Oil-Immersed Transformers Distribution SKU: 400_KVA_33KV_THREE_PHASE_OIL_IMMERSED_DISTRIBUTION_TRANSFORMER

400 kVA 33kV Three-Phase Oil-Immersed Distribution Transformer

This 400 kVA oil-immersed distribution transformer is designed for reliable power distribution in rural utility networks, industrial feeders, and infrastructure projects across Africa, MENA, and other grid markets. ONAN cooling with IEC 60076 design reference. Export-ready from Hefei, China.

Compliance Standards
IEC • ANSI • IEEE • GB
Quality Inspection
100% FAT Routine Tested
Engineering CAD
2D CAD / SLD Schematics
Global Logistics
Direct Seaport CIF Export
Engineering Datasheet

Technical Parameters & Ratings

IEC / ANSI Certified Factory Standard
Rated Capacity 400 kVA
Primary Voltage (U1) 33,000 V (33 kV)
Secondary Voltage (U2) 415 V / 240 V (3-Phase 4-Wire)
Vector Group Dyn11
Rated Frequency 50 Hz
Cooling Method ONAN (Oil Natural Air Natural)
Primary Current (I1) 7.0 A
Secondary Current (I2) 556.5 A
Guaranteed No-Load Loss (P0) 570 W
Guaranteed Load Loss (Pk at 75°C) 3900 W
Short-Circuit Impedance (Uk) 4.0%
HV Insulation Level LI 170 / AC 70 (33kV Class)
Temperature Rise Limits Top Oil ≤ 50K, Winding ≤ 55K (45°C Ambient)
Creepage Distance ≥ 31 mm/kV (Outdoor Tropicalized Porcelain)
Core & Coil Weight 780 kg
Insulating Oil Weight 490 kg
Total Assembled Weight 1550 kg
Overall Footprint (L×W×H) 1320 mm × 880 mm × 1480 mm
Governing Standards IEC 60076, BS 171, SON NIS, NERC Code

Application Scenarios

  • Rural utility distribution network feeders
  • Industrial and mining site power supply
  • Infrastructure and EPC contractor projects in Africa and MENA
  • Renewable energy grid connection at voltage class

Key Features

  • 400 kVA rated capacity for rural utility and distribution network applications
  • class design suited for Africa, MENA, and IEC-standard grid markets
  • Oil-immersed ONAN structure for stable thermal performance in outdoor environments
  • Copper or aluminum winding options available to suit project budget requirements
  • Off-circuit tap changer with +/-2 x 2.5% or +/-5% range as standard
XinHuan 400 kVA 33kV Three-Phase Oil-Immersed Distribution Transformer 2D AutoCAD General Arrangement Drawing Blueprint
Engineering Submittal Drawing

2D AutoCAD General Arrangement (GA) Drawing & Footprint

Official XinHuan factory 2D vector General Arrangement drawing for 400 kVA 33kV Three-Phase Oil-Immersed Distribution Transformer. Includes front elevation view, top plan view, terminal centerline clearances, base channel mounting footprint, and complete vector group connection schematics.

Dimensions ($L \times W \times H$ mm)
Terminal Centerline Clearances
Base Channel Mounting Pitch
Vector Group & Rating Plate
XinHuan Oil-Immersed Transformer Core Stacking & Assembly Workshop
XinHuan Hefei Manufacturing Plant — Precision Winding & Assembly Line
Factory Build Quality

Internal Construction & Premium Materials

Built with tier-1 certified raw materials engineered for long operational life (>30 years), superior dielectric withstand, and high short-circuit withstand capacity.

Silicon Steel Core

High-grade grain-oriented cold-rolled silicon steel with step-lap mitered joints for low $P_o$ losses.

100% Copper Windings

Electrolytic oxygen-free copper with high thermal grade insulation for surge resistance.

Precision Tap Changer

De-energized tap switch ($\pm 2 \times 2.5\%$) or on-load vacuum tap changer (OLTC) optional.

Protection & Sensors

Buchholz gas relay, magnetic oil gauge (MOG), and dial thermometers with alarm contacts.

Quality Assurance

100% Factory Acceptance Testing (FAT) Protocol

CNAS & ISO 9001 Certified

Every transformer unit manufactured by XinHuan undergoes mandatory routine factory testing prior to container dispatch. Full certified routine and type test submittal reports are provided with commercial documentation:

1. Insulation Resistance

Megger test (HV to LV, HV to Earth, LV to Earth) >1000 MΩ.

2. Voltage Ratio & Vector

Turns ratio check across all taps with phase displacement check.

3. Winding DC Resistance

Precision Kelvin bridge measurement across all tap positions.

4. Short-Circuit Impedance

Load loss ($P_k$) measurement corrected to reference temp (75°C).

5. No-Load Loss & Current

Core excitation test ($P_o$ and $I_o$) at rated sinusoidal voltage.

6. AC Voltage Withstand

Power-frequency separate source test (e.g. 50kV/70kV 1 min).

7. Lightning Impulse (BIL)

Full wave & chopped wave impulse withstand (BIL up to 170kV).

8. Partial Discharge & Seals

Ultra-low discharge (<5 pC) and pressurized oil/gas tightness test.

Logistics Intelligence

Export Packaging & Seaport Logistics

Global CIF / FOB Delivery

The product is prepared for export shipment with suitable packing and transport arrangements based on destination and handling requirements. Sea freight, air freight, and land transport options are available. Lead time is project-dependent and confirmed at order stage.

Production Lead Time

Standard manufacturing cycle is 4 to 6 weeks from approval of GA blueprints and single-line diagrams.

Heavy-Duty Export Packaging

Vacuum moisture barrier preservation, nitrogen blanketing, and reinforced steel-frame structural crate skids.

Direct Seaport Routes

Fast ocean freight to Port of Chancay & Callao (25-35 days), Manila, Lagos, and Middle East ports.

Equipment Video Inspection

100% Tested

Watch XinHuan technicians perform routine dielectric testing, winding insulation checks, and quality inspections inside our Hefei manufacturing plant.

Every unit 100% routine tested before container loading.
Direct Factory Consultation

Need Custom Project Engineering?

Send your single-line diagram (SLD), voltage ratings, or tender specifications. Our chief electrical engineers will review and issue an actionable CIF quotation within 24 hours.

Custom Voltage Ratios
High-Altitude Derating
Short-Circuit Impedance
Third-Party FAT Witness

Engineering & Procurement FAQs

Frequently asked questions regarding specifications, certifications, and delivery for 400 kVA 33kV Three-Phase Oil-Immersed Distribution Transformer.

Please send us your required capacity, high voltage, low voltage (V), frequency (Hz), cooling method, vector group, tapping range, installation conditions, and destination country. We will respond with a configuration and indicative pricing within 24 hours.

The product can be produced according to IEC standards and customer technical specifications. Routine factory tests, insulation resistance, ratio, and load loss verification are standard. Type test reports available on request.

Standard manufacturing lead time is 4 to 6 weeks following approval of GA blueprints and single-line diagrams. Direct sea container shipping is available under FOB, CFR, or CIF terms with full customs documentation (Bill of Lading, Certificate of Origin, Test Reports).

Ready to Proceed?

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