Three-Dimensional Wound Core Transformers
Low Noise Three-Dimensional Wound Core Transformer
Ultra-low noise Three-Dimensional wound core transformer for quiet, energy-saving power distribution in residential communities and commercial buildings.


Three-Dimensional Wound Core Transformers
Ultra-low noise Three-Dimensional wound core transformer for quiet, energy-saving power distribution in residential communities and commercial buildings.
Product Overview
This low noise three-dimensional wound core transformer is designed for residential and commercial power grids. With its closed triangular core structure, it significantly reduces vibration and noise while cutting no-load loss, offering reliable, energy-efficient power distribution for urban and noise-sensitive environments.
Model meaning


Product features
Usage environment
Serial number | Name | Unit | Required value | ||
1 | Ambient temperature | Maximum daily temperature | ℃ | 45 | |
Minimum daily temperature | -45 | ||||
Maximum daily temperature difference | K | 25 | |||
2 | elevation | m | ≤1000 | ||
3 | Solar radiation intensity | W∕cm2 | 0.1 | ||
4 | Maximum ice thickness | mm | 20 | ||
5 | Seismic resistance | Ground horizontal acceleration | ms-2 | 3 | |
Sinusoidal resonance three period safety factor |
| ≥1.67 | |||
6 | Installation location |
| Indoor/outdoor | ||
Application environment
Oil-immersed laminated core transformer is suitable for the following scenarios:
Used as a boost or step-down device in power systems
Power distribution and transmission in industrial areas
Electricity supply and backup power in commercial buildings
Other places that require stable and reliable power supply
10kV oil-immersed three-dimensional wound core distribution transformer standardized design test plan
Technical parameters
Model | Rated capacity | Typical voltage | Connection group | Impedance voltage | Total weight | Reference size (mm) | No-load loss | |
S20-M.RL-30/10 | 30 | High voltage H.V. | Dyn11 | 4 | 0.4 | 800*700*800 | 70 | 505/480 |
S20-M.RL-50/10 | 50 | 0.57 | 1000*850*950 | 90 | 730/695 | |||
S20-M.RL-63/10 | 63 | 0.63 | 1100*800*1200 | 100 | 870/830 | |||
S20-M.RL-80/10 | 80 | 0.72 | 1100*800*1350 | 115 | 1050/1000 | |||
S20-M.RL-100/10 | 100 | 0.78 | 1100*800*1350 | 135 | 1260/1200 | |||
S20-M.RL-125/10 | 125 | 0.85 | 1100*850*1400 | 150 | 1510/1440 | |||
S20-M.RL-160/10 | 160 | 1.0 | 1100*950*1420 | 180 | 1850/1760 | |||
S20-M.RL-200/10 | 200 | 1.2 | 1150*1000*1500 | 215 | 2180/2080 | |||
S20-M.RL-250/10 | 250 | 1.4 | 1200*1100*1500 | 260 | 2560/2440 | |||
S20-M.RL-315/10 | 315 | 1.9 | 1300*1120*1500 | 305 | 3060/2920 | |||
S20-M.RL-400/10 | 400 | 2.3 | 1350*1200*1550 | 370 | 3610/3440 | |||
S20-M.RL-500/10 | 500 | 2.8 | 1500*1300*1600 | 430 | 4330/4120 | |||
S20-M.RL-630/10 | 630 | 4.5 | 3.3 | 1500*1300*1700 | 510 | 4960 | ||
S20-M.RL-800/10 | 800 | 3.7 | 1550*1350*1750 | 630 | 6000 | |||
S20-M.RL-1000/10 | 1000 | 4.5 | 1750*1500*1750 | 745 | 8240 | |||
S20M.RL-1250/10 | 1250 | 5.5 | 1800*1500*1900 | 870 | 9600 | |||
S20-M.RL-1600/10 | 1600 | 6.5 | 1900*1700*2000 | 1050 | 11600 | |||
Reference standard application environment
GB/T 1094.1 Power Transformers Part 1: General Provisions
GB/T 1094.2 Power transformer Part 2: Temperature rise of liquid-immersed transformer
GB/T 1094.3 Power transformer Part 3: Insulation level, insulation test and external insulation air gap
GB/T 1094.4 Power transformers Part 4: Guidelines for lightning impulse and operating impulse tests of power transformers and reactors
GB/T 1094.5 Power transformer Part 5: Ability to withstand short circuit
GB/T 1094.7 Power Transformers Part 7: Loading Guidelines for Oil-immersed Power Transformers
GB/T 1094.10 Power transformer Part 10: Sound level determination
GB 2536 Electrical fluids Unused mineral insulating oils for transformers and switches Transformers, voltage regulators and reactors
GB/T 4109 Insulating bushings with AC voltage higher than 1000V
GB/T 5273 Terminal blocks for transformers, high-voltage electrical appliances and bushings
GB/T 6451 Technical parameters and requirements for oil-immersed power transformers
GB/T 7595 Transformer oil quality during operation
GB/T 8287.1 Indoor and outdoor post insulators for systems with nominal voltages higher than 1000V Part 1: Tests of porcelain or glass insulators
GB/T 8287.2 Indoor and outdoor post insulators for systems with nominal voltages higher than 1000V Part 2: Dimensions and characteristics
GB 10230.1 Tap changer Part 1: Performance requirements and test methods
GB/T 10230.2 Tap-changer Part 2: Application Guidelines
GB/T 11022 Common technical requirements for high-voltage switchgear and control equipment standards
GB/T 13912 Metal covering layer Technical requirements and test methods for hot-dip galvanizing of steel parts
GB/T 13499 Guidelines for application of power transformers
GB/T 15153.1 Telecontrol equipment and systems Part 2: Working conditions Part 1: Power supply and electromagnetic compatibility
GB/T 16927.1 High voltage test technology Part 1: General definition and test requirements
GB/T 16927.2 High Voltage Test Technology Part 2: Measurement System
GB/T 17468 Guidelines for Selection of Power Transformers
GB 20052 Energy efficiency limit value and energy efficiency grade of power transformer

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The metal meter box is mainly made of stainless steel (304) or cold-rolled steel plates. The box is resistant to high temperatures, aging, impact, corrosion, moisture, and water, and is safe and reliable. It adopts fully enclosed management of the electricity metering device and has functions such as closed metering circuit, prevention of electricity theft, and easy meter reading.
View Details →
The metal meter box is mainly made of stainless steel (304) or cold-rolled steel plates. The box is resistant to high temperatures, aging, impact, corrosion, moisture, and water, and is safe and reliable. It adopts fully enclosed management of the electricity metering device and has functions such as closed metering circuit, prevention of electricity theft, and easy meter reading.
View Details →