| 1 | System Voltage | 24 VDC, 48 VDC, 110 VDC, 125 VDC, or 220 VDC | Choose a breaker with a DC voltage rating equal to or higher than the maximum continuous system voltage. DC ratings are not automatically interchangeable with AC ratings. | A 48 VDC battery system requires a breaker specifically rated for at least 48 VDC on the intended number of poles. |
| 2 | Number of Poles | 1-pole, 2-pole, 3-pole, or 4-pole configurations | Use the number of poles required to isolate the circuit conductors. Confirm whether all poles are rated for switching and interruption at the selected DC voltage. | A two-pole arrangement may be used to disconnect both positive and negative conductors in a floating DC circuit, subject to the system design and applicable code. |
| 3 | Continuous Current Rating | Common ratings: 6 A, 10 A, 16 A, 20 A, 32 A, 63 A, 100 A, and 125 A | Select a rating above the normal operating current while maintaining overload protection for the conductors. Consider continuous-load rules, ambient temperature, and cable ampacity. | For a 20 A continuous load, the final rating depends on local electrical rules, conductor size, installation method, and the breaker’s permitted loading. |
| 4 | Interrupting Capacity | Typical DC ratings: 2 kA, 4.5 kA, 6 kA, 10 kA, and higher | The interrupting rating must be equal to or greater than the prospective short-circuit current at the installation point. Check the rating at the actual voltage and pole arrangement. | A high-capacity battery bank may deliver several kiloamps of fault current, so a 2 kA breaker may be unsuitable even when its current rating is adequate. |
| 5 | Trip Characteristic | Thermal-magnetic, magnetic-only, electronic, and time-current curves | Match the trip response to load inrush, motor starting current, capacitive input current, and conductor protection requirements. Avoid nuisance tripping without sacrificing fault protection. | A motor-driven DC load may require a trip profile that tolerates short starting surges while still clearing sustained overloads. |
| 6 | Installation Space and Mounting | DIN rail or panel mount; typical widths of 18 mm per module for compact devices | Verify breaker width, height, depth, terminal clearance, bend radius, ventilation, busbar compatibility, and accessibility inside the enclosure. | A two-pole compact breaker may occupy approximately 36 mm of modular rail width, but terminal and wiring clearances still need to be checked. |
| 7 | Environment, Standards, and Accessories | Operating temperature, humidity, pollution level, terminal type, auxiliary contacts, alarm contacts, and shunt trip options | Confirm compliance with the applicable electrical standard and enclosure requirements. Apply temperature derating where specified and select accessories needed for monitoring or remote control. | A control cabinet in a hot location may require a lower continuous load or an enclosure with improved heat dissipation. |