Industrial Production: UVC TechnologyFlame DetectorAs a critical component for heat treatment and heating furnaces, it is widely used in the industrial production industry.Flame Detector ManufacturerExplore the Composition and Working Principle of Industrial Furnace Automatic Ignition Control Panels: Heating FurnaceIgnition DeviceByExplosion-Proof High-Energy IgnitersSystem, ultraviolet flame detectors, fire detection refrigeration air system software, ignition gun propulsion equipment, and quick cut-off valves make up the components.High-Energy IgniterThe system, an ultraviolet flame detector, is crucial.
Ultraviolet Flame Detectors and Probes
Data signals between the probe and processor are transmitted using electrical current technology to enhance anti-interference capabilities, and are conveyed to the processor via two-core/three-core cables. After the processor processes the data signals transmitted by the probe and completes the power circuit operation based on the paired power circuit, it carries out fire detection, providing corresponding indicators and outputs.
The Tunnel Construction Flame Detection Comprehensive Disk Type Detector effectively addresses influences such as sunlight, lightning, arc welding, manual lighting sources, radiant heat, interference signals, and vibration analysis, thereby achieving rapid response and precise identification of fire data signals. This detector employs non-contact detection technology.Xi'an Flame DetectorThe sensitivity is adjustable on-site, providing microwave sensor contact points and standard electrical current output for connection with the fire alarm system software.
Ultraviolet Flame Detector
Ultraviolet flame detectors can continuously inspect the flames of various types of boilers for extended periods, providing comprehensive supervision over heating furnaces. The flame detector manufacturer states that its specific structure consists of a probe and a processor, connected by a two-core shielded twisted pair cable.
The principle involves a quartz glass filter in front of the probe of an ultraviolet flame detector. The light emitted by the flame is wirelessly transmitted to the UV photoelectric sensor at the end of the probe, where it undergoes photoelectric conversion. Data signals between the probe and processor are transmitted using current transmission technology to enhance anti-interference capabilities, and are then sent to the processor via a two-core twisted shielded twisted pair cable.
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