Backplanes
Backplanes
VPX Ecosystem
Novo Space offers custom and off-the-shelf backplanes in single-string and dual-string topologies.
Novo's cross-strapped high-throughput backplanes are optimized for bandwidth and reliability.
Main features
- Tens of Gbps interfaces
- Off-the-shelf and custom designs
- ITAR free
- Single and dual string
- Cross-strapping between SpaceVPX modules
- No single points of failure in dual string systems
Related products
SBC003SV
SBC
and 2 more tags
This single board computer is ideal for low power applications. Its main device is a Smartfusion2 from Microsemi, a System on Chip (SOC) that supports a Microcontroller subsystem (including an M3 microcontroller, DDR controller and other peripherals) as well as FPGA fabric in the same device. The inclusion of both a hard microcontroller subsystem as well as a soft FPGA fabric enables great flexibility an essential part of Novo Space's DNA. These FPGA fabric allows software defined architectures and IOs, allowing the support of multiple options for FPGA Mezzanine Cards (FMCs) as well as IO to the backplane.
This is the ideal platform for implementing machine learning using TensorFlow and PyTorch directly on FPGA fabric without modification while keeping a low power consumption.](/content/products/sbc003sv/index.html)
SBC002SV
SBC
and 3 more tags
The SBC002SV is a high performance single board computer compatible with the Vita 78 SpaceVPX standard.
The main device is a Zynq Ultrascale+ with a 4 GBytes ECC protected DDR3 SDRAM.
A VITA 57.1 FMC connector allows to extend its capabilities with any compatible FMC board.
This is our ideal platform for implementing machine learning using TensorFlow and PyTorch directly on FPGA fabric without modification while keeping a low power consumption.](/content/products/sbc002sv/index.html)
VPX / FMC Shielding
VPX Ecosystem
Novo's components are ruggedized. The mechanical design (optional) is aimed at transferring heat away from the most dissipative electronic components via direct conduction.
The shielding is design to stand the mechanical stress in the launch vehicle, and reduce the radiation exposure in space to sustain the TID required for long missions.](/content/products/heatsinks-and-bezels/index.html)
The content may be subject to change.