CEEG

330kV Oil-Immersed Power Transformer

330kV EHV oil-immersed power transformers available in two configurations — three-phase integrated isolated-winding and autotransformer — with constant-flux and variable-flux voltage regulation supported on autotransformer designs, and tapping at the end of the series winding or on the 110kV/220kV medium-voltage winding. Backed by advanced 3D simulation analysis and proprietary seven-step temperature control technology, they offer a reliable insulation structure, extended service life, a compact and aesthetically optimized design, and national-level sudden short-circuit certification — manufacturable to GB, IEC, IEEE and other international standards to meet specific customer requirements.

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330kV
Oil-Immersed Power Transformer
330kV
Oil-Immersed Power Transformer
330kV
Oil-Immersed Power Transformer

Product Introduction

Key Specifications

  • Voltage Class

    330kV

  • Rated Capacity Range

    Two-winding: 90000 ~ 720000kVA Three-winding: 90000 ~ 240000kVA Autotransformer: 90000 ~ 360000kVA

  • Voltage Regulation

    No-load / on-load tap changing (tapping at the end of the series winding or on the 110kV/220kV medium-voltage winding)

  • Vector Group

    YNd11, YNyn0d11, YNa0d11

  • Energy Efficiency

    Loss level codes 18 / 20 / 22 (Energy Efficiency Level 3 / 2 / 1)

Application Scope

  • Summer-Peak Main Grid

    Main power grid nodes with high load rate operating continuously under high ambient temperature.

  • Iron, Steel & Metallurgical Industry

    Sites with impact loads and continuous overload requirements; the high-temperature resistant hybrid insulation system provides ample thermal margin.

  • Power Plants & Hydropower Stations

    Large-capacity step-up/step-down transmission nodes combining high capacity with low-loss operation.

  • Railway Transportation

    Traction power supply and other scenarios with fluctuating loads and strict continuous-overload requirements.

Product Overview

  • Flexible configurations: three-phase integrated design, available in isolated-winding or autotransformer structures
  • Flexible regulation: autotransformer design supports both constant-flux and variable-flux voltage regulation, with no-load or on-load tap changing
  • More efficient: no-load losses reduced by over 20% and load losses by more than 5% versus GB6451-2023, fully complying with GB20052-2024 energy efficiency requirements
  • Quieter: self-cooling noise below 60dB — approximately 20dB lower than national standards; custom ultra-low noise variants available
  • More reliable: partial discharge below 100pC; passed national-level short-circuit certification and withstands multiple sudden short-circuit current impacts
  • Longer service life: high-temperature resistant hybrid insulation system with equal-life design gives a design service life of over 40 years

Product Features

  • Low Loss

    Both no-load loss and load loss comply with the latest GB20052-2024 national energy efficiency standard, and even surpass both Chinese GB and EU energy efficiency standards.

  • Low Noise

    Self-cooling noise levels below 60dB — approximately 20dB lower than national standards — significantly reducing environmental noise pollution; custom-engineered ultra-low noise transformers available for specialized applications.

  • Low Partial Discharge

    The entire manufacturing process is conducted in dust-free environments, with all internal metal and insulation components rounded. Partial discharge is kept below 100pC, guaranteeing stable and reliable operation.

  • Strong Short-Circuit Withstand Capability

    Passed national-level certification and withstands multiple short-circuit current impacts — not a single unit damaged by sudden short circuits, ensuring safe and reliable power supply.

  • High Temperature Resistant & Safer

    Operates continuously under 100% load at 40℃ ambient for the long term; at the same temperature the continuous load rate is 20% higher than that of conventional oil-immersed transformers.

  • High-Temperature Resistant Hybrid Insulation System

    Nomex® insulation + transformer oil. Insulation materials of different temperature resistance grades are selected according to the temperature field distribution, so the whole insulation system reaches equal service life.

  • Seven-Step Temperature Control Technology

    Five temperature levels extend from the winding hot spot outward to the low-temperature zone; short-circuit and overload conditions complete a seven-level thermal state for temperature control. Actual maximum oil temperature is set at 95℃, ensuring safety, thermal margin and long expected life.

  • Maintenance-Free & More Eco-Friendly

    An equal-life design system delivers greater environmental sustainability throughout the lifecycle and reduces later operation and maintenance costs.

  • Low Carbon

    Unique low-carbon design solutions and intelligent monitoring systems enable low-carbon operation throughout the entire lifecycle.

  • Leak-Proof

    All seals are one-piece molded acrylate with no joints. Fluorescent, positive-pressure and negative-pressure leak detection ensure high sealing performance — no leakage, solemnly promised.

Standards & Certification

  • GB 20052-2024

    Minimum allowable values of energy efficiency and energy efficiency grades for power transformers (no-load and load losses fully compliant)

  • GB 6451-2023

    Technical parameters and requirements for oil-immersed power transformers (no-load losses reduced by over 20%, load losses by more than 5%)

  • IEC 60076

    Power transformers

  • IEEE C57 Series

    IEEE standards for power transformers (applied upon customer request)

  • National-Level Short-Circuit Certification

    Certified nationally for withstanding sudden short circuits and multiple short-circuit current impacts

Technical Advantages

  • R&D Cloud Platform

    Integrates electromagnetic optimization design, parametric drawing, performance analysis, structural optimization and automatic drawing of transformers, realizing shared design resources plus search, modification and version control of all data.

  • Simulation Analysis

    Internationally advanced electromagnetic simulation software — ANSYS Maxwell, JMAG, Infolytica MagNet — with multi-physics coupling simulation technology ensures optimal temperature and leakage magnetic field distribution in transformers.

  • Seven-Step Temperature Control Technology

    Temperature field analysis software determines the winding hot-spot temperature distribution; insulation materials of different temperature grades are selected by temperature range so every component of the insulation system reaches the same service life — a design life of over 40 years.

  • Short-Circuit Withstand Safeguards

    On the design side: ampere-turn balance calculation, semi-hard copper wire selection (Σ0.2 = 120~260MPa) and strength verification of clamps and pressure plates minimize short-circuit mechanical forces. On the manufacturing side: tight winding/sleeving/compression of the body, prestress application and strict winding height tolerance control after drying.

  • Intelligent Operation & Maintenance Platform

    By collecting key data such as transformer temperature, current, voltage, vibration and grid harmonics, it realizes online power quality analysis and fault alarm, and can be installed on mobile phones.

Patents & Manufacturing Equipment

  • Transformer Body Fastening Structure

    Utility model patent 201721792681.5

  • New High-Voltage Large-Capacity Power Transformer

    Utility model patent 202221985881.3

  • High-Voltage Bushing Arrangement for Vehicle-Mounted Mobile Transformers

    Utility model patent 202222136876.1

  • High-Voltage Transformer with Integrated Sealing Cover

    Utility model patent 202222505385.X

  • New Radiator Installation Form for Oil-Immersed Transformers

    Utility model patent 202122652668.2

  • Main Equipment

    15T horizontal winding machine, 20T vertical winding machine, 680kW vacuum drying equipment, 200T air cushion car