Solar & DC

PV DC Isolator Rating Calculator

Screen the minimum voltage rating, current rating, utilization category, and pole configuration for a PV array DC isolator (disconnector). A DC isolator must break the array under load at full string voltage, so its ratings come from the cold open-circuit voltage and the short-circuit current, not the nominal figures.

Use the cold-temperature string Voc for the voltage rating and the array Isc seen at the isolator (one string, or the combined array) for the current rating.
Minimum rated voltage Ue
V
Minimum rated current Ie
Utilization category
DC-PV2
Poles (in series)

How the ratings are set

Rated voltage Ue ≥ string cold Voc Rated current Ie ≥ 1.25 × Isc Category: DC-PV2 (IEC 60947-3), on-load PV switching

The isolator has to open while the array is generating, so it must interrupt a DC arc at the highest voltage the string can reach — the cold open-circuit voltage. The current rating carries the array short-circuit current with a continuous-duty margin, because a PV source sits close to its short-circuit current in normal operation.

Why DC-PV2 and series poles

The DC-PV2 utilization category (IEC 60947-3) certifies a switch to make and break a PV array on load, including the arc energy of a DC source with no natural current zero. As with DC breakers, the voltage rating is reached by putting poles in series so each shares the arc voltage — a 1000 V array typically needs several poles internally connected as the manufacturer specifies.

An AC switch-disconnector is not a PV DC isolator. Without a DC-PV rating and the correct series-pole wiring, it may not extinguish the arc when opening a live array. Use a device rated DC-PV2 for the string voltage.

Frequently asked questions

Where is a PV DC isolator required?

An accessible load-break isolator is normally required at the array and at the inverter so the DC side can be safely disconnected for maintenance. Local rules and IEC 60364-7-712 set the exact positions.

Do I size current on Isc or Impp?

On Isc with the continuous margin. A PV source’s operating current sits close to its short-circuit current, so Isc × 1.25 is the conservative continuous rating.

How many poles do I need?

Enough that the device’s per-pole DC voltage, multiplied by the series poles, covers the cold string voltage — the manufacturer states the configuration. Do not reduce poles to save space.

Select the DC isolator

Match the DC-PV2 rating, voltage, current, and poles to an isolator for the array or inverter position.

Standards referencedIEC 60947-3 (switches, disconnectors, DC-PV2) · IEC 60364-7-712 (PV systems) · IEC 62548 (PV array design).

Screening estimate for guidance only. Final isolator ratings, category, and pole configuration must be confirmed by a qualified person against the manufacturer’s DC data and the array design.