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2 Electrode Electrical Conductivity (EC) Sensor, 0-9999μs/cm

2 Electrode Electrical Conductivity (EC) Sensor, 0-9999μs/cm
2 Electrode Electrical Conductivity (EC) Sensor, 0-9999μs/cm
2 Electrode Electrical Conductivity (EC) Sensor, 0-9999μs/cm
2 Electrode Electrical Conductivity (EC) Sensor, 0-9999μs/cm
2 Electrode Electrical Conductivity (EC) Sensor, 0-9999μs/cm
2 Electrode Electrical Conductivity (EC) Sensor, 0-9999μs/cm
2 Electrode Electrical Conductivity (EC) Sensor, 0-9999μs/cm
from
$302.62
Ex Tax: $302.62
  • Stock: In Stock
  • Model: RDDLZ-CS-CON625D
  • Weight: 1.00
  • SKU: RDDLZ-CS-CON625D

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The high-quality 2 electrode electrical conductivity (EC) sensor is suitable for aquaculture, sewage treatment, environmental protection engineering, electronic pharmaceutical and other industries. The high-performance conductivity sensor adopts a two-pole graphite sensor with good electrode constant consistency and stable performance. It is suitable for measuring the changes in conductivity and salinity values in aqueous solution systems within the range of 0-9999μs/cm. With a standard RS485 Modbus RTU protocol interface function, it can communicate remotely with the host computer.

Specification

ModelRDDLZ-CS-CON625D
Measurement ParametersWater temperature/conductivity/TDS
Measurement RangeConductivity: 0-9999μs/cm or 0.1~70ms/cm
TDS: 0-9999ppm
Resolution1us/cm, 0.01ms/cm, 1ppm
Temperature Range0~60.0℃, resolution 0.1℃
Electrode Constant0.8±0.1
Measurement AccuracyConductivity: <2.5%F.S
Temperature: 0.5℃
Data CompensationDefault 25.0℃ compensation temperature, 2%/℃ (adjustable)
Communication MethodRS485 interface*1
Communication ProtocolCompatible with standard MODBUS-RTU protocol
Communication MethodBaud rate 966, 8, 1, N
ID: 1-255, Default ID: 1 (0x01)
Setting MethodRS485 remote setting
Power Supply6-30V DC (12 VDC recommended)
Power Consumption30mA @12 VDC
Installation MethodSunken type
Front and rear G3/4 threads
Electrode and Shell MaterialElectrode: PPS+graphite
Shell: PC+ABS


Features

  • Corrosion resistance: The electrode material is PPS + graphite, suitable for aquaculture, sewage treatment, environmental protection engineering, electronic pharmaceutical and other industries.
  • Wide range: The 2 electrode electrical conductivity (EC) sensor has a wide range, suitable for measuring the changes in conductivity and salinity values in aqueous solution systems within the range of 0-9999μs/cm.
  • High precision: The conductivity measurement accuracy is <2.5%F.S, and the temperature measurement accuracy is 0.5℃. The default compensation temperature is 25.0℃, 2%/℃ adjustable to maintain stable measurement
  • High performance: The resolution of the 2 electrode electrical conductivity (EC) transducer can reach 1μs/cm, 0.01ms/cm, 1ppm. The electrode constant has good consistency and stable performance.

Dimension (Unit: mm)

 

Wiring

Application

Tips: Common problems with conductivity sensors

  • Electrode storage: If the electrode is not used for a long time, please keep it dry and store it. Avoid storing it in a highly polluted environment to avoid measurement errors caused by pollutants accumulating on the electrode surface.
  • Electrode use: Before use, remove the protective cover of the electrode and compare it with the standard solution to ensure that the sensor reading is correct.
  • Reasons for sensor calibration failure: The sensor is contaminated. There are pollutants on the graphite sheet, which cause abnormal measurement data. You need to use a cotton swab to wipe the graphite sheet. If the pollutants have scaled, you need to polish the surface of the graphite sheet. Standard solution contamination, incorrect standard solution values may not be recognized by the sensor, resulting in calibration errors.
  • Sensor cannot communicate: Check whether the electrical connection of the device is correct and whether there is water leakage and corrosion at the interface. Check whether the power supply is correct. Check whether the sensor power consumption is normal <40mA@12VDC. Check whether the 485 address is correct.

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