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High-Accuracy RS485 Ion Selective Sensor for Water Quality Analysis - China Suppliers & Factory Solutions

Introducing our Ion Selective Sensor, a top-tier solution for water quality monitoring, designed with eco-friendliness and advanced measurement capabilities in mind. Manufactured in China, this sensor stands out among suppliers for its isolated power supply, ensuring stable performance with an accuracy of ±5% and exceptional anti-interference features. It supports custom calibration for various ion types, including NH4+, NO3-, K+, and Ca²+, making it versatile for diverse applications

    Product Parameters
    Product Name Ion Selective Sensor
    Measurement Method Ionic Electrode
    Range 0 ~ 1000 mg/L
    Accuracy ±5% F.S.
    Power 9–24 VDC (Recommend 12 VDC)
    Material Polymer Plastic
    Size 31mm × 200mm
    Working Temperature 0 – 50℃
    Cable Length 5m, can be extended according to user need
    Sensor Interface Supports RS-485, MODBUS Protocol
    Product Features
    ♻️ ① Eco-Friendly & Pollution-Resistant Design
    Constructed from robust polymer plastic, the sensor resists chemical corrosion and physical wear, making it ideal for harsh industrial or outdoor environments.
    ⚙️ ② Flexible Calibration Solutions
    Supports custom standard liquid calibration with forward and reverse curve adjustments to meet diverse measurement scenarios.
    🔬 ③ Multi-Ion Detection Capability
    Compatible with critical ions like NH4+, NO3-, K+, and Ca²+, enabling tailored applications in wastewater treatment, agriculture, and environmental monitoring.
    🛡️ ④ Isolated Power Supply & Anti-Interference
    Ensures stable data transmission and minimal noise, even in electromagnetically noisy environments.
    🔧 ⑤ Easy Integration & Maintenance
    Compact design and direct installation compatibility simplify deployment into existing water quality monitoring systems.
    🌍 ⑥ Wide Application Scope
    Performs reliably in surface water, sewage, drinking water, and industrial effluent testing with minimal maintenance.
    Application
    🏭
    1. Municipal Wastewater Treatment
    Monitor ion concentrations (e.g., ammonium, nitrate) to optimize treatment processes and comply with discharge standards.
    🌿
    2. Environmental Protection
    Track pollutants in rivers, lakes, and reservoirs to assess ecological health and pollution sources.
    🌾
    3. Agricultural Water Management
    Measure nutrient ions (K+, Ca²+) in irrigation systems to enhance crop yield and soil quality.
    ⚗️
    4. Industrial Process Control
    Ensure precise ion levels in chemical manufacturing, food production, and pharmaceutical processes.
    💧
    5. Drinking Water Safety
    Detect harmful ions in potable water sources to safeguard public health.
    🐟
    6. Aquaculture Systems
    Maintain optimal ion balance for aquatic species health and growth.
    application
    Digital RS485 Water Quality Sensors Technical Data
    Parameter Model Range Accuracy
    DO Sensor LMS-DO10B 0–20 mg/L, 0–60℃ ±0.1–0.3 mg/L
    DO Sensor LMS-DO10C 0–20 mg/L, 0–60℃ ±0.3 mg/L
    Trace DO Sensor LMS-TDO100 0–2000 ppb, 0–50℃ ±1 ppb
    PH Sensor LMS-PH100 0–14 pH ±0.02 pH
    ORP Sensor LMS-ORP100 ±1000.0 mV ±0.2 mV
    EC/TDS Sensor LMS-TDS102 CT: 0–9999 uS/cm; 0–100 mS/cm;
    TDS: 0–10000 ppm
    ±2.5% FS
    Salinity/EC/TDS Sensor LMS-SAL104 Conductivity: 0.1–500 mS/cm
    TDS: 0–60000 ppm
    Salinity: 0–500.00 ppt
    ±1.5% FS
    COD Sensor LMS-COD100 COD: 0.1–1500 mg/L
    TOC: 0.1–750 mg/L
    BOD: 0.1–900 mg/L
    Turbidity: 0.1–4000 NTU
    Temperature: 0–50℃
    ±5% equiv. KHP
    Temperature: ±0.5℃
    TSS Sensor LMS-TSS100 0–50000 mg/L / 0–120000 mg/L ±10% FS or 10 mg/L
    Turbidity Sensor LMS-TUR10L 0–100 NTU ±10% FS or 0.3 NTU
    Turbidity Sensor LMS-TUR10H 0–3000 NTU ±10% FS or 0.3 NTU
    CO2 Sensor LMS-CO2100 2000 PPM / 10000 PPM / 50000 PPM ±5% FS
    Ammonia Nitrogen Sensor LMS-NH4100 0–1000 mg/L ±5% FS
    Ion Selective Sensor LMS-ION100 0–1000 mg/L ±5% FS
    Oil in Water Sensor LMS-OIL100 0–50 mg/L; 0–5 mg/L ±3% FS
    Chlorophyll Sensor LMS-CHL100 0–500 ug/L ±3% FS
    Blue-Green Algae Sensor LMS-BGA100 0–2,000,000 cells/ml ±3% FS
    Residual Chlorine Sensor LMS-HCLO100 0–20.00 ppm ±5% FS
    Marine Current Sensor LMS-Current100 Temperature: -3℃ – 45℃
    Velocity of Flow: 0–500 cm/s
    Flow Direction: 0–359.9°
    ±0.05℃
    ±1 cm/s or ±2%
    ±2°
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    Frequently Asked Questions (FAQ)
    Q What ions can the LMS-ION100 Ion Selective Sensor detect?
    The LMS-ION100 is compatible with multiple critical ions including ammonium (NH4+), nitrate (NO3-), potassium (K+), and calcium (Ca²+), making it suitable for a wide range of water quality monitoring applications.
    Q What is the measurement range and accuracy of the Ion Selective Sensor?
    The sensor covers a measurement range of 0–1000 mg/L with an accuracy of ±5% F.S. (Full Scale), providing reliable results for most industrial and environmental monitoring needs.
    Q What communication protocol does the Ion Selective Sensor support?
    The sensor supports RS-485 interface with MODBUS protocol, enabling seamless integration into existing digital water quality monitoring systems and SCADA platforms.
    Q Can the cable length be customized for different installation requirements?
    Yes. The standard cable length is 5 meters, but it can be extended according to user requirements to accommodate various installation distances and site conditions.
    Q Is the sensor suitable for outdoor or harsh industrial environments?
    Absolutely. The sensor is constructed from robust polymer plastic that resists chemical corrosion and physical wear. It operates within a temperature range of 0–50℃ and features an isolated power supply for anti-interference performance, making it well-suited for outdoor and industrial deployments.
    Q How does the Ion Selective Sensor support calibration?
    The sensor supports custom standard liquid calibration with both forward and reverse curve adjustments. This flexibility ensures accurate measurements across diverse scenarios including wastewater treatment, agriculture, and environmental monitoring.

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