Pre-adaptation training instrument

By integrating millimeter-wave radar and inflation devices into the pre-adaptation training device, non-contact heart rate and respiration detection is achieved, solving the problems of inaccurate detection and discomfort in existing technologies. It provides comfortable and efficient vital sign monitoring and supports multiple data transmissions and remote health management.

CN223817611UActive Publication Date: 2026-01-23SHENZHEN TDF TAI INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422986726.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2026-01-23
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

Existing pre-adaptation training devices lack real-time monitoring of users' vital signs, especially heart rate and respiration, and traditional methods require contact sensors, which can lead to discomfort and affect detection accuracy.

Method used

It uses millimeter-wave radar to detect heart rate and respiration non-contactly, combined with an inflation device and control board, an integrated display screen and multiple data transmission methods, to provide comfortable and accurate detection.

Benefits of technology

It enables accurate detection of heart rate and respiration without direct contact, improving user comfort and detection accuracy. It is suitable for complex environments, supports multiple data transmission methods, and facilitates remote monitoring and personalized health advice.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a pre-adaptation training instrument, and relates to the technical field of medical instruments, the pre-adaptation training instrument mainly comprises a pre-adaptation training instrument main body, an inflation device, an arm band and a millimeter wave radar device, the inflation device is arranged in the pre-adaptation training instrument main body and is used for outputting gas; the arm band is communicated with the inflating device and is arranged at the arm of a user; the millimeter wave radar device is arranged in the pre-adaptation training instrument body and used for transmitting and receiving microwave signals. The heart rate and breathing condition of a user can be accurately and conveniently detected while pre-adaptation training is carried out, and the use comfort level is high.
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Description

TECHNICAL FIELD

[0001] The utility model relates to medical instrument technical field especially is related to a preadaptation training appearance. BACKGROUND

[0002] At present, there are many preadaptation training instruments on the market, but most of the preadaptation training instruments only focus on providing preadaptation training function, lack real-time monitoring of user's vital signs, and cannot understand the user's physical condition in the training process in time. Moreover, the existing preadaptation training instrument has certain detection function, but the heart rate and respiration detection method often needs contact type sensor, such as electrode sheet, which brings discomfort to the user, and is easy to be disturbed, affecting the detection accuracy.

[0003] Patent CN213723407U discloses a kind of medical care with ischemic preadaptation training appearance, but it does not have the function of detecting user's heart rate and respiration condition, and use is more limited. Therefore, a preadaptation training instrument is needed, which can accurately and conveniently detect user's heart rate and respiration condition. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of preadaptation training appearance, to solve the problems existing in the prior art described above, can accurately and conveniently detect user's heart rate and respiration condition while preadaptation training, and the use comfort is high.

[0005] To achieve the above-mentioned purpose, the utility model provides the following scheme:

[0006] The utility model provides a kind of preadaptation training appearance, comprising

[0007] preadaptation training appearance main part;

[0008] inflating device, the inflating device is set up in the preadaptation training appearance main part interior, for output gas;

[0009] arm belt, the arm belt is communicated with the inflating device, for being set up at user's arm;

[0010] millimeter wave radar device, the millimeter wave radar device is set up in the preadaptation training appearance main part interior, for emitting and receiving microwave signal, to detect heart rate and respiration.

[0011] Preferably, the millimeter wave radar device includes a radar signal processing chip and a millimeter wave radar antenna, the millimeter wave radar antenna is set up in the preadaptation training appearance main part interior and close to the shell, for receiving and emitting microwave signal, the radar signal processing chip is set up in the preadaptation training appearance main part interior, and is electrically connected with the millimeter wave radar antenna, the radar signal processing chip is used to process the microwave signal.

[0012] Preferably, the pre-adaptation training instrument body comprises a shell and an inclined cover, the inclined cover is arranged on the shell, the inclined cover is used to face the user when the user uses, and the upper shell of the inclined cover is provided with the millimeter wave radar antenna.

[0013] Preferably, the inclined cover is further provided with a socket, one end of the socket is used to be connected with the output end of the inflation device, and the other end is used to be communicated with the air inlet hole of the arm band.

[0014] Preferably, the control mainboard is further arranged in the pre-adaptation training instrument body and is electrically connected with the radar signal processing chip.

[0015] Preferably, the inclined cover is further provided with a display screen and measurement buttons, setting buttons, switch buttons, mode buttons and training buttons arranged side by side in sequence, the display screen is arranged below the millimeter wave radar antenna and is electrically connected with the control mainboard, the measurement buttons, the setting buttons, the switch buttons, the mode buttons and the training buttons are electrically connected with the control mainboard, the measurement buttons are used to control the opening and closing of measurement, the setting buttons are used to set the air output of the inflation device, the switch buttons are used to control the opening and closing, the mode buttons are used to adjust the breathing detection mode or the heart rate detection mode, and the training buttons are used to control the opening and closing of the inflation device.

[0016] Preferably, the inflation device comprises a first air pump and a second air pump, the air outlet ends of the first air pump and the second air pump are connected to the socket through silica gel pipes, and the output power of the first air pump is greater than that of the second air pump.

[0017] Preferably, the air seat is further connected with the socket at a first end and a four-way pipe at a second end, a first end of the four-way pipe is connected with a deflation valve, the deflation valve is used to deflate, a second end and a third end of the four-way pipe are connected with the air outlet ends of the first air pump and the second air pump respectively, a fourth end of the four-way pipe is connected with the air seat, a uniform speed valve and a two-way valve are arranged in sequence at one end of the four-way pipe connected with the air seat, and a pressure sensor is arranged at the interface, and the pressure sensor is electrically connected with the control mainboard.

[0018] Preferably, the lithium battery is further arranged in the pre-adaptation training instrument body, and an output end of the lithium battery is connected with the control mainboard and the inflation device.

[0019] Preferably, a communication unit is further included, which is electrically connected with the control mainboard, including a WIFI unit, a Bluetooth unit and a data network unit, the WIFI unit is used for WIFI connection, the Bluetooth unit is used for Bluetooth connection, and the data network unit is used for data card connection.

[0020] The utility model discloses relative to prior art has obtained following technical effect:

[0021] The inflation device is arranged in the pre-adaptation training instrument main body and is used for outputting gas, the arm band is communicated with the inflation device and is arranged at the user's arm, and the millimeter wave radar device is arranged in the pre-adaptation training instrument main body and is used for transmitting and receiving microwave signals to detect heart rate and respiration. BRIEF DESCRIPTION OF DRAWINGS

[0022] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or prior art, the following will briefly introduce the drawings needed to be used in the embodiments, obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without paying creative labor.

[0023] Fig. 1 It is the connection detailed view of pre-adaptation training instrument in some embodiments of the utility model;

[0024] Fig. 2 It is the connection diagram of pre-adaptation training instrument in some embodiments of the utility model;

[0025] Fig. 3 It is the stereogram of pre-adaptation training instrument in some embodiments of the utility model.

[0026] In the figure: 101-millimeter wave radar device; 102-pre-adaptation training instrument main body; 103-communication unit; 1-arm band; 2-air seat; 3-silica gel pipe; 4-constant speed valve; 5-two-way valve; 6-four-way pipe; 7-bleed valve; 8-first air pump; 9-second air pump; 10-pressure sensor; 11-control mainboard; 12-WIFI unit; 13-Bluetooth unit; 14-data network unit; 15-display screen; 16-measurement button; 17-setting button; 18-millimeter wave radar antenna; 19-radar signal processing chip; 20-switch button; 21-mode button; 22-training button; 23-jack. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0028] The present application provides a pre-adaptation training instrument to solve the problems existing in the prior art, which can accurately and conveniently detect the heart rate and breathing condition of the user while pre-adapting, and has high comfort in use.

[0029] In order to make the above-mentioned purposes, features and advantages of the present application more apparent and easy to understand, the present application will be further described in detail below with reference to the drawings and specific embodiments.

[0030] As Figs. 1-3As shown, the utility model provides a kind of pre-adaptation training instrument, including pre-adaptation training instrument main body 102, inflation device, arm band 1 and millimeter wave radar device 101, inflation device is set to pre-adaptation training instrument main body 102 inside, for output gas;Arm band 1 is communicated with inflation device by silica gel tube 3, for being set to user arm, inflation device is inflated to arm band 1 can provide basic condition for pre-adaptation training, millimeter wave radar device 101 is set to pre-adaptation training instrument main body 102 inside, for transmitting and receiving microwave signal.Millimeter wave radar device 101 is used to detect heart rate and breath without direct contact with human body, will not bring any discomfort to the person being measured, for the population needing long-term monitoring heart rate and breath, such as patient with chronic disease, the elderly etc., it is more comfortable to use, avoid the restraint or skin allergy etc. Problem that possibly generated because of wearing contact type equipment.For some special circumstances, such as burn patient, the population with skin trauma, traditional contact type detection method can not be applicable, and millimeter wave radar can not be affected by these factors, and smoothly complete detection.Millimeter wave radar can capture the slight action and displacement change caused by breathing and heartbeat of human body. Heartbeat will cause the slight vibration of human body surface, and chest and abdomen also fluctuate regularly when breathing, and these slight changes can be accurately detected by millimeter wave radar, compared with other some non-contact detection techniques, such as the detection method based on optical principle can be disturbed by light, skin color, temperature and other environmental factors, millimeter wave radar is less affected by these factors, and can maintain high detection accuracy in complex environment.And the volume of millimeter wave radar device 101 can be made smaller, integrated in pre-adaptation training instrument main body 102, so that the overall volume of pre-adaptation training instrument is smaller, more portable.

[0031] In some embodiments, millimeter wave radar device 101 includes radar signal processing chip 19 and millimeter wave radar antenna 18, millimeter wave radar antenna 18 is set to pre-adaptation training instrument main body 102 inside and close to shell, for receiving and transmitting microwave signal, radar signal processing chip 19 is set to pre-adaptation training instrument main body inside, and is electrically connected with millimeter wave radar antenna 18, and radar signal processing chip 19 is used to process microwave signal.Millimeter wave radar antenna 18 is located on the surface of the instrument, can be directly contacted with external environment, reduces the shielding and attenuation in signal transmission process.When it is needed to receive the microwave signal reflected by human body, its directly exposed position can acquire clear signal to the maximum extent.Moreover, when transmitting microwave signal, it can also send signal in the most direct way, to ensure the strength and quality of signal.

[0032] In some embodiments, the pre-adaptation training instrument body 102 comprises a shell and an inclined cover, the inclined cover covers the shell, the inclined cover is used to face the user during use, and the upper part of the inclined cover is internally provided with the millimeter wave radar antenna 18. The inclined cover can face the user, provide more convenient operation, and the millimeter wave radar antenna 18 is arranged in the upper part of the inclined cover close to the shell, which is closer to the key parts of the user's body such as the chest and head area during use, which is beneficial to more accurately receive the physiological signals of the human body such as heart rate, respiration and other related millimeter wave reflection signals, because these physiological signals are more obvious in the area close to the upper part of the body.

[0033] In some embodiments, the inclined cover is also provided with a jack 23, one end of the jack 23 is used to connect with the output end of the inflation device, and the other end is used to communicate with the air inlet hole of the arm band 1. Preferably, the jack 23 is provided with four, and each two holes are connected with one arm band 1, which can ensure sufficient inflation. Two arm bands 1 are worn on the left arm and the right arm of the user, or two arm bands 1 can be provided for each arm band 1 to be inflated.

[0034] In some embodiments, the pre-adaptation training instrument further comprises a control mainboard 11, which is arranged in the pre-adaptation training instrument body 102 and is electrically connected with the radar signal processing chip 19. The control mainboard 11 is preferably a single-chip microcomputer (micro control unit MCU), which can ensure a smaller size and more powerful information processing function.

[0035] In some embodiments, the inflation device comprises a first air pump 8 and a second air pump 9, the air outlet ends of the first air pump 8 and the second air pump 9 are connected to the jack 23 through silica gel pipes, and the output power of the first air pump 8 is greater than that of the second air pump 9. The first air pump 8 and the second air pump 9 with different output powers are arranged to make the inflation device meet various inflation needs. The first air pump 8 has large output power and can be used for rapid inflation. The second air pump 9 has small output power and is suitable for fine inflation. The second air pump 9 can more accurately adjust the air pressure to avoid over inflation. The double air pump design can flexibly select which air pump to use according to the specific inflation object and target air pressure, or use the two air pumps in combination. For example, the first air pump 8 is used for rapid inflation to approach the target air pressure at the initial inflation stage, and then the second air pump 9 is switched to fine adjustment to achieve the accurate air pressure requirement. In this way, the inflation efficiency can be ensured, and the accuracy and safety of inflation can be improved.

[0036] In some embodiments, a display screen 15 and a measurement button 16, a setting button 17, a power button 20, a mode button 21, and a training button 22 are arranged side by side on the inclined covering surface. The display screen 15 is located below the millimeter-wave radar antenna 18 and is electrically connected to the control motherboard 11. The measurement button 16, setting button 17, power button 20, mode button 21, and training button 22 are all electrically connected to the control motherboard 11. The measurement button 16 is used to control the start and stop of the measurement. The setting button 17 is used to set the air output of the inflation device. It can be set to use which air pump or use them in combination as needed. The power button 20 is used to control the overall opening and closing of the machine. The mode button 21 is used to adjust the breathing detection mode or the heart rate detection mode. The training button 22 is used to control the start and stop of the inflation device, that is, to control the start and stop of the pre-adaptation training. The display screen 15, measurement button 16, setting button 17, power button 20, mode button 21 and training button 22 are arranged side by side on the inclined cover surface. Since the inclined cover surface faces the user when in use, it is convenient for the user to easily reach and operate these buttons when using the pre-adaptation training device.

[0037] In some embodiments, the pre-adaptation training device further includes an air seat 2. The first end of the air seat 2 is connected to a socket 23, and the second end is connected to a four-way pipe 6. Preferably, the four-way pipe 6 is a four-way silicone tube. A vent valve 7 is connected to the first end of the four-way pipe 6 for releasing air. The second and third ends of the four-way pipe 6 are connected to the outlet ends of the first air pump 8 and the second air pump 9, respectively. A constant-speed valve 4 and a two-way valve 5 are sequentially installed at the end of the four-way pipe 6 connected to the air seat 2, and a pressure sensor 10 is installed at the interface. The pressure sensor 10 is electrically connected to the control mainboard 11. The constant-speed valve 4 and the two-way valve 5 at the end of the four-way pipe 6 connected to the air seat 2 allow for precise control of the gas entering the air seat 2. The constant-speed valve 4 ensures that the gas enters the air seat 2 at a stable flow rate, which is crucial for situations requiring precise air pressure control, such as in pre-adaptation training scenarios with strict pressure requirements. A stable airflow ensures uniform pressure changes in the training equipment. The two-way valve 5 can further control the flow of gas, and in conjunction with the constant speed valve 4, it enables more flexible inflation operations. A pressure sensor 10 is installed at the interface and is electrically connected to the control board 11, allowing the instrument to monitor the air pressure in the air seat 2 in real time. For example, when the air pressure approaches or reaches the set value during inflation, the control board 11 can adjust the working state of the air pump or shut it down in a timely manner based on the signal from the pressure sensor 10, thereby avoiding over-inflation.

[0038] In some embodiments, the pre-adaptation training device also includes a lithium battery disposed inside the main body 102 of the pre-adaptation training device. The output terminal of the lithium battery is connected to the control motherboard 11 and the inflation device. The lithium battery serves as a power source and can be charged, enabling the pre-adaptation training device to operate without dependence on an external power outlet. Users can use the training device in environments without power outlets, such as outdoors, in a moving vehicle, or in indoor environments where space is limited and an outlet cannot be connected, greatly increasing the usage scenarios and portability of the training device.

[0039] In some embodiments, the pre-adaptation training device further includes a communication unit 103, which is electrically connected to the control motherboard 11. The communication unit 103 includes a WIFI unit 12, a Bluetooth unit 13, and a data network unit 14. The WIFI unit 12 is used for WIFI connection, the Bluetooth unit 13 is used for Bluetooth connection, and the data network unit is used for data card insertion, providing users with multiple data transmission methods. Users can view their heart rate, respiration, and training data in real time through dedicated applications on devices such as mobile phones and tablets, and perform data management and analysis. Simultaneously, the data can also be transmitted to a remote monitoring platform in medical institutions, allowing doctors to understand the user's physical condition and training effect through remote monitoring, and provide personalized health advice and treatment plans. In environments with WIFI coverage, such as homes, offices, and hospitals, users can connect to wireless networks through the WIFI unit, enjoying high-speed and stable network connections, facilitating the uploading of training data to cloud servers or remote interaction with other devices. The Bluetooth unit 13 is suitable for short-range data transmission, such as pairing with users' mobile devices like mobile phones and tablets. Users can view training data or perform simple device control directly on their mobile devices without using a network. The data network unit 14 is used by plugging in a data card, which can be 2G / 4G / 5G, etc., so that the training device can access the network in remote areas without WIFI or while moving (such as in a car, train or other means of transportation), ensuring that data transmission is not limited by the environment.

[0040] This utility model uses specific examples to illustrate its principles and implementation methods. The above description of the embodiments is only for the purpose of helping to understand the method and core idea of ​​this utility model. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the idea of ​​this utility model. In summary, the content of this specification should not be construed as a limitation of this utility model.

Claims

1. A pre-adaptation training device, characterized in that: include The main body of the pre-adaptation training device; An inflation device, which is disposed inside the main body of the pre-adaptation training device, is used to output gas; An armband, which is connected to the inflation device, is used to be placed on the user's arm; A millimeter-wave radar device, which is installed inside the main body of the pre-adaptation training device, is used to transmit and receive microwave signals to detect heart rate and respiration.

2. The pre-adaptation training device according to claim 1, characterized in that: The millimeter-wave radar device includes a radar signal processing chip and a millimeter-wave radar antenna. The millimeter-wave radar antenna is disposed inside the main body of the pre-adaptation training instrument and close to the housing, and is used to receive and transmit microwave signals. The radar signal processing chip is disposed inside the main body of the pre-adaptation training instrument and is electrically connected to the millimeter-wave radar antenna. The radar signal processing chip is used to process the microwave signals.

3. The pre-adaptation training device according to claim 2, characterized in that: The pre-adaptation training device includes a housing and an inclined covering surface. The inclined covering surface covers the housing and is used to face the user when in use. The millimeter-wave radar antenna is disposed inside the upper housing of the inclined covering surface.

4. The pre-adaptation training device according to claim 3, characterized in that: The inclined covering surface is also provided with a socket, one end of which is used to connect to the output end of the inflation device, and the other end is used to communicate with the air inlet of the armband.

5. The pre-adaptation training device according to claim 4, characterized in that: It also includes a control motherboard, which is located inside the pre-adaptation training device and is electrically connected to the radar signal processing chip.

6. The pre-adaptation training device according to claim 5, characterized in that: The inclined coverage surface is also equipped with a display screen and a measurement button, a setting button, a power button, a mode button, and a training button arranged side by side. The display screen is located below the millimeter-wave radar antenna and is electrically connected to the control motherboard. The measurement button, the setting button, the power button, the mode button, and the training button are all electrically connected to the control motherboard. The measurement button is used to control the start and stop of the measurement. The setting button is used to set the air output of the inflation device. The power button is used to control the opening and closing. The mode button is used to adjust the breathing detection mode or the heart rate detection mode. The training button is used to control the start and stop of the inflation device.

7. The pre-adaptation training device according to claim 6, characterized in that: The inflation device includes a first air pump and a second air pump. The air outlets of the first air pump and the second air pump are both connected to the insertion hole through silicone tubes. The output power of the first air pump is greater than the output power of the second air pump.

8. The pre-adaptation training device according to claim 7, characterized in that: It also includes an air seat, the first end of which is connected to the socket, the second end of which is connected to a four-way pipe, the first end of which is connected to a vent valve for releasing air, the second and third ends of which are connected to the air outlets of the first and second air pumps respectively, and the fourth end of which is connected to the air seat. A constant speed valve and a two-way valve are sequentially provided at the end of the four-way pipe connected to the air seat, and a pressure sensor is provided at the interface. The pressure sensor is electrically connected to the control main board.

9. The pre-adaptation training device according to claim 7, characterized in that: It also includes a lithium battery, which is disposed inside the main body of the pre-adaptation training device, and the output end of the lithium battery is connected to the control motherboard and the inflation device.

10. The pre-adaptation training device according to claim 5, characterized in that: It also includes a communication unit, which is electrically connected to the control motherboard. The communication unit includes a WIFI unit, a Bluetooth unit, and a data network unit. The WIFI unit is used for WIFI connection, the Bluetooth unit is used for Bluetooth connection, and the data network unit is used for inserting a data card.

Citation Information

Patent Citations

  • Ischemia preconditioning training instrument for medical care

    CN213723407U