

Global Propulsion Systems market accounted for $261.00 billion in 2017 and is expected to reach $543.80 billion by 2026 growing at a CAGR of 8.5% during the forecast period. Growing space expeditions, increasing applications in various defense weapons and increasing need for long-range missiles are some of the key driving factors for the market growth. However, stringent airspace regulations may hinder market growth.
A propulsion system is referred to a system of machines that produces thrust to push an object forward. Propulsion systems work on Newton’s third law, i.e. ‘for every action there is an equal and opposite reaction’. Different propulsion systems generate different thrusts, but all thrusts will have some connection with Newton’s third law. On airplanes, thrust is usually generated through some application of Newton's third law of action and reaction.
Based on Application, Unmanned Aerial Vehicles segment held considerable market share during the forecast period due to the rising demand for UAV usage in diverse applications. UAVs are mounted with different types of engines in accordance with the required power to perform different operations. By geography, North America is expected to grow at a faster rate due to the rising number of military modernization programs in this region.
Some of the key players profiled in the Propulsion Systems include 3W International GmbH, Aerojet Rocketdyne Holdings, Inc. , Financial Highlights, General Electric Co., GKN Aerospace, Honeywell International Inc., Lockheed Martin Corporation, Northrop Grumman Corporation, Orbital ATK, Rolls-Royce Holdings PLC., Safran S.A, The Raytheon Company and United Technologies Corporation.
Types Covered:
• Transcatheter Heart Valves
• Tissue Heart Valves
• Tactical Unmanned Aerial Vehicle
• Mini and Micro Unmanned Aerial Vehicle
• Medium-Altitude Long-Endurance Unmanned Aerial Vehicle
• Mechanical Heart Valves
• High-Altitude Long Endurance Unmanned Aerial Vehicle
• Electric Propulsion Engines
• Non-Air Breathing Engines
• Air-Breathing Engines
Applications Covered:
• Unmanned Aerial Vehicles
• Spacecraft
• Missiles
• Aircraft
• Railway
• Marine
• Electric
Regions Covered:
• North America
o US
o Canada
o Mexico
• Europe
o Germany
o UK
o Italy
o France
o Spain
o Rest of Europe
• Asia Pacific
o Japan
o China
o India
o Australia
o New Zealand
o South Korea
o Rest of Asia Pacific
• South America
o Argentina
o Brazil
o Chile
o Rest of South America
• Middle East & Africa
o Saudi Arabia
o UAE
o Qatar
o South Africa
o Rest of Middle East & Africa
What our report offers:
- Âé¶¹Ô´´ share assessments for the regional and country level segments
- Âé¶¹Ô´´ share analysis of the top industry players
- Strategic recommendations for the new entrants
- Âé¶¹Ô´´ forecasts for a minimum of 9 years of all the mentioned segments, sub-segments, and the regional markets
- Âé¶¹Ô´´ Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations)
- Strategic recommendations in key business segments based on the market estimations
- Competitive landscaping mapping the key common trends
- Company profiling with detailed strategies, financials, and recent developments
- Supply chain trends mapping the latest technological advancements
Free Customization Offerings:
All the customers of this report will be entitled to receive one of the following free customization options:
• Company Profiling
o Comprehensive profiling of additional market players (up to 3)
o SWOT Analysis of key players (up to 3)
• Regional Segmentation
o Âé¶¹Ô´´ estimations, Forecasts and CAGR of any prominent country as per the client's interest (Note: Depends on feasibility check)
• Competitive Benchmarking
o Benchmarking of key players based on product portfolio, geographical presence, and strategic alliances
1 Executive Summary
2 Preface
2.1 Abstract
2.2 Stake Holders
2.3 Research Scope
2.4 Research Methodology
2.4.1 Data Mining
2.4.2 Data Analysis
2.4.3 Data Validation
2.4.4 Research Approach
2.5 Research Sources
2.5.1 Primary Research Sources
2.5.2 Secondary Research Sources
2.5.3 Assumptions
3 Âé¶¹Ô´´ Trend Analysis
3.1 Introduction
3.2 Drivers
3.3 Restraints
3.4 Opportunities
3.5 Threats
3.6 Application Analysis
3.7 Emerging Âé¶¹Ô´´s
3.8 Futuristic Âé¶¹Ô´´ Scenario
4 Porters Five Force Analysis
4.1 Bargaining power of suppliers
4.2 Bargaining power of buyers
4.3 Threat of substitutes
4.4 Threat of new entrants
4.5 Competitive rivalry
5 Global Propulsion Systems Âé¶¹Ô´´, By Type
5.1 Introduction
5.2 Transcatheter Heart Valves
5.3 Tissue Heart Valves
5.4 Tactical Unmanned Aerial Vehicle
5.5 Mini and Micro Unmanned Aerial Vehicle
5.6 Medium-Altitude Long-Endurance Unmanned Aerial Vehicle
5.7 Mechanical Heart Valves
5.8 High-Altitude Long Endurance Unmanned Aerial Vehicle
5.9 Electric Propulsion Engines
5.10 Non-Air Breathing Engines
5.10.1 Liquid Propulsion
5.10.2 Solid Propulsion
5.10.3 Hybrid
5.11 Air-Breathing Engines
5.11.1 Gas Turbine & Jet Engine
5.11.2 Ramjet & Scramjet
5.11.3 Internal Combustion
6 Global Propulsion Systems Âé¶¹Ô´´, By Application
6.1 Introduction
6.2 Unmanned Aerial Vehicles
6.3 Spacecraft
6.4 Missiles
6.5 Aircraft
6.6 Railway
6.7 Marine
6.8 Electric
7 Global Propulsion Systems Âé¶¹Ô´´, By Geography
7.1 Introduction
7.2 North America
7.2.1 US
7.2.2 Canada
7.2.3 Mexico
7.3 Europe
7.3.1 Germany
7.3.2 UK
7.3.3 Italy
7.3.4 France
7.3.5 Spain
7.3.6 Rest of Europe
7.4 Asia Pacific
7.4.1 Japan
7.4.2 China
7.4.3 India
7.4.4 Australia
7.4.5 New Zealand
7.4.6 South Korea
7.4.7 Rest of Asia Pacific
7.5 South America
7.5.1 Argentina
7.5.2 Brazil
7.5.3 Chile
7.5.4 Rest of South America
7.6 Middle East & Africa
7.6.1 Saudi Arabia
7.6.2 UAE
7.6.3 Qatar
7.6.4 South Africa
7.6.5 Rest of Middle East & Africa
8 Key Developments
8.1 Agreements, Partnerships, Collaborations and Joint Ventures
8.2 Acquisitions & Mergers
8.3 New Product Launch
8.4 Expansions
8.5 Other Key Strategies
9 Company Profiling
9.1 3W International GmbH
9.2 Aerojet Rocketdyne Holdings, Inc.
9.3 Financial Highlights
9.4 General Electric Co.
9.5 GKN Aerospace
9.6 Honeywell International Inc.
9.7 Lockheed Martin Corporation
9.8 Northrop Grumman Corporation
9.9 Orbital ATK
9.10 Rolls-Royce Holdings PLC.
9.11 Safran S.A
9.12 The Raytheon Company
9.13 United Technologies Corporation
List of Tables
Table 1 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Region (2016-2026) (US $MN)
Table 2 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Type (2016-2026) (US $MN)
Table 3 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Transcatheter Heart Valves (2016-2026) (US $MN)
Table 4 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Tissue Heart Valves (2016-2026) (US $MN)
Table 5 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Tactical Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 6 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Mini and Micro Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 7 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Medium-Altitude Long-Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 8 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Mechanical Heart Valves (2016-2026) (US $MN)
Table 9 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By High-Altitude Long Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 10 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric Propulsion Engines (2016-2026) (US $MN)
Table 11 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Non-Air Breathing Engines (2016-2026) (US $MN)
Table 12 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Liquid Propulsion (2016-2026) (US $MN)
Table 13 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Solid Propulsion (2016-2026) (US $MN)
Table 14 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Hybrid (2016-2026) (US $MN)
Table 15 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Air-Breathing Engines (2016-2026) (US $MN)
Table 16 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Gas Turbine & Jet Engine (2016-2026) (US $MN)
Table 17 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Ramjet & Scramjet (2016-2026) (US $MN)
Table 18 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Internal Combustion (2016-2026) (US $MN)
Table 19 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Application (2016-2026) (US $MN)
Table 20 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Unmanned Aerial Vehicles (2016-2026) (US $MN)
Table 21 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Spacecraft (2016-2026) (US $MN)
Table 22 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Missiles (2016-2026) (US $MN)
Table 23 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Aircraft (2016-2026) (US $MN)
Table 24 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Railway (2016-2026) (US $MN)
Table 25 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Marine (2016-2026) (US $MN)
Table 26 Global Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric (2016-2026) (US $MN)
Table 27 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Country (2016-2026) (US $MN)
Table 28 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Type (2016-2026) (US $MN)
Table 29 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Transcatheter Heart Valves (2016-2026) (US $MN)
Table 30 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Tissue Heart Valves (2016-2026) (US $MN)
Table 31 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Tactical Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 32 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Mini and Micro Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 33 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Medium-Altitude Long-Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 34 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Mechanical Heart Valves (2016-2026) (US $MN)
Table 35 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By High-Altitude Long Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 36 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric Propulsion Engines (2016-2026) (US $MN)
Table 37 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Non-Air Breathing Engines (2016-2026) (US $MN)
Table 38 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Liquid Propulsion (2016-2026) (US $MN)
Table 39 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Solid Propulsion (2016-2026) (US $MN)
Table 40 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Hybrid (2016-2026) (US $MN)
Table 41 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Air-Breathing Engines (2016-2026) (US $MN)
Table 42 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Gas Turbine & Jet Engine (2016-2026) (US $MN)
Table 43 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Ramjet & Scramjet (2016-2026) (US $MN)
Table 44 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Internal Combustion (2016-2026) (US $MN)
Table 45 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Application (2016-2026) (US $MN)
Table 46 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Unmanned Aerial Vehicles (2016-2026) (US $MN)
Table 47 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Spacecraft (2016-2026) (US $MN)
Table 48 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Missiles (2016-2026) (US $MN)
Table 49 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Aircraft (2016-2026) (US $MN)
Table 50 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Railway (2016-2026) (US $MN)
Table 51 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Marine (2016-2026) (US $MN)
Table 52 North America Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric (2016-2026) (US $MN)
Table 53 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Country (2016-2026) (US $MN)
Table 54 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Type (2016-2026) (US $MN)
Table 55 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Transcatheter Heart Valves (2016-2026) (US $MN)
Table 56 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Tissue Heart Valves (2016-2026) (US $MN)
Table 57 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Tactical Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 58 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Mini and Micro Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 59 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Medium-Altitude Long-Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 60 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Mechanical Heart Valves (2016-2026) (US $MN)
Table 61 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By High-Altitude Long Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 62 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric Propulsion Engines (2016-2026) (US $MN)
Table 63 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Non-Air Breathing Engines (2016-2026) (US $MN)
Table 64 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Liquid Propulsion (2016-2026) (US $MN)
Table 65 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Solid Propulsion (2016-2026) (US $MN)
Table 66 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Hybrid (2016-2026) (US $MN)
Table 67 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Air-Breathing Engines (2016-2026) (US $MN)
Table 68 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Gas Turbine & Jet Engine (2016-2026) (US $MN)
Table 69 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Ramjet & Scramjet (2016-2026) (US $MN)
Table 70 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Internal Combustion (2016-2026) (US $MN)
Table 71 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Application (2016-2026) (US $MN)
Table 72 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Unmanned Aerial Vehicles (2016-2026) (US $MN)
Table 73 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Spacecraft (2016-2026) (US $MN)
Table 74 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Missiles (2016-2026) (US $MN)
Table 75 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Aircraft (2016-2026) (US $MN)
Table 76 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Railway (2016-2026) (US $MN)
Table 77 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Marine (2016-2026) (US $MN)
Table 78 Europe Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric (2016-2026) (US $MN)
Table 79 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Country (2016-2026) (US $MN)
Table 80 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Type (2016-2026) (US $MN)
Table 81 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Transcatheter Heart Valves (2016-2026) (US $MN)
Table 82 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Tissue Heart Valves (2016-2026) (US $MN)
Table 83 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Tactical Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 84 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Mini and Micro Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 85 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Medium-Altitude Long-Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 86 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Mechanical Heart Valves (2016-2026) (US $MN)
Table 87 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By High-Altitude Long Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 88 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric Propulsion Engines (2016-2026) (US $MN)
Table 89 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Non-Air Breathing Engines (2016-2026) (US $MN)
Table 90 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Liquid Propulsion (2016-2026) (US $MN)
Table 91 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Solid Propulsion (2016-2026) (US $MN)
Table 92 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Hybrid (2016-2026) (US $MN)
Table 93 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Air-Breathing Engines (2016-2026) (US $MN)
Table 94 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Gas Turbine & Jet Engine (2016-2026) (US $MN)
Table 95 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Ramjet & Scramjet (2016-2026) (US $MN)
Table 96 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Internal Combustion (2016-2026) (US $MN)
Table 97 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Application (2016-2026) (US $MN)
Table 98 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Unmanned Aerial Vehicles (2016-2026) (US $MN)
Table 99 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Spacecraft (2016-2026) (US $MN)
Table 100 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Missiles (2016-2026) (US $MN)
Table 101 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Aircraft (2016-2026) (US $MN)
Table 102 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Railway (2016-2026) (US $MN)
Table 103 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Marine (2016-2026) (US $MN)
Table 104 Asia Pacific Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric (2016-2026) (US $MN)
Table 105 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Country (2016-2026) (US $MN)
Table 106 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Type (2016-2026) (US $MN)
Table 107 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Transcatheter Heart Valves (2016-2026) (US $MN)
Table 108 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Tissue Heart Valves (2016-2026) (US $MN)
Table 109 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Tactical Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 110 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Mini and Micro Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 111 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Medium-Altitude Long-Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 112 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Mechanical Heart Valves (2016-2026) (US $MN)
Table 113 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By High-Altitude Long Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 114 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric Propulsion Engines (2016-2026) (US $MN)
Table 115 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Non-Air Breathing Engines (2016-2026) (US $MN)
Table 116 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Liquid Propulsion (2016-2026) (US $MN)
Table 117 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Solid Propulsion (2016-2026) (US $MN)
Table 118 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Hybrid (2016-2026) (US $MN)
Table 119 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Air-Breathing Engines (2016-2026) (US $MN)
Table 120 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Gas Turbine & Jet Engine (2016-2026) (US $MN)
Table 121 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Ramjet & Scramjet (2016-2026) (US $MN)
Table 122 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Internal Combustion (2016-2026) (US $MN)
Table 123 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Application (2016-2026) (US $MN)
Table 124 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Unmanned Aerial Vehicles (2016-2026) (US $MN)
Table 125 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Spacecraft (2016-2026) (US $MN)
Table 126 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Missiles (2016-2026) (US $MN)
Table 127 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Aircraft (2016-2026) (US $MN)
Table 128 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Railway (2016-2026) (US $MN)
Table 129 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Marine (2016-2026) (US $MN)
Table 130 South America Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric (2016-2026) (US $MN)
Table 131 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Country (2016-2026) (US $MN)
Table 132 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Type (2016-2026) (US $MN)
Table 133 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Transcatheter Heart Valves (2016-2026) (US $MN)
Table 134 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Tissue Heart Valves (2016-2026) (US $MN)
Table 135 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Tactical Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 136 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Mini and Micro Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 137 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Medium-Altitude Long-Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 138 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Mechanical Heart Valves (2016-2026) (US $MN)
Table 139 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By High-Altitude Long Endurance Unmanned Aerial Vehicle (2016-2026) (US $MN)
Table 140 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric Propulsion Engines (2016-2026) (US $MN)
Table 141 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Non-Air Breathing Engines (2016-2026) (US $MN)
Table 142 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Liquid Propulsion (2016-2026) (US $MN)
Table 143 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Solid Propulsion (2016-2026) (US $MN)
Table 144 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Hybrid (2016-2026) (US $MN)
Table 145 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Air-Breathing Engines (2016-2026) (US $MN)
Table 146 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Gas Turbine & Jet Engine (2016-2026) (US $MN)
Table 147 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Ramjet & Scramjet (2016-2026) (US $MN)
Table 148 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Internal Combustion (2016-2026) (US $MN)
Table 149 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Application (2016-2026) (US $MN)
Table 150 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Unmanned Aerial Vehicles (2016-2026) (US $MN)
Table 151 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Spacecraft (2016-2026) (US $MN)
Table 152 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Missiles (2016-2026) (US $MN)
Table 153 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Aircraft (2016-2026) (US $MN)
Table 154 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Railway (2016-2026) (US $MN)
Table 155 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Marine (2016-2026) (US $MN)
Table 156 Middle East & Africa Propulsion Systems Âé¶¹Ô´´ Outlook, By Electric (2016-2026) (US $MN)
3W International GmbH
Aerojet Rocketdyne Holdings, Inc.
Financial Highlights
General Electric Co.
GKN Aerospace
Honeywell International Inc.
Lockheed Martin Corporation
Northrop Grumman Corporation
Orbital ATK
Rolls-Royce Holdings PLC.
Safran S.A
The Raytheon Company
United Technologies Corporation
Ìý
Ìý
*If Applicable.