1 Introduction to Research & Analysis Reports
1.1 Electronic Grade Inert Gases Market Definition
1.2 Market Segments
1.2.1 Market by Type
1.2.2 Market by Application
1.3 Global Electronic Grade Inert Gases Market Overview
1.4 Features & Benefits of This Report
1.5 Methodology & Sources of Information
1.5.1 Research Methodology
1.5.2 Research Process
1.5.3 Base Year
1.5.4 Report Assumptions & Caveats
2 Global Electronic Grade Inert Gases Overall Market Size
2.1 Global Electronic Grade Inert Gases Market Size: 2022 VS 2029
2.2 Global Electronic Grade Inert Gases Revenue, Prospects & Forecasts: 2018-2029
2.3 Global Electronic Grade Inert Gases Sales: 2018-2029
3 Company Landscape
3.1 Top Electronic Grade Inert Gases Players in Global Market
3.2 Top Global Electronic Grade Inert Gases Companies Ranked by Revenue
3.3 Global Electronic Grade Inert Gases Revenue by Companies
3.4 Global Electronic Grade Inert Gases Sales by Companies
3.5 Global Electronic Grade Inert Gases Price by Manufacturer (2018-2023)
3.6 Top 3 and Top 5 Electronic Grade Inert Gases Companies in Global Market, by Revenue in 2022
3.7 Global Manufacturers Electronic Grade Inert Gases Product Type
3.8 Tier 1, Tier 2 and Tier 3 Electronic Grade Inert Gases Players in Global Market
3.8.1 List of Global Tier 1 Electronic Grade Inert Gases Companies
3.8.2 List of Global Tier 2 and Tier 3 Electronic Grade Inert Gases Companies
4 Sights by Product
4.1 Overview
4.1.1 By Type – Global Electronic Grade Inert Gases Market Size Markets, 2022 & 2029
4.1.2 Argon
4.1.3 Neon
4.1.4 Helium Gas
4.1.5 Krypton
4.1.6 Xenon
4.2 By Type – Global Electronic Grade Inert Gases Revenue & Forecasts
4.2.1 By Type – Global Electronic Grade Inert Gases Revenue, 2018-2023
4.2.2 By Type – Global Electronic Grade Inert Gases Revenue, 2024-2029
4.2.3 By Type – Global Electronic Grade Inert Gases Revenue Market Share, 2018-2029
4.3 By Type – Global Electronic Grade Inert Gases Sales & Forecasts
4.3.1 By Type – Global Electronic Grade Inert Gases Sales, 2018-2023
4.3.2 By Type – Global Electronic Grade Inert Gases Sales, 2024-2029
4.3.3 By Type – Global Electronic Grade Inert Gases Sales Market Share, 2018-2029
4.4 By Type – Global Electronic Grade Inert Gases Price (Manufacturers Selling Prices), 2018-2029
5 Sights by Application
5.1 Overview
5.1.1 By Application – Global Electronic Grade Inert Gases Market Size, 2022 & 2029
5.1.2 Electronic Photovoltaic
5.1.3 Semiconductor Lithography
5.1.4 Others
5.2 By Application – Global Electronic Grade Inert Gases Revenue & Forecasts
5.2.1 By Application – Global Electronic Grade Inert Gases Revenue, 2018-2023
5.2.2 By Application – Global Electronic Grade Inert Gases Revenue, 2024-2029
5.2.3 By Application – Global Electronic Grade Inert Gases Revenue Market Share, 2018-2029
5.3 By Application – Global Electronic Grade Inert Gases Sales & Forecasts
5.3.1 By Application – Global Electronic Grade Inert Gases Sales, 2018-2023
5.3.2 By Application – Global Electronic Grade Inert Gases Sales, 2024-2029
5.3.3 By Application – Global Electronic Grade Inert Gases Sales Market Share, 2018-2029
5.4 By Application – Global Electronic Grade Inert Gases Price (Manufacturers Selling Prices), 2018-2029
6 Sights by Region
6.1 By Region – Global Electronic Grade Inert Gases Market Size, 2022 & 2029
6.2 By Region – Global Electronic Grade Inert Gases Revenue & Forecasts
6.2.1 By Region – Global Electronic Grade Inert Gases Revenue, 2018-2023
6.2.2 By Region – Global Electronic Grade Inert Gases Revenue, 2024-2029
6.2.3 By Region – Global Electronic Grade Inert Gases Revenue Market Share, 2018-2029
6.3 By Region – Global Electronic Grade Inert Gases Sales & Forecasts
6.3.1 By Region – Global Electronic Grade Inert Gases Sales, 2018-2023
6.3.2 By Region – Global Electronic Grade Inert Gases Sales, 2024-2029
6.3.3 By Region – Global Electronic Grade Inert Gases Sales Market Share, 2018-2029
6.4 North America
6.4.1 By Country – North America Electronic Grade Inert Gases Revenue, 2018-2029
6.4.2 By Country – North America Electronic Grade Inert Gases Sales, 2018-2029
6.4.3 US Electronic Grade Inert Gases Market Size, 2018-2029
6.4.4 Canada Electronic Grade Inert Gases Market Size, 2018-2029
6.4.5 Mexico Electronic Grade Inert Gases Market Size, 2018-2029
6.5 Europe
6.5.1 By Country – Europe Electronic Grade Inert Gases Revenue, 2018-2029
6.5.2 By Country – Europe Electronic Grade Inert Gases Sales, 2018-2029
6.5.3 Germany Electronic Grade Inert Gases Market Size, 2018-2029
6.5.4 France Electronic Grade Inert Gases Market Size, 2018-2029
6.5.5 U.K. Electronic Grade Inert Gases Market Size, 2018-2029
6.5.6 Italy Electronic Grade Inert Gases Market Size, 2018-2029
6.5.7 Russia Electronic Grade Inert Gases Market Size, 2018-2029
6.5.8 Nordic Countries Electronic Grade Inert Gases Market Size, 2018-2029
6.5.9 Benelux Electronic Grade Inert Gases Market Size, 2018-2029
6.6 Asia
6.6.1 By Region – Asia Electronic Grade Inert Gases Revenue, 2018-2029
6.6.2 By Region – Asia Electronic Grade Inert Gases Sales, 2018-2029
6.6.3 China Electronic Grade Inert Gases Market Size, 2018-2029
6.6.4 Japan Electronic Grade Inert Gases Market Size, 2018-2029
6.6.5 South Korea Electronic Grade Inert Gases Market Size, 2018-2029
6.6.6 Southeast Asia Electronic Grade Inert Gases Market Size, 2018-2029
6.6.7 India Electronic Grade Inert Gases Market Size, 2018-2029
6.7 South America
6.7.1 By Country – South America Electronic Grade Inert Gases Revenue, 2018-2029
6.7.2 By Country – South America Electronic Grade Inert Gases Sales, 2018-2029
6.7.3 Brazil Electronic Grade Inert Gases Market Size, 2018-2029
6.7.4 Argentina Electronic Grade Inert Gases Market Size, 2018-2029
6.8 Middle East & Africa
6.8.1 By Country – Middle East & Africa Electronic Grade Inert Gases Revenue, 2018-2029
6.8.2 By Country – Middle East & Africa Electronic Grade Inert Gases Sales, 2018-2029
6.8.3 Turkey Electronic Grade Inert Gases Market Size, 2018-2029
6.8.4 Israel Electronic Grade Inert Gases Market Size, 2018-2029
6.8.5 Saudi Arabia Electronic Grade Inert Gases Market Size, 2018-2029
6.8.6 UAE Electronic Grade Inert Gases Market Size, 2018-2029
7 Manufacturers & Brands Profiles
7.1 Linde Group
7.1.1 Linde Group Company Summary
7.1.2 Linde Group Business Overview
7.1.3 Linde Group Electronic Grade Inert Gases Major Product Offerings
7.1.4 Linde Group Electronic Grade Inert Gases Sales and Revenue in Global (2018-2023)
7.1.5 Linde Group Key News & Latest Developments
7.2 Air Liquide
7.2.1 Air Liquide Company Summary
7.2.2 Air Liquide Business Overview
7.2.3 Air Liquide Electronic Grade Inert Gases Major Product Offerings
7.2.4 Air Liquide Electronic Grade Inert Gases Sales and Revenue in Global (2018-2023)
7.2.5 Air Liquide Key News & Latest Developments
7.3 Praxair
7.3.1 Praxair Company Summary
7.3.2 Praxair Business Overview
7.3.3 Praxair Electronic Grade Inert Gases Major Product Offerings
7.3.4 Praxair Electronic Grade Inert Gases Sales and Revenue in Global (2018-2023)
7.3.5 Praxair Key News & Latest Developments
7.4 Air Products and Chemicals
7.4.1 Air Products and Chemicals Company Summary
7.4.2 Air Products and Chemicals Business Overview
7.4.3 Air Products and Chemicals Electronic Grade Inert Gases Major Product Offerings
7.4.4 Air Products and Chemicals Electronic Grade Inert Gases Sales and Revenue in Global (2018-2023)
7.4.5 Air Products and Chemicals Key News & Latest Developments
7.5 Taiyo Nippon Sanso
7.5.1 Taiyo Nippon Sanso Company Summary
7.5.2 Taiyo Nippon Sanso Business Overview
7.5.3 Taiyo Nippon Sanso Electronic Grade Inert Gases Major Product Offerings
7.5.4 Taiyo Nippon Sanso Electronic Grade Inert Gases Sales and Revenue in Global (2018-2023)
7.5.5 Taiyo Nippon Sanso Key News & Latest Developments
7.6 Air Water
7.6.1 Air Water Company Summary
7.6.2 Air Water Business Overview
7.6.3 Air Water Electronic Grade Inert Gases Major Product Offerings
7.6.4 Air Water Electronic Grade Inert Gases Sales and Revenue in Global (2018-2023)
7.6.5 Air Water Key News & Latest Developments
7.7 Messer
7.7.1 Messer Company Summary
7.7.2 Messer Business Overview
7.7.3 Messer Electronic Grade Inert Gases Major Product Offerings
7.7.4 Messer Electronic Grade Inert Gases Sales and Revenue in Global (2018-2023)
7.7.5 Messer Key News & Latest Developments
8 Global Electronic Grade Inert Gases Production Capacity, Analysis
8.1 Global Electronic Grade Inert Gases Production Capacity, 2018-2029
8.2 Electronic Grade Inert Gases Production Capacity of Key Manufacturers in Global Market
8.3 Global Electronic Grade Inert Gases Production by Region
9 Key Market Trends, Opportunity, Drivers and Restraints
9.1 Market Opportunities & Trends
9.2 Market Drivers
9.3 Market Restraints
10 Electronic Grade Inert Gases Supply Chain Analysis
10.1 Electronic Grade Inert Gases Industry Value Chain
10.2 Electronic Grade Inert Gases Upstream Market
10.3 Electronic Grade Inert Gases Downstream and Clients
10.4 Marketing Channels Analysis
10.4.1 Marketing Channels
10.4.2 Electronic Grade Inert Gases Distributors and Sales Agents in Global
11 Conclusion
12 Appendix
12.1 Note
12.2 Examples of Clients
12.3 Disclaimer
※参考情報 電子用不活性ガスは、主に半導体や電子部品の製造プロセスにおいて利用される特殊なガスです。これらのガスは、その特性から環境に対して極めて安定しており、化学的な反応を引き起こすことがないため、不活性とされています。 電子用不活性ガスの主な定義は、主に酸素、中性子、その他の反応性の気体が含まれていないガスであり、特に半導体製造において電子デバイスの製造プロセスにおける雰囲気を整え、材料の性質やパフォーマンスを保持するために使用されます。これにより、純度の高い環境を確保し、品質の高い電子部品を製造することが可能になります。 この種のガスにはいくつかの特徴があります。まず、その化学的安定性があります。化学反応を引き起こさないため、製造プロセス中に材料との反応を避けることができ、これが高品質の製品を生み出すために不可欠です。また、高い純度が求められるため、製造時には不純物の混入を防ぐための厳重な管理が行われています。この純度は、半導体の特性や働きに大きな影響を与えるため、非常に重要です。 電子用不活性ガスの種類には、主に希ガス(Helium、Neon、Argon、Krypton、Xenonなど)が含まれます。これらのガスは、発光性があり、低温でも安定であるため、冷却用途やレーザー技術にも利用されます。たとえば、アルゴンはプラズマ加工や薄膜形成プロセスにおいて良好な絶縁性と不活性を提供します。一方、ヘリウムは熱伝導性が高く、冷却や充填ガスとして利用されます。 用途に関して言えば、電子用不活性ガスは半導体製造プロセスにおいて特に重要です。例えば、CVD(Chemical Vapor Deposition)プロセスでは、成膜に使用されるガスの雰囲気を整えるために使用されます。また、イオン注入やエッチングプロセスでも不活性ガスが利用され、これにより精密な加工が行われます。さらに、レーザー加工や放電加工においても、これらのガスは効果的です。 関連技術についても触れておきます。プロセス技術の進歩によって、電子用不活性ガスの管理や供給方法も高度化してきています。ガス供給システムや純度管理システムは、製造現場において不可欠な要素です。これらの技術は、適切な圧力とフローコントロールを行い、安定したガス供給を実現します。また、リアルタイムでのガス分析技術も重要です。これにより、製造プロセス中に不純物の検出やガスの純度確認が行え、より高品質な製品作りに寄与します。 今後の展望としては、電子用不活性ガスの利用範囲が拡大していくことが予測されます。新たなデバイス技術や製造プロセスが開発される中で、これらのガスの役割がますます重要になるでしょう。また、エネルギー効率や材料のコストダウンを追求するための技術革新も続くと考えられます。 総じて、電子用不活性ガスは現代の電子産業において欠かせない存在であり、その特性と用途に基づいた理解が、より良い製造プロセスの構築につながります。科技の発展とともに、これらのガスに関する研究や応用が進んでいくことで、さらなる技術革新が期待されます。 |