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same motor · locked rotor · Δ reference to Y estimate

Idealized Star-vs-Delta Starting Ratio Worksheet

Compare winding voltage, locked-rotor line current and locked-rotor torque for one documented motor that runs in delta at the supply line voltage.

VY = VL/√3IY ≈ IΔ/3TY ≈ TΔ/3
Not a starter, contactor, protection or timer selector. The one-third current and torque relations are idealized locked-rotor comparisons for the same winding and supply. They do not predict acceleration, transition current, heating, voltage dip, load capability or equipment ratings.

Documented inputs and traceability




Idealized locked-rotor comparison

Δ winding voltage
Y winding voltage
Documented Δ DOL locked-rotor line current
Idealized Y locked-rotor line current
Documented Δ DOL locked-rotor torque
Idealized Y locked-rotor torque
Y/Δ winding-voltage ratio
Idealized Y/Δ current and torque ratios

Formula, units and classification

वीΔ,winding = वीएल   [V RMS]
वीY,winding = वीएल/√3   [V RMS]
आईY,line,LR ≈ IΔ,line,LR/3   [A RMS]
टीY,LR ≈ TΔ,LR/3   [N·m]
मात्रा अर्थ सीमा
वीएल supply line-to-line RMS voltage not automatically the voltage present at motor terminals during starting
आईΔ,LR documented DOL Δ locked-rotor line current not rated current multiplied by a generic factor
टीΔ,LR documented DOL Δ locked-rotor torque not a universal multiple of rated torque
आईY,LR,TY,LR idealized star-start standstill estimates not acceleration curves, transition peaks, thermal duty or equipment ratings

The one-third relations are manufacturer-supported engineering approximations for the same motor winding at locked rotor. They are not themselves acceptance formulae from an IEC standard.

Removed unsafe selection claims

  • No invented starting torque. The former page hard-coded DOL torque as 1.5× rated torque. Starting torque must come from the motor manufacturer or a controlled test at the stated voltage/frequency.
  • No timer by motor kW. Fixed 3–5, 5–10, 8–15 and 10–20 second bands ignored load torque, inertia, acceleration, supply behaviour and transition method.
  • No contactor sizing from amperes alone. Device selection requires circuit position, utilization category, duty, coordination, overload/SCPD arrangement, switching frequency, ambient conditions and manufacturer data under current IEC 60947-4-1.
  • No universal changeover speed or transient. ABB notes high transition currents and requires the chosen transition point to be verified; this worksheet does not generate an 80%/75–85% rule or a 10–15× current claim.
  • No generic application verdict. Starting succeeds only if accelerating torque remains positive through the speed range and thermal/network limits are satisfied.
  • No hidden state. Power/rated-current defaults, multipliers, auto-calculation, dynamic tables, clipboard output and generated FAQ HTML were removed.

Source traceability

Claim वर्गीकरण Evidence
IEC 60034-1:2026 Edition 15 is the current rating-and-performance base publication; IEC 60034-1:2022 was withdrawn on 13 March 2026. Official IEC status and scope IEC 60034-1:2026
IEC 60034-12:2024 Edition 4 covers starting-performance parameters for specified single-speed three-phase cage motors intended for DOL or star-delta starting, including qualifying dual-voltage motors. Official IEC status and scope IEC 60034-12:2024
IEC 60947-4-1:2023 Edition 5 covers electromechanical contactors and motor-starters and has Corrigendum 1:2026 incorporated in the corrected 2026-03 version. Official IEC status and scope IEC 60947-4-1:2023; COR1:2026
For a qualifying motor, ABB states that star-delta start reduces current inrush and motor torque to one third of direct-start values, warns of high transition currents, and requires delta motor voltage equal to mains plus six terminal windings. Manufacturer engineering guide; page visually inspected ABB Starting Combinations, p. 1/5 (PDF p. 7)

Accessed: 15 July 2026. Exact IEC starting-performance tables, device ratings, utilization categories and coordination requirements remain NEEDS_LICENSED_SOURCE.

Reference check

For Vएल=400 V, documented IΔ,LR=294 A and TΔ,LR=150 N·m: VY,winding=230.940107676 V, IY,LR≈98 A and TY,LR≈50 N·m. The winding-voltage ratio is 57.735026919% and the idealized current/torque ratios are 33.3333333333%.

प्रश्न

Can this choose a contactor or overload relay?

No. Use the manufacturer’s coordinated starter tables and the applicable current IEC 60947 documents for the actual circuit, duty and fault level.

Can I enter rated current instead of locked-rotor current?

No. This worksheet requires a documented delta-connected locked-rotor line-current value. It does not invent a DOL multiplier.

Does one-third torque prove the load will accelerate?

No. Compare the full motor and load torque-speed curves, inertia, supply voltage drop and thermal duty across the entire start.

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