V1163 - 12*25 G interfaces FPG XMC Card
The V1163 is a powerful heterogeneous computing XMC with high bandwidth 25Gbs interfaces
V6065 -3U VPX Versal® Premium ASoC FPGA Optical I/O Module
Heterogeneous computing card based on AMD/Xilinx® Versal® ASoC (FPGA) and combining hard ARM processor cores, large FPGA fabric, and high-bandwidth interfaces.
HPEC focus, 3U VPX, VITA 42 XMC compliance, VITA 47 compliance and SOSA® aligned options.
HPEC focus, 3U VPX, VITA 42 XMC compliance, VITA 47 compliance and SOSA® aligned options.
V6068 - 3U VPX Versal® Premium ASoC FPGA Optical I/O Module
The V6068 is a next generation heterogeneous embedded computing 3U VPX module featuring the ARM Versal® Premium Adaptive System-on-Chip (ASoC), rugged optical and electrical high-speed I/O, FMC+ site, and SOSA® aligned profile options.
Applications: real-time processing, communications and mission-critical systems
NEW WAVE DESIGN solutions are designed for environments where throughput, latency and synchronisation requirements are critical. They are used in complex embedded architectures requiring advanced FPGA processing capabilities and high-speed interfacing.
Main applications:
- Radar processing and real-time management of massive data flows
- High-speed communications systems and fast serial interconnects
- SIGINT / ISR applications (data collection and analysis)
- Integration into open avionics architectures (FACE)
- Defence embedded systems compliant with SOSA / CMOSS / MOSA standards
- Land vehicle architectures (VICTORY approach)
- Real-time data acquisition and processing via PCIe FPGA cards
- PXIe test & measurement platforms with precise synchronisation
- Simulation and validation in critical environments (e.g. aerospace)
In addition, NEW WAVE DESIGN develops IP cores dedicated to:
- Low-latency deterministic communications
- Radar and sensor applications
- Satellite and avionics systems
- High-speed interconnects requiring guaranteed real-time performance
This modular approach, combining boards, modules and IP, enables the construction of scalable architectures tailored to the constraints of critical systems.