopted in your jurisdiction and a licensed HVAC/electrical contractor before final installation.

Want the full walkthrough on MCA vs. MOCP vs. RLA/FLA, and the 175%/225% rounding rule? MCA & MOCP Sizing Guide →

MCA / MOCP Circuit SizingPanel50 A Breaker8 AWG (copper)AC / CompressorWire sized to MCA — breaker sized to MOCPDiagram simplified for clarity (not to scale)

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete MCA & MOCP Calculator.

Commercial refrigeration circuit sizing

Walk-in coolers, freezers, and packaged commercial refrigeration units follow the same NEC Article 440 MCA/MOCP framework as residential AC equipment, though typically at higher amperages and sometimes on three-phase power.

This page is pre-set to a common single-phase commercial refrigeration MCA/MOCP range — edit the inputs above to match your actual equipment's nameplate.

  • Commercial refrigeration equipment nameplates follow the same MCA/MOCP convention as residential AC — read them directly rather than recalculating where a nameplate value exists.
  • Multiple refrigeration units on the same electrical room (walk-in cooler, walk-in freezer, ice machine) are usually each on their own dedicated circuit, not shared.
  • Confirm any evaporator fan motors and defrost heaters inside the unit are already included in the nameplate MCA/MOCP, or if they're on a genuinely separate circuit.

MCA & MOCP Formula: How Are They Determined?

Two independent NEC 440 calculations from the same motor/load data, followed by translating each into an actual standard wire and breaker size.

Step 1 — MCA (NEC 440.32/440.33)

MCA = (1.25 × Largest Motor RLA/FLA) + Other Motor Loads + Other Non-Motor Loads

Wire Size = smallest standard AWG/kcmil whose (derated) ampacity ≥ MCA

Only the single largest motor gets the 125% factor — every other motor and non-motor load on the circuit is added at 100%.

Step 2 — MOCP (NEC 440.22)

Base = (1.75 × Largest Motor RLA/FLA) + Other Loads, rounded UP to the next standard size

Cap = (2.25 × Largest Motor RLA/FLA) + Other Loads

MOCP = the rounded-up value, UNLESS it exceeds the cap — then round DOWN to the largest standard size within the cap

Breaker/Fuse Size = the resulting MOCP value directly

The 175%→225% range exists specifically to accommodate a motor-compressor's startup inrush current without nuisance tripping, while the 225% figure is a hard ceiling that can never be exceeded regardless of standard-size rounding. Published NEC sources genuinely disagree on whether rounding up to the next standard size is the routine default (used above) or should be reserved for a demonstrated starting-current problem, with a more conservative round-down-by-default reading otherwise — the calculator surfaces both values when calculating from component ratings; confirm the preferred interpretation with a licensed electrician or your local AHJ.

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
Input methodNameplate valuesDetermines whether MCA/MOCP are entered directly or calculated
Wire materialCopperSets which NEC Table 310.16 ampacity column governs the wire size

Step 1 — MCA

CalculationResult
MCA32 A
Wire size8 AWG (copper)

Step 2 — MOCP

CalculationResult
MOCP50 A (from nameplate)
Breaker/fuse size50 A

Therefore, for this equipment you need approximately 8 AWG copper wire on a 50 A breaker/fuse.

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

Yes — NEC Article 440 (Air-Conditioning and Refrigerating Equipment) covers both, using the same MCA/MOCP framework, though commercial equipment often runs at higher amperages and can be three-phase.
If they're on the same nameplate/listing as the refrigeration unit, they're already included in its MCA/MOCP — if they're wired as a genuinely separate circuit, size that circuit independently using its own nameplate or rating.