Humidification type oxygen inhalation nursing device

By designing a portable humidified oxygen therapy device, using a corrosion-resistant plastic shell and a battery power system, the problem of traditional devices being bulky and difficult to carry has been solved, enabling patients to use oxygen therapy anytime and anywhere, thus improving their quality of life.

CN224141313UActive Publication Date: 2026-04-21张丽
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
张丽
Filing Date
2024-12-31
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Traditional humidified oxygen therapy devices are bulky, inconvenient to move and carry, and cannot meet the needs of patients who need oxygen therapy year-round to use them anytime and anywhere.

Method used

A humidifying oxygen therapy device was designed, which uses a high-strength corrosion-resistant plastic shell and includes an atomizer, a battery power supply system and a hook structure. It can be carried around without a fixed power source and uses a detection block and alarm light to indicate oxygen consumption, ensuring continuous oxygen supply.

Benefits of technology

This invention enables a compact and portable humidified oxygen therapy device that can provide oxygen therapy to patients anytime, anywhere, improving their quality of life and self-management ability, and avoiding the risk of oxygen depletion.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a humidification type oxygen uptake nursing device, relates to medical care equipment field, the humidification type oxygen uptake nursing device of the utility model discloses a humidification type oxygen uptake nursing device, including equipment shell, the lower end of equipment shell is connected with a protective sleeve shell, the equipment shell is internally connected with an atomizer, the lower end of the atomizer is connected with a pipette, and the pipette is connected with the lower end of the atomizer. A liquid suction head is connected to the lower end of the liquid suction pipe, a liquid medicine bottle is arranged in the protective sleeve shell, and a connecting ring is connected to the upper end of the liquid medicine bottle. The atomizer is arranged, oxygen liquid in the liquid medicine bottle is sucked into the atomizer through the liquid suction head and the liquid suction pipe and then atomized, so that oxygen is provided for a patient, the device is simple in structure, convenient to operate and small in size, a user can carry and use the device anytime and anywhere, the device does not need to be limited to hospitals or homes, and the patient needing oxygen therapy all the year round is more convenient to use. By means of the device, people can better integrate into the society and life, and the life quality and the self-management ability are improved.
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Description

Technical Field

[0001] This utility model relates to the field of medical equipment technology, and in particular to a humidifying oxygen inhalation nursing device. Background Technology

[0002] Oxygen therapy, or inhalation of oxygen, is a commonly used clinical treatment method. Oxygen therapy is mainly a way to relieve hypoxia. Appropriate oxygen inhalation is used to correct hypoxia, increase the level of arterial blood oxygen partial pressure and oxygen saturation, and promote metabolism. It is one of the important methods to assist in the treatment of a variety of diseases. In order to avoid the discomfort caused by dry mouth and nose due to prolonged inhalation, many patients choose humidified oxygen inhalation equipment.

[0003] However, while traditional humidified oxygen therapy devices are effective, they are bulky, inconvenient to move and carry. For patients with mild symptoms who require oxygen therapy year-round, they cannot be carried and used anytime and anywhere, and their limitations and lack of flexibility make them unsuitable for this group of patients.

[0004] To solve this technical problem, this utility model proposes a humidifying oxygen inhalation nursing device. Utility Model Content

[0005] The main objective of this invention is to provide a humidifying oxygen inhalation nursing device that can effectively solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0007] A humidifying oxygen therapy device includes a housing, a protective sleeve connected to the lower end of the housing, a nebulizer connected inside the housing, a suction tube connected to the lower end of the nebulizer, a suction head connected to the lower end of the suction tube, a medicine bottle inside the protective sleeve, a connecting ring connected to the upper end of the medicine bottle, a sealing ring connected to the lower end of the housing, a controller connected to the outer end of the housing, a battery housing connected to the outer end of the housing, a battery compartment inside the battery housing, and a hook connected to the outer end of the protective sleeve.

[0008] Preferably, the outer shell and protective cover of the device are made of high-strength, corrosion-resistant plastic. The lower end of the protective cover is open, the upper end of the atomizer is a mist outlet, and the lower end is a liquid inlet. The liquid inlet is connected to a liquid inlet tube.

[0009] Preferably, the suction tube and the suction head are both located inside the medicine bottle, the radius of the mouth of the medicine bottle is larger than the radius of the suction head, and the upper end of the mouth of the medicine bottle is connected to a sealing ring, which is a rubber ring.

[0010] Preferably, the protective sleeve has a first threaded groove inside, the connecting ring has a second threaded groove at its outer end, the connecting ring is located inside the first threaded groove, and the first threaded groove and the second threaded groove are threadedly connected.

[0011] Preferably, a plug is provided inside the battery housing, which is connected to the battery block. The battery housing is connected to the controller via a wire, and an alarm light is connected to the side of the controller.

[0012] Preferably, a detection block is connected to the lower end of the suction head. The detection block is a hollow block with rectangular holes at its four ends. A detection button is connected inside the detection block and is connected to the controller for data transmission. A floating block is slidably connected inside the detection block, and the density of the floating block is less than that of the drug solution.

[0013] Preferably, the protective casing has an observation window, the upper end of the equipment shell is connected to an air-gathering hopper, the upper end of the air-gathering hopper is connected to an air supply pipe, and the tail end of the air supply pipe is connected to a breathing mask.

[0014] Compared with the prior art, the present invention has the following beneficial effects:

[0015] This invention features a nebulizer that draws oxygen from a medicine bottle into the device via a suction head and tube, then atomizes the oxygen to provide oxygen to the patient. A battery provides power to the nebulizer and controller, allowing the device to operate independently of a fixed power source and be carried easily. A hook allows the device to be hung on the waist for convenient transport. The device is simple in structure, easy to operate, and compact, enabling users to carry and use it anytime, anywhere, not limited to hospitals or homes. For patients requiring year-round oxygen therapy, this device helps them better integrate into society and life, improving their quality of life and self-management abilities.

[0016] In this invention, a detection block and an alarm light are provided. When the oxygen in the medicine bottle is about to run out, the alarm light will sound an alarm to remind the user to replenish or replace it in time. Specifically, when the detection block is submerged in the oxygen in the medicine bottle, the floating block, due to its low density, will float. At this time, the floating block will not contact the detection button. When the remaining amount of oxygen in the medicine bottle is insufficient, the oxygen cannot submerge the floating block, and the floating block will not float. This will trigger the detection button, which will then transmit this information to the controller, causing the controller to activate the alarm light. This prevents the user from unknowingly running out of oxygen and interrupting oxygen therapy. Attached Figure Description

[0017] Figure 1This is a schematic diagram of the overall structure of a humidifying oxygen inhalation nursing device according to the present invention;

[0018] Figure 2 This is a schematic diagram of the rear structure of a humidifying oxygen inhalation nursing device according to the present invention;

[0019] Figure 3 This is a schematic diagram of the liquid bottle structure of a humidifying oxygen inhalation nursing device according to the present invention;

[0020] Figure 4 This is a schematic cross-sectional view of the outer casing of a humidifying oxygen inhalation nursing device according to the present invention;

[0021] Figure 5 This is a schematic cross-sectional view of the medicine bottle of a humidifying oxygen inhalation nursing device according to this utility model;

[0022] Figure 6 This utility model relates to a humidifying oxygen inhalation nursing device. Figure 5 Schematic diagram of area A.

[0023] In the diagram: 1. Equipment casing; 2. Protective cover; 3. Nebulizer; 4. Suction tube; 5. Suction head; 6. Medicine bottle; 7. Connecting ring; 8. Sealing ring; 9. Controller; 10. Battery housing; 11. Battery block; 12. Hook; 13. First threaded groove; 14. Second threaded groove; 15. Alarm light; 16. Detection block; 1601. Detection button; 1602. Floating block; 17. Air collection hopper; 18. Air delivery pipe. Detailed Implementation

[0024] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0025] like Figure 1-6 As shown, a humidifying oxygen inhalation nursing device includes a device housing 1, with a protective sleeve 2 connected to the lower end of the device housing 1. A medicine bottle 6 is disposed inside the protective sleeve 2. The protective sleeve 2 is used to protect the medicine bottle 6 from accidental collision and damage. Both the device housing 1 and the protective sleeve 2 are made of high-strength, corrosion-resistant plastic. It has high hardness and will not be easily damaged by collision. It also has good corrosion resistance, which can effectively extend the service life of the device. Moreover, plastic is lighter than metal, making it more convenient for patients to carry.

[0026] A nebulizer 3 is connected inside the outer casing 1 of the device. The nebulizer 3 can atomize liquid. The lower end of the nebulizer 3 is connected to a suction tube 4, and the lower end of the suction tube 4 is connected to a suction head 5. Both the suction tube 4 and the suction head 5 are located inside the medicine bottle 6. The upper end of the nebulizer 3 is the mist outlet, and the lower end is the suction port. The suction port is connected to the suction tube 4. When the nebulizer 3 is activated, it will draw oxygen liquid from the medicine bottle 6 through the suction head 5 and the suction tube 4, and then atomize the oxygen liquid to provide oxygen to the patient.

[0027] The radius of the mouth of the liquid medicine bottle 6 is larger than the radius of the suction head 5, so that the suction head 5 can be inserted into the liquid medicine bottle 6. An observation window is provided inside the protective shell 2, which allows the user to observe the use of the liquid medicine bottle 6. An air-gathering bucket 17 is connected to the upper end of the equipment shell 1, and an air delivery pipe 18 is connected to the upper end of the air-gathering bucket 17. A breathing mask is connected to the tail end of the air delivery pipe 18. The air-gathering bucket 17 can gather the mist generated by the nebulizer 3 into the air delivery pipe 18.

[0028] A connecting ring 7 is connected to the upper end of the medicine bottle 6. A first threaded groove 13 is opened inside the protective sleeve 2, and a second threaded groove 14 is opened at the outer end of the connecting ring 7. The connecting ring 7 is located inside the first threaded groove 13. The first threaded groove 13 and the second threaded groove 14 are threadedly connected. In this way, the medicine bottle 6 can be connected and fixed inside the protective sleeve 2 through the connecting ring 7. A sealing ring 8 is connected to the lower end of the equipment shell 1. The upper end of the bottle mouth of the medicine bottle 6 is connected to the sealing ring 8. The sealing ring 8 is a rubber ring. The sealing ring 8 is used to seal the bottle mouth of the medicine bottle 6 to prevent outside air from entering the medicine bottle 6 through the bottle mouth, thereby preventing contamination of the oxygen liquid inside.

[0029] A controller 9 is connected to the outer end of the device housing 1. The controller 9 is used to control the operation of the atomizer 3. A battery housing 10 is also connected to the outer end of the device housing 1. A battery block 11 is installed inside the battery housing 10. The battery block 11 is used to provide power to the atomizer 3. The battery housing 10 is used to house the battery block 11. The battery block 11 can be replaced, thus preventing the device from running out of power. A plug is installed inside the battery housing 10, which is connected to the battery block 11. The battery housing 10 is connected to the controller 9 through a wire, so that the power of the battery block 11 can be transmitted to the controller 9. A hook 12 is connected to the outer end of the protective cover 2. The hook 12 allows the user to hang the device on their waist for easy carrying.

[0030] An alarm light 15 is connected to the side of the controller 9, and a detection block 16 is connected to the lower end of the liquid suction head 5. The detection block 16 is a hollow block with rectangular holes at its four ends, allowing liquid to enter the detection block 16 through these rectangular holes. A detection button 1601 is connected inside the detection block 16, and the detection button 1601 is connected to the controller 9 for data transmission. When the detection button 1601 is triggered, it can transmit a signal to the controller 9, thereby enabling the controller 9 to activate the alarm light 15. A floating block 1602 is slidably connected inside the detection block 16. The density of the floating block 1602 is less than that of the oxygen liquid, so when the floating block 1602 is submerged in the oxygen liquid, it will float up and separate from the detection button 1601.

[0031] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A humidified oxygen therapy device comprising a device housing (1), characterised in that: The lower end of the device housing (1) is connected to a protective sleeve (2). An atomizer (3) is connected inside the device housing (1). A suction tube (4) is connected to the lower end of the atomizer (3). A suction head (5) is connected to the lower end of the suction tube (4). A medicine bottle (6) is provided inside the protective sleeve (2). A connecting ring (7) is connected to the upper end of the medicine bottle (6). A sealing ring (8) is connected to the lower end of the device housing (1). A controller (9) is connected to the outer end of the device housing (1). A battery housing (10) is connected to the outer end of the device housing (1). A battery block (11) is provided inside the battery housing (10). A hook (12) is connected to the outer end of the protective sleeve (2).

2. The humidified oxygen therapy device of claim 1, wherein: The outer shell (1) and protective cover (2) of the device are both made of high-strength, corrosion-resistant plastic. The lower end of the protective cover (2) is open. The upper end of the atomizer (3) is a mist outlet and the lower end is a liquid inlet. The liquid inlet is connected to the liquid inlet tube (4).

3. The humidified oxygen therapy device of claim 1, wherein: The suction tube (4) and suction head (5) are both located inside the medicine bottle (6). The radius of the mouth of the medicine bottle (6) is larger than the radius of the suction head (5). The upper end of the mouth of the medicine bottle (6) is connected to the sealing ring (8), which is a rubber ring.

4. The humidified oxygen therapy device of claim 1, wherein: The protective sleeve (2) has a first threaded groove (13) inside, and the connecting ring (7) has a second threaded groove (14) at its outer end. The connecting ring (7) is located inside the first threaded groove (13), and the first threaded groove (13) and the second threaded groove (14) are threadedly connected.

5. The humidified oxygen therapy device of claim 1, wherein: The battery housing (10) is provided with a plug, which is connected to the battery block (11). The battery housing (10) is connected to the controller (9) by a wire. An alarm light (15) is connected to the side of the controller (9).

6. The humidified oxygen therapy device of claim 1, wherein: The lower end of the suction head (5) is connected to a detection block (16). The detection block (16) is a hollow block with rectangular holes at its four ends. A detection button (1601) is connected inside the detection block (16). The detection button (1601) is connected to the controller (9) via data. A floating block (1602) is slidably connected inside the detection block (16). The density of the floating block (1602) is less than that of the liquid medicine.

7. The humidified oxygen therapy device of claim 1, wherein: An observation window is provided inside the protective casing (2). An air-gathering hopper (17) is connected to the upper end of the equipment casing (1). An air-transmitting pipe (18) is connected to the upper end of the air-gathering hopper (17). A breathing mask is connected to the tail end of the air-transmitting pipe (18).