Household vital sign detection host and household vital sign detector

By optimizing the layout and interface design of the home vital sign detection host, the problems of low integration and serious electromagnetic interference in the existing technology are solved, and the integration and convenience of use are achieved, and supporting accessories are effectively stored through the storage box.

WO2025130943A1PCT designated stage expired Publication Date: 2025-06-26JIANGSU YUYUE MEDICAL EQUIP&SUPPLY CO LTD +1
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Patent Information

Application Number
PCT/CN2024/140382
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-12-21
Filing Date
2024-12-18
Publication Date
2025-06-26

AI Technical Summary

Technical Problem

The existing household vital sign detectors have problems such as low degree of integration, many internal connection lines, serious electromagnetic interference, large size, inconvenient data transmission, unreasonable interface layout, and messy and easy to lose supporting accessories.

Method used

A home vital sign detection host was designed. By optimizing the layout of the housing and main control board, adding allowances and slots, positioning and installing detection modules, reducing connection lines, setting up shared interfaces, adopting a modular design, and providing storage boxes to store the host and supporting accessories.

Benefits of technology

It improves the integration and convenience of the detector, reduces the equipment volume, avoids electromagnetic interference and data transmission difficulties, and achieves good storage and protection of supporting accessories.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provided are a household vital sign detection host and a household vital sign detector. The host (100) comprises a housing (1), a main control board (2), a first detection module (31), a second detection module, a third detection module (33), a fourth detection module (34), a battery module (41), a display module (42), and a data transmission module (43). A first detection interface (51), a second detection interface (52), a third detection interface (53), and a fourth detection interface (54) are correspondingly provided in the peripheral sides of the housing (1); a first clearance position (21) and a third clearance position (23) are correspondingly arranged on the main control board, and a first slot position (11) and a third slot position (13) are arranged at positions corresponding to the first clearance position and the third clearance position in the housing. The household vital sign detector comprises the host and a storage box (600) for storing the host. According to the scheme, the problem of mutual interference caused by the presence of a variety of devices and excessive connecting lines is solved, and the volume of the host is greatly reduced, so that the detector is highly integrated.
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Description

Home vital signs detection host and home vital signs detector

[0001] This application claims priority to the Chinese patent applications filed with the China Patent Office on December 21, 2023, with application number "202311774085.4" and invention name "Home vital signs detection host and device" and application number "202323498919.1" and invention name "Home vital signs detector", the entire contents of which are incorporated by reference into this application. Technical Field

[0002] The present application relates to the technical field of medical devices, and in particular to a home vital signs detection host and a home vital signs detector. Background Art

[0003] With the development of society, more and more people are beginning to pay attention to their physiological parameters. Blood pressure, body temperature, blood sugar, uric acid, total cholesterol, and blood oxygen are all very important physiological parameters of the human body. Users now invest a lot of money in related testing equipment to test these various physiological parameters, monitor their physical changes, and provide reference for doctors' diagnoses. Traditional measurement methods use blood pressure monitors, thermometers, blood glucose meters, uric acid meters, total cholesterol meters, and blood oximeters to measure users. The equipment is too numerous and scattered, making it difficult to carry. Moreover, the measurement data must be recorded manually, which makes the measurement record inefficient and prone to data loss, resulting in many user complaints.

[0004] With the advancement of technology, more and more medical device manufacturers are beginning to consider integrating physiological parameter detection methods, using the same device to detect user physiological parameters, solving the problem of scattered and inconvenient devices. However, in the process of implementing this application, the applicant found that existing home vital sign detectors still have at least the following deficiencies:

[0005] 1. Traditional vital signs detectors have a low degree of internal integration and many internal connecting wires, which increases the difficulty of producing and assembling the detectors and brings inconvenience to subsequent maintenance and repairs.

[0006] 2. Due to the large number of internal connection lines and the unreasonable layout of the functional modules, electromagnetic interference is likely to occur between the loads of each module, thus affecting the accuracy of the vital signs detector.

[0007] 3. Due to the low degree of integration, the overall size of the vital signs detector will be large, making the equipment inconvenient to use and manage.

[0008] 4. Traditional equipment does not take data transmission into consideration, so data still needs to be recorded manually, and the recording efficiency is still low.

[0009] 5. The layout design of various functional modules in traditional vital signs detectors is not reasonable, and the interface layout is unreasonable, which can easily cause trouble and difficulty for users during use.

[0010] 6. When using the vital signs detector, it is also necessary to equip it with accessories such as a blood pressure test cuff, blood glucose test strips, uric acid test strips, total cholesterol test strips, a blood collection pen, a blood collection needle, an alcohol cotton pad, etc. The existing vital signs detector does not have a structure that can uniformly store these accessories. When users want to take and store these accessories, it is messy and easy to lose them, and they will also be contaminated by the external environment.

[0011] 7. The existing vital signs detector has a low storage and protection rate for the host. The host integrates a variety of functional modules for detecting physiological parameters. The functional modules are relatively sophisticated. If there is no good protection, the host is easily damaged, affecting the detection accuracy and service life.

[0012] In view of this, how to research and design a home vital signs detector to solve the problems existing in the above-mentioned prior art has become the subject to be studied and solved in this application. Summary of the Invention

[0013] The purpose of this application is to provide a home vital signs detection host and a home vital signs detector.

[0014] To achieve the above objectives, in a first aspect, the present application proposes a home vital signs detection host, the host comprising a housing, a main control board, a first detection module, a second detection module, a third detection module, a fourth detection module, a battery module, a display module, and a data transmission module;

[0015] The main control board, the first detection module, the third detection module, the fourth detection module, the battery module, the display module, and the data transmission module are integrated and installed inside the housing;

[0016] For the first detection module and the third detection module, a first avoidance position and a third avoidance position are correspondingly provided on the main control board, and a first slot and a third slot are provided in the housing at positions corresponding to the first avoidance position and the third avoidance position;

[0017] The first detection module, the second detection module, the third detection module, the fourth detection module, the battery module, the display module, and the data transmission module are respectively connected to the main control board;

[0018] A first detection interface, a second detection interface, a third detection interface, and a fourth detection interface corresponding to the first detection module, the second detection module, the third detection module, and the fourth detection module are provided on the circumferential side of the housing;

[0019] Among them, the first detection module is positioned and installed in the first avoidance position and the first slot and is electrically connected to the main control board; the third detection module is positioned and installed in the third avoidance position and the third slot and is electrically connected to the main control board; the second detection interface, the fourth detection module, the battery module, the display module, and the data transmission module are respectively connected to the main control board wires through their respective connectors, and the battery module supplies power to the main control board and each module through the main control board; the second detection interface is configured to be shared by the second detection module and the battery module, and the host switches the second detection interface for power supply and communication with the second detection module or for charging the battery module by performing port detection.

[0020] To achieve the above-mentioned purpose, in the second aspect, the present application proposes a home vital signs detector, which includes the home vital signs detection host as described in the first aspect of the present application, and a storage box for placing the host.

[0021] The relevant contents of this application are explained as follows:

[0022] 1. The above technical solution of the present application is mainly to further optimize the integration of the home vital signs detector so that the home vital signs detection host can include as many detection modules that are frequently used by users as possible, and be equipped with corresponding power supply, display, and data transmission functions. At the same time, the shell, main control board, and various detection modules, functional modules, and detection interfaces in the host are re-designed. For the first detection module and the third detection module, the main control board is correspondingly provided with a first avoidance position and a third avoidance position, and a first slot and a third slot are provided in the shell. To adapt to the positioning and accommodation of the first detection module and the third detection module with a larger volume, the thickness of the host is reduced as much as possible; for the layout of each detection module and each detection interface, as well as the design of the power supply relationship and electrical connection relationship between the corresponding main control board, the appearance of too many connections and cross-lines is avoided, thereby avoiding the electromagnetic interference between the loads of each module, and effectively avoiding the jitter generated when the relevant modules are working, ensuring the accuracy of the measurement results, and setting the second detection interface to be shared by the second detection module and the battery module, which can reduce the number of interfaces and reduce the volume, and can also facilitate user use. Therefore, through this layout design, not only the problems of equipment clutter and mutual interference caused by too many connecting lines are solved, but also the volume of the host is greatly reduced, which provides great convenience for users to carry. At the same time, the modular design provided by this application forms a highly integrated module, which can realize the automated production of a single module, the accurate calibration of a single module and the after-sales maintenance of a single module, which is convenient for borrowing when designing other products, and is more conducive to the separate production of modules in the production line, which is of great significance to the design and development of products and the establishment of enterprise standards.

[0023] 2. In the above technical solution, the first detection interface and the second detection interface are respectively arranged on the left and right sides of the shell, and the third detection interface and the fourth detection interface are respectively arranged on the top and bottom sides of the shell, so that the detection interfaces are respectively arranged on the four sides of the shell, avoiding interference when the detection interfaces are used, and also making the arrangement of the detection modules corresponding to the detection interfaces inside the shell and the connection design of the detection modules and the main control board more scientific and reasonable, avoiding interference of the detection modules, avoiding various connections and cross-lines, and further avoiding corresponding electromagnetic interference.

[0024] 3. In the above technical solution, the first detection module is provided on the left or right side of the housing corresponding to the first detection interface. Correspondingly, the first avoidance position is located on the left or right side of the main control board, so that the main control board has an opening facing the left or right side.

[0025] The third detection module is arranged on the top side or bottom side of the shell corresponding to the third detection interface. Correspondingly, the third avoidance position is located on the top side or bottom side of the main control board and makes the main control board have an opening facing the top side or bottom side.

[0026] Through this design, the larger first detection module and third detection module can better cooperate and connect with the detection interface on the main control board and the shell, further making the interface layout more reasonable and further reducing the size of the host.

[0027] 4. In the above technical solution, the first detection module and the third detection module each contain multiple components, and the first avoidance position and the third avoidance position of the main control board are provided with avoidance sections of various levels that match the shape of each component itself or the shape of the combination of each component, so that the first detection module and the third detection module, which are larger in volume and contain multiple components, can be better assembled in their respective first avoidance positions and the third avoidance positions, making the overall structure more stable and reducing the volume of the host.

[0028] 5. In the above technical solution, the first detection module is a blood pressure measurement module, which includes an air pump, a solenoid valve, a microporous valve, an air connector, a pressure sensor, a pipeline, and a hose. The first slot is provided with an upwardly opening slot for positioning and connecting the air pump, solenoid valve, pipeline, and hose. The pressure sensor is provided on the main control board. The pipeline connects the air pump, solenoid valve, microporous valve, and air connector. The air connector is installed on the first detection interface. The hose connects the air connector, pipeline, and pressure sensor. The main control board controls the inflation, deflation, and pressure detection of the blood pressure measurement module during blood pressure measurement. The air pump is used to provide pressure during blood pressure measurement. The microporous valve slowly and uniformly deflates air during the blood pressure measurement process, allowing the main control board to pick up the pulse signal. The solenoid valve can open the air valve and quickly deflate air at the end of the measurement. The air connector is used to connect the blood pressure measurement module to the external cuff assembly. An O-ring is provided inside the air connector to ensure the sealing of the connection between the external cuff assembly and the host. The pressure sensor provides a pressure detection signal during blood pressure measurement.

[0029] 6. In the above technical solution, the pressure sensor is arranged on the lower surface of the main control board near the first avoidance position. When the air pump, solenoid valve, micropore valve, air joint, pipeline and hose are assembled as a whole in the respective slots of the first slot, the positions of the pipeline and hose are below the lower surface of the main control board. The air pump is arranged near the middle position of the main control board, and after the air pump passes through the first avoidance position, a part of the air pump is located below the lower surface of the main control board and a part is located above the lower surface of the main control board. This design enables the larger air pump to be assembled to the housing and the main The space occupied by the control board is further optimized. In this host, the thickness of the air pump almost determines the overall thickness of the host. In the process of optimizing the layout of the air pump, the thickness of the host is reduced as much as possible without conflicting or interfering with other detection modules, avoiding unnecessary flying wires. Moreover, the air pump is a device that will generate vibration when in use. At this time, the air pump is arranged to be located in the first avoidance position with a certain gap from the main control board to avoid the vibration of the air pump directly affecting the main control board, so that various sensors and detection modules on the main control board can reduce the impact of vibration, thereby ensuring the normal operation and service life of the host.

[0030] 7. In the above technical solution, the pressure sensor is arranged on the lower surface of the main control board near the first avoidance position. When the air pump, solenoid valve, micropore valve, air joint, pipeline and hose are assembled as a whole in the respective slots of the first slot, the positions of the pipeline and hose are below the lower surface of the main control board. The air pump is arranged near the middle position of the main control board, and after the air pump passes through the first avoidance position, a part of the air pump is located below the lower surface of the main control board and a part is located above the lower surface of the main control board. This design enables the larger air pump to be assembled to the housing and the main The space occupied by the control board is further optimized. In this host, the thickness of the air pump almost determines the overall thickness of the host. In the process of optimizing the layout of the air pump, the thickness of the host is reduced as much as possible without conflicting or interfering with other detection modules, avoiding unnecessary flying wires. Moreover, the air pump is a device that will generate vibration when in use. At this time, the air pump is arranged to be located in the first avoidance position with a certain gap from the main control board to avoid the vibration of the air pump directly affecting the main control board, so that various sensors and detection modules on the main control board can reduce the impact of vibration, thereby ensuring the normal operation and service life of the host.

[0031] 8. In the above technical solution, the second detection module is a blood oxygen detection module, which is integrated into a blood oxygen device line. The blood oxygen device line is connected to the host through a second detection interface. The blood oxygen detection module is used to perform blood oxygen detection on the user. After the blood oxygen device line is inserted into the second detection interface, the host detects the insertion of the blood oxygen module through IO. At this time, the host supplies power and communication to the blood oxygen module to realize blood oxygen measurement data transmission, and displays the results on the display module through software calculation.

[0032] 9. In the above technical solution, the third detection module is a body temperature detection module; the body temperature detection module includes a body temperature probe, a ranging board, an adapter board, and a lock. The body temperature probe is used to detect the user's body temperature, the ranging board is used to detect the distance between the host and the user, the body temperature probe is electrically connected to the main control board through the adapter board, and the body temperature probe is positioned and connected to the third slot through the lock. This structural design allows the body temperature detection module to be arranged on the shell and achieve a good connection with the main control board.

[0033] 10. In the above technical solution, the third avoidance position of the main control board has an avoidance section for accommodating the adapter board, an avoidance section for accommodating the bottom of the temperature probe, and an avoidance section for accommodating the surrounding side and lock of the temperature probe. In this way, a temperature probe with a certain large volume can be reasonably arranged in the third avoidance position of the main control board, and its connection with the main control board and the coordination with the shell do not conflict with other detection modules, and the layout is reasonable.

[0034] 11. In the above technical solution, the third detection interface is arranged at the top of the shell, the third avoidance position is opened toward the top, the body temperature probe and the ranging plate are arranged in conjunction with the third detection interface, and the body temperature detection module is arranged on the top of the host, so as to meet the user's usage habits and habitual gestures, and the layout is reasonable.

[0035] 12. In the above technical solution, the fourth detection module is a blood glucose, uric acid, and total cholesterol detection module, which is arranged at the bottom of the upper surface of the main control board, and the fourth detection interface is arranged at the bottom of the shell. The blood glucose, uric acid, and total cholesterol detection modules are arranged in conjunction with the fourth detection interface, and the blood glucose, uric acid, and total cholesterol detection modules are arranged at the bottom, so that the blood glucose, uric acid, and total cholesterol detection modules and other detection modules are located in different spaces, with a reasonable layout to avoid interference and flying wires.

[0036] 13. In the above technical solution, the shell also includes a battery slot, which is arranged close to the second detection interface. The battery module is positioned and assembled on the battery slot, and the battery slot is arranged close to the second detection interface. The battery module installed on the battery slot is as close to the second detection interface as possible, and the wires electrically connecting the battery module and the second detection interface can be shorter, so as to reduce loss and heat during charging and minimize electromagnetic interference to other detection modules.

[0037] 14. In the above technical solution, the shell includes a front shell assembly and a rear shell assembly, and the first slot, the third slot, the first detection interface, the second detection interface, the third detection interface, and the fourth detection interface are all arranged on the rear shell assembly. The front shell assembly has a screen bracket, and the screen bracket is positioned and assembled to the rear shell assembly. The lower part of the air pump in the first detection module is positioned and matched with the rear shell assembly, and the upper part is positioned and matched with the screen bracket. This design makes the arrangement of each detection interface more reasonable, the positioning and installation of the air pump more stable and firm, and can avoid excessive vibration of the air pump affecting other modules, making the operation of the host more stable.

[0038] 15. In the above technical solution, the display module includes a panel and a display screen arranged on the screen bracket, physical buttons are set on the panel and / or virtual buttons are set on the display screen, and the physical buttons and display screen are electrically connected to the main control board.

[0039] 16. In the above technical solution, the data transmission module includes a wireless transmission board and a wired transmission interface. The wireless transmission board is connected to the main control board through the mainboard pins, and the wireless transmission board is placed on the lower surface of the main control board; the wired transmission interface is arranged on one side of the second detection interface, and the wired transmission interface and the second detection interface are selectively covered by the shielding part on the shell. The layout is reasonable, and this part jointly protects the wired transmission interface and the second detection interface from dust and water, and avoids poor contact and short circuit.

[0040] 17. In the above technical solution, the data transmission module includes a wireless transmission board and a wired transmission interface. The wireless transmission board is connected to the main control board through the mainboard pins, and the wireless transmission board is placed on the lower surface of the main control board; the wired transmission interface is arranged on one side of the second detection interface, and the wired transmission interface and the second detection interface are selectively covered by the shielding part on the shell. The layout is reasonable, and this part jointly protects the wired transmission interface and the second detection interface from dust and water, and avoids poor contact and short circuit.

[0041] 18. In the above technical solution, a gap is provided on the box body on the same side as the first detection interface on the host, and the gap is used for the external pipeline to lead to the inside of the storage part, so that when the matching accessories connected to the external pipeline are placed inside the storage part and the cover is closed, the external pipeline is connected to the first detection interface. After the blood pressure test is completed, the user can directly place the cuff in the storage part of the storage box without unplugging the cuff plug. The cuff pipeline can pass through the gap on the storage box without affecting the closure of the storage box, thereby further increasing the user's convenience.

[0042] 19. In the above technical solution, the main method is to design a home vital signs detector with a main unit and a storage box, and to set a card seat for placing the main unit on the box body, and a storage part for placing the supporting accessories inside the box body, so that the main unit of the home vital signs detector and the supporting accessories required for use can be properly stored to avoid loss or damage. The main unit is placed in a magnetic way, which is convenient, fast and stable, and improves the quality and stability of use. The functional interface on the main unit is also set to at least two functional interfaces exposed above the card seat, so that the home vital signs detector can perform at least two functions without removing the main unit, and can also effectively avoid the jitter generated when the relevant modules are working, ensuring the accuracy of the measurement results. The cover plate equipped on the storage part can prevent the supporting accessories in the storage part from being contaminated by the outside world and lost. Therefore, through this design, the problem of the supporting accessories being messy, easy to lose and easy to be contaminated is solved, while making the use of the main unit more stable and the layout and use of the functional interfaces more reasonable.

[0043] 20. In the above technical solution, the magnetic attraction module includes a magnet provided on one of the card seat and the shell and an iron sheet provided on the other, so that the host can be stably adsorbed on the card seat of the storage box.

[0044] 21. In the above technical solution, a magnetic cavity is provided on the back of the card seat, the magnet is placed in the magnetic cavity, and the iron sheet is provided on the back of the shell.

[0045] 22. In the above technical solution, the side of the box body on which the card seat is provided is the front of the box body, and the front of the box body is tilted. After the host is placed on the card seat, the interface of the host is flush with the front of the box body, so that the user can better operate the host and view the various values ​​displayed on the host.

[0046] 23. In the above technical solution, the box body and / or cover is provided with a slit for the cuff tube to pass into the interior of the storage portion, so that when the matching accessories connected to the cuff tube are placed in the storage portion and the cover is closed, the cuff tube is connected to the functional interface. After the blood pressure test is completed, the user can directly place the cuff in the storage portion of the storage box without unplugging the cuff plug. The cuff tube can pass through the slit on the storage box without affecting the closure of the storage box, thereby increasing the user's convenience. The opening of the slit is an open opening. The functional interface connected to the cuff tube is a blood pressure detection interface, and the blood pressure detection interface is located on the same side as the slit provided in the box body and / or cover.

[0047] 24. In the above technical solution, the cover is equipped with a storage net bag, which can be used to place small accessories such as alcohol cotton pads and blood collection pens to avoid small accessories being placed at the bottom of the storage box and difficult to take out.

[0048] 25. In the above technical solution, a silicone pad is provided on the bottom of the card holder where the host is placed, and non-slip silicone is provided on the bottom of the box body, so that the storage box can be placed stably and reliably. When the user measures blood pressure without removing the machine, it can also effectively avoid the shaking caused by the air pump when working, thereby ensuring the accuracy of the measurement results.

[0049] 26. In the above technical solution, the front of the storage box has a first color area and a second color area, and the host has a screen area and a core button area. The screen area is the same color as the first color area of ​​the storage box, and the core button area is the same color as the second color area of ​​the storage box, so as to provide better human-computer guidance to the user, allowing the user to quickly lock the button core area, and at the same time make the measurement results more prominent, thereby greatly improving the user experience.

[0050] In this application, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; they can refer to mechanical connection, direct connection, or indirect connection through an intermediate medium; they can refer to internal communication between two elements or interaction between two elements, unless otherwise specified. Those skilled in the art will understand the specific meanings of the above terms in this application based on specific circumstances.

[0051] In this application, the terms "upper", "lower", "bottom", "inside", "outside", etc. indicate orientations or positional relationships based on the orientation or positional assembly relationships shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on this application. If the manual pressure relief valve is turned upside down or placed horizontally, the corresponding orientation should also be adjusted accordingly.

[0052] In this application, the terms "first," "second," etc. are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features indicated. Thus, a feature specified as "first" or "second" may explicitly or implicitly include at least one of such features. In the description of this application, "plurality" means at least two, for example, two, three, etc., unless otherwise specifically defined.

[0053] In addition, the term "and / or" in this application means three parallel solutions. Taking "A and / or B" as an example, it includes solution A, solution B, or solutions in which both A and B are satisfied.

[0054] Due to the application of the above scheme, this application has the following advantages and effects compared with the prior art:

[0055] 1. The above-mentioned scheme of the present application is mainly to further optimize the integrated design of the home vital signs detection instrument so that the home vital signs detection host can include as many detection modules that are frequently used by users as possible, and be equipped with corresponding power supply, display, and data transmission functions, so that the functions of the home vital signs detection host are more comprehensive and the integration is higher.

[0056] 2. The above-mentioned scheme of the present application has re-arranged and redesigned the shell, main control board and various detection modules, functional modules and detection interfaces in the host. For the first detection module and the third detection module, a first avoidance position and a third avoidance position are correspondingly set on the main control board, and a first slot and a third slot are set in the shell to adapt to the positioning and accommodation of the first detection module and the third detection module with a larger volume, so as to reduce the thickness of the host as much as possible and make full use of the space in the host shell as much as possible without conflict or interference.

[0057] 3. The above-mentioned scheme of the present application avoids excessive wiring and cross-wires in the layout of each detection module and each detection interface, as well as the design of the power supply relationship and electrical connection relationship between the corresponding detection modules and the main control board, thereby avoiding electromagnetic interference between the loads of each module, and effectively avoiding the jitter generated when the relevant modules are working, ensuring the accuracy of the measurement results. The second detection interface is set to be shared by the second detection module and the battery module, which can not only reduce the number of interfaces and reduce the volume, but also facilitate user use.

[0058] 4. The above scheme of the present application is mainly to design a home vital signs detector with a main unit and a storage box, and to provide a card holder for placing the main unit on the box body of the storage box, and to provide a storage part for placing the supporting accessories inside the box body, so that the main unit of the home vital signs detector and the supporting accessories that need to be used with it can be properly stored to avoid loss and damage; the main unit is placed in a magnetic way, which is convenient, fast and stable, and improves the texture and stability of use. For the functional interface on the main unit, at least two functional interfaces are exposed above the card holder, so that the home vital signs detector can perform at least two functions without removing the main unit, and can also effectively avoid the jitter generated when the relevant modules are working, thereby ensuring the accuracy of the measurement results. The cover plate equipped on the storage part can prevent the supporting accessories in the storage part from external contamination and loss.

[0059] 5. In summary, the technical solution of the present application not only solves the problems of equipment clutter and mutual interference caused by too many connecting wires through this layout design, but also greatly reduces the size of the host, which provides great convenience for users to carry. At the same time, the modular design provided by the present application forms a highly integrated module, which can realize the automated production of individual modules, accurate calibration of individual modules and after-sales maintenance of individual modules, which is convenient for borrowing when designing other products, and is more conducive to the separate production of modules on the production line, which is of great significance to the design and development of products and the establishment of corporate standards. The present application solves the problem that the accessories of existing home vital signs detectors are cluttered, easy to lose, and easy to be contaminated, and at the same time makes the use of the host more stable and makes the layout and use of various functional interfaces more reasonable. BRIEF DESCRIPTION OF THE DRAWINGS

[0060] FIG1 is a perspective diagram of a home vital signs detection host according to an embodiment of the present application (viewing angle 1);

[0061] FIG2 is a perspective diagram of a home vital signs detection host according to an embodiment of the present application (viewing angle 2);

[0062] FIG3 is a perspective diagram of a home vital sign detection host according to an embodiment of the present application (viewing angle 3);

[0063] FIG4 is a schematic diagram of the assembly of the front housing assembly and the display module in the first embodiment of the present application;

[0064] FIG5 is a cross-sectional schematic diagram of a household vital signs detection host according to an embodiment of the present application;

[0065] FIG6 is a top view of the home vital signs detection host with some structures removed in Example 1 of the present application;

[0066] FIG7 is a schematic diagram of the assembly of the housing and the first detection module in Example 1 of the present application;

[0067] FIG8 is a schematic diagram of the assembly of the housing, the main control board, and the first detection module in the first embodiment of the present application;

[0068] FIG9 is a schematic diagram of a main control board according to an embodiment of the present application;

[0069] FIG10 is a schematic diagram of the assembly of the housing, the main control board, and the third detection module in the first embodiment of the present application;

[0070] FIG11 is a schematic diagram (I) of the assembly of the housing and the third detection module in the first embodiment of the present application;

[0071] FIG12 is a schematic diagram (II) of the assembly of the housing and the third detection module in the first embodiment of the present application;

[0072] FIG13 is a schematic diagram (III) of the assembly of the housing and the third detection module in the first embodiment of the present application;

[0073] FIG14 is a schematic diagram (I) of the assembly of the main control board and the third detection module in Example 1 of the present application;

[0074] FIG15 is a schematic diagram (II) of the assembly of the main control board and the third detection module in the first embodiment of the present application;

[0075] FIG16 is a schematic diagram (III) of the assembly of the main control board and the third detection module in the first embodiment of the present application;

[0076] FIG17 is a schematic diagram of the assembly of the housing and the battery module in Example 1 of the present application;

[0077] FIG18 is a schematic diagram of the assembly of the main control board and the data transmission module in the first embodiment of the present application;

[0078] FIG19 is a perspective schematic diagram of a household vital signs detector according to a second embodiment of the present application (viewing angle 1);

[0079] FIG20 is a perspective schematic diagram of a household vital signs detector according to a second embodiment of the present application (viewing angle 2);

[0080] FIG21 is a schematic diagram of placing the host on the storage box to measure blood pressure in Example 2 of the present application;

[0081] FIG22 is a perspective schematic diagram of a household vital signs detector according to Example 2 of the present application (viewing angle 3);

[0082] FIG23 is a perspective schematic diagram of a household vital signs detector according to Example 2 of the present application (viewing angle 4);

[0083] FIG24 is a perspective schematic diagram of a home vital signs detector according to Example 2 of the present application (viewing angle 5);

[0084] FIG25 is an exploded diagram of the second embodiment of the present application of the home vital signs detector;

[0085] Figure 26 is an assembly diagram of the silicone pad, protective silicone and other components of the household vital signs detector in Example 2 of the present application.

[0086] The various parts of the above figures are represented as follows: 100, host; 1, shell; 101, front shell assembly; 1011, screen bracket; 102, rear shell assembly; 11, first slot; 111, card slot; 13, third slot; 14, battery slot; 15, shielding part; 2, main control board; 21, first avoidance position; 211, avoidance section; 212, avoidance section; 213, avoidance section; 22, cover; 221, box body; 23, third avoidance position; 231, avoidance section; 232, avoidance section; 233, avoidance section; 24, magnetic module; 241, magnet; 242, magnetic cavity; 26, silicone pad; 27, non-slip silicone; 31, first detection module; 311, air pump; 312, solenoid valve; 313, pipeline; 314, hose; 315, air joint; 316, micropore valve; 3 3. Third detection module; 331. Temperature probe; 332. Distance measuring board; 333. Adapter board; 334. Lock; 34. Fourth detection module; 41. Battery module; 42. Display module; 421. Panel; 422. Display screen; 423. Physical buttons; 43. Data transmission module; 431. Wireless transmission board; 4311. Motherboard pin; 432. Wired transmission interface; 51. First detection interface; 52. Second detection interface; 53. Third detection interface; 54. Fourth detection interface; 600. Storage box; 61. Card holder; 62. Storage part; 63. Gap; 91. Cuff; 92. Cuff tubing.

[0087] Implementation Method

[0088] To make the above-mentioned objects, features, and advantages of the present application more clearly understood, the specific embodiments of the present application are described in detail below with reference to the accompanying drawings. The following description sets forth many specific details to facilitate a full understanding of the present application. However, the present application can be implemented in many other ways than those described herein, and those skilled in the art can make similar improvements without violating the scope of the present application. Therefore, the present application is not limited to the specific embodiments disclosed below.

[0089] The present application aims to provide a home vital signs detection host and a home vital signs detector with a more reasonable layout design, a smaller size and a higher degree of integration.

[0090] In the first embodiment, as shown in Figures 1 to 18, the home vital signs detection host 100 includes a shell 1, a main control board 2, a first detection module 31, a second detection module, a third detection module 33, a fourth detection module 34, a battery module 41, a display module 42, and a data transmission module 43. The main control board 2, the first detection module 31, the third detection module 33 and the fourth detection module 34, the battery module 41, the display module 42, and the data transmission module 43 are integrated and installed inside the shell 1; for the first detection module 31 and the third detection module 33, a first avoidance position 21 and a third avoidance position 23 are correspondingly set on the main control board 2, and a first slot 11 and a third slot 13 are set at the corresponding positions of the first avoidance position 21 and the third avoidance position 23 in the shell 1; the first detection module 31, the second detection module 33, the fourth detection module 34, the battery module 41, the display module 42, and the data transmission module 43 are respectively connected to the main control board 2; a first detection interface 51, a second detection interface 52, a third detection interface 53, and a fourth detection interface 54 corresponding to the first detection module 31, the second detection module, the third detection module 33, and the fourth detection module 34 are set on the peripheral side of the shell 1.

[0091] Among them, the first detection module 31 is positioned and installed on the first avoidance position 21 and the first slot 11 and is electrically connected to the main control board 2; the third detection module 33 is positioned and installed on the third avoidance position 23 and the third slot 13 and is electrically connected to the main control board 2; the second detection interface 52, the fourth detection module 34, the battery module 41, the display module 42, and the data transmission module 43 are respectively connected to the main control board 2 through their respective connectors, and the battery module 41 supplies power to the main control board 2 and each module through the main control board 2; the second detection interface 52 is configured to be used in common for the second detection module and the battery module 41, and the host 100 switches the second detection interface 52 for power supply and communication with the second detection module or for charging the battery module 41 by performing port detection.

[0092] Through the implementation of the first embodiment of the present application, the integration of the home vital signs detector is further optimized and designed, so that the home vital signs detection host can include as many detection modules that are frequently used by users as possible, and be equipped with corresponding power supply, display, and data transmission functions. At the same time, the shell 1, main control board 2 and various detection modules, functional modules, and detection interfaces in the host 100 are re-designed. For the first detection module 31 and the third detection module 33, the first avoidance position 21 and the third avoidance position 23 are correspondingly set on the main control board 2, and the first slot 11 and the third slot 13 are set in the shell 1. , in order to adapt to the positioning and accommodation of the larger first detection module 31 and the third detection module 33, so as to reduce the thickness of the host 100 as much as possible; for the layout of each detection module and each detection interface, as well as the design of the power supply relationship and electrical connection relationship between the main control board 2, excessive connections and cross-lines are avoided, thereby avoiding electromagnetic interference between the loads of each module, and effectively avoiding the jitter generated when the relevant modules are working, ensuring the accuracy of the measurement results, and setting the second detection interface 52 to be shared by the second detection module and the battery module 41, which can not only reduce the number of interfaces and reduce the volume, but also facilitate user use.

[0093] In one implementation of Example 1 of the present application, as shown in Figures 1 to 3, the first detection interface 51 and the second detection interface 52 are respectively arranged on the left and right sides of the shell 1, and the third detection interface 53 and the fourth detection interface 54 are respectively arranged on the top and bottom sides of the shell 1, so that the detection interfaces are arranged around the shell 1 to avoid interference when the detection interfaces are used, and also make the arrangement of the detection modules corresponding to the detection interfaces inside the shell 1 and the connection design of the detection modules and the main control board 2 more scientific and reasonable, avoiding interference between the detection modules, avoiding various connections and cross-lines, and further avoiding corresponding electromagnetic interference. Specifically, the first detection module 31 is arranged on the left or right side of the housing 1 corresponding to the first detection interface 51. Correspondingly, the first avoidance position 21 is located on the left or right side of the main control board 2 and causes the main control board 2 to have an opening facing the left or right side. The third detection module 33 is arranged on the top or bottom side of the housing 1 corresponding to the third detection interface 53. Correspondingly, the third avoidance position 23 is located on the top or bottom side of the main control board 2 and causes the main control board 2 to have an opening facing the top or bottom side. This design allows the larger first detection module 31 and third detection module 33 to better cooperate and connect with the corresponding detection interfaces on the main control board 2 and the housing 1, further making the interface layout more reasonable and further reducing the volume of the host 100.

[0094] In another embodiment of Example 1 of the present application, the first detection module 31 and the third detection module 33 both include multiple components. As shown in Figure 9, the first avoidance position 21 and the third avoidance position 23 of the main control board 2 are provided with avoidance sections of various levels that match the shape of each component itself or the shape of the combination of each component, so that the first detection module 31 and the third detection module 33, which are larger in volume and include multiple components, can be better assembled in their respective first avoidance positions 21 and the third avoidance positions 23, so that the overall structure is more stable and the volume of the host 100 is reduced.

[0095] In another embodiment of Example 1 of the present application, as shown in Figures 7 and 8, the first detection module 31 is a blood pressure measurement module, and the first detection module 31 includes an air pump 311, a solenoid valve 312, a microporous valve 316, an air connector 315, a pressure sensor, a pipeline 313, and a hose 314. The first slot 11 is provided with an upward-opening card slot 111 for positioning and clamping the air pump 311, the solenoid valve 312, the pipeline 313, and the hose 314 respectively. The pressure sensor is arranged on the main control board 2, the pipeline 313 connects the air pump 311, the solenoid valve 312, the microporous valve 316 and the air connector 315, the air connector 315 is installed on the first detection interface 51, and the hose 314 connects the air connector 315, the pipeline 313 and the pressure sensor. The main control board 2 controls the blood pressure measurement module to inflate, deflate and perform pressure detection during blood pressure measurement; the air pump 311 is used to provide pressure during blood pressure measurement; the microporous valve 316 slowly and evenly deflates the air during the blood pressure measurement process, allowing the main control board 2 to pick up the pulse signal, and the solenoid valve 312 can open the air valve at the end of the measurement to quickly deflate the air; the air connector 315 is used to connect the blood pressure measurement module and the external cuff assembly, and an O-ring is set on the inside of the air connector 315 to ensure the sealing of the connection between the external cuff assembly and the host 100; the pressure sensor provides a pressure detection signal during blood pressure measurement.

[0096] Furthermore, the pressure sensor (not shown in the figure) is arranged on the lower surface of the main control board 2 near the first avoidance position 21. When the air pump 311, solenoid valve 312, micropore valve 316, air joint 315, pipeline 313, and hose 314 are assembled as a whole in each slot 111 of the first slot 11, the positions of the pipeline 313 and hose 314 are below the lower surface of the main control board 2. The air pump 311 is arranged near the middle position of the main control board 2, and after the air pump 311 passes through the first avoidance position 21, a part of the air pump 311 is located below the lower surface of the main control board 2 and a part is located above the lower surface of the main control board 2. This design makes the larger air pump 311 The space occupied after being assembled on the shell 1 and the main control board 2 is further optimized. In the host 100, the thickness of the air pump 311 almost determines the overall thickness of the host 100. In the process of optimizing the layout of the air pump 311, the thickness of the host 100 is reduced as much as possible without conflicting or interfering with other detection modules, avoiding unnecessary flying wires. Moreover, the air pump 311 is a device that generates vibration when in use. At this time, the air pump 311 is arranged to be located on the first avoidance position 21 and have a certain gap with the main control board 2 to avoid the vibration of the air pump 311 directly affecting the main control board 2, so that the various sensors and various detection modules on the main control board 2 can reduce the impact of vibration, thereby ensuring the normal operation and service life of the host 100.

[0097] More specifically, as shown in Figure 9, the first avoidance position 21 of the main control board 2 has a avoidance section 211 for accommodating the bottom of the air pump 311, a avoidance section 212 for accommodating the top of the air pump 311 and the hose 314, and a avoidance section 213 for accommodating the solenoid valve 312, the micropore valve 316, the pipeline 313, and the air joint 315. There is a gap between the air pump 311 and the avoidance sections 212 and 213 to prevent the vibration of the air pump 311 from directly affecting the main control board 2.

[0098] In one implementation of Example 1 of the present application, the second detection module is a blood oxygen detection module (the second detection module is not shown in the accompanying drawings). The blood oxygen detection module is integrated into a blood oxygen device line, and the blood oxygen device line is connected to the host 100 through a second detection interface 52. The blood oxygen detection module is used to perform blood oxygen detection on the user. After the blood oxygen device line is inserted into the second detection interface 52, the host 100 detects the insertion of the blood oxygen module through IO. At this time, the host 100 supplies power and communication to the blood oxygen module to realize blood oxygen measurement data transmission, and displays the results on the display module 42 through software calculation.

[0099] In another embodiment of Example 1 of the present application, as shown in Figures 10 to 16, the third detection module 33 is a body temperature detection module; the body temperature detection module includes a body temperature probe 331, a ranging board 332, an adapter board 333, and a lock 334. The body temperature probe 331 is used to detect the user's body temperature, and the ranging board 332 is used to detect the distance between the host 100 and the user. The body temperature probe 331 is electrically connected to the main control board 2 through the adapter board 333, and the body temperature probe 331 is positioned and connected to the third slot 13 through the lock 334. According to this structural design, the body temperature detection module is arranged on the shell 1 and achieves a good connection with the main control board 2. Specifically, the third avoidance position 23 of the main control board 2 has an avoidance section 231 for accommodating the adapter plate 333, a avoidance section 232 for accommodating the bottom of the body temperature probe 331, and a avoidance section 233 for accommodating the sides of the body temperature probe 331 and the lock 334. In this way, a body temperature probe 331 of a certain size can be reasonably arranged on the third avoidance position 23 of the main control board 2. Its connection with the main control board 2 and its coordination with the shell 1 do not conflict with other detection modules, and the layout is reasonable. Furthermore, the third detection interface 53 is provided at the top of the shell 1, and the third avoidance position 23 is open toward the top. The body temperature probe 331 and the ranging plate 332 are arranged in conjunction with the third detection interface 53, and the body temperature detection module is arranged at the top of the host 100, so as to meet the user's usage habits and habitual gestures, and the layout is reasonable.

[0100] In another embodiment of Example 1 of the present application, as shown in Figure 6, the fourth detection module 34 is a blood glucose, uric acid, and total cholesterol detection module, which is arranged at the bottom of the upper surface of the main control board 2, and the fourth detection interface 54 is arranged at the bottom of the shell 1. The blood glucose, uric acid, and total cholesterol detection modules are arranged in conjunction with the fourth detection interface 54, and the blood glucose, uric acid, and total cholesterol detection modules are arranged at the bottom, so that the blood glucose, uric acid, and total cholesterol detection modules and other detection modules are located in different spaces, with a reasonable layout to avoid interference and flying wires.

[0101] In one embodiment of Example 1 of the present application, as shown in Figures 5 and 17, the shell 1 also includes a battery slot 14, and the battery slot is arranged near the second detection interface 52. The battery module 41 is positioned and assembled on the battery slot 14, and the battery slot is arranged near the second detection interface 52. The battery module 41 installed on the battery slot 14 is as close to the second detection interface 52 as possible, and the wires arranged for the electrical connection between the battery module 41 and the second detection interface 52 can be shorter, so as to reduce loss and heat during charging, and minimize electromagnetic interference to other detection modules.

[0102] In another embodiment of the first embodiment of the present application, as shown in Figures 1 to 5, the shell 1 includes a front shell component 101 and a rear shell component 102, and the first slot 11, the third slot 13, the first detection interface 51, the second detection interface 52, the third detection interface 53, and the fourth detection interface 54 are all arranged on the rear shell component 102. The front shell component 101 has a screen bracket 1011, and the screen bracket 1011 is positioned and assembled to the rear shell component 102. The lower part of the air pump 311 in the first detection module 31 is positioned and matched with the rear shell component 102, and the upper part is positioned and matched with the screen bracket 1011. This design makes the arrangement of each detection interface more reasonable, makes the positioning and installation of the air pump 311 more stable and firm, and can avoid excessive vibration of the air pump 311 affecting other modules, making the operation of the host 100 more stable.

[0103] In another implementation of Example 1 of the present application, as shown in Figures 4 and 5, the display module 42 includes a panel 421 and a display screen 422 arranged on the screen bracket 1011, and a physical button 423 is set on the panel 421 and / or a virtual button is set on the display screen 422, and the physical button 423 and the display screen 422 are electrically connected to the main control board 2.

[0104] In one embodiment of Example 1 of the present application, as shown in Figure 18, the data transmission module 43 includes a wireless transmission board 431 and a wired transmission interface 432. The wireless transmission board 431 is connected to the main control board 2 through a mainboard pin 4311, and the wireless transmission board 431 is placed on the lower surface of the main control board 2; the wired transmission interface 432 is arranged on one side of the second detection interface 52, and the wired transmission interface 432 and the second detection interface 52 are both selectively covered by the shielding part 15 on the shell 1, and the layout is reasonable. This part jointly protects the wired transmission interface 432 and the second detection interface 52 from dust and water, and avoids poor contact and short circuit.

[0105] Example 2, referring to Figures 19 and 20, Example 2 of the present application proposes a home vital signs detector, which includes the home vital signs detection host as described in Example 1 of the present application, and a storage box 600 for placing the host 100.

[0106] In one embodiment of Example 2 of the present application, the storage box 600 is provided with a seat 61 for placing the host 100 and a storage portion 62 for accommodating supporting accessories. When the host 100 is placed in the seat 61, the first detection interface 51 and the second detection interface 52 are exposed to the outside, so as to achieve the use of the home vital signs detection host without removing the host 100, thereby improving the user's convenience, and the first detection interface 51 is located on the left side of the host 100, and the second detection interface 52 is located on the right side of the host 100.

[0107] In another embodiment of Example 2 of the present application, a gap 63 is provided on the box body 221 on the same side as the first detection interface 51 on the host 100. The gap 63 is used for the external pipeline 313 to pass into the storage portion 62, so that the matching accessories connected to the external pipeline 313 are placed inside the storage portion 62 and the cover 22 is closed. The external pipeline 313 is connected to the first detection interface 51. After the blood pressure test is completed, the user can directly place the cuff in the storage portion 62 of the storage box 600 without unplugging the cuff plug. The cuff pipeline 313 can pass through the gap 63 on the storage box 600 without affecting the closure of the storage box 600, thereby further increasing the user's convenience.

[0108] Refer to Figure 21, which shows an operation diagram of placing the host 100 on the storage box 600 to measure blood pressure, wherein the blood pressure can be measured after the cuff tube 92 is plugged into the first detection interface 51 and the cuff 91 is worn on the user's arm without removing the host 100. After the blood pressure is measured, you can choose not to remove the cuff tube 92 and only put the cuff into the storage part 62 of the storage box 600.

[0109] In another embodiment of the second embodiment of the present application, as shown in Figures 22 and 23, a home vital signs detector is provided, which includes a host 100 and a storage box 600. The host 100 includes a shell 1, a main control board 2, a first detection module 31, a second detection module, a third detection module 33, a fourth detection module 34, a battery module 41, a display module 42, and a data transmission module 43. The first detection module 31 is a blood pressure measurement module, the second detection module is a blood oxygen detection module, the third detection module 33 is a body temperature detection module, and the fourth detection module 34 is a blood sugar, uric acid, and total cholesterol detection module. A first detection interface 51, a second detection interface 52, a third detection interface 53, and a fourth detection interface 54 corresponding to the first detection module 31, the second detection module, the third detection module 33, and the fourth detection module 34 are provided on the shell 1, wherein the first detection interface 51 is provided on the right side of the shell 1, the second detection interface 52 is provided on the left side of the shell 1, the third detection interface 53 is provided on the top of the shell 1, and the fourth detection interface 54 is provided on the bottom of the shell 1.

[0110] In another embodiment of Example 2 of the present application, as shown in Figures 24, 25 and 26, a home vital signs detector includes a host 100 and a storage box 600. The host 100 has a shell 1, in which multiple functional modules are integrated, and multiple functional interfaces are provided on the periphery of the shell 1; the storage box 600 has a box body 221 and a cover 22, and a card holder 61 for placing the host 100 is provided on the outer side of the box body 221, and a magnetic module 24 for magnetically attracting the host 100 to the card holder 61 is provided between the card holder 61 and the shell 1, and when the host 100 is placed on the card holder 61, at least two functional interfaces on the shell 1 are exposed above the card holder 23; the box body 221 has a storage portion 62 for placing matching accessories; the cover 22 can be opened and closed on the storage portion 62 of the box body 221.

[0111] Through the implementation of the embodiment of the present application, the home vital signs detector is designed to have a main unit 100 and a storage box 600, and a card holder 61 for placing the main unit 100 is provided on the box body 221 of the storage box 600, and a storage portion 62 for placing supporting accessories is provided inside the box body 221, so that the main unit 100 of the home vital signs detector and the supporting accessories that need to be used can be properly stored to avoid loss and damage, and the placement of the main unit 100 adopts a magnetic suction method, which is convenient, fast and stable, and improves the texture and stability of use. The two functional interfaces on the shell 1 are the first detection interface 51 and the second detection interface 52, both of which are exposed above the card holder 61, so that the home vital signs detector can perform at least two functions without removing the main unit 100, and can also effectively avoid the jitter generated when the relevant modules are working, thereby ensuring the accuracy of the measurement results. The cover plate 22 equipped on the storage portion 62 can prevent the supporting accessories in the storage portion 62 from external contamination and loss.

[0112] In another embodiment of the present application, as shown in FIG25 , the magnetic attraction module 24 includes a magnet 241 provided on one of the card holder 61 and the housing 1, and an iron sheet provided on the other, so that the host 100 can be stably attached to the card holder 61 of the storage box 600. Specifically, a magnetic attraction cavity 242 is provided on the back of the card holder 61, in which the magnet 241 is placed, and the iron sheet is provided on the back of the housing 1.

[0113] In another embodiment of the present application, as shown in Figure 20, the side of the box body 221 on which the card seat 61 is provided is the front of the box body 221, and the front of the box body 221 is tilted. After the host 100 is placed on the card seat 61, the interface of the host 100 is flush with the front of the box body 221, so that the user can better operate the host 100 and view the various values ​​displayed on the host 100.

[0114] In other embodiments of the present application, as shown in Figure 20, a gap 63 is provided on the box body 221 and / or the cover 22 for the cuff pipeline 92 to pass through the interior of the storage portion 62, so that when the matching accessories connected to the cuff pipeline 92 are placed inside the storage portion 62 and the cover 22 is closed, the cuff pipeline 92 is connected to the first detection interface 51. After the blood pressure test is completed, the user can directly place the cuff 91 in the storage portion 62 of the storage box 600 without unplugging the cuff 91. The cuff pipeline 92 can pass through the gap 63 on the storage box 600 without affecting the closure of the storage box 600, thereby increasing the user's convenience. The opening of the gap 63 is an open opening.

[0115] In another embodiment of the present application, the cover 22 is equipped with a storage net bag, which can be used to place small accessories such as alcohol cotton pads and lancing pens to avoid small accessories being placed at the bottom of the storage box 600 and difficult to take out.

[0116] In another embodiment of the present application, a silicone pad 26 is provided on the bottom of the card holder 61 where the host 100 is placed, and an anti-slip silicone 27 is provided on the bottom of the box body 221, so that the storage box 600 can be placed stably and reliably. When the user measures blood pressure without removing the machine, it can also effectively avoid the shaking caused by the air pump when working, thereby ensuring the accuracy of the measurement results.

[0117] In another embodiment of the present application, the front of the storage box 600 has a first color area and a second color area, and the host 100 has a screen area and a core button area. The screen area is the same color as the first color area of ​​the storage box 600, and the core button area is the same color as the second color area of ​​the storage box 600. It can be understood that the colors of the first color area and the second color area are different, so as to provide better human-computer guidance to the user, allowing the user to quickly lock the button core area, and at the same time make the measurement results more prominent, so as to greatly improve the user experience.

[0118] In addition, a specific embodiment is used for detailed description.

[0119] In the home vital signs detector proposed in this detailed embodiment, the detector includes a host 100 and a storage box 600; the host 100 has a shell 1, an iron sheet is provided on the back of the shell 1, and a plurality of functional modules are integrated in the shell 1, the functional modules including a wireless data transmission module, a wired data transmission interface, a blood pressure measurement module, a blood oxygen measurement module, a body temperature module, a blood sugar, uric acid, and total cholesterol measurement module, etc., a plurality of functional interfaces are provided on the periphery of the shell 1, such as a first detection interface 51 and a second detection interface 52, wherein the functional interfaces corresponding to the blood pressure measurement module and the blood oxygen measurement module are respectively provided on the left and right sides of the shell 1; the storage box 600 has The box body 221 and the cover plate 22 are provided with anti-slip silicone 27 at the bottom of the box body 221. A card holder 61 for placing the host 100 is provided on the outside of the box body 221. A silicone pad 26 is provided at the bottom of the card holder 61. A magnet 241 is placed on the back of the card holder 61. When the host 100 is placed on the card holder 61, the interface of the host 100 is flush with the front of the box body 221 and is arranged at an angle. At least two functional interfaces on the shell 1 are exposed above the card holder 61; the inside of the box body 221 has a storage portion 62 for placing matching accessories; the cover plate 22 can be opened and closed on the storage portion 62 of the box body 221, and the cover plate 22 is equipped with a storage net bag.

[0120] As shown in Figures 20 and 21, the functional interface corresponding to the blood pressure measurement module (first detection interface 51) is located on the left side of the shell 1, and the functional interface corresponding to the blood oxygen measurement module (second detection interface 52) is located on the right side of the shell 1, and these two functional interfaces are exposed to the outside when the host 100 is placed on the card holder 23; in addition, a functional interface is also provided on the top of the shell 1, which can be used for the corresponding body temperature module setting.

[0121] As shown in Figures 22 and 23, the functional interface corresponding to the blood pressure measurement module (first detection interface 51) is located on the right side of the shell 1, and the functional interface corresponding to the blood oxygen measurement module (second detection interface 52) is located on the left side of the shell 1.

[0122] Refer to Figure 21, which shows an operation diagram of placing the host 100 on the storage box 600 to measure blood pressure, wherein the blood pressure measurement can be performed after the cuff tube 92 is plugged into the first detection interface 51 and the matching accessory (cuff 91) is worn on the user's arm. There is no need to remove the host 100. After the blood pressure is measured, you can choose not to remove the cuff tube 92 and only place the cuff 91 into the storage part 62 of the storage box 600.

[0123] The above embodiments are intended only to illustrate the technical concepts and features of this application. Their purpose is to enable those familiar with the art to understand the content of this application and implement it accordingly. They are not intended to limit the scope of protection of this application. Any equivalent changes or modifications made in accordance with the spirit of this application shall be included in the scope of protection of this application.

Claims

1. A home vital signs detection host, wherein: The host includes a housing, a main control board, a first detection module, a second detection module, a third detection module, a fourth detection module, a battery module, a display module, and a data transmission module; The main control board, the first detection module, the third detection module, the fourth detection module, the battery module, the display module, and the data transmission module are integrated and installed inside the housing; For the first detection module and the third detection module, a first avoidance position and a third avoidance position are correspondingly arranged on the main control board, and a first slot and a third slot are arranged in the shell at positions corresponding to the first avoidance position and the third avoidance position; The first detection module, the second detection module, the third detection module, the fourth detection module, the battery module, the display module, and the data transmission module are respectively connected to the main control board; A first detection interface, a second detection interface, a third detection interface, and a fourth detection interface corresponding to the first detection module, the second detection module, the third detection module, and the fourth detection module are arranged on the peripheral side of the shell; Among them, the first detection module is positioned and installed in the first avoidance position and the first slot and is electrically connected to the main control board; the third detection module is positioned and installed in the third avoidance position and the third slot and is electrically connected to the main control board; the second detection interface, the fourth detection module, the battery module, the display module, and the data transmission module are respectively connected to the main control board wires through their own connectors, and the battery module supplies power to the main control board and each module through the main control board; the second detection interface is configured to be shared by the second detection module and the battery module, and the host performs port detection to switch the second detection interface for power supply and communication with the second detection module or for charging the battery module.

2. The home vital signs detection host according to claim 1, wherein: The first detection interface and the second detection interface are respectively arranged on the left and right sides of the shell, and the third detection interface and the fourth detection interface are respectively arranged on the top and bottom sides of the shell.

3. The home vital signs detection host according to claim 1, wherein: The first detection module and the third detection module both include multiple components, and the first avoidance position and the third avoidance position of the main control board are provided with avoidance sections of various levels that match the shape of each component itself or the shape of the components after combination.

4. The home vital signs detection host according to claim 1, wherein: The first detection module is a blood pressure measurement module, which includes an air pump, a solenoid valve, a microporous valve, an air joint, a pressure sensor, a pipeline, and a hose. The first slot is provided with an upwardly opening card slot for positioning and clamping the air pump, the solenoid valve, the pipeline, and the hose. The pressure sensor is arranged on the main control board, the pipeline connects the air pump, the solenoid valve, the microporous valve and the air joint, the air joint is installed on the first detection interface, and the hose connects the air joint, the pipeline and the pressure sensor.

5. The home vital signs detection host according to claim 1, wherein: The second detection module is a blood oxygen detection module, which is integrated into a blood oxygen equipment line, and the blood oxygen equipment line is connected to the host through a second detection interface.

6. The home vital signs detection host according to claim 1, wherein: The third detection module is a body temperature detection module; the body temperature detection module includes a body temperature probe, a ranging board, an adapter board, and a lock. The body temperature probe is used to detect the user's body temperature, the ranging board is used to detect the distance between the host and the user, the body temperature probe is electrically connected to the main control board through the adapter board, and the body temperature probe is positioned and connected to the third slot through the lock.

7. The home vital signs detection host according to claim 6, wherein: The third detection interface is arranged at the top of the shell, the third avoidance position is opened toward the top, and the body temperature probe and the distance measuring plate are arranged in coordination with the third detection interface.

8. The home vital signs detection host according to claim 1, wherein: The fourth detection module is a blood sugar, uric acid, and total cholesterol detection module. The blood sugar, uric acid, and total cholesterol detection module is arranged at the bottom of the upper surface of the main control board. The fourth detection interface is arranged at the bottom of the shell. The blood sugar, uric acid, and total cholesterol detection module is arranged in conjunction with the fourth detection interface.

9. The home vital signs detection host according to claim 1, wherein: The shell includes a front shell assembly and a rear shell assembly, and the first slot, the third slot, the first detection interface, the second detection interface, the third detection interface, and the fourth detection interface are all arranged on the rear shell assembly. The front shell assembly has a screen bracket, and the screen bracket is positioned and assembled to the rear shell assembly. The lower part of the air pump in the first detection module is positioned and matched with the rear shell assembly, and the upper part is positioned and matched with the screen bracket.

10. The home vital signs detection host according to claim 9, wherein: The display module includes a panel and a display screen arranged on the screen bracket. Physical buttons are arranged on the panel and / or virtual buttons are arranged on the display screen. The physical buttons and the display screen are electrically connected to the main control board.

11. The home vital signs detection host according to claim 1, wherein: The data transmission module includes a wireless transmission board and a wired transmission interface. The wireless transmission board is connected to the main control board by wires via a mainboard pin, and the wireless transmission board is placed on the lower surface of the main control board. The wired transmission interface is arranged on one side of the second detection interface, and both the wired transmission interface and the second detection interface are selectively covered by a shielding portion on the shell.

12. A home vital signs detector, wherein: The home vital sign detector comprises a host as described in any one of claims 1 to 11, and a storage box for placing the host.

13. The home vital signs detector according to claim 12, wherein: The storage box comprises a box body and a cover plate, a card holder for placing a host is arranged on the outer side of the box body, a magnetic attraction module for magnetically attracting the host to the card holder is arranged between the card holder and the shell, and when the host is placed on the card holder, the first detection interface and the second detection interface are exposed to the outside; the box body has a storage part for placing matching accessories; the cover plate is openably and closably arranged on the storage part of the box body.

14. The home vital signs detector according to claim 13, wherein: The magnetic attraction module includes a magnet disposed on one of the card holder and the housing and an iron sheet disposed on the other; A magnetic suction cavity is arranged on the back of the card seat, and the magnet is placed in the magnetic suction cavity.

15. The home vital signs detector according to claim 14, wherein: The side of the box body on which the card seat is arranged is the front side of the box body, and the front side of the box body is arranged at an angle. After the host is placed on the card seat, the interface of the host is flush with the front side of the box body.

16. The home vital signs detector according to claim 13, wherein: The box body and / or the cover plate are provided with a gap for the cuff pipeline to lead to the interior of the storage portion, so that when the matching accessories connected to the cuff pipeline are placed in the storage portion and the cover plate is closed, the cuff pipeline is connected to the first detection interface.

17. The home vital signs detector according to claim 16, wherein: The first detection interface connected to the cuff pipeline is a blood pressure detection interface, and the blood pressure detection interface is located on the same side as the gap opened on the box body and / or the cover plate.

18. The home vital signs detector according to claim 13, wherein: The cover plate is provided with a storage net bag.

19. The home vital signs detector according to claim 13, wherein: A silicone pad is arranged at the bottom of the card seat where the host is placed, and anti-slip silicone is arranged at the bottom of the box body.

20. The home vital signs detector according to claim 13, wherein: The front of the storage box has a first color area and a second color area, the host has a screen area and a core button area, the screen area has the same color as the first color area of ​​the storage box, and the core button area has the same color as the second color area of ​​the storage box.

Citation Information

Patent Citations

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