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Prefer to call?
Customer Care representatives are available by phone Monday–Friday, from 9am–5pm CST.
The MetriNet Multiparameter Water Quality Monitor is a low-power, modular system for monitoring water quality and collecting data at remote locations. At the heart of the MetriNet system are M-Node smart sensors.
Chlorine Dioxide, Combined Chlorine, Conductivity (2E/4E), Dissolved Oxygen (DO), Dissolved Ozone, Fluoride, Free Chlorine (FCI), Hydrogen Peroxide, Nitrite, Oxygen Reduction Potential (ORP), Peracetic Acid (PAA), pH, Pressure, Total Chlorine (TCI), Turbidity
Configurable for any 8 parameters
Chlorine Dioxide, Combined Chlorine, Conductivity (2E/4E), Dissolved Oxygen (DO), Dissolved Ozone, Fluoride, Free Chlorine (FCI), Hydrogen Peroxide, Nitrite, Oxygen Reduction Potential (ORP), Peracetic Acid (PAA), pH, Pressure, Total Chlorine (TCI), Turbidity
Configurable for any 8 parameters
MetriNet offers a modular, flexible platform with 16 water quality parameters to choose from and the ability to measure up to 8 parameters simultaneously, allowing tailored monitoring solutions for specific site needs across utilities, HVAC systems, food and drink, industrial, healthcare, leisure and events.
Available as both street-level and below ground installations, MetriNet smart sensor technology offers sustainable solutions, helping to meet environmental targets, drive down complaints and create near real-time awareness of water quality throughout the network. By using actionable insights, MetriNet enables the efficient delivery of high-quality water in an environmentally friendly way.
Deploying a neural network of MetriNet monitors at critical locations throughout the water distribution system offers customers continuous, near real-time assurances and evidence-based proof that the water is safe.
MetriNet will predict events, loss of disinfection, taste, odor, discoloration, bursts or leaks, providing a network that measures, thinks, predicts and takes actions. Timely warnings and network anomaly analysis allow operational staff to react before costly failures develop.
The transmission schedule for the MetriNet is fully configurable, with two settings that can be adjusted independently: how often the system logs data internally, and how often it uploads that data externally (via cellular, Modbus, Ethernet/IP, or cloud storage).
Typical setups log data every 5–15 minutes and upload every 4–12 hours (2–6 uploads per day). At the high end, MetriNet can log all 8 sensors every minute and upload hourly — using roughly 3–4 MB of cellular data per month.
Most installations do not use the fastest possible schedule, since more frequent uploads mean more connection overhead and higher data costs. The right balance depends on how current the data needs to be versus the data budget.
MetriNet supports up to 16 water quality parameters in total, with the flexibility to measure up to 8 simultaneously in a single tailored setup. Each parameter is monitored through a modular M-Node, so a system can be assembled with any combination of up to eight nodes to match site-specific needs.
Yes. MetriNet is a modular platform that can monitor up to 8 water quality parameters simultaneously, selected from a library of 16, so a system can be built around whatever matters most at a given site.
For example, an HVAC application might start with pH, conductivity, pressure, and dissolved oxygen, then add chlorine or turbidity sensors later without disrupting the existing setup. MetriNet can also be retrofitted onto existing infrastructure, making it a practical way to add real-time monitoring to legacy systems.
Sensors should be calibrated through the MetriNet transmitter's user interface rather than over Modbus-TCP. Before calibrating, remove, clean, and inspect the sensor — residual foulant or sensor damage can throw off the results.
Calibration works by writing updated values to specific calibration registers. There are five possible registers, though not every sensor uses all five: temperature element, span, zero, offset, and reset-to-defaults. Which registers apply depends on the sensor type.
Calibrating directly over Modbus-TCP is possible, using a 4-register "window" structure for each calibration call, but it is only recommended for users who fully understand the risks — the transmitter's user interface is the safer path for most cases.
For full calibration steps and register details by sensor type, refer to the M-Node sensor manual.
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Prefer to call?
Customer Care representatives are available by phone Monday–Friday, from 9am–5pm CST.