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      • Conductivity Meter
      Conductivity Meter
      • Applicable Medium
        Water
      • Not applicable medium
        Gas
      • Product Introduction
        The industrial conductivity meter is a high-end instrument of our company's new generation of Chinese (English) microcomputer models, which has the characteristics of Chinese (English) display, Chinese (English) single operation, full intelligence, multifunctionality, high measurement performance, and strong environmental adaptability.

      Working principle

      Conductivity (G) is the reciprocal of resistance (R), and conductivity (K) is the reciprocal of resistivity (ρ). Therefore, when an electrode (usually a platinum electrode or a platinum black electrode) is inserted into a solution, there are two parallel plates (or cylindrical electrodes) with a fixed distance L inside the electrode, and the resistance R between the two electrodes can be measured. According to Ohm's law, when the temperature is constant, this resistance value is proportional to the distance L (cm) between the two electrodes and inversely proportional to the cross-sectional area A (cm?) of the electrodes, that is, R=ρ× (L/A); Where ρ is the resistivity, with a length of 1cm and a cross-sectional area of 1cm? The resistance of a conductor is determined by the nature of matter. According to the above formula, the conductivity (G) of a conductor can be expressed as follows: G=1/R=(1/ρ) × (A/L)=K × (1/J); Among them, K=1/ρ is called conductivity, J=L/A is called electrode constant; The conductivity of electrolyte solution refers to a 1cm gap between two parallel electrodes that are 1cm apart? The electrical conductivity of a solution. So when the electrode constant (J) is known and the solution resistance (R) or conductivity (G) is measured, the conductivity can be calculated.

      Product Features

      1. Menu structure, easy to operate, displayed in both Chinese and English;

      2. Multi parameter display on the same screen;

      3. Can measure conductivity, control upper and lower limits, and output standard current;

      4. Automatic temperature compensation function.

      Technical Parameter

      model

      YK-DDG-3080

      Conductivity measurement range

      0.01~20 μ S/cm (with K=0.01 electrode)

      0.1-200 μ S/cm (with K=0.1 electrode)

      1.0~2000 μ S/cm (with K=1.0 electrode)

      10-20000 μ S/cm (with K=10.0 electrode)

      30-600 mS/cm (with K=30.0 electrode)

      Basic error of electronic unit

      Conductivity: ± 0.5% FS, Temperature: ± 0.3

      Automatic temperature compensation range

      0-199.9 , with 25 as the reference temperature

      Tested water sample (including water vapor)

      0-110 , maximum 120 , 0.6MPa

      Basic instrument error

      Conductivity: ± 1.0% FS, Temperature: ± 0.5

      Automatic temperature compensation error of electronic unit

      ±0.5%FS

      Repetitive error of electronic unit

      ± 0.2% FS ± 1 word

      Stability of electronic units

      ± 0.2% FS ± 1 word/24h

      Current isolation output

      0-10mA (load<1.5k Ω)

      4-20 mA (load<750 Ω)

      Output current error

      ≤±1%FS

      Error caused by the influence of environmental temperature on electronic units

      ≤±0.5%FS

      Error caused by the influence of electronic unit power supply voltage

      ≤±0.3%FS

      Alarm relay

      AC220V,3A

      communication interface

      RS485 or 232 (optional)

      Power Supply

      AC220V±22V,50Hz±1Hz

      Waterproof and dustproof design

      Protection level IP54, cast aluminum shell suitable for outdoor use

      Clock accuracy

      ± 1 minute/month

      Data storage capacity

      1 month (1 hour/5 minutes)

      Continuous power-off storage time of data

      10 years

      External dimensions

      146 (length) * 146 (width) * 150 (depth) mm

      Hole size

      138*138 mm

      Working conditions

      Environmental temperature 0-60 , relative humidity<85%

      Weight

      1.5kg

      Applicable fields

      Industries such as thermal power, chemical, metallurgical, environmental protection, pharmaceuticals, biochemistry, food, and tap water. 


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