SCB(H)15 3D Wound Core Dry-Type Transformer (Ultra-Low Loss & Advanced Energy-Saving Type)

The SCB(H)15 3D wound core dry-type transformer is an advanced high-efficiency transformer that combines three-dimensional wound core technology with epoxy resin casting insulation.

This product integrates:

  • Original 3D wound core technology (developed since 1946)
  • Advanced polygonal core structure design
  • Modern winding and casting manufacturing processes

The SCB(H)15 3D wound core dry-type transformer is an advanced high-efficiency transformer that combines three-dimensional wound core technology with epoxy resin casting insulation.

This product integrates:

  • Original 3D wound core technology (developed since 1946)
  • Advanced polygonal core structure design
  • Modern winding and casting manufacturing processes

Compared to conventional dry-type transformers, it offers lower no-load loss, reduced excitation current, and improved energy efficiency, with overall performance exceeding national standards.

It is widely used in:

  • High-rise buildings and dense urban areas
  • Airports, railway stations, and metro systems
  • Hospitals and critical infrastructure
  • Power plants and metallurgical industries
  • Petrochemical and nuclear facilities

πŸ”Ή Standards Compliance

  • IEC 60076-11 – Dry-Type Power Transformers
  • GB/T 1094.1 – Power Transformers
  • GB/T 1094.11 – Dry-Type Transformers
  • GB/T 32825 – 3D Wound Core Dry-Type Distribution Transformers
  • JB/T 10088 – Sound Levels of 6kV–500kV Transformers
  • GB 20052-2020 – Energy Efficiency Standards

πŸ”Ή Key Features

βœ” Advanced 3D Wound Core Technology

  • Fully symmetrical three-phase magnetic circuit
  • Reduced magnetic resistance
  • Lower excitation current and no-load loss

πŸ‘‰ Significantly improves overall energy efficiency


βœ” Ultra-Low Loss & Low Noise

  • Reduced core loss and vibration
  • Optimized structure minimizes operational noise

πŸ‘‰ Suitable for noise-sensitive environments


βœ” High Reliability & Mechanical Strength

  • Epoxy resin encapsulated windings form a rigid structure
  • Excellent short-circuit resistance
  • Strong resistance to impact overvoltage

βœ” Excellent Environmental Performance

  • Fire-resistant and pollution-free
  • Moisture-proof and corrosion-resistant
  • Suitable for harsh environments

βœ” Compact & Efficient Design

  • Smaller size and lighter weight
  • Optimized structure improves space utilization
  • Easy installation and reduced infrastructure cost

βœ” Integrated Manufacturing Design

  • Combined winding and casting process
  • Simplified structure with high production consistency

βœ” Intelligent Monitoring Capability

  • Supports real-time monitoring of operating conditions
  • Optional remote communication system

πŸ”Ή Structural Design

πŸ”Έ Core

  • 3D wound core with polygonal cross-section
  • Fully symmetrical magnetic circuit
  • Annealed after assembly

➑ Benefits:

  • Reduced magnetic resistance
  • Lower no-load loss
  • Improved efficiency

πŸ”Έ Windings

  • Epoxy resin cast windings
  • Oxygen-free copper conductors
  • Integrated rigid insulation structure

➑ Features:

  • High mechanical strength
  • Excellent insulation performance
  • Strong short-circuit resistance

πŸ”Έ Clamping Structure

  • Integral upper and lower clamping system
  • Steel structure design

➑ Provides:

  • Strong support for windings
  • Improved resistance to axial forces during faults

πŸ”Έ Noise Control Design

  • Structural optimization reduces vibration
  • Suppresses resonance within clamping system

➑ Ensures:

  • Low noise operation

πŸ”Ή Applications

  • High-density urban power distribution
  • Airports, rail transit, and metro systems
  • Hospitals and data centers
  • Industrial and petrochemical plants
  • Nuclear and high-safety environments

πŸ”Ή Advantages Summary

  • Advanced 3D wound core technology
  • Lower loss and higher efficiency
  • Low noise and stable operation
  • High mechanical strength and safety
  • Environmentally friendly and maintenance-free
  • Ideal for high-end and critical applications

❓ FAQ

1️⃣ What is a 3D wound core transformer?

A 3D wound core transformer uses a fully symmetrical magnetic circuit instead of laminated core structures.

πŸ‘‰ This reduces magnetic resistance and improves efficiency, resulting in lower losses and better performance.


2️⃣ How does SCB(H)15 compare to SCB13 or SCB14?

  • Lower excitation current
  • Lower no-load loss
  • Better noise performance

πŸ‘‰ It is a high-end alternative with advanced core technology.


3️⃣ Is this transformer suitable for critical environments?

Yes, it is ideal for:

  • Hospitals
  • Airports
  • Nuclear and petrochemical facilities

πŸ‘‰ Due to its fireproof, safe, and highly reliable design.


4️⃣ Does it support remote monitoring?

Yes, it can be equipped with:

  • Temperature monitoring
  • Alarm and protection system
  • Remote communication interface

πŸ‘‰ Suitable for smart grid integration.

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