Transfusion alarm system adopting near-infrared photoelectric sensing device
An infrared light sensor and sensing device technology, applied in control/regulation systems, non-electric variable control, instruments, etc., can solve problems such as damage, and achieve the effect of ensuring the safety of infusion, ensuring rationality, and strengthening supervision
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Embodiment 1
[0034] Embodiment 1: This embodiment aims to provide an infusion alarm system using a near-infrared photoelectric sensing device, which is mainly used for alarming the liquid level height of the infusion bottle, aiming at the alarm of the existing infusion bottle liquid level alarm device. The problem is that the interference is large, and a single alarm is easily ignored. Based on this, this embodiment provides an infusion alarm that uses a near-infrared photoelectric sensing device to monitor the height change of the liquid level in the infusion bottle.
[0035] like Figure 1-3 This embodiment provides an infusion alarm system using a near-infrared photoelectric sensing device, including an upper infrared photoelectric sensor, a lower infrared photoelectric sensor, a fixing clip, a single-chip microcomputer, and a display screen 10; an upper infrared sensor and a lower infrared light sensor They are respectively set on independent fixing clips, and the fixing clips set the ...
Embodiment 2
[0050] Embodiment 2: This embodiment is basically the same as Embodiment 1, with the difference that: this embodiment further describes the structures of the infrared sensor and the fixing clip.
[0051] The first clamping arm and the second clamping arm are flat structures, the upper infrared photoelectric sensor and the lower infrared photoelectric sensor are both diffuse reflection photoelectric sensors; the infusion stand is provided with a total driving cylinder 28, and the driving rod of the total driving cylinder 28 is connected to the There is a driving frame 29, the upper and lower parts of the driving frame 29 are provided with an upper driving arm 30 and a lower driving arm 31, and the upper driving arm 30 and the lower driving arm 31 can respectively drive the upper first clamping arm, second clamping arm and The lower first clamp arm and the second clamp arm.
[0052] In this embodiment, two upper and lower fixing clips can be driven by one air cylinder, that is, ...
Embodiment 3
[0053] Embodiment 3: This embodiment is basically the same as Embodiment 1, and the difference lies in: this embodiment further describes the system structure.
[0054] The drive frame 29 is provided with elastic telescopic rods at intervals, the end of the elastic telescopic rod is fixed with a trigger plate 32, and the opposite surfaces of the trigger plate 32 and the drive frame are respectively provided with a contact 33 and a touch plate 34.
[0055] In this embodiment, a contact switch is provided. When the bottle body is placed in place, the contact switch can be triggered to automatically send a signal to the driving structure, so that the two fixing clips can shrink synchronously to clamp the infusion bottle; Fixed on the outside of the trigger plate, temporarily fixed the infusion bottle on the trigger plate, and applied force inward to drive the trigger plate, so that the two fixing clips work to stabilize the infusion bottle.
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