Surge Arrester Market size is expected to reach US$ 3.09 Bn. by 2029, growing at a CAGR of 4.26% during the forecast period.
· 2023 Market Value: USD 3.8 billion
· 2030 Forecast Value: USD 5.9 billion
· CAGR (2024–2030): ~6.5%
This steady growth is propelled by global utility modernization, digital substation rollout, and demand for reliable power.
Surge arresters — including polymer- and porcelain-housed — are vital components that protect electrical infrastructure from over-voltage events caused by lightning strikes and switching surges. With smart and hybrid designs now available, they play a critical role in safeguarding transmission, distribution, industrial systems, and renewable energy assets.
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The surge arrester market comprises:
· Housing Material: Polymer (increasing) and traditional porcelain
· Voltage Classes: Low, medium, and high-voltage systems
· Product Types: Line-mounted, station-class, distribution, and protection-class arresters
· End Users: Utilities, industrial facilities, rail networks, telecom, renewable power plants
These devices support asset longevity, help prevent outages, and maintain grid resilience.
· Grid Modernization: Rising demand for smart substations and digital asset integration
· Climate Impact: Increased frequency of lightning and storms boosts arrester deployment
· Renewable Integration: Wind and solar farms require distribution-level protection
· Material Innovation: Polymer-enclosed arresters provide better performance and durability
· Regulatory Measures: Standards mandating protective devices in substations and industrial assets
· Maintenance & Service Models: Remote-monitoring enabled surge arresters support predictive maintenance
By Housing Material:
· Porcelain: Established, high-voltage applications
· Polymer: Fastest-growing segment due to lightweight, maintenance ease, and humidity resistance
By Voltage Class:
· Low-Voltage Arresters: Used in residential and distribution-level systems
· Medium-Voltage Arresters: Widely implemented across utilities and commercial operations
· High-Voltage Arresters: Essential for utility-scale transmission and substations
By Product Type:
· Line-Mounted Arresters protect overhead line equipment
· Station-Class Arresters safeguard transformer and switchgear houses
· Protection-Class Units serve industrial and specialized applications
By End-Use Sector:
· Utilities: Largest sector due to volume and grid protection needs
· Industrial: High asset-value sites requiring protective infrastructure
· Renewables: Wind and solar farms across medium-voltage networks
· Rail & Transportation: Power system surge protection
· Telecom & Data Centers: Ensuring uptime and infrastructure safety
Leading producers shaping the market:
· Siemens Energy
· ABB
· Eaton Power Quality
· Schneider Electric
· Mersen
· General Electric
· Toshiba Transmission & Distribution
· CG Power
· Hyosung Power & Industrial Systems
· Zhejiang Youyuan Electric
These companies lead through smart arrester products, global reach, and after-sales service.
· Asia‑Pacific: Market leader due to rapid power infrastructure expansion and growing renewable adoption
· North America: Strong market driven by grid resilience and storm-related protection needs
· Europe: High demand from industrial, utility, and decarbonization initiatives
· Latin America: Moderate growth tied to grid renewals and digital substations
· Middle East & Africa: Investment in utility and telecom infrastructure fueling arrester deployment
· China & India: Leading adopters due to vast utility-scale and industrial surge protection requirements
· United States & Canada: Focused on smart grid and extreme weather resilience
· Germany & UK: Growth in rail electrification and utility smart substation projects
· Brazil & Mexico: Distribution-level upgrades and new power projects driving arrester demand
· UAE/Saudi Arabia/South Africa: Infrastructure expansion, renewable hubs, and utilities modernization
The pandemic briefly slowed component production in early 2020, but since then the surge arrester market has rebounded strongly. Growth in smart-grid upgrades, utility resilience initiatives, and remote monitoring solutions has accelerated demand.
Market Structure:
Moderately consolidated – global OEMs dominate high-voltage arrester space; regional players focus on distribution and retrofit segments.
Strategic Trends:
· Growth in polymer-housed and hybrid arresters
· Integration of remote monitoring and surge counters
· Partnerships with utilities and renewables developers
· Lifecycle service contracts for predictive maintenance
Challenges:
· Price volatility in raw materials (EPDM, silicone, porcelain)
· Competitive low-cost products in distribution segments
· Regulatory compatibility across regions
Opportunities:
· Retrofitting smart-grid installations
· Expanding arrester use in wind/solar farms
· Integrating surge protection into IoT-enabled substation assets
· Long-energy absorption polymer arresters for HVDC and EHV systems
Question |
Answer |
What’s the current market size? |
USD 3.8 billion in 2023 |
What’s the forecast for 2030? |
USD 5.9 billion |
What is the expected CAGR? |
~6.5% |
Which housing material is fastest-growing? |
Polymer-based arresters |
Which sector uses them most? |
Utilities, transmission, and distribution |
Who are the major manufacturers? |
Siemens, ABB, Eaton, Schneider, GE, Toshiba |
Which region leads the market? |
Asia‑Pacific |
How did COVID impact the sector? |
Short supply disruption, followed by robust recovery |
The global surge arrester market is set for healthy growth through 2030, driven by smart-grid rollouts, renewable energy expansion, and climate-driven infrastructure protection needs. As utilities and asset owners invest in modern, monitored arrester solutions—particularly polymer-based, medium-voltage units—vendors offering smart, durable, and service-driven products are best positioned to win market share. Surge arresters will remain critical for grid reliability, resilience, and digital transformation in the years to come.
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