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Candidate-cable arithmetic

Cable Voltage-Drop Candidate Check

Calculate steady-state voltage drop from operating R/X data for a candidate cable. This page does not select conductor cross-section, ampacity or protection.

IEC 60228:2023 scopeIEC 60364-5-52 contextNo generic ampacity table

Candidate data: use R′ at the applicable conductor operating temperature and X′ at the applicable frequency/configuration from cable-maker data or a qualified calculation. The AC model is for sinusoidal current with lagging displacement power factor; it does not model leading power factor, harmonics or unbalance.

Steady-state candidate result

Comparison with entered drop limit
Calculated voltage drop ΔU
Calculated voltage drop
Series term R′cosφ + X′sinφ
Conductor I²R loss over circuit

Steady-state equations

2-wire DC: ΔU = 2ILR′/1000
1φ AC: ΔU = 2IL(R′cosφ + X′sinφ)/1000
balanced 3φ AC: ΔU = √3IL(R′cosφ + X′sinφ)/1000

L is one-way metres and R′/X′ are per-conductor Ω/km. For DC the displayed series term is R′. Circuit conductor loss is 2I²R′L/1000 for two-wire DC/1φ and 3I²R′L/1000 for balanced 3φ. These are candidate-circuit calculations, not short-circuit loop calculations.

The equations follow the steady-load formulation in the Schneider Electric Electrical Installation Guide.

IEC scope, editions and tables

IEC 60228:2023, edition 4 specifies nominal conductor cross-sectional areas from 0.5 to 3500 mm² plus construction and resistance requirements. It does not by itself select a safe installed cable and does not establish an AWG equivalence table.

IEC 60364-5-52:2009 with Amendment 1:2024 covers wiring-system selection/erection, current-carrying capacity, harmonics and voltage drop. Exact values and national rules must be obtained from the licensed standard and applicable local implementation; this page reproduces no normative ampacity or voltage-drop table.

No cable approval: verify installation method, conductor count, insulation and temperature limits, ambient/grouping/soil factors, harmonic neutral loading, protective-device coordination, fault-loop impedance, automatic disconnection, short-circuit thermal withstand, minimum mechanical size, voltage-drop limits for the whole installation, terminals, parallel conductors and applicable national code.

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Candidate voltage-drop arithmetic only; not cable sizing or installation approval. Scientific review: July 2026.

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