Portable atomization device and atomization system
By designing a portable nebulizer, the problem of existing nebulizers requiring an external power source is solved, achieving portability and ease of operation, reducing configuration costs, and enabling efficient liquid nebulization anywhere.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CANSINO BIOLOGICS INC
- Filing Date
- 2024-12-20
- Publication Date
- 2026-04-10
AI Technical Summary
Existing atomizing devices require an external power supply, resulting in high configuration costs and inconvenience in carrying them between different locations.
A portable nebulizer was designed, including a housing, a nebulizer, and a controller. The housing is used to store and carry the nebulizer and the controller. The nebulizer is electrically connected to the controller via a cable. The controller controls the operation of the nebulizer. The mist storage device can be placed in the housing space to achieve convenient liquid nebulization.
It achieves portability and ease of operation of the nebulizer, reduces configuration costs, and enables efficient liquid nebulization of medicines anywhere.
Smart Images

Figure CN224099777U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to atomization field especially, it relates to a portable atomization device and atomization system. BACKGROUND
[0002] Atomization device is often used in medical or vaccine inhalation field, inserts the atomizer at the atomization mouth of the mist storage device, drives the atomization mesh high frequency vibration of the atomizer through power supply of the atomizer, thereby atomizes the medical liquid or vaccine liquid in the liquid container. The prior art atomization device needs external power supply to work, so the atomization device can only be fixedly arranged in the hospital or other public places, which increases the configuration cost of the atomization device, and in addition, the atomization device has many components, and is not convenient to carry between different places. SUMMARY
[0003] The utility model provides a kind of portable atomization device and atomization system.
[0004] Specifically, the utility model is realized by the following technical scheme:
[0005] First, the utility model embodiment provides a kind of portable atomization device, for generating medical or vaccine drug mist to mist storage device, mist storage device is at least provided with atomization mouth, the portable atomization device includes:
[0006] Accommodating box is provided with box and lid, box and lid jointly define accommodating space, at least first accommodating part is provided in accommodating space, first accommodating part is formed to be with the shape of the bottom of mist storage device adaptation, to be suitable for in the open state of lid and box, mist storage device can be placed in first accommodating part;
[0007] Atomizer is provided with liquid container and atomization mesh, atomizer is used to insert at the atomization mouth of mist storage device, and after liquid atomization, it is injected into mist storage device by atomization mouth, wherein, in the closed state of lid and box, atomizer can be placed in the accommodating space;
[0008] Controller is electrically connected with atomizer by cable, to control atomizer to carry out atomization work.
[0009] In some embodiments, the mist storage device is a mist storage cup, the first accommodating part is arranged as an annular protrusion, the inner periphery of the annular protrusion is adapted to the shape of the bottom of the mist storage cup, and can be elastically deformed radially outward.
[0010] In some embodiments, the annular protrusion is formed as a petal-shaped structure.
[0011] In some embodiments, a second accommodating portion is further arranged in the accommodating space, and the second accommodating portion is formed to be matched with the shape of the atomizer, so that the atomizer can be placed in the second accommodating portion when the box cover and the box body are in the closed state.
[0012] In some embodiments, the controller is arranged as a movable controller, and a power interface is arranged on the box body, and the controller is detachably electrically connected with the power interface.
[0013] In some embodiments, a step is formed on the box body outside the accommodating space, and the power interface is arranged on the surface of the step, and the controller can be placed on the surface of the step when the controller is electrically connected with the power interface.
[0014] In some embodiments, the controller is provided with an input interface and an output interface, the output interface is electrically connected with the atomizer through a cable, and the input interface is selectively connected with an external power supply.
[0015] In some embodiments, the controller is provided with a liquid medicine detection module, and the liquid medicine detection module is used to control detection of a liquid medicine exhaustion state in a liquid medicine container.
[0016] In some embodiments, the controller is provided with a cleaning module, and the cleaning module is used to control liquid in the liquid medicine container to clean the atomization mesh.
[0017] In some embodiments, the controller is provided with an atomization working module, and the atomization working module is used to control the liquid medicine in the liquid medicine container to be atomized by the atomization mesh.
[0018] In a second aspect, the utility model provides a kind of atomization system, comprising:
[0019] The fog storage device is provided with at least an atomization port;
[0020] The portable atomization device is used to generate medical or vaccine fog in the fog storage device, and the portable atomization device comprises:
[0021] The accommodating box is provided with a box body and a box cover, and the box body and the box cover jointly define an accommodating space;
[0022] The atomizer is provided with a liquid medicine container and an atomization mesh, and the atomizer is used to be inserted at the atomization port of the fog storage device and inject the atomized liquid medicine into the fog storage device through the atomization port, wherein the atomizer can be placed in the accommodating space when the box cover and the box body are in the closed state.
[0023] The controller is electrically connected with the atomizer through a cable to control the atomizer to perform atomization work.In some embodiments, at least a first accommodating portion is arranged in the accommodating space, and the first accommodating portion is formed to be matched with the shape of the bottom of the fog storage device, so that the fog storage device can be placed in the first accommodating portion when the box cover and the box body are in the open state.
[0024] In some embodiments, the mist storage device is a mist storage cup, and the first accommodating portion is arranged as an annular protrusion, the inner periphery of the annular protrusion is matched with the shape of the bottom of the mist storage cup, and the annular protrusion is elastically deformable radially outward.
[0025] In some embodiments, the annular protrusion is formed as a petal-shaped structure.
[0026] In some embodiments, a second accommodating portion is further arranged in the accommodating space, and the second accommodating portion is formed to be matched with the shape of the atomizer, so that the atomizer can be placed in the second accommodating portion when the box cover and the box body are in the closed state.
[0027] In some embodiments, the controller is arranged as a movable controller, the box body is provided with a power interface, and the controller is detachably electrically connected with the power interface.
[0028] In some embodiments, the box body is formed with a step outside the accommodating space, the power interface is arranged on the surface of the step, and the controller can be placed on the surface of the step when the controller is electrically connected with the power interface.
[0029] In some embodiments, the controller is provided with an input interface and an output interface, the output interface is electrically connected with the atomizer through a cable, and the input interface is selectively connected with an external power source.
[0030] In some embodiments, the controller is provided with a liquid medicine detection module, and the liquid medicine detection module is used to control detection of the use-up state of the liquid medicine in the liquid medicine container.
[0031] In some embodiments, the controller is provided with a cleaning module, and the cleaning module is used to control cleaning of the atomizing mesh by the liquid in the liquid medicine container.
[0032] In some embodiments, the controller is provided with an atomization working module, and the atomization working module is used to control atomization of the liquid medicine in the liquid medicine container by the atomizing mesh.
[0033] According to the embodiments of the utility model, the atomizer is placed in the accommodating space when the box cover and the box body are in the closed state, so that the atomizing device can be conveniently carried anywhere, and when the liquid medicine is operated to generate medicine in the mist storage device, the atomizer is only needed to be taken out from the accommodating space, inserted at the atomizing port of the mist storage device, and electrically connected with the controller through the cable, so that the atomization operation can be controlled and executed, and the whole process is convenient and efficient.
[0034] It should be understood that the foregoing general description and the following detailed description are only exemplary and explanatory, and cannot limit the present application. BRIEF DESCRIPTION OF DRAWINGS
[0035] The accompanying drawings, which are incorporated herein and constitute part of this specification, illustrate embodiments consistent with the application and, together with the description, further serve to explain the principles of the application.
[0036] Figure 1 is a schematic view of a closing state of the portable atomization device in an embodiment of the present application;
[0037] Figure 2 is a schematic view of an opening state of the box body and the cover body in an embodiment of the present application;
[0038] Figure 3 is a schematic view of an opening state of the portable atomization device in an embodiment of the present application;
[0039] Figure 4 is a schematic view of the atomizer in an embodiment of the present application;
[0040] Figure 5 is a schematic view of the controller in an embodiment of the present application;
[0041] Figure 6 is a schematic view of a first working state of the atomization system in an embodiment of the present application;
[0042] Figure 7 is a schematic view of a second working state of the atomization system in an embodiment of the present application.
[0043] Reference signs:
[0044] 10: box body; 11: first accommodating portion; 12: second accommodating portion; 13: third accommodating portion; 14: fourth accommodating portion; 15: step; 20: box cover; 30: atomizer; 31: atomization interface; 32: liquid medicine container; 40: controller; 50: power supply interface; 60: mist storage device; 70: cable; 80: power adapter. DETAILED DESCRIPTION
[0045] The present application will now be discussed with reference to a number of embodiments. It should be appreciated that these embodiments are discussed merely to enable those with ordinary skill in the art to better understand and therefore implement the present application, and are not intended to suggest any limitation as to the scope of the present application.
[0046] As used herein, the terms "comprises," "comprising," "includes," "including," "has," "having," "contains," "containing," or any other similar words, are intended to be interpreted broadest- ly, as including one or more steps, integers, components, or elements, but not exclusive. As used herein, the terms "includes" and "including" are to be interpreted broadly to mean "including, but not limited to." The terms "embodiment" and "one embodiment" are to be interpreted broadly to mean "at least one embodiment." The term "another embodiment" is to be interpreted broadly to mean "at least one other embodiment." The terms "first," "second," etc. can refer to different or the same objects. The term "set" is not limited to direct connections or indirect connections, nor is it limited to specific connection means. Other explicit and implicit definitions can also be included below.
[0047] Some specific numerical values or numerical ranges can be involved in the following description. It should be understood that these numerical values and numerical ranges are only exemplary, which can be beneficial to put the idea of the present application into practice. However, the description of these examples is not intended to limit the scope of the present application in any way. According to specific application scenarios and requirements, these numerical values or numerical ranges can be set otherwise.
[0048] As described above, the atomization device of the prior art can only be fixedly arranged in a hospital or other public place, which increases the arrangement cost of the atomization device and is inconvenient to carry between different places. The portable atomization device and atomization system proposed in the embodiments of the present application at least partially solve the above problems. The structure and working principle of the portable atomization device and atomization system according to the example embodiments of the present application will be described below with reference to Figures 1 to 7 The portable atomization device and atomization system of the embodiments of the present application can be suitable for medical or vaccine liquid atomization. It should be noted that the atomization system involved in the embodiments of the present application includes a portable atomization device and a mist storage device 60.
[0049] Generally, the portable atomization device of the embodiments of the present application includes a containing box, an atomizer 30, and a controller 40, wherein the containing box is used to contain the atomizer 30, the controller 40, a power adapter 80, a cable 70, and other components during carrying, so that the atomization device can be quickly and conveniently stored, carried, and opened and assembled; the atomizer 30 is used to be inserted on a misting port of the mist storage device 60, so as to generate a drug mist into the mist storage device 60, for example, as shown in Figure 5 The atomizer 30 is provided with a liquid container 32 and a misting interface 31; the controller 40 is used to provide an electrical signal to the atomizer 30, so as to drive the atomizing mesh in the atomizer 30 to vibrate at a specific frequency and time.
[0050] The containing box is provided with a box body 10 and a box cover 20, and the box body 10 and the box cover 20 jointly define a containing space. In one embodiment, as Figure 2As shown, the box cover 20 has a smaller space, so that the accommodating space is substantially formed inside the box body 10. In another embodiment, the box cover 20 can be arranged to have a larger space, and when the box cover 20 is closed with the box body 10, the accommodating space has a larger height dimension. In general, the size of the accommodating space in the closed state of the accommodating box needs to be at least sufficient to accommodate the atomizer 30, because the atomizer 30 has the highest structural complexity and cost and the worst adaptability, while the controller 40, the cable 70 and other components can be fixedly arranged at various work sites. More preferably, all the components can be accommodated in the accommodating box and carried together.
[0051] In one embodiment, the accommodating space is regularly shaped, for example, square or rectangular, and the bottom wall and the side wall of the accommodating space are planar, so that the components can be flexibly placed in the accommodating space. In another embodiment, as shown in Figure 2 and 3 shown, the accommodating space is provided with a concave-convex structure by integral molding or additional arrangement, and the shape of the concave-convex structure is adapted to the shape of the components of the atomization device, so that the components are prevented from being scattered during carrying.
[0052] The concave-convex structure is formed as at least one accommodating part. Exemplarily, the second accommodating part 12, the third accommodating part 13 and the fourth accommodating part 14 are respectively used for firmly placing the atomizer 30, the controller 40 and the power adapter 80 during carrying, and the first accommodating part 11 is used for placing the mist storage device 60 during atomization work.
[0053] In one embodiment, as shown in Figure 6 due to the characteristics of narrow space and urgent situation in some atomization sites, the mist storage device 60 cannot be provided with a flat and stable placement position. By placing the mist storage device 60 in the first accommodating part 11, the atomization process is ensured to be efficiently completed. In another embodiment, as shown in Figure 7 under the condition that the condition allows, the mist storage device 60 can also be placed outside the accommodating box during atomization.
[0054] In one embodiment, the mist storage device 60 can be in different forms, and in order to firmly place the mist storage device 60 in the first accommodating part 11, the shape of the first accommodating part 11 is correspondingly arranged to be adapted to the shape of the bottom of the mist storage device 60. Exemplarily, the mist storage device 60 can be a mist storage cup, for example, in a cylindrical shape, and correspondingly, the first accommodating part 11 is arranged as an annular protrusion, and the inner periphery of the annular protrusion is used for placing the mist storage cup with or without adhesion. The mist storage device 60 can also be a mist storage bag, and the first accommodating part 11 is arranged to be adapted to the shape of the bottom of the mist storage bag.
[0055] In one embodiment, the first accommodating part 11 can be placed in contact with the storage device 60 or not in contact. The contact placement can better ensure that the storage device 60 is placed firmly. In the case of contact placement, the annular protrusion of the first accommodating part 11 can be provided with the characteristic of elastic deformation radially outward, so as to be applicable to the contact placement of storage cups of different diameters.
[0056] In one embodiment, the elastic deformation can be caused by the material of the annular protrusion. For example, the annular protrusion is made of rubber. In another embodiment, the elastic deformation can also be caused by the structure. For example, as shown in the figure, the annular protrusion is shaped into a petal structure, and each plate structure is deformed radially outward under the extrusion of a large-size storage cup. Figure 2
[0057] In one embodiment, since the first accommodating part 11 is provided with the annular protrusion, the cable 70 can be wound around the outer periphery of the first accommodating part 11 during carrying, as shown in the figure, thereby further improving the portability of the atomization device. Figure 3
[0058] The controller 40 is provided with an input interface and an output interface. The output interface is electrically connected with the atomization interface 31 of the atomizer 30 through the cable 70, provides an electrical signal to the atomizer 30, and drives and controls the vibration work of the atomization mesh of the atomizer 30. The input interface is used to connect with an external power supply. For example, the external power supply is connected through the power adapter 80, thereby providing electrical energy for the vibration of the atomization mesh.
[0059] In one embodiment, an additional power supply is arranged inside the accommodating box. For example, the additional power supply can be a battery which is convenient to disassemble and replace, or a battery integrated in the accommodating box. The controller 40 is connected with the power supply interface 50 on the accommodating box, thereby obtaining the electrical energy provided by the battery.
[0060] In one embodiment, the power supply interface 50 can be arranged inside or outside the accommodating space. In order to be placed stably during the connection of the controller 40 and the power supply interface 50, the box body 10 is formed with a step 15 structure outside the accommodating space. The power supply interface 50 is arranged on the surface of the step 15. The area and flatness of the surface of the step 15 are adapted to the controller 40, thereby ensuring that the controller 40 cannot easily slide off the surface of the step 15, and avoiding interruption of the electrical connection with the power supply interface 50. In the closed state of the box cover 20 and the box body 10, the controller 40 can also be placed on the surface of the step 15. Since the controller 40 is connected with the power supply interface 50, the support force generated by the connection can make the controller 40 not slide off the surface of the step 15 during carrying.
[0061] In one embodiment, as shown in the figure, the box body 10 is provided with a plurality of accommodating spaces, and the controller 40 is arranged in each accommodating space. Figure 5 As shown, the controller 40 is provided with a working indicator light, an electricity indicator light and an on / off button, the operator can control the atomization device on / off through the on / off button, the working indicator light prompts the working state of the atomization device through color, blinking or long light and the like or combination of the ways, and the electricity indicator light prompts the electricity condition of the battery through color, blinking or long light and the like or combination of the ways.
[0062] In one embodiment, the controller 40 provides control signals for the atomizer 30 to switch different working states. Exemplarily, the controller 40 is provided with a drug liquid detection module, a cleaning module and an atomization working module, each module controls the atomizer 30 to perform the detection of the drug liquid running out state in the drug liquid container 32, the cleaning of the atomization mesh with clean water or other liquid in the drug liquid container 32 and the vibration atomization of the drug liquid in the drug liquid container 32. Those skilled in the art can understand that the detection of the drug liquid running out state in the drug liquid container 32, the cleaning of the atomization mesh with clean water or other liquid in the drug liquid container 32 and the vibration atomization of the drug liquid in the drug liquid container 32 all belong to the conventional technology, and the portable atomization device of the embodiment of the utility model integrates these working states or working modes.
[0063] In the description of the embodiment, any reference to direction or position is only for the convenience of description, and cannot be understood as any limitation on the protection scope of the utility model. The description of the preferred embodiment may involve the combination of features, which may exist independently or in combination, and the utility model is not particularly limited to the preferred embodiment. The scope of the utility model is defined by the claims.
[0064] The above is only the preferred embodiment of the utility model, and does not limit the utility model, any modification, equivalent replacement, improvement and the like within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A portable atomizing device for generating a medical or vaccine drug mist into a storage mist device, the storage mist device being provided with at least an atomizing port, characterized in that, The portable atomization device comprises: The accommodating box is provided with a box body and a box cover, and the box body and the box cover jointly define an accommodating space, and at least a first accommodating portion is arranged in the accommodating space, the first accommodating portion is formed in a shape matched with a bottom of the atomization device, and the atomization device can be placed in the first accommodating portion when the box cover and the box body are in an open state; The atomizer is provided with a liquid medicine container and an atomization mesh, the atomizer is used for being inserted at the atomization port of the atomization device, and the liquid medicine is atomized and then injected into the atomization device through the atomization port, and the atomizer can be placed in the accommodating space when the box cover and the box body are in a closed state; The controller is electrically connected with the atomizer through a cable, so as to control the atomizer to perform atomization work.
2. The portable atomization device of Claim 1, wherein, The atomization device is an atomization cup, the first accommodating portion is arranged as an annular protrusion, an inner periphery of the annular protrusion is matched with the bottom of the atomization cup in shape, and the annular protrusion can be elastically deformed radially outward.
3. The portable atomization device of claim 2, wherein, The annular protrusion is formed as a petal-shaped structure.
4. The portable atomization device of claim 1, wherein, A second accommodating portion is further arranged in the accommodating space, the second accommodating portion is formed in a shape matched with the atomizer, and the atomizer can be placed in the second accommodating portion when the box cover and the box body are in a closed state.
5. The portable atomizing device of claim 1, wherein, The controller is arranged as a movable controller, a power supply interface is arranged on the box body, and the controller is detachably electrically connected with the power supply interface.
6. The portable atomizing device of claim 5, wherein, The box body is formed with a step outside the accommodating space, the power supply interface is arranged on a surface of the step, and the controller can be placed on the surface of the step in a state of being electrically connected with the power supply interface.
7. The portable atomization device according to claim 1, wherein, The controller is provided with an input interface and an output interface, the output interface is electrically connected with the atomizer through a cable, and the input interface is selectively connected with an external power supply.
8. The portable atomization device according to claim 1, wherein, The controller is provided with a liquid medicine detection module, and the liquid medicine detection module is used for controlling detection of a liquid medicine exhaustion state in the liquid medicine container.
9. The portable atomization device according to claim 1, wherein, The controller is provided with a cleaning module, and the cleaning module is used for controlling liquid in the liquid medicine container to clean the atomization mesh.
10. The portable atomization device according to claim 1, wherein, The controller is provided with an atomization work module, and the atomization work module is used for controlling the liquid medicine in the liquid medicine container to be atomized by the atomization mesh.
11. An atomization system characterized by, The portable atomization device comprises: The atomization device is provided with at least an atomization port; The portable atomization device is used for generating medical or vaccine atomized mist into the atomization device, and the portable atomization device comprises: The accommodating box is provided with a box body and a box cover, and the box body and the box cover jointly define an accommodating space; The atomizer is provided with a liquid medicine container and an atomization mesh, the atomizer is used for being inserted at the atomization port of the atomization device, and the liquid medicine is atomized and then injected into the atomization device through the atomization port, and the atomizer can be placed in the accommodating space when the box cover and the box body are in a closed state; The controller is electrically connected with the atomizer through a cable, so as to control the atomizer to perform atomization work.
12. The atomization system of claim 11, wherein, The accommodating space is provided with at least a first accommodating portion, the first accommodating portion is formed in a shape matched with a bottom of the atomization device, and the atomization device can be placed in the first accommodating portion when the box cover and the box body are in an open state.
13. The atomization system of claim 12, wherein, The atomization device is an atomization cup, the first accommodating portion is arranged as an annular protrusion, an inner periphery of the annular protrusion is matched with the bottom of the atomization cup in shape, and the annular protrusion can be elastically deformed radially outward.
14. The atomization system of claim 13, wherein, The annular protrusion is formed as a petal-shaped structure.
15. The atomization system of claim 11, wherein, The accommodating space is further provided with a second accommodating part which is formed in a shape suitable for the atomizer so that the atomizer can be placed in the second accommodating part when the box cover and the box body are in a closed state.
16. The atomization system of claim 11, wherein, The controller is arranged as a movable controller, and the box body is provided with a power supply interface, and the controller is detachably electrically connected with the power supply interface.
17. The atomization system of claim 16, wherein, The box body is formed with a step outside the accommodating space, and the power supply interface is arranged on the surface of the step, and the controller can be placed on the surface of the step in a state of electrical connection between the controller and the power supply interface.
18. The atomization system of claim 11, wherein, The controller is provided with an input interface and an output interface, the output interface is electrically connected with the atomizer through a cable, and the input interface is selectively connected with an external power supply.
19. The atomization system of claim 11, wherein, The controller is provided with a liquid medicine detection module, and the liquid medicine detection module is used to control detection of a liquid medicine exhaustion state in the liquid medicine container.
20. The atomization system of claim 11, wherein, The controller is provided with a cleaning module, and the cleaning module is used to control liquid in the liquid medicine container to clean the atomizing mesh.
21. The atomization system of claim 11, wherein, The controller is provided with an atomizing working module, and the atomizing working module is used to control liquid medicine in the liquid medicine container to be atomized by the atomizing mesh.