About Us

About Us

End-to-end engineering for
mission-critical electronic systems

About Us
Bring your test and electronics projects to life with confidence through our expert engineering team.
10yr+ Average Experience
+
Years of <br>Corporate Legacy
+
Professional Workforce

openvpx.

fpga.

embedded software.

electronic design.

test systems.

advanced engineering.

Our Work Process

How We Work

We systematically execute all engineering activities from needs analysis to operational acceptance in accordance with customer requirements, technical standards, and verification/test criteria.
What We Do

From Concept to Field;
The Entire Process Under One Roof.

Engineering solutions for mission-critical applications.
By the Numbers

An experienced team, solid
infrastructure, a clear vision.

+
YEARS MINIMUM INDUSTRY EXPERIENCE
+
SENIOR ENGINEERS
INTEGRATED ENGINEERING DISCIPLINES
ACTIVE PROJECTS
+
YEARS OF IC HOLDING BACKING
Vita
Sosa
Tübitak
OpenVPX
Altium
Rohde
Ansys
Frequently Asked Questions

Frequently asked questions

  • What does your OpenVPX product portfolio cover?
    Our product portfolio covers a fully modular OpenVPX/SOSA infrastructure comprising an 8-slot VPX Backplane, Hybrid Switch, Clock/Synchronization, VITA 62-compliant Power Board, and Intel Xeon-D-based VPX SBC modules. The backplane provides PCIe Gen3 fabric, 10GbE control plane, IPMI management, and VITA 67 RF expansion support.
  • What applications are your FPGA-based signal processing products designed for?
    Our FPGA + SDR, FPGA Carrier Board, and FMC+ / AD9082 MxFE modules are designed for electronic warfare, radar, ESM, ELINT, COMINT, ECM, and DRFM applications. Zynq UltraScale+ platforms with JESD204B/C interface, low SWaP profile, and VPX-compatible modular architecture can also be used in UAV/UCAV payloads.
  • What stages do your hardware design services cover?
    Our hardware design solutions cover the end-to-end engineering process from schematic architecture to PCB layout, signal/power integrity simulation, and RF/microwave and EMI/EMC compliance design. 3U/6U VPX, rigid-flex PCB, and high-speed digital interface designs are executed in compliance with defense and aerospace standards.
  • How is inter-module communication provided within the VPX chassis?
    The Hybrid Switch Board combines the PCIe Gen3 data plane and 10GbE control plane in a single module. Fabric connectivity to all payload slots is provided through the backplane; the Clock board supports multi-channel synchronous operation with low-jitter reference and JESD SYSREF distribution. Remote monitoring is enabled through IPMC-based VITA 46.11 management.
  • Do you provide embedded software and BSP development support?
    Yes. We provide BSP, HAL, and driver development, RTOS (VxWorks, FreeRTOS, Zephyr), and Embedded Linux porting services for the hardware platforms we develop. We manage hardware-software co-verification processes including bootloaders, secure boot, JESD204B/C, and custom FPGA IP drivers.
  • What do your HIL and ATE test solutions offer?
    Our test integration solutions cover HIL test system design, automatic test equipment (ATE) development, and MIL-STD-810 environmental and MIL-STD-461 EMC qualification test coordination. Real-time platforms based on NI PXI, dSPACE, and OPAL-RT enable system verification before field testing; ATE architectures improve production line quality.
  • How is compliance with SOSA and VITA standards ensured?
    Our products and solutions are developed with a modular architecture based on OpenVPX, SOSA, and VITA 46/48/62/65/67 principles. Backplane slot structure, power rails, IPMI management, and RF expansion interfaces are designed for compliance with these standards; in our system engineering services, compliance is maintained throughout the project through ICD and requirements traceability.
+90 (507) 938 90 73
Mon – Sat: 08:30 – 18:00
info@intechron.com.tr
Mutlukent Mah. Çankaya / Ankara, Türkiye
Contact Us

Technical support and quotes