Width sensing detection device based on W-shaped monitoring point layout and error correction control system
A detection device and monitoring point technology, which is applied in the direction of measuring device, feedback control, optical device, etc., can solve the problem of low detection accuracy of wide-width sensors and achieve the effect of large detection area
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Embodiment 1
[0040] In the optional scheme of this embodiment, such as figure 1 and figure 2 As shown, the wide-width sensing detection device based on W-shaped monitoring point layout provided by this embodiment includes an infrared emitting part 11, an infrared receiving part 12 and a connecting part 13; the infrared emitting part 11 and the infrared receiving part 12 are arranged in parallel , and the two are connected through the connecting part 13; the infrared emitting part 11 is provided with a plurality of infrared light-emitting units 111, and the plurality of infrared light-emitting units 111 are arranged in a "W" shape; the infrared receiving part 12 is provided with a plurality of infrared photosensitive unit 121, and the plurality of infrared photosensitive units 121 are arranged in a "W" shape.
[0041] It should be noted that the through-beam infrared sensor actually consists of two parts, one part emits infrared light, and the other part receives infrared light. According...
Embodiment 2
[0053]In an optional solution of this embodiment, a wide-width sensing detection device based on a W-shaped monitoring point layout provided by this embodiment includes an infrared emitting part 11, an infrared receiving part 12 and a connecting part 13; the infrared emitting part 11 It is arranged in parallel with the infrared receiving part 12, and the two are connected through the connecting part 13; the infrared emitting part 11 is provided with a plurality of infrared light-emitting units 111, and the plurality of infrared light-emitting units 111 are arranged in a "W" shape; the infrared receiving part 12 A plurality of infrared photosensitive units 121 are arranged on it, and the plurality of infrared photosensitive units 121 are arranged in a "W" shape.
[0054] In this embodiment, the application of infrared array technology, when detecting materials with frequently changing widths, there is no need to replace or calibrate the probe, and the detection and positioning a...
Embodiment 3
[0061] In the optional scheme of this embodiment, such as Figure 4 As shown, a deviation correction control system provided in this embodiment includes a first conveying device 20, a second conveying device 30, a traction device 40, a control center, and a W-shaped monitoring point as described in Embodiment 1 or Embodiment 2. The layout of the wide sensing detection device 10;
[0062] The wide-width sensing detection device 10 based on the W-shaped monitoring point layout is arranged between the first transmission device 20 and the second transmission device 30;
[0063] The traction device 40 is connected with the first conveying device 20, and is used to control the translation of the first conveying device 20;
[0064] The control center is electrically connected to the wide-width sensing and detection device 10 based on the W-shaped monitoring point layout and the traction device 40 .
[0065] In this embodiment, the width sensing and detection device 10 detects the c...
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