Circuit Breaker Size Calculator
Estimate load current, design current, and the next common breaker rating for DC, single-phase AC, or balanced three-phase circuits—while keeping continuous-load and safety margins visible.
Enter circuit details
Select the method that matches the information available.
What does a circuit breaker size calculator do?
This calculator estimates the electrical load current, applies a selectable load-duration factor and optional design margin, then identifies the next common breaker rating. It can start from a measured current, from real power and voltage, or from an existing breaker rating.
A circuit breaker is not chosen from amperes alone. Its job is to protect conductors and equipment against overcurrent and fault conditions. Final selection requires conductor ampacity, installation method, ambient temperature, grouping, terminal temperature ratings, fault-current capability, trip characteristic, load type, voltage, poles, and applicable regulations.
Circuit breaker sizing formulas
The power mode first estimates operating current. It then applies the selected duration and margin factors before choosing a common rating.
I = P ÷ (V × η)I = P ÷ (V × PF × η)I = P ÷ (√3 × VL × PF × η)Design-current formula
Design current = load current × load-duration factor × margin factor. A 125% option is provided because it is commonly encountered for continuous-load sizing, but the correct rule depends on the governing standard and the equipment involved.
How to use the calculator
Example breaker calculations
| Example | Operating current | Factor | Design current | Possible next rating* |
|---|---|---|---|---|
| 18 A continuous load | 18 A | 125% | 22.5 A | 25 A |
| 3.5 kW, 230 V, PF 0.90, η 95% | 17.8 A | 125% | 22.2 A | 25 A |
| 15 kW, 400 V 3φ, PF 0.85, η 92% | 27.7 A | 125% | 34.6 A | 35 A |
| 24 A non-continuous estimate | 24 A | 100% | 24 A | 25 A |
*Illustrative common ratings only. Availability and permitted selection vary by device series, country, conductor, equipment, and applicable electrical standard.
Important checks before selecting a breaker
Frequently asked questions
How do I calculate circuit breaker size from load current?
Multiply the expected load current by the selected load-duration factor and any justified design margin. Then compare that design current with available standard ratings while ensuring the breaker does not exceed the protected conductor's permitted ampacity.
Why does the calculator offer a 125% continuous-load factor?
A 125% factor is commonly used in some rules for loads expected to operate continuously. The legal definition of a continuous load and the required sizing method depend on the applicable electrical code, circuit type, and equipment.
Can I choose the next larger breaker automatically?
The next common rating is a useful estimate, but it is not automatically acceptable. The conductor, terminals, equipment protection requirements, special load rules, fault level, and local code can require a different rating or protection arrangement.
Does this calculator determine wire size?
No. Wire sizing requires conductor material, insulation type, installation method, ambient temperature, grouping, length, voltage drop, terminal ratings, fault withstand, and local rules. The displayed design current is only one input to that process.
How should I size a breaker for a motor?
Motor circuits often use separate rules for conductor sizing, overload protection, and short-circuit or ground-fault protection. Running current alone is not enough because starting current and acceleration time can cause nuisance tripping.
What voltage should I use for a three-phase calculation?
This calculator uses line-to-line voltage in the balanced three-phase formula. Enter the system line voltage and the total three-phase real power, not per-phase power.
Is a breaker rated at 100% of its current usable continuously?
Not always. Continuous loading rules depend on the breaker listing, enclosure, equipment, conductor, and governing electrical standard. Some assemblies are specifically rated for 100% continuous operation under stated conditions, while many applications use a lower continuous loading limit.