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DAS-UL10(10) / (20) · Integrated DAS interrogator

10/20 km integrated DAS combining acquisition and edge analysis.

4th-Generation Integrated DAS-UL10 Distributed Acoustic Sensing System

4th-Generation Integrated DAS-UL10 Distributed Acoustic Sensing System

DAS-UL10(10) / (20) · Integrated DAS interrogator

Integrates coherent phase sensing and an eight-core AI edge platform for parallel acquisition, waveform/audio reconstruction, event recognition and integration.

Equipment interfaces

DAS-UL10(10) / (20) · Integrated DAS interrogator

Interface layout, power and channel count depend on model and supplied configuration. Fiber sample spacing, gauge length and event-location error are distinct specifications.

Technical specifications

Host Device SpecificationDAS-UL10(10)DAS-UL10(20)
Maximum Sensing Distance10 km20 km
AI Computing ModelStandardEnhanced
Scan FrequencyAdjustable according to fiber length (10 km @ 10 kHz)Adjustable according to fiber length (20 km @ 5 kHz)
ItemSpecification
Device TypeCoherent phase-detection type
Fiber TypeFiber core type: single-mode fiber, 9 um/125 um
Core count, outer jacket dimensions, and material properties are configured according to the engineering application.
Number of Sensing ChannelsOptional 1/2/4 channels; native multi-channel physical optical hardware channels with parallel real-time synchronous acquisition and no time blind zone (not based on optical-switch polling).
Sampling IntervalAdjustable: 0.4 m / 1 m / 2 m / 5 m
Spatial measurement setting0.4–25 m (project setting; gauge length and location error require separate confirmation)
Alarm Response Time≤ 3 s (minimum 1 s)
Phase Demodulation Accuracy0.1 rad (typical)
Audio ReconstructionYes
Vibration Demodulation Frequency AccuracyFrequency accuracy: ±1 Hz
Vibration Demodulation Frequency Range0.1 Hz - 100 kHz (depending on fiber length)
Built-in PlatformBuilt-in 8-core AI edge computing platform with self-learning capability and AI model training functions, including a web server, FFT data processing, separation and phase unwrapping, GIS mapping, AI-based scenario training/classification, and early warning functions.
Operating VoltageDC 24 V, average power consumption approx. 25 W
Communication Interfaces2 x RJ45 (Gigabit Ethernet) / 1 x RS485 / 2 x USB / standard 8 x relays / 3 x HDMI
Supported ProtocolsModbus RTU / Modbus TCP / custom phase transmission protocols, etc.
Optical ConnectorE2000 dustproof self-locking connector; FC/APC customizable
Laser Safety ClassClass 1
Operating Temperature-10 °C to 50 °C
Storage Temperature-20 °C to 70 °C
Dimensions (W x D x H)482.6 mm x 326 mm x 132.8 mm
Weight13 kg

Frequency range depends on fiber length, scan rate, gauge length and SNR. The 100 kHz upper limit applies only to short-range configurations with adequate high-speed sampling, not simultaneously across a 30–100 km fiber. Conventional per-point temporal sampling must satisfy the Nyquist criterion with anti-aliasing margin.

An alarm response ≤3 s requires compatible acquisition and trigger settings. Low-frequency validation needs a sufficiently long observation window; 0.01 Hz analysis does not imply complete event classification within 1–3 s.

Applications and further reading

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