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High Precision DAS Module from China Suppliers - Real-time Monitoring with Customizable Features and Strong Stability
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High Precision DAS Module from China Suppliers - Real-time Monitoring with Customizable Features and Strong Stability

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Product Overview
● Exceptional high integration for seamless operation
● Outstanding precision and sensitivity for accurate measurements
● Robust stability ensures reliable performance
● Real-time monitoring capabilities for instant data analysis
● Simple and efficient system setup for quick deployment
● Fully customizable to meet diverse needs

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As a leading China supplier and factory, we are committed to providing high-quality products that enhance operational efficiency and reliability. Our advanced technology ensures that you receive the best solution tailored to your specific requirements.

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    Product Overview

    The DAS integrated module is a product based on Distributed fiber Acoustic Sensing technology. Operating on the phase-sensitive OTDR principle, it uses a single standard fiber for transmission, detects Rayleigh backscattering light within the fiber, and acquires phase and frequency information to enable the detection of acoustic, vibration, and other signals.
    The Fiber Optic Sensing Distributed Acoustic Sensor (DAS) is a distributed acoustic sensing technology based on coherent Rayleigh scattering. By leveraging the optical fiber's acoustic and vibration sensitivity, it transforms standard communication cables into long-distance, continuously distributed "acoustic sensors" capable of high-precision monitoring of vibrations, sounds, and other signals with exceptional sensitivity.
    Working Principle: The transmitter emits high-frequency narrow-pulse lasers into the optical fiber. During transmission, Rayleigh scattering occurs, causing partial light reflection. When external vibrations act on the sensing fiber, the birefringence effect induces minute changes in both the fiber's refractive index and length. These alterations cause phase shifts in the transmitted signal, which in turn modulate the phase of scattered light. The system then performs interferometric analysis to identify disturbance locations and characteristics. Through high-speed ADC sampling, digital signal processing, and frequency domain analysis, these "interference" signals are ultimately converted into recognizable signal sources.

    Product Applications

    • Structural health monitoring - Bridges, DAMS, high-rise buildings, etc.
    • Geology and resource exploration - Petroleum exploration, seismic monitoring.
    • Environment and security monitoring - Forest fire prevention, border security.

    Product Parameters

    Description Min Typ Max Unit
    Sensor Distance 40 60 Km
    Preheating Time 1.5 3 Min
    UNL/EDFA
    Central Wavelength 1550.12 nm
    Intrinsic light 5%
    Line Width 1.7 3 3.5 KHz
    Pulse Length 60 100 200 ns
    Repeat Frequency Rate 1 2 KHz
    Pulse Peak Optical Power mw
    AOM
    Extinction Ratio 55 60 dB
    Up/down Time - - 30 ns
    Input Impedence 50 Ohm
    Frequency Shift 80 MHz
    Detection Approaches one way
    Modulation Mode external modulation
    Type of tail fin
    Type of Fiber SMF28e 900um-Pine Casing
    Tail Fiber Length (excluding head) 99 100 101 cm
    Connector Type FC/APC
    Work Environment
    Operating Temperature -15 25 55
    Working Humidity 10 - 95 %
    Storage Temperature -20 - 70
    Storage Humidity 5 - 95 %
    Voltage and Power Consumption
    Supply Voltage 11.7 12 12.5 V
    Maximum Power - - 30 W
    Working Current 1 A
    Sensor Distance 40 60 Km
    Preheating Time 1.5 3 Min

    Light Path Diagram

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    Product Size

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    Frequently Asked Questions (FAQ)

    Q1: What is the core technology behind the DAS integrated module?
    The DAS integrated module operates on the phase-sensitive Optical Time Domain Reflectometry (Φ-OTDR) principle. It detects Rayleigh backscattering light within a single standard fiber to acquire high-precision phase and frequency information.
    Q2: What is the maximum monitoring distance of this DAS module?
    The module supports a sensor distance ranging from 40 Km up to a maximum of 60 Km, making it ideal for long-distance distributed acoustic sensing.
    Q3: What type of optical fiber and connector does the system require?
    The system is designed for SMF28e 900um loose casing optical fiber and utilizes standard FC/APC connectors for low-loss transmission.
    Q4: What are the primary applications of this Distributed Acoustic Sensor?
    It is highly effective for structural health monitoring (bridges, dams, high-rise buildings), geological and petroleum exploration, and environment/security monitoring (such as forest fire prevention and border security).
    Q5: What is the operating temperature range and power consumption of the module?
    The module operates reliably within a temperature range of -15℃ to 55℃. It has a maximum power consumption of 30W with a supply voltage of 11.7V to 12.5V.
    Q6: How long does the DAS module need to preheat before operation?
    The typical preheating time for the module is 1.5 minutes, with a maximum preheating time of 3 minutes to reach stable performance.

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