Intelligent electronic device
By adopting a functional module design with detachable magnetic suction connection in smart electronic devices, the problem of inability to replace and high maintenance costs of functional modules is solved, and the equipment is flexible upgraded and maintenance costs are reduced.
Patent Information
- Application Number
- CN202422171010.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-09-04
AI Technical Summary
The existing smart electronic device functional modules are fixed and cannot be replaced, resulting in limited shooting function and imaging quality, high maintenance costs, and limited equipment updates.
Design an intelligent electronic device to connect the functional module to the host through a removable magnetic suction piece, supporting the replacement and upgrade of a variety of functional modules, including the removable electrical connection of the camera module and the speaker module.
It realizes flexible replacement and upgrade of functional modules, reduces maintenance costs, and improves equipment adaptability and user experience.
Smart Images

Figure CN223194737U_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present invention relate to the technical field of intelligent electronic devices, and more specifically, the embodiments of the present invention relate to intelligent electronic devices. Background Art
[0002] Existing smart electronic devices, such as smart hearing aids, often have fixed camera or speaker modules. This limits their functionality. The inability to replace the camera module restricts the device's camera function and image quality, making it impossible to upgrade or improve it based on user needs. This also increases repair costs. If the camera module fails and cannot be replaced, the entire device or motherboard must be replaced, significantly increasing repair costs. Furthermore, if the functional modules of smart electronic devices are fixed, device updates are also limited, preventing flexible iterative upgrades based on market demand. Utility Model Content
[0003] Therefore, an improved intelligent electronic device is highly desired so that the functional modules of the intelligent electronic device can be replaced according to user needs.
[0004] In this context, embodiments of the present invention are intended to provide an intelligent electronic device.
[0005] In an embodiment of the present invention, an intelligent electronic device is provided, comprising:
[0006] A host, wherein the host is provided with at least one first assembly component and the host is provided with at least one first port;
[0007] At least one functional module is provided with a second assembly part and a second port, the first assembly part and the second assembly part are detachably mechanically connected, and the first port and the second port are detachably electrically connected, wherein the number of the second ports corresponds to the number of the first ports, and the number of the first assembly parts corresponds to the number of the second assembly parts.
[0008] According to the intelligent electronic device of the present application, the first assembly part is configured as a first magnetic part, and the second assembly part is configured as a second magnetic part. The first magnetic part and the second magnetic part can be adsorbed or separated.
[0009] Optionally, a limiting groove is provided on the host, the first assembly part is embedded in the limiting groove, and at least a part of the functional module is embedded in the limiting groove.
[0010] Optionally, the functional module includes a main body and a clamping portion connected to each other, the main body defines a first abutting surface in the circumferential direction of the clamping portion, the clamping portion is embedded in the limiting groove, and the first abutting surface abuts against the circumferential edge of the limiting groove.
[0011] Optionally, a second abutting surface is provided on the circumferential edge of the limiting groove, and the first abutting surface and the second abutting surface are in contact with each other.
[0012] Optionally, the functional module has multiple corner ends, and the second magnetic attraction component is provided at each corner end.
[0013] Optionally, the functional module has four corner ends, each of which has an arc-shaped transition, and the limiting groove is square in shape, with a smooth transition at the tip.
[0014] According to the intelligent electronic device of the present application, the second port is centrally arranged on the plane where the functional module and the host abut.
[0015] According to the intelligent electronic device of the present application, the first port and the second port are plug-connected.
[0016] According to the intelligent electronic device of the present application, a main control board is provided in the host, the main control board is electrically connected to the first port, the functional module is divided into a first functional module and a second functional module, and the first functional module and the second functional module are arranged in parallel on the host.
[0017] Optionally, the host includes a front and a back facing each other, the front of the host is provided with a display screen, the display screen is electrically connected to the main control board, and the back of the host is provided with the functional module.
[0018] Optionally, the functional module is provided at the upper end of the back side of the host, and when the host is provided with a limiting groove, two adjacent limiting grooves are arranged side by side along the width direction of the host.
[0019] Optionally, the first functional module is configured as a camera module, the second port of the camera module is electrically connected to the first port for transmitting image electrical signals, and the second functional module is configured as a speaker module, the second port of the speaker module is electrically connected to another first port for transmitting audio electrical signals.
[0020] According to the intelligent electronic device of the present application, the circumferential side wall of the functional module is provided with anti-slip grooves, and the anti-slip grooves are exposed externally.
[0021] Optionally, a snap-fit member is provided on the functional module, a snap-fit groove is provided on the peripheral wall of the limiting groove, and the snap-fit member is snap-fitted in the snap-fit groove.
[0022] Optionally, the functional module is provided with a mounting hole and a movable button, an elastic member and the fastener are provided in the mounting hole, the button is connected to the fastener, the fastener is movable along the axial direction of the mounting hole, the fastener has a first position and a second position, the fastener is engaged with the fastening groove when in the first position, and is disengaged from the fastening groove when in the second position.
[0023] Optionally, at least one positioning column is provided in the limiting groove, at least one positioning hole is provided on the functional module, and the positioning column passes through the positioning hole.
[0024] According to the intelligent electronic device of the embodiment of the present application, at least one first assembly part is provided on the host, and a second assembly part is provided on the energy supply module. The functional module and the host can be detachably mechanically connected through the detachable mechanical connection between the first assembly part and the second assembly part. When the functional module needs to be installed on the host, the second assembly part is connected to the first assembly part, thereby realizing the connection between the functional module and the host. When the functional module needs to be removed from the host, the second assembly part is disassembled from the first assembly part, thereby realizing the removal of the functional module from the host. There can be multiple functional modules with the same specifications but different parameters, so that the same type of functional modules can be replaced, thereby changing the parameters of the functional modules or replacing new functional modules. When the second assembly part is connected to the first assembly part, the second port and the first port are simultaneously contacted or connected and electrically conductive, so that the functional module and the host can exchange signals and control the functional module. After the second assembly part is disassembled from the first assembly part, the second port and the first port are also separated, thereby facilitating the replacement of the functional module. In this way, the intelligent electronic device can be upgraded or improved according to the needs of the user. At the same time, when a functional module is damaged, it can be replaced without affecting the overall function of the intelligent electronic device, which can reduce maintenance costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The above and other objects, features and advantages of the exemplary embodiments of the present invention will become readily understood by reading the detailed description below with reference to the accompanying drawings. In the accompanying drawings, several embodiments of the present invention are shown in an exemplary and non-limiting manner, in which:
[0026] Figure 1 Schematically shows a three-dimensional diagram of an intelligent electronic device suitable for implementing the embodiments of the present utility model;
[0027] Figure 2 Schematically shows a perspective view from another angle of an intelligent electronic device suitable for implementing an embodiment of the present utility model;
[0028] Figure 3 Schematically shows a front view of an intelligent electronic device suitable for implementing an embodiment of the present utility model;
[0029] In the drawings, the same or corresponding reference numerals denote the same or corresponding parts.
[0030] Reference numerals:
[0031] Host 10 , first assembly part 11 , first port 12 , limiting slot 13 , functional module 20 , second assembly part 21 , second port 22 , main body 23 , snap-fit part 24 , display screen 30 . DETAILED DESCRIPTION
[0032] The principles and spirit of the present invention will be described below with reference to several exemplary embodiments. It should be understood that these embodiments are provided solely to enable those skilled in the art to better understand and implement the present invention, and are not intended to limit the scope of the present invention in any way. Rather, these embodiments are provided to make this disclosure more thorough and complete, and to fully convey the scope of the present disclosure to those skilled in the art.
[0033] Utility Model Overview
[0034] Various non-limiting embodiments of the present invention are described in detail below.
[0035] According to an embodiment of the present utility model, an intelligent electronic device is provided.
[0036] Any number of elements in the drawings is for illustration and not limitation, and any naming is for distinction only and does not have any limiting meaning.
[0037] The principle and spirit of the present invention are explained in detail below with reference to several representative embodiments of the present invention.
[0038] First reference Figure 1-Figure 2 , which shows a schematic diagram of an exemplary intelligent electronic device suitable for implementing an embodiment of the present utility model.
[0039] like Figure 1 and Figure 2 As shown, in an embodiment of the present invention, an intelligent electronic device is provided, including: a host 10 and at least one functional module 20.
[0040] Specifically, the host 10 is provided with at least one first assembly part 11, and the host 10 is provided with at least one first port 12; the functional module 20 is provided with a second assembly part 21 and a second port 22, the first assembly part 11 and the second assembly part 21 are detachably mechanically connected, and the first port 12 and the second port 22 are detachably electrically connected, wherein the number of the second ports 22 corresponds to the number of the first ports 12, and the number of the first assembly parts 11 corresponds to the number of the second assembly parts 21.
[0041] Specifically, the host 10 is provided with at least one first assembly part 11, and the energy supply module is provided with a second assembly part 21. The first assembly part 11 and the second assembly part 21 are detachably mechanically connected to realize the detachable mechanical connection between the functional module 20 and the host 10. When the functional module 20 needs to be installed on the host 10, the second assembly part 21 is connected to the first assembly part 11, thereby realizing the connection between the functional module 20 and the host 10. When the functional module 20 needs to be removed from the host 10, the second assembly part 21 and the first assembly part 11 are disassembled, thereby realizing the removal of the functional module 20 from the host 10. There can be multiple functional modules 20 with different parameters, so that the same type of functional modules 20 can be replaced, thereby changing the parameters of the functional module 20 or replacing a new functional module 20. When the second assembly 21 is connected to the first assembly 11, the second port 22 and the first port 12 are simultaneously in contact or connected and electrically conductive, so that the functional module 20 and the host 10 can exchange signals and control the functional module 20. After the second assembly 21 is disassembled from the first assembly 11, the second port 22 and the first port 12 are also separated, thereby facilitating the replacement of the functional module 20.
[0042] The first assembly part 11 and the second assembly part 21 are detachably connected mechanically, including but not limited to the following types:
[0043] The latch-type connection method realizes quick connection by the cooperation of a latch and a hole. The latch can be straight, L-shaped, or spring-loaded, wherein one of the first assembly part 11 and the second assembly part 21 is a latch and the other is a hole;
[0044] The first assembly part 11 and the second assembly part 21 are connected in the form of a buckle or a buckle, and a quick connection is achieved by the cooperation between the buckle and the slot buckle;
[0045] Threaded connection mode: the first assembly part 11 and the second assembly part 21 are connected by threaded connection mode, and the connection can be achieved by rotation;
[0046] Clamping connection mode, the first assembly part 11 and the second assembly part 21 are connected quickly by clamping in the form of a clamp or pliers;
[0047] Magnetic connection mode: the first assembly part 11 and the second assembly part 21 are connected by magnetic force to achieve rapid adsorption, which can be permanent magnet or electromagnetic;
[0048] In the quick connector connection mode, the first assembly part 11 and the second assembly part 21 adopt a structure similar to a pipe joint, and can be quickly connected by plugging or rotating;
[0049] A snap-on connection method, in which the first assembly part 11 and the second assembly part 21 are quickly connected using a snap or hook; and others.
[0050] Due to the presence of the first assembly part 11 and the second assembly part 21, the first port 12 and the second port 22 are detachably electrically connected. It is easier to install and remove the first port 12 and the second port 22 by setting them to be abutted or plugged together, such as a plug-in structure similar to USB, HDMI, and RCA.
[0051] Furthermore, at least one functional module 20 means that there can be one or more functional modules 20 installed on the host 10. For example, when the host 10 is a hearing aid, the host 10 can have one functional module 20 configured as a camera module for capturing images; when the host 10 is a hearing aid, the host 10 can have one functional module 20 configured as a speaker module for playing voice information. Alternatively, when the host 10 is a hearing aid, the host 10 can have two functional modules 20, one of which is a camera module for capturing images, and the other of which is a speaker module for playing voice information. Alternatively, the host 10 can have two functional modules 20, one of which is a camera module for capturing images, and the other of which is also a camera module for capturing images.
[0052] According to the embodiment of the present application, the intelligent electronic device can be upgraded or improved according to the needs of the user. At the same time, when the functional module 20 is damaged, it can also be replaced without affecting the overall function of the intelligent electronic device, which can reduce maintenance costs.
[0053] During actual use, in some application scenarios, users may need to frequently replace the functional module 20 according to the required scenario. At this time, the detachable connection between the first assembly part 11 and the second assembly part 21 needs to be simplified so as to meet the user's requirements for the difficulty of frequent disassembly and assembly.
[0054] According to the intelligent electronic device of the embodiment of the present application, the first assembly part 11 is configured as a first magnetic part, and the second assembly part 21 is configured as a second magnetic part. The first magnetic part and the second magnetic part can be adsorbed or separated; the first assembly part 11 is configured as a first magnetic part, and the second assembly part 21 is configured as a magnetic part. When the functional module 20 needs to be removed from the host 10, it can be directly removed by holding the functional module 20 by hand. When the functional module 20 needs to be installed on the host 10, it only needs to fit the functional module 20 with the host 10, and the installation between the functional module 20 and the host 10 can be achieved through the adsorption force of the first assembly part 11 and the second assembly part 21.
[0055] According to the intelligent electronic device of the embodiment of the present application, the cooperation of the first magnetic part and the second magnetic part can enhance the stability of the functional module 20 on the host 10, while facilitating operation and use, especially meeting the user's need to replace the functional module 20 with different parameter specifications. Compared with the traditional fixing method, the magnetic method is not easy to cause scratches or damage to the functional module 20 or the host 10, and is also convenient for disassembly and repositioning, and can adapt to a variety of functional modules 20 of different shapes and specifications, allowing greater flexibility in structural design.
[0056] It should be noted that one of the first and second magnetic members can be made of a magnetic material that can be attracted by a magnet (not inherently magnetic), and the other can be made of a magnetic material (inherently magnetic). Alternatively, both the first and second magnetic members can be made of a magnetic material (inherently magnetic). For example, the first magnetic member can be made of iron, nickel, cobalt, and alloys thereof, such as iron-nickel alloys (e.g., nickel-chromium alloys) and cobalt-iron alloys, or can be made of rare earth metals and alloys thereof, such as neodymium and dysprosium.
[0057] In addition, the number of first magnetic parts can be one or more, and the number of second magnetic parts can be one or more. The number of first magnetic parts and the number of second magnetic parts are set correspondingly, for example, one to one, or one second magnetic part corresponds to two first magnetic parts, or one second magnetic part corresponds to three first magnetic parts, or one first magnetic part corresponds to two second magnetic parts, etc., and this application does not list them all. Of course, the cross-sectional shape of the first magnetic part includes but is not limited to circular, elliptical, square, rectangular, and triangular, and the cross-sectional shape of the second magnetic part includes but is not limited to circular, elliptical, square, rectangular, and triangular, etc.
[0058] In actual use, it is often necessary to align the second magnetic component with the first magnetic component to achieve good adsorption. This requires the user to carefully observe the operation during operation, and the operation has certain requirements on meticulousness. When the first assembly part 11 and the second assembly part 21 are slightly misaligned, adsorption can still be achieved. However, when the first port 12 and the second port 22 are slightly misaligned, the circuit between the functional module 20 and the host 10 cannot be connected. For this reason, a new intelligent electronic device is proposed.
[0059] like Figure 1 and Figure 2 As shown, in some embodiments, a limiting groove 13 is provided on the host 10 , the first assembly part 11 is embedded in the limiting groove 13 , and at least a portion of the functional module 20 is embedded in the limiting groove 13 .
[0060] In detail, a limiting groove 13 is provided on the host 10, and the first assembly part 11 is embedded in the limiting groove 13. When the second assembly part 21 needs to be aligned with the first assembly part 11 for installation, the functional module 20 can be engaged and guided with the limiting groove 13. It is only necessary to align the functional module 20 with the limiting groove 13, and push it along the inner wall of the limiting groove 13 to abut against the bottom wall of the limiting groove 13 to achieve the effect of alignment and fitting of the second assembly part 21 and the corresponding first assembly part 11, which greatly reduces the difficulty of user installation and positioning. At the same time, in actual use, the circumferential side wall of the limiting groove 13 can wrap at least part of the functional module 20, thereby increasing the contact area between the host 10 and the functional module 20, thereby enhancing the installation difficulty of the host 10 and the functional module 20, ensuring the accuracy of the alignment of the first port 12 and the second port 22, thereby ensuring the reliability of the circuit conduction of the host 10 and the functional module 20.
[0061] Among them, at least part of the functional module 20 is embedded in the limiting groove 13, and part of the side wall of the functional module 20 can be embedded in the limiting groove 13, and when the functional module 20 is installed on the host 10, the large surface of the functional module 20 protrudes outside the limiting groove 13; it can also be that the side wall of the functional module 20 is completely embedded in the limiting groove 13, and the large surface of the functional module 20 is flush with the host 10; it can also be that when the functional module 20 is installed on the host 10, the large surface of the functional module 20 is sunken into the limiting groove 13. It can be set as needed and is not limited in this application.
[0062] In addition, the shape of the limiting groove 13 includes but is not limited to a circular limiting groove 13, a square limiting groove 13, a rectangular limiting groove 13, a concave limiting groove 13, a trapezoidal limiting groove 13 and a composite limiting groove 13; among them, the circular limiting groove 13 and the square limiting groove 13 have relatively simple structures. Compared with the square limiting groove 13, the rectangular limiting groove 13 can provide a larger limiting area, the concave limiting groove 13 can present a certain curve curvature, and can better adapt to the structure when the functional module 20 is cylindrical or has a curved surface, and the trapezoidal limiting groove 13 can increase The limiting area and limiting strength, and the composite limiting groove 13 is formed by a combination of basic limiting grooves 13 such as circular limiting grooves 13, square limiting grooves 13, rectangular limiting grooves 13, concave limiting grooves 13 and trapezoidal limiting grooves 13, which can meet special limiting requirements. Therefore, the user can actually select the required shape structure of the limiting groove 13 according to needs. It can be understood that the shape structure of the clamping part 24 matches the shape structure of the limiting groove 13 and remains consistent, so that the gap between the clamping part 24 and the limiting groove 13 can be reduced and the positioning requirements can be met.
[0063] like Figure 1 and Figure 2 As shown, in some embodiments, the functional module 20 includes a main body portion 23 and a clamping portion 24 that are interconnected, the main body portion 23 defines a first abutting surface in the circumferential direction of the clamping portion 24, the clamping portion 24 is embedded in the limiting groove 13, and the first abutting surface abuts against the circumferential edge of the limiting groove 13.
[0064] In detail, the second assembly part 21 and the second interface are both provided on the clamping part 24, the clamping part 24 is embedded in the limiting groove 13, and the first abutting surface abuts against the circumferential edge of the limiting groove 13. In this way, by abutting the first abutting surface against the circumferential edge of the limiting groove 13, a certain self-alignment function can be provided during assembly, so that the functional module 20 and the limiting groove 13 can be matched more accurately. After the functional module 20 and the host 10 are assembled, the contact area between the functional module 20 and the host 10 can be increased, thereby improving the connection strength and stability between the functional module 20 and the host 10. At the same time, the first abutting surface and the circumferential edge of the limiting groove 13 are used to abut The connection can also disperse the load between the first interface and the second interface, reduce local stress concentration, and reduce the risk of fatigue failure; in addition, the abutment between the first abutting surface and the circumferential edge of the limit groove 13 can also avoid offset between the functional module 20 and the host 10, which can further ensure the connection accuracy between the first port 12 and the second port 22 and avoid loosening of the functional module 20 due to accidental touch, ensure the reliability of electrical conduction between the functional module 20 and the host 10, ensure the reliability of the detachable connection between the first assembly part 11 and the second assembly part 21, and ensure the good cooperation between the first interface and the second interface for electrical conduction and stable connection.
[0065] In some embodiments, a second abutting surface is provided on the circumferential edge of the limiting groove 13 , and the first abutting surface and the second abutting surface are in contact with each other.
[0066] It can be understood that the first abutting surface and the second abutting surface are in surface contact, which can provide a larger contact area, thereby increasing the stability and bearing capacity between the functional module 20 and the host 10, reducing the deformation and displacement of the functional module 20, and improving the overall stability of the functional module 20 when installed on the host 10; ensuring that the connection between the functional module 20 and the host 10 is tighter, reducing the possibility of gaps and looseness, and helping to improve the overall stiffness and durability of the connection between the functional module 20 and the host 10; in addition, the first abutting surface and the second abutting surface can both be flat or curved. When the first abutting surface and the second abutting surface are both flat, the stability between the functional module 20 and the host 10 can be improved, the tightness of the connection and the simplification of the processing process can be improved, and it is also beneficial to aesthetics.
[0067] In some embodiments, the functional module 20 has multiple corner ends, and a second magnetic member is provided at each corner end.
[0068] It is understandable that the functional module 20 has multiple corner ends, and accordingly, the limiting slot 13 also has multiple corner ends. The corner ends of the functional module 20 and the corner ends of the limiting slot 13 are correspondingly arranged. When installing the functional module 20, as long as the approximate direction is aligned, the installation alignment of the functional module 20 and the host 10 can be achieved through the limiting and guiding effect between the corner ends, ensuring that the first magnetic element and the second magnetic element are accurately aligned, and the first port 12 and the second port 22 are aligned to achieve electrical conduction. The second magnetic element is provided at each corner end to enhance the stability of the connection between the functional module 20 and the host 10.
[0069] In some embodiments, the functional module 20 has four corner ends, each corner end has an arc-shaped transition, and the limiting groove 13 is square in shape, with a smooth transition at the tip.
[0070] In detail, each corner end has an arc-shaped transition, and the smooth transition at the tip can effectively protect the corner end of the functional module 20. The limit groove 13 is square in shape, and accordingly, the functional module 20 is also square in shape, which can ensure that the functional module 20 is correctly inserted into the limit groove 13, thereby improving the stability and reliability of the smart electronic device.
[0071] like Figure 1 and Figure 2 As shown, according to the intelligent electronic device of the embodiment of the present application, the second port 22 is centrally arranged on the plane where the functional module 20 and the host 10 abut.
[0072] According to the intelligent electronic device of the embodiment of the present application, the second port 22 is centered on the plane where the functional module 20 and the host 10 abut, which can ensure that the position of the second port 22 is convenient for connection with the first port 12. At the same time, the spatial layout around the second port 22 can leave enough space for setting other structures. In addition, the position of the second port 22 is set in this way without affecting the overall appearance and design aesthetics of the functional module 20 and the host 10 after installation, which helps to enhance the overall image of the intelligent electronic device.
[0073] According to the intelligent electronic device of the embodiment of the present application, the first port 12 and the second port 22 are plug-connected.
[0074] According to the intelligent electronic device of the embodiment of the present application, the first port 12 and the second port 22 are plugged into each other to achieve electrical conduction, which can ensure the stability and reliability of the electrical connection between the first port 12 and the second port 22. At the same time, the interface of the common plug-in method can realize industrial standardized design, which can facilitate the interconnection between devices and is conducive to improving the overall compatibility of the intelligent electronic device. In addition, the professional plug-in connection design can optimize the signal path, reduce electromagnetic interference, and is conducive to improving the clarity and stability of the signal transmission between the functional module 20 and the host 10.
[0075] like Figure 1 and Figure 2 As shown, according to the intelligent electronic device of an embodiment of the present application, a main control board is provided in the host 10, the main control board is electrically connected to the first port 12, and the functional module 20 is divided into a first functional module 20 and a second functional module 20, and the first functional module 20 and the second functional module 20 are arranged in parallel on the host 10.
[0076] In detail, a main control board is provided in the host 10, and the first functional module 20 and the second functional module 20 are arranged in parallel on the host 10, that is, the first port 12 corresponding to the first functional module 20 and the first port 12 corresponding to the second functional module 20 are arranged in parallel on the host 10, so that the control lines corresponding to the main control board can be clearly divided into areas, which can enhance the readability and manageability of the code.
[0077] The first functional module 20 and the second functional module 20 may be arranged side by side on the host 10 along the width direction of the host 10, or may be arranged along the length direction of the host 10. The first functional module 20 and the second functional module 20 may have different functions. For example, the first functional module 20 may be a module with a camera function, while the second functional module 20 may be a module with a function of playing or recording voice information. This improves the convenience of upgrading or expanding different functional aspects of the intelligent electronic device.
[0078] In some embodiments, the host 10 includes a front and a back facing each other. The front of the host 10 is provided with a display screen 30 , which is electrically connected to the main control board. The back of the host 10 is provided with a functional module 20 .
[0079] According to the intelligent electronic device of the embodiment of the present application, it is configured in this way, so that the user can intuitively view the system status and operation information through the display screen 30, and can also display important information such as system operating parameters and error prompts, and can also provide a simple control interface to facilitate user settings and adjustments; and the functional module 20 is set on the back, which is convenient for the centralized setting of the functional module 20, making the overall appearance of the host 10 more concise, which is conducive to the host 10 having better interactivity and controllability, and at the same time can ensure that the appearance of the host 10 is more concise and beautiful, which helps to improve the user experience and facilitate daily use.
[0080] like Figure 2 and Figure 3 As shown, in some embodiments, a functional module 20 is provided at the upper end of the back of the host 10 . When a limiting groove 13 is provided on the host 10 , two adjacent limiting grooves 13 are arranged side by side along the width direction of the host 10 .
[0081] According to the intelligent electronic device of the embodiment of the present application, the two adjacent limit grooves 13 are arranged side by side along the width direction of the host 10, so that when the functional module 20 is installed on the host 10, it can be arranged side by side along the width direction of the host 10, which can increase the stability of the host 10. At the same time, the two adjacent limit grooves 13 are arranged side by side, which can provide more possibilities for structural settings of installation and disassembly, and the structural settings of the functional modules 20 can be selected more flexibly. When more functional modules 20 need to be added, the functions of the host 10 can be expanded without making greater changes to the structural settings of the host 10. Setting the functional module 20 at the upper end of the back of the host 10 can make the position of the functional module 20 more compact, which is convenient for the user to manually grasp.
[0082] In some embodiments, the first functional module 20 is configured as a camera module, and the second port 22 of the camera module is electrically connected to the first port 12 for transmitting image electrical signals. The second functional module 20 is configured as a speaker module, and the second port 22 of the speaker module is electrically connected to another first port 12 for transmitting audio electrical signals.
[0083] In detail, the image data collected by the camera module will be transmitted to the first port 12 via the second port 22 and then transmitted to the main control board via the first port 12, so as to be processed by the main control board or displayed on the display screen 30; the electrical connection between the second port 22 and the first port 12 of the speaker module is used to transmit audio electrical signals, so that the audio data received by the speaker module will be transmitted to the second port 22 through the first port 12, so as to play the sound. Such a setting can enable effective signal transmission between the camera module and the speaker module and the main control board, thereby realizing the functions of image acquisition and audio playback, so that users can replace camera modules and speaker modules with different specifications and parameters according to the usage scenarios, thereby enriching the user experience.
[0084] According to the intelligent electronic device of the embodiment of the present application, the circumferential side wall of the functional module 20 is provided with anti-slip grooves, and the anti-slip grooves are exposed.
[0085] In detail, the anti-slip pattern is exposed externally, which can enhance the friction of the user's grip and improve the stability of the grip, thereby reducing the risk of slipping. This is particularly important for the functional module 20 that may need to be replaced frequently. At the same time, when the user grips the functional module 20, it can enhance the user's hand feel and overall touch when gripping the functional module 20, thereby enhancing the user's usage experience. In addition, the design of the anti-slip pattern can enrich the visual effect of the functional module 20 and increase the overall beauty of the functional module 20. In addition, the anti-slip pattern can also play a certain protective role, preventing the user's palm from being damaged during long-term use.
[0086] The types of anti-slip patterns include but are not limited to horizontal patterns, diagonal patterns, dot patterns, wavy patterns, and combinations thereof.
[0087] The materials used to make the anti-slip pattern include but are not limited to ABS, PVC, and polyurethane.
[0088] In some embodiments, a snap-fit member is provided on the functional module 20 , and a snap-fit groove is provided on the peripheral wall of the limiting groove 13 , in which the snap-fit member is snapped.
[0089] In detail, when the functional module 20 is installed in the limit slot 13, the fastener will be inserted and locked in the snap-in slot, playing a role of positioning and fixing. In this way, the fastener and the snap-in slot can cooperate with the first assembly part 11 and the second assembly part 21 to realize the installation and disassembly between the functional module 20 and the host 10, thereby improving the flexibility of the combination between the functional module 20 and the host 10. At the same time, the matching design of the fastener and the snap-in slot ensures the reliability and stability of the connection, especially when the user is a young child, who is easy to swing or throw away, thereby reducing the possibility of separation and damage between the functional module 20 and the host 10 when subjected to a huge impact.
[0090] Among them, the shape of the fastener can be various, such as round, square or rectangular, etc. The fastener generally includes one or more raised parts, which are used to insert into the snap-in groove to achieve fixation. Common fasteners include spring snaps, rotating snaps and plug-in snaps, etc., and the shape of the snap-in groove needs to cooperate with the fastener to ensure a good connection. The notch of the snap-in groove can be a straight groove, an oblique groove and a circular groove, etc., and the notch of the snap-in groove is usually designed to accommodate the raised part of the fastener and has a certain depth and width to ensure that the fastener can be firmly fixed in the notch. The edge of the notch can also be provided with an anti-slip structure or a positioning structure to increase the connection stability between the fastener and the snap-in groove.
[0091] In some embodiments, the functional module 20 is provided with a mounting hole and a movable button, an elastic member and a snap-fit member are provided in the mounting hole, the button is connected to the snap-fit member, the snap-fit member is movable along the axial direction of the mounting hole, the snap-fit member has a first position and a second position, the snap-fit member is engaged with the snap-fit slot when in the first position, and is disengaged from the snap-fit slot when in the second position.
[0092] Specifically, the button is connected to the latch, and the user can drive the latch to move along the axial direction of the mounting hole by toggling the button. The latch is engaged with the latching slot in the first position. When the latch moves from the first position to the second position, it needs to overcome the resistance of the elastic member. The elastic member provides the latch with a driving force to move from the second position toward the first position. When the latch is in the first position, the latch is engaged with the latching slot. When the latch is in the second position, the latch is disengaged from the latching slot, thereby facilitating the fixing or release of the functional module 20. The elastic member can provide a certain buffering and support effect for the latch. Such a setting comprehensively takes into account the installation convenience and disassembly of the functional module 20.
[0093] In some embodiments, at least one positioning post is provided in the limiting groove 13 , and at least one positioning hole is provided on the functional module 20 , and the positioning post passes through the positioning hole.
[0094] In detail, when the functional module 20 is embedded in the limiting groove 13, the positioning column is passed through the positioning hole, which can play a role in preventing mistakes. When the functional module 20 and the limiting groove 13 are assembled, it is only necessary to find the general direction corresponding to the positioning column and the positioning hole to ensure that when the functional module 20 and the limiting groove 13 are assembled, the first port 12 and the second port 22 can be accurately aligned and connected, reducing the difficulty of assembly during installation.
[0095] Among them, at least one positioning column is provided in the limiting groove 13, and there may be one or more positioning columns, such as one, two, three, four, five and six, etc.; at least one positioning hole is provided on the functional module 20, such as one, two, three, four, five and six, etc., and the number of positioning columns and positioning holes is set accordingly. In some embodiments, the number of positioning columns and positioning holes corresponds one to one.
[0096] It should be noted that although the detailed description above mentions several devices or sub-devices of a device, this division is not mandatory. In fact, according to the embodiments of the present invention, the features and functions of two or more devices described above can be embodied in a single device. Conversely, the features and functions of a single device described above can be further divided and embodied by multiple devices.
[0097] Although the operations of the method of the present invention are described in a particular order in the accompanying drawings, this does not require or imply that the operations must be performed in that particular order, or that all of the operations shown must be performed to achieve the desired results. Rather, the steps depicted in the flowcharts may be performed in a different order. Additionally or alternatively, certain steps may be omitted, multiple steps may be combined into one step, and / or a single step may be broken down into multiple steps.
[0098] It should be understood that each block in the flowchart and / or block diagram, and combinations of blocks in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, or other programmable data processing device to produce a machine. These computer program instructions are executed by the computer or other programmable data processing device to produce a device that implements the functions / operations specified in the blocks in the flowchart and / or block diagram.
[0099] These computer program instructions can also be stored in a computer-readable medium that enables a computer or other programmable data processing device to operate in a specific manner. In this way, the instructions stored in the computer-readable medium produce a product that includes an instruction device that implements the functions / operations specified in the blocks in the flowchart and / or block diagram.
[0100] Computer program instructions may also be loaded onto a computer, other programmable data processing apparatus, or other device so that a series of operational steps are performed on the computer, other programmable data processing apparatus, or other device to produce a computer-implemented process, such that the instructions executed on the computer or other programmable apparatus provide a process that implements the functions / operations specified in the blocks in the flowchart and / or block diagram.
[0101] The use of the verbs "comprise", "include" and their conjugations in the application documents does not exclude the presence of elements or steps other than those stated in the application documents. The article "a" or "an" preceding an element does not exclude the presence of a plurality of such elements.
[0102] Although the spirit and principles of the present invention have been described with reference to several specific embodiments, it should be understood that the present invention is not limited to the specific embodiments disclosed, and the division into various aspects does not mean that the features of these aspects cannot be combined to benefit. Such division is merely for the convenience of expression. The present invention is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims. The scope of the appended claims is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures and functions.
Claims
1. An intelligent electronic device, characterized in that: include: A host, wherein the host is provided with at least one first assembly component and the host is provided with at least one first port; At least one functional module is provided with a second assembly part and a second port, the first assembly part and the second assembly part are detachably mechanically connected, and the first port and the second port are detachably electrically connected, wherein the number of the second ports corresponds to the number of the first ports, and the number of the first assembly parts corresponds to the number of the second assembly parts.
2. The intelligent electronic device according to claim 1, characterized in that The first assembly part is configured as a first magnetic attraction part, and the second assembly part is configured as a second magnetic attraction part. The first magnetic attraction part and the second magnetic attraction part can be adsorbed or separated.
3. The intelligent electronic device according to claim 2, characterized in that The host is provided with a limiting groove, the first assembly part is embedded in the limiting groove, and at least a part of the functional module is embedded in the limiting groove.
4. The intelligent electronic device according to claim 3, characterized in that The functional module includes a main body and a clamping portion connected to each other, the main body defines a first abutting surface in the circumferential direction of the clamping portion, the clamping portion is embedded in the limiting groove, and the first abutting surface abuts against the circumferential edge of the limiting groove.
5. The intelligent electronic device according to claim 4, characterized in that A second abutting surface is provided on the circumferential edge of the limiting groove, and the first abutting surface and the second abutting surface are in contact with each other.
6. The intelligent electronic device according to any one of claims 3 to 5, characterized in that: The functional module has a plurality of corner ends, and each corner end is provided with the second magnetic attraction component.
7. The intelligent electronic device according to claim 6, characterized in that The functional module has four corner ends, each of which has an arc-shaped transition. The limiting groove is square in shape, and the tip thereof has a smooth transition.
8. The intelligent electronic device according to any one of claims 1 to 5, characterized in that: The second port is centrally located on a plane where the functional module abuts the host.
9. The intelligent electronic device according to any one of claims 1 to 5, characterized in that: The first port and the second port are plug-connected.
10. The intelligent electronic device according to any one of claims 1 to 5, characterized in that: The host is provided with a main control board, which is electrically connected to the first port. The functional module is divided into a first functional module and a second functional module, which are arranged in parallel on the host.
11. The intelligent electronic device according to claim 10, characterized in that: The host comprises a front side and a back side opposite to each other. The front side of the host is provided with a display screen which is electrically connected to the main control board. The back side of the host is provided with the functional module.
12. The intelligent electronic device according to claim 11, characterized in that The functional module is provided at the upper end of the back side of the host. When the host is provided with a limiting groove, two adjacent limiting grooves are arranged side by side along the width direction of the host.
13. The intelligent electronic device according to claim 11, characterized in that The first functional module is configured as a camera module, the second port of the camera module is electrically connected to the first port for transmitting image electrical signals, and the second functional module is configured as a speaker module, the second port of the speaker module is electrically connected to another first port for transmitting audio electrical signals.
14. The intelligent electronic device according to any one of claims 1 to 5, characterized in that: The circumferential side walls of the functional module are provided with anti-slip grooves, and the anti-slip grooves are exposed externally.
15. The intelligent electronic device according to any one of claims 3 to 5, characterized in that: The functional module is provided with a snap-fitting piece, and the peripheral wall of the limiting groove is provided with a snap-fitting groove, in which the snap-fitting piece is snap-fitted.
16. The intelligent electronic device according to claim 15, characterized in that The functional module is provided with a mounting hole and a movable button, an elastic member and the fastener are provided in the mounting hole, the button is connected to the fastener, the fastener is movable along the axial direction of the mounting hole, the fastener has a first position and a second position, the fastener is engaged with the fastening groove when in the first position, and is disengaged from the fastening groove when in the second position.
17. The intelligent electronic device according to any one of claims 3 to 5, characterized in that: At least one positioning column is provided in the limiting groove, and at least one positioning hole is provided on the functional module, and the positioning column is passed through the positioning hole.