Breathing machine with double heating pipelines and intelligent alarm function
By designing a ventilator with dual heating tubing and intelligent alarm, and utilizing temperature and humidity detection and data processing modules, the problem of incorrect heating wire installation was solved, ensuring that the heating wire was correctly installed on the inspiratory branch, thus improving gas humidification and heating effects.
Patent Information
- Application Number
- CN202422788496.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-15
AI Technical Summary
In existing technologies, medical staff may mistakenly install the heating tubing onto the expiratory branch, resulting in the gas delivered to the patient by the ventilator not achieving good humidification and heating effects, and making it impossible to correctly determine whether the heating guidewire is installed on the inspiratory branch.
Design a ventilator with dual heating tubing and intelligent alarm. Through a temperature and humidity detection module and a data processing module, detect the temperature and humidity of the airflow and provide prompts on the ventilator to ensure that the heating guide wire is correctly installed on the inspiratory branch.
It provides correct prompts for the installation of the heating guide wire, ensuring that the heating guide wire is correctly installed on the intake branch, improving gas humidification and heating effects, and avoiding the risk of incorrect interface installation.
Smart Images

Figure CN223555299U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a breathing machine tool technical field especially, it relates to a double branch heating pipeline and intelligent alarm breathing machine. BACKGROUND
[0002] The breathing machine and humidifier are respectively independent medical products, the two products are used in combination, and the existing linkage relationship of the two products is as follows: 1. the breathing machine end remotely controls parameter setting of the humidifier; 2. the humidifier monitors parameters such as actual temperature, humidity and other information, and can be synchronized to the breathing machine end display, and the humidifier only collects the temperature and humidity of the two places of the humidification tank gas outlet and the patient end.
[0003] In the clinical mechanical ventilation treatment process, the gas of the breathing pipeline needs to be humidified and heated to protect the airway of the user. When heating, the humidifier supplies power to the heat guide wire to turn on the heating. The clinical double-branch heating pipeline type is divided into single-heating breathing pipeline (only heating the inhalation branch) and double-heating breathing pipeline (both the inhalation and exhalation branches are heated).
[0004] For the single-heating breathing circuit, in the actual clinical use scene, one side of the breathing machine has two pipeline interfaces, one is for exhalation and the other is for inhalation. In an emergency, medical staff are prone to mistakenly installing the heating pipeline into the exhalation branch (the heating part is usually the inhalation branch, and the inhalation branch and the exhalation branch are named with respect to the breathing direction of the user). The humidifier is only responsible for pipeline heating and cannot feedback whether the heating guide wire is installed in the inhalation branch or the exhalation branch. If the heating guide wire is only installed in the exhalation branch, the gas delivered to the patient by the breathing machine cannot achieve good humidification and heating effect, and the breathing machine cannot assist the user in judging whether the heating guide wire is installed in the correct breathing branch.
[0005] Therefore, it is necessary to provide a double-branch heating pipeline and intelligent alarm breathing machine to provide correct prompts for the installation of the heating guide wire in the breathing pipeline, so that the heating guide wire is correctly installed in the inhalation branch. Utility model content
[0006] To solve the above problems, the utility model provides a double-branch heating pipeline and intelligent alarm breathing machine to provide correct prompts for the installation of the heating guide wire in the breathing pipeline, so that the heating guide wire is correctly installed in the inhalation branch.
[0007] The utility model realizes the following technical schemes:
[0008] The utility model provides a double support heating pipeline, including connecting piece, two connecting pipeline components, heating filament cylinder, one end of connecting piece is fixedly connected with one end of two connecting pipeline components respectively and is conducted, heating filament cylinder is placed in the other end of one connecting pipeline component, be equipped with the temperature and humidity detection module for detecting the temperature and humidity of the airflow in two connecting pipeline components on connecting piece, temperature and humidity detection module is close to one end of two connecting pipeline components.
[0009] Further, two connecting ports are arranged on the connecting piece, one end of the two connecting ports is fixedly connected with one end of the two connecting pipeline components respectively and is conducted, the temperature and humidity detection module comprises two temperature and humidity sensors, the two temperature and humidity sensors are fixedly connected with the connecting piece respectively, one end of the two temperature and humidity sensors respectively extends to the inside of the two connecting ports.
[0010] Further, a humidifier for humidifying the airflow in the connecting pipeline component is further arranged on the connecting pipeline component.
[0011] Further, the heating filament cylinder has two, and the two heating filament cylinders are respectively placed in the two connecting pipeline components.
[0012] Further, one end of the connecting pipeline component is provided with an inlet piece, and the inlet piece is connected with the breathing machine and is conducted.
[0013] Further, a temperature sensor is arranged in the inlet piece, and one end of the temperature sensor extends to the inside of the heating filament cylinder.
[0014] A breathing machine with intelligent alarm, according to the double support heating pipeline described above, comprising a breathing machine, the breathing machine is connected with two connecting pipeline components and is conducted, a data processing module is arranged in the breathing machine, an alarm module is arranged on one side of the breathing machine, the data processing module is electrically connected with the alarm module and the temperature and humidity detection module respectively, the data processing module is used for receiving the temperature and humidity data and the feedback signal returned from the temperature and humidity detection module, and delivering corresponding operation instructions to the alarm module.
[0015] Further, the alarm module has two, and the two alarm modules are electrically connected with the data processing module, and the two alarm modules correspond to the two connecting pipeline components respectively.
[0016] Further, the alarm module comprises an alarm lamp, and the alarm lamp is located on one side of the breathing machine and is aligned with the connecting pipeline component.
[0017] Further, the alarm module further comprises a sound prompter, and the sound prompter is located on one side of the breathing machine and is aligned with the connecting pipeline component.
[0018] The utility model discloses the beneficial effect of:
[0019] 1. The utility model provides a double -branch heating pipeline, including connecting piece, two connecting pipeline subassembly, heating filament cylinder, when using, the user connects the tracheal cannula through connecting piece, then places heating filament cylinder in one connecting pipeline subassembly, and the connecting pipeline subassembly that places heating filament cylinder is the pipeline for inhaling, and the connecting pipeline subassembly that does not place heating filament cylinder is the pipeline for exhaling, be equipped with the temperature and humidity detection module for detecting the temperature and humidity of airflow in two connecting pipeline subassembly on connecting piece, and two connecting pipeline subassembly are connected into breathing machine, and the user breathes for a period of time, if the temperature and humidity detection module does not detect that airflow heats up to the preset temperature and humidity, then show that the connecting pipeline subassembly that places heating filament cylinder is connected to the exhale interface of breathing machine, when temperature and humidity detection module then will feed back a signal to breathing machine to prompt wrong interface connection.
[0020] 2. The utility model provides a breathing machine of intelligent alarm is equipped with data processing module in breathing machine, one side of breathing machine is equipped with alarm module, if the connecting pipeline subassembly that places heating filament cylinder is connected to the exhale interface of breathing machine, then temperature and humidity detection module can not detect that airflow heats up to the preset temperature and humidity, after data processing module receives the temperature and humidity data and the signal of feedback from temperature and humidity detection module, then corresponding operation instruction is delivered to alarm module, so that alarm module prompts the user, after the user connects the connecting pipeline subassembly that places heating filament cylinder to the inhale interface of breathing machine, temperature and humidity detection module can detect that airflow heats up to the preset temperature and humidity in the preset time, after data processing module receives the temperature and humidity data and the signal of feedback from temperature and humidity detection module, then stop instruction is delivered to alarm module, and alarm module is closed.
[0021] Summarized above, the double -branch heating pipeline and the breathing machine of intelligent alarm of this can provide correct prompt to the installation of heating guide wire in the pipeline, so that heating guide wire is correctly installed on the inhale branch. ACCURATE DRAWINGS
[0022] Figure 1 It is the exploded view of the double -branch heating pipeline and the breathing machine of intelligent alarm of the utility model;
[0023] Figure 2 It is Figure 1 The local enlarged view of sign A;
[0024] Figure 3 It is the connecting piece sectional view of the double -branch heating pipeline of the utility model;
[0025] Figure 4The utility model discloses a double heating pipeline's inlet piece schematic view of connecting piece.
[0026] Figure 5 The utility model discloses a double heating pipeline's inlet piece schematic view of connecting piece.
[0027] The signs are as follows:
[0028] Connecting piece 1, temperature and humidity detection module 11, temperature and humidity sensor 111, connecting port 12.
[0029] Connecting pipe assembly 2, humidifier 21, inlet piece 22, temperature sensor 221.
[0030] Heating wire cylinder 3.
[0031] Respirator 4, data processing module 41, alarm module 42, alarm lamp 421, sound prompter 422. Specific implementation
[0032] In order to more clearly complete the technical scheme of the utility model, the utility model is further explained below in conjunction with the drawings.
[0033] Please refer to Figures 1-5 The utility model provides a double heating pipeline, including connecting piece 1, two connecting pipe assemblies 2, heating wire cylinder 3, and the one end of connecting piece 1 is fixedly connected with the one end of two connecting pipe assemblies 2 respectively and is conducted, and heating wire cylinder 3 is placed in the other end of one connecting pipe assembly 2, and two temperature and humidity detection modules 11 for detecting the temperature and humidity of airflow in two connecting pipe assemblies 2 are equipped on connecting piece 1, and temperature and humidity detection module 11 is close to the one end of two connecting pipe assemblies 2, and heating wire cylinder 3 and temperature and humidity detection module 11 are electrically connected with respirator 4.
[0034] In the embodiment, in use, the user connects the tracheal cannula through connecting piece 1, then places heating wire cylinder 3 in one connecting pipe assembly 2, and the connecting pipe assembly 2 where heating wire cylinder 3 is placed is the pipeline for inhaling, and the other connecting pipe assembly 2 without heating wire cylinder 3 is the pipeline for exhaling, and temperature and humidity detection module 11 for detecting the temperature and humidity of airflow in two connecting pipe assemblies 2 is equipped on connecting piece 1, and two connecting pipe assemblies 2 are connected into respirator 4, and after the user breathes for a period of time, if temperature and humidity detection module 11 does not detect that airflow is heated to the preset temperature and humidity within the preset time, then it shows that the connecting pipe assembly 2 where heating wire cylinder 3 is placed is connected to the exhale interface of respirator 4, and at this moment, temperature and humidity detection module 11 will feed back a signal to respirator 4, and respirator 4 will prompt that the interface of connecting pipe assembly 2 is connected wrongly.
[0035] In the embodiment, the connecting piece 1 is provided with two connecting ports 12, the two connecting ports 12 are fixedly connected with and conductive to one end of the two connecting pipeline assemblies 2 respectively, the temperature and humidity detection module 11 comprises two temperature and humidity sensors 111, the two temperature and humidity sensors 111 are fixedly connected with the connecting piece 1 respectively, and one end of the two temperature and humidity sensors 111 respectively extends to the inside of the two connecting ports 12; when the user's tracheal cannula is connected with the connecting piece 1 and the breathing machine 4 is started to breathe, the two temperature and humidity sensors 111 detect the temperature and humidity values of the airflow in the connecting port 12 to determine whether the user's inhalation pipeline is opened to heat; in the detection process, as long as one of the temperature and humidity sensors 111 detects that the airflow is heated to a preset temperature and humidity within a preset time, it is indicated that the connecting pipeline assembly 2 in which the heating wire cylinder 3 is placed is connected to the correct port, and if both of the temperature and humidity sensors 111 do not detect that the airflow is heated to the preset temperature and humidity within the preset time, it is indicated that the connecting pipeline assembly 2 in which the heating wire cylinder 3 is placed is connected to the wrong port.
[0036] In the embodiment, the connecting pipeline assembly 2 is further provided with a humidifier 21 for humidifying the airflow in the connecting pipeline assembly 2, the humidifier 21 is electrically connected with the breathing machine 4 through a conductive wire, and the humidifier 21 is uniformly powered by the breathing machine 4; after the breathing machine 4 judges that the port is connected to the wrong port, the power supply of the humidifier 21 is disconnected until the power supply is restored after the port is connected to the correct port.
[0037] In the embodiment, the heating wire cylinder 3 has two, and the two heating wire cylinders 3 are placed in the two connecting pipeline assemblies 2 respectively; in order to save the time for reconnection after the wrong connection, the heating wire cylinder 3 is provided as two and placed in the two connecting pipeline assemblies 2 respectively, the two heating wire cylinders 3 are electrically connected with the breathing machine 4, and after it is judged that the port is connected to the wrong port, the power supply of the heating wire cylinder 3 in the connecting pipeline assembly 2 for exhalation is disconnected, and then the heating wire cylinder 3 in the connecting pipeline assembly 2 for inhalation is directly started, so that the two connecting pipeline assemblies 2 do not need to be pulled out and then connected again.
[0038] In the embodiment, one end of the connecting pipeline assembly 2 is provided with a connecting inlet piece 22, the connecting inlet piece 22 is connected with and conductive to the breathing machine 4, and the connecting inlet piece 22 is used for connecting with the exhalation port or the inhalation port of the breathing machine 4, so as to facilitate the manual connection of the connecting pipeline assembly 2.
[0039] In the embodiment, the temperature sensor 221 is arranged in the inlet part 22, one end of the temperature sensor 221 extends to the inside of the heating wire cylinder 3, and the temperature sensor 221 is used to detect whether the heating wire cylinder 3 normally heats to the preset temperature, and then feedback to the breathing machine 4, so that the temperature of the heating end can be compared with the temperature of the breathing end, the heating temperature and the breathing temperature are displayed on the display screen of the breathing machine 4, and finally the temperature loss is judged, and then accurate temperature adjustment can be carried out under different room temperatures.
[0040] Please refer to Figures 1-3 、 Figure 5 , an intelligent alarm breathing machine, according to the above-mentioned double-branch heating pipeline, comprising a breathing machine 4, the breathing machine 4 is connected with two connecting pipeline assemblies 2 and is in conduction, the breathing machine 4 is provided with a data processing module 41 and a driving module, one side of the breathing machine 4 is provided with an alarm module 42, the heating wire cylinder 3 and the humidifier 21 are electrically connected with the driving module, the driving module is used to issue operation instructions to the heating wire cylinder 3 and the humidifier 21 to make them work, the data processing module 41 is electrically connected with the alarm module 42, the temperature and humidity detection module 111 and the temperature sensor 221, the data processing module 41 is used to receive the temperature and humidity data and the feedback signal returned by the temperature and humidity detection module 111, and also receive the temperature data signal from the temperature sensor 221, and issue corresponding operation instructions to the alarm module 42.
[0041] In the embodiment, in use, the breathing machine 4 maintains a normal breathing program, if the connecting pipeline assembly 2 provided with the heating wire cylinder 3 is connected to the exhalation interface of the breathing machine 4, at this time, the temperature and humidity detection module 11 fails to detect that the airflow is heated to the preset temperature and humidity, after the data processing module 41 receives the temperature and humidity data and the feedback signal returned by the temperature and humidity detection module 11, it is judged that the interface is connected incorrectly, then the data processing module 41 issues corresponding operation instructions to the alarm module 42, so that the alarm module 42 prompts the user, after the user connects the connecting pipeline assembly 2 provided with the heating wire cylinder 3 to the inhalation interface of the breathing machine 4, the temperature and humidity detection module 11 can detect that the airflow is heated to the preset temperature and humidity within a preset time, after the data processing module 41 receives the temperature and humidity data and the feedback signal returned by the temperature and humidity detection module 11, it is judged that the interface is connected correctly, then the data processing module 41 issues a stop instruction to the alarm module 42, and the alarm module 42 is closed;
[0042] In summary, the double-branch heating pipeline and the intelligent alarm breathing machine can provide correct prompts for the installation of the heating guide wire in the pipeline, so that the heating guide wire is correctly installed on the inhalation branch.
[0043] In the embodiment, the alarm module 42 is shared by two, and the two alarm modules 42 are electrically connected with the data processing module 41, and the two alarm modules 42 correspond to the two connecting pipeline assemblies 2 respectively. After the connecting pipeline assembly 2 in which the heating wire cylinder 3 is placed is connected to the exhalation interface, the connecting pipeline assembly 2 in which the heating wire cylinder 3 is placed forms an exhalation branch. After the data processing module 41 receives the temperature and humidity data and the feedback signal returned by the temperature and humidity detection module 11 and judges that the interface is connected incorrectly, the corresponding alarm module 42 prompts the user that the interface is connected incorrectly. If there are two heating wire cylinders 3, the two connecting pipeline assemblies 2 both have the heating wire cylinder 3, and when one of the heating wire cylinders 3 fails to correctly heat, the corresponding alarm module 42 prompts the user that the heating wire cylinder 3 is faulty.
[0044] In the embodiment, the alarm module 42 includes an alarm lamp 421, and the alarm lamp 421 is located on one side of the breathing machine 4 and is aligned with the connecting pipeline assembly 2. After the interface is connected incorrectly, the alarm lamp 421 flashes red at an interval to prompt, and after the heating wire cylinder 3 is faulty, the alarm lamp 421 flashes yellow at an interval to prompt.
[0045] In the embodiment, the alarm module 42 further includes a sound prompter 422, and the sound prompter 422 is located on one side of the breathing machine 4 and is aligned with the connecting pipeline assembly 2. The sound prompter 422 can be a buzzer or a loudspeaker. After the interface is connected incorrectly, if the sound prompter 422 is a buzzer, the sound prompter 422 beeps at an interval, and after the heating wire cylinder 3 is faulty, the sound prompter 422 also beeps at an interval. If the sound prompter 422 is a loudspeaker, after the interface is connected incorrectly, the sound prompter 422 plays a first preset voice prompt, for example, “the interface is connected incorrectly, please reconnect”, and after the heating wire cylinder 3 is faulty, the sound prompter 422 plays a second preset voice prompt, for example, “the heating wire is faulty, please check the heating wire”.
[0046] Of course, the utility model also can have other various implementation manners, based on the embodiment, the ordinary skill person in the art obtains other implementation manners without any creative labor, all belong to the range that the utility model protects.
Claims
1. A dual-branch heating line, characterized by, The utility model relates to a kind of humidification device for breathing machine, including connecting piece, two connecting pipe assemblies, heating wire cylinder, one end of the connecting piece is respectively fixedly connected with the one end of two connecting pipe assemblies and is conducted, the heating wire cylinder is placed in the other end of one connecting pipe assembly, temperature and humidity detection module for detecting the temperature and humidity of airflow in two connecting pipe assemblies is equipped on the connecting piece, and the temperature and humidity detection module is close to the one end of two connecting pipe assemblies.
2. The dual-branch heating line of claim 1, wherein, Two connecting ports are equipped on the connecting piece, and the two connecting ports are respectively fixedly connected with the one end of two connecting pipe assemblies and are conducted, the temperature and humidity detection module includes two temperature and humidity sensors, and the two temperature and humidity sensors are respectively fixedly connected with the connecting piece, and one end of the two temperature and humidity sensors respectively extends to the inside of two connecting ports.
3. The dual-branch heating line of claim 1, wherein, The connecting pipe assembly is further provided with a humidifier for humidifying the airflow inside the connecting pipe assembly.
4. The dual-branch heated line of claim 1, wherein, The heating wire cylinder has two, and the two heating wire cylinders are respectively placed in two connecting pipe assemblies.
5. The dual-branch heating line of claim 1, wherein, One end of the connecting pipe assembly is provided with an inlet piece, and the inlet piece is connected with the breathing machine and is conducted.
6. The dual-branch heating line of claim 5, wherein, A temperature sensor is arranged in the inlet piece, and one end of the temperature sensor extends to the inside of the heating wire cylinder.
7. A smart alarming breathing machine, according to any one of claims 1-6, characterized by, The utility model relates to a kind of humidification device for breathing machine, including breathing machine, and the breathing machine is connected with two connecting pipe assemblies and is conducted, data processing module is arranged in the breathing machine, one side of the breathing machine is equipped with alarm module, the data processing module is respectively electrically connected with the alarm module, temperature and humidity detection module, the data processing module is used to receive the temperature and humidity data and the signal of feedback returned from the temperature and humidity detection module, and corresponding operation instruction is sent to the alarm module.
8. The ventilator of claim 7, wherein, The alarm module has two, and the two alarm modules are electrically connected with the data processing module, and the two alarm modules are respectively corresponding to two connecting pipe assemblies.
9. The ventilator of claim 8, wherein, The alarm module includes alarm lamp, and the alarm lamp is located at one side of the breathing machine and is aligned with the connecting pipe assembly.
10. The ventilator of claim 8, wherein, The alarm module further includes sound prompter, and the sound prompter is located at one side of the breathing machine and is aligned with the connecting pipe assembly.