See how an offset wall in the burner body suppresses forward air-fuel flow and redirects mixtur
See how a gas collecting chamber above the nozzle gathers ejected gas and positions the igniter
See how a porous windproof net and rainproof plate guide airflow and block turbulence to preven
See how a damping system with cleats and resilient material separates handle and body to absorb
See how a three-tube burner design with silicone container integration reduces weight while mai
See how a single pre-mix burner with curved perforated distributor serves multiple heat exchang
See how a curved distributor with perforations enables flame carryover to multiple heat exchang
Polygonal through-prisms improve gas circulation in a gas-heated emitter screen, cutting warm-up time while maintaining stable infrared output.
A stacked dual-ring burner uses upward flame spread and inward flame holes to improve air circulation, ignition reliability, and pot-bottom heating.
Interchangeable leak plates simulate small hydrogen leaks and ignition behavior, helping assess combustion damage and safety risks.
Interchangeable leak plates and controlled gas flow simulate hydrogen microleaks for combustion testing and hazard assessment.
A dual-nozzle gas path mixes fuel and air around a porous ceramic plate for rapid, reliable outdoor burner ignition.
Base and spreader channels route fuel to ignition ports, improving first-port ignition reliability and reducing flame lifting.
Non-circular burner ports and a reduced-diameter tube improve air-gas distribution while supporting a compact heating assembly.
Universal burner design merges ignition and heating functions, reducing equipment complexity while maintaining reliable dual fuel switching.
A fresh air intake baffle prevents moisture infiltration into the supply line while maintaining consistent gas-air ratios.
Electric thermal device maintains catalyst activity and prevents deterioration during low temperature gas ignition.
Coaxial flame sensor electrode integrates with pilot nozzle assembly to resolve harsh environment detection accuracy issues.
Thinned portions in inner flame-hole rows create recirculation zones that hold flames without elongating them or enlarging the apparatus.
Concentric fuel and air streams delay mixing in a dual nozzle burner, suppressing NOx emissions while maintaining combustion efficiency.
A control system manages ignition lockout states in fuel-fired appliances based on burner voltage levels during startup attempts.
A gas combustor with a rotary housing and spring-loaded locking mechanism adjusts the combustion angle for flexible operation.
Cerium iron ignition disc generates heated particles via friction to ignite fuel mixtures, protecting components from slag spatter.
External fuel injectors direct gas toward a central ignition source to produce tall, stable flames that resist whipping effects from airflow.
An integrated nozzle trigger manages independent gas flow rates to resolve limited user control in conventional oxyhydrogen torch systems.