Space On-Board Computing Platform

Global Space On-Board Computing Platform Market to Reach ## by 2030

The global market for Space On-Board Computing Platform estimated at ## in the year 2024, is expected to reach ## by 2030, growing at a CAGR of 0.0% over the analysis period 2024-2030.

Global Space On-board Computing Platform Market – Key Trends & Drivers Summarized

Why Is On-board Computing Becoming a Strategic Enabler of Autonomous Space Missions?

As satellites, space probes, and deep-space missions grow more complex and autonomous, the importance of robust and intelligent space on-board computing platforms has become paramount. Unlike traditional ground-dependent systems, modern space missions demand high-performance on-board processing to support real-time decision-making, navigation, data compression, system health monitoring, and adaptive control. With increasing latency and data transmission limitations—particularly for deep-space operations—the ability to process and analyze data locally, on the spacecraft, is a critical requirement. Whether it’s an Earth observation satellite processing high-resolution imagery, a Mars rover navigating rugged terrain, or a lunar lander making autonomous descent decisions, on-board computing ensures mission reliability, efficiency, and operational independence. The rise of AI-powered payloads, software-defined satellites, and inter-satellite communication networks further amplifies the role of intelligent computing platforms in space. As satellites become more modular, reconfigurable, and AI-capable, computing platforms are transitioning from fixed-function control units to dynamic, multi-core architectures capable of supporting multiple mission profiles from a single hardware base.

How Are New Computing Architectures and Materials Reshaping On-board Capabilities?

The evolution of space computing architectures is being driven by innovations in processor design, thermal management, and radiation-hardened components. Legacy systems traditionally relied on low-performance but highly reliable processors due to harsh space conditions, where radiation and extreme temperatures can cause bit flips, latch-ups, or permanent damage. Today, however, wide-bandgap semiconductors, error-correcting memory systems, and FPGA-based designs are enabling more powerful, compact, and radiation-tolerant computing platforms. The use of ARM-based, RISC-V, and multi-core hybrid architectures is gaining traction, offering a balance between performance, energy efficiency, and fault resilience. Space-qualified versions of commercial processors (COTS) are also finding their way into LEO missions, CubeSats, and short-duration science probes, enabling edge AI, autonomous payload control, and real-time image processing. Meanwhile, developments in neuromorphic and quantum computing hold long-term potential for missions requiring machine learning and large-scale simulations. Enhanced software layers, including real-time operating systems (RTOS) and virtualized environments, are allowing spacecraft to run concurrent mission functions, manage payload operations, and support over-the-air updates—a key feature in the age of software-defined space assets.

What Market Segments and Missions Are Fueling Demand for On-board Computing?

The space on-board computing platform market is expanding rapidly across a range of mission types, driven by satellite miniaturization, commercial constellation deployment, deep-space exploration, and defense-oriented space operations. In low Earth orbit (LEO), the rise of satellite constellations for Earth observation, climate monitoring, and broadband connectivity is creating demand for lightweight yet capable computing units that support real-time image processing and edge analytics. Geostationary orbit (GEO) platforms, including telecom satellites, require high-reliability computing systems for long-term performance and autonomous fault handling. In deep-space missions—such as lunar exploration, asteroid mining, or interplanetary probes—computing platforms must enable real-time decision-making, system reconfiguration, and independent navigation due to communication delays. Additionally, military satellites and space situational awareness (SSA) systems demand robust cybersecurity, low-latency control, and AI-based threat detection—all of which depend on powerful and secure on-board computing. CubeSats and smallsats, which are now the fastest-growing satellite segment, require ultra-compact computing platforms that combine low power consumption with high performance. The growing trend toward on-orbit servicing, in-space manufacturing, and autonomous robotic operations is further expanding the scope and sophistication of on-board processing requirements.

What Factors Are Driving the Long-term Growth of the On-board Computing Platform Market?

The growth in the space on-board computing platform market is driven by several key factors rooted in technological advancement, mission autonomy, payload complexity, and space commercialization. One of the primary growth drivers is the need for real-time, low-latency data processing onboard spacecraft, especially in missions involving high-throughput sensors, remote sensing instruments, or autonomous robotics. The increasing use of AI and machine learning for in-orbit decision-making, terrain navigation, threat detection, and anomaly resolution necessitates more powerful, modular, and upgradable computing platforms. The proliferation of small satellites and CubeSats is also boosting demand for miniaturized computing solutions that are both cost-efficient and capable of supporting dynamic software-driven functions. Meanwhile, the rise of software-defined satellites and reprogrammable payloads is making computing platforms the digital heart of mission reconfigurability and lifecycle extension. Military and government missions that prioritize cybersecurity and secure communication are driving adoption of radiation-hardened and encryption-enabled computing modules. Furthermore, the broader commercialization of space—through companies like SpaceX, Blue Origin, Planet Labs, and others—is pushing demand for scalable, interoperable computing systems across LEO and beyond. As missions increase in number, complexity, and duration, the need for reliable, intelligent, and high-performance on-board computing will only intensify, making it a core enabler of the modern space economy.

SCOPE OF STUDY:

The report analyzes the Space On-Board Computing Platform market in terms of units by the following Segments, and Geographic Regions/Countries:

Segments:
Platform (Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite, Spacecraft); Communication Frequency (X-band, S-band, K-band, UHF / VHF band); Orbit (Low Earth Orbit, Medium Earth Orbit, Geostationary Earth Orbit); Application (Communication, Earth Observation, Navigation, Meteorology, Others)

Geographic Regions/Countries:
World; United States; Canada; Japan; China; Europe (France; Germany; Italy; United Kingdom; and Rest of Europe); Asia-Pacific; Rest of World.

Select Competitors (Total 43 Featured) -
  • AAC Clyde Space
  • Airbus
  • Aitech
  • Aphelion Orbitals
  • Argotec
  • BAE Systems
  • Berlin Space Technologies
  • Beyond Gravity
  • Blue Origin
  • Boeing
  • C3S Electronics Development
  • CesiumAstro
  • European Space Agency (ESA)
  • Honeywell International Inc.
  • ISISPACE
  • Kongsberg NanoAvionics
  • L3Harris Technologies
  • Lockheed Martin Corporation
  • Mitsubishi Electric Corporation
  • NASA
  • Northrop Grumman Corporation
  • Ramon.Space
  • RUAG Space
  • SatNow
  • Satsearch
  • Southwest Research Institute (SwRI)
  • SpaceX
  • Spire Global
  • Teledyne Technologies Incorporated
  • Thales Group

TARIFF IMPACT FACTOR

Our new release incorporates impact of tariffs on geographical markets as we predict a shift in competitiveness of companies based on HQ country, manufacturing base, exports and imports (finished goods and OEM). This intricate and multifaceted market reality will impact competitors by artificially increasing the COGS, reducing profitability, reconfiguring supply chains, amongst other micro and macro market dynamics.

We are diligently following expert opinions of leading Chief Economists (14,949), Think Tanks (62), Trade & Industry bodies (171) worldwide, as they assess impact and address new market realities for their ecosystems. Experts and economists from every major country are tracked for their opinions on tariffs and how they will impact their countries.

We expect this chaos to play out over the next 2-3 months and a new world order is established with more clarity. We are tracking these developments on a real time basis.

As we release this report, U.S. Trade Representatives are pushing their counterparts in 183 countries for an early closure to bilateral tariff negotiations. Most of the major trading partners also have initiated trade agreements with other key trading nations, outside of those in the works with the United States. We are tracking such secondary fallouts as supply chains shift.

To our valued clients, we say, we have your back. We will present a simplified market reassessment by incorporating these changes!

APRIL 2025: NEGOTIATION PHASE

Our April release addresses the impact of tariffs on the overall global market and presents market adjustments by geography. Our trajectories are based on historic data and evolving market impacting factors.

JULY 2025 FINAL TARIFF RESET

Complimentary Update: Our clients will also receive a complimentary update in July after a final reset is announced between nations. The final updated version incorporates clearly defined Tariff Impact Analyses.

Reciprocal and Bilateral Trade & Tariff Impact Analyses:

USA
CHINA
MEXICO
CANADA
EU
JAPAN
INDIA
176 OTHER COUNTRIES.

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I. METHODOLOGY
II. EXECUTIVE SUMMARY
1. MARKET OVERVIEW
Influencer Market Insights
Tariff Impact on Global Supply Chain Patterns
Space On-Board Computing Platform – Global Key Competitors Percentage Market Share in 2025 (E)
Competitive Market Presence - Strong/Active/Niche/Trivial for Players Worldwide in 2025 (E)
2. FOCUS ON SELECT PLAYERS
3. MARKET TRENDS & DRIVERS
Rising Satellite Autonomy Requirements Throw the Spotlight on Advanced On-board Computing Capabilities
Proliferation of AI-driven Space Missions Spurs Growth in Edge Computing-enabled On-board Processing Platforms
Here`s How Next-gen Earth Observation and Imaging Payloads Expand the Addressable Market for High-performance On-board Computers
Increased Data Generation from LEO and Deep Space Missions Strengthens the Business Case for In-situ Data Processing
Emergence of Software-defined Satellites Drives Demand for Reconfigurable, Upgradable On-board Computing Architectures
Here`s the Story: Miniaturization of Satellite Components Fuels Innovation in Compact, High-efficiency Computing Platforms
Cybersecurity Concerns in Space Infrastructure Accelerate Adoption of Secure and Encrypted On-board Computing Solutions
Radiation-hardened Processors and Fault-tolerant Architectures Sustain Growth in Long-duration, Harsh-environment Missions
Here`s How AI/ML Integration in Spacecraft Decision-making Systems Propels Demand for Real-time On-board Processing Power
Multi-satellite Constellations and Swarm Architectures Drive Need for Distributed and Networked On-board Intelligence
Expansion of Interplanetary and Lunar Missions Generates Opportunities for Ruggedized, Autonomous Computing Platforms
Public-private Space Exploration Partnerships Unlock Investment in Scalable On-board Data Handling and Control Systems
Thermal Management and Power Consumption Constraints Pose Design Challenges for Next-gen Space On-board Computers
4. GLOBAL MARKET PERSPECTIVE
TABLE 1: World Space On-Board Computing Platform Market Analysis of Annual Sales in US$ Thousand for Years 2015 through 2030
TABLE 2: World Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 3: World 6-Year Perspective for Space On-Board Computing Platform by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets for Years 2025 & 2030
TABLE 4: World Recent Past, Current & Future Analysis for Nano satellite by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 5: World 6-Year Perspective for Nano satellite by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 6: World Recent Past, Current & Future Analysis for Micro satellite by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 7: World 6-Year Perspective for Micro satellite by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 8: World Recent Past, Current & Future Analysis for Small satellite by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 9: World 6-Year Perspective for Small satellite by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 10: World Recent Past, Current & Future Analysis for Medium satellite by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 11: World 6-Year Perspective for Medium satellite by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 12: World Recent Past, Current & Future Analysis for Large satellite by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 13: World 6-Year Perspective for Large satellite by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 14: World Recent Past, Current & Future Analysis for Spacecraft by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 15: World 6-Year Perspective for Spacecraft by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 16: World Recent Past, Current & Future Analysis for UHF / VHF band by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 17: World 6-Year Perspective for UHF / VHF band by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 18: World Recent Past, Current & Future Analysis for X-band by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 19: World 6-Year Perspective for X-band by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 20: World Recent Past, Current & Future Analysis for S-band by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 21: World 6-Year Perspective for S-band by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 22: World Recent Past, Current & Future Analysis for K-band by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 23: World 6-Year Perspective for K-band by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 24: World Recent Past, Current & Future Analysis for Low Earth Orbit by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 25: World 6-Year Perspective for Low Earth Orbit by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 26: World Recent Past, Current & Future Analysis for Medium Earth Orbit by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 27: World 6-Year Perspective for Medium Earth Orbit by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 28: World Recent Past, Current & Future Analysis for Geostationary Earth Orbit by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 29: World 6-Year Perspective for Geostationary Earth Orbit by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 30: World Recent Past, Current & Future Analysis for Communication by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 31: World 6-Year Perspective for Communication by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 32: World Recent Past, Current & Future Analysis for Earth Observation by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 33: World 6-Year Perspective for Earth Observation by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 34: World Recent Past, Current & Future Analysis for Navigation by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 35: World 6-Year Perspective for Navigation by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 36: World Recent Past, Current & Future Analysis for Meteorology by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 37: World 6-Year Perspective for Meteorology by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
TABLE 38: World Recent Past, Current & Future Analysis for Others by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 39: World 6-Year Perspective for Others by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific and Rest of World for Years 2025 & 2030
III. MARKET ANALYSIS
UNITED STATES
Space On-Board Computing Platform Market Presence - Strong/Active/Niche/Trivial - Key Competitors in the United States for 2025 (E)
TABLE 40: USA Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 41: USA 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 42: USA Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 43: USA 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 44: USA Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 45: USA 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 46: USA Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 47: USA 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
CANADA
TABLE 48: Canada Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 49: Canada 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 50: Canada Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 51: Canada 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 52: Canada Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 53: Canada 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 54: Canada Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 55: Canada 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
JAPAN
Space On-Board Computing Platform Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Japan for 2025 (E)
TABLE 56: Japan Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 57: Japan 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 58: Japan Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 59: Japan 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 60: Japan Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 61: Japan 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 62: Japan Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 63: Japan 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
CHINA
Space On-Board Computing Platform Market Presence - Strong/Active/Niche/Trivial - Key Competitors in China for 2025 (E)
TABLE 64: China Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 65: China 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 66: China Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 67: China 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 68: China Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 69: China 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 70: China Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 71: China 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
EUROPE
Space On-Board Computing Platform Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Europe for 2025 (E)
TABLE 72: Europe Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Geographic Region - France, Germany, Italy, UK and Rest of Europe Markets - Independent Analysis of Annual Sales in US$ Thousand for Years 2024 through 2030 and % CAGR
TABLE 73: Europe 6-Year Perspective for Space On-Board Computing Platform by Geographic Region - Percentage Breakdown of Value Sales for France, Germany, Italy, UK and Rest of Europe Markets for Years 2025 & 2030
TABLE 74: Europe Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 75: Europe 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 76: Europe Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 77: Europe 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 78: Europe Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 79: Europe 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 80: Europe Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 81: Europe 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
FRANCE
Space On-Board Computing Platform Market Presence - Strong/Active/Niche/Trivial - Key Competitors in France for 2025 (E)
TABLE 82: France Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 83: France 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 84: France Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 85: France 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 86: France Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 87: France 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 88: France Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 89: France 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
GERMANY
Space On-Board Computing Platform Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Germany for 2025 (E)
TABLE 90: Germany Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 91: Germany 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 92: Germany Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 93: Germany 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 94: Germany Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 95: Germany 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 96: Germany Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 97: Germany 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
ITALY
TABLE 98: Italy Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 99: Italy 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 100: Italy Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 101: Italy 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 102: Italy Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 103: Italy 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 104: Italy Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 105: Italy 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
UNITED KINGDOM
Space On-Board Computing Platform Market Presence - Strong/Active/Niche/Trivial - Key Competitors in the United Kingdom for 2025 (E)
TABLE 106: UK Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 107: UK 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 108: UK Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 109: UK 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 110: UK Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 111: UK 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 112: UK Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 113: UK 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
REST OF EUROPE
TABLE 114: Rest of Europe Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 115: Rest of Europe 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 116: Rest of Europe Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 117: Rest of Europe 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 118: Rest of Europe Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 119: Rest of Europe 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 120: Rest of Europe Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 121: Rest of Europe 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
ASIA-PACIFIC
Space On-Board Computing Platform Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Asia-Pacific for 2025 (E)
TABLE 122: Asia-Pacific Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 123: Asia-Pacific 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 124: Asia-Pacific Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 125: Asia-Pacific 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 126: Asia-Pacific Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 127: Asia-Pacific 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 128: Asia-Pacific Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 129: Asia-Pacific 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
REST OF WORLD
TABLE 130: Rest of World Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Platform - Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 131: Rest of World 6-Year Perspective for Space On-Board Computing Platform by Platform - Percentage Breakdown of Value Sales for Nano satellite, Micro satellite, Small satellite, Medium satellite, Large satellite and Spacecraft for the Years 2025 & 2030
TABLE 132: Rest of World Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Communication Frequency - UHF / VHF band, X-band, S-band and K-band - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 133: Rest of World 6-Year Perspective for Space On-Board Computing Platform by Communication Frequency - Percentage Breakdown of Value Sales for UHF / VHF band, X-band, S-band and K-band for the Years 2025 & 2030
TABLE 134: Rest of World Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Orbit - Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 135: Rest of World 6-Year Perspective for Space On-Board Computing Platform by Orbit - Percentage Breakdown of Value Sales for Low Earth Orbit, Medium Earth Orbit and Geostationary Earth Orbit for the Years 2025 & 2030
TABLE 136: Rest of World Recent Past, Current & Future Analysis for Space On-Board Computing Platform by Application - Communication, Earth Observation, Navigation, Meteorology and Others - Independent Analysis of Annual Sales in US$ Thousand for the Years 2024 through 2030 and % CAGR
TABLE 137: Rest of World 6-Year Perspective for Space On-Board Computing Platform by Application - Percentage Breakdown of Value Sales for Communication, Earth Observation, Navigation, Meteorology and Others for the Years 2025 & 2030
IV. COMPETITION

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