CN213100056U - Infusion remote monitoring device - Google Patents

Infusion remote monitoring device Download PDF

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Publication number
CN213100056U
CN213100056U CN202020857190.XU CN202020857190U CN213100056U CN 213100056 U CN213100056 U CN 213100056U CN 202020857190 U CN202020857190 U CN 202020857190U CN 213100056 U CN213100056 U CN 213100056U
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China
Prior art keywords
side casing
infusion
module
monitoring device
gear motor
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Application number
CN202020857190.XU
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Chinese (zh)
Inventor
余文彬
陈文飞
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Golden Palm Industry Co ltd
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Golden Palm Industry Co ltd
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Priority to CN202020857190.XU priority Critical patent/CN213100056U/en
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Abstract

The utility model discloses an infusion remote monitoring device belongs to medical care device field, the utility model discloses a casing, the casing middle part is equipped with the spacing groove that is used for holding transfer line and transfer line drip kettle, still is equipped with the baffle and the photoelectric sensor that dams that stretch out the indentation state through gear motor control on the casing, photoelectric sensor feedback signal to circuit board, the circuit board is according to the change of infusion state, the baffle adjusts the infusion state through the gear motor drive that dams to reach the monitoring host computer at nurse station on with data through signal transmission module, the medical personnel's that significantly reduces work load.

Description

Infusion remote monitoring device
Technical Field
The utility model relates to a medical care device, concretely relates to infusion remote monitoring device.
Background
Most of the current transfusion processes of patients in hospitals depend on the observation of patients or family members or the routine inspection of medical care personnel for liquid medicine replacement. However, when the patient is unconscious or the medical staff is unable to patrol in time, the liquid medicine is not replaced in time, which may cause transfusion and blood return or other medical accidents.
The infusion alarm on the market only has the monitoring reminding function, so that a caregiver cannot hear the alarm when the monitoring sound is low, and other patients can have a rest due to too high sound, so that the defect that the infusion information is not checked in time and then cannot be processed in time is still caused.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a infusion remote monitoring device of steerable infusion progress.
The technical scheme of the utility model is that: a remote monitoring device for infusion comprises a left shell and a right shell which are fixed into a whole, a first limit groove for containing an infusion tube and a second limit groove for containing a drip cup of the infusion tube are sequentially arranged between the left shell and the right shell from top to bottom, a cut-off baffle which is controlled by a speed reducing motor to extend and retract is arranged at the position of the left shell close to the upper end of the first limit groove, a photoelectric sensor is arranged at the position of the right shell close to the upper end of the second limit groove, the speed reducing motor is arranged in the left shell, a power supply module for supplying power to the speed reducing motor is arranged below the speed reducing motor, a circuit board which is connected with the photoelectric sensor and the speed reducing motor is arranged in the right shell, a monitor panel is arranged at the side edge of the, three-colour LED lamp, digital display screen, switch, watch-dog panel are connected with the circuit board.
Further technical scheme is provided with on the circuit board: ARM host system, photoelectric detection module, motor control module, signal transmission module, ARM host system is connected with photoelectric detection module, motor control module, signal transmission module respectively, and photoelectric detection module is connected with photoelectric sensor, and motor control module is connected with gear motor, and ARM host system is connected with bee calling organ, three-colour LED lamp, digital display screen, switch.
According to a further technical scheme, the signal transmission module is an SX1287 radio frequency module or a WIFI transmission module;
according to the further technical scheme, a USB interface for charging is further arranged on the right side shell.
The utility model has the advantages that:
the utility model provides an infusion remote monitoring device, when beginning the infusion, medical personnel place the transfusion system the utility model discloses an in the spacing inslot, the speed of dripping has been transferred, when the infusion state changes, the utility model provides a gear motor drive dams the baffle and adjusts the infusion state to pass through the monitoring host computer of nurse station, the medical personnel's that significantly reduces work load on with data through signal transmission module.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a right side view of the present invention;
fig. 3 is a schematic connection diagram of the control circuit according to the present invention.
Wherein, 1, left side casing, 11, first spacing groove, 12, second spacing groove, 2, right side casing, 3, photoelectric sensor, 4, gear motor, 41, the baffle that dams, 5, power module, 6, circuit board, 7, watch-dog panel, 71, bee calling organ, 72, three-colour LED lamp, 73, digital display screen, 74, switch, 8, USB interface.
Detailed Description
The invention will be further elucidated below by means of non-limiting examples, with the understanding that the invention is not limited thereto.
As shown in figures 1-3, the utility model relates to a transfusion remote monitoring device, which comprises a left side shell 1 and a right side shell 2 fixed into a whole, a first limit groove 11 for holding a transfusion tube and a second limit groove 12 for holding a drip cup of the transfusion tube are sequentially arranged between the left side shell 1 and the right side shell 2 from top to bottom, a cut-off baffle 41 which is controlled to extend and retract by a speed reducing motor 4 is arranged at the position of the left side shell 1 close to the upper end of the first limit groove 11, a photoelectric sensor 3 is arranged at the position of the right side shell 2 close to the upper end of the second limit groove 12, the speed reducing motor 4 is arranged in the left side shell 1, a power supply module 5 for supplying power to the speed reducing motor 4 is arranged below the speed reducing motor 4, a circuit board 6 connected with the photoelectric sensor 3 and the speed reducing motor 4 is arranged in the right side shell, a buzzer 71, a three-color LED lamp 72, a digital display screen 73 and a switch 74 are fixedly arranged on the monitor panel 7, and the monitor panel 7 is connected with the circuit board 6; the digital display screen 73 displays the infusion speed with the unit of x drops/minute, the buzzer 71 is used for sound warning, the three-color LED lamp 72 is used for displaying the working state, the blue lamp is in a normal detection state when flickering, and the infusion flow rate and the host communication are normal; the red light is in a warning state when flickering, which indicates that the infusion is cut off or the host communication is abnormal; the switch 74 is used for long-time pressing on/off, and short-time pressing can close the buzzer 71 or control the intercepting baffle 41.
The circuit board 6 is provided with: the system comprises an ARM main control module, a photoelectric detection module, a motor control module and a signal transmission module, wherein the ARM main control module is respectively connected with the photoelectric detection module, the motor control module and the signal transmission module, and the signal transmission module is an SX1287 radio frequency module or a WIFI transmission module and is used for transmitting signals received by the ARM main control module to a monitoring host of a nurse station; photoelectric detection module is connected with photoelectric sensor 3, and motor control module is connected with gear motor 4 for control gear motor 4's operating condition, ARM host system is connected with bee calling organ 71, three-colour LED lamp 72, digital display screen 73, switch 74, still is provided with the USB interface 8 that is used for charging on the casing of right side.
During operation, through middle groove position, the transfusion system is placed the utility model discloses a spacing inslot, through reflective photoelectric sensor 3, the real-time detection liquid medicine drippage condition. During normal transfusion, the interception baffle 41 is in a retraction state, when liquid drops fall, the photoelectric signal changes, and the photoelectric detection module counts; the ARM main control module calculates the infusion flow rate to be x drops/minute by calculating the time difference between every two drops and displays the infusion flow rate on the digital display screen 73; when no liquid drop falls, the photoelectric signal is unchanged all the time, after 10 seconds, the ARM main control module performs alarming and intercepting actions, an indication LED red light flickers, the buzzer 71 starts alarming sound to prompt, the ARM main control module uploads the alarming information to the monitoring host through the SX1287 radio frequency module or the WIFI transmission module to be displayed, the motor control module controls the speed reducing motor 4 to act, the intercepting baffle 41 extends out, the infusion tube is pressed to intercept the alarming information so as to prevent blood return during infusion, and sufficient time is reserved for medical staff to replace liquid medicine; after the medical staff changes the liquid medicine, the switch 74 is pressed for a short time, the cut-off baffle 41 is retracted, and the liquid medicine circulates again.
The utility model discloses simple structure is fit for using widely.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (4)

1. The utility model provides an infusion remote monitoring device, is including fixed left side casing and the right side casing as an organic whole, its characterized in that: the left side casing is close to the position department that first spacing groove upper end is equipped with the baffle that dams that stretches out the indentation state through gear motor control between the left side casing and the right side casing from the top down has set gradually the first spacing groove that is used for the holding transfer line, is used for the second spacing groove of holding transfer line drip cup, and the left side casing is close to the position department that second spacing groove upper end and is equipped with photoelectric sensor, gear motor sets up in the left side casing, gear motor's below is provided with the power module to its power supply, is provided with the circuit board of being connected with photoelectric sensor, gear motor in the right side casing, and the side of right side casing is provided with the watch-dog panel, fixed mounting has bee calling organ, three-colour LED lamp, digital display screen, switch on the watch-.
2. The remote monitoring device for infusion according to claim 1, wherein: the circuit board is provided with: ARM host system, photoelectric detection module, motor control module, signal transmission module, ARM host system is connected with photoelectric detection module, motor control module, signal transmission module respectively, and photoelectric detection module is connected with photoelectric sensor, and motor control module is connected with gear motor, and ARM host system is connected with bee calling organ, three-colour LED lamp, digital display screen, switch.
3. The remote monitoring device for infusion according to claim 2, wherein: the signal transmission module is an SX1287 radio frequency module or a WIFI transmission module.
4. The remote monitoring device for infusion according to claim 1, wherein: and a USB interface for charging is also arranged on the right side shell.
CN202020857190.XU 2020-05-21 2020-05-21 Infusion remote monitoring device Active CN213100056U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020857190.XU CN213100056U (en) 2020-05-21 2020-05-21 Infusion remote monitoring device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020857190.XU CN213100056U (en) 2020-05-21 2020-05-21 Infusion remote monitoring device

Publications (1)

Publication Number Publication Date
CN213100056U true CN213100056U (en) 2021-05-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020857190.XU Active CN213100056U (en) 2020-05-21 2020-05-21 Infusion remote monitoring device

Country Status (1)

Country Link
CN (1) CN213100056U (en)

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