• DS4C 252kV High voltage disconnect switch
DS4C 252kV High voltage disconnect switch
discuss personally
Model
DS4C-252/4000-50
DS4C-252/3150-50
DS4C-252/2500-50
DS4C-252/1600-50
Basic info
Brand ROCKWILL
Model NO. DS4C 252kV High voltage disconnect switch
Rated voltage 252kV
Rated normal current 2500A
Rated frequency 50/60Hz
Rated peak value withstand current 125kA
Rated short-time withstand current 50kA
Series DS4C
Product Detail

Product introduction:

GW4C Switch Disconnector is a kind of outdoor HV electricity transmission equipment’s at three-phase AC frequency of 50Hz/60Hz. It is used for breaking or connecting HV lines under no loads so that these lines can be changed and connected and the way the electricity runs Is changed. In addition, It can be used lo exercise safe electrical insulation for such HV electric apparatuses as bus and breaker. The switch can open and close inductance/capacitance current and is able to open and close the bus to switch current.

This product has two insulators with horizontal center breaks. It Is openable In the middle and accessible to the grounding switch on one side or two sides. The disconnect switch adopts CS14G or CS11 manual operating mechanism or CJ2 motor-based operating mechanism to realize the tri-pole linkage,The earthing switch adopts CS14G manual operating mechanism to actual亿e tri-pole linkage

This product has been verified by the Chinese competent authority as having uniqueness in design and reaching intonational advanced level of similar products.

GW4C disconnect switch comprises three single poles and operating mechanism. Each single pole is made of a base, post insulator and conductive part revoting insulating posts are mounted at both sides of a long base. The conductive switch blade's contact arms are respectively fixed at the tops of the insulating posts.

When the Insulating post at one end of the actuator revolves to drive, and through the cross-over lever, brings the insulating post at the other end to rotate reversely by 90° to make the conductive switch blade circumgyrate. In this way, the isolating switch is opened and closed.

Main characteristic:

  • The conductive arm made of rectangular Al-alloy pipes is characterized by high strength, light weight targe radiation area and strong stance against corruption
  • The finger is made of pure copper and has a silver plating process. It has strong now capacity and long mechanical life. The stamping process ensures the reliability of contact and finger contact.
  • The contact finger pressure is prohormonal to the primary insertion depth of the contact, the sensitivity is low, the contact insertion area is long, the on-site debugging is difficult, and the product is highly reliable against adverse interference such as harsh environment (winding of the flexible wire).
  • The contact Is made of curved copper plate. In the opening and closing processes, there is a short trip of friction between the contact and the finger and the required operating force is small.
  • The rotating parts of the Switch Disconnector are designed to be free of any maintenance. The rotating base is designed into a closure structure which denies t沺access of moisture, dust and harmful gases so that the low-temperature lubricating cream within the bearing will not run off or harden.
  •  Provide one-key sequential control "double confirmation" function expansion

Main technical parameters:

GW4C-parameters.png

 Order notice: 

Product model, rated voltage, rated current, Rated short-time withstand current and creepage distance must be specified at the goods-ordering time.

The disconnect switch offers several options of grounding (Left, right, both left and right).Unless otherwise specified, the goods supplied will be considered as providing the option of right grounding;

Note:

  • The methods of judging left end right grounding: hold out both arms and keep the arms in the same direction as the disconnect switch is opened. The earthing switch will be considered as left grounding non the left hand side, and right grounding if on the right hand side;
  • The operating mechanism, motor voltage, control voltage and the number of contacts for auxiliary switch;
  • When the Switch Disconnector is used at the incoming and outgoing terminals of the substation in the double loop parallel overhead power transmission line, if the earthing switch requires the opening/dosing induction current then such requirement shall be specified. Besides, the parameters and the side at which the earthing switch Is set shall be defined. (Special notice: Not all earthing switches attached to the earthing switches and disconnect switches at the substation shall require the opening/closing Induction current)

 

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
Analysis and Discussion on the Main Shaft Fault of Vacuum Circuit Breaker in EIB Mechanism
Analysis and Discussion on the Main Shaft Fault of Vacuum Circuit Breaker in EIB Mechanism
A vacuum circuit breaker is a type of circuit breaker in which both the arc - extinguishing medium and the insulating medium in the gap between the contacts after arc - extinction are vacuum. As a protection and control unit for power equipment and power - driven equipment in industrial and mining enterprises, indoor AC high - voltage vacuum circuit breakers have diverse applications and can be installed in fixed cabinets, middle - mounted cabinets, and double - layer cabinets. As a crucial elec
Felix Spark
06/06/2025
Analysis of a Burning - out Fault of VS1 Vacuum Circuit Breaker
Analysis of a Burning - out Fault of VS1 Vacuum Circuit Breaker
VS1 Indoor High - Voltage Vacuum Circuit Breaker Fault Analysis and Improvement MeasuresThe VS1 indoor high - voltage vacuum circuit breaker is an indoor switching device used in 12 kV power systems. Due to its excellent performance, it is especially suitable for places that require frequent operation at rated working current or multiple interruptions of short - circuit current. The operating mechanism of the VS1 indoor high - voltage vacuum circuit breaker is integrated with the circuit breaker
Felix Spark
06/05/2025
Generator Protection – Types of Faults & Protection Devices
Generator Protection – Types of Faults & Protection Devices
Common Generator Faults and Protection SystemsClassification of Generator FaultsGenerator faults are primarily categorized into internal and external types:Internal Faults: Arise from issues within generator components.External Faults: Stem from abnormal operating conditions or external network issues.Faults in prime movers (e.g., diesel engines, turbines) are mechanical in nature and defined during equipment design, though they must integrate with generator protections for tripping purposes.Typ
Edwiin
06/05/2025
Classification of Electric Power Distribution Network Systems
Classification of Electric Power Distribution Network Systems
The typical electric power system network is categorized into three main components: generation, transmission, and distribution. Electric power is produced in power plants, which are often located far from load centers. As a result, transmission lines are employed to deliver power over long distances.To minimize transmission losses, high-voltage power is used in transmission lines, and the voltage is reduced at the load center. The distribution system then delivers this power to end-users.Types
Edwiin
06/05/2025
Why 3-Phase Power? Why Not 6, 12 or More for Power Transmission?
Why 3-Phase Power? Why Not 6, 12 or More for Power Transmission?
It is well-known that single-phase and three-phase systems are the most prevalent configurations for power transmission, distribution, and end-use applications. While both serve as fundamental power supply frameworks, three-phase systems offer distinct advantages over their single-phase counterparts.Notably, multi-phase systems (such as 6-phase, 12-phase, etc.) find specific applications in power electronics—particularly in rectifier circuits and variable frequency drives (VFDs)—wher
Edwiin
06/05/2025
How Many Poles and Towers are Situated Within a 1-km Span?
How Many Poles and Towers are Situated Within a 1-km Span?
The number of distribution poles and transmission towers within a 1-kilometer stretch of overhead lines varies significantly based on multiple factors, including voltage level, power line type, supporting structure, geographical location, local regulations, and specific grid requirements.In urban areas, distribution utility poles are typically positioned at closer intervals, while in rural regions, they are spaced farther apart. Additionally, the use of taller structures for higher-voltage trans
Edwiin
06/05/2025
×
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!
商品视频播放