시장보고서
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항공기 탑재 레이더 시장 규모, 점유율, 성장률, 세계 시장 분석, 지역별 동향 및 예측(2026-2034년)

Airborne Radar Market Size, Share, Growth, Global Industry Analysis, Regional Insights and Forecast to 2026-2034

발행일: | 리서치사: 구분자 Fortune Business Insights Pvt. Ltd. | 페이지 정보: 영문 297 Pages | 배송안내 : 2-3일 (영업일 기준)

    
    
    



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항공기 탑재 레이더 시장의 성장 요인

전 세계 항공기 탑재 레이더 시장은 2025년에 141억 달러 규모에 달하며, 2026년 151억 4,000만 달러에서 2034년에는 303억 6,000만 달러로 성장하며, 예측 기간 중 연평균 성장률(CAGR) 9.10%를 기록할 것으로 전망됩니다. 북미는 견고한 국방 지출, 지속적인 군용기 현대화 프로그램, 첨단 모니터링 기술에 대한 투자에 힘입어 2025년 38.00%의 시장 점유율을 차지하며 세계 시장을 선도했습니다.

항공기 탑재 레이더 시스템은 현대 항공 및 방위 작전에서 필수적인 요소가 되었습니다. 이러한 시스템은 군용기, 무인항공기(UAV), 헬리콥터, 민간 항공기에서 모니터링, 표적 추적, 기상 관측, 항법 지원, 전자전 능력을 제공합니다. 능동형 전자 스캐닝 어레이(AESA) 레이더, 질화갈륨(GaN) 기반 반도체 기술, 인공지능(AI)을 활용한 레이더 처리에 대한 수요 증가가 산업에 지속적인 변화를 가져오고 있습니다. 지정학적 긴장 고조, 국방 예산 증가, 민간 항공 활동 확대에 힘입어 2034년까지 장기적인 시장 성장이 지속될 것으로 예상됩니다.

시장 촉진요인

항공기 탑재 레이더 시장을 촉진하는 주요 요인 중 하나는 전 세계 군용기의 현대화가 진행되고 있다는 점입니다. 각국은 감시, 표적 탐지, 전자전, 미사일 방어 능력을 향상시키기 위해 첨단 레이더 기술을 탑재한 5세대 및 차세대 전투기에 막대한 투자를 하고 있습니다.

군사 정찰, 국경 감시, 재난 관리, 상업적 용도에서의 무인 항공기(UAV)의 급속한 보급 또한 소형 경량 레이더 시스템에 대한 수요를 지원하고 있습니다. AI 및 기계학습의 통합을 통해 자율적인 표적 인식, 인지형 전자전, 상황 인식 능력의 향상이 가능해지면서 항공기 탑재 레이더의 성능이 크게 향상되고 있습니다.

또한 전 세계 민간 항공의 회복과 항공 교통 관제 인프라의 현대화에 따라 고도 기상 레이더, 지형 회피 시스템, 충돌 방지 기술의 도입이 진행되고 있습니다.

시장 제약 요인

견실한 성장 전망이 있음에도 불구하고 몇 가지 과제가 시장 확장을 계속해서 저해하고 있습니다. 고도 AESA 레이더 시스템은 막대한 전력과 고도 냉각 솔루션이 필요하므로 소형 무인항공기(UAV)나 구형 항공기에 탑재하기 어렵습니다. 또한 기존 항공기 군에 차세대 레이더 시스템을 사후 장착하는 경우에도 막대한 비용이 소요됩니다.

갈륨 나이트라이드(GaN) 반도체와 관련된 공급망 차질, 규제 준수 요건, 수출 규제, 장기화되는 인증 절차 등이 생산 비용을 더욱 끌어올리고 도입 일정을 지연시키고 있습니다.

시장 기회

양자 레이더 기술의 등장은 항공기 탑재 레이더 산업에 있으며, 가장 유망한 기회 중 하나입니다. 양자 레이더 연구는 스텔스기나 초음속 미사일의 탐지 능력을 향상시키는 동시에, 전자 방해에 대한 내성을 높이는 것을 목표로 하고 있습니다.

소프트웨어 정의 레이더 아키텍처, 소형화된 레이더 모듈, AI를 활용한 신호 처리, 다기능 레이더 및 전자전 시스템의 지속적인 발전은 군용 항공, 도시 항공 모빌리티, 민간 항공우주 각 부문에서 새로운 기회를 창출하고 있습니다.

시장 동향

시장에서는 뛰어난 표적 추적 능력, 동시 다중 임무 수행 능력, 전자전에 대한 내성 향상을 실현하는 디지털 제어 AESA 레이더 시스템의 급속한 보급이 진행되고 있습니다. 소프트웨어 정의 레이더 플랫폼을 통해 대규모 하드웨어 변경 없이 신속한 소프트웨어 업그레이드가 가능해져, 향후 현대화를 더욱 비용 효율적으로 수행할 수 있게 되었습니다.

또 다른 중요한 동향은 스웜 드론 및 무인 항공기용 레이더 시스템의 소형화입니다. 나노전자공학, MEMS 기술, GaN 기반 부품 덕분에 높은 운용 성능을 유지하면서 시스템의 크기, 무게, 전력 소비 및 비용을 절감하고 있습니다.

지역별 분석

북미는 2025년에도 여전히 최대 지역 시장으로, 시장 규모는 53억 6,000만 달러였으나 2026년에는 57억 1,000만 달러에 달할 것으로 예측됩니다. 이 지역은 미국 국방부의 지속적인 투자, 전투기 부대의 현대화, 공중 조기 경보 시스템, 차세대 모니터링 플랫폼 도입 등의 혜택을 받고 있습니다.

아시아태평양은 2025년에 세계 시장의 21.91%를 차지할 것으로 보이며, 중국, 인도, 일본, 호주의 국방비 증가에 힘입어 2026년에는 33억 5,000만 달러에 달할 것으로 예상됩니다.

유럽은 2025년에 세계 매출의 21.66%를 차지할 것으로 보이며, 공동 방위 프로그램, 6세대 전투기 개발, 첨단 레이더 통합 구상에 힘입어 2026년에는 33억 4,000만 달러에 달할 것으로 예측됩니다.

중동에서는 지역 안보 강화를 위해 항공기 탑재 레이더 현대화에 대한 투자가 계속되고 있는 반면, 라틴아메리카와 아프리카에서는 국경 감시, 재해 모니터링, 밀수 방지용 조달을 점차 늘리고 있습니다.

시장 세분화

플랫폼별로는 전투기의 지속적인 업그레이드와 국방 현대화 노력에 힘입어, 2026년에는 군용기 부문이 38.94%의 점유율을 차지하며 시장을 주도할 것으로 예상됩니다. UAV(무인 항공기)는 감시 및 정찰 임무에서의 채택 확대에 힘입어 예측 기간 중 가장 빠른 성장세를 기록할 것으로 전망됩니다.

용도별로는 항공 교통 관리의 현대화, 기상 모니터링, 항공 안전 향상에 힘입어 2026년에는 상업·민간 부문이 62.90%라는 최대 시장 점유율을 차지할 것으로 예측됩니다. 국방·국경 경비 용도는 가장 높은 성장률을 기록할 것으로 전망됩니다.

안테나 유형별로는 디지털 AESA 기술이 뛰어난 탐지 능력, 빔 스티어링, AI를 활용한 성능 향상으로 시장을 독점하고 있습니다.

목차

제1장 서론

제2장 개요

제3장 시장 역학

제4장 주요 시장 인사이트

제5장 세계의 항공기 탑재 레이더 시장 규모, 점유율, 성장률, 세계 시장 분석, 인사이트, 예측, 2021-2034년

제6장 북미의 항공기 탑재 레이더 시장 규모, 점유율, 성장률, 세계 시장 분석, 인사이트, 예측, 2021-2034년

제7장 유럽의 항공기 탑재 레이더 시장 규모, 점유율, 성장률, 세계 시장 분석, 인사이트, 예측, 2021-2034년

제8장 아시아태평양의 항공기 탑재 레이더 시장 규모, 점유율, 성장률, 세계 시장 분석, 인사이트, 예측, 2021-2034년

제9장 중동의 항공기 탑재 레이더 시장 규모, 점유율, 성장률, 세계 시장 분석, 인사이트, 예측, 2021-2034년

제10장 기타 항공기 탑재 레이더 시장 규모, 점유율, 성장률, 세계 시장 분석, 인사이트, 예측, 2021-2034년

제11장 경쟁 분석

제12장 기업 개요

KSA 26.09.15

Growth Factors of airborne radar Market

The global airborne radar market was valued at USD 14.1 billion in 2025 and is projected to grow from USD 15.14 billion in 2026 to USD 30.36 billion by 2034, exhibiting a CAGR of 9.10% during the forecast period. North America dominated the global market with a 38.00% market share in 2025, supported by strong defense spending, continuous military aircraft modernization programs, and investments in advanced surveillance technologies.

Airborne radar systems have become an indispensable part of modern aviation and defense operations. These systems provide surveillance, target tracking, weather monitoring, navigation assistance, and electronic warfare capabilities across military aircraft, unmanned aerial vehicles (UAVs), helicopters, and commercial aircraft. The increasing demand for Active Electronically Scanned Array (AESA) radars, Gallium Nitride (GaN)-based semiconductor technology, and Artificial Intelligence (AI)-enabled radar processing continues to transform the industry. Growing geopolitical tensions, rising defense budgets, and expanding commercial aviation activities are expected to sustain long-term market growth through 2034.

Market Drivers

One of the primary factors driving the airborne radar market is the increasing modernization of military aircraft worldwide. Countries are investing heavily in fifth-generation and next-generation combat aircraft equipped with advanced radar technologies to improve surveillance, target detection, electronic warfare, and missile defense capabilities.

The rapid adoption of UAVs for military reconnaissance, border surveillance, disaster management, and commercial applications is also fueling demand for compact and lightweight radar systems. AI and machine learning integration enables autonomous target recognition, cognitive electronic warfare, and improved situational awareness, significantly enhancing airborne radar performance.

Additionally, the recovery of global commercial aviation and modernization of air traffic control infrastructure are increasing the deployment of advanced weather radars, terrain avoidance systems, and collision prevention technologies.

Market Restraints

Despite strong growth prospects, several challenges continue to restrain market expansion. Advanced AESA radar systems require significant electrical power and sophisticated cooling solutions, making integration difficult for smaller UAVs and legacy aircraft. Retrofitting existing aircraft fleets with next-generation radar systems also involves substantial costs.

Supply chain disruptions involving Gallium Nitride (GaN) semiconductors, regulatory compliance requirements, export restrictions, and lengthy certification processes further increase production costs and delay deployment schedules.

Market Opportunities

The emergence of quantum radar technology represents one of the most promising opportunities for the airborne radar industry. Quantum radar research aims to improve detection of stealth aircraft and hypersonic missiles while enhancing resistance against electronic jamming.

Continuous advancements in software-defined radar architectures, miniaturized radar modules, AI-powered signal processing, and multifunction radar-electronic warfare systems are creating new opportunities across military aviation, urban air mobility, and commercial aerospace sectors.

Market Trends

The market is witnessing rapid adoption of digitally controlled AESA radar systems that offer superior target tracking, simultaneous multi-mission capabilities, and improved resistance to electronic warfare. Software-defined radar platforms allow rapid software upgrades without major hardware modifications, making future modernization more cost-effective.

Another important trend is the miniaturization of radar systems for swarm drones and unmanned aircraft. Nanoelectronics, MEMS technology, and GaN-based components are reducing system size, weight, power consumption, and cost while maintaining high operational performance.

Regional Analysis

North America remained the largest regional market in 2025 with a value of USD 5.36 billion and is projected to reach USD 5.71 billion in 2026. The region benefits from continuous investments by the U.S. Department of Defense, modernization of fighter aircraft fleets, airborne early warning systems, and next-generation surveillance platforms.

Asia Pacific accounted for 21.91% of the global market in 2025 and is expected to reach USD 3.35 billion in 2026, supported by growing defense spending across China, India, Japan, and Australia.

Europe captured 21.66% of global revenue in 2025 and is projected to reach USD 3.34 billion in 2026, driven by collaborative defense programs, sixth-generation fighter development, and advanced radar integration initiatives.

The Middle East continues to invest in airborne radar modernization to strengthen regional security, while Latin America and Africa are gradually increasing procurement for border surveillance, disaster monitoring, and anti-smuggling operations.

Market Segmentation

Based on platform, the military aircraft segment is expected to dominate the market in 2026 with a 38.94% share due to ongoing fighter aircraft upgrades and defense modernization initiatives. UAVs are projected to register the fastest growth during the forecast period owing to increasing adoption in surveillance and reconnaissance missions.

By application, the commercial and civil segment is projected to account for the largest 62.90% market share in 2026, supported by air traffic management modernization, weather monitoring, and aviation safety improvements. Defense and border security applications are anticipated to record the highest growth rate.

Among antenna types, Digital AESA technology dominates the market due to its superior detection capability, beam steering, and AI-enabled performance enhancement.

Competitive Landscape

The airborne radar market remains highly competitive, with leading manufacturers focusing on AI integration, GaN semiconductor technology, software-defined radar architectures, and quantum radar research to strengthen their market positions. Strategic partnerships, defense contracts, product innovations, and military modernization programs continue to shape competitive dynamics.

Major companies operating in the market include Lockheed Martin Corporation, Raytheon Technologies Corporation, Northrop Grumman Corporation, Thales Group, Saab AB, Leonardo S.p.A., Israel Aerospace Industries Ltd., Indra Sistemas S.A., Honeywell International Inc., Hensoldt AG, and BAE Systems plc.

Key Industry Developments

  • April 2025: Thales secured a USD 93 million contract to supply Ground Master 200 Multi-Mission Compact radar systems to Sweden, with deliveries beginning in 2026.
  • January 2025: Lockheed Martin received a USD 118.4 million U.S. Air Force contract for advanced air-defense radar frameworks.
  • November 2024: Northrop Grumman received an additional USD 30 million order for AESA radar systems for F-16 fighter aircraft, increasing the overall contract value to USD 1.7 billion.
  • October 2024: Raytheon successfully demonstrated its GhostEye MR advanced medium-range radar sensor during the Gray Flag 2024 testing event.
  • October 2024: The U.S. approved Romania's purchase of four AN/MPQ-64 F1 Sentinel radar systems under a USD 110 million Foreign Military Sale agreement.

Conclusion

The global airborne radar market is expected to witness substantial growth through 2034, supported by rising defense modernization programs, expanding UAV deployment, increasing commercial aviation activities, and continuous technological advancements in AESA, AI-enabled processing, software-defined radar, and quantum sensing technologies. Although challenges such as high integration costs, supply chain constraints, and regulatory compliance remain, ongoing investments in next-generation airborne surveillance systems are expected to drive sustained market expansion, making airborne radar one of the most strategically important segments within the global aerospace and defense industry.

Segmentation

By Platform

  • Military Aircraft
  • Helicopters
  • Unmanned Aerial Vehicles (UAVs)
  • Urban Air Mobility (UAM)
  • Aerostats
  • Others

By Application

  • Defense and Border Security
  • Commercial and Civil

By Range

  • Very Short Range (< 10 km)
  • Short Range (10 to 50 km)
  • Medium Range (50 to 200 km)
  • Long Range (200 to 500 km)
  • Very Long Range (Above 500 km)

By Frequency Band

  • HF/VHF/UHF
  • L/S/C/X Band
  • K/Ka/Ku Band

By Antenna Type

  • PESA (Passive Electronically Scanned Array)
  • Digital AESA (Active Electronically Scanned Array)
  • Hybrid AESA
  • AESA Tile
  • Mechanical

By Solution

  • Line Fit
  • Retro Fit

By Region

  • North America (By Platform, Application, Range, Frequency Band, Antenna Type, Solution, and Country)
    • U.S. (By Platform)
    • Canada (By Platform)
  • Europe (By Platform, Application, Range, Frequency Band, Antenna Type, Solution, and Country)
    • U.K. (By Platform)
    • Germany (By Platform)
    • France (By Platform)
    • Russia (By Platform)
    • Italy (By Platform)
    • Nordic Countries (By Platform)
    • Rest of Europe (By Platform)
  • Asia Pacific (By Platform, Application, Range, Frequency Band, Antenna Type, Solution, and Country)
    • China (By Platform)
    • India (By Platform)
    • Japan (By Platform)
    • South Korea (By Platform)
    • Rest of Asia Pacific (By Platform)
  • Middle East (By Platform, Application, Range, Frequency Band, Antenna Type, Solution, and Country)
    • Saudi Arabia (By Platform)
    • UAE (By Platform)
    • Qatar (By Platform)
    • Turkey (By Platform)
    • Israel (By Platform)
    • Rest of Middle East (By Platform)
  • Rest of the World (By Platform, Application, Range, Frequency Band, Antenna Type, Solution, and Country)
    • Africa (By Platform)
    • Latin America (By Platform)

Table of Content

1. Introduction

  • 1.1. Research Scope
  • 1.2. Market Segmentation
  • 1.3. Research Methodology
  • 1.4. Definitions and Assumptions

2. Executive Summary

3. Market Dynamics

  • 3.1. Market Drivers
  • 3.2. Market Restraints
  • 3.3. Market Opportunities
  • 3.4. Market Trends (Global and US Market Trends)
  • 3.5. Key Government Policy Outlook (US)

4. Key Market Insights

  • 4.1. Key Industry Developments - Key Contracts & Agreements, Mergers, Acquisitions, and Partnerships
  • 4.2. Latest Technological Advancements
  • 4.3. Porter's Five Forces Analysis
  • 4.4. Supply Chain Analysis
  • 4.5. Qualitative Insights - Impact of Russia-Ukraine War on Global Airborne Radar Market
  • 4.6. Qualitative Insights - Impact of Tariffs on Global Airborne Radar Market

5. Global Airborne Radar Market Analysis, Insights, and Forecast, 2021-2034

  • 5.1. Key Findings / Definitions
  • 5.2. Market Analysis, Insights, and Forecast - By Platform
    • 5.2.1. Military Aircraft
    • 5.2.2. Helicopters
    • 5.2.3. Unmanned Aerial Vehicles (UAVs)
    • 5.2.4. Urban Air Mobility (UAM)
    • 5.2.5. Aerostats
    • 5.2.6. Others
  • 5.3. Market Analysis, Insights, and Forecast, By Application
    • 5.3.1. Defense and Border Security
    • 5.3.2. Commercial and Civil
  • 5.4. Market Analysis, Insights, and Forecast, By Range
    • 5.4.1. Very Short-range (< 10 km)
    • 5.4.2. Short-range (10 km to 50 km)
    • 5.4.3. Medium-Range (50km to 200 km)
    • 5.4.4. Long-range (200 km to 500 km)
    • 5.4.5. Very Long-range (Above 500 km)
  • 5.5. Market Analysis, Insights, and Forecast, By Frequency Band
    • 5.5.1. HF/VHF/UHF
    • 5.5.2. L/S/C/X band
    • 5.5.3. K/Ka/Ku band
  • 5.6. Market Analysis, Insights, and Forecast, By Antenna Type
    • 5.6.1. PESA (Passive Electronically Scanned Array)
    • 5.6.2. Digital AESA (Active Electronically Scanned Array)
    • 5.6.3. Hybrid AESA
    • 5.6.4. ASEA Tile
    • 5.6.5. Mechanical
  • 5.7. Market Analysis, Insights, and Forecast, By Solution
    • 5.7.1. Line Fit
    • 5.7.2. Retro Fit
  • 5.8. Market Analysis, Insights, and Forecast, By Region
    • 5.8.1. North America
    • 5.8.2. Europe
    • 5.8.3. Asia Pacific
    • 5.8.4. Middle East
    • 5.8.5. Rest of the World

6. North America Airborne Radar Market Analysis, Insights, and Forecast, 2021-2034

  • 6.1. Market Analysis, Insights, and Forecast - By Platform
    • 6.1.1. Military Aircraft
    • 6.1.2. Helicopters
    • 6.1.3. Unmanned Aerial Vehicles (UAVs)
    • 6.1.4. Urban Air Mobility (UAM)
    • 6.1.5. Aerostats
    • 6.1.6. Others
  • 6.2. Market Analysis, Insights, and Forecast, By Application
    • 6.2.1. Defense and Border Security
    • 6.2.2. Commercial and Civil
  • 6.3. Market Analysis, Insights, and Forecast, By Range
    • 6.3.1. Very Short-range (< 10 km)
    • 6.3.2. Short-range (10 km to 50 km)
    • 6.3.3. Medium-Range (50km to 200 km)
    • 6.3.4. Long-range (200 km to 500 km)
    • 6.3.5. Very Long-range (Above 500 km)
  • 6.4. Market Analysis, Insights, and Forecast, By Frequency Band
    • 6.4.1. HF/VHF/UHF
    • 6.4.2. L/S/C/X band
    • 6.4.3. K/Ka/Ku band
  • 6.5. Market Analysis, Insights, and Forecast, By Antenna Type
    • 6.5.1. PESA (Passive Electronically Scanned Array)
    • 6.5.2. Digital AESA (Active Electronically Scanned Array)
    • 6.5.3. Hybrid AESA
    • 6.5.4. ASEA Tile
    • 6.5.5. Mechanical
  • 6.6. Market Analysis, Insights, and Forecast, By Solution
    • 6.6.1. Line Fit
    • 6.6.2. Retro Fit
  • 6.7. Market Analysis, Insights, and Forecast, By Country
    • 6.7.1. U.S.
      • 6.7.1.1. Market Analysis, Insights, and Forecast - By Platform
        • 6.7.1.1.1. Military Aircraft
        • 6.7.1.1.2. Helicopters
        • 6.7.1.1.3. Unmanned Aerial Vehicles (UAVs)
        • 6.7.1.1.4. Urban Air Mobility (UAM)
        • 6.7.1.1.5. Aerostats
        • 6.7.1.1.6. Others
    • 6.7.2. Canada
      • 6.7.2.1. Market Analysis, Insights, and Forecast - By Platform
        • 6.7.2.1.1. Military Aircraft
        • 6.7.2.1.2. Helicopters
        • 6.7.2.1.3. Unmanned Aerial Vehicles (UAVs)
        • 6.7.2.1.4. Urban Air Mobility (UAM)
        • 6.7.2.1.5. Aerostats
        • 6.7.2.1.6. Others

7. Europe Airborne Radar Market Analysis, Insights, and Forecast, 2021-2034

  • 7.1. Market Analysis, Insights, and Forecast - By Platform
    • 7.1.1. Military Aircraft
    • 7.1.2. Helicopters
    • 7.1.3. Unmanned Aerial Vehicles (UAVs)
    • 7.1.4. Urban Air Mobility (UAM)
    • 7.1.5. Aerostats
    • 7.1.6. Others
  • 7.2. Market Analysis, Insights, and Forecast, By Application
    • 7.2.1. Defense and Border Security
    • 7.2.2. Commercial and Civil
  • 7.3. Market Analysis, Insights, and Forecast, By Range
    • 7.3.1. Very Short-range (< 10 km)
    • 7.3.2. Short-range (10 km to 50 km)
    • 7.3.3. Medium-Range (50km to 200 km)
    • 7.3.4. Long-range (200 km to 500 km)
    • 7.3.5. Very Long-range (Above 500 km)
  • 7.4. Market Analysis, Insights, and Forecast, By Frequency Band
    • 7.4.1. HF/VHF/UHF
    • 7.4.2. L/S/C/X band
    • 7.4.3. K/Ka/Ku band
  • 7.5. Market Analysis, Insights, and Forecast, By Antenna Type
    • 7.5.1. PESA (Passive Electronically Scanned Array)
    • 7.5.2. Digital AESA (Active Electronically Scanned Array)
    • 7.5.3. Hybrid AESA
    • 7.5.4. ASEA Tile
    • 7.5.5. Mechanical
  • 7.6. Market Analysis, Insights, and Forecast, By Solution
    • 7.6.1. Line Fit
    • 7.6.2. Retro Fit
  • 7.7. Market Analysis, Insights, and Forecast, By Country
    • 7.7.1. U.K.
      • 7.7.1.1. Market Analysis, Insights, and Forecast - By Platform
        • 7.7.1.1.1. Military Aircraft
        • 7.7.1.1.2. Helicopters
        • 7.7.1.1.3. Unmanned Aerial Vehicles (UAVs)
        • 7.7.1.1.4. Urban Air Mobility (UAM)
        • 7.7.1.1.5. Aerostats
        • 7.7.1.1.6. Others
    • 7.7.2. Germany
      • 7.7.2.1. Market Analysis, Insights, and Forecast - By Platform
        • 7.7.2.1.1. Military Aircraft
        • 7.7.2.1.2. Helicopters
        • 7.7.2.1.3. Unmanned Aerial Vehicles (UAVs)
        • 7.7.2.1.4. Urban Air Mobility (UAM)
        • 7.7.2.1.5. Aerostats
        • 7.7.2.1.6. Others
    • 7.7.3. France
      • 7.7.3.1. Market Analysis, Insights, and Forecast - By Platform
        • 7.7.3.1.1. Military Aircraft
        • 7.7.3.1.2. Helicopters
        • 7.7.3.1.3. Unmanned Aerial Vehicles (UAVs)
        • 7.7.3.1.4. Urban Air Mobility (UAM)
        • 7.7.3.1.5. Aerostats
        • 7.7.3.1.6. Others
    • 7.7.4. Russia
      • 7.7.4.1. Market Analysis, Insights, and Forecast - By Platform
        • 7.7.4.1.1. Military Aircraft
        • 7.7.4.1.2. Helicopters
        • 7.7.4.1.3. Unmanned Aerial Vehicles (UAVs)
        • 7.7.4.1.4. Urban Air Mobility (UAM)
        • 7.7.4.1.5. Aerostats
        • 7.7.4.1.6. Others
    • 7.7.5. Italy
      • 7.7.5.1. Market Analysis, Insights, and Forecast - By Platform
        • 7.7.5.1.1. Military Aircraft
        • 7.7.5.1.2. Helicopters
        • 7.7.5.1.3. Unmanned Aerial Vehicles (UAVs)
        • 7.7.5.1.4. Urban Air Mobility (UAM)
        • 7.7.5.1.5. Aerostats
        • 7.7.5.1.6. Others
    • 7.7.6. Nordic Countries
      • 7.7.6.1. Market Analysis, Insights, and Forecast - By Platform
        • 7.7.6.1.1. Military Aircraft
        • 7.7.6.1.2. Helicopters
        • 7.7.6.1.3. Unmanned Aerial Vehicles (UAVs)
        • 7.7.6.1.4. Urban Air Mobility (UAM)
        • 7.7.6.1.5. Aerostats
        • 7.7.6.1.6. Others
    • 7.7.7. Rest of Europe
      • 7.7.7.1. Market Analysis, Insights, and Forecast - By Platform
        • 7.7.7.1.1. Military Aircraft
        • 7.7.7.1.2. Helicopters
        • 7.7.7.1.3. Unmanned Aerial Vehicles (UAVs)
        • 7.7.7.1.4. Urban Air Mobility (UAM)
        • 7.7.7.1.5. Aerostats
        • 7.7.7.1.6. Others

8. Asia Pacific Airborne Radar Market Analysis, Insights, and Forecast, 2021-2034

  • 8.1. Market Analysis, Insights, and Forecast - By Platform
    • 8.1.1. Military Aircraft
    • 8.1.2. Helicopters
    • 8.1.3. Unmanned Aerial Vehicles (UAVs)
    • 8.1.4. Urban Air Mobility (UAM)
    • 8.1.5. Aerostats
    • 8.1.6. Others
  • 8.2. Market Analysis, Insights, and Forecast, By Application
    • 8.2.1. Defense and Border Security
    • 8.2.2. Commercial and Civil
  • 8.3. Market Analysis, Insights, and Forecast, By Range
    • 8.3.1. Very Short-range (< 10 km)
    • 8.3.2. Short-range (10 km to 50 km)
    • 8.3.3. Medium-Range (50km to 200 km)
    • 8.3.4. Long-range (200 km to 500 km)
    • 8.3.5. Very Long-range (Above 500 km)
  • 8.4. Market Analysis, Insights, and Forecast, By Frequency Band
    • 8.4.1. HF/VHF/UHF
    • 8.4.2. L/S/C/X band
    • 8.4.3. K/Ka/Ku band
  • 8.5. Market Analysis, Insights, and Forecast, By Antenna Type
    • 8.5.1. PESA (Passive Electronically Scanned Array)
    • 8.5.2. Digital AESA (Active Electronically Scanned Array)
    • 8.5.3. Hybrid AESA
    • 8.5.4. ASEA Tile
    • 8.5.5. Mechanical
  • 8.6. Market Analysis, Insights, and Forecast, By Solution
    • 8.6.1. Line Fit
    • 8.6.2. Retro Fit
  • 8.7. Market Analysis, Insights, and Forecast, By Country
    • 8.7.1. Japan
      • 8.7.1.1. Market Analysis, Insights, and Forecast - By Platform
        • 8.7.1.1.1. Military Aircraft
        • 8.7.1.1.2. Helicopters
        • 8.7.1.1.3. Unmanned Aerial Vehicles (UAVs)
        • 8.7.1.1.4. Urban Air Mobility (UAM)
        • 8.7.1.1.5. Aerostats
        • 8.7.1.1.6. Others
    • 8.7.2. China
      • 8.7.2.1. Market Analysis, Insights, and Forecast - By Platform
        • 8.7.2.1.1. Military Aircraft
        • 8.7.2.1.2. Helicopters
        • 8.7.2.1.3. Unmanned Aerial Vehicles (UAVs)
        • 8.7.2.1.4. Urban Air Mobility (UAM)
        • 8.7.2.1.5. Aerostats
        • 8.7.2.1.6. Others
    • 8.7.3. India
      • 8.7.3.1. Market Analysis, Insights, and Forecast - By Platform
        • 8.7.3.1.1. Military Aircraft
        • 8.7.3.1.2. Helicopters
        • 8.7.3.1.3. Unmanned Aerial Vehicles (UAVs)
        • 8.7.3.1.4. Urban Air Mobility (UAM)
        • 8.7.3.1.5. Aerostats
        • 8.7.3.1.6. Others
    • 8.7.4. South Korea
      • 8.7.4.1. Market Analysis, Insights, and Forecast - By Platform
        • 8.7.4.1.1. Military Aircraft
        • 8.7.4.1.2. Helicopters
        • 8.7.4.1.3. Unmanned Aerial Vehicles (UAVs)
        • 8.7.4.1.4. Urban Air Mobility (UAM)
        • 8.7.4.1.5. Aerostats
        • 8.7.4.1.6. Others
    • 8.7.5. Rest of Asia Pacific
      • 8.7.5.1. Market Analysis, Insights, and Forecast - By Platform
        • 8.7.5.1.1. Military Aircraft
        • 8.7.5.1.2. Helicopters
        • 8.7.5.1.3. Unmanned Aerial Vehicles (UAVs)
        • 8.7.5.1.4. Urban Air Mobility (UAM)
        • 8.7.5.1.5. Aerostats
        • 8.7.5.1.6. Others

9. Middle East Airborne Radar Market Analysis, Insights, and Forecast, 2021-2034

  • 9.1. Market Analysis, Insights, and Forecast - By Platform
    • 9.1.1. Military Aircraft
    • 9.1.2. Helicopters
    • 9.1.3. Unmanned Aerial Vehicles (UAVs)
    • 9.1.4. Urban Air Mobility (UAM)
    • 9.1.5. Aerostats
    • 9.1.6. Others
  • 9.2. Market Analysis, Insights, and Forecast, By Application
    • 9.2.1. Defense and Border Security
    • 9.2.2. Commercial and Civil
  • 9.3. Market Analysis, Insights, and Forecast, By Range
    • 9.3.1. Very Short-range (< 10 km)
    • 9.3.2. Short-range (10 km to 50 km)
    • 9.3.3. Medium-Range (50km to 200 km)
    • 9.3.4. Long-range (200 km to 500 km)
    • 9.3.5. Very Long-range (Above 500 km)
  • 9.4. Market Analysis, Insights, and Forecast, By Frequency Band
    • 9.4.1. HF/VHF/UHF
    • 9.4.2. L/S/C/X band
    • 9.4.3. K/Ka/Ku band
  • 9.5. Market Analysis, Insights, and Forecast, By Antenna Type
    • 9.5.1. PESA (Passive Electronically Scanned Array)
    • 9.5.2. Digital AESA (Active Electronically Scanned Array)
    • 9.5.3. Hybrid AESA
    • 9.5.4. ASEA Tile
    • 9.5.5. Mechanical
  • 9.6. Market Analysis, Insights, and Forecast, By Solution
    • 9.6.1. Line Fit
    • 9.6.2. Retro Fit
  • 9.7. Market Analysis, Insights, and Forecast, By Country
    • 9.7.1. Saudi Arabia
      • 9.7.1.1. Market Analysis, Insights, and Forecast - By Platform
        • 9.7.1.1.1. Military Aircraft
        • 9.7.1.1.2. Helicopters
        • 9.7.1.1.3. Unmanned Aerial Vehicles (UAVs)
        • 9.7.1.1.4. Urban Air Mobility (UAM)
        • 9.7.1.1.5. Aerostats
        • 9.7.1.1.6. Others
    • 9.7.2. UAE
      • 9.7.2.1. Market Analysis, Insights, and Forecast - By Platform
        • 9.7.2.1.1. Military Aircraft
        • 9.7.2.1.2. Helicopters
        • 9.7.2.1.3. Unmanned Aerial Vehicles (UAVs)
        • 9.7.2.1.4. Urban Air Mobility (UAM)
        • 9.7.2.1.5. Aerostats
        • 9.7.2.1.6. Others
    • 9.7.3. Qatar
      • 9.7.3.1. Market Analysis, Insights, and Forecast - By Platform
        • 9.7.3.1.1. Military Aircraft
        • 9.7.3.1.2. Helicopters
        • 9.7.3.1.3. Unmanned Aerial Vehicles (UAVs)
        • 9.7.3.1.4. Urban Air Mobility (UAM)
        • 9.7.3.1.5. Aerostats
        • 9.7.3.1.6. Others
    • 9.7.4. Turkey
      • 9.7.4.1. Market Analysis, Insights, and Forecast - By Platform
        • 9.7.4.1.1. Military Aircraft
        • 9.7.4.1.2. Helicopters
        • 9.7.4.1.3. Unmanned Aerial Vehicles (UAVs)
        • 9.7.4.1.4. Urban Air Mobility (UAM)
        • 9.7.4.1.5. Aerostats
        • 9.7.4.1.6. Others
    • 9.7.5. Israel
      • 9.7.5.1. Market Analysis, Insights, and Forecast - By Platform
        • 9.7.5.1.1. Military Aircraft
        • 9.7.5.1.2. Helicopters
        • 9.7.5.1.3. Unmanned Aerial Vehicles (UAVs)
        • 9.7.5.1.4. Urban Air Mobility (UAM)
        • 9.7.5.1.5. Aerostats
        • 9.7.5.1.6. Others
    • 9.7.6. Rest of Middle East
      • 9.7.6.1. Market Analysis, Insights, and Forecast - By Platform
        • 9.7.6.1.1. Military Aircraft
        • 9.7.6.1.2. Helicopters
        • 9.7.6.1.3. Unmanned Aerial Vehicles (UAVs)
        • 9.7.6.1.4. Urban Air Mobility (UAM)
        • 9.7.6.1.5. Aerostats
        • 9.7.6.1.6. Others

10. Rest of the World Airborne Radar Market Analysis, Insights, and Forecast, 2021-2034

  • 10.1. Market Analysis, Insights, and Forecast - By Platform
    • 10.1.1. Military Aircraft
    • 10.1.2. Helicopters
    • 10.1.3. Unmanned Aerial Vehicles (UAVs)
    • 10.1.4. Urban Air Mobility (UAM)
    • 10.1.5. Aerostats
    • 10.1.6. Others
  • 10.2. Market Analysis, Insights, and Forecast, By Application
    • 10.2.1. Defense and Border Security
    • 10.2.2. Commercial and Civil
  • 10.3. Market Analysis, Insights, and Forecast, By Range
    • 10.3.1. Very Short-range (< 10 km)
    • 10.3.2. Short-range (10 km to 50 km)
    • 10.3.3. Medium-Range (50km to 200 km)
    • 10.3.4. Long-range (200 km to 500 km)
    • 10.3.5. Very Long-range (Above 500 km)
  • 10.4. Market Analysis, Insights, and Forecast, By Frequency Band
    • 10.4.1. HF/VHF/UHF
    • 10.4.2. L/S/C/X band
    • 10.4.3. K/Ka/Ku band
  • 10.5. Market Analysis, Insights, and Forecast, By Antenna Type
    • 10.5.1. PESA (Passive Electronically Scanned Array)
    • 10.5.2. Digital AESA (Active Electronically Scanned Array)
    • 10.5.3. Hybrid AESA
    • 10.5.4. ASEA Tile
    • 10.5.5. Mechanical
  • 10.6. Market Analysis, Insights, and Forecast, By Solution
    • 10.6.1. Line Fit
    • 10.6.2. Retro Fit
  • 10.7. Market Analysis, Insights, and Forecast, By Sub-region
    • 10.7.1. Africa
      • 10.7.1.1. Market Analysis, Insights, and Forecast - By Platform
        • 10.7.1.1.1. Military Aircraft
        • 10.7.1.1.2. Helicopters
        • 10.7.1.1.3. Unmanned Aerial Vehicles (UAVs)
        • 10.7.1.1.4. Urban Air Mobility (UAM)
        • 10.7.1.1.5. Aerostats
        • 10.7.1.1.6. Others
    • 10.7.2. Latin America
      • 10.7.2.1. Market Analysis, Insights, and Forecast - By Platform
        • 10.7.2.1.1. Military Aircraft
        • 10.7.2.1.2. Helicopters
        • 10.7.2.1.3. Unmanned Aerial Vehicles (UAVs)
        • 10.7.2.1.4. Urban Air Mobility (UAM)
        • 10.7.2.1.5. Aerostats
        • 10.7.2.1.6. Others

11. Competitive Analysis

  • 11.1. Global Airborne Radar Market Rank Analysis (2025)
  • 11.2. Competition Dashboard

12. Company Profiles

  • 12.1. Raytheon Technologies Corporation
    • 12.1.1. Overview
    • 12.1.2. Products & services
    • 12.1.3. SWOT Analysis
    • 12.1.4. Recent Developments
    • 12.1.5. Strategies
    • 12.1.6. Financials (Based on Availability)
  • 12.2. Lockheed Martin Corporation
    • 12.2.1. Overview
    • 12.2.2. Products & services
    • 12.2.3. SWOT Analysis
    • 12.2.4. Recent Developments
    • 12.2.5. Strategies
    • 12.2.6. Financials (Based on Availability)
  • 12.3. Thales Group
    • 12.3.1. Overview
    • 12.3.2. Products & services
    • 12.3.3. SWOT Analysis
    • 12.3.4. Recent Developments
    • 12.3.5. Strategies
    • 12.3.6. Financials (Based on Availability)
  • 12.4. Northrop Grumman Corporation
    • 12.4.1. Overview
    • 12.4.2. Products & services
    • 12.4.3. SWOT Analysis
    • 12.4.4. Recent Developments
    • 12.4.5. Strategies
    • 12.4.6. Financials (Based on Availability)
  • 12.5. Saab AB
    • 12.5.1. Overview
    • 12.5.2. Products & services
    • 12.5.3. SWOT Analysis
    • 12.5.4. Recent Developments
    • 12.5.5. Strategies
    • 12.5.6. Financials (Based on Availability)
  • 12.6. Leonardo S.p.A.
    • 12.6.1. Overview
    • 12.6.2. Products & services
    • 12.6.3. SWOT Analysis
    • 12.6.4. Recent Developments
    • 12.6.5. Strategies
    • 12.6.6. Financials (Based on Availability)
  • 12.7. Israel Aerospace Industries Ltd.
    • 12.7.1. Overview
    • 12.7.2. Products & services
    • 12.7.3. SWOT Analysis
    • 12.7.4. Recent Developments
    • 12.7.5. Strategies
    • 12.7.6. Financials (Based on Availability)
  • 12.8. Indra Sistemas S.A.
    • 12.8.1. Overview
    • 12.8.2. Products & services
    • 12.8.3. SWOT Analysis
    • 12.8.4. Recent Developments
    • 12.8.5. Strategies
    • 12.8.6. Financials (Based on Availability)
  • 12.9. Honeywell International Inc.
    • 12.9.1. Overview
    • 12.9.2. Products & services
    • 12.9.3. SWOT Analysis
    • 12.9.4. Recent Developments
    • 12.9.5. Strategies
    • 12.9.6. Financials (Based on Availability)
  • 12.10. Hensoldt AG
    • 12.10.1. Overview
    • 12.10.2. Products & services
    • 12.10.3. SWOT Analysis
    • 12.10.4. Recent Developments
    • 12.10.5. Strategies
    • 12.10.6. Financials (Based on Availability)
  • 12.11. BAE Systems plc
    • 12.11.1. Overview
    • 12.11.2. Products & services
    • 12.11.3. SWOT Analysis
    • 12.11.4. Recent Developments
    • 12.11.5. Strategies
    • 12.11.6. Financials (Based on Availability)
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