• 12kV Indoor High Voltage Vacuum Circuit Breaker
  • 12kV Indoor High Voltage Vacuum Circuit Breaker
  • 12kV Indoor High Voltage Vacuum Circuit Breaker
12kV Indoor High Voltage Vacuum Circuit Breaker
discuss personally
Model
VDS4-12-3150
VDS4-12-2500
VDS4-12-2000
VDS4-12-1600
VDS4-12-1250
VDS4-12-630
Basic info
Brand ROCKWILL
Model NO. 12kV Indoor High Voltage Vacuum Circuit Breaker
Rated voltage 12kV
Rated normal current 3150A
Series VDS4
Product Detail

Product Introduction

The VDS4 series indoor high-voltage AC vacuum circuit breaker is designed for three-phase AC 50Hz power systems with a rated voltage ranging from 7.2 to 40.5kV. Widely applied in substations, power plants, industrial facilities, airports, and buildings, it excels at controlling and safeguarding electrical equipment. With its capabilities for frequent operations and rapid reclosing, it ensures reliable power management.

This breaker adheres to national standards, including GB/T 1984-2014 "High Voltage AC Circuit Breaker", JB/T 3855-2008 "High Voltage AC Vacuum Circuit Breaker", and DL/T 403-2000 "12kV~40.5kV Indoor AC High Voltage Vacuum Circuit Breaker Ordering Technical Requirements". It also complies with international regulations set by the International Electrotechnical Commission, such as IEC 62271-100, IEC 60694, and IEC 62271-1, guaranteeing quality and global compatibility.

Technical parameters

The following table details the key technical specifications of the product, comprehensively covering electrical performance, mechanical characteristics, and dimensional parameters to provide a clear reference for technical selection and application scenarios.

Features
The product offers multiple significant advantages, which can fully meet the diverse needs of industrial and power systems. Specifically included are:

  •  Excellent Electrical Performance of Fully Enclosed Pole

The main circuit of the VSV series vacuum circuit breaker adopts a fully enclosed structure, available in two types: insulated cylinder or solid pole.

  • Insulated Cylinder Structure:

The main electrical components are longitudinally installed in an epoxy resin cylinder cast via the APG process. This structure offers superior arc resistance, anti-aging properties, and high mechanical strength. It effectively shields the vacuum interrupter from external factors such as mechanical impacts and environmental pollution while enhancing the conductive circuit’s capability to withstand rated short-term (peak) withstand currents.

  • Sealed Pole Structure (P Series):

The miniaturized vacuum interrupter and other main circuit components are directly sealed in epoxy resin using advanced APG technology. This not only simplifies the pole assembly process and improves the reliability of the vacuum interrupter’s conductive circuit but also protects the interrupter’s outdoor surface from external mechanical forces and environmental influences.

  •  Corrosion-Resistant Mechanism with Advanced Design

Structural components undergo super anti-corrosion and anti-salt spray zinc-nickel alloy treatment.

Transmission parts are treated with high-hardness, wear-resistant, and corrosion-resistant nickel-phosphorus alloy.

International brand INA oil-free graphite bearings are used for transmission, ensuring high strength and excellent wear resistance.

  •  C2-Level Circuit Breaker Compliance

During capacitive current interruption, the breaker exhibits an extremely low probability of re-strike, fully meeting the requirements for C2-level circuit breakers.

  •  E2-Level Circuit Breaker Certification

The breaker has successfully passed all tests at the Shenyang High Voltage Electrical Appliance Research Institute and Xi’an High Voltage Electrical Appliance Research Institute testing centers. It complies with the E2-level standard, demonstrating:

  • 30 operations with full-rated short-circuit current for low-current breakers.

  • 20 operations with full-rated short-circuit current for high-current breakers.

 

 

Know your supplier
ROCKWILL
Rockwill Electric Group Global Manufacturer of High voltage and medium-voltage power equipment and smart grid solutions. Headquartered in Wenzhou, China. Serving 100+ countries with quality, innovation, and trust. What We Offer: • HV-MV switchgear (VCB, SF₆ circuit breakers, RMU, GIS) • Distribution transformers and substations • Smart grid and monitoring systems • Solar, wind, EV charging, and energy storage solutions • EPC turnkey power projects Certified: ISO 9001 / ISO 14001 / ISO 45001
Main Categories
High voltage
Business Type
Design/Manufacture/Sales
Highest Annual Export (USD)
$150,000,000
Professional Experience
16 years
Workplace
108000m²m²
占位
占位
Related Products
Related Knowledges
Installation and Commissioning of 10kV Dry-Type Transformers
Installation and Commissioning of 10kV Dry-Type Transformers
By James, 10 Years of Electrical Equipment Maintenance ExperienceHi everyone, I’m James, and I’ve been working in electrical equipment fault repair for 10 years.Over the past decade, I’ve worked in factories, substations, and distribution rooms of all sizes, involved in the installation, commissioning, maintenance, and troubleshooting of dry-type transformers. Dry-type transformers are among the most common electrical devices we deal with on a daily basis.Today, a new colleague
James
07/01/2025
What are the reasons for low insulation at the low-voltage side of a dry-type transformer?
What are the reasons for low insulation at the low-voltage side of a dry-type transformer?
Hi everyone, I’m Felix, and I’ve been working in electrical equipment fault repair for 15 years.Over these years, I’ve traveled across factories, substations, and distribution rooms all over the country, troubleshooting and repairing all kinds of electrical equipment. Dry-type transformers are among the most common devices we deal with.Today, a friend asked me:“What does it mean when the low-voltage side of a dry-type transformer has low insulation resistance?”Great
Felix Spark
07/01/2025
What tests are required for dry-type transformers?
What tests are required for dry-type transformers?
1 Pre - commissioning InspectionAs a front - line tester, before formally commissioning a dry - type transformer, I need to carry out a comprehensive and systematic inspection. First, I conduct a visual inspection of the transformer body and its accessories, carefully checking for mechanical damage or deformation. Then, I check whether the leads of the high - and low - voltage windings are firmly connected and whether the bolt tightening torque meets the standard requirements (usually 40 - 60N&m
Oliver Watts
07/01/2025
What aspects need attention during the installation of dry-type transformers?
What aspects need attention during the installation of dry-type transformers?
1 Pre - installation PreparationAs a front - line installer, I know very well that the preparation work before installing a dry - type transformer must be thorough. First, I will carefully review the design drawings and technical documents, and check one by one the technical parameters such as the model specification, rated capacity, and voltage level of the transformer to ensure they are in full compliance with the design requirements. Then, I will conduct an unpacking inspection of the transfo
James
07/01/2025
What are the causes of dry-type transformers burning out during operation?
What are the causes of dry-type transformers burning out during operation?
1 Fault PhenomenonI am engaged in front - line fault maintenance work, and recently encountered problems with dry - type transformers. Dry - type transformers have a simple structure, are convenient for transportation, and easy for maintenance. They are widely used in power distribution places with relatively high environmental protection requirements. Because of their good fire - resistance, they can be installed in load - center areas to reduce voltage loss and power loss.The property manageme
Felix Spark
07/01/2025
Method for Automatic Isolation of Customer Equipment Faults by Load Switches in Distribution Networks
Method for Automatic Isolation of Customer Equipment Faults by Load Switches in Distribution Networks
1 OverviewDistribution network safety has long been under - addressed, with its automation lagging substation automation . Using 10 kV intervals of existing substations to set line section points meets future grid needs . Configuration of distribution switches, section switches, and protection must match substation outgoing - line protection for reliability. Fault isolation, self - healing, and restoration are key to distribution automation .Scholars have studied smart distribution network fault
Felix Spark
06/30/2025
×
Inquiry
Download
Experts Electrical is dedicated to serving the personnel in the global power industry.
Join Experts Electrical, not only can you discover power equipment and power knowledge, but also canhnd like - minded friends!