A breath counting trainer
By designing a counting breathing trainer, which uses a counterweight slider and sensors to record the number of breaths, the problem of existing breathing training devices being complex in structure, inconvenient to carry, and lacking in fun has been solved, achieving a portable and highly engaging training effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YONGKANG CHANGFENG IND & TRADE CO LTD
- Filing Date
- 2025-06-13
- Publication Date
- 2026-08-04
AI Technical Summary
Existing breathing training devices are complex in structure, take up a lot of space, are inconvenient to carry, have poor training fun, are difficult to motivate patients and children, and are not convenient to observe training progress.
Design a counting breathing trainer, comprising a container, a counterweight slider, a sensor, and a display. The sensor records and displays the number of breaths, the counterweight slider generates a sensing signal as it slides inside the container, and the display counts the breaths. The outer shell is designed as a spherical shape for easy gripping, and the air inlet is detachably connected to the air tube and the air nozzle.
It enables portable and engaging breathing training, records training progress, enhances the training initiative of patients and children, and is suitable for competition recording.
Smart Images

Figure CN224585287U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lung function training technology, specifically to a counting breathing trainer. Background Technology
[0002] Breathing trainers are used in many scenarios and fields. In the medical field, respiratory rehabilitation training is crucial for patients with nerve damage and other conditions. However, current training devices are complex in structure, take up a lot of space, are inconvenient to carry, make training difficult for patients, lack fun, and fail to motivate trainees. In the toy field, children can also improve their lung capacity and thus their physical fitness through breathing trainers. However, existing ones are not very fun, make it difficult to intuitively observe the number of breaths, and hinder the continuation of the training process, making it difficult to carry out training plans. Utility Model Content
[0003] To address the shortcomings of existing technologies, this invention provides a counting breathing trainer.
[0004] The technical solution of this utility model is as follows: This utility model provides a counting breathing trainer, including a container with multiple counterweight sliders that can slide along the length direction inside the container. There is a gap between the counterweight sliders and the inner wall of the container. An air port is provided at the lower end of the container, and a counting module is provided at the upper end of the container. The counting module includes a display and a sensor, which are connected. When the counterweight sliders move to the upper position inside the container, the sensor generates a sensing signal and transmits the signal to the display for counting. The display accumulates the number of sensing signals and displays it. An air outlet is also provided at the upper end of the container.
[0005] Furthermore, the lower end of the container is open and a cover is installed at the opening. The cover is detachable, and the air vent is located on the side or bottom of the cover.
[0006] Furthermore, the cover is installed to the container via threads.
[0007] Furthermore, an air inlet is connected to one end of an air tube, and an air nozzle is installed at the other end of the air tube.
[0008] Furthermore, the sensor is a magnetic sensor, and a magnetic block is embedded in the counterweight slider.
[0009] Furthermore, a magnetic block is embedded in the end of the counterweight slider facing the sensor.
[0010] Furthermore, the counterweight slider includes a cylindrical shell, inside which a counterweight is disposed, and a magnetic block is embedded in the cylindrical shell at one end near the sensor.
[0011] Furthermore, the sensor is a pressure sensor, and the pressure sensor has a sensing end inside the container.
[0012] Furthermore, the counting module also includes a housing mounted on the top of the container, with a display and a sensor mounted on the surface and inside the housing, respectively, and a battery providing power to the display and the sensor disposed inside the housing.
[0013] Furthermore, the outer shell is designed to be spherical.
[0014] The beneficial effects achieved by this utility model are as follows: Users blow air into the container through the air inlet. The counterweight slider creates resistance to the airflow. Users overcome this resistance to perform breathing exercises. The air pushes the counterweight slider to the upper position inside the container. The sensor generates a signal and transmits it to the display for counting. The display accumulates and displays the number of signals detected. After multiple blowing exercises, the number of blows can be recorded to track the breathing training results. This allows for better implementation of training plans and can also be used for blowing competitions, making training more enjoyable. Attached Figure Description
[0015] Figure 1 This is a first three-dimensional structural schematic diagram of an embodiment of the present utility model; Figure 2 This is a front view of an embodiment of the present invention; Figure 3 This is a side view of an embodiment of the present invention; Figure 4 It is along Figure 3 A cross-sectional view of the BB line; Figure 5 This is a cross-sectional view of a counterweight slider according to an embodiment of the present invention; Figure 6 This is a second three-dimensional structural schematic diagram of an embodiment of the present utility model. Detailed Implementation
[0016] To facilitate understanding of this utility model by those skilled in the art, the specific embodiments of this utility model are described below with reference to the accompanying drawings.
[0017] like Figures 1-6 As shown, this utility model provides a counting breathing training device, including a container 1. Multiple counterweight sliders 2 that can slide along the length direction are arranged inside the container 1. A gap is left between the counterweight sliders 2 and the inner wall of the container 1. An air port 4 is provided at the lower end of the container 1. The lower end of the container 1 is open, and a cover 3 is installed at the opening. The cover is detachable and is installed to the container by threads. The counterweight sliders can be replaced by removing the cover, and the number of counterweight sliders can be easily adjusted. The air port 4 is located on the side of the cover 3 (e.g., ...). Figure 1 (as shown) or the lower side (as shown) Figure 6As shown in the attached diagram, the air inlet can be connected to one end of the air tube, and the other end of the air tube can be fitted with an air nozzle. A counting module is set at the top of the container. The counting module includes a display 5 and a sensor 6. The display 5 and the sensor 6 are connected. An air outlet 9 is also set at the top of the container. When the user blows air into the container through the air inlet, the air pushes the counterweight slider to the upper position inside the container. The sensor 6 generates a sensing signal and transmits the signal to the display for counting. The display accumulates the number of signals sensed and displays the count. The air is discharged in time through the air outlet.
[0018] Sensor 6 can use different sensing types, such as magnetic sensors. A common type of magnetic sensor is the Hall sensor, which can sense magnetic fields. A magnetic block 7 is embedded in the counterweight slider. The magnetic block is embedded at the end of the counterweight slider facing the sensor. When the magnetic block approaches the Hall sensor, the magnetic field passes through the Hall element of the Hall sensor. The electrons in the Hall element will be subjected to the Lorentz force, causing the electrons to move in a certain direction in the element, thereby generating a potential difference on both sides of the element. This potential difference can be detected by the signal processing circuit and converted into a signal.
[0019] The counterweight slider 2 includes a cylindrical shell 21, a counterweight 22 is provided inside the cylindrical shell 21, and a magnetic block is embedded in the cylindrical shell 21 at one end near the sensor. The cylindrical shell is preferably made of plastic material, which is easy to manufacture and the surface resistance can be relatively smooth.
[0020] Sensor 6 can also use a pressure sensor. The pressure sensor has a sensing end inside the container. A pressure sensor (Pressure Transducer) is a device or apparatus that can sense pressure signals and convert them into usable output electrical signals according to a certain rule. It is a commonly used electrical component, which will not be described in detail here. It can also convert the pressure generated by the nearby counterweight slider into a signal and transmit it to the display 5.
[0021] The counting module also includes a housing 8, which is installed on the top of the container. The housing can be installed on the top of the container by means of threaded connection, or in other ways. The display 5 and the sensor 6 are installed on the surface and inside of the housing 8, respectively. A battery is provided inside the housing to power the display 5 and the sensor 6. The battery can be charged. The vent 9 can be opened on one side of the housing 8.
[0022] The outer shell 8 is spherical, which makes the device resemble a dumbbell, making it easy for users to grip and use.
[0023] Of course, it is not limited to the sensor types mentioned above. It can also be a distance sensor, which generates a corresponding signal when the counterweight slider approaches to a certain distance. It can be any other type of sensor.
[0024] How it works: The user blows air into the container through the air inlet. The counterweight slider creates resistance to the airflow. The user overcomes this resistance to perform breathing exercises. The air pushes the counterweight slider to the upper position inside the container. The sensor generates a signal and transmits it to the display for counting. The display accumulates and displays the number of signals detected. After multiple blowing exercises, the number of blows can be recorded to track the breathing training results. This allows for better training plans and can also be used for blowing competitions, making training more enjoyable.
[0025] The embodiments of this utility model described above do not constitute a limitation on the scope of protection of this utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the scope of protection of the claims of this utility model.
Claims
1. A counting breath trainer, characterized by: The container includes multiple counterweight sliders that can slide along its length. There is a gap between the counterweight sliders and the inner wall of the container. An air vent is provided at the lower end of the container, and a counting module is provided at the upper end of the container. The counting module includes a display and a sensor. The display and the sensor are connected. When the counterweight sliders move to the upper position inside the container, the sensor generates a sensing signal and transmits the signal to the display for counting. The display accumulates the number of sensing signals and displays it. An air vent is also provided at the upper end of the container.
2. A counting respiratory exerciser according to claim 1, wherein: The container has an opening at the bottom, and a cover is installed at the opening. The cover is detachable, and the air vent is located on the side or bottom of the cover.
3. A counting respiratory exerciser according to claim 2, wherein: The lid is installed to the container via threads.
4. The counting respiratory exerciser according to claim 1, wherein: The air inlet is connected to one end of the air tube, and the other end of the air tube is fitted with an air nozzle.
5. The counting respiratory exerciser according to claim 1, wherein: The sensor is a magnetic sensor, and a magnetic block is embedded in the counterweight slider.
6. A counting respiratory exerciser according to claim 5, wherein: The magnetic block is embedded in the end of the counterweight slider facing the sensor.
7. A counting respiratory exerciser according to claim 6, wherein: The counterweight slider includes a cylindrical shell, inside which a counterweight is installed, and a magnetic block is embedded in the cylindrical shell at one end near the sensor.
8. The counting respiratory exerciser according to claim 1, wherein: The sensor is a pressure sensor, and the pressure sensor has a sensing end inside the container.
9. The counting respiratory exerciser according to claim 1, wherein: The counting module also includes a housing mounted on the top of the container. The display and sensors are mounted on the surface and inside the housing, respectively. A battery that powers the display and sensors is located inside the housing.
10. A counting respiratory exerciser according to claim 9, wherein: The outer shell is designed to be spherical.