Portable device used for peritoneal dialysis and pipeline of portable device
A peritoneal dialysis and portable device technology, which is applied in the field of medical equipment, can solve problems affecting the quality of dialysis, inconvenient promotion and use, and inconvenient treatment, and achieve the effects of convenient use, reduced times of changing medicine bags, and low cost
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Embodiment 1
[0026] Such as figure 1 , figure 2 , image 3 As shown, the portable device and its pipeline for peritoneal dialysis treatment include a main body 1, a circuit board, a heating plate 3, a temperature probe 4, a heater 17, an electronic scale 16, a sensor, a display screen 7, an instruction button 8, a two-way The peristaltic pump 2, the pressure detector 5, and the key pipeline are fixedly connected to the circuit board inside the main body 1. The upper part of the main body 1 is connected with a heating plate 3. The heating plate 3 is provided with a radian, and one corner of the heating plate is inclined downward. A temperature probe 4 is fixedly connected to the center of the heating plate 3, the heating plate 3 is connected to the circuit board through the temperature probe 4, and a heater 17 is fixedly connected to the bottom of the heating plate 3, and the heater is a silicone heating sheet or polyamide Heating film made of imine. The electronic scale 16 is arranged ...
Embodiment 2
[0029] Such as Figure 4 As shown, all the other parts are the same as in Embodiment 1 except key pipelines.
[0030]The key pipeline includes a dialysate pipeline and a drainage pipeline, and the dialysate pipeline is connected with a pressure check valve 9 through a pipeline with several dialysate ends 15 connected in parallel, and the pressure check valve 9 passes through a belt without pressure. The three-way pipe 11 of the one-way valve is connected with the peristaltic pump flexible pipe 18, and the peristaltic pump flexible pipe 18 provides liquid flow power through the two-way peristaltic pump 2, and the peristaltic pump pipe 18 is connected with a buffer pot 13 through a pipeline. The buffer pot 13 is connected to the pressure detector 5 and the patient end 14 through a pipeline; the drainage pipeline is a plurality of drainage terminals 12 connected in parallel and connected to one end of the three-way pipe 11 with a non-pressure one-way valve through the pipeline. ...
Embodiment 3
[0032] Such as Figure 5 As shown, all the other parts are the same as in Embodiment 1 except the key pipeline.
[0033] The key pipeline includes a dialysate pipeline and a drainage pipeline, and the dialysate pipeline is connected in parallel with a combination tee pipe 11 of a pressure check valve and a pressure-free check valve through a number of dialysate ends 15, The combined tee pipe 11 of the pressure one-way valve and the non-pressure one-way valve is connected to the peristaltic pump hose 18, and the peristaltic pump hose 18 provides liquid flow power through the bidirectional peristaltic pump 2, and the peristaltic pump tube 18 passes through The pipeline is connected with a buffer pot 13, and the buffer pot 13 is connected to the pressure detector 5 and the patient end 14 through the pipeline; the drainage pipeline is a plurality of drainage ends 12 connected in parallel through the pipeline, a pressure one-way valve and a non-pressure one-way valve. The combined...
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