
Interface Concept
Interface Concept develops single-board computers, Ethernet switching and routing cards, FPGA processing, and I/O solutions in 3U and 6U VPX, VME, and cPCI form factors for mission computers and data-network architectures. TARGET A.Ş. is the local point of contact in Türkiye for product and subsystem selection, technical assessment, and integration based on platform requirements.
Combines Intel- and Arm-based processing options with mission-computer form-factor and environmental-class requirements.
Provides VPX switching and routing building blocks for 1, 10, and 40 Gigabit Ethernet data paths.
Adds FPGA, XMC, and I/O options to the architecture for sensor data, network interfaces, and application-specific processing.
Three building blocks from compute to data fabric.
Card selection considers form factor, processing load, data plane, I/O demand, and operating environment as one system-level decision.
IC-INT-VPX3k
A mission-computer card that brings the Intel Xeon W processor family to the 3U VPX form factor.
- Intel Xeon W Tiger Lake-H processor
- Up to 64 GB DDR4 ECC memory
- PCIe data and expansion connectivity
ComEth4081e
A Layer 2+/3 Ethernet switch designed to manage dense data traffic across a VPX backplane.
- Connectivity for up to 22 ports
- 1, 10, and 40 Gigabit Ethernet
- VITA 65-compliant 3U VPX architecture
IC-XGE-XMCa
An XMC network adapter that adds high-speed Ethernet interfaces to the host processing card.
- Two 40GbE or four 10GbE links
- Dual QSFP+ optical interface
- PCIe Gen2 and Gen3 host connectivity

Solution architecture
Compute, network, and I/O layers on the VPX fabric.
A mission-computer architecture begins with platform form factor, data flow, and environmental constraints rather than the specification of a single card.
01 / DEFINE
Form factor and environmental class
The choice among 3U or 6U VPX, VME, and cPCI is made together with slot, power, cooling, and ruggedization requirements.
02 / COMPUTE
Processing and memory layer
CPU architecture, memory capacity, and board-level expansion are selected to match the application workload.
03 / TRANSPORT
Network and I/O data plane
Ethernet switching, FPGA processing, and XMC or application-specific I/O paths are matched to the system data flow.
04 / VALIDATE
Integration and lifecycle
The BSP, switch software, backplane compatibility, and environmental class are validated together on the target platform.
Why Interface Concept?
Product families that address compute, networking, and I/O within one architecture simplify interoperability and lifecycle planning across the card set.
Architecture based on open standards
VPX, VME, cPCI, and XMC options can be selected for both existing backplanes and next-generation mission-computer requirements.
Compute and data fabric together
SBC, Ethernet, and FPGA products support an integrated hardware architecture on the same system fabric.
Long-term programme perspective
Product class, software compatibility, and lifecycle requirements are considered together during selection.
VPX and VME mission-computer infrastructure
Interface Concept single-board computers, Ethernet switches, FPGA processing cards, and XMC I/O modules provide building blocks for high-bandwidth embedded systems such as radar, electronic warfare, image processing, data recording, and mission computers.
The appropriate solution is selected by considering backplane profile, data plane, power budget, cooling method, and software support—not processor performance alone.
Board selection and integration support in Türkiye
TARGET A.Ş. provides local engineering support for requirements analysis, product-family selection, technical-document review, and platform integration of Interface Concept products.
Sharing the form factor, target environmental class, data interfaces, and lifecycle expectations at the first assessment accelerates selection of the appropriate product family.