AOPW Utility Tunnel Water Accumulation Monitoring System (Sensor)
AOPW Utility Tunnel Water Accumulation Monitoring System (Sensor)
AOPW Utility Tunnel Water Accumulation Monitoring System (Sensor)
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  • AOPW Utility Tunnel Water Accumulation Monitoring System (Sensor)
  • AOPW Utility Tunnel Water Accumulation Monitoring System (Sensor)
  • AOPW Utility Tunnel Water Accumulation Monitoring System (Sensor)

AOPW Utility Tunnel Water Accumulation Monitoring System (Sensor)

The product employs a combined sensing approach using a hydrostatic pressure sensor and a conductivity sensor to monitor water levels. The hydrostatic pressure sensor is primarily used to detect the height of standing water, while the conductivity sensor measures the electrical conductivity of the water and determines whether the area is “submerged,” thereby maintaining equilibrium with atmospheric pressure. This sensor is self-powered by a built-in battery, offering long-duration operation, and incorporates a wireless transmission module that enables real-time data upload, meeting the requirements for remote monitoring.
  • Product description
  • Technical specifications
  • Product portfolio
    • AOPW Utility Tunnel Water Accumulation Monitoring System (Sensor)

    Key Features 
    Measurement parameters: standing water height, standing water conductivity, standing water temperature, etc.; 
    Atmospheric Pressure Self-Balancing Device and Breathing Apparatus 
    The sensors are colored in eye-catching hues to facilitate identification by operations and maintenance personnel. 
    Fully potting, IP68; 
    Stainless steel backplate for robust construction and easy installation; ABS front cover; 
    Wireless transmission: 4G, NB-IoT, and wireless RF options available; 
    Hydrostatic level sensors and conductivity sensors; 
    Self-powered with a built-in high-capacity battery; 
    Integrated structure, compact size; 
    Received: multiple patents and software copyrights;

    Application Scenarios

    The product is suitable for water-accumulation detection in a wide range of scenarios: in underground spaces, it can be deployed in utility tunnels for power and telecommunications; in transportation infrastructure, it is ideal for monitoring water accumulation in subway stations and similar areas; in roadside infrastructure settings, it can detect water accumulation around electrical equipment such as switches, transformers, and control cabinets; additionally, it can also be used to monitor water-accumulation conditions near solar energy installations and wind turbines. 
    When this sensor is used in conjunction with a dedicated control host, it enables intelligent management of water-accumulation situations. The sensor employs wireless RF transmission to send water-accumulation monitoring data to the controller; upon receiving the RF signal, the controller executes pre-programmed control algorithms to automatically operate the relevant water-removal equipment. In addition, the controller supports real-time data upload—via wireless 4G or RS-485 communication—to a server, including water-accumulation monitoring and control status information, thereby facilitating remote centralized management and analysis. Detailed specifications of the controller will be provided separately.

     

  • Water level accuracy0.2%FS ± 0.002 m (resolution: 0.001 m)
    Measurement range1 meter (standard), 2 meters, custom-made
    SensorHydrostatic pressure + conductivity
    ConfigurationIntegrated wall-mounted
    Battery-powered modelBuilt-in lithium-thionyl chloride battery, non-rechargeable, 76 Ah/3.6 V DC, with a self-discharge rate of no more than 5% per year.
    Battery-powered model's battery life4G Cat 1: 5 years (recommended), NB-IoT: 5 years, LoRa: 5 years (measurement and transmission every 5 minutes)
    External Power Supply12 V DC, powered by solar energy or grid electricity with a 12 V DC output; no battery backup required; optional wired RS485 output.
    Wireless breakpoint resumeWhen the base station signal is interrupted, data is automatically saved and, once the wireless signal is restored, the timestamped data is resent.
    ConsultIE on PC, mobile app, and mini program

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Address:

No.36, Longhui Road, Wujin National Hi-Tech Industrial Development Zone, Jiangsu Province, China

Address:

Building 5 and 11, Fuzhou IoT Industrial Park, 

No. 12 Xingye West Road, Mawei District, Fuzhou City

Tel:

+86-13055728858

Email:

aotai03@fjautec.com      Mr. Zhou

aotai01@fjautec.com       Mr. Liao

aotai02@fjautec.com      Mr. Zhang

aotai04@fjautec.com      Mr. Chen

Email:

autec@163.com


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