Oxygen
sensor for combustion control in re-heat furnaces, boilers and
incinerators.
This in-situ oxygen sensor measures "%"
oxygen concentrations directly in the combustion area of high
temperature furnaces, boilers and incinerators. They are intrinsically
safe, generating a very low millivolt output based on the oxygen
content of the atmosphere.
• Available in a number of standard lengths - 18"(457mm),
26"(660mm), 30"(762mm), and 36" (915 mm)
• Available in both alumina and silicon carbide outer sheaths
• Rapidly replacing older/outdated, non-current patented, non-rebuildable
in situ oxygen sensors
• Field performance can be collaborated using external
"verification" port
• "B", "S", and "R" thermocouples are
available
• Temperature Range: 1200 °F to 2900 °F (649-1550°C)
• Cooling air maintains positive pressure to ensure the integrity of
the electrical connections in HARSH environments
• Outer electrode is not "painted" on the zirconia
electrolyte, eliminating the antiquated "boot" design
• Years of application experience maximizes sensor life and
performance in high-slag, turbulent environments
Download the Datasheet |
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Applications |
Glass
Melting - Glass Furnace / Ceramic Kilns Exhaust Stacks
Features:
•24/7 monitoring of combustion stack oxygen
•Interface with existing combustion control system
•Low maintenance, NO calibration
•Probe verification
•Oxygen sensor is re-buildable
•Optional "sample" dryer
•Optional "sample" pump
•Optional interface with ETHERNET
•Optional interface with 4-20mA Damper Control
What does this do for you?
•Gives you an input to control your air-fuel ratio
•It will improve the QUALITY of the product
•It will reduce maintenance costs
•It will allow product consistency
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| Steel Reheat Furnace |
Request
a Quote!
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SSi has
designed, developed and tested an in situ, high temperature oxygen
sensor ideally suited for the typical steel reheat furnace. Measuring
excess oxygen allows the control system to maintain an optimum level
of oxygen, enough for combustion, reducing scale build-up and limiting
the development of NOx.
SuperOX offers:
•Fuel Savings
•Scale Control
•Limits NOx Development
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