• 12~40.5kV AC metal-enclosed gas-insulated switchgear
12~40.5kV AC metal-enclosed gas-insulated switchgear
discuss personally
Model
WS-G 12~40.5kV
Basic info
Brand Schneider
Model NO. WS-G 12~40.5kV AC metal-enclosed gas-insulated switchgear
Rated voltage 40.5kV
Series WS-G 12~40.5kV
Product Detail

Summary

WS-G Safe Reliable Environmentally friendly

Schneider Electric’s gas-insulated switchgear WS-G has very high safety and reliability, which can ensure the continuous and stable operation of the power system and the personal safety of operators. It also has a user-friendly operation interface, which is easy for on- site operators to operate. WS-G switchgear fully complies with the latest environmental requirements.

WS-G Simple Innovative Economical

WS-G is perfectly suitable for public and industrial power distribution networks, infrastructure engineering, mining, metallurgy, petrochemical, fuel gas, railway power supply, container bases and marine industries.

The WS-G uses a modern and innovative switchgear design concept and has a variety of options to choose from. It is a gas-insulated switchgear with rated voltage up to 40.5kV, rated current up to 3150A, and rated breaking current up to 40kA.

The WS-G is designed for single busbar or double busbar system. This compact, modular switchgear is extremely flexible and maintenance-free for its lifetime. It is also very suitable for places where space is limited or where old switches are retrofitted with existing foundations.

WS-G is an economical switch that can be spliced from the front of the switchgear when installed, extended, and removed. Thanks to the innovative busbar connection B-link, no gas handling operations are required on site.

WS-G has been tested in accordance with IEC standards, European EN standards and Chinese GB standards, as well as other national standards.

User Benefits

  • No gas handling required for expansions and cabinet replacement

  • Innovative, fault-resistant busbar connections

  • Friendly operation interface

  • Operational reliability and safety of personnel handing

  • Low lifetime costs

  • Environmentally friendly and easy to recycle

 

WS-G benefits and improvements

Innovative B-Link improves busbar connection
The busbar of each ws-g switchgear is installed in an independent inflatable chamber according to the system requirements. They are integrated into the insulating gas monitoring system and are not affected by the external environment. The connection with the adjacent switch cabinet bus is through our innovative bus connection system: B-link connection.

The B-link connection system does not require any maintenance.It is easy to install at the user’s site and does not require gas treatment.When expanding or replacing the switchgear, no gas handling is required and the gas chamber is not affected.The B-link connection system does not require any maintenance. It is easy to install at the user’s site and requires no gas handling. When expanding or replacing the switchgear, no gas handling is required and the gas chamber is not affected. The voltage control technology, housing grounding, soft and durable silicone rubber insulation used in the B-link connection system make the connection of the switchgear easier and the electric field distribution more uniform.


Further advantages of the B-Link system include:
All silicone rubber insulation parts have been installed on the switch cabinet in the factory, and partial discharge test has been conducted.

The on-site installation of B-link system is visible. When the B-link connection system of the adjacent switch cabinet is disassembled, an insulation distance is formed between the separated busbars without gas treatment. If necessary, the resistance of each section of busbar can be measured separately for the entire busbar system or one switchgear.

 

Reducing space requirements and improving space utilization

The WS-G saves investment costs due to its small space footprint.The WS-G can replace the old switchgear in the existing power distribution room.When the existing switchgear is dismantled, the WS-G can be debugged in sections. Reduce power outages.

The WS-G is designed for standard wall mounting. It does not require installation channels. All operations and maintenance procedures can be done in front of the cabinet.

Freestanding mounting options is also available.

Improved switchgear management - no gas handling required on site

The ws-g does not require gas treatment for installation or expansion in the field. All inflatable chambers delivered to the site for installation have a rated inflation pressure. All inflatable chambers have been tested for leakage prevention in the factory.

No gas treatment is required for the installation and renewal of the switch cabinet on site, and it does not affect the plenum.

 

Operating conditions and technical characteristics

Surrounding environment and working conditions
WS-G series switchgear is recommended to operate under normal working conditions in accordance with IEC62271, GB11022/T and GB 3906 standards.

Technical characteristics

 

WS-G main wiring scheme

Typical scheme
Single busbar system

 

Typical scheme
Dual busbar system

 

Typical scheme
Busbar auxiliary module

 

Cabinet arrangement (Single busbar segmentation)

 

WS-G application example

Spatial distribution map of civil engineering

 

 

Know your supplier
Schneider
Chengdu Fabo Automation Complete Equipment Co., Ltd is an authorized distributor of Schneider Electric, a global leader in energy management and automation solutions.
Main Categories
High voltage/Low voltage
Business Type
Manufacture/Sales
Highest Annual Export (USD)
$400000000
Professional Experience
10 years
Workplace
20000m²
占位
占位
Related Products
Related Knowledges
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
What is reactive power measurement?
What is reactive power measurement?
The power which exists in the circuit when the voltage and current are out of phase to each other, such type of power is known as the reactive power. The formula measures the reactive power in the circuitReactive Power Measurement & VarmetersReactive power measurement is critical as it indicates circuit power loss: low reactive power worsens load power factor, increasing system losses. Varmeters (volt-ampere reactive meters) measure reactive power and are categorized by circuit phases:Single
Edwiin
07/17/2025
How to Design and Install a Solar PV System?
How to Design and Install a Solar PV System?
Design and Installation of Solar PV SystemsModern society relies on energy for daily needs like industry, heating, transport, and agriculture, mostly met by non-renewable sources (coal, oil, gas). However, these cause environmental harm, are unevenly distributed, and face price volatility due to limited reserves—driving demand for renewable energy.Solar energy, abundant and capable of meeting global needs, stands out. Standalone PV systems (Fig 1) offer energy independence from utilities.
Edwiin
07/17/2025
What are the common faults that occur when low-voltage current transformers are combined with other power equipment?
What are the common faults that occur when low-voltage current transformers are combined with other power equipment?
Low-voltage current transformers, as indispensable measurement and protection devices in power systems, often encounter various faults when used in combination with other power equipment due to environmental factors, equipment linkage issues, and improper installation and maintenance. These faults not only affect the normal operation of power equipment but may also endanger personal safety. Therefore, it is necessary to gain an in-depth understanding of fault types, judgment methods, and prevent
Felix Spark
07/17/2025
What are the monitoring methods and future development trends of low-voltage voltage transformers?
What are the monitoring methods and future development trends of low-voltage voltage transformers?
With the continuous advancement of smart grid technology, intelligent monitoring systems are playing an increasingly important role in preventing and addressing faults in voltage transformers. These modern intelligent monitoring systems can collect key parameters from voltage transformers in real time—such as partial discharge levels, temperature, and oil quality—and use data analysis algorithms to assess the health status of the equipment, enabling early fault warnings and precise l
Echo
07/16/2025
×
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!