Rectifier Transformer
Product Introduction:
Dry type rectifier transformers are designed specifically for high-power power systems and are widely used in industries such as electrochemistry, power, metallurgy, etc. Adopting dry casting technology, it has excellent moisture resistance, fire resistance, and high efficiency, ensuring stable operation. Has strong overload capacity and low partial discharge, suitable for high load environments.
Scope of application:
Dry type rectifier transformers are widely used in industries such as electrochemistry, power, metallurgy, and mining, and are particularly suitable for places that require high power, large loads, and high reliability. It can be used in the electrolysis process of metals such as aluminum, magnesium, and copper, as well as in power substations, large industrial equipment, and new energy fields. Due to its excellent insulation performance and fire and moisture resistance, it is suitable for use in harsh indoor and outdoor environments.
Product Description:
Product features:
Main parameters:
Rated capacity: 20 kVA -35000 kVA
Rated voltage: 35KV, 10KV, 6KV
Overload capacity: The maximum overload capacity is 200% of the rated capacity
No load loss: ≤ 0.5% of rated capacity
Load loss: ≤ 1.5% of rated capacity
Noise level: ≤ 65 dB (based on capacity and design)
Working temperature range:- 5 ° C to 40 ° C
Execution standards:
GB/T 10228 Dry type Transformers
IEC 60076 Power Transformers
IEEE C57.12 Transformer Standard
GB/T 6451 Code for Seismic Design of Electrical Equipment
IEC 60726 Tests for dry-type power transformers
GB/T 11022 Low voltage distribution equipment and control equipment
Our technological advantages:
Integrating electromagnetic optimization design, parametric drawing, performance analysis and structural optimization, automatic drawing, and other functions of transformers to achieve resource sharing in transformer design, as well as searching, modifying, and version control of various data information.
The current field, temperature field, electric field, leakage magnetic field, wave process, and short-circuit force of transformers. The research and design of each series of products are carried out through simulation analysis of flow and temperature fields to determine the average temperature rise of the coil and the hot spot temperature seat, ensuring product performance.
By collecting key data such as temperature, current, voltage, vibration, and grid harmonics of transformers, online power quality analysis, fault alarms, and installation on mobile phones can be achieved.
Ordering Notice:
We are willing to serve you with our professionalism, sincerity, and integrity.