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Uni Directional Inline Deflagration Flame Arresters
H26N Short Time Burning Proof KITO® RV/N-IIA-…/…-1.2 KITO® RV/N-IIA-…/…-1.2-T
- Uni-directional in-line deflagration flame arrester
- Short-time burning proof
- Suitable for vapor/air and air/gas mixtures
- Operating pressure limit at 1.2 bar abs.
- Operating temperature threshold at 60 °C
- Approved for explosion group IIA substances, MESG > 0.9 mm
- Installation limited to pipes with nominal widths ≤ armature’s nominal width (DN)
- Includes 2 temperature sensors for emergency function activation
- Designed for thermal incineration plant applications
- Maximum pipe length from arrester to ignition source is specified (L/D ratio)
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H26.1N Short Time Burning Proof KITO® RV/N-1200/600-IIA-1.6 KITO® RV/N-1200/600-IIA-1.6-T (-TT)
- Uni-directional in-line deflagration flame arrester
- Short-time burning proof
- Suitable for thermal incineration plants, vapor/air, and air/gas mixtures
- Operating pressure up to 1.6 bar abs.
- Maximum operating temperature of 200 °C
- Compatible with explosion group IIA substances, MESG > 0.9 mm
- Pipe installation limits to nominal widths ≤ armature’s DN
- Maximum pipe length to ignition source specified as < 50 x D
- Equipped with thermal sensor for emergency functions
- Approved for bi-directional pipe installations within max temperature and op pressure
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H26.2N Short Time Burning Proof KITO® RV/N-IIA-1000/…-1.2-X08 KITO® RV/N-IIA-1000/…-1.2-X08-T
- Uni-directional in-line deflagration flame arrester
- Short-time burning proof
- Designed for vapor/air and air/gas mixtures within thermal incineration plants
- Operating pressure limited to 1.2 bar abs.
- Maximum allowable operating temperature set at 80 °C
- Certified for explosion group IIA substances, MESG > 0.9 mm
- Installation restricted to pipe nominal widths ≤ armature’s DN
- Limits on maximum pipe length to ignition source based on L/D ratio
- Features 2 temperature sensors for activating emergency functions
- Can withstand “stabilized burning” up to a maximum of 1.0 min burn time
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