
The MPS300 platform integrates up to 6 digital sensors to measure 7 parameters simultaneously, including Dissolved Oxygen, Chlorophyll, and BGA, through an RS485 Modbus interface.
Engineered for vertical profiling and deep-reservoir monitoring, the probe’s specialized housing maintains precision and structural integrity at a maximum depth of 40 meters.
The system combines a Ti alloy body with an anti-contamination copper sheet and an automatic cleaning brush to prevent microbial adhesion and ensure data stability in high-biofilm environments.
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Integrated Intelligent Alarms: The system features a built-in master controller that automatically triggers alerts for power anomalies, communication failures, or cleaning brush malfunctions to ensure continuous operation.
Titanium-Alloy Armor for Extreme Environments: The entire sensor is encased in high-grade titanium alloy, providing exceptional corrosion resistance and durability in harsh seawater or wastewater conditions compared to standard plastic alternatives.

Our all-in-one digital sensor integrates multiple critical parameters into a single, robust housing to eliminate the need for multiple complex installations. It utilizes a universal Modbus RS485 interface that allows you to connect directly to your existing PLC or SCADA system with zero configuration.
The pre-calibrated smart modules enable on-site replacement in seconds without requiring specialized technical tools or downtime. You can enjoy reliable, high-precision data with significantly reduced manual labor and lower long-term maintenance expenses.
The operational architecture of an integrated multiparameter water quality probe relies on an all-in-one submersible platform that simultaneously monitors up to seven critical variables through a single probe body. Featuring a modular multi-channel design, the universal digital housing allows diverse analytical electrodes—including optical dissolved oxygen, turbidity, conductivity, pH, ORP, chlorophyll, and blue-green algae (BGA) sensors—to be freely matched, plugged in, and interchanged via waterproof connectors. Each smart electrochemical or optical sensor module contains its own microchip to independently store individual calibration data, allowing the main assembly to continuously query raw signals through a centralized digital bus architecture.
To ensure uninterrupted continuous monitoring in severe biofouling environments like wastewater and surface water loops, the multi-sensor water quality sonde executes an automated mechanical self-cleaning mechanism at preprogrammed time intervals. Driven by a low-power internal motor, an integrated central cleaning brush sweeps across the localized measuring end faces of all matching sensors to actively scrape off air bubbles, biological slime, and suspended sediment. The consolidated multi-variable data stream is then mathematically corrected via built-in temperature compensation and transmitted outward as a stable, unified digital signal using standard RS485 Modbus digital protocols for seamless SCADA or data logger integration.
Advanced multiparameter sensors drive environmental sustainability by facilitating real-time ecological monitoring and high-precision groundwater protection through low-power, integrated digital technology. These systems minimize the carbon footprint of field operations by reducing onsite maintenance and chemical reagent use, aligning with ESG (Environmental, Social, and Governance) standards for green water management. By providing continuous, synchronized data on aquatic health, the technology supports biodiversity conservation and long-term resource circularity in sensitive ecosystems.
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