Technical Features
Temperature :- 130°C - Pressure :- 16 Bar
Range :- 0.04 – 20 µS
Manufactured in polypropylene with 316 stainless steel electrodes and temperature sensor for low-medium conductivity measurements.
Readings unaffected by flow fluctuations regardless of environment conditions reliable readings delivering excellent process control.
 
»  Real-time measurement short response time for optimum performance control and low maintenance requirements.
»  We recommend installed in bypass-offline manifold with isolation valves for periodic maintenance of electrode.
 
 
 
Technical Features
 
 
 
 
| » Range :- 0.1-5,000µS| » Constants :- K=1 - K=5 - K= 10 | » Electrodes :- 316L Stainless Steel  | Temp Sensor :- PT100 |
| » Temp :- 80°C » Pressure :- 6 Bar (20°C) | » Body :- Polypropylene » Cable :- 5 Mtrs | Thread :- ¾" BSP Male |
 
Applications
| Cooling Water systems | Wastewater | Drinking Water | Irrigation Systems | Reverse Osmosis |
Manufactured in polypropylene with conductive stainless steel electrodes installed permanently inline to give highly reliable conductivity measurement.
Electrode measurement unaffected by flow fluctuations regardless of environment conditions reliable readings delivering excellent process control.
 
»  Real-time measurement short response time for optimum performance control and low maintenance requirements.
»  We recommend installed in bypass - offline manifold with isolation valves either side of electrode housing.
 
 
 
 
Technical Features
 
 
 
 
| » Range :- 0.1-5,000µS | » Constants :- K=1 - K=5 - K= 10 | » Electrodes :- 316L Stainless Steel  |
| » Temp :- 60°C » Pressure :- 6 Bar (20°C) | » Body :- Polypropylene » Cable :- 5 Mtrs | Thread :- ½" BSP |
 
Applications
| Cooling Water systems | Wastewater | Drinking Water| Irrigation Systems | Reverse Osmosis |
Manufactured in robust PVC with conductive graphite electrodes designed for mounting inside tanks - vessels highly reliable conductivity measurement.
Characterised by consistent measurement unaffected by flow fluctuations to maintain reliable readings delivering excellent process control.
 
»  Real-time measurement short response time for optimum performance control and low maintenance requirements.
»  Standard probe length 600mm (other lengths upon request) | » Mounting bracket available upon request.
 
»  Recommended a reasonable degree of circulation locally to probe position for a precise  measurements.
 
 
 
 
Technical Features
 
 
 
 
|» Measurement Range :- 0-20,000µS | » Cell Constant :- K=1 | » Electrodes :- Conductive Graphite |
| » Temp :- 50°C » Pressure :- 3 Bar (20°C) | » Body Material :- ¾" PVC » Cable :- 5 Meters |
 
Applications
| Cooling Water systems | Wastewater | Drinking Water | Irrigation Systems | Process Water |
Manufactured in robust PVC with conductive graphite electrodes to be installed into existing pipework for continuous reliable conductivity measurement.
Characterised by consistent measurement unaffected by flow fluctuations to maintain reliable readings delivering excellent process control.
 
»  Real-time measurement short response time for optimum performance control and low maintenance requirements.
»  Designed with quick release union connection for periodic inspection - cleaning and calibration of probe.
»  We recommend installed in bypass - offline manifold with isolation valves either side of probe housing.
 
 
 
Technical Features
 
 
| » Measurement Range :- 0.00-20,000µS | » Cell Constant :- K=1 | » Electrodes :- Graphite  |
| » Temp :- 50°C » Pressure :- 3 Bar (20°C) |» Body Material :- 1" PVC » Cable :- 5 Meters |
 
 
Applications
| Cooling Water systems | Wastewater | Drinking Water | Irrigation Systems | Process Water |

Conductivity Probe
Type EC-CM1 

Conductivity
Probes
 
Applications
 

Conductivity sensors for medium-high measurement processes suitable for reverse osmosis with superior measurement accuracy

Conductivity Probe
Immersion Type

Product Enquiry
Submersible conductivity probe for tank mounting applications Conductivity probe in pvc with union connection for mounting into inline pipework or by-pass manifold installations. conductivity sensors for very low conductivity measurement values in reverse osmosis applications. Conductivity CTK sensors for wastewater-irrigation-drinking water-cooling water and salt water applications

Conductivity Electrode
CK Series

Conductivity Electrode
CTK Series 

Product Enquiry

 Type - CTK-100-SS 

Product Enquiry

Type - SW-100-SST 

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Conductivity Electrodes
 
Conductivity probes manufactured with superior materials and components with real-time measurement and short response time with built-in temperature compensate sensor for high temperature and pressure applications with exceptional precision reliability and control, minimal maintenance regardless of environment conditions with different cell constant values available tailored to suit the individual process including specifications such as chemical resistance.
Applications for conductivity monitoring and control systems include; public water supplies, wastewater, washing and cleaning (CIP) processes, irrigation systems, food & beverage, potable water,  blowdown control on industrial boilers and cooling tower systems, wastewater.

Conductivity Measurement
 
Conductivity is the ability of a solution to conduct an electric current between two electrodes across the surface area between electrodes measured by the solution resistance and the concentration of dissolved ionic species therefore high concentration of ions in the solution will result in a fast current and higher conductivity values and a slower electrical current indicates lower concentration of ions are present in the solution indicating lower conductivity values.

Product Enquiry
Product Enquiry
High Temperature Conductiviy Probes
Conductivity probe for processes up to 130°C temperature and 16 bar pressure for industial applications Conductivity probe for processes up to 100°C temperature and 6.5 bar pressure for industial applications
Technical Features
Temperature :- 100°C - Pressure :- 6.5 Bar
Range :- 0.04 – 0.055÷1000 µS