Smart nutrition monitoring bracelet
By designing a reinforcement device in the smart nutrition monitoring bracelet, the problem of the frame insert falling off was solved, enhancing the overall performance of the bracelet and user safety, and ensuring that the battery pack is not affected by external forces.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI CHUDONG INTELLIGENT TECH CO LTD
- Filing Date
- 2025-02-13
- Publication Date
- 2026-08-04
AI Technical Summary
During exercise, the frame of existing smart nutrition monitoring bracelets is prone to falling off, affecting dustproof and impact-resistant performance, and may also expose the battery pack, posing a safety hazard.
The design incorporates a reinforcement system, including components such as slots, reinforcement plates, reinforcement bases, springs, and locking blocks. The cooperation between the slots and locking blocks ensures that the watch frame insert does not fall off during use, enhancing the overall performance and security of the bracelet.
It effectively prevents the watch frame insert from falling off, ensures the bracelet's dustproof and impact-resistant performance, and guarantees user safety.
Smart Images

Figure CN224584305U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of smart bracelet technology, specifically relating to a smart nutrition monitoring bracelet. Background Technology
[0002] With improved living standards and increased health awareness, people are paying more and more attention to their health. Smart bracelets can monitor physiological indicators such as heart rate, blood pressure, blood oxygen saturation, and sleep quality in real time, helping users better understand their health. Through long-term data collection and analysis, smart bracelets can also provide users with health improvement suggestions, such as adjusting their work and rest schedules and increasing exercise. For sports enthusiasts, smart bracelets are a great auxiliary tool, as they can record data such as users' exercise trajectory, calories burned, and exercise time, helping users better plan their exercise routines.
[0003] The patent publication number CN118141190A discloses a nutrition monitoring wristband, which includes a strap for fixing to the wrist; a watch frame with both ends hinged to the strap; and a smart monitoring body fixed to the watch frame. The smart monitoring body itself has a built-in power supply battery. The watch frame has a side-opening charging compartment with a removable charging battery inside. When the charging battery is inserted into the charging compartment, it can charge the battery in the smart monitoring body. A watch frame insert is also fixed at the tail end of the battery pack. The watch frame insert is used to block the outer port of the charging compartment. It can be removed during charging and can protect the battery pack from external impacts and the charging compartment from dust, ensuring a good service life.
[0004] When users exercise with the fitness tracker, the tracker is subject to various external impacts and vibrations, which may cause the watch frame to fall off. Once the watch frame falls off, it will not only affect the tracker's dustproof and impact-resistant performance, but may also expose the battery pack inside the charging compartment. Utility Model Content
[0005] The purpose of this invention is to provide an intelligent nutrition monitoring bracelet. By adding a reinforcement device, it is ensured that the frame insert will not fall off during use, thus guaranteeing the overall performance of the bracelet and the user's safety.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a smart nutrition monitoring wristband, including...
[0007] The watch frame has two spaced-apart energy replenishment holes, and the side surface of the watch frame has an energy replenishment compartment.
[0008] The monitoring body is installed on the inside of the watch frame and has two spring contacts that pass through the energy replenishment hole.
[0009] A battery pack, wherein the battery pack is inserted into the charging compartment and the battery pack is provided with conductive contacts corresponding to the spring contacts, and one end of the battery pack is provided with a frame insert;
[0010] The reinforcement device includes a slot formed on the side surface of the watch frame insert, a reinforcement plate set on the side surface of the watch frame, a reinforcement seat mounted on the reinforcement plate, a groove formed at one end of the reinforcement seat, a spring set at the bottom of the groove, and a locking block set at one end of the spring, wherein the locking block can engage with the slot.
[0011] Preferably, it also includes a slider disposed on the side surface of the card block, and a groove formed inside the reinforcing base for the slider to slide.
[0012] Preferably, it also includes a connecting rod disposed at the bottom of the groove, and a through hole opened inside the slide for the connecting rod to pass through.
[0013] Preferably, it also includes an insert block disposed on the side surface of the watch frame mounting body, and a slot adapted to the insert block on the side surface of the watch frame.
[0014] Preferably, it also includes a receiving groove formed on the frame insert, and a pull rod is installed on the inner side of the receiving groove.
[0015] Preferably, the top of the watch frame is provided with symmetrically distributed first lugs, the inner sides of the two first lugs are rotatably provided with a first watch strap, and the first watch strap is provided with a movable sleeve, and one end of the first watch strap is rotatably provided with an insert.
[0016] Preferably, the bottom of the watch frame is provided with symmetrically distributed second lugs, and the inner sides of the two second lugs are rotatably provided with second watch straps, and the second watch straps are provided with multiple adjustment buckles for inserts to pass through.
[0017] Preferably, it also includes an infrared spectral sensor, an optical sensor, a blood pressure monitoring sensor, a data acquisition module, a motion sensor, an analysis module, and a cloud server, wherein the analysis module is communicatively connected to the infrared spectral sensor, the optical sensor, the blood pressure monitoring sensor, the data acquisition module, the motion sensor, and the cloud server.
[0018] Compared with the prior art, the beneficial effects of this utility model are:
[0019] The designed reinforcement device can strengthen the installed watch frame insert, ensuring that the watch frame insert will not fall off during use, thereby guaranteeing the overall performance of the bracelet and the user's safety. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the structure of this utility model;
[0021] Figure 2 This is a schematic diagram of the watch frame insert and watch frame splicing structure of this utility model;
[0022] Figure 3 For the present utility model Figure 2 A schematic diagram of the enlarged R region structure in the diagram;
[0023] Figure 4 For the present utility model Figure 2 A schematic diagram of the enlarged structure of region K in the diagram;
[0024] Figure 5 This is a system schematic diagram of the present invention;
[0025] In the diagram: 1. Watch frame; 11. First lug; 12. Second lug; 13. Power supply hole; 14. Slot; 2. Monitoring body; 3. First watch strap; 31. Movable sleeve; 32. Insert; 4. Second watch strap; 41. Adjustment buckle; 5. Battery pack; 51. Conductive contact; 6. Watch frame insert; 61. Receiving groove; 610. Pull rod; 62. Insert block; 63. Slot; 7. Reinforcing plate; 8. Reinforcing base; 81. Groove; 810. Spring; 811. Connecting rod; 82. Slide groove; 9. Locking block; 91. Sliding piece. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Example 1
[0028] Please see Figures 1-4 This is the first embodiment of the present invention, which provides a smart nutrition monitoring bracelet, including...
[0029] The table frame 1 has two spaced-apart energy replenishment holes 13, and an energy replenishment chamber is provided on the side surface of the table frame 1.
[0030] Monitoring body 2 is installed inside the frame 1, and monitoring body 2 is provided with two spring contacts that pass through the energy replenishment hole 13, thereby realizing the addition of spring contacts;
[0031] Battery pack 5 is inserted into the charging compartment, and battery pack 5 is provided with conductive contacts 51 corresponding to spring contacts. The spring contacts can be charged by pressing against the conductive contacts 51. One end of battery pack 5 is provided with a frame insert 6, which increases the protection of battery pack 5.
[0032] The reinforcement device includes a slot 63 formed on the side surface of the watch frame 1, a reinforcement plate 7 fixedly connected to the watch frame 1, a reinforcement seat 8 mounted on the reinforcement plate 7, the reinforcement plate 7 further restricting the reinforcement seat 8, a groove 81 formed at one end of the reinforcement seat 8, multiple springs 810 disposed at the bottom of the groove 81, and a locking block 9 disposed at one end of each spring 810. 9 can engage with slot 63. When the watch frame insert 6 is lifted, the battery pack 5 is inserted into the charging compartment. When the battery pack 5 is inserted, the watch frame insert 6 presses against the insert 9. After being pressed, the insert 9 compresses the spring 810. After being compressed, the spring 810 returns to its original position, causing the insert 9 to move. When the insert 9 is engaged in slot 63, it can reinforce the installed watch frame insert 6, ensuring that the watch frame insert 6 will not fall off during use, thereby ensuring the overall performance of the bracelet and the user's safety.
[0033] In this embodiment, preferably, a slider 91 is also provided on the side surface of the card block 9, which realizes the addition of the slider 91. A groove 82 is opened inside the reinforcing base 8 for the slider 91 to slide. The sliding of the slider 91 in the groove 82 increases the stability of the card block 9 when it moves.
[0034] In this embodiment, preferably, a connecting rod 811 is also provided at the bottom of the groove 81, which realizes the addition of the connecting rod 811. A through hole is opened inside the slide 91 for the connecting rod 811 to pass through. When the slide 91 moves, it moves along the connecting rod 811, which increases the guidance when the slide 91 moves, thereby helping to increase the guidance when the locking block 9 moves.
[0035] In this embodiment, preferably, it also includes an insert 62 disposed on the side surface of the watch frame insert 6, thereby realizing the addition of the insert 62. A slot 14 adapted to the insert 62 is opened on the side surface of the watch frame 1. The cooperation of the insert 62 and the slot 14 increases the limitation when assembling the watch frame insert 6.
[0036] In this embodiment, preferably, it also includes a receiving groove 61 opened on the watch frame insert 6, which realizes the opening of the receiving groove 61, and a pull rod 610 is installed on the inner side of the receiving groove 61, which increases the convenience of removing the watch frame insert 6.
[0037] In this embodiment, preferably, the top of the watch frame 1 is provided with symmetrically distributed first lugs 11, thereby adding the first lugs 11. The inner sides of the two first lugs 11 are rotatably provided with first watch straps 3. The first watch straps 3 are movable, and the first watch straps 3 are provided with movable sleeves 31. The movable sleeves 31 can move on the first watch straps 3, increasing the convenience of use. One end of the first watch straps 3 is rotatably provided with inserts 32, thereby adding inserts 32.
[0038] In this embodiment, preferably, the bottom of the watch frame 1 is provided with symmetrically distributed second lugs 12, which realizes the addition of the second lugs 12. The inner side of the two second lugs 12 is rotatably provided with a second watch strap 4. The second watch strap 4 is movable, which increases the convenience of use. The second watch strap 4 is provided with multiple adjustment buckles 41 for inserts 32 to pass through. With the cooperation of the first watch strap 3 and the second watch strap 4, the monitoring bracelet can be worn on the wrist.
[0039] Example 2
[0040] Please see Figures 1-5 This is the second embodiment of the present invention, which is based on the previous embodiment, but differs in that:
[0041] It also includes an infrared spectroscopy sensor, an optical sensor, a blood pressure monitoring sensor, a data acquisition module, a motion sensor, an analysis module, and a cloud server. The analysis module is connected to the infrared spectroscopy sensor, the optical sensor, the blood pressure monitoring sensor, the data acquisition module, the motion sensor, and the cloud server, and is used to process and analyze the acquired data.
[0042] Infrared spectroscopy sensors calculate blood glucose concentration by emitting near-infrared light into the skin tissue of the wrist and analyzing the absorption and scattering characteristics of the light in the tissue.
[0043] The optical sensor on the wristband emits light, which shines onto the skin surface, and then receives the reflected light. As blood flows through the blood vessels, it absorbs and reflects light, causing changes in the intensity of the reflected light. By analyzing these changes, the heart rate can be calculated.
[0044] Blood pressure monitoring sensors estimate blood pressure by measuring the travel time of the pulse wave between different parts of the artery, based on the relationship between the time it takes for the pulse wave to travel through the artery and blood pressure.
[0045] The data acquisition module collects basic patient information, such as age, gender, height, weight, tumor type, treatment plan, and real-time monitored physiological indicators; it also uses big data analysis and machine learning algorithms to establish a correlation model between patient nutritional needs, treatment response, and dietary plans.
[0046] Based on the analysis results and combined with professional nutritional knowledge, personalized dietary plans are developed for patients. For example, for patients who have undergone breast cancer surgery, considering the need for a low-fat, high-protein diet, it is recommended to eat more lean meat, fish, beans, eggs and other foods rich in high-quality protein, while reducing the intake of animal fat.
[0047] Continuously monitor the patient's physiological indicators and dietary intake, adjust the diet plan in a timely manner according to the patient's physical response and changes in nutritional status, and provide feedback to the patient through the wristband or a matching mobile application;
[0048] The wristband comes with a mobile app that provides access to a rich food database. When eating, patients can record the types and amounts of food they eat by searching for food names, scanning food barcodes, or taking photos for identification. The app automatically calculates the calories, protein, fat, carbohydrates, and other nutrients consumed by the patient based on the nutritional information in the food database and generates a dietary record report.
[0049] Using motion sensors such as accelerometers and gyroscopes built into the wristband, the system monitors the patient's movement status and data, such as steps, distance, speed, duration, and intensity. Algorithms analyze and process this data to identify the patient's type of exercise, such as walking, running, cycling, or fitness, and calculate the calories burned.
[0050] By synchronizing recorded dietary habits and exercise data to a cloud server, doctors can access patient data through the medical institution's information system to conduct comprehensive analysis and evaluation, thereby gaining a more complete understanding of the patient's health status.
[0051] The working principle and usage process of this utility model are as follows: When the battery pack 5 is inserted, the watch frame insert 6 presses against the locking block 9. After being pressed, the locking block 9 compresses the spring 810. After being compressed, the spring 810 returns to its original position, causing the locking block 9 to move. When the locking block 9 is engaged in the slot 63, it can reinforce the installed watch frame insert 6, ensuring that the watch frame insert 6 will not fall off during use, thereby ensuring the overall performance of the bracelet and the user's safety.
[0052] Although embodiments of the present invention have been shown and described in detail above, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A smart nutrition monitoring bracelet, characterized in that: include The table frame (1) has two spaced-apart energy replenishment holes (13) and an energy replenishment chamber on its side surface. The monitoring body (2) is installed on the inside of the frame (1), and the monitoring body (2) is provided with two spring contacts that pass through the energy replenishment hole (13); Battery pack (5), the battery pack (5) is inserted into the charging compartment, and the battery pack (5) is provided with conductive contacts (51) corresponding to the spring contacts. One end of the battery pack (5) is provided with a frame insert (6). The reinforcement device includes a slot (63) on the side surface of the frame insert (6), a reinforcement plate (7) on the side surface of the frame (1), a reinforcement seat (8) on the reinforcement plate (7), a groove (81) at one end of the reinforcement seat (8), a spring (810) at the bottom of the groove (81), and a locking block (9) at one end of the spring (810), and the locking block (9) can be engaged with the slot (63).
2. The smart nutrition monitoring bracelet according to claim 1, characterized in that: It also includes a slide (91) disposed on the side surface of the card block (9) and a groove (82) opened inside the reinforcing base (8) for the slide (91) to slide.
3. The smart nutrition monitoring bracelet according to claim 2, characterized in that: It also includes a connecting rod (811) set at the bottom of the groove (81) and a through hole opened inside the slide (91) for the connecting rod (811) to pass through.
4. The smart nutrition monitoring bracelet according to claim 1, characterized in that: It also includes a plug (62) disposed on the side surface of the frame insert (6), and a slot (14) provided on the side surface of the frame (1) to be adapted to the plug (62).
5. The smart nutrition monitoring bracelet according to claim 1, characterized in that: It also includes a receiving groove (61) opened on the frame insert (6), and a pull rod (610) is installed on the inner side of the receiving groove (61).
6. The smart nutrition monitoring bracelet according to claim 1, characterized in that: The top of the watch frame (1) is provided with symmetrically distributed first lugs (11), and the inner sides of the two first lugs (11) are rotatably provided with first watch straps (3), and the first watch straps (3) are provided with movable sleeves (31), and one end of the first watch straps (3) is rotatably provided with inserts (32).
7. The smart nutrition monitoring bracelet according to claim 6, characterized in that: The bottom of the watch frame (1) is provided with symmetrically distributed second lugs (12), and the inner sides of the two second lugs (12) are rotatably provided with second watch straps (4), and the second watch straps (4) are provided with multiple adjustment buckles (41) for inserts (32) to pass through.
8. The smart nutrition monitoring bracelet according to claim 1, characterized in that: It also includes an infrared spectral sensor, an optical sensor, a blood pressure monitoring sensor, a data acquisition module, a motion sensor, an analysis module, and a cloud server. The analysis module is communicatively connected to the infrared spectral sensor, the optical sensor, the blood pressure monitoring sensor, the data acquisition module, the motion sensor, and the cloud server.