Intelligent host and wearable device

By placing the health monitoring module on the skin-closed side of the casing and the card tray and charging components on the skin-distal side in the smart wearable device, the problem of insufficient space for the health monitoring module is solved, improving monitoring accuracy and extending service life.

CN224140802UActive Publication Date: 2026-04-21GUANGDONG XIAOTIANCAI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG XIAOTIANCAI TECH CO LTD
Filing Date
2025-03-28
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The small size of smart wearable devices means that the function cards occupy space in the health monitoring module, resulting in a smaller number of sensors in the health monitoring module and affecting the accuracy of monitoring.

Method used

The health monitoring module is placed on the skin-friendly side inside the housing, the card tray assembly is placed on the skin-distal side, and the charging component is placed on the side of the housing to avoid occupying the layout space of the health monitoring module and increase the number of sensors.

Benefits of technology

This improves the accuracy of the health monitoring module in monitoring human health indices and extends the lifespan of the health monitoring module.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of wearable equipment, in particular to an intelligent host and wearable equipment. The intelligent host comprises a housing; the health monitoring module is arranged in the machine shell, and the monitoring end of the health monitoring module faces the near-skin side of the machine shell; the card support assembly is arranged in the machine shell and located on the far-skin side of the health monitoring module; the charging part is arranged on the side face of the machine shell, and the charging part is used for charging the intelligent host. The accuracy of monitoring the human body health index by the health monitoring module can be improved; and the charging part is arranged on the side surface of the shell, so that the charging part can be farther away from the health monitoring module, the negative influence of an electromagnetic field and heat generated by the charging part during charging on the health monitoring module can be reduced, and the service life of the health monitoring module is prolonged.
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Description

Technical Field

[0001] This application relates to the field of wearable device technology, and more particularly to a smart host and wearable device. Background Technology

[0002] Smart wearable devices (such as smartwatches and smart bracelets) monitor human health indices by integrating health monitoring modules. In related technologies, considering that the health monitoring module needs to face and contact the wearer when worn to detect health indices, and that the function card needs to be removed from the side of the smart wearable device away from the display screen for easy replacement, both the health monitoring module and the function card are located on the side of the smart wearable device's main unit away from the display screen.

[0003] However, due to the small size of smart wearable devices, the function card occupies part of the area on the side of the smart host away from the display screen, resulting in a smaller area available for the health monitoring module on the side of the smart wearable device away from the display screen. This leads to a smaller number of sensors that can be set in the health monitoring module, affecting the accuracy of the health monitoring module in monitoring human health indices. Utility Model Content

[0004] This application discloses an intelligent host and wearable device that can improve the accuracy of health monitoring modules in monitoring human health indices.

[0005] To achieve the above objectives, in a first aspect, embodiments of this application disclose a smart host, comprising:

[0006] chassis;

[0007] A health monitoring module is disposed inside the housing, with the monitoring end of the health monitoring module facing the skin-proximal side of the housing;

[0008] A card tray assembly, wherein the card tray assembly is disposed within the housing and located on the distal skin side of the health monitoring module;

[0009] A charging component is disposed on the side of the housing and is used to charge the smart host.

[0010] In one optional embodiment, the housing has a protrusion on the skin-proximal side, the protrusion has a receiving cavity, the protrusion has a first opening communicating with the receiving cavity on the skin-proximal surface, the health monitoring module is disposed in the receiving cavity, and the monitoring end is disposed corresponding to the first opening;

[0011] The smart host also includes a cover, which is placed on the protrusion and completely covers the skin-like surface of the protrusion, and the cover forms a light-transmitting structure corresponding to the position of the monitoring end.

[0012] In one optional embodiment, the boss includes a platform and a protrusion, the protrusion is disposed on the skin-like surface of the platform, and the cross-sectional area of ​​the protrusion is smaller than the cross-sectional area of ​​the platform, and the first opening is disposed on the skin-like surface of the protrusion.

[0013] The cover is placed over the protrusion and completely covers the skin-like surface of the protrusion, and the cover is in contact with the skin-like surface of the platform.

[0014] In one optional embodiment, a locking protrusion is provided at the connection between the platform and the protrusion, and a locking groove is provided on the cover, wherein the locking protrusion engages with the locking groove.

[0015] In one optional embodiment, the smart host further includes a motherboard and a one-piece flexible circuit board, the motherboard and the flexible circuit board being sequentially distributed along the direction from the card tray assembly toward the health monitoring module;

[0016] The flexible circuit board includes a connecting portion, a first mounting portion, and a second mounting portion that are sequentially distributed and spaced apart from each other in the direction from the card holder assembly toward the health monitoring module. The connecting portion is connected to the motherboard. The card holder assembly is located on the skin-like surface of the first mounting portion, and the health monitoring module is located on the skin-like surface of the second mounting portion.

[0017] In one optional embodiment, the smart host further includes a Hall element, and the flexible circuit board further includes a third mounting portion located between the first mounting portion and the second mounting portion, with the Hall element disposed on the third mounting portion; and / or,

[0018] The smart host also includes a lighting component, and the flexible circuit board also includes a fourth mounting portion. The fourth mounting portion is located between the first mounting portion and the second mounting portion. The fourth mounting portion and the first mounting portion are offset from each other in the direction from the distal skin side to the proximal skin side of the health monitoring module. The lighting component is located on the proximal skin surface of the fourth mounting portion.

[0019] In one optional embodiment, the card tray assembly includes a base and a card tray, the base being disposed within the housing, the card tray being slidably connected to the base, and the side of the housing having a second opening corresponding to the card tray, the card tray being able to slide into or out of the housing through the second opening.

[0020] In one optional embodiment, the smart host further includes a bracket and a pivot assembly, the housing being connected to the bracket via the pivot assembly so that the housing can rotate about a first axis or a second axis, the first axis and the second axis being perpendicular, and the rotation of the housing about the first axis can adjust the angle between the housing and the bracket;

[0021] The second opening is located on the surface of the housing near the shaft assembly.

[0022] In one alternative embodiment, the card holder includes a door, a support body, and a seal. The door is used to block the second opening. The support body includes a connecting portion and a support portion for supporting the function card. One end of the connecting portion is connected to the door body, and the other end is connected to the support portion. The seal is sleeved outside the connecting portion.

[0023] In one optional embodiment, the connecting part is provided with an annular sealing groove, the supporting part and the door body are both separated from the sealing groove, and a part of the sealing element is embedded in the sealing groove.

[0024] In one optional embodiment, the seal includes at least two spaced-apart annular protrusions, the annular protrusion furthest from the door body among the at least two annular protrusions being the first protrusion, and the distance between the first protrusion and the end wall of the sealing groove furthest from the door body is greater than 0.35 mm.

[0025] In one optional embodiment, the connecting portion has a first end face and a second end face disposed opposite to each other. The first end face is connected to the door body, the supporting portion is disposed on the second end face, the distance between the end wall of the sealing groove near the door body and the first end face is a first distance, the distance between the end wall of the sealing groove away from the door body and the second end face is a second distance, and the first distance is less than the second distance.

[0026] In one alternative embodiment, the support portion has a first surface facing the health monitoring module and a second surface facing away from the health monitoring module, one of the first surface and the second surface is provided with a foolproof rib, and the inner wall of the second opening is provided with a mating groove, at least a portion of the foolproof rib being located within the mating groove.

[0027] In one optional embodiment, the support portion has a mounting position for installing a function card, the anti-mistake rib is provided on the first surface, and a portion of the anti-mistake rib extends into the mounting position, the portion of the anti-mistake rib extending into the mounting position is used to support the function card.

[0028] Secondly, this application provides a wearable device, including the smart host described in any of the above embodiments.

[0029] Compared with related technologies, the beneficial effects of this application are:

[0030] In this application, the cassette component is located on the distal side of the health monitoring module. That is to say, the cassette component and the health monitoring module are not arranged side by side in the horizontal direction. The cassette component does not occupy the layout space of the health monitoring module. This can increase the area that the health monitoring module can be arranged, thereby increasing the number of health monitoring modules that can be arranged, so as to improve the accuracy of the health monitoring module in monitoring human health index.

[0031] Furthermore, the charging component is located on the side of the casing. This means that the charging component and the monitoring end of the health monitoring module face adjacent sides of the casing. Consequently, the charging component does not occupy the layout space of the health monitoring module, allowing for an increase in the number of health monitoring modules and improving the accuracy of their monitoring of human health indicators. Moreover, compared to placing the charging component on the bottom of the casing, placing it on the side keeps it further away from the health monitoring module. This reduces the negative impact of the electromagnetic field and heat generated during charging on the health monitoring module, thereby extending its lifespan. Attached Figure Description

[0032] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0033] Figure 1 This is a schematic diagram of the structure of the intelligent host disclosed in the embodiments of this application;

[0034] Figure 2 An exploded view of the intelligent host disclosed in the embodiments of this application. Figure 1 ;

[0035] Figure 3 For this application Figure 2 Enlarged view of point A in the middle;

[0036] Figure 4 This is a cross-sectional view of the smart host disclosed in the embodiments of this application;

[0037] Figure 5 For this application Figure 4 Enlarged view of point B in the middle;

[0038] Figure 6An exploded view of the intelligent host disclosed in the embodiments of this application. Figure 2 ;

[0039] Figure 7 This is an exploded view of a portion of the structure of the smart host disclosed in an embodiment of this application;

[0040] Figure 8 This is an assembly diagram of the bracket, pivot assembly, and base shell disclosed in the embodiments of this application;

[0041] Figure 9 For this application Figure 8 An exploded view of the structure shown.

[0042] Figure 10 This is an exploded schematic diagram of the cassette disclosed in the embodiments of this application;

[0043] Figure 11 This is a schematic diagram of the card tray structure disclosed in the embodiments of this application;

[0044] Figure 12 For this application Figure 11 Enlarged diagram of point C in the middle.

[0045] Explanation of reference numerals in the attached figures:

[0046] 100. Housing; 101. Card protrusion; 110. Middle frame; 120. Bottom shell; 121. Boss; 1211. Platform; 1212. Protrusion;

[0047] 200. Health monitoring module;

[0048] 300, Card holder assembly; 301, Sealing groove; 302, Anti-foolproof rib; 303, Flexible arm; 310, Seat; 320, Card holder; 321, Door body; 322, Support body; 3221, Connecting part; 3222, Supporting part; 323, Sealing element; 3231, First protrusion;

[0049] 400. Charging components;

[0050] 500. Cover;

[0051] 600. Flexible circuit board; 610. Connecting part; 620. First mounting part; 630. Second mounting part; 640. Third mounting part; 650. Fourth mounting part;

[0052] 700, bracket;

[0053] 800, Rotary shaft assembly; 810, First rotating shaft; 820, Second rotating shaft. Detailed Implementation

[0054] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0055] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.

[0056] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0057] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0058] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, components, or parts (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, components, or parts. Unless otherwise stated, "a plurality of" means two or more.

[0059] The smart host and wearable device provided in this application will be described in detail below with reference to the accompanying drawings, through specific embodiments and application scenarios.

[0060] like Figure 1 , Figure 4 and Figure 5As shown in the illustration, this application discloses a smart host, which can be applied to wearable devices and used as the host of the wearable device. The wearable device may include, but is not limited to, smartwatches, smart bracelets, etc. Taking a smartwatch as an example, the smart host can serve as the host component of the smartwatch, and the smart host includes:

[0061] Housing 100. Housing 100 is used to form the overall appearance of the smart host. The interior of housing 100 is hollow to accommodate components, such as the health monitoring module 200 and card tray assembly 300 described below.

[0062] A health monitoring module 200 is housed within the casing 100, with its monitoring end facing the skin-proximal side of the casing 100. It should be noted that the skin-proximal side of each component refers to the side of the component closest to the user after the user wears the smart host; the side of the component furthest from the user is the skin-proximal side. For example, with the casing 100, the side closest to the user after the user wears the smart host is the skin-proximal side of the casing 100.

[0063] For example, the health monitoring module 200 may include one or more of a heart rate detection module, a body temperature detection module, and a blood oxygen detection module. Thus, by setting up the health monitoring module 200, indices such as heart rate, body temperature, and blood oxygen can be monitored, allowing users to understand their health status in a timely manner. It is understood that the health monitoring module 200 may include, but is not limited to, an electrocardiograph (ECG) or a photoplethysmograph (PPG). When the health monitoring module 200 includes an ECG, health indicators such as heart rate monitoring are monitored through contact between electrode pads and the skin. When the health monitoring module 200 includes a PPG, the PPG sends light to the skin and receives the light reflected from the skin, thereby monitoring health indicators such as heart rate and blood oxygen.

[0064] Card tray assembly 300 is disposed within housing 100 and located on the distal side of health monitoring module 200. Card tray assembly 300 is used to hold function cards, which can be Subscriber Identity Module (SIM card) or Trans-flash Card (TF card). This application does not limit the type of function card that card tray assembly 300 can hold.

[0065] A charging component 400 is disposed on the side of the housing 100 and is used to charge the smart host. Specifically, the charging component 400 can be connected to a charger to charge the battery of the smart host. For example, the charging component 400 can be a plug-in charging component or a magnetic charging component, as long as it can charge the smart host.

[0066] In this application, the cassette assembly 300 is located on the distal side of the health monitoring module 200, meaning that the cassette assembly 300 and the health monitoring module 200 are not aligned horizontally (within the horizontal direction). Figure 5 The cassette components 300 are arranged side by side on the view shown (as a directional reference). The cassette components 300 do not occupy the layout space of the health monitoring module 200. This can increase the area that the health monitoring module 200 can be arranged, thereby increasing the number of health monitoring modules 200 arranged to improve the accuracy of the health monitoring module 200 in monitoring human health index.

[0067] Furthermore, the charging component 400 is located on the side of the housing 100. This means that the charging component 400 and the monitoring end of the health monitoring module 200 face adjacent sides of the housing 100. In this way, the charging component 400 does not occupy the layout space of the health monitoring module 200, thereby increasing the number of health monitoring modules 200 that can be arranged, thus improving the accuracy of the health monitoring module 200 in monitoring human health indices. Moreover, compared to having the charging component 400 located on the bottom of the housing 100, placing it on the side of the housing 100 keeps the charging component 400 further away from the health monitoring module 200. This reduces the negative impact of the electromagnetic field and heat generated by the charging component 400 during charging on the health monitoring module 200, thereby extending the service life of the health monitoring module 200.

[0068] In some embodiments, the housing 100 includes a connected middle frame 110 and a bottom shell 120. The bottom shell 120 is located on the skin-friendly side of the middle frame 110. The bottom shell 120 has a receiving cavity, in which the health monitoring module 200 and the card tray assembly 300 are both disposed. The charging component 400 is disposed on the middle frame 110. This allows the charging component 400 to be located on the skin-distal side of the health monitoring module 200, further distancing the charging component 400 from the health monitoring module 200 and extending the service life of the health monitoring module 200.

[0069] In one alternative embodiment, please refer to Figure 2The housing 100 has a protrusion 121 on its skin-proximal side, and a receiving cavity is provided inside the protrusion 121. The skin-proximal surface of the protrusion 121 has a first opening that communicates with the receiving cavity. The health monitoring module 200 is disposed in the receiving cavity, and the monitoring end is correspondingly disposed with the first opening. It should be noted that when this embodiment is combined with the previous embodiment, the protrusion 121 is located on the skin-proximal side of the bottom shell 120.

[0070] The smart host also includes a cover 500, which covers the protrusion 121 and completely covers the near-skin surface of the protrusion 121. In other words, the cover 500 can cover the first opening so that the health monitoring module 200 is not exposed to the external environment. The cover 500 forms a light-transmitting structure corresponding to the position of the monitoring end. The light-transmitting structure can be a light-transmitting hole or a light-transmitting part made of light-transmitting material.

[0071] In this embodiment, when the user wears the smart host, the skin-friendly surface of the cover 500 will come into contact with the user's skin. Since the cover 500 completely covers the entire skin-friendly surface of the protrusion 121, the cover 500 in this embodiment has a large area. Unlike the cover 500 which only covers part of the skin-friendly surface of the protrusion 121, it does not form a step structure between the cover 500 and the uncovered skin-friendly surface of the protrusion 121. This can prevent the step structure from pressing against the user's wrist and causing wrist discomfort when the user wears the smart host.

[0072] In one alternative embodiment, please refer to Figure 3 The boss 121 includes a platform 1211 and a protrusion 1212. The protrusion 1212 is located near the surface of the platform 1211, and the cross-sectional area of ​​the protrusion 1212 is smaller than the cross-sectional area of ​​the platform 1211. That is, the outer contour of the boss 121 protrudes beyond the outer contour of the protrusion 1212 in a direction perpendicular to the thickness direction of the smart host. The first opening is located near the surface of the protrusion 1212. Of course, the cross-sectional area of ​​the boss 121 can remain unchanged along the thickness direction of the smart host, and this application does not limit this.

[0073] It should be noted that the cross-sectional area of ​​the protrusion 1212 is the area of ​​the cross section of the protrusion 1212 perpendicular to the thickness direction of the smart host; the cross-sectional area of ​​the platform 1211 is the area of ​​the cross section of the platform 1211 perpendicular to the thickness direction of the smart host.

[0074] The cover 500 is placed over the protrusion 1212 and completely covers the near-skin surface of the protrusion 1212, and the cover 500 is in contact with the near-skin surface of the platform 1211, that is: the cover 500 is in contact with the near-skin surface of the platform 1211 that is not covered by the protrusion 1212.

[0075] In this embodiment, the protrusion 1212 is provided on the skin-like surface of the platform 1211. The cross-sectional area of ​​the protrusion 1212 is smaller than that of the platform 1211. Therefore, the protrusion 1212 can only cover part of the skin-like surface of the platform 1211. The cover 500 contacts the skin-like surface of the platform 1211 that is not covered by the protrusion 1212, so as to stop and limit the cover 500 in the direction from the skin-like side to the skin-like side of the cover 500, thereby improving the connection stability between the cover 500 and the protrusion 121.

[0076] In one alternative embodiment, please refer to Figure 3 The connection between the platform 1211 and the protrusion 1212 is provided with a locking protrusion 101, and the cover 500 is provided with a locking groove, and the locking protrusion 101 engages with the locking groove.

[0077] In this embodiment, the cover 500 and the boss 121 are engaged by a snap-fit ​​protrusion 101 and a snap-fit ​​groove. The snap-fit ​​structure is simple and easy to assemble and disassemble, which can reduce the difficulty of assembling and disassembling the cover 500 and the boss 121. In addition, the snap-fit ​​protrusion 101 is provided at the connection between the platform 1211 and the protrusion 1212. That is to say, the snap-fit ​​protrusion 101 is connected to both the platform 1211 and the protrusion 1212. This allows the snap-fit ​​protrusion 101 and the boss 121 to have a large connection area, thereby increasing the structural strength of the snap-fit ​​protrusion 101 and ensuring the connection stability between the cover 500 and the boss 121.

[0078] In one alternative embodiment, please refer to Figure 7 The intelligent host also includes a motherboard (not shown in the figure) and an integrally molded flexible circuit board 600, which are arranged sequentially along the direction from the card tray assembly 300 to the health monitoring module 200. It should be noted that the motherboard is responsible for processing, controlling, and managing all functions and operations of the intelligent host, and the display screen of the intelligent host is electrically connected to the motherboard.

[0079] The flexible circuit board 600 includes a connecting portion 610, a first mounting portion 620, and a second mounting portion 630 that are sequentially distributed and spaced apart in the direction from the card holder assembly 300 toward the health monitoring module 200. The connecting portion 610 is connected to the motherboard. The card holder assembly 300 is disposed on the skin-like surface of the first mounting portion 620, and the health monitoring module 200 is disposed on the skin-like surface of the second mounting portion 630.

[0080] In this embodiment, the flexible circuit board 600 includes a connecting portion 610, a first mounting portion 620, and a second mounting portion 630 arranged sequentially along the direction from the card holder assembly 300 to the health monitoring module 200. This can break through the limitations of traditional planar board layout and realize vertical stacking by utilizing the space on the Z-axis (thickness direction of the smart host), significantly reducing the board area occupied by the health monitoring module 200 and the card holder assembly 300 to meet the small size requirements of wearable devices.

[0081] In one alternative embodiment, please refer to Figure 7 The intelligent host also includes a Hall element, which can recognize the user's actions and postures. The flexible circuit board 600 also includes a third mounting part 640, which is located between the first mounting part 620 and the second mounting part 630. The Hall element is located in the third mounting part 640.

[0082] In this embodiment, the flexible circuit board 600 also includes a third mounting portion 640 located between the first mounting portion 620 and the second mounting portion 630. Therefore, setting the third mounting portion 640 will not increase the Z-axis dimension of the flexible circuit board 600, nor will it add extra space on the Z-axis within the housing 100, thus meeting the small size requirements of wearable devices.

[0083] And / or, in an optional embodiment, the smart host further includes an illumination element, which, for example, may include LED beads. The flexible circuit board 600 also includes a fourth mounting portion 650, which is located between the first mounting portion 620 and the second mounting portion 630. The fourth mounting portion 650 and the first mounting portion 620 are offset in a direction from the distal skin side to the proximal skin side of the health monitoring module 200, so that the first mounting portion 620 and the second mounting portion 630 do not block the light emitted by the illumination element. The illumination element is located on the proximal skin surface of the fourth mounting portion 650.

[0084] In this embodiment, the flexible circuit board 600 also includes a fourth mounting portion 650 located between the first mounting portion 620 and the second mounting portion 630. Therefore, setting the fourth mounting portion 650 will not increase the Z-axis dimension of the flexible circuit board 600, nor will it add extra space on the Z-axis within the housing 100, thus meeting the small size requirements of wearable devices.

[0085] In one alternative embodiment, please refer to Figure 6 and Figure 7 The card tray assembly 300 includes a base 310 and a card tray 320. The base 310 is disposed within the housing 100, and the card tray 320 is slidably connected to the base 310. A second opening corresponding to the card tray 320 is provided on the side of the housing 100, through which the card tray 320 can slide into or out of the housing 100. It should be noted that, in this embodiment combined with the previous embodiment, the base 310 is disposed near the skin surface of the first mounting portion 620.

[0086] In this embodiment, since the base 310 is located inside the housing 100, the card holder 320 is slidably connected to the base 310, and the second opening is located on the side of the housing 100, the card holder 320 can be pulled out of the housing 100 from the side of the housing 100 through the second opening or installed in the housing 100, thereby realizing the removal and installation of the function card. In this way, the position of the health monitoring module 200 does not need to be changed when removing and installing the function card, so as not to affect the use of the health monitoring module 200.

[0087] In one alternative embodiment, please refer to Figure 8 and Figure 9 The intelligent host also includes a bracket 700 and a hinge assembly 800. The housing 100 is connected to the bracket 700 via the hinge assembly 800, allowing the housing 100 to rotate around a first axis or a second axis. The first axis and the second axis are perpendicular. Rotation of the housing 100 around the first axis can adjust the angle between the housing 100 and the bracket 700. For example, the hinge assembly 800 includes a first hinge 810 and a second hinge 820. The second hinge 820 is vertically mounted on the bracket 700 and can rotate relative to the bracket 700. The first hinge 810 is perpendicular to and connected to the second hinge 820. The housing 100 rotatably engages with the second hinge 820 and can rotate relative to the second hinge 820. The axis of the first hinge 810 is the first rotation axis, and the axis of the second hinge 820 is the second rotation axis.

[0088] The second opening is located on the surface of the housing 100 near the rotating shaft assembly 800. In this embodiment, the second opening is located on the surface of the housing 100 near the rotating shaft assembly 800. Thus, when the angle between the housing 100 and the bracket 700 is at its maximum, the second opening and the card tray 320 will face the bracket 700, preventing the user from removing the card tray 320. In other words, after the housing 100 rotates around the first axis, the user cannot easily remove the function card due to the obstruction of the bracket 700. This prevents the user from accidentally removing the function card while controlling the housing 100 to rotate along the first axis. When the user needs to remove the card, they must first control the housing 100 to rotate along the first axis, and then control the housing 100 to rotate along the second axis so that the second opening no longer faces the bracket 700, allowing the function card to be easily removed.

[0089] In one alternative embodiment, please refer to Figure 10 and Figure 11 Card holder 320 includes a door body 321, a support body 322, and a sealing element 323. The door body 321 is used to block the second opening. The support body 322 includes a connecting part 3221 and a supporting part 3222 for supporting the functional card. One end of the connecting part 3221 is connected to the door body 321, and the other end is connected to the supporting part 3222. The sealing element 323 is sleeved outside the connecting part 3221.

[0090] In this embodiment, the card holder 320 includes a door 321 and a support body 322 connected together. When the card holder 320 slides into the housing 100, the door 321 blocks the second opening, which can prevent foreign objects such as dust in the environment from entering the housing 100. Furthermore, a sealing member 323 is provided on the outside of the connecting part 3221 of the support body 322. The sealing member 323 can tightly fit the gap between the card holder 320 and the second opening, effectively preventing moisture and dust from entering the inside of the watch and protecting the internal electronic components and mechanical parts.

[0091] In one alternative embodiment, please refer to Figure 10 and Figure 11 The connecting part 3221 is provided with an annular sealing groove 301. The supporting part 3222 and the door body 321 are both separated from the sealing groove 301. A part of the sealing element 323 is embedded in the sealing groove 301, and the sealing element 323 here is also annular. It should be noted that another part of the sealing element 323 protrudes from the sealing groove 301 to seal the gap between the card holder 320 and the second opening. For example, the sealing element 323 can be made of silicone, and the sealing element 323 is injection molded in the sealing groove 301. This arrangement reduces the processing difficulty of the sealing element 323 and helps to reduce the production cost of the sealing element 323.

[0092] In this embodiment, a portion of the sealant 323 is embedded in the sealing groove 301. The end wall of the sealing groove 301 can stop and limit the sealant 323, thereby reducing the risk of displacement of the sealant 323 during use. Furthermore, the sealing groove 301 is separated from both the support portion 3222 and the door body 321. The surface of the connecting portion 3221 located between the sealing groove 301 and the door body 321 is defined as the first sealing surface. The surface between 2 is defined as the second sealing surface. During the injection molding of the seal 323, the mold can be pressed against the first sealing surface and the second sealing surface to prevent glue leakage. Compared with pressing the mold against the end face of the support part 3222 for sealing, using the first sealing surface and the second sealing surface for sealing can reduce the thickness of the support part 3222. This is because, in order to ensure the sealing effect, the sealing surface needs to be larger than the preset width. If the end face is used for sealing, the support part 3222 needs to have a larger thickness.

[0093] In one alternative embodiment, please refer to Figure 12 The seal 323 includes at least two spaced annular protrusions, the annular protrusion furthest from the door body 321 being the first protrusion 3231, and the distance between the first protrusion 3231 and the end wall of the sealing groove 301 furthest from the door body 321 is ( Figure 12The distance shown by L1 is greater than 0.35 mm. For example, L1 can be equal to 0.38 mm, 0.4 mm, 0.45 mm, 0.5 mm, etc., and this application does not limit it.

[0094] Generally, the seal 323 is formed by injection molding. After injection molding, the mold needs to be removed. During the removal process, the mold applies a force in a first direction to each annular protrusion. The first direction is from the door body 321 to the support body 322, and drives each annular protrusion to move along the first direction. That is, during demolding, the mold drives the first protrusion 3231 to move along the first direction, thereby compressing the portion of the seal 323 located between the first protrusion 3231 and the end wall of the sealing groove 301 away from the door body 321. If the length of this portion (from...) Figure 12 (As shown in L1) This portion is relatively short, and it will quickly be compressed to its limit, forming a hard stop with the end wall of the sealing groove 301 away from the door body 321. If the mold is further pulled out at this point, the first protrusion 3231 will be compressed, causing the side of the first protrusion 3231 near the door body 321 to be torn. Therefore, in this embodiment, the distance between the first protrusion 3231 and the end wall of the sealing groove 301 away from the door body 321 is greater than 0.35mm. This provides a larger compression margin for the portion of the sealant 323 located between the first protrusion 3231 and the end wall of the sealing groove 301 away from the door body 321, reducing the risk of the side of the first protrusion 3231 near the door body 321 being torn during the demolding process.

[0095] In one optional embodiment, the connecting portion 3221 has a first end face and a second end face disposed opposite to each other. The first end face is connected to the door body 321, and the supporting portion 3222 is disposed on the second end face. The distance between the end wall of the sealing groove 301 near the door body 321 and the first end face is a first distance, and the distance between the end wall of the sealing groove 301 away from the door body 321 and the second end face is a second distance. The first distance is less than the second distance. For example, the first distance can be 0.3 to 0.4 mm, specifically 0.35 mm, 0.38 mm, 0.4 mm, etc.; the second distance can be 0.4 to 0.5 mm, specifically 0.45 mm, 0.48 mm, 0.5 mm, etc.

[0096] In this embodiment, the surface of the connecting part 3221 located between the sealing groove 301 and the door body 321 is defined as the first sealing surface, and the width of the first sealing surface is the first distance. The surface of the connecting part 3221 located between the sealing groove 301 and the supporting part 3222 is defined as the second sealing surface, and the width of the second sealing surface is the second distance. Both the first sealing surface and the second sealing surface are used to cooperate with the mold to seal the injection fluid. During the injection molding of the seal 323, the mold can be pressed against the first and second sealing surfaces to prevent leakage. Since the second sealing surface is located near the support portion 3222, if the injection fluid flows onto the support portion 3222, it may cause uneven placement of the function card. However, the first sealing surface is located near the door body 321, so the injection fluid flowing onto the door body 321 will not cause uneven placement of the function card. Therefore, the sealing requirements for the side with the second sealing surface are higher than those for the side with the first sealing surface. Thus, in this embodiment, the first distance is smaller than the second distance, which not only meets the sealing requirements but also reduces the length of the card holder 320. Of course, the first distance can also be greater than or equal to the second distance; this application does not limit this.

[0097] In one alternative embodiment, please refer to Figure 10 and Figure 11 The support portion 3222 has a first surface facing the health monitoring module 200 and a second surface facing away from the health monitoring module 200. One of the first and second surfaces is provided with a foolproof rib 302. The inner wall of the second opening is provided with a mating groove. At least a portion of the foolproof rib 302 is located in the mating groove.

[0098] In this embodiment, at least one of the first and second surfaces of the support portion 3222 is provided with a foolproof rib 302, and the inner wall of the second opening is provided with a mating groove. The foolproof rib 302 slides into the mating groove. That is, the card holder 320 can only be inserted into the second opening when the positions of the foolproof rib 302 and the mating groove are aligned. Otherwise, the card holder 320 cannot be inserted into the second opening. This can prevent the card holder 320 from being inserted backward into the second opening, thereby avoiding the problem of damage to the seat 310 or the card holder 320 caused by the backward insertion of the card holder 320.

[0099] In one optional embodiment, the support portion 3222 has a mounting position for mounting a function card. A foolproof rib 302 is provided on the first surface, and a portion of the foolproof rib 302 extends into the mounting position, the portion of the foolproof rib 302 extending into the mounting position serving to support the function card. Exemplarily, the number of foolproof ribs 302 may include two, with the two ribs 302 located on opposite sides of the support portion 3222, and both ribs 302 jointly supporting the function card.

[0100] In this embodiment, the anti-mistake rib 302 is provided on the first surface, and a portion of the anti-mistake rib 302 extends into the mounting position to support the function card. In other words, the anti-mistake rib 302 can not only play the role of preventing mistakes, but also support the function card, thereby achieving a dual-purpose effect. After using the anti-mistake rib 302 to support the function card, there is no need to set up an additional support structure to support the function card, which simplifies the structure of the card holder 320.

[0101] In some embodiments, the support portion 3222 is provided with an elastic arm 303, at least a portion of which is located within the mounting position, and the elastic arm 303 is used to press the function card against the inner wall of the mounting position.

[0102] This application also discloses a wearable device, including the smart host described in any of the above embodiments, thus enabling the wearable device to possess the beneficial effects of the aforementioned smart host, which will not be repeated here. For example, the wearable device further includes a wearing component (not shown in the figures), which is connected to the smart host and can be worn on the user's wearing area to fix the smart host to the wearing area.

[0103] The foregoing embodiments of this application focus on describing the differences between various embodiments. As long as the different optimization features between embodiments are not contradictory, they can be combined to form better embodiments. For the sake of brevity, these differences will not be elaborated upon here. The embodiments of this application have been described above with reference to the accompanying drawings. However, this application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art, under the guidance of this application, can make many modifications without departing from the spirit and scope of the claims, all of which fall within the protection scope of this application.

Claims

1. An intelligent host, characterized in that, The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host.

2. The intelligent host of claim 1, wherein, The application relates to a smart host. The application relates to a smart host.

3. The intelligent host of claim 2, wherein, The application relates to a smart host. The application relates to a smart host.

4. The intelligent host of claim 3, wherein, The application relates to a smart host.

5. The intelligent host of claim 1, wherein, The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates to a smart host. The application relates 6. The intelligent host of claim 5, wherein, The intelligent host further comprises a Hall element, the flexible circuit board (600) further comprises a third mounting portion (640) located between the first mounting portion (620) and the second mounting portion (630), and the Hall element is arranged on the third mounting portion (640); and / or, The intelligent host further comprises an illuminating element, the flexible circuit board (600) further comprises a fourth mounting portion (650) located between the first mounting portion (620) and the second mounting portion (630), and the fourth mounting portion (650) is arranged in a staggered manner with the first mounting portion (620) in a direction from a distal skin side of the health monitoring module (200) to a proximal skin side, and the illuminating element is arranged on a proximal skin surface of the fourth mounting portion (650).

7. The intelligent host of claim 1, wherein, The card holder assembly (300) comprises a seat body (310) and a card holder (320), the seat body (310) is arranged in the cabinet (100), the card holder (320) is slidingly connected to the seat body (310), and a side surface of the cabinet (100) is provided with a second opening corresponding to the card holder (320), and the card holder (320) can slide into or out of the cabinet (100) through the second opening.

8. The intelligent host of claim 7, wherein, The intelligent host further comprises a bracket (700) and a pivot assembly (800), and the cabinet (100) is connected to the bracket (700) through the pivot assembly (800) so that the cabinet (100) can rotate around a first axis or a second axis, the first axis and the second axis are perpendicular, and rotation of the cabinet (100) around the first axis can adjust the included angle between the cabinet (100) and the bracket (700); The second opening is arranged on a surface of the cabinet (100) close to the pivot assembly (800).

9. The intelligent host of claim 7, wherein, The card holder (320) comprises a door body (321), a holder body (322) and a sealing element (323), the door body (321) is used for plugging the second opening, the holder body (322) comprises a connecting portion (3221) and a supporting portion (3222) used for supporting a functional card, one end of the connecting portion (3221) is connected to the door body (321), and the other end is connected to the supporting portion (3222), and the sealing element (323) is sleeved outside the connecting portion (3221).

10. The intelligent host of claim 9, wherein, An annular sealing groove (301) is arranged on the connecting portion (3221), and the supporting portion (3222) and the door body (321) are arranged separately from the sealing groove (301), and a part of the sealing element (323) is embedded in the sealing groove (301).

11. The intelligent host of claim 10, wherein, The sealing element (323) comprises at least two annular protrusions distributed at intervals, and the annular protrusion farthest from the door body (321) among the at least two annular protrusions is a first protrusion (3231), and the spacing between the first protrusion (3231) and an end wall of the sealing groove (301) away from the door body (321) is greater than 0.35 mm.

12. The intelligent host of claim 10, wherein, The adapter (3221) has oppositely arranged first and second end faces, the first end face is connected with the door body (321), the supporting portion (3222) is arranged on the second end face, the distance between the end wall of the glue sealing groove (301) close to the door body (321) and the first end face is a first distance, the distance between the end wall of the glue sealing groove (301) away from the door body (321) and the second end face is a second distance, and the first distance is smaller than the second distance.

13. The intelligent host of claim 9, wherein, The supporting portion (3222) has a first surface arranged towards the health monitoring module (200) and a second surface arranged away from the health monitoring module (200), one of the first surface and the second surface is provided with a fool-proof convex rib (302), and the inner wall of the second opening is provided with a matching groove, at least part of the fool-proof convex rib (302) is located in the matching groove.

14. The intelligent host of claim 13, wherein, The supporting portion (3222) is provided with a mounting position for mounting a functional card, the fool-proof convex rib (302) is arranged on the first surface, and part of the fool-proof convex rib (302) extends into the mounting position, and the part of the fool-proof convex rib (302) extending into the mounting position is used for supporting the functional card.

15. A wearable device, comprising: The intelligent host comprises the intelligent host as claimed in any one of claims 1 to 14.