DAS-U250 极致版解调卡
DAS-U250 极致版解调卡
DAS-U250 极致版解调卡
DAS-U250 极致版解调卡
DAS-U250 极致版解调卡
DAS-U250 极致版解调卡
DAS-U250 极致版解调卡
DAS-U250 极致版解调卡

DAS-U250 Ultimate Edition Demodulation Card

DAS-U250 is a high-performance Distributed Acoustic Sensing (DAS) system launched by Shanghai Kunlian Technology, designed specifically for application scenarios demanding high precision and reliability in extreme environments. Compared to the standard version, the DAS Advanced Edition integrates coherent fading and polarization fading noise suppression technologies, significantly enhancing its anti-interference capability and ensuring stable and efficient high-precision data acquisition even in complex signal environments. With an exceptional spatial resolution better than 5 meters, the system supports long-range monitoring and high-precision positioning, making it widely applicable in fields such as oil exploration, deep-sea monitoring, high-precision seismic monitoring, military reconnaissance, and environmental surveillance.
Mgr. Wang:13761916126 (7*24h)


Product Details

Product Overview

The DAS-U250 Ultimate Edition Distributed Fiber Acoustic Sensing System (DAS) integrates years of independent R&D achievements, achieving comprehensive upgrades in system architecture, signal processing, algorithm optimization, and anti-interference capability. The system employs an ultra-coherent narrow-linewidth laser source paired with a high-speed, high-precision acquisition platform, alongside proprietary fiber demodulation algorithms and an FPGA hardware acceleration platform. It is specifically engineered to meet the most demanding requirements for spatial resolution, sensitivity, and stability in extreme environments.


One of its core highlights is the breakthrough technology for coherent fading and polarization fading noise suppression. Traditional DAS systems are susceptible to coherence fluctuations and polarization state disturbances in complex environments, leading to decreased signal-to-noise ratio and increased false detection rates. By utilizing multi-channel phase fusion, adaptive polarization control, and dynamic time-window filtering techniques, this system significantly reduces the impact of interference signals on the main channel. This enables truly stable, high-fidelity acoustic signal restoration, ensuring reliable operation in long-distance, high dynamic range monitoring scenarios.


In terms of spatial precision, the system achieves a spatial resolution better than 5 meters. It can perform high-density point monitoring along optical cable paths spanning tens of kilometers, accurately capturing even the slightest disturbance. The system features a 250 MSPS high sampling rate, 4-channel synchronous acquisition capability, and supports 2-channel 500 MSPS DAC feedback for real-time data generation and simulation response. It is suitable for various application scenarios such as oil and gas pipelines, border protection, high-speed rail tracks, and structural health monitoring.

Features:

Supports multiple user-defined expansion IO

FPGA-based open high-speed data acquisition card

FPGA supports user-defined logic development

PCIe x8 Gen3 data transfer interface with a continuous transfer rate of 8 GB/s

 

Customer Value:

250 MSPS high sampling rate

4-channel synchronous acquisition

2-channel synchronous output

High-speed 16-bit acquisition card with onboard FPGA for real-time signal processing

Supports DC bias control, improving acquisition accuracy for single and bipolar high-frequency pulse signals

Real-time data transfer via high-speed PCIe bus, with specially optimized DMA timed upload function for scanning systems

Flexible configuration options

Large-capacity onboard memory

Reduces development time and accelerates time-to-market

Customizable advanced trigger functions

Can integrate real-time signal processing modules for OEM applications: e.g., accumulation, peak detection, DDC, and FFT, etc.           

                 

Application Fields:

Radar acquisition systems; LiDAR systems; Optical fiber sensing systems; Photomultiplier tube acquisition systems; Scanning acquisition systems; Lightning detection and location systems; Other related fields...