Physical sign data monitoring device and system
By designing a wearable vital sign data monitoring device on the finger, the problems of inconvenience in carrying existing devices and continuous monitoring have been solved, enabling convenient detection of vital sign data.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LEPU MEDICAL TECH (BEIJING) CO LTD
- Filing Date
- 2025-01-13
- Publication Date
- 2026-04-28
AI Technical Summary
Existing vital sign data detection equipment is inconvenient to carry and cannot provide continuous monitoring, which affects the user experience.
Design a vital signs data monitoring device, including an upper cover, a lower cover, a screen, a silicone sleeve, a sensor, a main circuit board, and a battery. Users can wear it on their fingers for continuous monitoring. Combined with a communication module, it enables data uploading and display.
It enables continuous monitoring and convenient viewing of vital signs data, improving the portability of the testing process and the user experience.
Smart Images

Figure CN224166292U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of health monitoring, and in particular to a vital signs data monitoring device and system. Background Technology
[0002] With the development of the times and the improvement of living standards, health issues are receiving increasing attention, and more and more people are paying more attention to health.
[0003] With the rapid development of electronic information technology, various wearable smart devices are gradually changing people's lives, providing people with basic daily health monitoring. Various vital sign data detection devices, such as blood glucose meters, are emerging one after another. However, these detection devices are inconvenient to carry and cannot continuously monitor vital sign data. Utility Model Content
[0004] The purpose of this invention is to address the shortcomings of existing technologies by providing a vital signs data monitoring device and system that is easy to carry and can be used by simply slipping it onto a finger. This allows for continuous monitoring and viewing of the user's vital signs data, thereby improving the convenience of the vital signs data detection process.
[0005] To achieve the above objectives, in a first aspect, this utility model provides a vital signs data monitoring device, comprising: an upper cover, a lower cover, a screen, a screen cover, a silicone sleeve, a sensor, a main circuit board, and a battery;
[0006] The upper cover is fastened to the lower cover, forming an accommodating area between the upper and lower covers;
[0007] The screen cover is positioned above the upper cover;
[0008] The screen is disposed below the screen cover and within the accommodating area;
[0009] The silicone sleeve is installed at the bottom of the lower cover;
[0010] The sensor is installed inside the silicone sleeve to detect vital signs data;
[0011] The main circuit board is located within the accommodating area and is electrically connected to the screen and sensors. It receives vital sign data collected by the sensors and displays it on the screen.
[0012] The battery is located within the accommodating area, connected to the main circuit board, screen, and sensors, and provides power to them.
[0013] Preferably, the sensor includes a transmitting probe and a receiving probe, which are disposed opposite to each other inside the silicone sleeve.
[0014] Preferably, the vital signs data monitoring device further includes a vibration motor, which is disposed within the accommodating area and connected to the main circuit board, and vibrates according to the vibration signal sent by the main circuit board.
[0015] Preferably, the vital signs data monitoring device further includes a charging port connected to the battery, through which the power source charges the battery.
[0016] In a further preferred embodiment, the vital signs monitoring device also includes a silicone plug disposed inside the charging port, which is removed when the battery is charging.
[0017] Preferably, the silicone sleeve has protrusions. When the protrusions are extended, the accommodating space of the silicone sleeve increases; when the protrusions are retracted, the accommodating space of the silicone sleeve decreases.
[0018] Preferably, the battery is attached below the main circuit board, and the screen is positioned above the main circuit board.
[0019] Preferably, the vital signs data monitoring device further includes a touch button, which is electrically connected to the main circuit;
[0020] The screen cover has button symbols, and the touch buttons are located below the button symbols on the screen.
[0021] Preferably, the vital sign data monitoring device further includes a communication module disposed within the accommodating area, the communication module including one or more of a WiFi module, a Bluetooth module, and a 4G module;
[0022] The vital signs data include one or more of the following: blood glucose data, blood oxygen saturation data, heart rate data, step count data, or sleep data.
[0023] Secondly, this utility model embodiment also provides a vital signs data monitoring system, which includes a data acquisition and measurement system, a posture monitoring system, a host system, a display system, a button system, a vibration system, a communication system, and a power supply system;
[0024] The data acquisition and measurement system collects and detects vital sign data;
[0025] The attitude monitoring system monitors attitude data;
[0026] The host system is electrically connected to the acquisition and measurement system, attitude monitoring system, display system, key system, vibration system, communication system and power supply system. It receives vital sign data and attitude data and sends them to the display system for display.
[0027] The button system is located below the display system;
[0028] The vibration system vibrates according to the vibration signal sent by the host system;
[0029] The communication system connects the host system and the user terminal;
[0030] The power system supplies power to the host system, data acquisition and measurement system, display system, attitude monitoring system, key system, vibration system, and communication system.
[0031] The present invention provides a vital sign data monitoring device and system that is easy to carry. When in use, the user simply puts it on their finger. It can realize continuous monitoring and viewing of the user's vital sign data and improve the convenience of the vital sign data detection process. Attached Figure Description
[0032] Figure 1 A schematic diagram of a vital signs data monitoring device provided in an embodiment of this utility model;
[0033] Figure 2 A cross-sectional schematic diagram of a vital signs data monitoring device provided for an embodiment of this utility model;
[0034] Figure 3 An enlarged cross-sectional schematic diagram of a vital signs data monitoring device provided for an embodiment of this utility model;
[0035] Figure 4 A schematic diagram of the structure of a vital signs data monitoring system provided in this embodiment of the present invention;
[0036] In the picture:
[0037] 1. Top cover; 2. Bottom cover; 3. Screen; 31. Button symbols; 4. Screen cover; 5. Silicone sleeve; 51. Protrusion; 6. Sensor; 7. Main circuit board; 8. Battery; 9. Motor; 10. Port; 11. Silicone plug; 12. Touch button;
[0038] 101. Data Acquisition and Measurement System; 102. Attitude Monitoring System; 103. Host System; 104. Display System; 105. Keypad System; 106. Vibration System; 107. Communication System; 108. Power Supply System. Detailed Implementation
[0039] The technical solution of this utility model will be further described in detail below with reference to the accompanying drawings and embodiments.
[0040] Figure 1 This is a schematic diagram of a vital signs data monitoring device provided in an embodiment of the present invention. Figure 2 This is a schematic cross-sectional view of a vital signs data monitoring device provided in an embodiment of the present invention. Figure 3 This is an enlarged cross-sectional schematic diagram of a vital signs data monitoring device provided in an embodiment of the present invention, combined with... Figures 1 to 3 As shown in the figure, the vital signs data monitoring device provided in this embodiment of the present invention includes an upper cover 1, a lower cover 2, a screen 3, a screen 3 cover, a silicone sleeve 5, a sensor 6, a main circuit board 7, and a battery 8. The structure and function of the monitoring device will be described in detail below.
[0041] The upper cover 1 and the lower cover 2 are fastened together, forming a receiving area between the upper cover 1 and the lower cover 2. This receiving area is used to house the sensor 6, the main circuit board 7 and the battery 8.
[0042] The screen 3 cover is located above the top cover 1. Specifically, the top cover 1 may have a hollow area, and the screen 3 cover is installed in the hollow area.
[0043] Screen 3 is located below the screen 3 cover and within the accommodating area. The content displayed on screen 3 can be seen through the screen 3 cover.
[0044] A silicone sleeve 5 is installed at the bottom of the lower cover 2. In a specific example, the silicone sleeve 5 can be a finger sleeve, partially fixed to the bottom of the lower cover 2. The silicone sleeve 5 has a certain degree of elasticity, allowing the user to insert their finger into the silicone sleeve 5 and thus wear the monitoring device on their finger to detect vital signs. In a preferred embodiment, the silicone sleeve 5 has a protrusion 51. When the protrusion 51 is open, the accommodating space of the silicone sleeve 5 increases; when the protrusion 51 is retracted, the accommodating space of the silicone sleeve 5 decreases. It can be understood that the protrusion 51 of the silicone sleeve 5 is designed to open when a larger finger is inserted, in order to accommodate fingers of different sizes.
[0045] Sensor 6, housed inside the silicone sleeve 5, is used to detect vital sign data, including but not limited to pedometers, accelerometers, and probes. It should be noted that the aforementioned vital sign data includes, but is not limited to, blood glucose data, blood oxygen saturation data, heart rate data, step count data, or sleep data. Those skilled in the art can configure these vital sign data according to actual needs. In a specific example, sensor 6 includes a transmitting probe and a receiving probe, positioned opposite each other inside the silicone sleeve 5. The transmitting probe is used for signal transmission, and the receiving probe is used for signal reception. In a specific example, the probe emits near-infrared light that penetrates the human body, and then a photodiode collects the near-infrared signal to monitor blood glucose levels. It should be noted that those skilled in the art can select and install sensor 6 according to the type of vital sign data to be detected.
[0046] The main circuit board 7, which is a microprocessor, is located in the accommodating area and is electrically connected to the screen 3 and the sensor 6. It receives the vital sign data collected by the sensor 6 and displays it on the screen 3. Specifically, the main circuit board 7 receives the vital sign data collected by the sensor 6, processes it, and then sends it to the screen 3 for data display.
[0047] Battery 8, located within the housing area, is connected to and powers the main circuit board 7, screen 3, and sensor 6. Battery 8 is preferably a lithium battery. To ensure the stability of battery 8 within the housing area, it can be attached to the underside of the main circuit board 7 using double-sided adhesive tape. The screen 3 is positioned above the main circuit board 7.
[0048] In some preferred embodiments, to enable charging of the device, the vital signs data monitoring device further includes a charging port 10 connected to the battery 8, through which the power source charges the battery 8. Furthermore, the vital signs data monitoring device also includes a silicone plug 11 disposed within the charging port 10. When the battery 8 is charging, removing the silicone plug 11 from the charging port 10 allows the power source and charging port 10 to be connected for charging.
[0049] In some preferred embodiments, the vital signs data monitoring device further includes a touch button 12, which is electrically connected to the main circuit. The screen 3 cover is provided with a button symbol 31, and the touch button 12 is located below the button symbol 31 on the screen 3. In this way, when the touch button symbol 31 on the screen 3 cover is touched, the internal touch button 12 will generate different capacitances, thereby achieving the function of touch operation device and realizing human-computer interaction.
[0050] In some preferred embodiments, the vital signs data monitoring device further includes a vibration motor 9, disposed within the accommodating area and connected to the main circuit board 7, which vibrates according to the vibration signal sent by the main circuit board 7. It is understood that those skilled in the art can set the conditions for sending the vibration signal as needed, such as vibrating when data detection is complete or when the detected data exceeds a preset threshold, thereby alerting the user through vibration.
[0051] In some preferred embodiments, the vital signs data monitoring device further includes a communication module disposed within the accommodating area for communication with a user terminal. The communication module includes one or more of a WiFi module, Bluetooth module, and 4G module. Through the communication module, the monitoring device can upload and synchronize the detection data to the user terminal, such as a mobile phone, thereby enabling data statistics, analysis, and monitoring. In a specific example, after the user inserts their index finger into the silicone sleeve 5, the device detects the finger, the screen lights up, the device powers on, and the mobile phone and device connect via Bluetooth to continuously perform blood glucose tests, displaying the measured blood glucose value on the screen.
[0052] The above is an introduction to the vital signs data monitoring device. Correspondingly, this utility model also provides a vital signs data monitoring system. Figure 4 A schematic diagram of a vital signs data monitoring system provided in this embodiment of the present invention is shown below. Figure 4As shown, the vital signs data system includes a data acquisition and measurement system 101, an attitude monitoring system 102, a host system 103, a display system 104, a button system 105, a vibration system 106, a communication system 107, and a power supply system 108.
[0053] The data acquisition and measurement system 101 is used to collect and detect user vital signs data, such as blood glucose data, blood oxygen saturation data, heart rate data, etc. The data acquisition and measurement system 101 can be a sensor, probe, etc. Those skilled in the art can select the sensor of the data acquisition and measurement system 101 according to the type of vital signs data to be detected.
[0054] The posture monitoring system 102 can be a sensor, such as a pedometer or accelerometer, to monitor user posture data. Specifically, the posture system can collect human posture, human step count, and sleep monitoring data.
[0055] The host system 103, specifically the main circuit board, is a microprocessor and is electrically connected to the acquisition and measurement system 101, the attitude monitoring system 102, the display system 104, the button system 105, the vibration system 106, the communication system 107, and the power supply system 108. The host system 103 is used to receive vital sign data and attitude data, process them, and then send them to the display system 104 for display.
[0056] Display system 104, specifically, can be a display screen.
[0057] The button system 105, specifically a touch button, is located below the display system 104. When a user touches the display screen, the internal touch button generates different capacitances, thereby achieving the function of touch operation of the device and realizing human-computer interaction.
[0058] The vibration system 106, specifically a vibration motor, vibrates according to the vibration signal sent by the host system 103. Those skilled in the art can set the conditions for sending the vibration signal as needed, such as vibrating when data detection is completed or when the detected data exceeds a preset threshold, thereby reminding the user through vibration.
[0059] The communication system 107 connects the host system 103 to the user terminal. The communication system 107 may include a variety of communication modules, including one or more of WiFi, Bluetooth, and 4G modules. Through the communication module monitoring device, the detection data can be uploaded and synchronized to the user terminal, such as a mobile phone, so as to realize the statistics, analysis and monitoring of the data.
[0060] The power supply system 108, specifically a lithium battery, provides power to the host system 103, the data acquisition and measurement system 101, the display system 104, the attitude monitoring system 102, the button system 105, the vibration system 106, and the communication system 107.
[0061] In a specific example, the monitoring system can monitor human blood glucose levels. Specifically, the main controller uses a microprocessor design to control the operation of the entire machine. The power supply system 108 provides power to the entire machine and can also manage the charging of the lithium battery. The data acquisition and measurement system 101 emits near-infrared light that penetrates the human body and then collects the near-infrared signal through a photodiode to monitor human blood glucose. The display system 104 displays human-computer interaction data through an OLED display screen. The posture system can collect human posture, human step counting, and sleep monitoring. The button system 105 enables human-computer interaction on the display screen. The vibration system 106 can vibrate to achieve the effect of reminder.
[0062] It should be noted that the various subsystems and devices of the above-mentioned vital signs data monitoring system are similar, and will not be described in detail here.
[0063] The present invention provides a vital sign data monitoring device and system that is easy to carry. When in use, the user simply puts it on their finger. It can realize continuous monitoring and viewing of the user's vital sign data and improve the convenience of the vital sign data detection process.
[0064] In this utility model, the term "multiple" refers to two or more unless otherwise explicitly defined. The terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "linking" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0065] In the description of this utility model, it should be understood that the terms "upper", "lower", "left", "right", "front", "rear", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or unit referred to must have a specific orientation or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0066] In the description herein, the terms "a specific embodiment," "some embodiments," "one embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0067] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of this utility model. It should be understood that the above description is only a specific embodiment of this utility model and is not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.
Claims
1. A vital signs data monitoring device, characterized in that, The vital signs data monitoring device includes an upper cover, a lower cover, a screen, a screen cover, a silicone sleeve, a sensor, a main circuit board, and a battery; The upper cover is fastened to the lower cover, forming an accommodating area between the upper and lower covers; The screen cover is positioned above the upper cover; The screen is disposed below the screen cover and within the accommodating area; The silicone sleeve is installed at the bottom of the lower cover; The sensor is installed inside the silicone sleeve to detect vital signs data; The main circuit board is located within the accommodating area and is electrically connected to the screen and sensors. It receives vital sign data collected by the sensors and displays it on the screen. The battery is located within the accommodating area, connected to the main circuit board, screen, and sensors, and provides power to them.
2. The vital sign data monitoring device according to claim 1, characterized in that, The sensor includes a transmitting probe and a receiving probe, which are positioned opposite each other inside the silicone sleeve.
3. The vital sign data monitoring device according to claim 1, characterized in that, The vital signs data monitoring device also includes a vibration motor, which is located within the accommodating area and connected to the main circuit board, and vibrates according to the vibration signal sent by the main circuit board.
4. The vital sign data monitoring device according to claim 1, characterized in that, The vital signs data monitoring device also includes a charging port connected to the battery, through which the power source charges the battery.
5. The vital sign data monitoring device according to claim 4, characterized in that, The vital signs monitoring device also includes a silicone plug, which is installed inside the charging port. The silicone plug is removed when the battery is charging.
6. The vital sign data monitoring device according to claim 1, characterized in that, The silicone sleeve has protrusions. When the protrusions are expanded, the accommodating space of the silicone sleeve increases; when the protrusions are retracted, the accommodating space of the silicone sleeve decreases.
7. The vital signs data monitoring device according to claim 1, characterized in that, The battery is attached to the bottom of the main circuit board, and the screen is positioned above the main circuit board.
8. The vital sign data monitoring device according to claim 1, characterized in that, The vital signs data monitoring device also includes a touch button, which is electrically connected to the main circuit. The screen cover has button symbols, and the touch buttons are located below the button symbols on the screen.
9. The vital sign data monitoring device according to claim 1, characterized in that, The vital signs data monitoring device also includes a communication module, which is disposed in the accommodating area. The communication module includes one or more of the following: WiFi module, Bluetooth module, and 4G module. The vital signs data include one or more of the following: blood glucose data, blood oxygen saturation data, heart rate data, step count data, or sleep data.
10. A vital signs data monitoring system, characterized in that, The vital signs data monitoring system includes a data acquisition and measurement system, an attitude monitoring system, a host system, a display system, a key system, a vibration system, a communication system, and a power supply system. The data acquisition and measurement system collects and detects vital sign data; The attitude monitoring system monitors attitude data; The host system is electrically connected to the acquisition and measurement system, attitude monitoring system, display system, key system, vibration system, communication system and power supply system. It receives vital sign data and attitude data and sends them to the display system for display. The button system is located below the display system; The vibration system vibrates according to the vibration signal sent by the host system; The communication system connects the host system and the user terminal; The power system supplies power to the host system, data acquisition and measurement system, display system, attitude monitoring system, key system, vibration system, and communication system.