High Tension Switchgear Factory - GCS Low-voltage Series
Main Parameters
Parameter | Value |
---|---|
Rated Voltage of Main Circuit | AC380/400/600 |
Rated Voltage of Auxiliary Circuit | AC 220,380(400)DC 110.220 |
Rated Frequency | 50(60) Hz |
Rated Insulation Voltage | 600(1000) V |
Rated Current | Horizontal bus ≤4000 A, Vertical bus(MCC) 1000 A |
Busbar Rated Short-time Withstand Current | 50.80 kA/1s |
Busbar Rated Peak Withstand Current | 105,176 kA/0.1s |
Power Frequency Test Voltage | Main circuit 2500 V, Auxiliary circuit 1760 V |
Protection Level | IP30, IP40 |
Common Product Specifications
Specification | Detail |
---|---|
Configuration | Three-phase four-wire system A.B.C PEN, Three-phase five-wire system A.B.C PEN |
Installation | Indoor |
Material | High-strength steel and composite materials |
Product Manufacturing Process
The manufacturing process of high tension switchgear in our factory involves several stages. Initial design considerations focus on integrating high-quality materials that ensure durability and reliability. Components like circuit breakers, transformers, and relays are sourced from credible suppliers or manufactured in-house. The assembly process includes rigorous testing under simulated operating conditions to check for compliance with international standards. Advanced fabricating technologies like CNC machining and automated welding are employed to maintain precision. The final step involves quality assurance tests that evaluate insulation, current handling capacity, and safety features. This meticulous process ensures the switchgear meets all necessary benchmarks for high tension applications.
Product Application Scenarios
High tension switchgear is pivotal in various applications across industries. In power plants, it regulates electricity flow, ensuring seamless operation of generators and turbines. In substations, the switchgear protects the grid by mitigating overloads and short circuits, thus avoiding widespread outages. The industrial sector relies on high tension switchgear to safeguard machinery and equipment, especially in environments like mining and chemical processing where electrical stability is crucial. Additionally, urban settings increasingly demand compact switchgear solutions, making the GIS type particularly valuable in space-constrained areas with dense infrastructure.
Product After-Sales Service
Our factory provides comprehensive after-sales services, including installation assistance, regular maintenance checks, and troubleshooting support. We ensure our customers receive timely updates on technological advancements, and our dedicated service team is available for consultation and repairs. All products come with a warranty period that covers manufacturing defects, thereby assuring clients of ongoing support and peace of mind.
Product Transportation
We employ a robust logistics network to ensure our high tension switchgear products are transported safely and efficiently to their destination. Packaging is reinforced to prevent damage during transit, and we coordinate with reputable carriers for both domestic and international deliveries. Real-time tracking is available for clients to monitor the progress of their shipments.
Product Advantages
- Enhanced safety features ensure operation reliability.
- Customizable configurations to meet specific needs.
- Competitive pricing owing to efficient manufacturing processes in our factory.
- Compact design options available for space-constrained environments.
- Complies with international safety and quality standards.
- Robust construction suitable for demanding industrial applications.
- Advanced digital integration for real-time monitoring.
- Extensive after-sales support and maintenance services.
- Proven track record with numerous installations worldwide.
- Reduced operating costs through energy-efficient designs.
Product FAQ
- What voltage levels does the GCS Low-voltage switchgear handle?
It operates efficiently within a range of AC380/400/600 volts, catering to various industrial requirements. Our factory ensures strict quality checks to handle these voltages safely.
- What is the purpose of using GCS Low-voltage switchgear?
The switchgear is essential for the distribution of electrical power within networks. It safeguards against overloads and ensures the efficient operation of electrical systems.
- How is the switchgear tested for reliability?
Our factory subjects each unit to rigorous testing including power frequency tests and short-time withstand current tests to ensure reliability and robustness.
- Can the switchgear be customized?
Yes, customization is possible to meet specific client requirements, including configuration adjustments and material selections.
- What types of protection levels are available?
The GCS series offers protection levels of IP30 and IP40, catering to different environmental conditions and safety needs.
- Does your factory provide installation services?
We offer comprehensive installation support through our dedicated team, ensuring a seamless setup and integration with existing systems.
- How are maintenance and service support handled?
Our factory provides ongoing maintenance services and customer support for troubleshooting, ensuring long-term satisfaction and reliability.
- What are the potential application scenarios?
The switchgear is suitable for use in power plants, industrial sectors, substations, and urban infrastructure projects where efficient power distribution is required.
- Is the switchgear compliant with international standards?
Yes, it is designed and tested to meet global safety and performance standards, ensuring compatibility and safety across different regions.
- How does your factory ensure quality?
Our rigorous quality assurance process includes advanced testing and inspection practices, ensuring each unit meets all specified criteria before shipment.
Product Hot Topics
- Smart Integration in High Tension Switchgear
Our factory embraces technological advancements by integrating smart systems into high tension switchgear. This enables real-time monitoring and control, improving efficiency and providing valuable insights into electrical system performance.
- Sustainable Manufacturing Practices at Our Factory
We prioritize sustainable manufacturing in our factory operations, reducing waste and energy consumption throughout the production of high tension switchgear, contributing positively to environmental preservation.
- Adaptability of High Tension Switchgear Designs
The ability to adapt to customer needs is a hallmark of our factory, offering diverse and customizable high tension switchgear solutions that meet varying operational demands and installation environments.
- Enhancing Energy Efficiency with Modern Switchgear
Our high tension switchgear is designed to enhance energy efficiency, reducing operational costs and carbon footprints, aligning with global sustainability goals.
- Impact of Quality Assurance on Product Longevity
Quality assurance in our factory ensures that each high tension switchgear unit is built to last, with rigorous testing guaranteeing long-term reliability and performance.
- The Role of High Tension Switchgear in Urban Development
As urban development increases, our factory's compact switchgear designs provide solutions that meet the challenges of space constraints and rising energy demands.
- Customer-Centric Innovation in Switchgear Production
Feedback loops and customer-centric approaches drive innovation in our factory, ensuring that our high tension switchgear products evolve with market trends and user needs.
- International Compliance and Export Standards
Our factory adheres to international standards, facilitating seamless export of high tension switchgear products to global markets, ensuring compliance and safety.
- Future Trends in High Tension Switchgear Technology
Keeping abreast of future trends, our factory invests in R&D to develop cutting-edge high tension switchgear technology that offers superior performance and resilience.
- Investment in Digital Manufacturing Technologies
Our factory invests in digital manufacturing technologies to enhance precision, reduce lead times, and improve the overall quality of high tension switchgear units.
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