Mordor Intelligence has published a new report on the Gas-insulated Switchgear Market, offering a comprehensive analysis of trends, growth drivers, and future projections.
Introduction to Gas-insulated Switchgear Market
The Gas-insulated Switchgear Market is witnessing steady growth and is projected to reach USD 33.53 billion by 2030, up from an estimated USD 22.76 billion in 2025. This growth corresponds to a healthy CAGR over the forecast period.
Gas-insulated switchgear provides essential power distribution and transmission capabilities while requiring significantly less space than traditional air-insulated alternatives, making it highly suitable for modern urban and industrial applications.
Market Highlights in Gas-insulated Switchgear Market
Growing Power Infrastructure and Grid Modernization
The modernization of aging transmission and distribution infrastructure is a major factor driving the demand for GIS solutions. Utilities in both developed and emerging economies are upgrading their networks to enhance reliability and reduce power losses. The integration of High Voltage Direct Current (HVDC) systems in long-distance transmission projects further increases the need for advanced GIS solutions capable of handling high voltages efficiently.
Renewable Energy Integration
The transition to renewable energy sources such as wind and solar is a significant driver of GIS demand. Renewable power generation often occurs in remote areas, requiring robust and reliable switchgear systems to transmit electricity to urban demand centers. Gas-insulated switchgear ensures grid stability by managing voltage fluctuations and providing dependable performance under variable loads.
Space Constraints and Environmental Considerations
Urbanization and limited land availability have made compact GIS systems essential for substations in dense city areas. These systems can reduce the space required by up to 70% compared to traditional switchgear, making them ideal for underground or high-density installations. Environmental regulations and the desire to limit the use of SF6 gas have also prompted manufacturers to invest in alternative insulation technologies.
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Market Division of Gas-insulated Switchgear
By Voltage Level:
- Low Voltage: The fastest-growing segment due to residential and commercial adoption, particularly for distribution boards and circuit breakers.
- Medium Voltage: Serves industrial and urban distribution networks, providing reliable power in varied applications.
- High Voltage: Dominates the market, supporting transmission networks and renewable energy facilities. High voltage GIS is crucial for efficient power transfer in urban and remote installations.
By End-User Application:
- Power Utilities: The largest segment, leveraging GIS for grid modernization, smart grids, and renewable energy integration.
- Industrial Sector: Supports manufacturing, mining, and chemical operations with reliable power distribution and minimal downtime.
- Residential and Commercial: Emerging as the fastest-growing segment, driven by urbanization, high-rise construction, and demand for energy-efficient power distribution systems.
By Geography:
- North America: Advanced market driven by grid modernization and renewable integration, led by the U.S. and Canada.
- Europe: Focus on SF6-free alternatives and cross-border transmission projects, with Germany as the leading market.
- Asia-Pacific: Largest market, propelled by rapid urbanization, industrialization, and renewable energy adoption in China and India.
- GCC and Middle East: High growth due to urbanization, infrastructure projects, and renewable energy investments.
- Rest of the World: Expanding markets in Africa, South America, and other emerging regions focusing on industrialization and electricity access improvements.
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Gas-insulated Switchgear Key Players
- ABB: Offers a wide portfolio of digital and eco-friendly GIS solutions.
- Siemens Energy: Focused on sustainable switchgear products and smart grid integration.
- Mitsubishi Electric: Develops high-voltage GIS for renewable energy and urban applications.
- Schneider Electric: Provides comprehensive GIS solutions, including installation, maintenance, and digital monitoring services.
- General Electric: Delivers advanced GIS products with an emphasis on reliability and environmental compliance.
- Toshiba: Collaborates on low-emission and SF6-free solutions for high-voltage applications.
Conclusion
The Gas-insulated Switchgear Market is set for steady growth as rising energy demand, renewable energy adoption, and urban development drive the need for compact and reliable power distribution solutions. Trends such as grid modernization, integration of renewable sources, and the development of SF6-free alternatives are shaping the market toward more environmentally responsible and efficient GIS systems.
Investment across low, medium, and high voltage solutions, along with advancements in digital monitoring and predictive maintenance, is enhancing operational efficiency and sustainability. Companies offering compact, cost-effective, and eco-friendly products are expected to gain significant market share, with the GIS industry continuing to play a vital role in modernizing power infrastructure and supporting clean energy initiatives worldwide.
Industry Related Reports
Medium Voltage Switchgear Market
Medium Voltage Switchgear Market is projected to grow from USD 43.47 billion in 2026 to USD 55.08 billion by 2031, registering a CAGR of 4.85%. The growth is driven by increasing investments in power distribution infrastructure, urbanization, and the rising demand for reliable electricity supply.
North America Air-Insulated Switchgear Market
North America Air-Insulated Switchgear Market is expected to witness strong growth with a CAGR of over 7%, supported by modernization of aging grid infrastructure and the adoption of advanced switchgear technologies across industrial and utility sectors.
South America Gas Insulated Switchgear Market
South America Gas Insulated Switchgear Market is projected to grow at a CAGR exceeding 5%, fueled by increasing investments in renewable energy integration, industrial expansion, and the need for compact and reliable switchgear solutions in urban centers.
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