Amperometric sensors with temperature compensation internal sophisticated electronics providing real-time measurement and rapid response time.
Active amperometric measurement eliminates interference caused by turbidity delivering optimum performance and efficient process control.
 
»  Construction of chlorine sensors characterised with excellent robust design and exceptional resistance to chemical agents.
»  Diaphragm covered membrane-electrode reduces dependence on flow to deliver consistent measurement performance.
»  We strongly recommend replacing the electrolyte at 6 month intervals to maintain calibration and accuracy of sensor.
»  Measurement ranges available ( 0÷2.00 - 0.00÷10.00 ppm ) chemical concentrations.
 
 
Technical Features
 
 
| » Range :- 0-10 ppm | » pH Range :- 1÷11 | » Signal Output :- 4÷20 mA | »  Electrical :- 2 Pole Terminal |
| » Temp :- 0-45°C» Pressure :- 1 Bar | » Flow Rate :- 30 l/hr | » Dia :- 25mm Dia x 175mm Length|
 
Note :- Chlorine dioxide sensors suitable for high pressure 8 bar applications ( 0.00÷10.00 ppm )
 
Applications
| Legionella Control | Swimming Pools | Drinking Water | Bottle Washing | Potable Water | Irrigation Systems Wastewater |
Amperometric sensors with temperature compensation internal sophisticated electronics providing real-time measurement and rapid response time.
Active amperometric measurement eliminates interference caused by turbidity delivering optimum performance and efficient process control.
 
»  Construction of chlorine sensors characterised with excellent robust design and exceptional resistance to chemical agents.
»  Diaphragm covered membrane-electrode reduces dependence on flow to deliver consistent measurement performance.
»  We strongly recommend replacing the electrolyte at 6 month intervals to maintain calibration and accuracy of sensor.
»  Measurement ranges available ( 0÷2.00 - 0÷5.00 - 0÷10 ppm ) chemical concentrations.
 
 
Technical Features
 
 
| » Range :- 0-10 ppm |» pH Range :- 4÷12 | » Signal Output :- 4÷20 mA | »  Electrical :- 2 Pole Terminal |
| » Temp :- 0-45°C » Pressure :- 0.5 Bar | » Flow Rate :- 30 l/hr | » Dia :- 25mm Dia x 175mm Length |
 
 
Applications
| Swimming Pools | Drinking Water | Water Treatment | Sea Water |
Amperometric sensors with temperature compensation internal sophisticated electronics providing real-time measurement and rapid response time.
Active amperometric measurement eliminates interference caused by turbidity delivering optimum performance and efficient process control.
 
»  Construction of chlorine sensors characterised with excellent robust design and exceptional resistance to chemical agents.
»  Diaphragm covered membrane-electrode reduces dependence on flow to deliver consistent measurement performance.
»  We strongly recommend replacing the electrolyte at 6 month intervals to maintain calibration and accuracy of sensor.
»  Five measurement ranges available ( 0÷0.5 - 0÷2.00 - 0÷5.00 - 0÷10 - 0÷200ppm ) chemical concentrations.
 
 
Technical Features
 
 
| » Range :- 0-200 ppm | » pH Range :- 6÷8 | » Signal Output :- 4÷20 mA | »  Electrical :- 2 Pole Terminal |
| » Temp :- 0-45°C » Pressure :- 1 Bar | » Flow Rate :- 30 l/hr | » Dia :- 25mm Dia x 175mm Length |
 
Note :- Chlorine sensors suitable for high pressure 8 bar applications ( 1 ppm - 5 ppm - 10 ppm )
 
Applications
| Legionella Control | Swimming Pools | Drinking Water | Water Treatment | Process Water | Hot-Cold Systems |
Chlorine cell with temperature compensation internal sophisticated electronics providing real-time measurement and rapid response time.
Active amperometric readings eliminates turbidity interference delivering optimum performance and efficient process control.
 
»  Chlorine cell-holder characterised with excellent transparency robust design and exceptional resistance to chemical agents.
»  Open amperometric cell for measurement of organic and inorganic free chlorine continuous flow excellent results.
»  Water regulation - proximity sensor - provision for pH electrode - redox electrode and temperature sensor.
 
Technical Features
 
| » Measurement :- 0-10 ppm | » Proximity Switch (optional) | » Signal Output :- 12v dc |
| » Temp :- 5-60°C » Pressure :- 5 Bar |» Flow :- 40÷50 l/hr | » Self Cleaning Cell |
 
Applications
 
| Water Treatment | Swimming Pools | Drinking Water | Wastewater Treatment | Beverage Industry |

Free Chlorine Cell 
Amperometric

Chlorine Sensors
(Chlorine Dioxide Sensors)
 
 
Applications
 

Chlorine Sensors
 
Chlorine sensors designed and manufactured using superior materials and components for guaranteed accuracy real-time monitoring and short response  time courtesy of the electrolyte filled membrane cap combined with enhanced electronic measurement technology, producing chlorine sensors with increased sensitivity outstanding accuracy unaffected by interference caused by turbidity and temperature fluctuations maintains optimum measurement performance regardless of the process conditions with minimum service requirements and long service life.
 

Total chlorine amperometric measurement sensors for water treatment, drinking water and swimming pools application's Free chlorine amperometric-potentiostatic measurement sensors for drinking water, legionella control and swim-pool application's Amperometric chlorine cell for measurement of organic & inorganic free chlorine with flow regulation
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Free Chlorine
Sensors

Total Chlorine
Sensors

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Chlorine cell 0÷10 ppm measurement with flow regulation proximity sensor and self cleaning system Chlorine sensors robust design with enhanced reading sensitivity for optimum performance and reliability Chlorine sensors with enhanced reading sensitivity guaranteed accuracy and reliability in all conditions Chlorine dioxide sensors with enhanced reading sensitivity guaranteed accuracy and reliability in all conditions

Chlorine Dioxide
Sensors

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Chlorine Dioxide Sensors
 
Chlorine dioxide sensors designed specifically using a specialized electrolyte within a membrane cap combined with enhanced electronic measurement technology producing a high performance sensor with enhanced measurement sensitivity unaffected by interference caused by turbidity and temperature fluctuations maintaining optimum chlorine dioxide measurement and continuous chemical effiency regardless of process conditions with minimum service requirements thanks to the membrane/diaphragm cap design.  

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