Press release
Global and U.S. Airborne Computers Market Report, Published by QY Research.
Airborne Computers are ruggedized computing systems specifically designed for use in aircraft, helicopters, unmanned aerial vehicles (UAVs), and aerospace systems. These computers handle mission-critical control, navigation, communication, and data processing under extreme environmental conditions such as vibration, temperature variation, and electromagnetic interference. Constructed with military-grade components and compliant with DO-160, MIL-STD-810, and ARINC 600 standards, airborne computers integrate high-performance CPUs, GPUs, solid-state drives (SSDs), and redundant power systems to ensure real-time reliability. They serve as the processing backbone for flight control systems, avionics, surveillance, radar, and autonomous operation modules, providing advanced functionality through AI acceleration, edge computing, and secure data encryption technologies.https://www.qyresearch.com/reports/5185445/airborne-computer
Core Market Data
Global market size: USD 2.8 billion
CAGR (2024-2030): 6.3%
Average price: USD 14900 per unit
Annual production: 185 kilounits
Gross margin: 37%
Production capacity: 240 kilounits
List of Main Players
Curtiss-Wright (U.S.)
Collins Aerospace (U.S.)
Thales Group (France)
Honeywell Aerospace (U.S.)
BAE Systems (U.K.)
Saab AB (Sweden)
Elbit Systems (Israel)
Kontron AG (Germany)
Abaco Systems (U.S.)
Advantech (Taiwan)
1. By Form Factor
3U VPX Systems
6U VPX Systems
ATR Chassis Systems
Compact Embedded Modules
Custom Integrated Racks
2. By Processor Type
x86 Architecture (Intel/AMD)
ARM-Based Processors
PowerPC-Based Systems
GPU-Accelerated Units
3. By Cooling Method
Conduction-Cooled
Air-Cooled
Liquid-Cooled
4. By Application
Flight Control and Avionics
Mission and Payload Management
Airborne Surveillance and Reconnaissance
Navigation and Communication Systems
UAV and Autonomous Flight Control
5. By End-Use Platform
Commercial Aircraft
Military Aircraft
Unmanned Aerial Vehicles (UAVs)
Spacecraft and Launch Vehicles
Case Study for Bidding
Time: April 2024
Supplier: Curtiss-Wright Corporation (U.S.)
Buyer: Lockheed Martin (U.S.)
Product: Rugged 3U VPX Airborne Mission Computer with AI Processing Unit
Quantity: 4,500 units
Contract Value: USD 99 million
Delivery Timeline: September 2025
Case Study for End Using
End User: Airbus Defence and Space (France)
Application: Integrated into tactical UAV platforms for real-time flight control and target data fusion.
Installation Location
Mounted within avionics bays in shock-absorbing enclosures.
Connected to onboard sensors, navigation, and communication subsystems.
Linked with mission control software for multi-sensor data synchronization.
Purpose
Provides high-speed data processing for flight autonomy and sensor fusion.
Supports secure communication between aircraft and ground control stations.
Enables adaptive mission response under varying environmental and tactical conditions.
Effect
Reduced system latency by 30% compared to legacy avionics units.
Increased mission endurance by 15% through optimized power management.
Enhanced situational awareness via AI-assisted real-time analysis.
Alternative Devices
Conventional industrial computers and single-board controllers lack aerospace-grade ruggedization and redundancy.
Therefore, Airborne Computers remain critical for reliable, high-performance mission control in aerospace and defense applications.
About QY Research
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