Motor FLA & Protection Sizer
Estimate motor FLA to recommend contactor, overload, and breaker sizes.
Motor Details
Estimated from NEC 430.248/250. You can override this value.
Sizing Results
The Critical Distinction: FLC vs. FLA
When sizing motor circuits for industrial automation in compliance with NEC Article 430, the most common error is confusing Full-Load Current (FLC) with Full-Load Amperes (FLA). Understanding this distinction is vital for safety and code compliance.
- Full-Load Current (FLC): You must use the values found in NEC Tables 430.248 (1-phase) or 430.250 (3-phase) for sizing branch-circuit conductors and short-circuit/ground-fault protective devices. Never use the nameplate FLA for these calculations.
- Full-Load Amperes (FLA): Use the actual motor nameplate rating only when sizing the separate overload protection.
Sizing Steps for Motor Branch Circuits
A. Branch-Circuit Conductors
Conductors must be sized at a minimum of 125% of the motor FLC as determined by the NEC tables.
B. Short-Circuit and Ground-Fault Protection (SCGFP)
This protection defends the conductors and controller against high-level faults. Sizing is based on the motor FLC and the device type (NEC Table 430.52). For example, an Inverse-Time Circuit Breaker is typically sized at 250% of FLC, while a Dual-Element Fuse is sized at 175%.
C. Motor Overload Protection
Overload protection prevents the motor from overheating due to excessive load. It is calculated based on the motor nameplate FLA. Standard sizing is usually 125% for motors with a service factor of 1.15 or greater, and 115% for others.
Important Considerations for Automation
Keep in mind that motors draw 6–8 times their FLC during startup. Additionally, installations involving Variable Frequency Drives (VFDs) often require adhering to the drive manufacturer’s specific instructions for input protection. Using a dedicated Motor FLA & Protection Sizer can streamline these complex NEC calculations.