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Main product introduction of thermal imaging night vision device

Apr 12, 2023

Main product introduction of thermal imaging night vision device

 

The microchannel plate (MCP) in the tube can be used to complete this because when electrons pass through the tube, the atoms inside it emit similar electrons, the number of which is equal to the original number of electrons multiplied by a factor (about a few thousand times). Work. A microchannel plate is a tiny glass disk manufactured with fiber optic technology that has millions of minute pores (microchannels) inside. Metal electrodes are attached on both sides of the microchannel plate, which is under vacuum. Each microchannel is similar to an electronic amplifier in that it is around 45 times longer than it is wide.
 

When photocathode electrons hit the first electrode on the microchannel plate, a high voltage of 5,000 volts between the two electrodes causes the electrons to be propelled through the glass microchannel. Cascading secondary emission is the process of thousands of electrons in the microchannel being released as an electron passes through it. Simply said, once the initial electrons collided with the microchannel's walls, the excited atoms released additional electrons. In addition to striking other atoms, these additional electrons set off a chain reaction in which a small number of electrons enter the microchannel and thousands exit.The MCP's microchannels feature an intriguing phenomenon: they are tilted slightly (by about 5-8°), which not only encourages electron collisions but also lessens ion feedback and direct light feedback from the phosphor layer at the output.
 

Night vision images are known for their eerie green sheen.

 

The electrons strike a screen that has been coated with phosphor at the image intensifier tube's end. Since the electrons line up in the same way that the photons did when they first lined up, the electrons maintain their relative positions as they move through the microchannel, ensuring the consistency of the image. The phosphor enters an excited state and releases photons as a result of the energy carried by these electrons. The night vision goggles' green image on the screen is produced by these phosphors.The green phosphorescent image is visible through a different set of lenses called eyepieces, and it can be used to enlarge or concentrate the image. NVD can be used to directly view images through eyepieces or connected to electronic display devices like monitors.
 

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