63KVA/10KV Fully Sealed Laminated Core Distribution Transformer

63KVA/10KV Fully Sealed Laminated Core Distribution Transformer

Product Name: 63KVA/10KV Fully Sealed Laminated Core Distribution Transformer
Core Parameters:
Rated Capacity: 63KVA
Voltage Level: 10KV/0.4KV
Frequency: Optional 50Hz/60Hz
Insulation Class: F Class (Resistant to 155°C)
Protection Class: IP55
Delivery Year and Country: 2024, Brazil
Brief Advantages:
Outstanding Sealing Performance
High Efficiency and Energy Saving
Low Noise Design
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Henan GNEE Electric Co., Ltd. is one of the most reliable manufacturers and suppliers of 63kva/10kv fully sealed laminated core distribution transformer in China. If you're going to buy customized 63kva/10kv fully sealed laminated core distribution transformer made in China, welcome to get quotation from our factory. Quality products and reasonable price are available.

 

 

Sealing Performance Advantage Laminated Core Distribution Transformer

 

63KVA/10KV Fully Sealed Laminated Core Distribution Transformer

The sealing performance of this Fully Sealed Laminated Core Transformer is one of its core competitive advantages. It adopts a fully welded sealing process combined with high-precision sealing gasket technology, effectively isolating external moisture, dust, and harmful gases, significantly extending the service life of the equipment. Compared to traditional Oil-Immersed Transformers that rely on insulating oil for heat dissipation, the fully sealed design not only reduces oil leakage risks but also avoids safety hazards caused by oil aging.
The laminated core structure further enhances the sealing performance. The iron core and windings are vacuum cast with epoxy resin, forming a dense structure without air gaps, eliminating the possibility of partial discharge. Additionally, the sealed casing uses weather-resistant aluminum alloy materials, which can withstand harsh environments such as salt fog and high temperatures. This design is particularly suitable for distribution scenarios (Distribution Transformer), reducing maintenance frequency by up to 40% in environments where long-term stable operation is required, such as wind power and urban power grids. Its sealing performance also avoids the common oil pollution problems associated with Oil-Immersed Transformers, simultaneously improving both environmental friendliness and safety.

 

 

 

Products parameter

 

S11

Capacity

Rated voltage&Off-load tapping
Vector
GroupSymbol

NO-load
loss(W)

Load loss(W)

NO-load current(%)
Short
circuit impedance(%)

H.V(kv)

High pressure
Tap range(%)

L.V(kv)
30 kva 11 10.5
10 6.3
6
±5%
±2x2.5%
0.4
0.415
0.420
0.430
0.440

Dyn11
Yyn0
100 630/600 1.5 4
50 kva 130 910/870 1.3 4
60 kva 150 1090/1040 1.2 4
75 kva 180 1310/1250 1.2 4
100 kva 200 1580/1500 1.1 4
125 kva 240 1890/1800 1.1 4
150 kva 280 2310/2200 1 4
200 kva 340 2730/2600 1 4
250 kva 400 3200/3050 0.9 4
300 kva 480 3830/3650 0.9 4
400 kva 570 4520/4300 0.8 4
500 kva 680 5410/5150 0.8 4
600 kva 810 6200 0.6 4.5
750 kva 980 7500 0.6 4.5
1000 kva 1150 10300 0.6 4.5
1250 kva 1360 12000 0.5 4.5
1500 kva 1640 14500 0.5 4.5
2000 kva 1940 18300 0.4 5
2500 kva 2290 21200 0.4 5

 

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Installation Tutorial of Laminated Core Distribution Transformer

 

Step One: Basic Preparation
Ensure the installation site is level, with a foundation load-bearing capacity ≥ 2 tons/㎡. Verify the transformer dimensions according to the drawings, reserve ventilation and maintenance channels, and avoid blocking the cooling holes.

 

Step Two: Unpacking Inspection
Check if the sealing gaskets are intact and if there is no deformation of the casing. Confirm that the nameplate parameters match the order, and verify the accessories (grounding wires, insulating bushings, etc.).

 

Step Three: Hoisting into Position
Use dedicated hoisting tools for slow hoisting, avoiding collision with the casing. Adjust to level after positioning, fix the foot bolts, and install vibration-reducing pads.

 

Step Four: Wiring and Testing
Connect the high-voltage and low-voltage terminals according to the wiring diagram, ensuring the cooling pipes of the Oil-Immersed Transformer are unobstructed. After completing the grounding treatment, perform insulation resistance tests and no-load tests to confirm there is no abnormal temperature rise.

 

Precautions:

Sealing Check: Close all openings after installation to prevent foreign objects from entering.

Environmental Requirements: Ensure good ventilation, avoid direct sunlight on the fully sealed casing to prevent localized overheating.

 

 

63KVA/10KV Fully Sealed Laminated Core Distribution Transformer

63KVA/10KV Fully Sealed Laminated Core Distribution Transformer

 

 

 

Why choose us?

 

 

GNEE strictly follows the comprehensive acceptance testing process to ensure that the performance of each device meets the standards. Our products and services have been successfully applied in more than 50 countries and regions around the world. As a trusted global industrial partner, we are always committed to helping customers achieve their sustainable development vision through high-quality products and full-process services.

Support
• Pre-sales: Free technical consulting, drawing review, and installation training.
• After-sales:
o Global warranty for 2 years; 5-year warranty on core components.
o 7×24-hour remote support, fault response within <24 hours.
o Operation manual provided.
 

63KVA/10KV Fully Sealed Laminated Core Distribution Transformer

 

SGS certification certificate

63KVA/10KV Fully Sealed Laminated Core Distribution Transformer

 

Our factory

63KVA/10KV Fully Sealed Laminated Core Distribution Transformer

 

 

FAQ
 

Q1: What application scenarios is the Oil Immersed Transformer suitable for?

A: It is suitable for high-voltage transmission and distribution, industrial production facilities, substations, and other environments that require high load capacity and excellent heat dissipation performance.
Technical Advantage: With 18 years of industry experience, we use a three-dimensional wound core technology to reduce no-load losses by 15% compared to traditional lamination processes, while achieving ±0.5mm precision stacking to ensure long-term stable operation.
User Case: In a large steel plant expansion project, our oil immersed transformer (5000kVA) ensured the stability of continuous power supply thanks to its high load tolerance and low loss characteristics.

Q2: What parameters should be considered when choosing a Dry-type Transformer?

A: Key parameters include rated capacity (50kVA-5000kVA), voltage level, and temperature rise limits.
Core Advantage: We use epoxy resin + fiberglass insulation materials, with a fire resistance rating reaching UL94 V-0 standard, making it ideal for high-safety environments such as shopping malls and hospitals.

Q3: How does an Amorphous Alloy Transformer reduce electricity costs in remote areas?

A: By using amorphous alloy tape cores, no-load losses are reduced by 50%-70% compared to traditional silicon steel transformers, making them particularly suitable for rural grids with fluctuating loads.

 

 

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