Pipeline real-time water volume detection device
A detection device and water capacity technology, which is applied in the direction of optical device exploration, etc., can solve the problems of single water pressure sensor technology, and achieve the effects of improving detection accuracy, stability, and ease of use
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Embodiment 1
[0027] This embodiment provides a pipeline real-time water capacity detection device, such as figure 1 , the pipeline includes a transparent pipeline, and the pipeline real-time water capacity detection device includes a parallel light emitter located on the extension of the transparent pipeline, corresponding to the parallel light transmitter, and a parallel light receiver located on the opposite side of the transparent pipeline; the parallel light emitter The processor and the parallel light receiver are electrically connected to a processor, the processor includes a clock unit, and a display device is also electrically connected to the processor, as well as a power supply module for power supply; the clock unit is used to record light by The time difference between the parallel light transmitter and the parallel light receiver; the processor is used to count the time difference, and judge the real-time water capacity in the transparent pipe according to the time difference; ...
Embodiment 2
[0033] This embodiment is on the basis of embodiment 1, as figure 2 , a shell is arranged on the periphery, and the shell is made of opaque material. By arranging the casing, it is possible to prevent external light sources from interfering with the optical communication between the parallel light emitter and the receiver in the device.
Embodiment 3
[0035] In this embodiment, on the basis of Embodiment 1 or 2, an alarm device can be connected to the processor to prompt the user of an abnormal state.
[0036] Wherein, the pipeline real-time water capacity detection device further includes an alarm device connected to the processor, and the alarm device prompts an abnormal state of the water capacity.
[0037] Specifically, the alarm device uses a combination of sound and light alarm units, and the sound and photoelectric alarms use a driving circuit, such as image 3 . Including R1-R5, C1-C4, 555 chips U1 and U2 are cascaded, and then drive the light-emitting diode D1 and the buzzer or horn LS1.
[0038] On this basis, the scope of action of the alarm device can also be expanded through the communication unit.
[0039] Preferably, the alarm device is remotely connected to the processor through a communication unit. In addition, the user also uses the mobile terminal to match and connect with the alarm device. When there...
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