Global Ram Air Turbines (RATs) Competitive Landscape Professional Research Report 2025
Research SummaryRam Air Turbines (RATs) are small, retractable wind-driven turbines designed to provide emergency power to aircraft systems in the event of engine failure or other power source issues. Typically mounted on the fuselage or wings of an aircraft, RATs deploy automatically when there is a loss of primary power, and the aircraft is in flight. The turbine generates power by utilizing the relative wind caused by the aircraft's forward motion, converting it into mechanical energy to drive a generator. The electrical power generated by the Ram Air Turbine is then used to operate essential systems such as flight controls, avionics, and hydraulic systems. RATs play a critical role in ensuring the safety and control of an aircraft during emergency situations by providing a reliable backup power source.
According to DIResearch's in-depth investigation and research, the global Ram Air Turbines (RATs) market size was valued at XX Million USD in 2024 and is projected to reach XX Million USD by 2032, with a CAGR of XX% (2025-2032). Notably, the China market has changed rapidly in the past few years. By 2024, China's market size is expected to be XX Million USD, representing approximately XX% of the global market share. By 2032, it is anticipated to grow further to XX Million USD, contributing XX% to the worldwide market share.
The major global manufacturers of Ram Air Turbines (RATs) include Collins Aerospace, Safran, ATGI etc. The global players competition landscape in this report is divided into three tiers. The first tier comprises global leading enterprises that command a substantial market share, hold a dominant industry position, possess strong competitiveness and influence, and generate significant revenue. The second tier includes companies with a notable market presence and reputation; these firms actively follow industry leaders in product, service, or technological innovation and maintain a moderate revenue scale. The third tier consists of smaller companies with limited market share and lower brand recognition, primarily focused on local markets and generating comparatively lower revenue.
This report studies the market size, price trends and future development prospects of Ram Air Turbines (RATs). Focus on analysing the market share, product portfolio, prices, sales, revenue and gross profit margin of global major manufacturers, as well as the market status and trends of different product types and applications in the global Ram Air Turbines (RATs) market. The report data covers historical data from 2020 to 2024, based year in 2025 and forecast data from 2026 to 2032.
The regions and countries in the report include North America, Europe, China, APAC (excl. China), Latin America and Middle East and Africa, covering the Ram Air Turbines (RATs) market conditions and future development trends of key regions and countries, combined with industry-related policies and the latest technological developments, analyze the development characteristics of Ram Air Turbines (RATs) industries in various regions and countries, help companies understand the development characteristics of each region, help companies formulate business strategies, and achieve the ultimate goal of the company's global development strategy.
The data sources of this report mainly include the National Bureau of Statistics, customs databases, industry associations, corporate financial reports, third-party databases, etc. Among them, macroeconomic data mainly comes from the National Bureau of Statistics, International Economic Research Organization; industry statistical data mainly come from industry associations; company data mainly comes from interviews, public information collection, third-party reliable databases, and price data mainly comes from various markets monitoring database.
Global Key Manufacturers of Ram Air Turbines (RATs) Include:
Collins Aerospace
Safran
ATGI
Ram Air Turbines (RATs) Product Segment Include:
Hydraulic RAT
Electric RAT
Mix RAT
Ram Air Turbines (RATs) Product Application Include:
Military Aircraft
Civil Aircraft
Chapter ScopeChapter 1: Product Research Range, Product Types and Applications, Market Overview, Market Situation and Trends
Chapter 2: Global Ram Air Turbines (RATs) Industry PESTEL Analysis
Chapter 3: Global Ram Air Turbines (RATs) Industry Porter’s Five Forces Analysis
Chapter 4: Global Ram Air Turbines (RATs) Major Regional Market Size (Revenue, Sales, Price) and Forecast Analysis
Chapter 5: Global Ram Air Turbines (RATs) Market Size and Forecast by Type and Application Analysis
Chapter 6: North America Ram Air Turbines (RATs) Competitive Analysis (Market Size, Key Players and Market Share, Product Type and Application Segment Analysis, Countries Analysis)
Chapter 7: Europe Ram Air Turbines (RATs) Competitive Analysis (Market Size, Key Players and Market Share, Product Type and Application Segment Analysis, Countries Analysis)
Chapter 8: China Ram Air Turbines (RATs) Competitive Analysis (Market Size, Key Players and Market Share, Product Type and Application Segment Analysis, Countries Analysis)
Chapter 9: APAC (Excl. China) Ram Air Turbines (RATs) Competitive Analysis (Market Size, Key Players and Market Share, Product Type and Application Segment Analysis, Countries Analysis)
Chapter 10: Latin America Ram Air Turbines (RATs) Competitive Analysis (Market Size, Key Players and Market Share, Product Type and Application Segment Analysis, Countries Analysis)
Chapter 11: Middle East and Africa Ram Air Turbines (RATs) Competitive Analysis (Market Size, Key Players and Market Share, Product Type and Application Segment Analysis, Countries Analysis)
Chapter 12: Global Ram Air Turbines (RATs) Competitive Analysis of Key Manufacturers (Sales, Revenue, Market Share, Price, Regional Distribution and Industry Concentration)
Chapter 13: Key Company Profiles (Product Portfolio, Sales, Revenue, Price and Gross Margin)
Chapter 14: Industrial Chain Analysis, Include Raw Material Suppliers, Distributors and Customers
Chapter 15: Research Findings and Conclusion
Chapter 16: Methodology and Data Sources