Jensprima online hardness and residual chlorine analyzers play a vital role in the service life of reverse osmosis membranes and the water recovery rate within pharmaceutical RO systems.
The InnoSens 710 electrode uses a double platinum constant voltage principle for high-precision water analysis. As leading China suppliers and a dedicated factory, we provide stable, low-drift sensors for residual chlorine monitoring in industrial environments.
The Potentiostatic Sensor InnoSens 710 is a high-precision electrochemical sensing solution engineered for the rigorous demands of online water quality analysis. By maintaining a constant potential between the working and reference electrodes, it ensures exceptional stability and selectivity in detecting target ions, minimizing interference from overlapping chemical species in complex industrial water matrices.
Designed for seamless integration into automated monitoring systems, the InnoSens 710 optimizes the detection of specific water quality parameters, providing real-time data for critical environmental compliance and process control. Its robust construction and advanced potentiostatic control make it an essential tool for operators seeking laboratory-grade accuracy within a durable, field-ready industrial sensor package.
| Sensor Type | Potentiostatic Electrochemical | Model Series | InnoSens 710 |
|---|---|---|---|
| Measurement Principle | Constant Potential Amperometry | Application | Online Water Quality Monitoring |
| Stability | High-Stability Potentiostat Control | Response Time | Rapid Real-time Detection |
| Compatibility | Industrial Water Analyzers | Housing Material | Chemical-Resistant Polymer |
| Calibration | Standard Solution Calibration | Maintenance | Low-frequency Maintenance Cycle |
Potentiostatic control effectively isolates target analytes, reducing cross-sensitivity and false readings in contaminated water.
Delivers near-instantaneous detection of ion concentration changes, allowing for immediate corrective actions in process control.
Utilizes advanced electrochemical circuitry to ensure measurements meet stringent environmental regulatory standards.
Minimizes signal drift over time, ensuring long-term reliability between calibration intervals.
Built to withstand harsh industrial environments, including fluctuations in temperature and pressure.
Standardized interfaces allow for quick installation into existing water quality analyzer controllers.
Continuous data streaming for instant visibility into water quality parameters.
Scheduled calibration cycles to maintain sensor accuracy without manual effort.
Instant notifications via SMS/Email when parameters exceed predefined thresholds.
Intelligent diagnostics that identify sensor degradation and prompt maintenance.
Comprehensive data logging for trend analysis and environmental reporting.
Adjust sensor thresholds and settings remotely via a centralized cloud platform.
| Performance Metric | Standard Sensors | InnoSens 710 |
|---|---|---|
| Calibration Interval | Weekly / Bi-weekly | Monthly / Quarterly |
| Detection Accuracy | Moderate Drift | Ultra-Low Drift |
| Operational Lifespan | Short-term Wear | Extended Durability |
| Interference Resistance | Low to Medium | High Potentiostatic Rejection |
| Maintenance Cost | High Labor Cost | Low Automated Cost |
Potentiostatic sensors maintain a constant electrical potential, which significantly increases selectivity and reduces the impact of interfering ions, leading to more accurate readings in complex water samples.
Depending on the water matrix and target ion concentration, the InnoSens 710 typically requires calibration far less frequently than conventional sensors due to its stable electrochemical control.
Yes, the InnoSens 710 is constructed with high-grade, chemical-resistant materials specifically designed for the industrial water analysis sector.
Absolutely. It is designed to integrate seamlessly with most professional-grade multi-parameter controllers and online monitoring systems.
Potentiostatic technology is commonly used for the precise detection of nitrates, ammonia nitrogen, dissolved oxygen, and various heavy metal ions.
The active potentiostatic circuit compensates for electrode polarization and surface changes, drastically reducing the drift compared to passive electrodes.