Designed for monitoring of oxygen content within flue or stack gases

COMTEC® 6000 : O2 Analyser
The COMTEC® 6000 is an InSitu analyzer for measurement of O2 and COe (sum of unburned molecules – CO, H2, CxHy) in flue and process gases.
Designed for monitoring of oxygen content within flue or stack gases
Designed for monitoring of oxygen content within flue or stack gases, the GAP has relays, analog and modbus outputs along with pressure and temperature compensation making it a complete analyzer for combustion optimization and burner/boiler trim applications.
A compact zirconium-oxide analyzer to efficiently monitor excess air in combustion processes. The probe is manufactured from 316 stainless steel and can handle sample temperatures up to 700°C with an insertion length of 435mm (17.126″). The sample is extracted to the sensor chamber and returned to the flue via the Pitot effect, so there is no need for instrument air. The analyzer operates without the need for an air reference.
Designed with ease of maintenance in mind. The GAP’s user replaceable sensor can be cleaned or replaced in seconds.
FEATURES & BENEFITS
– The GAP provides customers with a single gas flue or ventilation monitoring control system
– Barometric pressure and temperature sensors included
– RS485 MODBUS RTU as standard
– User configurable relay and analog outputs
– Easy to swap sensor module, no special tools
– Calibrate in fresh air or cal gas via external calibration port
– Various probe lengths available
Applications
– Combustion control of burners fueled by natural gas, light oil, diesel, coal and biomass
– Excess air analysis
– Boiler trim control
– Incineration furnaces
– Power generation
– Combined cycle gas turbines (CCGT)
– Ceramic furnace monitoring

The COMTEC® 6000 is an InSitu analyzer for measurement of O2 and COe (sum of unburned molecules – CO, H2, CxHy) in flue and process gases.

High accuracy linear output, Configurable outputs 4-20mA and 0-10Vdc or RS232 comms interface

OXITEC® 5000 The best sensor for measurement of O2, which is just as reliable and robust in reducing atmospheres, thanks to integrated Cell Surface Protection.

Being able to withstand high flue gas temperatures up to 600°C and high dust loads