Card seat and intelligent wearable device

By integrating pluggable card holders and interface components into the card holders of smart wearable devices, the problem of data interface space occupies in smart wearable devices is solved, and the device's miniaturized design and functional integrity are achieved.

CN120073358APending Publication Date: 2025-05-30GUANGDONG XIAOTIANCAI TECH CO LTD
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Patent Information

Application Number
CN202311635381.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-30
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

In smart wearable devices, setting a separate data interface to occupy the housing space is not conducive to miniaturization design.

Method used

A card holder is designed to include a pluggable card tray and an interface component, which is provided with a storage cavity for accommodating the user identification card and the interface component for data transmission. When the card tray is connected to the slot, the user identification card and interface components are electrically connected to the motherboard to realize data transmission.

Benefits of technology

There is no need to set up a data interface separately on the housing of the smart wearable device, saving space, which is conducive to miniaturization design, while ensuring complete equipment functions and supporting program recording and debugging.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a card holder and an intelligent wearable device, the intelligent wearable device comprises a shell and a mainboard arranged in the shell, the shell is provided with a slot, the card holder comprises a card support and an interface assembly, the card support is used for being connected to the slot in a pluggable mode, the card support is provided with a containing cavity used for containing a user identification card, and the interface assembly is arranged on the card support. The interface assembly is used for transmitting data, and when the card holder is connected to the slot, the user identification card and the interface assembly are both electrically connected to the mainboard. By adopting the scheme of the invention, a data interface does not need to be independently arranged on the intelligent wearable equipment, and the miniaturization design of the intelligent wearable equipment is facilitated.
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Description

Technical Field

[0001] The present invention relates to the technical field of smart wearable devices, and in particular, to a card holder and a smart wearable device. Background Art

[0002] During the production process of smart wearable devices, it is usually necessary to add an independent data interface to the housing of the smart wearable device, and use this data interface to realize data transmission with a computer, so as to realize program burning, program debugging, etc. of the smart wearable device. However, setting a communication interface separately on the smart wearable device will occupy the space of the housing of the smart wearable device, which is not conducive to the miniaturization design of the smart wearable device. Summary of the Invention

[0003] Embodiments of the present invention disclose a card holder and a smart wearable device, which can enable the smart wearable device not to be provided with a separate data interface, and is conducive to the miniaturization design of the smart wearable device.

[0004] To achieve the above object, in a first aspect, the present invention discloses a card holder applied to a smart wearable device. The smart wearable device includes a housing and a main board disposed inside the housing. The housing is provided with a slot. The card holder includes:

[0005] A card tray for detachably connecting to the slot, and the card tray is provided with a cavity for accommodating a user identification card; and

[0006] An interface component disposed on the card tray for transmitting data;

[0007] Wherein, when the card tray is connected to the slot, both the user identification card and the interface component are electrically connected to the main board.

[0008] As an optional implementation manner, in the embodiment of the first aspect of the present invention, the card tray is provided with a first electrical connector electrically connected to the interface component. When the card tray is connected to the slot, the user identification card and the first electrical connector are electrically connected to the main board.

[0009] As an optional implementation manner, in the embodiment of the first aspect of the present invention, one side of the card tray in its thickness direction is provided with the cavity, the first electrical connector is disposed on the side of the card tray where the cavity is located, and the first electrical connector is located on the outer periphery of the cavity.

[0010] As an optional implementation manner, in the embodiment of the first aspect of the present invention, the direction in which the card tray is inserted into the slot is the first direction. The card tray includes a first end and a second end in the first direction. The first end is connected to the slot, and the first end is provided with the cavity;

[0011] The interface component includes a plurality of power connection parts, which are arranged at the second end at intervals along a second direction, the second direction is perpendicular to the first direction and the thickness direction, there are a plurality of first electrical connectors, and the plurality of first electrical connectors are symmetrically arranged on both sides of the cavity along the second direction of the card holder, the number of the first electrical connectors corresponds one-to-one to the number of the power connection parts, and each of the first electrical connectors is electrically connected to the corresponding power connection part.

[0012] As an optional implementation, in an embodiment of the first aspect of the present invention, the interface component also includes a socket, which is arranged at the second end, the socket is used for pluggable connection with the plug, and the socket is electrically connected to the plurality of power connection parts.

[0013] As an optional implementation, in an embodiment of the first aspect of the present invention, the first electrical connector is an elastic member, and when the card holder is connected to the slot, the first electrical connector is used to elastically abut against and electrically connect to the mainboard.

[0014] As an optional embodiment, in an embodiment of the first aspect of the present invention, the direction in which the card tray is inserted into the slot is a first direction, the card tray includes a plug-in portion and a supporting portion, the plug-in portion is used to be pluggably connected to the slot, and when the plug-in portion is connected to the slot, the supporting portion is located outside the slot, the supporting portion is provided with the accommodating cavity, the plug-in portion is connected to one side of the supporting portion along the first direction, and the interface assembly is arranged at an end of the supporting portion away from the plug-in portion.

[0015] As an optional embodiment, in an embodiment of the first aspect of the present invention, the plug-in part is provided with a first electrical connector and a second electrical connector, and the first electrical connector and the second electrical connector are located on one side of the plug-in part along its own thickness direction, the first electrical connector is electrically connected to the interface component, and the second electrical connector is used to be electrically connected to the user identification card, and when the plug-in part is connected to the slot, the first electrical connector and the second electrical connector are electrically connected to the mainboard.

[0016] As an optional embodiment, in an embodiment of the first aspect of the present invention, the interface assembly includes a plurality of power connection parts, and the plurality of power connection parts are arranged on the supporting part at intervals along the second direction, and are located at an end of the supporting part away from the plug-in part, the second direction is perpendicular to the first direction and the thickness direction, the number of the first electrical connectors is multiple, and the plurality of first electrical connectors are respectively located on both sides of the second electrical connector along the second direction, the number of the first electrical connectors corresponds one-to-one to the number of the power connection parts, and each of the first electrical connectors is electrically connected to each of the power connection parts.

[0017] As an alternative embodiment, in the embodiment of the first aspect of the present invention, the interface component further includes a socket for detachably connecting to a plug. The socket is provided on the supporting portion and located at an end of the supporting portion away from the plugging portion. The socket is electrically connected to a plurality of power receiving portions.

[0018] As an alternative embodiment, in the embodiment of the first aspect of the present invention, the first electrical connector is an elastic member. When the plugging portion is connected to the slot, the first electrical connector is used to elastically abut against and electrically connect to the main board.

[0019] As an alternative embodiment, in the embodiment of the first aspect of the present invention, the supporting portion and the plugging portion are configured as an integrally provided circuit board.

[0020] In a second aspect, the present invention discloses a smart wearable device, including a housing, a main board, and a card holder as described in the first aspect of the above invention. The housing is provided with a slot, and the main board is provided inside the housing.

[0021] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0022] The card holder and the smart wearable device provided by the embodiments of the present invention. The card holder is provided with a cavity on the detachable card tray, which can be used to install and accommodate a user identification card. At the same time, by providing an interface component on the card tray, when the card tray is connected to the slot, electrical connections of the user identification card, the interface component, and the main board of the smart wearable device can be achieved simultaneously. That is, data transmission between an electronic device (such as a computer, a mobile phone, etc.) connected to the interface component and the main board can be achieved. In this way, during the production or repair process of the smart wearable device, the original ordinary card holder on the smart wearable device can be pulled out first, and then the card holder provided by the present invention can be plugged into the slot of the smart wearable device to realize functions such as program burning and program debugging of the smart wearable device. After the functions such as program burning and program debugging are completed, the card holder provided by the embodiments of the present invention can be pulled out, and finally the original ordinary card holder on the smart wearable device can be plugged into the slot. It can be seen that the card holder of the present invention makes full use of the space on the card tray, so that the housing of the smart wearable device does not need to be separately provided with a data interface, which is beneficial to the miniaturization design of the smart wearable device.

[0023] In addition, since the electrical connections of the user identification card, the interface component, and the main board of the smart wearable device are achieved simultaneously when the card tray is connected to the slot, the user identification card can work normally during the program debugging of the smart wearable device through the interface component, that is, it is ensured that the smart wearable device has complete functions, so that all functions of the smart wearable device can be program-debugged. Description of the Drawings

[0024] To more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the accompanying drawings required for use in the embodiments. Obviously, the accompanying drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can be obtained based on these drawings.

[0025] Figure 1 is a schematic perspective view of a card seat according to the first implementation manner disclosed in the first aspect of the embodiments of the present application;

[0026] Figure 2 is Figure 1 a bottom view of the card seat of

[0027] Figure 3 is Figure 1 a side view of the card seat of

[0028] Figure 4 is Figure 1 a top view of the card seat of

[0029] Figure 5 is a schematic structural view of a card seat according to the second implementation manner disclosed in the first aspect of the embodiments of the present application;

[0030] Figure 6 is Figure 5 a schematic structural view of the card seat from another perspective of

[0031] Figure 7 is a schematic perspective view of a smart wearable device disclosed in the second aspect of the embodiments of the present application.

[0032] Icons: 1. Card seat; 10. Card tray; 10a. First end; 10b. Second end; 10c. Insertion part; 10d. Supporting part; 10e. Main body part; 10f. End cover part; 100. Cavity; 101. First electrical connector; 102. Second electrical connector; 11. Interface component; 110. Power connection part; 111. Socket; 2. Smart wearable device; 20. Housing; 200. Slot; X. First direction; Y. Thickness direction; Z. Second direction. Detailed implementation manners

[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0034] In the present invention, the terms "mounted", "arranged", "provided with", and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or there can be internal communication between two devices, components, or parts. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0035] In addition, the terms "first", "second", etc. are mainly used to distinguish different devices, components, or parts (the specific types and structures may be the same or different), and do not indicate or imply the relative importance and quantity of the indicated devices, components, or parts. Unless otherwise specified, the meaning of "a plurality" is two or more.

[0036] During the production or repair process of smart wearable devices, it is often necessary to perform program burning, program debugging, etc. on smart wearable devices. Therefore, a data interface is usually provided on smart wearable devices to achieve data transmission between an electronic device (such as a computer, mobile phone, etc.) and the main board of the smart wearable device through the data interface, thereby realizing functions such as program burning and program debugging.

[0037] In the related art, an independent data interface is usually directly added to the housing of the smart wearable device. However, separately setting a communication interface on the smart wearable device will occupy the space of the housing of the smart wearable device, which is not conducive to the miniaturization design of the smart wearable device.

[0038] On this basis, the inventor tried to replace the original charging interface on the housing of the smart wearable device with a data interface. However, it was found in practice that since users do not need to use the data interface, and the data interface requires more space on the housing of the smart wearable device than the charging interface, this is also not conducive to the miniaturization design of the smart wearable device. At the same time, it will also increase the cost of the smart wearable device.

[0039] Based on this, the present application discloses a card seat and a smart wearable device. By arranging an interface component for data transmission on the card tray, during the production or repair process of the smart wearable device, the original ordinary card seat on the smart wearable device can be first pulled out, and then the card seat provided by the present invention can be plugged into the slot of the smart wearable device to achieve functions such as program burning and program debugging of the smart wearable device. After the functions such as program burning and program debugging are completed, the card seat provided by the embodiment of the present invention is pulled out, and finally the original ordinary card seat on the smart wearable device is plugged into the slot. Thus, it can be seen that the card seat of the present invention makes full use of the space on the card tray, so that the housing of the smart wearable device does not need to be separately provided with a data interface, which is conducive to the miniaturization design of the smart wearable device.

[0040] In addition, when the card holder is connected to the slot, the electrical connections of the user identification card, the interface component, and the main board of the smart wearable device are achieved simultaneously. When the smart wearable device is debugged through the interface component, the user identification card can work properly, which ensures that the smart wearable device has complete functions, so that all functions of the smart wearable device can be debugged programmatically.

[0041] The technical solution of the present invention will be further described below in conjunction with embodiments and drawings.

[0042] Please refer to Figure 1 and Figure 2 According to a first aspect of an embodiment of the present invention, a card holder 1 is provided. The card holder 1 can be applied to a smart wearable device, which includes a housing and a main board disposed inside the housing. The housing is provided with a slot. The card holder 1 includes a card tray 10 and an interface component 11. The card tray 10 is used for pluggably connecting to the slot, and the card tray 10 is provided with a cavity 100 for accommodating a user identification card. The interface component 11 is disposed on the card tray 10 and is used for transmitting data. When the card tray 10 is connected to the slot, both the user identification card and the interface component 11 are electrically connected to the main board.

[0043] For the card holder 1 provided in the first aspect of the embodiment of the present invention, the cavity 100 is provided on the card tray 10, which can be used to install and accommodate the user identification card. The card tray 10 is pluggably connected to the slot on the housing of the smart wearable device. By providing the interface component 11 on the card tray 10, when the card tray 10 is connected to the slot, the electrical connections of the user identification card, the interface component 11, and the main board of the smart wearable device can be achieved simultaneously. Through the electrical connection between the interface component 11 and the circuit board, data transmission between the electronic device (such as a computer, a mobile phone, etc.) connected to the interface component 11 and the main board can be realized. Therefore, during the production process or repair process of the smart wearable device, the original ordinary card holder (i.e., the card holder without the interface component 11) on the smart wearable device can be pulled out first, and then the card holder 1 provided in the first aspect of the embodiment of the present invention can be plugged into the slot of the smart wearable device, so that functions such as program burning and program debugging of the smart wearable device can be achieved. After the functions such as program burning and program debugging are completed, the card holder 1 provided in the first aspect of the embodiment of the present invention can be pulled out, and finally the original ordinary card holder on the smart wearable device can be plugged into the slot. Thus, it can be seen that the card tray 10 of the present invention makes full use of the space on the card tray 10, so that there is no need to separately provide a data interface on the housing of the smart wearable device, which is beneficial to the miniaturization design of the smart wearable device.

[0044] In addition, when the card holder 10 is connected to the slot, the electrical connections of the user identification card, the interface component 11, and the main board of the smart wearable device are achieved simultaneously. When the smart wearable device is debugged through the interface component 11, the user identification card can work properly, that is, to ensure that the smart wearable device has complete functions, so that all functions of the smart wearable device can be debugged.

[0045] Please refer to Figures 1 to 4 simultaneously. As an optional implementation manner, the card holder 10 may include a main body portion 10e and an end cap portion 10f. The main body portion 10e is used for pluggable connection to the slot. When the main body portion 10e is connected to the slot, the end cap portion 10f covers the opening of the slot. The main body portion 10e is provided with a cavity 100. The end cap portion 10f is connected to one side of the main body portion 10e. The interface component 11 is disposed at one end of the main body portion 10e close to the end cap portion 10f.

[0046] In this way, when the card holder 10 is connected to the slot, the end cap portion 10f covers the opening of the slot, and both the user identification card and the interface component 11 are hidden in the slot, which can ensure the use safety of the user identification card and the interface component 11, improve the aesthetics of the appearance of the smart wearable device, and at the same time, also avoid the setting of the card seat 1 from increasing the overall volume of the smart wearable device.

[0047] Optionally, the card holder 10 is provided with a first electrical connector 101. The first electrical connector 101 is electrically connected to the interface component 11. When the card holder 10 is connected to the slot, the user identification card and the first electrical connector 101 are electrically connected to the main board. Specifically, the first electrical connector 101 is disposed on the main body portion 10e. In this way, by setting the first electrical connector 101, when the card holder 10 is connected to the slot, the electrical connection with the main board can be achieved through the first electrical connector 101, so that the electrical connection between the interface component 11 and the main board can be achieved through the electrical connection between the interface component 11 and the first electrical connector 101, and the position of the interface component 11 on the main body portion 10e of the card holder 10 can be set flexibly.

[0048] In some embodiments, a cavity 100 is provided on one side of the card holder 10 along its thickness direction Y. The first electrical connector 101 is disposed on the side of the card holder 10 where the cavity 100 is provided, and the first electrical connector 101 is located on the outer periphery of the cavity 100. Specifically, the cavity 100 is provided on one side of the main body portion 10e along its thickness direction Y, and the first electrical connector 101 is disposed on the side of the main body portion 10e where the cavity 100 is provided.

[0049] In this way, by disposing the first electrical connector 101 and the cavity 100 on the same side of the main body 10e of the card tray 10 along its thickness direction Y, after the user identification card is installed in the cavity 100, both the first electrical connector 101 and the user identification card are located on the same side of the card tray 10 along its thickness direction Y. When the card tray 10 is connected to the slot, both the first electrical connector 101 and the user identification card face the main board inside the housing, thus facilitating the simultaneous electrical connection of the first electrical connector 101, the user identification card and the main board. In addition, the first electrical connector 101 is located on the outer periphery of the cavity 100, which can reasonably utilize the idle space on the outer periphery of the cavity 100 on the card tray 10, thereby avoiding increasing the volume of the card tray 10.

[0050] In some embodiments, the first electrical connector 101 is an elastic member. When the card tray 10 is connected to the slot, the first electrical connector 101 is used to elastically abut against and electrically connect to the main board. By setting the first electrical connector 101 as an elastic member, when the card tray 10 is connected to the slot, the first electrical connector 101 can elastically abut against the main board. On the one hand, it can ensure the stability of the electrical connection between the first electrical connector 101 and the main board, thereby ensuring the stability of the operation of the interface component 11. On the other hand, it can reduce the processing accuracy of the production of the first electrical connector 101. At the same time, it can also reduce the assembly accuracy of the card tray 10, the first electrical connector 101 and the main board, thereby reducing the production difficulty of the card seat 1.

[0051] Optionally, the elastic member can be a spring piece, a spring pin, etc., and can be specifically selected according to the actual situation, and is not specifically limited in this embodiment.

[0052] Optionally, a third electrical connector can be provided on the side of the main board facing the user identification card. When the card tray 10 is connected to the slot, the first electrical connector 101 directly abuts against the main board, and the user identification card directly abuts against the third electrical connector on the main board, thereby simultaneously realizing the electrical connection of the first electrical connector 101, the user identification card and the main board, without setting other electrical connection structures, making the structure of the card seat 1 relatively simple.

[0053] Please refer to Figure 4 , in some embodiments, the direction in which the card tray 10 is inserted into the slot is the first direction X. The card tray 10 includes a first end 10a and a second end 10b along the first direction X. The first end 10a is connected to the slot, and the first end 10a is provided with a cavity 100.

[0054] The interface component 11 includes a plurality of power connection parts 110. The plurality of power connection parts 110 are arranged at intervals along the second direction Z at the second end 10b. The second direction Z is perpendicular to the first direction X and the thickness direction Y. There are a plurality of first electrical connectors 101. The plurality of first electrical connectors 101 are symmetrically arranged on both sides of the cavity 100 along the second direction Z of the card holder 10. The number of the first electrical connectors 101 corresponds to the number of the power connection parts 110 one by one. Each first electrical connector 101 is electrically connected to the corresponding power connection part 110. As can be seen from the foregoing, the card holder 10 includes a main body part 10e and an end cover part 10f. Then, the main body part 10e has the first end 10a, and the end cover part 10f has the second end 10b.

[0055] In this way, by providing a plurality of power connection parts 110 and the first electrical connectors 101, the plurality of power connection parts 110 can correspondingly realize different functions (for example, positive electrode, negative electrode, data input terminal, data output terminal, etc.). Moreover, the number of the first electrical connectors 101 corresponds to the number of the power connection parts 110 one by one, so that different power connection parts 110 can be electrically connected to the main board through different first electrical connectors 101 respectively, avoiding short circuits between different power connection parts 110 and ensuring that the interface component 11 can transmit data normally. And by arranging the power connection parts 110 at the second end 10b of the card holder 10, it is convenient for the power connection parts 110 to be electrically connected to other electronic devices.

[0056] Optionally, the power connection part 110 can be a pin, a metal sheet, etc., and can be specifically selected according to the actual situation, and is not specifically limited in this embodiment.

[0057] Optionally, the number of the power connection parts 110 can be four, five, six, seven, etc., and can be specifically selected according to the actual situation, and is not specifically limited in this embodiment. When the number of the power connection parts 110 is four, the four power connection parts 110 are respectively used as the positive electrode, the negative electrode, the data input terminal and the data output terminal. When the number of the power connection parts 110 is five or more, four of the power connection parts 110 are respectively used as the positive electrode, the negative electrode, the data input terminal and the data output terminal, and the remaining power connection parts 110 can be used as ports for other functions.

[0058] Optionally, the electrical connection between the multiple first electrical connectors 101 and the multiple electrical connection parts 110 can be achieved by arranging conductive components such as multiple wires and multiple metal parts (not shown), and connecting each conductive component to each first electrical connector 101 and each electrical connection part 110 respectively to realize the electrical connection between the first electrical connector 101 and the electrical connection part 110. Preferably, the multiple first electrical connectors 101, the multiple metal parts, and the multiple electrical connection parts 110 can be obtained through an integral molding process such as casting, and then the retaining bracket 10 is formed on the first electrical connectors 101, the metal parts, and the interface assembly 11 through the insert molding process, so that the first electrical connectors 101, the metal parts, the interface assembly 11, and the retaining bracket 10 can be assembled without further installation, reducing the production difficulty and production cost of the card seat 1.

[0059] In some embodiments, the interface assembly 11 further includes a socket 111, the socket 111 is disposed at the second end 10b, and the socket 111 is used for pluggable connection with a plug, and the socket 111 is electrically connected to the multiple electrical connection parts 110.

[0060] In this way, by providing the socket 111, other electronic devices can be directly electrically connected to the interface assembly 11 through a plug (such as a USB plug, an HDMI plug, a Lightning plug, etc.), thereby improving the versatility of the use of the interface assembly 11 and facilitating the realization of the electrical connection with the interface assembly 11.

[0061] Optionally, the types of the socket 111 and the plug can be USB, HDMI, Lightning, etc., which can be specifically selected according to the actual situation and are not specifically limited in this embodiment.

[0062] The following briefly describes the process of program burning and program debugging for the card seat 1 as shown in Figures 1 to 4 shown.

[0063] First, pull out the original ordinary card seat on the smart wearable device to be program burned or program debugged, then insert the main body part 10e of the card seat 1 as shown in Figures 1 to 4 shown into the slot of the smart wearable device, and then electrically connect the electronic device to the interface assembly 11 of the card seat 1. At this time, the electronic device realizes data transmission with the main board of the smart wearable device through the interface assembly 11, and functions such as program burning and program debugging of the smart wearable device can be realized. After functions such as program burning and program debugging are completed, then pull out the card seat 1 provided in the first aspect of the embodiment of the present invention, and finally insert the original ordinary card seat on the smart wearable device into the slot.

[0064] Using the one as shown in Figures 1 to 4The card holder 1 shown is used for program burning and program debugging, and the space on the card tray 10 is fully utilized to set the interface component 11, so that there is no need to set a separate data interface on the shell of the smart wearable device, which is conducive to the miniaturization design of the smart wearable device, and the card holder 1 can be recycled many times when performing program burning and program debugging on different smart wearable devices, reducing the production cost of the smart wearable device. In addition, because when the card tray 10 is connected to the slot, the electrical connection between the user identification card, the interface component 11 and the mainboard of the smart wearable device is realized at the same time, when the program of the smart wearable device is debugged through the interface component 11, the user identification card can work normally, that is, it is guaranteed that the smart wearable device has complete functions, so that all functions of the smart wearable device can be debugged.

[0065] As another optional embodiment, Figure 5 and Figure 6 As shown, the card holder 10 includes a plug-in portion 10c and a supporting portion 10d, the plug-in portion 10c is used for pluggable connection to the slot, and when the plug-in portion 10c is connected to the slot, the supporting portion 10d is located outside the slot, the supporting portion 10d is provided with a cavity 100, the plug-in portion 10c is connected to one side of the supporting portion 10d along the first direction X, and the interface component 11 is provided at one end of the supporting portion 10d away from the plug-in portion 10c. The plug-in portion 10c can be pluggable connected to the slot, and when the plug-in portion 10c is connected to the slot, the supporting portion 10d provided with the cavity 100 is located outside the slot, so that the user identification card can be installed and removed without pulling out the card holder 10, which improves the flexibility of the card holder 10, and at the same time, the interface component 11 is provided at one end of the supporting portion 10d away from the plug-in portion 10c, that is, the interface component 11 is also completely located outside the slot, which facilitates other electronic devices to connect with the interface component 11.

[0066] The first direction X is the direction in which the card tray 10 is inserted into the slot.

[0067] In this embodiment, the plug-in portion 10c may be provided with a first electrical connector 101 and a second electrical connector 102, and the first electrical connector 101 and the second electrical connector 102 are located on one side of the plug-in portion 10c along its own thickness direction Y, the first electrical connector 101 is electrically connected to the interface component 11, and the second electrical connector 102 is used to be electrically connected to the user identification card, and when the plug-in portion 10c is connected to the slot, the first electrical connector 101 and the second electrical connector 102 are electrically connected to the mainboard.

[0068] In this way, by setting the first electrical connector 101 and the second electrical connector 102, and the first electrical connector 101 and the second electrical connector 102 are located on one side of the plug-in portion 10c along its own thickness direction Y, when the plug-in portion 10c is connected to the slot, the first electrical connector 101 and the second electrical connector 102 are both facing the mainboard in the shell, so that the first electrical connector 101, the second electrical connector 102 and the mainboard can be electrically connected at the same time, and then the interface component 11, the user identification card and the mainboard can be electrically connected at the same time.

[0069] In some embodiments, the interface component 11 includes a plurality of power connection parts 110, and the plurality of power connection parts 110 are arranged at intervals on the supporting part 10d along the second direction Z, and are located at one end of the supporting part 10d away from the plug-in part 10c. The second direction Z is perpendicular to the first direction X and the thickness direction Y. There are a plurality of first electrical connectors 101, and the plurality of first electrical connectors 101 are respectively located on both sides of the second electrical connector 102 along the second direction Z. The number of the first electrical connectors 101 corresponds one-to-one to the number of the power connection parts 110, and each first electrical connector 101 is respectively electrically connected to each power connection part 110.

[0070] In this way, by setting a plurality of power connection parts 110 and the first electrical connector 101, the plurality of power connection parts 110 can realize different functions (for example, positive pole, negative pole, data input end and data output end, etc.), and the number of the first electrical connector 101 and the power connection part 110 corresponds to each other, so that different power connection parts 110 can be electrically connected to the mainboard through different first electrical connectors 101, respectively, to avoid short circuits between different power connection parts 110, to ensure that the interface component 11 can transmit data normally, and by setting the power connection part 110 at one end of the supporting part 10d away from the plug-in part 10c, it is convenient to realize electrical connection between the power connection part 110 and other electronic devices. In addition, the plurality of first electrical connectors 101 are respectively located on both sides of the second electrical connector 102 along the second direction Z, which can facilitate the arrangement of the circuits of the first electrical connector 101, the second electrical connector 102, the power connection part 110, and the user identification card, to avoid short circuits caused by cross-setting between circuits.

[0071] Optionally, the number of the power connection parts 110 can be four, five, six or seven, etc., which can be selected according to actual conditions and are not specifically limited in this embodiment. When the number of the power connection parts 110 is four or more, the four power connection parts 110 are used as the positive electrode, the negative electrode, the data input terminal and the data output terminal respectively. When the number of the power connection parts 110 is five or more, four of the power connection parts 110 are used as the positive electrode, the negative electrode, the data input terminal and the data output terminal respectively, and the remaining power connection parts 110 can be used as ports with other functions.

[0072] Optionally, the electrical connection manner between the multiple first electrical connectors 101 and the multiple electrical connection parts 110 can be realized by arranging conductive parts such as multiple wires and multiple metal parts, and connecting each conductive part to each first electrical connector 101 and each electrical connection part 110 respectively to achieve the electrical connection between the first electrical connector 101 and the electrical connection part 110. Preferably, the multiple first electrical connectors 101, the multiple metal parts, and the multiple electrical connection parts 110 can be obtained through an integral forming process such as casting, and then the retainer 10 is formed on the first electrical connector 101, the metal part, and the interface component 11 through the insert molding process, so that the first electrical connector 101, the metal part, the interface component 11, and the retainer 10 can be assembled without further installation, reducing the production difficulty and production cost of the card seat 1.

[0073] In some embodiments, the interface component 11 further includes a socket 111 for detachably connecting with a plug. The socket 111 is arranged on the supporting part 10d and located at one end of the supporting part 10d away from the plugging part 10c. The socket 111 is electrically connected to the multiple electrical connection parts 110.

[0074] In this way, by arranging the socket 111, other electronic devices can be directly electrically connected to the interface component 11 through a plug (such as a USB plug, an HDMI plug, a Lightning plug, etc.), thereby improving the versatility of the use of the interface component 11 and facilitating the realization of the electrical connection with the interface component 11.

[0075] Optionally, the types of the socket 111 and the plug can be USB, HDMI, Lightning, etc., which can be specifically selected according to the actual situation and are not specifically limited in this embodiment.

[0076] In some embodiments, the first electrical connector 101 is an elastic member. When the plugging part 10c is connected to the slot, the first electrical connector 101 is used for elastically abutting against and electrically connecting to the main board.

[0077] In this way, by setting the first electrical connector 101 as an elastic member, when the supporting part 10d is connected to the slot, the first electrical connector 101 can elastically abut against the main board. On the one hand, it can ensure the stability of the electrical connection between the first electrical connector 101 and the main board, thereby ensuring the stability of the operation of the interface component 11. On the other hand, it can reduce the processing precision of the production of the first electrical connector 101. At the same time, it can also reduce the assembly precision of the retainer 10, the first electrical connector 101, and the main board, thereby reducing the production difficulty of the card seat 1.

[0078] Optionally, the elastic member can be a spring piece, a spring pin, etc., which can be specifically selected according to the actual situation and are not specifically limited in this embodiment.

[0079] Optionally, the second electrical connector 102 may be a pin, a metal sheet, an elastic member, etc., and can be specifically selected according to actual situations, and is not specifically limited in this embodiment.

[0080] Preferably, the second electrical connector 102 can be set as an elastic member. When the card holder 10 is connected to the slot, both the first electrical connector 101 and the second electrical connector 102 are directly elastically abutted against the main board. Optionally, a third electrical connector can be provided on the side of the main board facing the user identification card, and the third electrical connector is set as an elastic member. When the card holder 10 is connected to the slot, the first electrical connector 101 is directly elastically abutted against the main board, and the user identification card is directly elastically abutted against the third electrical connector on the main board, thereby realizing the electrical connection of the first electrical connector 101, the user identification card and the main board at the same time, without setting other electrical connection structures, making the structure of the card holder 1 relatively simple.

[0081] Optionally, the supporting part 10d and the inserting part 10c are configured as an integrated circuit board. By configuring the supporting part 10d and the inserting part 10c as an integrated circuit board, the first electrical connector 101 and the second electrical connector 102 are directly arranged on the inserting part 10c, the interface component 11 is directly arranged on the supporting part 10d, and the user identification card is installed on the supporting part 10d. Then, the electrical connection between the first electrical connection and the interface component 11 can be realized through the circuits on the supporting part 10d and the inserting part 10c (i.e., the circuit board), and the electrical connection between the second electrical connector 102 and the user identification card is also realized at the same time. There is no need to additionally set other conductive parts such as wires and metal parts, which simplifies the structure of the card holder 1, thereby reducing the production difficulty and production cost of the card holder 1.

[0082] The following briefly describes the process of data burning for the card holder 1 as shown in Figure 5 、 Figure 6 shown.

[0083] First, pull out the original ordinary card holder on the smart wearable device to be programmed or debugged, and then insert the inserting part 10c of the card holder 1 as shown in Figure 5 、 Figure 6 shown into the slot of the smart wearable device. Then, electrically connect the electronic device to the interface component 11 of the card holder 1. At this time, the electronic device realizes data transmission with the main board of the smart wearable device through the interface component 11, and functions such as program burning and program debugging of the smart wearable device can be realized. After the functions such as program burning and program debugging are completed, then pull out the card holder 1 provided in the first aspect of the embodiment of the present invention, and finally insert the original ordinary card holder on the smart wearable device into the slot.

[0084] Using the card holder 1 as shown in Figure 5 、 Figure 6The card holder 1 shown is used for program burning and program debugging. By making full use of the space on the card tray 10 to set the interface component 11, it is not necessary to separately set a data interface on the housing of the smart wearable device, which is beneficial to the miniaturization design of the smart wearable device. Moreover, this card holder 1 can be recycled multiple times when performing program burning and program debugging on different smart wearable devices, reducing the production cost of the smart wearable device. In addition, when the insertion part 10c is connected to the slot, the electrical connection of the user identification card, the interface component 11 and the main board of the smart wearable device is achieved simultaneously. When performing program debugging on the smart wearable device through the interface component 11, the user identification card can work normally, that is, ensuring that the smart wearable device has complete functions, so that all functions of the smart wearable device can be program-debugged. And the supporting part 10d with the cavity 100 is located outside the slot, facilitating the installation or disassembly of the user identification card on the cavity 100, further improving the convenience of adjusting the state of the user identification card (such as installation, disassembly or replacement, etc.) when debugging the relevant programs of the user identification card.

[0085] Please refer to Figure 7 , Figure 7 The smart wearable device 2 in only shows the housing 20, and other structures such as the main board and the wearable parts are not shown. The second aspect of the embodiment of the present invention discloses a smart wearable device 2, including a housing 20, a main board and the card holder 1 as described in the first aspect of the above embodiment of the present invention. The housing 20 is provided with a slot 200, and the main board is arranged inside the housing 20.

[0086] It can be understood that the smart wearable device 2 may include but is not limited to small-volume devices such as smart watches, smart bracelets, and smart glasses, and can be specifically selected according to the actual situation, and is not specifically limited in this embodiment.

[0087] The above has introduced the card holder and the smart wearable device disclosed in the embodiments of the present invention in detail. Specific examples are used in this article to elaborate on the principles and implementation methods of the present invention. The descriptions of the above embodiments are only used to help understand the card holder and the smart wearable device of the present invention and its core idea; at the same time, for those of ordinary skill in the art, according to the idea of the present invention, there will be changes in the specific implementation methods and application scopes. In summary, the content of this specification should not be construed as a limitation to the present invention.

Claims

1. A deck, It is characterized in that Applied to a smart wearable device, the smart wearable device comprises a housing and a mainboard arranged in the housing, the housing is provided with a slot, and the card holder comprises: A card tray, the card tray is used to be pluggably connected to the slot, and the card tray is provided with a cavity for accommodating a user identification card; and An interface component, the interface component is arranged on the card tray, and the interface component is used to transmit data; Wherein, when the card tray is connected to the slot, the user identification card and the interface component are both electrically connected to the mainboard.

2. The card holder according to claim 1, It is characterized in that The card tray is provided with a first electrical connector, which is electrically connected to the interface assembly. When the card tray is connected to the slot, the user identification card and the first electrical connector are electrically connected to the mainboard.

3. The card holder according to claim 2, It is characterized in that The card holder is provided with the cavity on one side along the thickness direction of the card holder, the first electrical connector is provided on the side of the card holder where the cavity is provided, and the first electrical connector is located at the periphery of the cavity.

4. The card holder according to claim 3, It is characterized in that The direction in which the card tray is inserted into the slot is a first direction, the card tray comprises a first end and a second end along the first direction, the first end is connected to the slot, and the first end is provided with the cavity; The interface component includes a plurality of power connection parts, which are arranged at the second end at intervals along a second direction, the second direction is perpendicular to the first direction and the thickness direction, there are a plurality of first electrical connectors, and the plurality of first electrical connectors are symmetrically arranged on both sides of the cavity along the second direction of the card holder, the number of the first electrical connectors corresponds one-to-one to the number of the power connection parts, and each of the first electrical connectors is electrically connected to the corresponding power connection part.

5. The card holder according to claim 4, It is characterized in that The interface component also includes a socket, which is arranged at the second end, and is used for pluggable connection with a plug, and the socket is electrically connected to the plurality of power connection parts.

6. The card holder according to any one of claims 2 to 5, It is characterized in that The first electrical connection member is an elastic member. When the card holder is connected to the slot, the first electrical connection member is used to elastically abut against and be electrically connected to the mainboard.

7. The card holder according to claim 1, It is characterized in that The direction in which the card holder is inserted into the slot is a first direction, and the card holder includes a plug-in portion and a supporting portion, the plug-in portion is used for pluggable connection to the slot, and when the plug-in portion is connected to the slot, the supporting portion is located outside the slot, the supporting portion is provided with the accommodating cavity, the plug-in portion is connected to one side of the supporting portion along the first direction, and the interface assembly is arranged at one end of the supporting portion away from the plug-in portion.

8. The card holder according to claim 7, It is characterized in that The plug-in part is provided with a first electrical connector and a second electrical connector, and the first electrical connector and the second electrical connector are located on one side of the plug-in part along its thickness direction. The first electrical connector is electrically connected to the interface component, and the second electrical connector is used to be electrically connected to the user identification card. When the plug-in part is connected to the slot, the first electrical connector and the second electrical connector are electrically connected to the main board.

9. The card holder according to claim 8, wherein, the interface component includes a plurality of power connection parts, and the plurality of power connection parts are arranged on the supporting part at intervals along a second direction and are located at an end of the supporting part away from the plug-in part. The second direction is perpendicular to the first direction and the thickness direction. The number of the first electrical connectors is multiple, and the multiple first electrical connectors are respectively located on both sides of the second electrical connector along the second direction. The number of the first electrical connectors corresponds to the number of the power connection parts one by one, and each of the first electrical connectors is electrically connected to each of the power connection parts.

10. The card holder according to claim 9, wherein, the interface component further includes a socket, and the socket is used for pluggable connection with a plug. The socket is arranged on the supporting part and is located at an end of the supporting part away from the plug-in part. The socket is electrically connected to the plurality of power connection parts.

11. The card holder according to any one of claims 8-10, wherein, the first electrical connector is an elastic member, and when the plug-in part is connected to the slot, the first electrical connector is used for elastically abutting against and electrically connecting to the main board.

12. The card holder according to any one of claims 8-10, wherein, the supporting part and the plug-in part are configured to be an integrally arranged circuit board.

13. An intelligent wearable device, wherein, it includes a housing, a main board and the card holder according to any one of claims 1-12. The housing is provided with a slot, and the main board is arranged inside the housing.