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Multiparameter Sondes
Specifications
Name: TracWater Multi-parameter Sonde for Deep Water
Model: TW-8217
IP Range: IP68
Size: Φ84mm*476mm
Main Body: Connect up to 6 probes (DO, TUR, EC,OIW,pH,ORP,CHL,BGA & depth)
Note: Please contact TracWater to get a copy of the full sensor specifications.
TracWater Multi-parameter Sonde for Deep Water
Overview
The TracWater TW-8217 deep-water multi-parameter sonde features a robust structural design, an in-house developed titanium (Ti) waterproof connector, and is specifically engineered for deep water/well, marine, and other demanding working conditions. The main unit can connect up to six probes, with options including DO, pH, ORP, conductivity (salinity), turbidity, chlorophyll, BGA, OIW, and depth sensors, which can be freely selected based on application requirements. All probes are constructed from titanium, ensuring excellent corrosion resistance.The TW-8217 is equipped with a self-cleaning brush that effectively cleans the measurement surface, removes bubbles, prevents microbial attachment, and ensures stable performance under underwater pressures of up to 200 meters. This makes it suitable for monitoring needs in deepwater lakes, oceanic environments, underground drilling, harsh wastewater treatment, and other mid-to-deep water scenarios.
Features
RS485 output with standard MODBUS protocol, facilitating seamless integration with data acquisition platforms and water quality automatic monitoring stations.
The main body includes six standardised probe interfaces and a central interface for the cleaning brush, enabling flexible plug-and-play functionality with TracWater probes and automatic identification.
All calibration parameters are stored within individual sensors, allowing for convenient on-site replacement, calibration, and maintenance.
The configured probes are all made of titanium, providing high-pressure resistance and reliable operation at depths of up to 200 metres underwater.
Applications
Oceanographic Research: Measure parameters such as temperature, salinity, dissolved oxygen, pH, turbidity, and chlorophyll to understand marine ecosystems' health and dynamics.
Climate Change Research: Track changes in oceanographic conditions over time to study the impacts of climate change on marine environments.
Deep-Sea Exploration: Collect data from deep-sea environments to discover new species and understand the geology and chemistry of the ocean floor.
Environmental Monitoring: Monitor for pollutants like oil, heavy metals, and chemicals in deep water to detect and address pollution sources.
Water Quality Assessment: Continuously monitor water quality parameters to ensure the health of aquatic ecosystems and compliance with environmental regulations.
Harmful Algal Bloom Monitoring: Detect and track harmful algal blooms that can affect marine life and human health.
Fisheries and Aquaculture: Habitat monitoring to ensure optimal conditions for fish health and growth by monitoring parameters such as dissolved oxygen, temperature, and turbidity.
Resource Management: Use data to manage fish stocks and aquaculture operations more effectively, ensuring sustainable practices.
Hydrographic Surveys: Collect data for accurate mapping and charting of underwater features and seabed topography.
Subsea Infrastructure: Monitor conditions around subsea pipelines, cables, and other infrastructure to ensure their integrity and safety.
Deep Lake and Reservoir Studies: Ecosystem Health: Study the health and dynamics of deep freshwater lakes and reservoirs by measuring key parameters.
Water Supply Management: Monitor water quality to manage and protect drinking water sources.

