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Ip68 RS485 Ammonia Nitrogen Sensor 3/4 NPT Thread Install

Categories Water Quality Sensor
Brand Name: kacise
Model Number: KAN601
Certification: CE,FDA
Place of Origin: CHINA
MOQ: 0-100
Price: $0-$2000
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability: 100
Delivery Time: 10-15 days
Packaging Details: Common package or custom package
Measuring range: 0~10.00mg/L(0~100.00mg/L)
Resolution: 0.1mg/L
Accuracy: ±10% or ±1mg/L
Working pressure: <0.1MPa
Temperature compensation: Temperature compensation (Pt1000)
Output: Digital Sensor,Support RS-485,MODBUS protocol
Power supply: 12-24VDC (10-30VDC)
Output signal: 4~20mA,RS485 optional
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    • Product Details
    • Company Profile

    Ip68 RS485 Ammonia Nitrogen Sensor 3/4 NPT Thread Install

    Ip68 4~20mA RS485 Ammonia Nitrogen Sensor For Water Quality

    Kacise KAN601 Online Ammonia Nitrogen Sensor Patented Probe IP68 Protection Level Easy To Install: 3/4 NPT Thread

    KAN601 Online Ammonia Nitrogen Sensor

    Application Environment

    KAN601 integrated online ammonia nitrogen sensor is fabricated using a PVC membrane-based ammonium ion-selective electrode for testing ammonium ion content in water with temperature compensation to ensure fast, simple, accurate, and economical testing. The technical parameters, maintenance, and communication protocols of the ammonia nitrogen sensor are described in detail in this user manual.

    • Signal output: RS-485 bus, Modbus/RTU protocol, convenient to connect to PLC, DCS, industrial control computer, general controller, paperless recording instrument or touch screen, and other third-party equipment.
    • In the patented ammonium ion probe, the internal reference solution oozes extremely slowly from the microporous salt bridge at a pressure of at least 100 KPa (1 Bar). Such a reference system is very stable and has a longer electrode life than conventional industrial electrodes.
    • Easy to install: 3/4 NPT thread (pipe thread) for easy submersible installation or installation in pipes and tanks.
    • IP68 protection level.

    Technical Specifications

    ModelKAN601
    Measuring range0~10.00mg/L(0~100.00mg/L)
    Resolution0.1mg/L
    Accuracy±10% or ±1mg/L
    Working temperature0~40℃
    Working pressure<0.1MPa
    Medium PH range4~10 pH
    Temperature compensationTemperature compensation (Pt1000)
    Power supply12~24 VDC ±10%
    Signal outputRS-485 bus, Modbus/RTU protocol
    Wetted materialPVC and POM
    Installation3/4NPT thread, immersion installation
    Cable length5 meters, other lengths can be customized
    CalibrationTwo-point calibration
    Power consumption<0.3W@12V
    Protection gradeIP68

    Dimensional Drawing

    Tip: Wastewater treatment processes

    Wastewater treatment processes are concerned with controlling the energy-efficient removal of pollutants in the smallest possible space in the shortest possible time.

    Required are:

    • detailed knowledge of the underlying process

    • highest possible transparency of the process steps through corresponding measuring methods

    The efficient control of Nitrogen in wastewater systems is possible by making those measurements directly in the wastewater process. This not only ensures purification but above all guarantees the economic operation of the entire plant.

    Purification processes for the removal of nitrogen from wastewater

    Nitrogen is found in a large variety of compounds and forms and is considered to be the ultimate “quick-change artist”.

    In municipal wastewater, it is mainly encountered as a waste product in the form of urea, which is already converted in part to ammonium nitrogen by ammonification.

    In the aeration basin, the initial step of nitrification consists of oxidizing the nitrogen present in wastewater via nitrite to nitrate, for which oxygen is required. During subsequent

    denitrification, the nitrate (NO3–) is further converted to elemental nitrogen N2 under the absence of oxygen. This nitrogen in gas form is harmlessly released into the environment.

    Due to the various framework conditions and different biologically active groups of microorganisms, both methods are conducted in two fundamentally separate processes.

    The temporal and spatial sequence can be adapted to local conditions.


    Contact Us

    Website www.kacise.com
    Phone +86-17719566736
    Email sales@kacise.com
    Location Tangyan South Road, High-tech Zone, Xi'an City, Shaanxi Province, China




































































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