Intelligent folding infusion bottle sleeve

By integrating a pressure sensor and a wireless connection module into the infusion bottle sleeve, the problem of traditional infusion bottle sleeves being unable to provide real-time monitoring and intelligent prompts is solved, achieving safety and portability in the infusion process and improving nursing efficiency.

CN223746773UActive Publication Date: 2026-01-02保定市第一中心医院
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422958298.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2026-01-02
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

Traditional infusion bottle sleeves have a single function, cannot monitor infusion status in real time, lack intelligent prompts and are not easy to store, and their fixed size makes them difficult to store.

Method used

Design an intelligent folding infusion bottle sleeve, including a bottle holder and a flexible folding mesh sleeve, integrating a pressure sensor, controller, power module, wireless connection module and alarm module, to realize timely reminders for infusion progress monitoring, and has a folding function for easy storage.

Benefits of technology

It ensures the safety and reliability of the infusion process, improves nursing efficiency, reduces storage space requirements, and enhances the user experience by promptly notifying medical staff to replace the infusion bottle via wireless connection.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223746773U_ABST
    Figure CN223746773U_ABST
Patent Text Reader

Abstract

The utility model provides an intelligent folding infusion bottle sleeve, and relates to the technical field of medical instruments. The intelligent folding infusion bottle sleeve comprises a bottle support and a flexible folding net sleeve, the flexible folding net cover comprises a plurality of net rings and connecting belts; the multiple net rings are arranged in a concentric circle mode, every two adjacent net rings are connected through at least two connecting belts, and connecting points are formed at the connecting positions of the net rings and the connecting belts. At least two connecting points on each net ring are uniformly distributed; the connecting points on every two adjacent net sleeves are arranged in a staggered mode. The bottle support is made of hard plastic and is connected with the innermost net ring through at least two connecting belts; a pressure sensor is arranged on the inner side of the bottle support, and a controller, a power module, a wireless connection module and an alarm module are arranged on the outer side of the bottle support. The pressure sensor, the power module, the wireless connection module and the alarm module are electrically connected with the controller. And when not in use, the chair is folded and occupies a small space. The weight change of the infusion bottle is monitored in real time, the infusion progress is accurately judged, and safety is ensured.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to medical instrument technical field, especially a kind of intelligent folding infusion bottle cover. BACKGROUND

[0002] With the development of medical technology and the improvement of nursing level, the requirements for infusion equipment in hospital and family nursing are also higher and higher. The traditional infusion bottle cover has single function, often can only play the role of support, cannot monitor infusion condition in real time, also cannot notify medical staff to supplement medicine or replace infusion bottle in time.

[0003] Although some infusion devices on the market can provide basic support, they still lack in terms of intelligence, especially in monitoring infusion progress, automatic alarm and convenient storage. In addition, most of the existing devices have fixed volume and are not easy to store, and lack effective combination with modern communication means. UTILITY MODEL CONTENT

[0004] The main technical problem to be solved by the utility model is to provide a novel intelligent folding infusion bottle cover, which not only has folding function, but also integrates multiple intelligent elements. These elements work cooperatively to make the infusion process more secure and reliable, and greatly improve the efficiency of nursing work.

[0005] To solve the above technical problems, the technical scheme provided by the utility model is as follows:

[0006] An intelligent folding infusion bottle cover comprises a bottle holder and a flexible folding mesh cover.

[0007] The flexible folding mesh cover comprises a plurality of mesh rings and connecting belts. The mesh rings are arranged in concentric circles, and adjacent two mesh rings are connected by at least two connecting belts. The connecting points are formed at the connecting positions of the mesh rings and the connecting belts.

[0008] The at least two connecting points on each mesh ring are uniformly distributed.

[0009] The connecting points on adjacent two mesh covers are staggered.

[0010] The bottle holder is made of hard plastic, and the bottle holder is connected with the innermost mesh ring by at least two connecting belts.

[0011] The inner side of the bottle holder is provided with a pressure sensor, and the outer side is provided with a controller, a power module, a wireless connection module and an alarm module.

[0012] The pressure sensor, the power module, the wireless connection module and the alarm module are electrically connected with the controller respectively.

[0013] Optionally, the bottle holder is funnel-shaped, having a wide-mouth end and a narrow-mouth end.

[0014] The wide-mouth end is connected with the innermost wire loop through the connecting belt.

[0015] The narrow-mouth end is used to pass through the bottle mouth of the infusion bottle.

[0016] Optionally, it further comprises a bottom loop plate, which is annular and arranged outside the bottom of the bottle holder; a cable winding area is formed by the bottom loop plate and the bottle holder.

[0017] Optionally, it further comprises a vibrator connected with the controller through a cable.

[0018] Optionally, the power module comprises an electric wire and a plug.

[0019] One end of the electric wire is electrically connected with the controller, and the other end is connected with the plug.

[0020] Optionally, the flexible folding net cover is made of soft plastic or silica gel.

[0021] Optionally, the wire loop and / or the connecting belt are flat in structure.

[0022] Optionally, it further comprises a storage module arranged outside the bottle holder and connected with the controller.

[0023] Optionally, the wireless connection module is Wi-Fi or Bluetooth.

[0024] Optionally, it further comprises a rubber protective sleeve, which is sleeved outside the bottle holder.

[0025] The technical scheme provided by the utility model has the following technical effects:

[0026] Thanks to the design of the flexible folding net cover, the device can be folded when not in use, with a thickness consistent with that of the bottle holder, thus significantly reducing the occupied space and facilitating storage and transportation. The pressure sensor arranged inside the bottle holder can monitor the weight change of the infusion bottle in real time, thus accurately determining the progress of infusion and ensuring the safety of the infusion process. When detecting that the infusion is about to end, the controller will send information to the nursing staff through the wireless connection module (such as Wi-Fi or Bluetooth), ensuring timely replacement of the infusion bottle and preventing the risk of air entering the blood vessels. The setting of the alarm module can instantly remind the patient or the nursing staff of the change of the infusion state, enhancing the user experience and enabling quick response in emergency situations. BRIEF DESCRIPTION OF DRAWINGS

[0027] The above and other features and advantages of the present application will become more apparent by describing in detail example embodiments thereof with reference to the attached drawings in which:

[0028] Figure 1 is a front view of the intelligent folding infusion bottle cover provided in the embodiment of the present application;

[0029] Figure 2 is a side view of the intelligent folding infusion bottle cover provided in the embodiment of the present application.

[0030] Explanation of reference signs:

[0031] 1, bottle holder, 2, flexible folding net cover, 3, pressure sensor, 4, controller, 5, power module, 6, wireless connection module, 7, alarm module, 8, bottom ring plate, 9, cable winding area, 10, vibrator, 11, storage module, 12, rubber protective sleeve;

[0032] 21, net ring, 22, connecting belt;

[0033] 51, electric wire, 52, plug. DETAILED DESCRIPTION

[0034] Example embodiments will now be described more fully with reference to the accompanying drawings. Example embodiments, however, can be implemented in many different forms and should not be construed as limited to the implementations set forth herein; rather, these implementations are provided so that this disclosure will be thorough and complete, and will fully convey the concept of example embodiments to those skilled in the art. Like reference numerals refer to like elements throughout the figures, and thus a detailed description of them will not be repeated.

[0035] The terms "one", "a", "an", "the", and "said" are used to indicate the presence of one or more than one element / component / etc.; the terms "include" and "has" are used to indicate an open-ended inclusion, and that additional elements / component / etc. can be present in addition to those listed.

[0036] Figure 1 is a front view of the intelligent folding infusion bottle cover provided in the embodiment of the present application; Figure 2 is a side view of the intelligent folding infusion bottle cover provided in the embodiment of the present application. The above schematic diagram is only to show the structural relationship related to the utility model point, and is not as the actual proportion of the actual product.

[0037] As Figure 1 and Figure 2As shown, the smart folding infusion bottle set in this embodiment includes a bottle holder 1 and a flexible folding mesh cover 1. The flexible folding mesh cover 1 includes multiple mesh rings 21 and connecting bands 22. The multiple mesh rings 21 are arranged in concentric circles, and adjacent two mesh rings 21 are connected by at least two connecting bands 22, forming connecting points at the connection positions of the mesh rings 21 and the connecting bands 22. At least two connecting points on each mesh ring 21 are uniformly distributed. The connecting points on adjacent two mesh covers are staggered.

[0038] In this embodiment, the bottle holder 1 is made of hard plastic. Hard plastic can provide sufficient strength to stably support the infusion bottle, avoid tilting or falling during use, and ensure the safety of the infusion process. Compared with other materials, hard plastic has good durability and wear resistance, is not easy to be damaged after long-term use, and prolongs the overall service life of the device. Hard plastic is usually lighter than metal and other materials, so using hard plastic as the material of the bottle holder 1 can reduce the weight of the entire device, making it easier to carry and install. The surface of hard plastic is smooth, not easy to hide dirt, easy to clean and disinfect, meets the requirement of medical equipment that needs to be cleaned frequently, reduces the opportunity for bacteria to breed, and is conducive to the maintenance of a sanitary environment. Compared with metal materials, hard plastic has lower cost, which makes the smart folding infusion bottle set more advantageous in manufacturing cost, thereby reducing the overall production cost and making the product more competitive in the market. Hard plastic can be recycled, which meets the modern environmental protection concept and reduces the impact of waste on the environment. Hard plastic has good forming performance and can be processed into different shapes and sizes according to needs, such as the funnel-shaped design in this invention, which facilitates better cooperation with the use of infusion bottles.

[0039] In one embodiment, the bottle holder 1 is funnel-shaped, having a wide mouth end and a narrow mouth end. The wide mouth end is connected to the innermost mesh ring 21 through the connecting band 22. The narrow mouth end is used to pass through the bottle mouth of the infusion bottle.

[0040] The bottle holder 1 has a wider opening end (wide mouth end) and a narrower opening end (narrow mouth end). The wide mouth end is connected to the innermost mesh ring 21 of the flexible folding mesh cover 1 through at least two connecting bands 22. The design purpose of the narrow mouth end is to facilitate the insertion of the bottle mouth of the infusion bottle, ensuring that the infusion bottle can be stably placed in the bottle holder 1. The funnel-shaped design makes the bottle holder 1 compatible with different specifications of infusion bottles, and the wide mouth end can accommodate larger diameter bottles, while the narrow mouth end can closely fit smaller bottle mouths, increasing the range of application.

[0041] In one embodiment, the flexible folding net cover 1 contains three net rings 21, which we will label as the inner ring (closest to the bottle holder 1), the middle ring, and the outer ring (farthest from the bottle holder 1). These three net rings 21 are arranged in a concentric manner, i.e., they share the same center point, forming a structure that gradually expands from the inside out. Each net ring 21 is circular, and their diameters increase in order, i.e., the inner ring has the smallest diameter, and the outer ring has the largest diameter.

[0042] One end of the connecting band 22 is fixed to a certain net ring 21, and the other end is fixed to another adjacent net ring 21. The intersection of the connecting band 22 and the net ring 21 is called a connecting point. These connecting points are evenly distributed on each net ring 21 to ensure the stability of the entire net cover structure.

[0043] There are at least two connecting points on each net ring 21, and these connecting points are evenly distributed in the circumferential direction of the net ring 21. This means that if there are two connecting bands 22 between two adjacent net rings 21, these two connecting bands 22 should be on opposite sides of the net ring 21 to ensure balance of the structure.

[0044] The connecting points on two adjacent net rings 21 are staggered. For example, if the connecting points on the inner ring are located at 12 o'clock and 6 o'clock, the connecting points on the middle ring may be located at 3 o'clock and 9 o'clock. This staggered arrangement allows the net cover to form a relatively stable three-dimensional structure when unfolded.

[0045] Because the diameters of the multiple net rings 21 are different, forming a structure that gradually expands from the inside out, it can adapt to different diameters of infusion bottles.

[0046] The flexible folding net cover 1 can be made of soft plastic or silicone.

[0047] Soft plastic (such as TPE, TPU, and other thermoplastic elastomers) has good flexibility and resilience, and can withstand repeated folding without being easily damaged. In addition, soft plastic usually has a certain degree of transparency, making it easy to observe the status of the infusion bottle.

[0048] Silicone has excellent flexibility, heat resistance, and chemical stability, and is not easily affected by environmental factors. In addition, silicone is non-toxic, odorless, and safe for the human body, making it suitable for medical use.

[0049] The flexible folding net cover 1 includes net loops 21 and / or connecting bands 22 in a flat structure. The flat design increases the contact area of the net loops 21 and connecting bands 22 with the infusion bottle or other objects, making the placement of the infusion bottle in the net cover more stable. The flat structure has higher lateral rigidity compared to a circular cross-section, which means that the net loops 21 and connecting bands 22 are less likely to bend and deform under external forces, providing better support. The flat design can be more tightly stacked in the folded state, reducing the space required for storage and transportation, and facilitating management and use. The flat connecting bands 22 can better distribute the stress and prevent damage caused by local stress concentration, improving the overall reliability of the structure.

[0050] The inner side of the bottle holder 1 is provided with a pressure sensor 3, and the outer side is provided with a controller 4, a power module 5, a wireless connection module 6 and an alarm module 7; the pressure sensor 3, the power module 5, the wireless connection module 6 and the alarm module 7 are electrically connected with the controller 4 respectively.

[0051] Pressure sensor 3: placed on the inner side of the bottle holder 1, used to detect the weight change of the infusion bottle. The pressure sensor 3 can monitor the liquid level in the infusion bottle in real time, so as to judge the progress of the infusion.

[0052] Controller 4 as the "brain" of the whole system, responsible for processing data from the pressure sensor 3, and controlling the operation of the alarm module 7 and other functional modules.

[0053] Power module 5 provides power support for the system, usually including battery or rechargeable battery, and corresponding charging circuit.

[0054] Wireless connection module 6 is used for communication with external devices (such as nurse station, mobile phone application, etc.), which can adopt Wi-Fi or Bluetooth wireless transmission technology.

[0055] Alarm module 7 is used to issue an alarm when the liquid in the infusion bottle is about to run out or other abnormal conditions occur, reminding the patient or nursing staff.

[0056] The following is the general process of the system when it works:

[0057] The pressure sensor 3 continuously monitors the weight of the infusion bottle and sends the data to the controller 4.

[0058] After receiving the data from the pressure sensor 3, the controller 4 analyzes and processes it to determine whether the infusion is close to completion.

[0059] If it is detected that the infusion is about to end or other preset conditions are met, the controller 4 will send relevant information to the remote terminal (such as the nurse station or the patient's smart phone) through the wireless connection module 6.

[0060] At the same time, the controller 4 will also activate the alarm module 7, reminding the patient or caregiver through sound, light or other means.

[0061] The pressure sensor 3 can be selected from the following types:

[0062] Strain gauge sensor: suitable for small range pressure measurement, high precision, moderate cost.

[0063] Piezoresistive sensor: fast response speed, high sensitivity, suitable for real-time monitoring.

[0064] Capacitive sensor: high resolution and stability, suitable for long-term stable operation.

[0065] Select a pressure sensor 3 with high precision to ensure the accuracy of measurement data. Select the appropriate range according to the weight range of the infusion bottle to cover all weights from empty to full. Select a sensor with good temperature compensation function to ensure measurement consistency at different temperatures. Select a sensor with a standard interface (such as SPI, I 2C, UART, etc.) for connection with the controller 4.

[0066] The controller 4 can be selected from the following types:

[0067] Microcontroller unit (MCU): such as ARM Cortex-M series, with high performance and low power consumption, suitable for embedded applications.

[0068] Single-chip microcomputer (MCU): such as STM32, ESP32, etc., high integration, rich development tools, suitable for small devices.

[0069] Select a controller 4 with sufficient processing power to ensure that it can quickly process sensor data and control tasks. Select a low-power controller 4 to extend the device's battery life. Ensure that the controller 4 supports the interface protocol of the pressure sensor 3, wireless connection module 6 and other peripheral devices. Select a controller 4 with appropriate memory capacity according to the amount of data to be stored.

[0070] The wireless connection module 6 can be selected from the following types:

[0071] Wi-Fi module: suitable for applications requiring high-speed data transmission, can seamlessly connect to the hospital's internal Wi-Fi network.

[0072] Bluetooth module: especially low-power Bluetooth (BLE), suitable for short-range, low-power data transmission.

[0073] According to the actual application scene, select the appropriate transmission distance, Wi-Fi is suitable for long distance transmission, Bluetooth is suitable for short distance transmission. Select low-power modules to reduce the overall power consumption of the device. Select modules with encryption function to ensure the security of data transmission.

[0074] The alarm module 7 can be selected from the following types:

[0075] Buzzer: a simple audio alarm device, low cost, easy to integrate.

[0076] LED light: can be used to indicate different alarm states, easy to identify.

[0077] Choose a strong enough sound or light to ensure that it can attract attention in various environments. Choose low-power alarm devices to reduce the impact on battery life. Configure different alarm modes as needed, such as different frequencies, brightness, or vibration patterns.

[0078] In one embodiment, a vibrator 10 is also included, which is connected to the controller 4 through a cable. When the patient is receiving infusion, the vibrator 10 can be held in the hand or close to the body. When the infusion is about to end, the patient can also be reminded by the vibrator 10.

[0079] The vibrator 10 is connected to the controller 4 through a cable, ensuring the reliability and real-time performance of signal transmission. The vibrator 10 can be designed to be small in size, making it easy for the patient to hold in the hand or close to the body. The advantage of this design is that it can effectively transmit vibration signals without affecting the infusion. Considering the use environment, the vibrator 10 should have certain waterproof performance to prevent accidental water or sweat from affecting its normal work.

[0080] When the patient falls asleep during infusion, at the same time, the pressure sensor 3 detects that the infusion is about to end, the controller 4 activates the vibrator 10, which can serve as a silent reminder to avoid missing the reminder signal when the infusion ends due to too deep sleep.

[0081] In addition to reminding the patient during infusion, the vibrator 10 can also be used in other situations that require reminders, such as timed reminders for taking medicine, exercise reminders, etc. The vibrator 10 can have different vibration modes to choose from, such as short vibration, long vibration, or continuous vibration, to adapt to different user preferences.

[0082] The main types of vibrator 10 are:

[0083] Eccentric Rotating Mass (ERM), which generates vibration effect by rotating an eccentric mass on the motor shaft. It has lower cost and can produce stronger vibration feeling.

[0084] Linear Resonant Drive (LRM), through electromagnetic drive makes the vibration mass reciprocate along a straight line, generates vibration. Fast start speed, more diversified vibration mode, can produce delicate vibration effect.

[0085] Piezoelectric vibrator 10, using the deformation of piezoelectric material under the action of voltage to produce vibration. Fast response speed, can realize very fine vibration effect.

[0086] In one embodiment, the power module 5 includes an electric wire 51 and a plug 52; one end of the electric wire 51 is electrically connected with the controller 4, and the other end is connected with the plug 52.

[0087] The electric wire 51 of the power module 5 is connected with the controller 4 through reliable electrical connection, usually fixed by welding or socket and the like, to ensure the stability of the connection. The other end of the electric wire 51 is connected with a standard plug 52, which is used to connect with the external power socket.

[0088] The plug 52 should comply with the local electrical safety standards, usually using common household or industrial standard plug 52, such as three-pin plug 52 or two-pin plug 52, so that the user can conveniently connect with the power socket. The plug 52 should have certain protection design, such as dust cover or insulation material wrapping, to ensure safety.

[0089] The power module 5 connects the external power supply to the controller 4 through the electric wire 51, providing stable power supply for the whole system. This is very important to ensure the continuous work of the system, especially when the system needs to run for a long time.

[0090] In one embodiment, a storage module 11 is also included, which is arranged on the outside of the bottle holder 1 and connected with the controller 4. The storage module 11 is connected with the controller 4 through a standard interface (such as SPI, I 2 C, etc.), to ensure the stability and reliability of data transmission.

[0091] The storage module 11 is mainly used to record various data during the infusion process, including but not limited to the start time, end time, infusion rate, remaining liquid volume, etc. These data can help medical staff better understand the infusion situation of the patient, and provide basis for subsequent nursing decisions.

[0092] In the case that the wireless connection module 6 is not available or interrupted, the storage module 11 can temporarily save the data, and then upload to the remote server or nursing station after the connection is restored. This ensures the integrity of the data and avoids data loss due to network problems.

[0093] In one embodiment, a rubber protective sleeve 12 is also included; the rubber protective sleeve 12 is sleeved on the outer side of the bottle holder 1, and the controller 4, the power supply module 5, the wireless connection module 6, the alarm module 7 and the storage module 11 are wrapped in the rubber protective sleeve 12. The rubber protective sleeve 12 completely wraps the outer side of the bottle holder 1, covering all the electronic modules (controller 4, power supply module 5, wireless connection module 6, alarm module 7 and storage module 11), ensuring that these modules are not physically damaged during use.

[0094] The rubber protective sleeve 12 can effectively prevent damage to the internal electronic modules caused by external impact or falling, ensuring the stable operation of the system. The protective sleeve can absorb the energy of external impact, reducing the vibration and impact received by the internal modules. Through the sealing design of the rubber protective sleeve 12, it can prevent external pollutants such as water and dust from entering the interior, prolonging the service life of the equipment. When used in humid or dusty environments, the rubber protective sleeve 12 can provide additional protection to ensure the normal operation of the internal modules.

[0095] In one embodiment, a bottom ring plate 8 is also included, which is annular and arranged on the outer side of the bottom of the bottle holder 1; a cable winding area 9 is formed by the bottom ring plate 8 and the bottle holder 1. The cable connecting the vibrator 10 and the controller 4, as well as the wire 51 and the plug 52 of the power supply module 5, can be wound in the cable winding area 9.

[0096] The bottom ring plate 8 is designed to be annular, surrounding the outer side of the bottom of the bottle holder 1, providing enough space for winding cables. The bottom ring plate 8 forms an integrated structure with the bottle holder 1, meaning that the two are integrally formed during manufacturing, rather than being connected through later assembly. This design can enhance the firmness and stability of the overall structure.

[0097] The bottom ring plate 8 is arranged on the outer side of the bottom of the bottle holder 1, which does not affect the normal use of the bottle holder 1, and is convenient for cable management and maintenance.

[0098] The cable winding area 9 formed by the bottom ring plate 8 and the bottle holder 1 can be used to organize and fix the cable connecting the vibrator 10 and the controller 4, as well as the wire 51 and the plug 52 of the power supply module 5, avoiding messy cables. When not in use, the cables can be neatly wound in this area, facilitating storage and carrying.

[0099] In the embodiments of the present application, the term "a plurality of" refers to two or more, unless otherwise explicitly limited. The terms "mounting", "connecting", "fixing" and the like should be broadly understood, for example, "connecting" can be fixed connection, or detachable connection, or integrally connected. For those skilled in the art, the specific meaning of the above terms in the embodiments of the present application can be understood according to the specific circumstances.

[0100] In the description of the embodiments of the present application, it should be understood that the terms "upper", "lower" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the embodiments of the present application and simplify the description, and do not indicate or imply that the device or unit referred to must have a particular direction, be constructed and operated in a particular orientation, therefore, it should not be understood as a limitation on the embodiments of the present application.

[0101] In the description of the present application, the terms "one embodiment", "one preferred embodiment" and the like mean that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0102] The above is only the preferred embodiment of the present application, and is not intended to limit the embodiments of the present application. For those skilled in the art, the embodiments of the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the embodiments of the present application should be included in the protection scope of the embodiments of the present application.

Claims

1. A smart folding infusion bottle cover, characterized by, The bottle holder (1) and the flexible folding net cover (2) are included. The flexible folding net cover (2) includes a plurality of net rings (21) and connecting belts (22); the plurality of net rings (21) are arranged in concentric circles, and two adjacent net rings (21) are connected by at least two connecting belts (22), and the connecting points are formed at the connecting positions of the net rings (21) and the connecting belts (22); At least two connecting points on each net ring (21) are uniformly distributed; The connecting points on two adjacent net covers are staggered. The bottle holder (1) is made of hard plastic, and the bottle holder (1) is connected with the innermost net ring (21) through at least two connecting belts (22); The inner side of the bottle holder (1) is provided with a pressure sensor (3), and the outer side is provided with a controller (4), a power module (5), a wireless connection module (6) and an alarm module (7); The pressure sensor (3), the power module (5), the wireless connection module (6) and the alarm module (7) are respectively electrically connected with the controller (4). The bottle holder (1) is funnel-shaped, having a wide mouth end and a narrow mouth end.

2. The intelligent folding infusion bottle cover according to claim 1, wherein, The wide mouth end is connected with the innermost net ring (21) through the connecting belt (22). The narrow mouth end is used to pass through the bottle mouth of the infusion bottle. It also includes a bottom ring plate (8), which is annular and is arranged on the outer side of the bottom of the bottle holder (1); a cable winding area (9) is formed by the bottom ring plate (8) and the bottle holder (1).

3. The intelligent folding infusion bottle cover according to claim 1, wherein, It also includes a vibrator (10) connected with the controller (4) through a cable.

4. The intelligent folding infusion bottle cover of claim 1, wherein, The power module (5) includes an electric wire (51) and a plug (52); 5. The intelligent folding infusion bottle cover of claim 1, wherein, One end of the electric wire (51) is electrically connected with the controller (4), and the other end is connected with the plug (52). The flexible folding net cover (2) is made of soft plastic or silica gel.

6. The intelligent folding infusion bottle cover of claim 1, wherein, The net ring (21) and / or the connecting belt (22) are flat structures.

7. The intelligent folding infusion bottle cover of claim 1, wherein, It also includes a storage module (11) arranged on the outer side of the bottle holder (1) and connected with the controller (4).

8. The intelligent folding infusion bottle cover of claim 1, wherein, The wireless connection module (6) is Wi-Fi or Bluetooth.

9. The smart folding infusion bottle cover of claim 1, wherein, It also includes a rubber protective sleeve (12); the rubber protective sleeve (12) is sleeved on the outer side of the bottle holder (1).

10. The smart folding infusion bottle cover of claim 1, wherein, ​