Medical audio control pump water injection device

CN224717831UActive Publication Date: 2026-09-04CANCER INST & HOSPITAL CHINESE ACADEMY OF MEDICAL SCI +1
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Patent Information

Application Number
CN202522126511.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-09
Publication Date
2026-09-04
Estimated Expiration
2035-10-09

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种医用音控泵注水装置,以解决现有装置在工作时所存在的问题

Benefits of technology

本实用新型通过机箱盒内部的自吸隔膜泵、快速更换模块和语音控制模块,搭配外壳上的调速开关组成核心结构,其中语音控制模块通过采集、识别语音指令并调用对应命令控制泵的工作,实现无需手动操作的便捷控制;快速更换模块借助滑动组件和卡锁机构,实现水箱的快速拆装;调速开关可手动调节泵的出水速度,各部件协同作用,最终达到满足不同医疗操作需求、提高装置适用性、操作便捷性、使用效率及工作稳定性的综合效果。

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Abstract

The utility model discloses a medical audio control pump water injection device, including the box box, the inside of box box is provided with self -priming diaphragm pump, quick replacement module and voice control module, be equipped with the speed regulation switch on the shell of box box, the utility model discloses a self -priming diaphragm pump, quick replacement module and voice control module in the box box, match the speed regulation switch on the shell and constitute the core structure, wherein voice control module gathers, and the work of corresponding command control pump is called to the speech instruction and identification, realizes the convenient control of not needing manual operation, and quick replacement module realizes the quick disassembly of water tank with the help of sliding assembly and lock mechanism, and the speed regulation switch can manually regulate the water -out speed of pump, and each part cooperates, and finally reaches the comprehensive effect of satisfying different medical operation demand, improving device applicability, operation convenience, use efficiency and work stability.
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Description

Technical Field

[0001] This utility model relates to the field of medical device technology, specifically a medical voice-controlled pump water injection device. Background Technology

[0002] Medical water pumps are widely used in various clinical departments. Among them, the endoscopic water pump is an external electromechanical device used in endoscopic diagnosis and treatment. It is used in conjunction with digestive endoscopes to flush out mucus, air bubbles, food residues or feces from the gastrointestinal tract and other substances that affect the endoscopic field of vision. It is also used for simple water injection and storage in the digestive tract, as well as to flush out bleeding points, perform underwater electrocautery, and electrocoagulation during endoscopic diagnosis and treatment.

[0003] Existing endoscopic water pumps have limited functionality. When in use, they are placed next to the examination bed, and are easily kicked or tripped over by the foot pedals and power cords. They are also noisy during use, and the constant use of the foot pedals can cause functional fatigue and strain on the surgeon. During examinations and treatments, there are four or more foot pedals on the floor, making it easy for the surgeon to step on the wrong one. Therefore, we have proposed a medical water injection device with convenient control and a quick-change water tank. Summary of the Invention

[0004] The purpose of this invention is to provide a medical voice-controlled pump water injection device to solve the problems existing in the operation of the existing device.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a medical voice-controlled pump water injection device, including a housing, wherein a self-priming diaphragm pump, a quick-change module and a voice control module are installed inside the housing, and a speed control switch is provided on the outer shell of the housing; The voice control module includes a voice acquisition unit, a voice controller, and a water pump controller. The voice controller includes a voice recognition unit and an instruction storage unit. The voice acquisition unit is used to acquire external voice commands. The voice recognition unit is connected to the voice acquisition unit and is used to recognize the acquired voice commands. The instruction storage unit is used to store preset voice commands and their corresponding control commands, and supports users in modifying the stored voice commands. The water pump controller is connected to both the voice recognition unit and the self-priming diaphragm pump, and is used to call the corresponding control commands in the instruction storage unit based on the results recognized by the voice recognition unit, thereby controlling the working state of the self-priming diaphragm pump. The quick-change module includes a mounting bracket, a water tank, and a locking mechanism. The mounting bracket is slidably installed inside the chassis via a sliding component, and the water tank is fixedly installed inside the mounting bracket via the locking mechanism. The speed control switch is connected to the self-priming diaphragm pump and is used to manually adjust the water output speed of the self-priming diaphragm pump.

[0006] Furthermore, the voice acquisition unit is a sound sensor, and the sound sensor is installed on the inner shell of the chassis.

[0007] Furthermore, the locking mechanism includes multiple sets of grooves formed on the inner wall of the mounting bracket and multiple sets of slots formed on both sides of the water tank. A return spring is fixedly connected to the inner wall of the groove, and a magnetic plate is fixedly connected to the other end of the return spring. An electromagnet is fixedly connected to the inner wall of the slot.

[0008] Furthermore, heating plates for heating the water injected into the water tank are embedded on both sides of the inner wall of the mounting bracket.

[0009] Furthermore, the inlet and outlet ends of the self-priming diaphragm pump are respectively fixedly connected to an inlet pipe and a water injection pipe. The other end of the inlet pipe is fixedly connected to the drain outlet of the water tank via a quick connector, and the other side of the water injection pipe extends to the outside of the casing.

[0010] Furthermore, a slide rail is fixedly connected to the bottom of the inner cavity of the chassis, and a slider is slidably connected to the top of the slide rail. The top of the slider is fixedly connected to the mounting bracket.

[0011] Furthermore, each of the four bottom corners of the chassis is fixedly connected to a base, and each base is fixedly connected to an anti-slip sleeve.

[0012] Compared with the prior art, the beneficial effects of this utility model are: This invention utilizes a self-priming diaphragm pump, a quick-change module, and a voice control module inside the housing, along with a speed control switch on the outer casing, to form its core structure. The voice control module collects and recognizes voice commands and invokes corresponding commands to control the pump's operation, achieving convenient control without manual operation. The quick-change module uses sliding components and a locking mechanism to enable quick assembly and disassembly of the water tank. The speed control switch allows manual adjustment of the pump's water output speed. The coordinated action of these components ultimately achieves a comprehensive effect that meets different medical operation needs, improves the device's applicability, ease of operation, efficiency, and operational stability. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of the entire utility model; Figure 2 This is a three-dimensional structural diagram of the overall internal structure of this utility model; Figure 3 This is a schematic diagram of the connection between the water tank and the self-priming diaphragm pump in this utility model; Figure 4 This is a schematic diagram of the internal structure of the connection between the water tank and the mounting bracket in this utility model; Figure 5 for Figure 4 Enlarged view of point A in the middle; Figure 6 This is a circuit connection diagram of the various components in this utility model.

[0014] In the diagram: 1. Chassis; 2. Mounting bracket; 3. Water tank; 4. Self-priming diaphragm pump; 5. Voice control module; 6. Water inlet pipe; 7. Water injection pipe; 8. Slide rail; 9. Slider; 10. Heating plate; 11. Slot; 12. Groove; 13. Return spring; 14. Magnetic plate; 15. Electromagnet; 16. Base; 17. Speed ​​control switch. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0016] Please see Figure 1-6 This utility model provides a technical solution: a medical voice-controlled pump water injection device, including a housing 1. The housing 1 contains a self-priming diaphragm pump 4, a quick-change module, and a voice control module. The housing 1 has a speed control switch 17 on its outer shell. When the device is started, the self-priming diaphragm pump 4 can deliver liquid through the inlet and outlet water pipes. The quick-change module enables convenient disassembly and assembly of the water tank. The voice control module receives and processes voice commands to control the pump's operation. The speed control switch 17 allows manual adjustment of the pump's water output speed. All components work together to meet different operational needs, thereby greatly improving the device's applicability. The voice control module includes a voice acquisition unit, a voice controller, and a water pump controller. The voice controller includes a voice recognition unit and a command storage unit. The voice acquisition unit is used to acquire external voice commands. The voice recognition unit is connected to the voice acquisition unit and is used to recognize the acquired voice commands. The command storage unit is used to store preset voice commands and their corresponding control commands, and supports users to modify the stored voice commands. The water pump controller is connected to both the voice recognition unit and the self-priming diaphragm pump 4. It is used to call the corresponding control command in the command storage unit based on the result recognized by the voice recognition unit, thereby controlling the working state of the self-priming diaphragm pump 4. During operation, the voice acquisition unit first captures external voice commands and transmits them to the voice recognition unit for recognition. After recognition, the command storage unit retrieves the corresponding control command, and then the water pump controller transmits the command to the self-priming diaphragm pump 4 to control its operation. At the same time, users can modify the contents of the command storage unit as needed, thereby achieving the function of controlling the device without manual operation, which greatly improves the convenience of operation. The quick-change module includes a mounting bracket 2, a water tank 3, and a locking mechanism. The mounting bracket 2 is slidably installed inside the housing 1 via a sliding assembly, and the water tank 3 is fixedly installed inside the mounting bracket 2 via the locking mechanism. In use, the mounting bracket 2 is slid out of the housing 1 via the sliding assembly, the water tank 3 is placed into the mounting bracket 2, and then fixed in place by the locking mechanism. To disassemble, the locking mechanism is released, and the mounting bracket 2 is slid out via the sliding assembly to remove the water tank 3, thus achieving the function of quickly replacing the water tank 3 and greatly improving the efficiency of the device. Speed ​​control switch 17 is connected to self-priming diaphragm pump 4 and is used to manually adjust the water output speed of self-priming diaphragm pump 4. Medical staff operate speed control switch 17 according to actual needs, and the switch transmits a signal to self-priming diaphragm pump 4, causing its water output speed to change accordingly to adapt to different medical scenarios, thereby achieving precise control of the water output speed and greatly improving operational flexibility.

[0017] Furthermore, the voice acquisition unit is a sound sensor, which is installed on the inner shell of the chassis 1. The sound sensor continuously monitors external voice signals on the inner shell of the chassis 1. When a voice command is issued, the sensor quickly captures it and converts it into an electrical signal, which is then transmitted to the voice recognition unit. The installation position of the inner shell ensures effective sound acquisition while reducing external interference, thereby achieving the function of accurately acquiring voice commands and greatly improving the reliability of voice control. Furthermore, the locking mechanism includes multiple sets of grooves 12 formed on the inner wall of the mounting bracket 2 and multiple sets of slots 11 formed on both sides of the water tank 3. A return spring 13 is fixedly connected to the inner wall of the groove 12, and a magnetic locking plate 14 is fixedly connected to the other end of the return spring 13. An electromagnet 15 is fixedly connected to the inner wall of the slot 11. When the water tank 3 is placed into the mounting bracket 2, the water tank 3 squeezes the magnetic locking plate 14 to compress the return spring 13 and enter the groove 12. After the water tank 3 is fully placed, the magnetic locking plate 14 pops out under the action of the return spring 13 and inserts into the slot 11, attracting the electromagnet 15 to achieve locking. When unlocking, the electromagnet 15 is energized to generate a magnetic field that repels the magnetic locking plate 14, causing it to return to the groove 12, thereby achieving the functions of stable locking and quick unlocking of the water tank 3, and thus greatly improving the convenience and stability of the installation and disassembly of the water tank 3. Furthermore, heating plates 10 are embedded on both sides of the inner wall of the mounting frame 2 for heating the water injected inside the water tank 3. When heating of the water is required, the heating plates 10 are energized to generate heat, which is transferred to the water tank 3 through the inner wall of the mounting frame 2 to heat the water injected inside. Heating from both sides makes the water temperature more uniform, thereby achieving precise control of the water temperature and greatly improving the comfort and safety of medical operations. Furthermore, the inlet and outlet ends of the self-priming diaphragm pump 4 are respectively fixedly connected to an inlet pipe 6 and a water injection pipe 7. The other end of the inlet pipe 6 is fixedly connected to the drain outlet of the water tank 3 via a quick connector, and the other side of the water injection pipe 7 extends to the outside of the casing 1. When the self-priming diaphragm pump 4 is working, it draws injection water from the water tank 3 through the inlet pipe 6, ensures a tight and leak-proof connection through the quick connector, and then delivers the water to the operating part outside the casing 1 through the water injection pipe 7, thereby achieving a stable delivery of injection water and greatly improving the reliability of the water injection process. Furthermore, a slide rail 8 is fixedly connected to the bottom of the inner cavity of the housing 1, and a slider 9 is slidably connected to the top of the slide rail 8. The top of the slider 9 is fixedly connected to the mounting bracket 2. When the mounting bracket 2 is pushed, the slider 9 at its bottom slides along the slide rail 8 inside the housing 1, realizing the entry and exit of the mounting bracket 2. The cooperation between the slide rail 8 and the slider 9 ensures a smooth and stable sliding process, thereby achieving the function of convenient movement of the mounting bracket 2, and thus greatly improving the efficiency of water tank 3 replacement. Furthermore, bases 16 are fixedly connected to the four bottom corners of the chassis 1, and anti-slip sleeves are fixedly connected to the outer surface of each base 16. The bases 16 support the chassis 1, keeping it at a certain distance from the placement surface to reduce the influence of ground moisture, etc. At the same time, the anti-slip sleeves on the outside of the bases 16 increase the friction with the placement surface, preventing the device from sliding during operation, thereby achieving the function of stabilizing the placement of the device and greatly improving the stability of the device during operation.

[0018] Working principle: In the operating room or ward, when medical staff need to perform medical procedures such as local irrigation and wound cleaning on patients, they first install the water tank 3 using a quick-change module. During installation, the mounting frame 2 is pulled out of the housing 1 by using the sliding cooperation between the bottom slide rail 8 inside the housing 1 and the bottom slider 9 of the mounting frame 2. Then, the water tank 3 containing injection water is placed inside the mounting frame 2. At this time, the water tank 3 will first push the magnetic card 14, which is pushed by the return spring 13, into the groove 12 on the inner wall of the mounting frame 2. After the water tank 3 is completely inside the mounting frame 2, the side of the water tank 3... When the slot 11 on the surface moves to the magnetic card plate 14, the magnetic card plate 14 will pop out and insert into the slot 11 under the action of the return spring 13, thereby locking the water tank 3. This significantly shortens the water tank 3 replacement time and improves the efficiency of preparation. If the injection water needs to be kept at a specific temperature during operation, the heating plates 10 on both sides of the inner wall of the mounting bracket 2 can heat the injection water in the water tank 3 to ensure that the injection water temperature meets medical requirements and improves the patient's comfort. During operation, medical staff can control the working status of the self-priming diaphragm pump 4 through the voice control module or the speed control switch 17. When voice control is used, the voice acquisition unit on the inner shell of the housing 1 collects external voice commands. The voice recognition unit in the voice controller then recognizes these commands and retrieves the corresponding control command from the command storage unit. The water pump controller then controls the start, stop, or water flow rate adjustment of the self-priming diaphragm pump 4 according to this command. This voice control method allows medical staff to operate the device flexibly even when their hands are occupied or they have difficulty touching it, reducing operational steps and improving work efficiency. If voice control is not possible in unexpected situations, medical staff can directly operate the speed control switch 17 on the outer shell of the housing 1 to quickly change the water flow rate of the self-priming diaphragm pump 4, thereby meeting the needs of different scenarios regarding water volume and... To meet the precise requirements of water flow rate, when the self-priming diaphragm pump 4 is working, its inlet end is connected to the quick connector of the drain outlet of the water tank 3 through the inlet pipe 6, drawing in the injection water in the water tank 3, and then delivering the water to the operating part outside the machine box 1 through the water outlet pipe 7 to complete the water injection operation. When the water tank 3 needs to be replaced, the electromagnet 15 can be energized, thereby generating a magnetic field force, which can quickly push the magnetic card plate 14 out of the card slot 11. Then, the mounting bracket 2 can be pulled out through the sliding of the slide rail 8 and the slider 9, so that the old water tank 3 can be quickly removed and replaced with a new one, thereby further improving the overall efficiency of medical operation. At the same time, the base 16 at the four corners of the bottom of the machine box 1 can ensure the stable placement of the device and prevent displacement during operation.

[0019] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

Claims

1. A medical voice-controlled pump water injection device, comprising a housing (1), characterized in that: The chassis (1) is equipped with a self-priming diaphragm pump (4), a quick-change module and a voice control module. The chassis (1) is equipped with a speed control switch (17). The voice control module includes a voice acquisition unit, a voice controller and a water pump controller. The voice controller includes a voice recognition unit and an instruction storage unit. The voice acquisition unit is used to acquire external voice commands. The voice recognition unit is connected to the voice acquisition unit and is used to recognize the acquired voice commands. The instruction storage unit is used to store preset voice commands and their corresponding control commands, and supports users to modify the stored voice commands. The water pump controller is connected to the voice recognition unit and the self-priming diaphragm pump (4) respectively, and is used to call the corresponding control command in the instruction storage unit according to the result recognized by the voice recognition unit, thereby controlling the working state of the self-priming diaphragm pump (4). The quick-change module includes a mounting bracket (2), a water tank (3), and a locking mechanism. The mounting bracket (2) is slidably installed inside the chassis (1) via a sliding component, and the water tank (3) is fixedly installed inside the mounting bracket (2) via the locking mechanism. The speed control switch (17) is connected to the self-priming diaphragm pump (4) and is used to manually adjust the water output speed of the self-priming diaphragm pump (4).

2. The medical voice-controlled pump water injection device according to claim 1, characterized in that: The voice acquisition unit is a sound sensor, and the sound sensor is installed on the inner shell of the chassis (1).

3. The medical voice-controlled pump water injection device according to claim 1, characterized in that: The locking mechanism includes multiple sets of grooves (12) on the inner wall of the mounting bracket (2) and multiple sets of slots (11) on both sides of the water tank (3). A reset spring (13) is fixedly connected to the inner wall of the groove (12), and a magnetic plate (14) is fixedly connected to the other end of the reset spring (13). An electromagnet (15) is fixedly connected to the inner wall of the slot (11).

4. A medical voice-controlled pump water injection device according to claim 1, characterized in that: Heating plates (10) for heating the water injected into the water tank (3) are embedded on both sides of the inner wall of the mounting bracket (2).

5. A medical voice-controlled pump water injection device according to claim 1, characterized in that: The inlet and outlet ends of the self-priming diaphragm pump (4) are respectively fixedly connected to an inlet pipe (6) and a water injection pipe (7). The other end of the inlet pipe (6) is fixedly connected to the drain outlet of the water tank (3) through a quick connector. The other side of the water injection pipe (7) extends to the outside of the machine box (1).

6. A medical voice-controlled pump water injection device according to claim 1, characterized in that: The bottom of the inner cavity of the chassis (1) is fixedly connected to a slide rail (8), and the top of the slide rail (8) is slidably connected to a slider (9). The top of the slider (9) is fixedly connected to the mounting bracket (2).

7. A medical voice-controlled pump water injection device according to claim 1, characterized in that: The bottom four corners of the chassis (1) are all fixedly connected to bases (16), and the outer surface of the bases (16) is fixedly connected to anti-slip sleeves.