Cheap High-Efficiency Stacked Core Transformer from China Factory - Top Suppliers for Industrial Power Supply Solutions Supplier, Service

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Introducing our high-efficiency stacked core transformer, crafted using premium laminated grain-oriented silicon steel sheets. This design significantly reduces eddy current and hysteresis losses, achieving energy efficiency of up to 98%. Our transformer features advanced heat dissipation technology that ensures stable performance in a wide temperature range of -20°C to 60°C, all within a compact structure that allows for flexible installation. As a leading China factory and supplier, we offer customizable options from 110V to 33kV, and 5kVA to 5MVA, with an IP rating from IP23 to IP6This transformer is ideal for various applications in industrial, renewable energy, and commercial sectors. With a robust design that complies with IEC/ANSI standards, you can expect durability lasting over 25 years and low noise levels under 55dB.

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Product Description

Product Specification

Basic Information
Item Specification
Product Model Example: S13-M-100/10 (S=Three-Phase, 13=Efficiency Class, M=Hermetically Sealed, 100=Rated Capacity kVA, 10=HV Rated Voltage kV)
Rated Capacity(Sn) 50kVA~2500kVA (ONAN: 100% rated capacity; ODAF: 130% rated capacity)
Phase Three-Phase (Standard) / Single-Phase (Customizable)
Rated Frequency(fn) 50Hz / 60Hz (±1% tolerance)
Connection Group Dyn11 (Default) / Yyn0 (Optional, per IEC 60076-1)
Environmental & Operating Conditions
Ambient Temperature -25℃~40℃ (-40℃ optional with anti-freeze additive)
Altitude ≤1000m (5% derating at 1500m, 10% at 3000m)
Humidity ≤90% @25℃ (no condensation); ≤50% @40℃
Seismic Resistance GB 50260-2013, 7-degree intensity (0.15g acceleration)
Protection Class IP20 (Indoor) / IP23 (Outdoor, dust/rain protection)
Losses & Impedance (Efficiency Core)
Parameter S13-100/10 Example Test Conditions
No-Load Loss (Po) ≤170W Rated voltage, rated frequency
Load Loss (Pk) ≤1050W Rated current, 75℃ reference temp
Short-Circuit Impedance (Uk%) 4%~6% ±10% tolerance at 75℃
No-Load Current (Io%) ≤1.2% (≤0.8% for large capacity) Rated voltage
Efficiency Compliance: GB 20052-2024 Class 2 (S13) / Class 1 (S15, 15-20% lower losses than S13) — IEC 60076-11 IE2/IE3 equivalent for EU markets
Example S13-250/10 Key Specs
Item Value
Rated Capacity 250kVA
HV/LV Voltage/Current 10kV/14.43A;0.4kV/360.8A
No-Load/Load Loss ≤320W / ≤2250W
Short-Circuit Impedance 4.5%
Core Material 30Q130 Silicon Steel
Cooling Method ONAN
Protection Class IP23
Customization available for special voltages, high-altitude, or explosion-proof requirements. All parameters verified by third-party labs.

Advantages

Superior Energy Efficiency

Laminated structure with high-grade grain-oriented silicon steel minimizes eddy current and hysteresis losses, achieving up to 98% efficiency—cuts energy consumption and operational costs long-term.

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Strong Thermal Stability

Advanced heat-dissipating design enables reliable work in -20°C to 60°C, avoiding overheating issues.

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High Customizability

Flexible voltage (110V-33kV), capacity (5kVA-5MVA), and enclosure (IP23-IP65) options fit industrial, renewable energy, and commercial needs.

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Durable & Low-Noise

Compliant with IEC/ANSI standards, it has a 25+ year lifespan and <55dB noise, ensuring long-term stable, quiet operation.

Product Display

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Application

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Industrial Sector

Powers heavy machinery (e.g., manufacturing assembly lines, metal processing equipment), industrial control systems, and factory power distribution networks—handles fluctuating loads stably to ensure uninterrupted production.

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Renewable Energy Systems

Integrates with solar photovoltaic (PV) farms and wind power plants, converting unstable renewable energy into grid-compatible electricity for efficient power transmission to the public grid.

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Commercial & Residential Areas

Supplies power to commercial buildings (shopping malls, office towers) and residential communities, supporting HVAC systems, lighting, and household/appliance electrical needs with low noise and high efficiency.

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Power Transmission & Distribution

Used in medium/high-voltage power grids (e.g., regional substations), stepping up/down voltages to match long-distance transmission and end-user demand, ensuring safe and efficient power supply.

❓ Frequently Asked Questions

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What does the model number S13-M-100/10 mean?
The model code breaks down as follows: S = Three-Phase, 13 = Efficiency Class (GB 20052-2024), M = Hermetically Sealed (oil-immersed), 100 = Rated Capacity (100 kVA), and 10 = High-Voltage Rated Voltage (10 kV). Custom configurations are available upon request.
Q
What is the difference between S13 and S15 efficiency classes?
The S15 class meets GB 20052-2024 Class 1 standards and delivers 15–20% lower no-load and load losses compared to the S13 class (Class 2). S15 is recommended for applications with high continuous-duty cycles where long-term energy savings are a priority.
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Can the transformer operate at high altitudes above 1000m?
Yes. The standard rating is for altitudes up to 1000m. For higher altitudes, derating applies: approximately 5% at 1500m and 10% at 3000m. Custom high-altitude versions are also available to maintain full rated capacity at elevated locations.
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Is this transformer suitable for use with solar or wind power systems?
Absolutely. The transformer is designed to integrate seamlessly with solar PV farms and wind power plants, converting variable renewable energy output into stable, grid-compatible electricity. Its high efficiency and robust thermal design make it ideal for renewable energy applications.
Q
What customization options are available?
A wide range of customizations are supported, including special voltage ratios (110V–33kV), capacity ranges (5kVA–5MVA), enclosure protection levels (IP23–IP65), anti-freeze additives for cold climates (-40°C), explosion-proof enclosures, and single-phase configurations. All custom units are verified by third-party laboratories.
Q
What international standards does this transformer comply with?
The transformer complies with multiple international and domestic standards, including IEC 60076-1 (general requirements), IEC 60076-11 (IE2/IE3 efficiency equivalents for EU markets), GB 20052-2024 (Chinese energy efficiency standard), ANSI/IEEE standards, and GB 50260-2013 for seismic resistance. This ensures suitability for both domestic and global markets.

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