Non-Evaporable Getter (NEG) Pumps Market Size & Share by, Pressure Range (Ultra-High Vacuum [UHV] Pumps, High Vacuum Pumps); Product Type; Application - Global Industry Analysis, Trends, Supply Chain, Pricing Analysis, Trade, Leading Companies, Regional Outlook, and Forecast 2027-2036
Report ID: 1435 |
Published Date: 25 Sep 2026 |
Report Format: |
Delivery Timeline: 48-72 Business Hours
Non-Evaporable Getter (NEG) Pumps Market Outlook:
Non-Evaporable Getter (NEG) Pumps Market size was valued at USD 91.3 billion in 2026 and is projected to reach USD 145.9 billion by the end of 2036, rising at a CAGR of 4.8% during the forecast period, i.e., 2027–2036. In 2027, the industry size of the NEG pumps market is estimated at USD 95.7 billion.
The primary growth driver for the non-evaporable getter (NEG) pumps market is the expanding requirement for reliable ultra-high-vacuum environments across advanced scientific research, particle accelerators, fusion-energy infrastructure, semiconductor-related equipment, and precision industrial systems.
The non-evaporable getter (NEG) pumps market comprises vacuum-pumping systems that use chemically reactive getter materials to remove active gases from enclosed environments and maintain high- to ultra-high-vacuum conditions.
NEG pumps operate by chemically binding gases such as hydrogen, carbon monoxide, carbon dioxide, nitrogen, oxygen, and other active species onto getter surfaces. Major technologies include sintered getter materials, getter cartridges, integrated NEG modules, and hybrid configurations combined with ion or other vacuum pumps.
Key Non-Evaporable Getter (NEG) Pumps Market Insights Summary:
Key Takeaways: Market Trends & Insights
- The Non-Evaporable Getter (NEG) Pumps Market is projected to grow from USD 91.3 billion in 2026 to USD 145.9 billion by 2036, expanding at a 4.8% CAGR during 2027–2036.
- Asia-Pacific is expected to remain the leading regional market, accounting for 40.7% in 2026.
- Ultra-High Vacuum (UHV) Pumps dominate the pressure range segment with a 60.8% share in 2026, driven by the need for stable, clean, and extremely low-pressure environments in semiconductor processing, particle accelerators, scientific instrumentation, and advanced research.
- Cartridge NEG Pumps are gaining opportunities within the product type segment because their modular configuration supports compact integration, high pumping capacity, and application-specific vacuum-system designs.
Market Drivers
- Expansion of semiconductor manufacturing and advanced vacuum infrastructure
- Increasing investment in scientific research and ultra-high-vacuum facilities
- Growing adoption of compact, vibration-free vacuum technologies
- Rising demand for cleaner and more energy-efficient vacuum systems
Challenges
- High Technical Requirements and Activation Constraints
- Limited Application Flexibility Across Gas Loads
Non-Evaporable Getter (NEG) Pumps Market Overview & Supply Chain
Adoption of non-evaporable getter (NEG) pumps is increasing globally as research institutions, semiconductor manufacturers, and advanced industrial users require cleaner, stable, and increasingly compact ultra-high-vacuum environments. The technology is particularly relevant where vibration-free pumping, low power consumption, and efficient removal of active gases are important.
The industry value chain of the non-evaporable getter (NEG) pumps market begins with specialized raw materials, including zirconium-, titanium-, vanadium-, and iron-based alloys, which are processed into porous getter materials, cartridges, strips, coatings, and other pumping elements. Manufacturers then engineer these materials into NEG pump assemblies, cartridge systems, thin-film solutions, or hybrid configurations integrated with ion pumps and associated vacuum hardware. Quality control focuses on pumping performance, activation characteristics, cleanliness, mechanical integrity, and compatibility with UHV environments.
Non-Evaporable Getter (NEG) Pumps Market: Growth Drivers & Challenges
Growth Drivers
- Expansion of semiconductor manufacturing and advanced vacuum infrastructure: The expansion of semiconductor manufacturing capacity is increasing demand for specialized vacuum technologies capable of maintaining exceptionally clean and stable processing environments. NEG pumps are well suited to applications where active gases must be removed continuously and where low outgassing, compact installation, and vibration-free operation are important. Government incentives are accelerating investments across semiconductor fabs and equipment supply chains, creating a broader addressable environment for high- and ultra-high-vacuum solutions.
- Increasing investment in scientific research and ultra-high-vacuum facilities: Growing investment in particle accelerators, fusion research, surface science, and other advanced scientific infrastructure is supporting demand for ultra-high-vacuum technologies. These facilities require highly controlled vacuum environments to minimize gas contamination and enable reliable operation of sensitive components and experimental systems. NEG pumps provide an attractive solution because their getter materials can chemically capture active gases while operating without mechanical moving parts, making them useful for applications where vibration and electromagnetic interference must be minimized.
Challenges
- High technical requirements and activation constraints: NEG pumps require carefully controlled activation procedures to achieve their specified pumping performance. Getter materials must generally be heated to appropriate temperatures for activation, while the vacuum system must be compatible with the associated thermal conditions. This creates engineering complexity during installation and commissioning, particularly in sensitive scientific instruments, semiconductor equipment, and compact vacuum chambers. Incorrect activation or contamination can reduce pumping performance and shorten operational effectiveness.
- Limited application flexibility across gas loads: NEG pumps are particularly effective for active gases but are not universal solutions for every gas species encountered in vacuum systems. Noble gases and methane, for example, present different pumping requirements and may require complementary technologies such as ion pumps or other vacuum pumps. This limitation can increase system complexity because end users may need hybrid configurations rather than relying exclusively on NEG technology.
Non-Evaporable Getter (NEG) Pumps Market Size and Forecast:
| Report Attribute | Details |
|---|---|
| Base Year |
2026 |
| Forecast Period |
2027-2036 |
| CAGR |
4.8% |
| Base Year Market Size (2026) |
USD 91.3 billion |
| Forecast Year Market Size (2036) |
USD 145.9 billion |
| Regional Scope |
|
Non-Evaporable Getter (NEG) Pumps Market Segmentation Analysis:
Pressure Range Segment Analysis
In the pressure range segment, the ultra-high vacuum (UHV) pumps sub-segment is anticipated to capture the largest market share of 60.8% by the end of 2026.
Its dominance is supported by the growing requirement for exceptionally clean and stable vacuum environments across semiconductor manufacturing, particle accelerators, scientific instruments, fusion research, and advanced materials processing. UHV systems require efficient removal of active gases at extremely low pressures, making NEG-based pumping particularly valuable because getter materials provide chemically driven pumping without mechanical moving parts. Demand is also being reinforced by the expansion of electronics and semiconductor production in major Asian manufacturing centers.
On the supply side, manufacturers are developing compact getter configurations, hybrid pumping arrangements, and higher-capacity solutions to address increasingly demanding vacuum applications.
Product Type Segment Analysis
In the product type segment, the cartridge NEG pumps sub-segment is projected to grow as users increasingly require compact, replaceable, and application-specific getter pumping solutions for high- and ultra-high-vacuum systems. Cartridge configurations offer practical advantages because the getter element can be integrated into dedicated pump bodies and replaced or serviced without redesigning the complete vacuum architecture. This supports adoption across semiconductor equipment, scientific instruments, electron microscopy, surface-science systems, and other space-constrained applications. Government-backed semiconductor investment is strengthening this demand environment. Cartridge NEG pump suppliers can benefit as vacuum-system designers seek modular solutions with high gas-sorption capacity, simplified maintenance, and flexible integration.
Our in-depth analysis of the global non-evaporable getter (NEG) pumps market includes the following segments:
|
Segment |
Sub-segment |
|
Product Type |
|
|
Pressure Range |
|
|
Application |
|
Non-Evaporable Getter (NEG) Pumps Market Regional Insights:
Asia Pacific Market Trends & Insights:
The Asia-Pacific region is anticipated to account for the largest share of the non-evaporable getter (NEG) pumps market, representing 40.7% in 2026.
Regional leadership is supported by the concentration of semiconductor manufacturing, advanced materials research, scientific infrastructure, and vacuum-intensive industrial activity across major Asian economies. Government initiatives to strengthen semiconductor capabilities are also encouraging investment in sophisticated manufacturing equipment and supporting technologies.
Japan represents a technically mature market for NEG pumping technologies because of its established semiconductor, scientific-research, accelerator, and vacuum-equipment ecosystems. Government research organizations are actively developing applications based on UHV getter technology.
China is strengthening its domestic semiconductor and advanced-manufacturing capabilities, creating opportunities for specialized vacuum equipment throughout the equipment supply chain.
North America Market Trends & Insights:
North America is an important market for non-evaporable getter (NEG) pumps because of its strong concentration of semiconductor research, particle accelerators, national laboratories, universities, aerospace programs, and advanced scientific instrumentation. The region benefits from substantial investment in technologies requiring high- and ultra-high-vacuum environments, including materials research, quantum technologies, fusion, and accelerator science.
The U.S. has a broad base of semiconductor fabrication, national laboratories, accelerator facilities, universities, and advanced research programs that require sophisticated vacuum systems. Government initiatives supporting domestic semiconductor production are strengthening the equipment ecosystem, while scientific facilities continue to create demand for specialized UHV technologies.
Canada offers opportunities through its university research infrastructure, particle-physics programs, advanced materials research, and scientific instrumentation ecosystem. Demand is supported by research facilities requiring stable vacuum environments for experiments involving surfaces, materials, accelerators, and precision analytical equipment.
Leading Companies Operating in the Global Non-Evaporable Getter (NEG) Pumps Market:
Here is a list of upstream, downstream, and key players operating in the global non-evaporable getter (NEG) pumps market competitive ecosystem:
- SAES Getters / SAES High Vacuum (Italy)
- Company Overview
- Business Strategy
- Key Product Offerings
- Financial Performance
- Key Performance Indicators
- Risk Analysis
- Recent Development
- Regional Presence
- SWOT Analysis
- Gamma Vacuum (U.S)
- Leybold (Germany)
- Agilent Technologies, Inc. (U.S.)
Recent Developments
- In April 2024, SAES Getters S.p.A. signed a binding Share Purchase Agreement to acquire 100% of FMB Feinwerk- und Messtechnik GmbH (FMB Berlin), a specialist in components and scientific instrumentation for synchrotrons and particle accelerators since 1990.
Frequently Asked Question
In 2026, the non-evaporable getter (NEG) pumps market exceeded USD 91.3 billion.
The non-evaporable getter (NEG) pumps market is projected to reach USD 145.9 billion by the end of 2036, expanding at a CAGR of 4.8% over the forecast period (2027–2036).
The major players in the market are SAES Getters / SAES High Vacuum, Gamma Vacuum, Leybold, and others.
In the pressure range segment, the Ultra-High Vacuum (UHV) Pumps sub-segment is anticipated to capture the largest market share of 60.8% in the future and exhibit lucrative growth opportunities during 2027–2036.
Asia-Pacific is projected to hold the largest market share of 40.7% by the end of 2036 and provide more business opportunities in the future.
Why Choose Kenneth Research ?
-
Insight with Impact : We don’t just gather data — we uncover stories, trends, and opportunities that fuel business growth.
-
Experts Who Get It : Our team speaks your industry’s language and knows what really matters to your customers and market.
-
Custom-Built for You : Forget one-size-fits-all. We craft research and consulting solutions as unique as your business vision.
-
Partners, Not Just Providers : We work with you, not for you — collaborating closely to turn insights into smart, strategic moves.
-
Results That Speak : Our work powers brands, startups, and industry leaders alike — with a track record of ideas that work in the real world.
Report ID: 1435 |
Published Date: 25 Sep 2026 |
Report Format: |
Delivery Timeline: 48-72 Business Hours
Thank you for contacting us!
We have received your sample request for the research report. Our research representative will contact you shortly.
Get Free Sample Report
Non-Evaporable Getter (NEG) Pumps Market
Copyright © 2025 Kenneth Research. All rights reserved. Terms of Use | Privacy Policy