Calculator #002 IEC 60909-0 IEC 60909-1 MV 1 kV to 33 kV Sequence networks

Short-Circuit Current Calculator — MV, 1 kV to 33 kV (IEC 60909)

Positive / negative / zero sequence calculation of I″k3, I″k2, I″k1, peak ip and κ at every busbar of a user-defined network. Multiple parallel sources per circuit (infinite bus, transformer, manual Z, or known I″k); segments of type cable / OHL / transformer with parallel conductors; earthing model selector (TN / TT / IT / resistance / reactance / isolated); maximum and minimum regimes computed independently. All computation runs in your browser — no data leaves the page.

Working below 1 kV? The companion tool #012 Short-Circuit — LV up to 1 kV carries the rules IEC 60909-0 reserves for low-voltage systems: the peak current by the equivalent-frequency method c), minimum currents with the conductor at θe, motor groups and busbar trunking as elements, and validation against the worked 400 V example of IEC TR 60909-4 clause 3. This calculator still accepts low-voltage inputs, but the low-voltage tool is the one written for them.
Developed by the ieccalc.com engineering team
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Project settings (applied to all circuits)
IEC 60909 voltage factor c: LV (U ≤ 1 kV) cmax = 1.05, cmin = 0.95. MV/HV: cmax = 1.10, cmin = 1.00. I″k_max uses R at 20 °C, I″k_min uses R at the conductor operating temperature set above. Z2 = Z1 (static network, far from generator).
PRO — unlimited project size

The free tier carries the whole calculation — every standard, every check and the full .docx report — for up to 3 circuits in one project. PRO removes that limit so a complete installation fits into a single file. An admin invitation unlocks it for your account.

Glossary & abbreviations
Input data and network schema are intentionally compatible with Calculator #001 (voltage drop): identical field names for U, freq, system, region, segments/elements[].L, .series, .S, .R_km, .X_km, .material, .n_parallel, .theta_ref_R. Future calculators in the series will follow the same contract so a project can be started in one tool and continued in another.
Built-in validation tests
#CaseQuantityExpectedComputedStatus
Reference values computed by hand from IEC 60909-0 formulae; I″k1 test uses the three-sequence-network approach (|Z1 + Z2 + Z0|) and compares to the canonical limit cases (Z0 = Z1 → I″k1 = I″k3; Z0 = 3 Z1 → I″k1 = 0.6 I″k3).