Capacity 80kVA Pure Copper Dry Type Transformer

Capacity 80kVA Pure Copper Dry Type Transformer

Product Name: Capacity 80kVA Pure Copper Dry Type Transformer
Capacity: 80kVA
Delivery Year: 2021
Country: Germany
Key Advantages:
Energy Efficiency: Pure copper winding design reduces energy loss, meeting EU energy standards;
Safety: Oil-free Dry Type Transformer ensures fire and explosion resistance, ideal for confined industrial environments;
Compact Design: This Dry Type Power Transformer offers a space-saving solution, meeting customer spatial constraints.
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Henan GNEE Electric Co., Ltd. is one of the most reliable manufacturers and suppliers of capacity 80kva pure copper dry type transformer in China. If you're going to buy customized capacity 80kva pure copper dry type transformer made in China, welcome to get quotation from our factory. Quality products and reasonable price are available.

 

 

Features of Dry Type Transformers

 

 

Dry Type Transformers are widely adopted in fire-resistant and space-constrained environments due to their oil-free, safe, and eco-friendly characteristics. Key features include:

Fire-Resistant Insulation: UL94 V-0 certified materials prevent flame spread even during short circuits, ensuring personnel and equipment safety;

Efficient Cooling: Pure copper windings with high conductivity reduce operating temperature, improving cooling efficiency by 30% compared to aluminum-based models;

Low Noise: Optimized winding and structural design keeps noise levels below 55dB, suitable for commercial and industrial settings.
This Dry Type Power Transformer complies with international IEC standards and is a preferred choice for data centers, hospitals, and other safety-critical sectors.

Capacity 80kVA Pure Copper Dry Type Transformer

 

 

 

Product Advantages of Pure Copper Dry Type Transformer

 

(1) Energy Efficiency & Performance
The Pure Copper Dry Type Transformer achieves 98.5% efficiency due to copper's 1.6x higher conductivity than aluminum. This enables full-load operation at 80kVA, meeting demanding industrial loads while minimizing energy waste.

(2) Safety & Reliability
As a Dry Type Transformer, it uses high molecular resin insulation, withstands 100% rated short-circuit currents, and requires no additional fire protection. This Dry Type Power Transformer is certified to global standards (UL, CE) for explosion-proof and flame-retardant applications in hazardous environments like chemical plants and railways.

(3) Durability & Environmental Compliance
Pure copper's superior oxidation resistance (2-3x longer lifespan than aluminum) combined with eco-resin insulation ensures 20-year durability. The design is free of harmful PCBs and meets RoHS standards, aligning with global green energy initiatives.

 

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Products parameter

 

 

Rated
Capacity
(KVA)
Junction
group labe
Voltage combination(KV) No-load
current
(%)
Load loss
(W)
No-load loss
(W)
Short circuit
impedance
(%)
(H.V.) High voltage tap
range(%)
(L.V.)
30 Dyn11
YynQ
10
6.3
6
±5
±2×2.5%
or
-1 ×2.5%
+3
0.4 2.00 710 150 4.0
50 2.00 1000 215
80 1.50 1380 295
100 1.50 1570 320
125 1.30 1850 375
160 1.30 2130 430
200 1.10 2530 495
250 1.10 2760 575
315 1.00 3470 705
400 1.00 3990 785
500 1.00 4880 930
630 0.85 5880 1070
630 0.85 5960 1040 6.0
800 0.85 6960 1210
100C 0.85 8130 1410
1250 0.85 9690 1670
1600 0.85 11730 1960
2000 0.70 14450 2440
2500 0.70 17170 2880

 

 

Manufacturing Technology 

 

 

Our ISO 9001-certified processes are tailored for Pure Copper Dry Type Transformers:

 

Winding Technology:

CNC precision winding with glass-reinforced inter-turn insulation boosts shock resistance by 40%;

Vacuum Impregnation:

Full vacuum pressure impregnation (VPI) for windings and cores creates a moisture-proof barrier. This Dry Type Power Transformer achieves IP54 ingress protection against dust and water;

Rigorous Testing:

Pre-shipment tests include short-circuit, temperature rise, and partial discharge checks. The 80kVA model safely operates at 150% overload for 2 hours, exceeding industry benchmarks.

 

Capacity 80kVA Pure Copper Dry Type Transformer

 

Material Specifications of Pure Copper Dry Type Transformer

 

 

Core Windings:

High-purity copper wire (resistivity 0.017Ω·mm²/m) ensures industry-leading conductivity;

Insulation System:

F-grade (155°C) epoxy-silicon steel composite guarantees long-term stability in high-temperature environments;

Structural Design:

Fire-retardant SMC (sheet molding compound) casing with IP23 protection delivers robust impact resistance and heat dissipation.

 

 

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about us

 

GNEE Group:

Global Transformer Supply Chain Integration Expert (2008 - Present)

Founded in 2008, GNEE Group has undergone fifteen years of deep industry cultivation, successfully transforming from a regional trader to a global supply chain management expert. As a pioneer in the integration of the steel industry chain, the group has established a full-cycle value system that spans raw material procurement, production coordination, logistics optimization, and terminal services, setting an innovative operational benchmark in the global transformer distribution sector. In the era of Industry 4.0, GNEE Group is accelerating towards its goal of becoming a global integrator oftransformer industry value through digital restructuring and green supply chain construction.

 

SGS certification certificate

Capacity 80kVA Pure Copper Dry Type Transformer
Production environment

Capacity 80kVA Pure Copper Dry Type Transformer

 

 

 

FAQ
 

Q1: How to Choose Between Oil-Immersed, Dry-Type, or Amorphous Alloy Transformers Based on Needs?

A:Oil-immersed transformers (e.g., 30-2500 kVA/10 kV Oil-Immersed Three-Phase Dual-Winding):
Applicable scenarios: Large factories, substations, outdoor high-voltage power distribution.
Advantages: Excellent heat dissipation for high loads and high-temperature environments, but requires fire prevention and oil leakage precautions.
Dry-type transformers (e.g., Epoxy resin-cast type, Dry-Type Dual-Winding):
Applicable scenarios: Indoor installations (e.g., data centers, commercial buildings), environments with strict fire safety requirements.
Advantages: No insulation oil, pollution-free, low noise, but requires ventilation for heat dissipation.
Amorphous alloy transformers (e.g., Amorphous Alloy Dry-Type):
Applicable scenarios: Grid-end applications, rural power supply, energy-efficient systems.
Advantages: Reduces no-load loss by over 70%, higher efficiency than traditional transformers, ideal for long-term low-load operations.

Q2: Which Equipment is Suitable for Rectifier Transformers (30-3200 kVA Rectifier Type)?

A: Designed specifically for rectifier equipment, such as:
Electroplating lines, electrolytic cells.
Aluminum/copper electrolysis production.
DC motor drive systems.
Features: Three-phase input, adjustable DC voltage output. Note: Harmonic loads may impact transformer performance.

Q3: What are the Differences Between Prefabricated Substations (European Style) and Combined Transformers (Combined Type)?

A:Prefabricated Substations:
High integration: Includes transformers, low-voltage cabinets, and protection devices pre-installed in weatherproof/fire-resistant enclosures.
Applicable scenarios: Rapidly deployable outdoor power systems (e.g., temporary construction sites, remote areas).
Combined Transformers:
Functional integration: Typically combines transformers, metering devices, and protection equipment to simplify power distribution.
Applicable scenarios: Power distribution hubs for small/medium factories or commercial complexes.

Q4: What is the Voltage Adjustment Method for 30-2500 kVA Dual-Winding Non-Adjustable Voltage Transformers?

A:Non-adjustable type: Fixed output voltage set at factory (e.g., 10 kV input → 400 V output); no on-site adjustment.
Applicable scenarios: Stable voltage environments with minimal load fluctuations (e.g., fixed production lines).
For voltage adjustment, choose on-load tap-changing transformers (customizable).

Q5: What are the Temperature Resistance and Lifespan of Epoxy Resin-Cast Dry-Type Transformers?

A:Temperature resistance: Class F (155°C) or Class H (180°C), with overload capacity up to 1.5× rated power.
Lifespan: Over 20 years under normal operation, but requires regular inspections of winding insulation and cooling systems.

 

 

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