• 100kVA Step Down All Copper 3 Phase Dry Type Distribution Transformer
  • 100kVA Step Down All Copper 3 Phase Dry Type Distribution Transformer
  • 100kVA Step Down All Copper 3 Phase Dry Type Distribution Transformer
100kVA Step Down All Copper 3 Phase Dry Type Distribution Transformer
discuss personally
Model
SC(B)-20KV-100KVA
SC(B)-35KV-100KVA
SC(B)-10KV-100KVA
Basic info
Brand Vziman
Model NO. 100KVA Step Down All Copper 3 Phase Dry Type Distribution Transformer
Rated capacity 100kVA
Voltage grade 35KV
Series SC(B)
Product Detail

Feature:

  • The magnetic core has a miter step joint to ensure optimum performance and minimum sound levels by using step lap technology.

  • Windings are cast under vacuum with epoxy resin. Transient analysis tests have been performed to verify the electrical stress distribution.

  • Air-cooling system adopts top-blowing cross flow fan, which has the characteristics of low noise, high wind pressure, beautiful look, etc.

  • Intelligent temperature controller improves the safety and reliability of the transformer.

  • Supply various Enclosure options in IP20, IP23, etc.

Parameter:

image.png

Installation Location:


  • Installed in places without fire, explosion hazard, serious pollution, chemical corrosion and cluster vibration, indoor or outdoor.

  • Supply Ability:500 Set/Sets per Month.

Customized Service:

  • E2 Environmental Class.

  • C2 Climate Class.

  • F1 Fire Resistance Class.


Product Advantages:

  •  Vacuum-Casting

  • Our product is manufactured with vacuum casting process using a metal pattern, producing a thick resin layer with a smooth surface.

  •  Partial Discharge Free

  • Lower partial discharge characteristics.

  • All units are subjected to partial discharge test.

  • Voltage that is twice that of the operating system is applied to ensure safety.

  • Partial discharge is less than 10 pC.

  •  Shop Test Items.

Routine test:

  • Routine test is a must test for all transformers in our workshop.

  • Type test (as requested).

  • Lightning impulse test.

  • Temperature-rise test.

  • Measurement of sound level.


What is a step-down all-copper three-phase dry-type distribution transformer?

Definitions and Characteristics:

  • Voltage Reduction: It means that a transformer converts the input high-voltage electrical energy into low-voltage electrical energy.

  • All-Copper: The windings of the transformer are all made of copper wires, which possess excellent electrical conductivity and mechanical strength.

  • Three-Phase: It indicates that the transformer has three independent windings and is applicable to three-phase alternating current systems.

  • Dry-Type: It means that the transformer does not use a liquid cooling medium (such as transformer oil), and usually adopts natural air cooling or forced air cooling.

Working Principle:

  • Input Voltage: The high-voltage power source is applied to the transformer through the primary winding.

  • Generating Magnetic Field: The current in the primary winding generates an alternating magnetic field in the iron core.

  • Transferring Magnetic Field: The alternating magnetic field is transferred to the secondary winding through the iron core.

  • Inducing Electromotive Force: The alternating magnetic field induces an electromotive force in the secondary winding, generating a low-voltage output voltage.

  • Output Voltage: The secondary winding outputs the required low-voltage electrical energy for the load to use.

Know your supplier
Vziman
Zhejiang Vziman Electric Group Co., Ltd. is a high-tech enterprise specializing in R&D, manufacturing, and service of power electrical equipment. Committed to innovation, quality, and customer satisfaction, it supplies smart solutions for global power sectors, covering grid construction, new energy, and industrial distribution. Core Business • Switchgear (GIS, circuit breakers, Recloser, Load break switch) • Distribution equipment (transformers, RMU, smart terminals) • Power automation systems • Engineering services (installation, maintenance, consulting) Technical Strength • Provincial R&D center, multiple patents • Modern production, ISO/GB/IEC/CE/UL certified • High capacity, large-scale delivery support Market & Vision Serves State Grid, Southern Grid, and global projects (Asia, Africa, Europe, etc.). Aims to lead in smart grids and new energy, promoting sustainable energy development.
Main Categories
High voltage
Business Type
Design/Manufacture/Sales
Highest Annual Export (USD)
$150000000
Professional Experience
3 years
Workplace
10000m²
占位
占位
Related Products
Related Knowledges
Analysis of Partial Discharge Principle (1)
Analysis of Partial Discharge Principle (1)
Analysis of Partial Discharge Principle (1)Under the action of an electric field, in an insulation system, discharge occurs only in some regions and does not penetrate between the conductors with the applied voltage. This phenomenon is called partial discharge. If partial discharge occurs near a conductor surrounded by gas, it can also be called corona.Partial discharge can occur not only at the edge of a conductor but also on the surface or inside an insulator. The discharge occurring on the su
Leon
07/19/2025
What types of FACTS controllers are there?
What types of FACTS controllers are there?
According to the type of connection FACTS Controller with the power system, it is classified as;Series Connected ControllerShunt Connected ControllerCombined Series-Series ControllerCombined Shunt-Series ControllerSeries-Connected ControllersSeries controllers introduce a voltage in series with the line voltage, typically using capacitive or inductive impedance devices. Their primary function is to supply or absorb variable reactive power as needed.When a transmission line is heavily loaded, the
Edwiin
07/19/2025
What are FACTS and related technologies?
What are FACTS and related technologies?
FACTS (Flexible Alternating Current Transmission System) refers to a power electronics-based system that uses static devices to enhance the power transfer capability and controllability of AC transmission networks.These power electronic devices are integrated into conventional AC grids to boost key performance metrics, including:Power transfer capacity of transmission linesVoltage stability and transient stabilityVoltage regulation precisionSystem reliabilityThermal limits of transmission infras
Edwiin
07/19/2025
What are the differences between HVAC and HVDC?
What are the differences between HVAC and HVDC?
Difference Between HVAC and HVDCElectricity generated in power plants is transmitted over long distances to electrical substations, which then distribute it to consumers. The voltage used for long-distance power transmission is extremely high, and we will explore the reasons for this high voltage later. Additionally, the transmitted power can be in either alternating current (AC) or direct current (DC) form. Therefore, power can be transmitted using either HVAC (High Voltage Alternating Current)
Edwiin
07/19/2025
What are the Advantages of HVDC over HVAC?
What are the Advantages of HVDC over HVAC?
What are the Advantages of HVDC over HVAC?Electricity travels long distances before reaching consumers. Power plants, often remote, supply electricity through hundreds of miles and multiple substations. High-voltage transmission reduces line losses, with both AC and DC used. Though AC is familiar via utility poles and home outlets, HVDC offers unique advantages in power transmission.The goal of power transmission is to minimize losses and costs. While both face influencing factors, HVDC has more
Edwiin
07/19/2025
Is the neutral - point grounding method of the power grid of 110kV and above only the neutral - point direct grounding method?
Is the neutral - point grounding method of the power grid of 110kV and above only the neutral - point direct grounding method?
Neutral - Point Grounding Modes and Protection of Transformers in Power GridsFor systems ranging from 110 kV to 500 kV, an effective grounding method shall be adopted. Specifically, under all operating conditions, the ratio of zero - sequence reactance to positive - sequence reactance X0/X1 of the system should be a positive value and not exceed 3. Meanwhile, the ratio of zero - sequence resistance to positive - sequence reactance R0/X1should also be a positive value and not exceed 1.In 330 kV a
Leon
07/19/2025
×
Inquiry
Download
IEE-Business is dedicated to serving the personnel in the global power industry.
Join IEE-Business, not only can you discover power equipment and power knowledge, but also canhnd like - minded friends!