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- Introduction to PINEELE GTXGN-12 Metal-Clad Switchgear
- Key Features of PINEELE GTXGN-12 Metal-Clad Switchgear
- Fully Metal-Enclosed Structure
- Flexible and Modular Configuration
- High Dielectric and Mechanical Strength
- Enhanced Safety with Interlocks
- Technical Specifications
- Construction Overview
- Advantages of PINEELE GTXGN-12 Metal-Clad Switchgear
- Working Principle and Operation
- Application Benefits
- Frequently Asked Questions (FAQ)
- 1. What’s the difference between metal-clad and metal-enclosed switchgear?
- 2. Can PINEELE GTXGN-12 be customized for automation and smart grids?
- 3. What industries commonly use Metal-Clad Switchgear?
- Application Scenarios
Introduction to PINEELE GTXGN-12Metal-Clad Switchgear
ThePINEELE GTXGN-12 Metal-Clad Switchgearis a medium voltage switchgear system designed for indoor three-phaseAC 50/60Hzpower networks with a rated voltage of up to12kV. Engineered to meet the growing needs of modern electrical infrastructure, thismetal-clad switchgearoffers a compact, modular, and safe solution for energy distribution in power stations, industrial zones, commercial buildings, and renewable energy applications.
Conforming to international standards such asIEC 62271-200andGB3906, theGTXGN-12 Metal-Clad Switchgearutilizesvacuum circuit breakers,gas-tight compartments, andfully metal-enclosed bus systems. This makes it an ideal choice wherespace-saving, personnel safety, andreliable service continuityare crucial.

Key Features of PINEELE GTXGN-12 Metal-Clad Switchgear
Fully Metal-Enclosed Structure
- Each functional unit (breaker, busbar, cable, control) is sealed and independently isolated.
- High-level arc-proof construction andIP4X/IP2Xprotection for personnel safety.
Flexible and Modular Configuration
- Designed for bothsingle busanddouble bussystems with optional bypass schemes.
- Handcart-based withdrawable modules for easy maintenance and inspection.
High Dielectric and Mechanical Strength
- Advanced vacuum breaking technology ensures long service life and reduced arc erosion.
- Tested for short-circuit withstand, dielectric strength, and partial discharge immunity.
Enhanced Safety with Interlocks
- Integrated mechanical and electrical interlocks to prevent access during live operation.
- Prevents circuit breaker racking, grounding switch misuse, and door opening under load.

Technical Specifications
Item | Unit | GTXGN-12 |
---|---|---|
Rated Voltage | kV | 12 |
Rated Frequency | Hz | 50 / 60 |
Rated Current | A | 630 / 1250 / 1600 / 2000 / 2500 |
Rated Short-Circuit Breaking Current | kA | 20 / 25 / 31.5 |
Rated Short-Circuit Making Current (Peak) | kA | 50 / 63 / 80 |
Rated Short-Time Withstand Current | kA | 20 / 25 / 31.5 (4s) |
Rated Peak Withstand Current | kA | 50 / 63 / 80 |
LightningImpulse Withstand Voltage | kV | 75 / 95 (phase/ground) |
PowerFrequency Withstand Voltage | kV | 42 (1 min) |
Protection Degree | — | IP4X (enclosure), IP2X (compartments) |
Mechanical Life (Circuit Breaker) | Times | 10,000 – 20,000 |
Ambient Temperature | ℃ | -15 to +40 |
Altitude | m | ≤1000 (custom available) |
Humidity | % | ≤95% RH |
Installation Type | — | Indoor |
Cabinet Size (WxDxH) | mm | 800 × 1500 × 2300 (varies by config) |
Construction Overview
ThePINEELE GTXGN-12 Metal-Clad Switchgearis composed of:
- A. Circuit Breaker Compartment
Houses the withdrawable vacuum circuit breaker unit (VS1 or equivalent). - B. Busbar Compartment
Located at the top, fully metal-encapsulated and insulated for high safety. - C. Cable Compartment
Located at the bottom with ample space for terminals, CTs, and surge arresters. - D. Instrument Compartment
Mounted on the front with control relays, meters, and communication terminals.
Advantages of PINEELE GTXGN-12 Metal-Clad Switchgear
- Safe & Sealed Compartments
Metal partitions eliminate arc propagation and enhance operator safety. - Withdrawable Mechanism
Removable breaker trolley for quick replacement and maintenance. - Smart Monitoring Ready
Compatible with SCADA/DCS and equipped with auxiliary contacts and sensors. - Low Maintenance Requirements
Uses maintenance-free vacuum interrupters and dust-sealed compartments. - Customizable Design
Supports local standards, custom busbar designs, and various relay types.
Working Principle and Operation
TheGTXGN-12 Metal-Clad Switchgearreceives medium-voltage power from incoming feeders and distributes it through outgoing lines viavacuum circuit breakers. Real-time monitoring, remote control, and interlocks ensure that power is reliably switched without exposing operators to live components.
Themain breaker handcartcan be moved between service, test, and disconnected positions while the switchgear remains energized, ensuring maximum uptime with minimum risk.
Application Benefits
Deploying thePINEELE GTXGN-12 Metal-Clad Switchgearresults in:
- Reduced energy losses from partial discharge and poor power factor
- Improved maintenance cycles with modular and easy-access design
- Flexible network configurations including looped and radial grids
- Support for distributed generation, renewable integration, and microgrids
Frequently Asked Questions (FAQ)
1. What’s the difference between metal-clad and metal-enclosed switchgear?
Metal-clad switchgearhas each live component enclosed in its own grounded metal compartment, offering higher arc protection and operational safety. In contrast,metal-enclosedtypes may have shared enclosures without full isolation.
2. Can PINEELE GTXGN-12 be customized for automation and smart grids?
Yes. The switchgear supports integration withSCADA,remote terminal units (RTUs), andintelligent protection relaysfor smart grid deployment and real-time power monitoring.
3. What industries commonly use Metal-Clad Switchgear?
ThePINEELE GTXGN-12 Metal-Clad Switchgearis widely used in:
- Power generation and substations
- Oil & gas industries
- Water treatment plants
- Renewable energy fields
- Metro/railway stations and tunnels
- Industrial plants and commercial complexes
Application Scenarios
TheGTXGN-12 Metal-Clad Switchgearis ideal for:
- Industrial automation environments
- Medium-voltage distribution networks
- Commercial buildings and infrastructure
- Wind and solar energy systems
- Transport hubs and underground substations
- Smart city and IoT-ready power systems