Defense & Military Electronics Expertise

We are Sintecs – dedicated in developing tomorrows secure and reliable embedded systems today!

With 17 years of experience in government and defense electronics, Sintecs delivers cybersecure, and high-performance hardware solutions for aerospace and avionics, UAV, ground systems and secure communications.

Sintecs is a trusted supplier of engineering for multiple organizations from the defense sector.

Industry Applications

  • Cybersecure personal communication systems with various IP ratings
  • UAV flight control units with protected IP assets
  • High-performance embedded computing systems
  • Ground vehicle dashboard systems
  • Secure data transmission network nodes
  • Video capture and surveillance high-performance solutions

Expertise and Technologies

  • High-reliability PCB design compliant to IPC with minimized EMI
  • Thermal analysis for passive and active heat spreading
  • Power integrity and signal integrity simulation
  • Ruggedized enclosures and components
  • Anti-tamper technologies developed
  • SWaP-C optimization (Size, Weight, Power, and Cost)

Industry partners

Research and Development Capabilities

PCB design for defense and space electronics Sintecs specializes in PCB design for defense and space applications, where reliability under extreme conditions is a must. Our board development expertise ensures mission-critical electronics perform flawlessly in high-vibration, radiation-prone, and temperature-intensive environments.
Hardware design for secure solutions Sintecs delivers hardware designs tailored for secure military applications, with a strong focus on system architecture, schematic robustness, and carefully curated BOMs based on AVL. We ensure every design decision supports long-term availability, and compliance with EU defense and cybersecurity standards.
SI/PI, Thermal analysis for high reliability Sintecs provides Signal Integrity, Power Integrity, and thermal analysis to ensure maximum reliability in mission-critical electronic systems. By addressing high-speed signal behavior, stable power delivery, and efficient heat dissipation early in the design process, we help avoid failures in demanding environments.
Cyber secure software for military hardware Sintecs develops cyber-secure software for military systems, featuring secure boot, encrypted storage, and system hardening. We deliver PSA-ready solutions with measured boot, confidential computing, and virtualization for trusted, resilient execution. Our software ensures secure, mission-ready deployments.

Hardware Design Capabilities for Defense and Aerospace

Electronics boards for defence

VPX / OpenVPX Backplane Design for rugged backplanes for modular military systems

Rugged mission computing platforms, fanless, shock-resistant for harsh environments

FMC, XMC, and PMC Mezzanine Card Development as FPGA-compatible expansion modules for embedded systems

High-Speed Data Acquisition Boards (ADC/DAC) for precision analog and digital signal acquisition

Frame Grabbers for ISR and EO/IR Payloads meaning low-latency video capture hardware for on-board and ground platforms

Embedded SBCs with ARM, Intel, or RISC-V. Secure, compact single-board computers for tactical applications

FPGA-Based AI & Signal Processing Accelerators. Boards for edge AI, electronic warfare, UAV and radar systems

Secure Communication Interfaces (MIL-STD-1553, CAN, ARINC 429): Compliant I/O boards for avionics and military comms

Custom SOMs, carrier Boards for COM Express, SMARC, and Qseven. Industrial and defense-grade modular system integration

Secure Boot and Trusted Platform Hardware (TPM, HSM) – Hardware-based cybersecurity solutions for embedded systems

Custom Test and Validation Boards

Compliance to Certifications and Standards

STANAG

Standardization Agreements are defined by NATO standards that ensure interoperability of military systems, procedures, and technologies among allied forces.
Sintecs supports clients in aligning their hardware designs with according STANAG requirements, ensuring compatibility, compliance, and readiness for usage within NATO defense programs.

ESA Standards (ECSS)

European Cooperation for Space Standardization defines a set of technical and quality standards required by the European Space Agency (ESA).
Sintecs develops space-grade systems in line with ECSS standards, preparing complete documentation packages, quality plans, and traceability possibilities suitable for the projects related to ESA.

FIPS 140-3 / FIPS 201

FIPS 140-3 defines cryptographic module security requirements. FIPS 201 covers secure personal identification and access control.
Sintecs integrates cryptographic modules and secure ID systems that comply with FIPS standards, supporting secure boot, encrypted storage, and certified authentication mechanisms.

MIL-STD-810, MIL-STD-461, MIL-STD-1275

These are U.S. military standards for environmental testing (temperature, shock, vibration, humidity) and electromagnetic compatibility (EMC).
Sintecs designs and simulates hardware to meet MIL-STD-810 and MIL-STD-461 requirements, minimizing risks during formal testing and ensuring compliance with harsh environment and EMC standards.

ITAR / EAR Compliance

U.S. export control regulations for defense and dual-use technologies.
Sintecs supports export-friendly product development by avoiding ITAR-restricted components where necessary and ensuring full documentation for EAR classification and supply chain transparency.

REACH & RoHS

EU directives restricting hazardous substances (RoHS) and regulating chemicals in products (REACH).
Sintecs ensures that all selected components and materials are REACH and RoHS compliant, maintaining full supplier traceability and providing the required declarations.

ARM PSA Certified Platforms

Platform Security Architecture (PSA) by ARM defines best practices for embedded system security, including trusted execution and secure boot.
Sintecs designs PSA-compliant embedded systems with secure boot, trusted execution environments, and support for achieving PSA certification, enhancing cybersecurity at the hardware-software boundary.

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