• 420kV Dead tank SF6 circuit breaker
420kV Dead tank SF6 circuit breaker
discuss personally
Model
LW-420-5000
Basic info
Brand ROCKWILL
Model NO. 420kV Dead tank SF6 circuit breaker
Rated voltage 420kV
Rated normal current 5000A
Rated frequency 50/60Hz
Series LW
Product Detail

Description:

420kV Dead tank SF6 circuit breaker products are composed of inlet and outlet bushings, current transformers, interrupters, frames, operating mechanisms and other componentsIt is used to cut off the rated current, fault current or conversion line to realize the control and protection of the power system, and is widely used in domestic and overseas electric power, metallurgy, mining, transportation and public utilities industries.

Main Features:

  • High-Efficiency Arc Extinction and Insulation: Utilizes SF6 gas for rapid arc extinction and excellent insulation performance, capable of quickly interrupting fault currents to ensure stable operation of power systems at the 420kV voltage level.
  • Robust Sealed Structure: Adopts a dead-tank design, sealing live components within a metal tank filled with SF6 gas to isolate them from the external environment. Features outstanding seismic resistance and dust-proof capability, adapting to complex environments.
  • Integrated Multifunctionality: Integrates components such as bushings and current transformers, combining functions like current measurement and protection control to simplify system configuration and improve operation and maintenance efficiency.
  • Long Lifespan and Low Maintenance: Exhibits long mechanical and electrical service lives. The sealed structure effectively reduces component aging and corrosion, significantly decreasing maintenance frequency and saving operational costs.
  • Multiple Safety Protections: Equipped with anti-misoperation interlocking devices and comprehensive insulation protections to effectively prevent human errors and fully safeguard the safety of personnel and equipment during operation.

Technical specifications:

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
What are the common faults of low-voltage voltage transformers?
What are the common faults of low-voltage voltage transformers?
Open - Circuit Fault on the Secondary SideOpen - circuit in the secondary side is a typical fault of low - voltage voltage transformers, showing abnormal voltmeter readings (zero/fluctuation), faulty power meters, buzzing noises, and core overheating. When open - circuited, the secondary voltage spikes (no secondary current to balance the primary EMF), causing core saturation, flux distortion, and potential overheating/damage.Causes include loose terminals, poor contact, or human error. In low
Felix Spark
07/18/2025
Analysis of the Principle of Second - harmonic Restraint for Overcurrent Protection of Distribution Automation Switches
Analysis of the Principle of Second - harmonic Restraint for Overcurrent Protection of Distribution Automation Switches
Substance of Second - harmonic Restraint in Overcurrent ProtectionThe substance of second - harmonic restraint in overcurrent protection is to use the second - harmonic component to judge whether the current is a fault current or an excitation inrush current. When the percentage of the second - harmonic component to the fundamental - wave component is greater than a certain value, it is judged to be caused by the excitation inrush current, and the overcurrent protection is blocked.Therefore, the
Leon
07/18/2025
What are the typical connection methods for 35kV distribution lines?
What are the typical connection methods for 35kV distribution lines?
Typical Wiring Diagram of 35kV Line Radial π ConnectionWhen a 35kV line adopts a radial power grid structure, a single - side power supply or a double - side power supply radial type can be used according to the situation of the power supply points, and a loop - out interval is reserved at the end of the line.Typical Wiring Diagram of 35kV Line Radial T - ConnectionFor double - radial lines, it is advisable to select a double - side power supply. When the power supply points do not meet the r
Leon
07/18/2025
Why are the ground fault point and the accident point not at the same location?
Why are the ground fault point and the accident point not at the same location?
Fault Transfer VoltageIn low - voltage distribution systems, there is a type of personal electric shock accident where the accident occurrence point and the system fault point are not at the same location. This kind of accident occurs because after a ground fault happens elsewhere, the generated fault voltage is conducted to the metal casings of other equipment through the PE wire or PEN wire. When the fault voltage on the metal casing of the equipment is higher than the human - body safe voltag
Leon
07/18/2025
Analysis of Transformer Capacity, Load Rate and Number of Units Selection Issues
Analysis of Transformer Capacity, Load Rate and Number of Units Selection Issues
The safe and economical operation of power transformers is related to the safety, economy, stability, and reliability of the operations of various industries. The limitations of conditions such as the investment economic indicators for its selection, the economic benefits of maintenance and operation, and the adaptability in the new environment (access of distributed power sources, configuration of energy storage, etc.) make it impossible to include comprehensive factors in other aspects.The cap
Leon
07/17/2025
Analysis of the Impact of Immersion on the Performance of Low-Voltage Current Transformers
Analysis of the Impact of Immersion on the Performance of Low-Voltage Current Transformers
1 IntroductionLow - voltage current transformers for metering, with a through - core type epoxy resin structure, are widely used in distribution transformer areas and for small - to - medium - sized industrial and commercial electricity consumption. As a range expander for electric energy metering, their performance directly relates to electricity consumption safety and the accuracy of users' trade calculations. Studying long - term immersion's impact on these transformers is practically signifi
Felix Spark
07/17/2025
×
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!