FPGA-Based Super-Fast Data Recording with muNVMe-IP and exFAT2-IP
FPGA-Based Super-Fast Data Recording with muNVMe-IP and exFAT2-IP

FPGA-Based Super-Fast Data Recording with muNVMe-IP and exFAT2-IP

In today’s data-driven world, industries such as aerospace, defense, medical imaging, and industrial automation demand ultra-fast data recording solutions. Capturing RF signals, high-resolution images, real-time video streams, and high-speed network traffic requires a reliable storage system that delivers 10GB/s+ recording speed while maintaining seamless host PC access.

At Design Gateway, we address these challenges with our powerful muNVMe-IP and exFAT2-IP solutions, designed to maximize FPGA storage performance and flexibility.

Why FPGA-Based High-Speed Data Recording?

Traditional CPU-based storage solutions introduce latency and complexity. Our FPGA-based approach eliminates these bottlenecks, ensuring real-time recording without interruptions. Whether for network traffic logging at speeds up to 100G Ethernet, or continuous RF data acquisition, our technology enables direct-to-SSD recording with ultra-low latency.

Network Traffic Data Logging
- Recording real-time traffic from high-speed Ethernet interfaces (25G/40G/100G/200G) for security analysis, monitoring, or diagnostics.
- Captured data needs to be stored efficiently and accessible for further evaluation.
Network Traffic Data Logging

How Does It Work?

1. muNVMe-IP – A high-speed, lightweight NVMe protocol IP core optimized for FPGA, allowing direct data transfer to NVMe SSDs without CPU intervention.

2. exFAT2-IP – A file system IP core enabling FPGA-based systems to store and retrieve data in exFAT format, making it instantly readable by any Host PC.

The combination of muNVMe-IP and exFAT2-IP offers plug-and-play access, ensuring that high-speed recorded data can be processed and analyzed immediately.

Key Benefits of Our FPGA-Based Solution

? Unprecedented Speed – Achieve 10GB/s+ sustained recording speed using PCIe Gen5 SSDs.

? Reduced Complexity – Direct SSD access removes software latency and complexity.

? Real-time Processing – Enables real-time data analysis while recording continues.

? Flexibility – Supports multi-user access and flexible storage configurations.

Key Benefits of Our FPGA-Based Solution

? Unprecedented Speed – Achieve 10GB/s+ sustained recording speed using PCIe Gen5 SSDs. 

? Reduced Complexity – Direct SSD access removes software latency and complexity. 

? Real-time Processing – Enables real-time data analysis while recording continues. 

? Flexibility – Supports multi-user access and flexible storage configurations.
Key Benefits of Our FPGA-Based Solution

Real-World Use Cases

?? Aerospace & Defense – High-speed signal capture from radar and RF sensors.

?? Telecommunications – Network packet capture for security analysis and troubleshooting.

?? Broadcast & Imaging – Ultra-fast video recording and instant playback.

?? Industrial & Automation – High-speed sensor data logging for AI/ML applications.

Multi-Channel RF Data Recording
- High-speed RF signal acquisition requires continuous data logging at a constant rate.
- The recorded data must be structured into a standard file format for efficient post-processing and analysis.
Multi-Channel RF Data Recording

Explore More & Get Started Today!

Are you ready to take your FPGA-based data recording to the next level? Learn more about muNVMe-IP and exFAT2-IP ??

?? Want to discuss your application? Contact us today! ?? Let’s innovate together! ??

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