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Heat Pump Electrical Load Calculator (NEC 220.82(C) Heat Pump + Supplemental Heat)

Calculate panel size with a heat pump.

Inputs

sq ft

ℹ️Outside-dimension floor area per NEC 220.82 — excludes open porches, garages, and unfinished/unused spaces not adaptable for future use.

ℹ️NEC 220.52(A) requires a minimum of 2 (1,500 VA each) — this calculator enforces that floor automatically.

ℹ️NEC 220.52(B) requires a minimum of 1 (1,500 VA) — this calculator enforces that floor automatically.

Fixed-in-Place Appliances

Include every permanently connected appliance — range, dryer, water heater, dishwasher, disposal, and similar — at full nameplate VA/watts. Don't include portable, cord-and-plug appliances.

Appliance 1

VA

Appliance 2

VA

Heating / Cooling

ℹ️NEC 220.82(C) uses only the larger of heating or cooling load, never both added together.

VA
VA

ℹ️Counted at 65% demand factor, per NEC 220.82(C).

Cost

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Recommended Service/Panel Size: 100A

From 23,720 VA total demand load at 240V (98.8A)

Load Breakdown (NEC 220.82 Optional Calculation)

General lighting + receptacle load (2,200 sq ft × 3 VA)6,600 VA
Small-appliance circuits (2 × 1500 VA)3,000 VA
Laundry circuit(s) (1 × 1500 VA)1,500 VA
Water Heater4,500 VA
Dishwasher1,200 VA
Subtotal16,800 VA
After demand factor (100% of first 10,000 VA + 40% of remainder)12,720 VA
Heating/cooling load (Heat Pump with Supplemental Electric Heat)11,000 VA
Total demand load23,720 VA

Service Sizing

Total demand current: 98.8A

Recommended standard service: 100A

Headroom above calculated demand: 1.2A (1.2%)

Assumptions Used

NEC 220.82 Optional Calculation for dwelling units — a single 120/240V or 208Y/120V service ≥100A. Heating and cooling loads are never added together, only the larger is used. This is a reference estimate — confirm with a licensed electrician before final installation.

Sizing an individual circuit's breaker next? Circuit Breaker Size Calculator →

Need the feeder or service wire size for this load? Wire Size Calculator →

Service Panel SizingUtility Service100ATotal Demand23,720 VAHeadroom1.2 ADiagram simplified for clarity (not to scale)

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Electrical Load / Panel Size Calculator.

Heat pump service sizing

A heat pump with supplemental (backup) electric heat needs its two components entered separately — the compressor at 100% of nameplate, and the supplemental heating element at NEC 220.82(C)'s 65% demand factor.

Edit the compressor and supplemental heat nameplate ratings above to match your actual equipment.

  • Heat pump compressor load is counted at 100% of nameplate rating.
  • Supplemental (backup) electric heat is counted at 65% of nameplate rating, reflecting that it typically doesn't run continuously at full output alongside the compressor.
  • Switch to "Heat Pump (no supplemental electric heat)" if your system has no backup strip heat.

Panel Size Formula: How Is Service Size Calculated?

NEC 220.82 combines a general load subtotal (subject to one demand factor) with a separate heating/cooling load, then rounds the total current up to a standard service size.

Step 1 — General Load Subtotal

General Load = (Floor Area × 3 VA) + (Small-Appliance Circuits × 1,500 VA)

+ (Laundry Circuits × 1,500 VA) + Sum of Fixed Appliance Nameplate VA

Per NEC 220.82(B), general lighting/receptacle load, small-appliance and laundry circuits, and every fixed-in-place appliance (including range and dryer, at full nameplate VA) are all summed into one subtotal.

Step 2 — Apply the Demand Factor

General Demand = 100% of first 10,000 VA + 40% of the remainder above 10,000 VA

This single demand factor reflects that not every load in the general subtotal runs at full power simultaneously — it's applied to the general subtotal only, before the heating/cooling load is added.

Step 3 — Add the Larger of Heating or Cooling

Total Demand = General Demand + MAX(Heating Load, Cooling Load)

Per NEC 220.82(C), heating and cooling are never added together — only the larger of the two is included, since a dwelling's heating and cooling equipment isn't assumed to run simultaneously.

Step 4 — Convert to Current and Round to a Standard Size

Total Demand Current = Total Demand (VA) ÷ Voltage

Recommended Service = smallest standard size ≥ Total Demand Current

Standard dwelling service sizes (100, 125, 150, 200, 225, 300, 400A) come from what's actually manufactured and installed — the calculated current is always rounded up, never down.

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
Floor Area2,200 sq ftSets general lighting/receptacle load
Fixed Appliances2 appliances, 5,700 VAAdded to general subtotal before demand factor
HVACHeat Pump with Supplemental Electric HeatSets the heating/cooling load added after demand factor

Steps 1-2 — General Load and Demand Factor

CalculationResult
General load subtotal16,800 VA
After 10,000 VA / 40% demand factor12,720 VA
Heating/cooling load (Heat Pump with Supplemental Electric Heat)11,000 VA
Total demand load23,720 VA

Therefore, for 23,720 VA of total demand load at 240V (98.8A), you need a 100A service/panel.

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

NEC 220.82(C) applies a 65% demand factor to supplemental/backup electric heat on a heat pump system, reflecting that it's expected to run intermittently to cover a shortfall rather than continuously at full nameplate alongside the compressor.
Select "Heat Pump (no supplemental electric heat)" instead — the calculator uses the compressor's nameplate rating directly with no supplemental component.