Mission critical innovation for aerospace and defense systems
Ensure deterministic performance, safety, security, and scalability where precision and longevity are essential for next-generation aerospace, defense, and government microelectronics.
Overview
Silicon power for modern aerospace and defense missions
The aerospace and defense sectors are undergoing a generational transformation. Missions now rely on autonomy, sensor fusion, AI acceleration, and secure communications across air, space, land, and cyber domains. This convergence of intelligence and connectivity is reshaping system design from discrete modules and heterogeneous FPGA/ASIC architectures to highly integrated, software-defined SoCs.
Governments and defense agencies are also pushing for technological sovereignty, launching domestic semiconductor programs to secure long-term supply and control over critical IP. Meanwhile, space commercialization, advanced avionics, and next-generation radar and electronic warfare systems are driving design complexity to new heights. In this environment, reliability, determinism, resilience, and cybersecurity are existential requirements.
Arteris technologies help engineering teams meet these demands with scalable, deterministic interconnects, automation integration software, and semiconductor cybersecurity assurance.
Arteris technologies to help develop microelectronics for Aerospace and Defense include:
- Network-on-Chip IP that improves data movement, reduces latency, and delivers predictable real-time performance while minimizing power and silicon area to maintain mission-critical robustness.
- IP, sub-system, chiplet, SoC, and HW/SW integration automation based on a single source-of-truth to mitigate assembly risks and multi-domain team miscommunication issues.
- Cybersecurity assurance across the semiconductor IP, sub-systems, chiplets, SoC and firmware, to help mitigate potential hardware security weaknesses to prevent hardware vulnerabilities and make pre-silicon data-driven decisions.
Advantages
Solutions for the next generation of aerospace and defense systems
Hardware security assurance
Uncover semiconductor cybersecurity weaknesses and vulnerabilities throughout the design process, both to help reduce risk and ensure regulatory compliance.
Deterministic performance
Predictable latency and throughput for avionics, radar, and secure communications systems.
Safety and long-life
Redundancy, error detection, and certification readiness for decades-long programs.
Silicon proven
Deployed in billions of devices, including SoCs, ASICs, FPGAs, and MCUs in the automotive, industrial, consumer, and other mission-critical markets.
Automation integration
Comprehensive automation integration software portfolio delivers the scalability, traceability, and deterministic performance demanded by aerospace, defense, and government programs.
Technical Benefits
Built for resilience, longevity, and performance
Deterministic performance and real-time reliability
Quality of service (QoS), arbitration, and traffic-shaping for bounded latency and predictable throughput.
Safety compliance and security assurance
Regulations and standards supporting DO-254, DO-178 and MIL-STD-810 system-level compliance. Support for Chips and Sciences Act and Cyber Resilience Act (CRA).
Power efficiency and optimized power, performance, area (PPA)
Physically aware topology generation minimizes wiring congestion and switching.
Scalability and multidomain integration
Heterogeneous and multi-die integration with isolation and composable performance behavior.
Radiation-awareness
Single event upset (SEU) mitigation and long-term reliability for longevity in space and defense applications.
Integration automation
Connectivity generation and consistency checks that compress schedules and help reduce risk.
Products
Products for aerospace and defense
Use Cases
Future-Ready Compute for Emerging Aerospace and Defense Use Cases
Avionics Compute SoC
Satellite & Space Systems
Unmanned Systems / Autonomy
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