MCA & MOCP Calculator (NEC Article 440)
Find your AC/HVAC wire and breaker size instantly.
π Last updated: September 1, 2026
Inputs
βΉοΈMinimum Circuit Ampacity, printed directly on the equipment's nameplate β this sets the minimum required wire ampacity.
βΉοΈMaximum Overcurrent Protection (sometimes labeled MOP or MFS for max fuse size), printed directly on the nameplate β this sets the maximum allowed breaker/fuse size.
βΉοΈCopper and aluminum have different ampacity tables β aluminum needs a larger wire size for the same MCA.
βΉοΈThe wire's own temperature rating (e.g. THHN is 90Β°C).
βΉοΈPer NEC 110.14(C), the equipment/breaker terminal rating governs if it's lower than the wire's own insulation rating β most residential equipment is rated 60Β°C or 75Β°C even when 90Β°C wire is used.
Derating
Cost
Wire Size (Copper)
10 AWG
Breaker / Fuse Size
40 A
MCA β Minimum Circuit Ampacity
MCA used: 27 A
Wire ampacity (base): 35 A
Entered directly from nameplate
MOCP β Max Overcurrent Protection
MOCP used: 40 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 β 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 β 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 β
Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete MCA & MOCP Calculator.
General MCA & MOCP size estimate
This page gives the full combined result β wire size from MCA, and breaker/fuse size from MOCP β from either nameplate values or component ratings.
It's the same calculator behind every other MCA/MOCP variant on this site, just without a specific scenario pre-selected β useful for a general estimate before finalizing the exact installation with a licensed electrician or HVAC contractor.
- Supports both nameplate-value entry and from-scratch calculation from motor RLA/FLA ratings.
- Automatically applies the NEC 440.22 175%-225% rounding rule for MOCP.
- Supports copper and aluminum, with optional ambient-temperature and conductor-count derating.
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 β MCA (NEC 440.32/440.33)
MCA = (1.25 Γ Largest Motor RLA/FLA) + Other Motor Loads + Other Non-Motor Loads
Wire Size = smallest standard AWG/kcmil whose (derated) ampacity β₯ MCA
Only the single largest motor gets the 125% factor β every other motor and non-motor load on the circuit is added at 100%.
Step 2 β MOCP (NEC 440.22)
Base = (1.75 Γ Largest Motor RLA/FLA) + Other Loads, rounded UP to the next standard size
Cap = (2.25 Γ Largest Motor RLA/FLA) + Other Loads
MOCP = the rounded-up value, UNLESS it exceeds the cap β then round DOWN to the largest standard size within the cap
Breaker/Fuse Size = the resulting MOCP value directly
The 175%β225% 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 β 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
| Input | Value | Why it is used |
|---|---|---|
| Input method | Nameplate values | Determines whether MCA/MOCP are entered directly or calculated |
| Wire material | Copper | Sets which NEC Table 310.16 ampacity column governs the wire size |
Step 1 β MCA
| Calculation | Result |
|---|---|
| MCA | 27 A |
| Wire size | 10 AWG (copper) |
Step 2 β MOCP
| Calculation | Result |
|---|---|
| MOCP | 40 A (from nameplate) |
| Breaker/fuse size | 40 A |
Therefore, for this equipment you need approximately 10 AWG copper wire on a 40 A breaker/fuse.
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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.