Wearable multifunctional medical health monitoring equipment

The torsion spring between the pivot and the groove allows for adjustment and fixation of the strap length, solving the problems of discomfort and adaptability, and improving wearing comfort and adaptability.

CN224125924UActive Publication Date: 2026-04-17SHANGHAI YIRAN MEDICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI YIRAN MEDICAL TECH CO LTD
Filing Date
2025-03-14
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing multifunctional medical and health monitoring devices have a fixed strap length that cannot be adjusted when worn, leading to discomfort and making them unsuitable for different sizes of straps.

Method used

The torsion spring between the shaft and the groove is used to rotate the shaft, tighten the strap, and fix it through the positioning mechanism, so as to realize the adjustment of the strap length and quick connection.

Benefits of technology

It improves wearing comfort and device adaptability, with the strap length adaptable to different sizes of straps according to movement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses wearable multifunctional medical health monitoring equipment which comprises an installation block, a detection equipment body is arranged at the upper end of the installation block, a cavity is formed in the installation block, a through groove is formed in the installation block and the front end and the rear end of the installation block, the through groove is in a U shape, and a binding belt penetrates through the through groove. Connecting blocks are arranged at the tail ends of the two ends of the bridle, connecting mechanisms for connecting the two connecting blocks are arranged on the opposite faces of the two connecting blocks, and a positioning mechanism for positioning the bridle is arranged in the cavity. Under the action of the torsion springs between the rotating shafts and the grooves, the two rotating shafts rotate, so that the winding belt is tightened, the bridle and the wearing position are tightened, the length of the bridle can be changed according to the actual action of a wearer, and the wearing comfort of the wearer is improved.
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Description

Technical Field

[0001] This utility model relates to the field of medical and health testing equipment technology, and in particular to a wearable multifunctional medical and health monitoring device. Background Technology

[0002] A multifunctional smart health monitoring device is a device that integrates multiple functions to monitor a user's health status and life indicators. It can monitor the user's heart rate in real time, provide heart rate data, and alert the user to any abnormalities. It is usually paired with a smartphone application, through which users can view and analyze health data, set goals, and receive reminders. Among them, multifunctional smart health monitoring devices that can be worn in multiple ways are flexible in design and highly adaptable, and can be worn in various ways according to the user's needs and preferences.

[0003] However, the length of existing multifunctional medical and health testing devices cannot be changed after they are worn. When people wear the testing devices and perform various actions, the straps may become too tight or too loose, thus reducing the comfort of wearing them. In addition, the testing devices can generally only be installed on one type of strap and cannot be installed on straps of different sizes, thus reducing the adaptability of the device. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of the existing technology. By utilizing the torsion spring between the rotating shaft and the groove, the two rotating shafts are rotated, thereby tightening the winding belt. This allows the belt to be tightened at the wearing area, and the length of the belt can be changed according to the actual movements of the wearer, thus improving the wearer's comfort. This invention provides a wearable multifunctional medical and health monitoring device.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A wearable multifunctional medical health monitoring device includes a mounting block, with a detection device body at the upper end of the mounting block. A chamber is formed inside the mounting block, and a through groove is formed on both the front and rear ends of the mounting block. The through groove is U-shaped, and a strap runs through the through groove. Connecting blocks are provided at both ends of the strap, and a connecting mechanism for connecting the two connecting blocks is provided on the opposite surfaces of the two connecting blocks. A positioning mechanism for positioning the strap is provided inside the chamber.

[0007] Preferably, the connecting mechanism includes a groove formed on the side wall of the connecting block, a rotating shaft is provided in the groove, and the outer walls of the two rotating shafts are wound together with a winding tape.

[0008] Preferably, the positioning mechanism includes multiple symmetrically arranged through rods that slide through and are slidably connected to the top of the cavity, with a pressure plate at the lower end of the multiple through rods, and multiple equally spaced anti-slip strips at the lower end of the pressure plate.

[0009] Preferably, a rotating rod is rotatably connected through the side wall of the chamber and the mounting block. Damping pads are provided at the rotatable connection points between the rotating rod and the chamber and the mounting block. A convex plate is provided on the outer wall of the rotating rod, and the outer wall of the convex plate is slidably connected to the upper end of the pressure plate.

[0010] Preferably, the pressure plate is elastically connected to the top of the cavity through multiple return springs, and the multiple return springs are respectively sleeved on the outer wall of multiple through rods.

[0011] Preferably, the rotating shaft is rotatably connected to the groove, and a torsion spring is provided at the rotatable connection between the rotating shaft and the groove.

[0012] The beneficial effects of this utility model are:

[0013] 1. By utilizing the torsion spring between the rotating shaft and the groove, the two rotating shafts are rotated, thereby tightening the take-up belt. This allows the belt to be tightened at the wearing area, and the length of the belt can be changed according to the actual movements of the wearer, improving the wearer's comfort.

[0014] 2. By pushing the pressure plate downwards with the convex plate, the anti-slip strip at the lower end of the pressure plate comes into contact with the strap, thus fixing the strap in the cavity. This enables the strap to be quickly connected while allowing the device to install different straps, improving the adaptability of the device. Attached Figure Description

[0015] Figure 1 This is a front view schematic diagram of the overall structure of this utility model;

[0016] Figure 2 This is a side view of the overall structure of this utility model;

[0017] Figure 3 This is a schematic cross-sectional view of the overall structure of this utility model;

[0018] Figure 4 This utility model Figure 2 Enlarged schematic diagram of the structure at point A in the diagram.

[0019] In the diagram: 1. Mounting block, 2. Detection equipment body, 3. Through groove, 4. Strap, 5. Connecting block, 6. Rotating rod, 7. Protruding plate, 8. Through rod, 9. Return spring, 10. Damping pad, 11. Pressure plate, 12. Anti-slip strip, 13. Groove, 14. Rotating shaft, 15. Winding belt, 16. Torsion spring. Detailed Implementation

[0020] 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.

[0021] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", 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 element 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.

[0022] Reference Figure 1-4 The wearable multifunctional medical health monitoring device includes a mounting block 1, with a detection device body 2 at the upper end of the mounting block 1. A chamber is formed inside the mounting block 1, and a through groove 3 is formed at both the front and rear ends of the mounting block 1. The through groove 3 is U-shaped, and a strap 4 passes through the through groove 3. Each end of the strap 4 has a connecting block 5. Each of the two connecting blocks 5 has a connecting mechanism on its opposite side. The connecting mechanism includes a groove 13 on the side wall of the connecting block 5, with a rotating shaft 14 inside the groove 13. The outer walls of the two rotating shafts 14 are wound with a winding strap 15. By utilizing the torsion spring 16 between the rotating shafts 14 and the grooves 13, the two rotating shafts 14 are rotated, thereby tightening the winding strap 15, so that the strap 4 is tightened to the wearing area. The length of the strap 4 can be changed according to the actual movement of the wearer, improving the wearer's comfort.

[0023] The cavity is equipped with a positioning mechanism for positioning the strap 4. The positioning mechanism includes multiple symmetrically arranged through rods 8 that slide through and are slidably connected to the top of the cavity. The lower ends of the multiple through rods 8 are provided with a pressure plate 11. The lower end of the pressure plate 11 is provided with multiple anti-slip strips 12 that are equally spaced. By pushing the pressure plate 11 downward by the protruding plate 7, the anti-slip strips 12 at the lower end of the pressure plate 11 come into contact with the strap 4, thereby fixing the strap 4 in the cavity. This enables the quick connection of the strap 4 and allows the device to install different straps 4, improving the adaptability of the device.

[0024] A rotating rod 6 is rotatably connected through the side wall of the chamber and the mounting block 1. Damping pads 10 are provided at the rotatable connection between the rotating rod 6 and the chamber and the mounting block 1. A protruding plate 7 is provided on the outer wall of the rotating rod 6. The outer wall of the protruding plate 7 is slidably connected to the upper end of the pressure plate 11.

[0025] The pressure plate 11 is elastically connected to the top of the chamber by multiple return springs 9, and the multiple return springs 9 are respectively sleeved on the outer wall of multiple through rods 8.

[0026] The rotating shaft 14 is rotatably connected to the groove 13, and a torsion spring 16 is provided at the rotatable connection between the rotating shaft 14 and the groove 13.

[0027] When this utility model is used, when the detection device body 2 is worn (since the detection device body 2 is existing technology, its related structure is not described in detail in this figure), the winding action of the two rotating shafts 14 pulls the winding belt 15, causing the length of the entire strap 4 to change. Then, the detection device body 2 is put on the wearing area. Under the action of the torsion spring 16 between the rotating shaft 14 and the groove 13, the two rotating shafts 14 rotate, thereby tightening the winding belt 15, so that the strap 4 can be tightened with the wearing area. The length of the strap 4 can be changed according to the actual movement of the wearer, improving the wearer's wearing comfort.

[0028] When installing the strap 4, the strap 4 is inserted into the cavity inside the mounting block 1 through the through groove 3. The rotating rod 6 is rotated (the damping pad 10 restricts the position of the rotating rod 6 after rotation), causing the convex plate 7 on the outer wall of the rotating rod 6 to rotate. By utilizing the sliding connection between the outer wall of the convex plate 7 and the upper end of the pressure plate 11, and the through sliding connection between the multiple through rods 8 and the top of the cavity, the convex plate 7 pushes the pressure plate 11 downward, thus causing the anti-slip strip 12 at the lower end of the pressure plate 11 to contact the strap 4, fixing the strap 4 in the cavity. This achieves quick connection of the strap 4 and allows the device to install different straps 4, improving the adaptability of the device.

[0029] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. Wearable multifunctional medical health monitoring device comprising a mounting block (1), characterized in that, The mounting block (1) is provided with a detection device body (2) at the upper end. A cavity is provided inside the mounting block (1). A through groove (3) is provided on the mounting block (1) and the front and rear ends. The through groove (3) is U-shaped. A strap (4) is provided through the through groove (3). A connecting block (5) is provided at both ends of the strap (4). A connecting mechanism for connecting the two connecting blocks (5) is provided on the opposite sides. A positioning mechanism for positioning the strap (4) is provided inside the cavity.

2. The wearable multi-functional medical health monitoring device according to claim 1, wherein, The connecting mechanism includes a groove (13) on the side wall of the connecting block (5), a rotating shaft (14) is provided in the groove (13), and the outer walls of the two rotating shafts (14) are wound together with a winding belt (15).

3. The wearable multi-functional medical health monitoring device according to claim 2, wherein, The positioning mechanism includes multiple through rods (8) symmetrically arranged in the top of the cavity and slidably connected through the cavity. The lower ends of the multiple through rods (8) are provided with a pressure plate (11), and the lower end of the pressure plate (11) is provided with multiple anti-slip strips (12) arranged at equal intervals.

4. The wearable multi-functional medical health monitoring device, as recited in claim 3, wherein, A rotating rod (6) is rotatably connected through the side wall of the chamber and the mounting block (1). Damping pads (10) are provided at the rotatable connection points between the rotating rod (6) and the chamber and the mounting block (1). A convex plate (7) is provided on the outer wall of the rotating rod (6). The outer wall of the convex plate (7) is slidably connected to the upper end of the pressure plate (11).

5. The wearable multi-functional medical health monitoring device, as recited in claim 4, wherein, The pressure plate (11) is elastically connected to the top of the cavity through multiple return springs (9), and the multiple return springs (9) are respectively sleeved on the outer wall of multiple through rods (8).

6. The wearable multi-functional medical health monitoring device according to claim 5, wherein, The rotating shaft (14) is rotatably connected to the groove (13), and a torsion spring (16) is provided at the rotatable connection between the rotating shaft (14) and the groove (13).