Buck Boost Transformer Sizing Calculator
Screen minimum buck-boost correction-winding kVA from supply volts, desired load volts, load amps and connection. Default: 208 V → 240 V @ 50 A → 1.6 kVA minimum/unit. Jump the 208↔240 amp ladder. For pad-mount kVA use transformer size; for nameplate winding current use transformer FLA.
Quick Calculator
Results update instantly. Advanced options: phase and 3-phase connection below.
About this calculator
Vendor-neutral buck-boost sizing for small corrections (Suggest: 208 to 240)—not an OEM SKU picker. Confirm continuous load amps first; if you only have distribution kVA, get secondary current from transformer FLA. Hub: power calculator · transformer.
Calculation Results
208 V → 240 V @ 50.0 A · Single-phase (1 unit)
Calculated minimum per unit = 1.600 kVA (1600 VA). This does not select an OEM catalog unit.
Default preview — updates when you change inputs.
Unit VA ≈ Iload × ΔV for single-phase/open-delta, or ÷√3 per wye unit. Treat it as a minimum correction-winding requirement; select only from the exact manufacturer's application table.
Continue Your Calculation
Need a full distribution pad-mount instead of buck-boost? Continue in Transformer Size. For winding currents from kVA, use Transformer FLA.
Engineering disclaimer
This calculator provides a preliminary buck-boost unit kVA screen only. Wiring diagrams, temperature rise, inrush, and code compliance require manufacturer data and a qualified electrician or engineer. Not a substitute for OEM selection software.
Buck-boost sizing chart (208↔240 ladder + common pairs)
Unit kVA ≈ (I × ΔV) / 1000 for 1φ / open-delta. 208↔240 workflow: pick load amps → open preset → OEM application table. Suggest: buck boost transformer sizing chart, 208 to 240.
| Supply → Load | ΔV | Load A | Min kVA/unit (1φ) | Note | Open |
|---|---|---|---|---|---|
| 208 → 240 V (boost) | 32 V | 25 A | 0.80 | Light continuous load | Open |
| 208 → 240 V (boost) | 32 V | 50 A | 1.60 | Default screen | Open |
| 208 → 240 V (boost) | 32 V | 100 A | 3.20 | OEM table required | Open |
| 240 → 208 V (buck) | 32 V | 50 A | 1.60 | Same ΔV, buck direction | Open |
| 208 → 230 V (boost) | 22 V | 50 A | 1.10 | Common equipment band | Open |
| 480 → 502 V (boost) | 22 V | 50 A | 1.10 (open-delta each) | 3φ bank — OEM diagram | Open |
| 120 → 132 V (boost) | 12 V | 50 A | 0.60 | Control / small loads | Open |
Need secondary amps from a distribution kVA nameplate instead of a measured load? Use transformer full-load amps, then return here with that current.
Buck-boost sizing formula & explanation
Buck-boost transformers are usually wired as autotransformers. The unit only handles the correction power, not the full load kVA:
ΔV = |V_load − V_supply|
% of supply = (ΔV / V_supply) × 100
Minimum unit VA = I_load × ΔV (1φ or each open-delta unit)
3φ wye: minimum unit VA = I_load × ΔV / √3
Minimum unit kVA = Unit VA / 1000
Worked example — 208 to 240: ΔV = 32 V, I = 50 A → minimum correction winding VA = 1600 → 1.6 kVA per unit. This arithmetic does not identify an OEM catalog unit. Full-load apparent power at 240 V is 12 kVA, but autotransformer suitability and allowable connected load must come from the exact application table.
If you need a pad-mount or dry-type sized from plant kW/PF, switch to the transformer sizing calculator. Voltage ratio alone: turns ratio calculator.
Before an OEM selector: confirm supply and target voltage are from the same phase convention, the correction is modest, the load amperage is continuous-duty appropriate, the selected connection is permitted by the manufacturer, and the proposed tap/wiring diagram matches the nameplate. A large voltage conversion or a need for isolation belongs on the distribution transformer sizing path instead.
Last reviewed: 2026-09-01. Arithmetic screen only: it does not model an OEM catalog ladder, allowable connected-load tables, temperature rise, harmonics or installation derating.
When to use buck-boost vs distribution kVA
| Situation | Tool | Why |
|---|---|---|
| 208 V utility, equipment needs 230–240 V | This page | Small % boost, low unit kVA |
| New plant feeder / pad-mount from diversified kW | Transformer kVA | Full load apparent power |
| Nameplate turns / voltage ratio only | Turns ratio | Ideal a = V1/V2 |
| Primary & secondary winding FLA from kVA | Transformer FLA | Nameplate currents (not buck-boost unit kVA) |
| Secondary fault from %Z | %Z fault-current screen | Isc screen after kVA known |
Frequently Asked Questions
How do you size a buck boost transformer?
Compute ΔV = |V_load − V_supply|, then the minimum correction-winding VA from current, ΔV and connection. For 208→240 V at 50 A, the single-phase minimum is 1.6 kVA per unit. Select the actual unit and wiring only from the manufacturer's application table.
What is the difference between a buck-boost and a distribution transformer?
Buck-boost corrects a few percent of voltage at low unit kVA. Distribution transformers carry full load kVA—use transformer kVA calculator.
How do I size a buck boost for 208 to 240 V?
ΔV = 32 V. Minimum unit kVA ≈ amps × 0.032. At 50 A the arithmetic minimum is 1.6 kVA per unit; at 100 A ≈ 3.2 kVA. Verify the OEM application table. Open the 208↔240 ladder.
Do I need one or two buck-boost transformers for three-phase?
Open-delta banks usually use two identical units; wye uses three. This tool sizes each unit. Confirm the OEM diagram.
Is this the same as an Acme or HPS buck-boost selector?
No—OEM selectors pick SKUs and wiring. This page is a vendor-neutral kVA screen from volts and amps.
Can I use a large isolation transformer instead?
You can, but it is usually oversized and costlier for a 5–20% correction. Buck-boost autotransformer sizing keeps unit kVA near I×ΔV.
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Related Guides
- Transformer Sizing Guide — Complete guide including buck-boost transformer applications and kVA sizing
- Transformer Rating Calculation — Calculate kVA rating for buck-boost transformers from voltage and current
- Three-Phase Transformer Sizing — 3-phase buck-boost transformer configurations and sizing methodology
- Transformer Derating Factors — Temperature, altitude, and harmonic derating for buck-boost and distribution transformers
