
Transformer Calc NEC
NEC Art.450 kVA & OCPD
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NEC transformer overcurrent protection calculator for electricians, apprentices, and electrical engineers. Size primary and secondary OCPD per NEC Table 450.3(B), calculate full-load amps (FLA), and select conductors from Table 310.16 - all per NEC 2023 (NFPA 70). Works 100% offline on the job site.
Whether you're sizing overcurrent protection for a 75 kVA, 480-to-208V three-phase transformer, or checking if primary-only protection requires 125% or 300%, this calculator gives you accurate NEC-compliant results in seconds. Use it as your go-to transformer protection reference - from kVA rating to OCPD and conductor selection.
TRANSFORMER CALCULATOR FEATURES:
- Primary overcurrent protection per NEC 450.3(B) - 125%/167%/250%/300% rules
- Secondary overcurrent protection per NEC 450.3(B) - 125%/167%/250% rules
- Primary-only and primary+secondary protection methods
- Full-load ampere (FLA) calculation: single-phase and three-phase
- Next-standard-size-up applied only where Note 1 permits (125% cells); 167%/250%/300% treated as ceilings
- All standard OCPD ratings per NEC 240.6(A), including fuse-only ratings 1, 3, 6, 10, 601 for small transformers
- Conductor sizing from NEC Table 310.16 (75°C column, printed code values)
- Copper and aluminum conductor support
- 40 standard kVA ratings: 0.05–500 kVA single-phase, 3–2500 kVA three-phase
- 7 voltage presets: 120V, 208V, 240V, 277V, 460V, 480V, 600V
- Single-phase and three-phase support
- NEC article references for every calculation result
NEC REFERENCES INCLUDED:
- NEC Table 450.3(B) - Transformer overcurrent protection (600V or less)
- NEC 450.3(B) Note 1 - Next-size-up rule for primary-only protection
- NEC 240.6(A) - Standard overcurrent device ratings
- NEC Table 310.16 - Conductor ampacity at 75°C
PROTECTION METHOD RULES (printed Table 450.3(B)):
- Primary Only, 9A or more: 125% maximum — next standard size up permitted (Note 1)
- Primary Only, 2–9A: 167% maximum — ceiling, no round up
- Primary Only, under 2A: 300% maximum — ceiling, no round up
- Primary + Secondary: primary 250% maximum (ceiling); secondary 125% (Note 1) for 9A or more, 167% ceiling under 9A
CALCULATION RESULTS INCLUDE:
- Primary full-load amps (FLA) with formula
- Secondary full-load amps (FLA) with formula
- Primary OCPD size (standard rating per NEC 240.6(A))
- Secondary OCPD size when applicable
- Primary and secondary conductor sizes with ampacity
- Applicable NEC percentage rules and references
- Protection method notes and explanations
PRO FEATURES (one-time purchase):
- No ads - clean interface for professionals
- Save transformer calculation history with labels
- Export calculations as PDF reports for permits and records
- Dark theme support
HOW THE TRANSFORMER CALCULATOR WORKS:
1. Select phase type (single-phase or three-phase)
2. Choose kVA rating from standard sizes
3. Select primary and secondary voltage
4. Choose protection method (primary only or primary + secondary)
5. Select conductor material (copper or aluminum)
6. Get OCPD sizes, conductor recommendations, and NEC references instantly
BUILT FOR ELECTRICIANS ON THE JOB SITE:
This transformer calculator is designed by electricians, for electricians. Enter your transformer parameters, get the correct OCPD size and conductor recommendation instantly - no complicated menus or unnecessary features. One-hand operation, instant results.
PERFECT FOR:
- Licensed electricians sizing transformer protection daily
- Electrical apprentices studying for journeyman exams
- Electrical engineers and designers
- Electrical contractors bidding jobs
- NEC code exam preparation
- Journeyman and master electrician exam study
OFFLINE & PRIVACY:
- Works 100% offline - no internet needed on the job site
- No account required
- No data collection - your calculations stay on your device
Simplify your transformer protection sizing on the job site.
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What's New in Transformer Calc NEC
1.0.10
July 10, 2026
What's new: • Secondary conductor sizing now follows NEC 240.21(C): the conductor is sized so the secondary breaker never exceeds its ampacity — no next-size-up on the secondary (e.g. a 75 kVA 208V secondary is 350 kcmil, not 300) • Large transformers that exceed a single conductor now show parallel sets per NEC 310.10(H), e.g. "2 × 600 kcmil", instead of a blank result • More precise three-phase current (exact √3) Thanks for using ElecTools! Send feedback to support@tradetools.dev.
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