Low No-Load Loss, 6kV/10kV Distribution Class
Three-phase dry-type transformer built on an amorphous alloy core. The amorphous core structure delivers substantially lower no-load loss and no-load current than conventional silicon-steel dry-type transformers, while retaining the flame-retardant, self-extinguishing, moisture- and crack-resistant properties of the standard dry-type platform.
Manufacturer-stated advantages of the SCBH series over a conventional silicon-steel dry-type transformer.
The amorphous alloy core gives the SCBH a fundamentally lower no-load (core) loss and smaller no-load current than a conventional silicon-steel core of the same class.
Positioned by the manufacturer as "currently the best energy-saving distribution transformer both domestically and internationally" for applications that suit a conventional dry-type transformer.
Manufacturer-stated theoretical superiority of more than 70% over conventional dry-type transformers, translating into significant operating-cost savings over the transformer's service life.
Keeps the flame-retardant, self-extinguishing, moisture-resistant and crack-resistant properties of a conventional epoxy-cast dry-type transformer.
Confirmed parameters are sourced from the manufacturer's SCBH15 reference documentation. The source technical parameter table for exact per-rating loss/current/impedance values contained OCR/formatting errors we could not reliably verify, so those fields are marked below rather than estimated.
| Type Designation | SCBH□□-□□/□□□□ (three-phase · solid-state epoxy potting · low-voltage foil winding · amorphous-crystalline core · performance level code 15) |
|---|---|
| Core Material | Amorphous alloy |
| Winding Type | Low-voltage foil winding |
| Vector Group | Dyn11 |
| Rated High Voltage | 6 / 6.3 / 6.6 / 10 / 10.5 / 11 kV |
| Rated Low Voltage | 0.4 kV |
| Tapping Range | ±5% or ±2×2.5% of HV |
| No-Load Loss Advantage | 70%+ lower (theoretical)* vs. conventional dry-type transformer |
| Rated Capacity Range | [DATA REQUIRED] — confirm exact kVA options at RFQ |
| No-Load Loss (exact, per rating) | [DATA REQUIRED] |
| Load Loss | [DATA REQUIRED] |
| No-Load Current | [DATA REQUIRED] |
| Short-Circuit Impedance | [DATA REQUIRED] |
| Insulation Class | [DATA REQUIRED] |
| Protection Rating | [DATA REQUIRED] |
| Flame/Moisture/Crack Resistance | Retains conventional dry-type properties (flame-retardant, self-extinguishing, moisture- and crack-resistant) |
| Warranty | [DATA REQUIRED] |
*Manufacturer's stated theoretical figure versus a conventional silicon-steel-core dry-type transformer of equivalent class.
Any application that suits a conventional dry-type transformer, with amorphous-core efficiency as the differentiator.
PV plant collection and step-up points where minimizing cumulative no-load loss over the asset's service life materially affects project economics.
BESS installations with near-continuous no-load hours, where lower no-load loss and current compound into larger lifetime savings than on intermittent-duty equipment.
The manufacturer positions the SCBH as suited to the same application scenarios as a conventional dry-type transformer — civil, commercial and industrial distribution — wherever energy-saving performance is prioritized.
Answers sourced from the manufacturer's SCBH documentation.
Send your required capacity, voltage combination and project loss targets. We respond with stock, lead time and FOB Shanghai pricing within 24 hours.