Electronic device
By designing a modular camera device in flat panel products, using magnetic suction structures and flipped parts to achieve multi-angle shooting and convenient installation, the problems of complex structure and easy damage in the prior art are solved, and the user experience and equipment stability are improved.
Patent Information
- Application Number
- CN202510099683.9
- 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
When existing flat panel products realize the function of flip-flopable cameras, they have complex structures, easy to damage, and high maintenance costs, which affects aesthetics and waterproof performance, increasing user operation difficulty and cost.
A modular imaging device is designed, and a magnetic structure is used to connect it to the frame of the electronic device. Multi-angle shooting of the imaging part is realized through the flipped part, and the data transmission part realizes data transmission with the electronic device.
It realizes the fast and convenient installation of the camera device, improves the convenience and stability of use, reduces the user's operation complexity and maintenance costs, and enhances the flexibility and versatility of the camera device.
Smart Images

Figure CN120075584A_ABST
Abstract
Description
[0001] This application is a divisional application of a Chinese patent application submitted to the National Intellectual Property Administration on November 30, 2023, with the application number 202311635673.X and the application title "Camera Device and Electronic Device". Technical Field
[0002] This application relates to the field of auxiliary camera technology, and particularly relates to a camera device and an electronic device. Background Art
[0003] In some fields, such as the education field, entertainment scenarios, and commercial scenarios, there is often a need for tablet products equipped with a flipable camera. For example, in the education field, in order to meet the needs of online classes, etc., a tablet product that can achieve front camera tilting for taking pictures is required, so as to facilitate taking pictures of text or images on the desktop, thereby improving the teaching and learning effects. However, existing tablet products have the following problems in realizing this function:
[0004] Some tablet products adopt a pop-up camera structure, that is, driven by a spring or a motor, the camera is popped out from inside the tablet to achieve the function of front camera tilting for taking pictures. The disadvantages of this structure are that, on the one hand, the structure is complex, easy to be damaged, and the maintenance cost is high; on the other hand, it affects the aesthetics and waterproof performance of the tablet, reducing the user experience.
[0005] There are also some tablet products that adopt a flip-type camera structure, that is, through mechanical or electronic control, the camera is flipped from one side of the tablet to the other side to achieve the switching between the front camera and the rear camera. The disadvantages of this structure are that, on the one hand, the structure is complex, easy to be damaged, and the maintenance cost is high; on the other hand, it affects the aesthetics and waterproof performance of the tablet, reducing the user experience.
[0006] Some other tablet products adopt a multi-camera solution, that is, multiple cameras are installed at different positions on the tablet to achieve shooting at different angles. The disadvantages of this solution are that, on the one hand, it increases the cost and weight of the tablet, affecting the portability and battery life of the tablet; on the other hand, it increases the operation difficulty and complexity for users, reducing the user experience. Summary of the Invention
[0007] This application provides a camera device and an electronic device, and this camera device is used to avoid the technical problems of complex structure and inconvenient installation of the camera device used in the electronic device.
[0008] To achieve the above object, the embodiments of this application adopt the following technical solutions:
[0009] In a first aspect, a camera device is provided. The camera device is used in an electronic device. The electronic device includes a frame with a magnetic structure. The camera device includes: a main body, on which a magnetic part is provided, which is used to attract the magnetic structure so as to adsorb the main body to the frame; a flip part, which is rotatably arranged on the main body; a camera part, which is arranged on the flip part; and a data transmission part, which is arranged on the main body or the flip part and is electrically connected to the camera part, so that data can be transmitted between the camera part and the electronic device through the data transmission part.
[0010] The camera device provided in the embodiment of the present application realizes the modularization of the camera device, and will not have a great impact on the appearance of the electronic device. Through the attraction between the magnetic attraction part and the magnetic attraction structure, the camera device can be quickly and conveniently installed on the frame of the electronic device, thereby improving the convenience and stability of the camera device. The setting of the magnetic attraction part and the magnetic attraction structure can achieve seamless connection between the camera device and the electronic device, without complicated installation steps and tools, and without worrying about the loosening or falling off of the camera device, thereby saving the user's time and energy. Through the rotatable setting of the flip part, multi-angle shooting of the camera part can be achieved, thereby meeting different camera needs, such as front camera, rear camera, desktop shooting, etc., thereby improving the flexibility and versatility of the camera device. The setting of the flip part can make the camera part rotate on an axis, thereby realizing the shooting of the front and back sides of the camera part, as well as tilt shooting at different angles, adapting to different camera scenes, such as video calls, selfies, photos, scanning, etc., enriching the user's camera experience. By setting up the data transmission unit, data transmission between the camera unit and the electronic device can be realized, so that the camera device can be used in conjunction with the control board and image processor of the electronic device, thereby improving the functionality and compatibility of the camera device.
[0011] In one embodiment, a damping part is provided between the flip part and the main body to generate damping between the rotation axis of the flip part and the main body. The camera device of the embodiment of the present application can fine-tune the rotation angle of the flip part during the rotation of the flip part by providing the damping part, so that the flip part can accurately stay at the shooting angle required by the user, thereby improving the accuracy and stability of the camera device. The provision of the damping part can cause the flip part to be subjected to a certain friction during rotation, thereby increasing the rotation accuracy of the flip part, so that the flip part can be adjusted to a suitable shooting angle according to the user's wishes, thereby meeting the user's different camera needs, and also ensuring the clarity and stability of the camera part. After the rotation of the flip part is completed, the rotation position of the flip part is fixed, so that the flip part will not loosen or shift due to the action of external force or gravity.
[0012] In one embodiment, the flipping part includes a flipping base body and rotating shafts respectively arranged on both sides of the flipping base body. The two rotating shafts located on both sides of the flipping base body are concentrically arranged with the rotation axis. Two opposite mounting holes are provided on the main body part, and the two rotating shafts are respectively rotatably mounted in the two mounting holes. By the concentric arrangement of the rotating shafts and the rotation axis, the rotation axis of the flipping base body can coincide with the rotation axis of the main body part, so that the rotation of the flipping base body will not affect the position and state of the main body part, thereby improving the use stability and reliability of the imaging device.
[0013] In one embodiment, the damping part includes a rotary damper. The rotary damper is installed inside the main body part, and one of the two rotating shafts is drivingly connected to the rotary damper. A rotational damping can be generated between the rotation axis of the flipping part and the main body part, so that the rotation of the flipping part is smoother and more stable, and the too-fast or too-slow rotation of the flipping part can be avoided.
[0014] In one embodiment, a receiving recess is provided on the main body part, and the two mounting holes are respectively arranged on opposite sides of the receiving recess. The flipping part has a hidden position received in the receiving recess. When the flipping part is not in use, it can not occupy the space of the main body part and does not affect the appearance of the main body part, so that the imaging device is thinner, lighter and more concise. At the same time, it also protects the components of the flipping part and the imaging part, preventing the intrusion of dust and stains. At the same time, it can also provide a safe protection position for the flipping part, so that the flipping part can avoid loosening or displacement due to the action of external force or gravity, thereby improving the use reliability and durability of the imaging device.
[0015] In one embodiment, a relief notch is provided on the main body part, and the two mounting holes are respectively arranged on opposite sides of the relief notch. The relief notch is used to make way for the mounting holes so that the flipping part can be flipped 360°. Through the setting of the relief notch, an unobstructed rotation space can be provided for the flipping part, so that the flipping part can be flipped 360°, thereby realizing shooting at any angle of the flipping part.
[0016] In one embodiment, a contact part electrically connected to the control board of the electronic device is provided on the frame body. The data transmission part includes a contact connector. When the main body part is adsorbed on the frame body, the contact connector contacts and is electrically connected to the contact part. Through the setting of the contact part, a reliable electrical connection position can be provided for the data transmission part, so that the data transmission part can be electrically connected to the control board of the electronic device, thereby realizing data transmission between the imaging device and the electronic device, and improving the use functionality and compatibility of the imaging device.
[0017] In one embodiment, the contact connector is arranged on the main body part. The imaging device includes a main board part electrically connected to the imaging part. The main board part is installed inside the main body part and is electrically connected to the contact connector.
[0018] In one embodiment, the main board part and the camera part are electrically connected by an electric wire. At least one of the rotating shafts is internally provided with a through cavity, and the through cavity is communicated with the inside of the main body part. The through cavity is used for the electric wire to pass through. By providing the through cavity, a rotatable channel can be provided for the electric wire, so that the electric wire can pass through the rotating shaft, thereby realizing the relative rotation between the electric wire and the rotating shaft, and improving the flexibility and stability of the use of the camera device. The setting of the through cavity avoids winding or pulling between the electric wire and the rotating shaft, thereby protecting the integrity and safety of the electric wire.
[0019] In one embodiment, a first connecting part is provided on the flipping part, and a second connecting part is provided on the side wall of the accommodating recess. When the flipping part is in the hidden position, the first connecting part is connected to the second connecting part to fix the flipping part in the accommodating recess. A reliable fixing method is provided for the flipping part, so that when the flipping part is stored, a tight fit can be formed with the accommodating recess, avoiding the flipping part accidentally shaking out of the accommodating recess, and preventing wear and damage of the components of the flipping part.
[0020] In one embodiment, the first connecting part includes a first magnet assembly, and the second connecting part includes a second magnet assembly. When the flipping part is in the hidden position, the first magnet assembly and the second magnet assembly attract each other to fix the flipping part in the accommodating recess.
[0021] In one embodiment, the camera part includes a first circuit board and a first camera. The first circuit board is electrically connected to the main board part through an electric wire. An angle sensing part is provided on the first circuit board. The first camera is arranged on the first side of the flipping seat body and is electrically connected to the first circuit board, wherein the first side of the flipping seat body is located in the flipping direction of the flipping part. By providing the first camera, a component that can be photographed can be provided for the flipping part, so that the flipping part can take pictures on the first side of the flipping seat body, thereby realizing the front shooting of the flipping part. Combining the function of the angle sensing part to sense the angle of the first camera can improve the flexibility and versatility of the use of the camera device.
[0022] In one embodiment, the camera part further includes a second camera. The second camera is arranged on the second side of the flipping seat body and is electrically connected to the first circuit board, wherein the first side of the flipping seat body is oppositely arranged to the second side of the flipping seat body.
[0023] In one embodiment, the main board part includes a main board and an image processor arranged on the main board. The main board part is electrically connected to the electric wire. The image processor can process the image signals on the main board, so that the camera device can process and display the images of the camera part, thereby improving the use effect and performance of the camera device.
[0024] In one embodiment, the imaging unit further includes an illumination unit, which is disposed on the first side of the flip base and electrically connected to the first circuit board. By providing the illumination unit, a component capable of providing illumination for the imaging unit can be provided, enabling the illumination unit to have functions such as a flash, a fill light, an infrared light, etc., so that the imaging device can illuminate and fill light for the image of the imaging unit, thereby improving the usage effect and performance of the imaging device.
[0025] The second aspect of the present application provides an electronic device, which includes a housing, a magnetic attraction structure disposed on the housing, a control board disposed inside the housing, and an imaging device. Among them, the imaging device is the above-mentioned imaging device. A contact portion is disposed on the housing, and the contact portion is electrically connected to the control board. Both the contact portion and the magnetic attraction structure are disposed on the back of the upper part of the housing or the upper end of the housing.
[0026] Through the above technical solution, since the electronic device includes the above-mentioned imaging device, it at least has all the beneficial effects of the imaging device, which will not be elaborated here. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 It is a schematic structural diagram of the imaging device provided by the embodiment of the present application;
[0028] Figure 2 It is a front view of the imaging device provided by the embodiment of the present application;
[0029] Figure 3 It is a rear view of the imaging device provided by the embodiment of the present application;
[0030] Figure 4 It is a top view of the imaging device provided by the embodiment of the present application;
[0031] Figure 5 It is a schematic structural diagram of the imaging device with some components removed provided by the embodiment of the present application;
[0032] Figure 6 It is a front view of the imaging device with some components removed provided by the embodiment of the present application;
[0033] Figure 7 It is a schematic structural diagram of the imaging device with the main body and the cover removed provided by the embodiment of the present application;
[0034] Figure 8 It is a front view of the imaging device with the main body and the cover removed provided by the embodiment of the present application;
[0035] Figure 9 It is a rear view of the imaging device with the main body and the cover removed provided by the embodiment of the present application;
[0036] Figure 10Schematic diagram of the main body with components such as the cover removed, provided by an embodiment of the present application;
[0037] Figure 11 Front view of the main body with components such as the cover removed, provided by an embodiment of the present application;
[0038] Figure 12 Rear view of the main body with components such as the cover removed, provided by an embodiment of the present application;
[0039] Figure 13 Schematic diagram of the main body with components such as the housing removed, provided by an embodiment of the present application;
[0040] Figure 14 Front view of the main body with components such as the housing removed, provided by an embodiment of the present application;
[0041] Figure 15 Rear view of the main body with components such as the housing removed, provided by an embodiment of the present application;
[0042] Figure 16 Top view of the main body with components such as the housing removed, provided by an embodiment of the present application;
[0043] Figure 17 Schematic cross-sectional view of the imaging device provided by an embodiment of the present application;
[0044] Figure 18 Schematic cross-sectional view of the imaging device at another position provided by an embodiment of the present application;
[0045] Figure 19 Schematic cross-sectional view of the imaging device at yet another position provided by an embodiment of the present application;
[0046] Figure 20 Front view of the electronic device provided by an embodiment of the present application;
[0047] Figure 21 Rear view of the electronic device provided by an embodiment of the present application;
[0048] Figure 22 Rear view of the electronic device provided by another embodiment of the present application;
[0049] Figure 23 Schematic diagram of the electronic device with the imaging device removed, provided by an embodiment of the present application;
[0050] Figure 24 is Figure 23 Local enlarged view of area A in
[0051] Figure 25 Data transmission flow chart of the electronic device provided by an embodiment of the present application.
[0052] Among them, the meanings represented by each attached drawing reference numeral are as follows:
[0053] 10. Main body part; 11. Magnetic attraction part; 12. Mounting hole; 13. Accommodating recess; 131. Second magnet assembly; 14. Housing; 15. Cover body;
[0054] 20. Flipping part; 21. Flipping base body; 211. Base; 212. Cover plate; 22. Rotating shaft; 221. Through cavity; 23. First magnet assembly;
[0055] 30. Camera part; 31. First circuit board; 311. Angle sensing part; 312. Plug interface; 32. First camera;
[0056] 41. Contact connector;
[0057] 51. Rotary damper;
[0058] 60. Main board part; 61. Main board; 62. Image processor;
[0059] 70. Electric wire;
[0060] 80. Sealing foam;
[0061] 90. Frame body; 91. Magnetic attraction structure; 92. Contact part. Detailed implementation manners
[0062] To make the objectives, technical solutions, and advantages of this application clearer, the following will further describe the implementation manners of this application in detail with reference to the accompanying drawings.
[0063] It should be understood that in the description of this application, it is necessary to understand that the orientation or positional relationship indicated by the terms "length", "width", "thickness", "top", "bottom", "inner", "outer", "upper", "lower", "left", "right", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be understood as a limitation to this application.
[0064] The terms "first", "second", "third", "fourth", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. For example, the first pushing part and the second pushing part are only for distinguishing different pushing parts, and their sequence is not limited. The first pushing part can also be named the second pushing part, and the second pushing part can also be named the first pushing part without departing from the scope of the described embodiments. And the terms "first", "second", "third", "fourth", etc. do not limit that the indicated features must be different.
[0065] In the embodiments of the present application, unless otherwise clearly specified or limited, terms such as "connected" and "coupled" shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present application can be understood according to specific circumstances. In the description of the embodiments of the present application, the meaning of "a plurality" is two or more, unless otherwise clearly and specifically limited.
[0066] In the embodiments of the present application, "and / or" is merely a correlation relationship describing the associated objects, indicating that three relationships may exist. For example, A and / or B may represent: A exists alone, A and B exist simultaneously, and B exists alone. In addition, the character " / " in this article generally represents an "or" relationship between the associated objects before and after.
[0067] It should be noted that in the embodiments of the present application, words such as "in one embodiment", "exemplarily", and "for example" are used to give examples, illustrations, or explanations. Any embodiment or design solution described as "in one embodiment", "exemplarily", or "for example" in the embodiments of the present application should not be construed as being more preferred or having more advantages than other embodiments or design solutions. Exactly, the use of words such as "in one embodiment", "exemplarily", and "for example" is intended to present relevant concepts in a specific manner.
[0068] In order to make the purpose, technical solutions, and advantages of the present application clearer, the present application will be further described in detail below with reference to the accompanying drawings and embodiments.
[0069] In some fields, such as the education field, entertainment scenarios, and commercial scenarios, there is often a need to equip tablet products with a flipable camera. For example, in the education field, in order to meet the needs of online classes, etc., a tablet product that can achieve front camera tilting for taking pictures is required, so as to facilitate taking pictures of the text or images on the desktop, thereby improving the teaching and learning effects. However, in terms of realizing this function, the existing tablet products have the following problems:
[0070] Some tablet products adopt a pop-up camera structure, that is, driven by a spring or a motor, the camera is popped out from inside the tablet to achieve the function of front camera tilting for taking pictures. The disadvantages of this structure are that, on the one hand, the structure is complex, easy to damage, and the maintenance cost is high; on the other hand, it affects the aesthetics and waterproof performance of the tablet and reduces the user experience.
[0071] There are also some tablet products that adopt a flip - type camera structure, that is, through mechanical or electronic control, the camera is flipped from one side of the tablet to the other side to achieve the switching between front - facing and rear - facing cameras. The disadvantages of this structure are, on the one hand, the structure is complex, easy to be damaged, and the maintenance cost is high; on the other hand, it affects the aesthetics and waterproof performance of the tablet, reducing the user experience.
[0072] Some other tablet products adopt a multi - camera solution, that is, multiple cameras are installed at different positions on the tablet to achieve shooting from different angles. The disadvantages of this solution are, on the one hand, it increases the cost and weight of the tablet, affecting the portability and battery life of the tablet; on the other hand, it increases the operation difficulty and complexity for users, reducing the user experience.
[0073] Specifically, please refer to Figures 1 to 16 and Figure 23 and Figure 24 As shown in
[0074] the camera device of the embodiment of the present application is used for an electronic device. The electronic device includes a housing 90 having a magnetic attraction structure 91. The camera device includes: a main body part 10, a flipping part 20, a camera part 30 and a data transmission part. A magnetic attraction part 11 is provided on the main body part 10 for attracting with the magnetic attraction structure 91 to adsorb the main body part 10 on the housing 90; the flipping part 20 is rotatably provided on the main body part 10; the camera part 30 is provided on the flipping part 20; the data transmission part is provided on the main body part 10 or the flipping part 20 and is electrically connected to the camera part 30, and data can be transmitted between the camera part 30 and the electronic device through the data transmission part. The above - mentioned setting method realizes the modularization of the camera device and does not have a great impact on the appearance of the electronic device. Specifically, by attracting the magnetic attraction part 11 with the magnetic attraction structure 91, the camera device can be quickly and conveniently installed on the housing 90 of the electronic device, thereby improving the convenience and stability of use of the camera device. The setting of the magnetic attraction part 11 and the magnetic attraction structure 91 can enable a seamless connection between the camera device and the electronic device, without complex installation steps and tools, and without worrying about the loosening or falling off of the camera device, thus saving the user's time and energy, and at the same time ensuring the safety and reliability of the camera device. Among them, the electronic device refers to an electronic product having components such as a display screen, a control board, an image processor 62, etc., such as a tablet computer, a notebook computer, a smart phone, etc., and can be used in various occasions such as education, entertainment, and office. The housing 90 refers to the outer shell of the electronic device, which is used to protect the internal components of the electronic device and also plays a role in aesthetics. The magnetic attraction structure 91 refers to a structure that uses magnetic force to adsorb objects and can be used to achieve the connection or separation between objects. The magnetic attraction part 11 refers to a part on the camera device for attracting with the magnetic attraction structure 91 to achieve the connection or separation between the camera device and the electronic device.Through the rotatable setting of the flipping part 20, the imaging device according to the embodiment of the present application can achieve multi-angle shooting of the imaging part 30, so as to meet different imaging requirements, such as front camera shooting, rear camera shooting, desktop shooting, etc., thereby improving the flexibility and versatility of the imaging device. The setting of the flipping part 20 enables the imaging part 30 to rotate on an axis, so as to achieve shooting on both the front and back sides of the imaging part 30, as well as tilting shooting at different angles, adapting to different imaging scenarios, such as video calls, selfies, photo taking, scanning, etc., enriching the user's imaging experience and also saving the cost for the user to purchase multiple cameras. Among them, the flipping part 20 refers to a part of the imaging device for supporting and rotating the imaging part 30 to achieve multi-angle shooting of the imaging part 30. The imaging part 30 refers to a part of the imaging device for taking images, including components such as a camera, a circuit board, and an illumination part.
[0075] Through the setting of the data transmission part, the imaging device according to the embodiment of the present application can achieve data transmission between the imaging part 30 and an electronic device, so that the imaging device can be used in cooperation with the control board and the image processor 62 of the electronic device, thereby improving the functionality and compatibility of the imaging device. The setting of the data transmission part enables the transmission of electrical signals between the imaging part 30 and the electronic device, so that the imaging part 30 can receive control instructions from the electronic device and send the image data captured by the imaging part 30 to the electronic device, so that the imaging device can coordinate with the software and hardware of the electronic device to achieve better image quality and effects, and also increase the applicable range and compatibility of the imaging device. Among them, the data transmission part refers to a part of the imaging device for data transmission with an electronic device, which can be a contact connector 41 or a wireless module and other components. The control board refers to a part inside the electronic device for controlling various functions of the electronic device, including sending control instructions and receiving image data. The image processor 62 refers to a part inside the electronic device for processing image data, including compression, decoding, filtering, enhancement, etc.
[0076] The usage scenarios of the imaging device according to the embodiments of the present application can be as follows: Educational scenario: The imaging device can be used in educational learning tablets to facilitate shooting text or images on the desktop, thereby improving the teaching and learning effects. For example, when a teacher needs the imaging device, the imaging device can be installed on the tablet. The teacher can use the imaging device to shoot the content in the textbook or on the blackboard and adjust the angle of the imaging unit 30 so that students can view it on the tablet; students can use the imaging device to shoot their own homework or test papers and adjust the angle so that the teacher can correct them on the tablet; teachers and students can also use the imaging device for video calls to achieve remote teaching. Entertainment scenario: The imaging device can be used in entertainment tablets to facilitate shooting oneself or the surrounding scenery, thereby increasing the fun of entertainment. For example, users can use the imaging device to shoot their own selfies or videos and share them on social platforms; users can also use the imaging device to shoot the surrounding scenery or people, make them into photos or videos, and save them on the tablet. When carried, it does not occupy the space of the tablet, does not change the storage method of the tablet, and is carried modularly. Commercial scenario: The imaging device can be used in commercial tablets to facilitate shooting goods or documents, thereby improving the efficiency of business. For example, merchants can, according to the shooting angles required by the products, use the imaging device to shoot pictures or videos of the goods and upload them to the Internet for display or sale; when shooting documents and contracts, business personnel can attach the imaging device to the tablet and use the imaging device to shoot the documents or contracts and send them to customers or partners for communication or signing.
[0077] A damping portion is provided between the flipping portion 20 and the main body portion 10 of the embodiment of the present application to generate damping between the rotation axis of the flipping portion 20 and the main body. Through the setting of the damping portion, damping can be generated between the rotation axis of the flipping portion 20 and the main body portion 10, so that the rotation of the flipping portion 20 is more stable and smooth, avoiding too fast or too slow rotation of the flipping portion 20, thereby improving the use comfort and safety of the imaging device. The setting of the damping portion can enable the flipping portion 20 to be subject to a certain resistance during rotation, thereby reducing the inertia and vibration of the flipping portion 20, making the rotation speed and strength of the flipping portion 20 more appropriate, thereby avoiding discomfort or danger caused to the user by the rotation of the flipping portion 20, and at the same time protecting the components of the imaging unit 30 and extending the service life of the imaging device.
[0078] In addition, the camera device of the embodiment of the present application can fine-tune the rotation angle of the flip part 20 during the rotation of the flip part 20 by setting the damping part, so that the flip part 20 can accurately stay at the shooting angle required by the user, thereby improving the accuracy and stability of the camera device. The setting of the damping part can cause the flip part 20 to be subjected to a certain friction when rotating, thereby increasing the rotation accuracy of the flip part 20, so that the flip part 20 can be adjusted to a suitable shooting angle according to the user's wishes, thereby meeting the user's different camera needs, and at the same time ensuring the clarity and stability of the camera part 30.
[0079] After the turning of the flip part 20 is completed, the turning position of the flip part 20 is fixed, so that the flip part 20 will not be loosened or shifted due to the action of external force or gravity, thereby improving the reliability and durability of the camera device. The damping part can be provided so that the turning part 20 is subjected to a certain locking force after turning to the target position, so that the turning position of the flip part 20 is fixed, thereby preventing the turning position of the flip part 20 from changing due to the user's operation or the change of the environment, thereby affecting the user's camera effect.
[0080] See also Figures 7 to 9 As shown, the flip part 20 of the embodiment of the present application includes a flip seat 21 and a rotating shaft 22 respectively arranged on both sides of the flip seat 21. The two rotating shafts 22 located on both sides of the flip seat 21 are both arranged concentrically with the rotation axis. The main body 10 is provided with two opposite mounting holes 12, and the two rotating shafts 22 are rotatably mounted in the two mounting holes 12. Through the concentric arrangement of the rotating shaft 22 and the rotation axis, the rotation axis of the flip seat 21 can be coincident with the rotation axis of the main body 10, so that the rotation of the flip seat 21 will not affect the position and state of the main body 10, thereby improving the use stability and reliability of the camera device. Through the arrangement of the flip seat 21, a rotatable support platform can be provided for the camera 30, so that the camera 30 can shoot on both sides of the flip seat 21, thereby realizing the shooting of the front and back sides of the camera 30, and the tilt shooting at different angles, thereby improving the use flexibility and versatility of the camera device.
[0081] The flip seat 21 includes a base 211 and a cover plate 212. There is an installation space between the cover plate 212 and the base 211 for installing related components of the camera unit 30, such as a circuit board, a cable, etc. The base 211 and the cover plate 212 can be connected by threaded fasteners, snap-on, etc. The cover plate 212 is provided with a through hole for exposing the camera of the camera unit 30. The through hole and the camera are sealed, such as by a sealing foam 80.
[0082] Specifically, the damping part of the embodiment of the present application includes a rotary damper 51. The rotary damper 51 is installed inside the main body part 10, and one of the two rotating shafts 22 is drivingly connected to the rotary damper 51. A rotary damping can be generated between the rotation axis of the flipping part 20 and the main body part 10, so that the rotation of the flipping part 20 is smoother and more stable, avoiding too fast or too slow rotation of the flipping part 20, thereby improving the use comfort and safety of the imaging device. Among them, driving connection means a connection that can achieve power transmission between two transmission parts. The setting of the rotary damper 51 can enable the flipping part 20 to be subject to a certain rotational resistance during rotation, thereby reducing the inertia and vibration of the flipping part 20, making the rotation speed and strength of the flipping part 20 more moderate, thus avoiding discomfort or danger caused by the rotation of the flipping part 20 to the user. At the same time, it also protects the components of the imaging part 30 and extends the service life of the imaging device. At the same time, during the rotation process of the flipping part 20, the rotation angle of the flipping part 20 can be finely adjusted, so that the flipping part 20 can accurately stay at the shooting angle required by the user. It can also enable the flipping part 20 to be subject to a certain rotational friction during rotation, thereby increasing the rotation accuracy of the flipping part 20, so that the flipping part 20 can be adjusted to the appropriate shooting angle according to the user's will. After the rotation of the flipping part 20 ends, the rotation position of the flipping part 20 is fixed, so that the flipping part 20 will not loosen or shift due to the action of external force or gravity, thereby improving the use reliability and durability of the imaging device. The setting of the rotary damper 51 can enable the flipping part 20 to be subject to a certain rotational locking force after rotating to the target position, so that the rotation position of the flipping part 20 remains unchanged.
[0083] Among them, the rotary damper 51 is a device for providing resistance to a rotating component and controlling the speed and angle of the rotating component. It can reduce the vibration and noise of the rotating component and improve the stability and service life of the rotating component. The rotary damper 51 can adopt a gear rotary damper 51, a cylindrical rotary damper 51, a rubber rotary damper 51, etc. Among them, the gear damper: uses the friction between the gear and the damping oil to generate damping. The cylindrical damper: uses the rotation of the cylinder and the damping oil to generate damping. The rubber rotary damper 51: uses the elasticity and friction of the rubber to generate damping.
[0084] See Figure 10 and Figure 11As shown, for the convenience of carrying and to avoid damage to the connection between the flipping part 20 and the main body part 10, a receiving recess 13 is provided on the main body part 10 of the embodiment of the present application. The two mounting holes 12 are respectively arranged on opposite sides of the receiving recess 13. The flipping part 20 has a hidden position received within the receiving recess 13. By providing the receiving recess 13, a hidden storage position can be provided for the flipping part 20, so that the flipping part 20 can be completely received within the main body part 10, thereby improving the usability and aesthetics of the imaging device. The provision of the receiving recess 13 enables the flipping part 20 not to occupy the space of the main body part 10 and not to affect the appearance of the main body part 10 when not in use, making the imaging device thinner, lighter and more concise. At the same time, it protects the components of the flipping part 20 and the imaging part 30 and prevents the intrusion of dust and stains. At the same time, it can also provide a safe protection position for the flipping part 20, so that the flipping part 20 can avoid loosening or displacement due to the action of external force or gravity, thereby improving the reliability and durability of the imaging device. The provision of the receiving recess 13 enables the flipping part 20 to form a tight fit with the main body part 10 when being received, so that the rotation position of the flipping part 20 is fixed, thus avoiding the change of the rotation position of the flipping part 20 due to the operation of the user or the change of the environment, which may affect the imaging effect of the user, and at the same time preventing the wear and damage of the components of the flipping part 20. When the flipping part 20 needs to be received, the user can rotate the flipping part 20 along the rotation axis to the position of the main body part 10, and then push the flipping part 20 into the receiving recess 13 until the flipping part 20 is completely hidden within the main body part 10, so that the flipping part 20 does not occupy the space of the main body part 10. When the flipping part 20 needs to be used, the user can pull the flipping part 20 out of the receiving recess 13 and then rotate the flipping part 20 along the rotation axis to the required shooting angle.
[0085] In order to achieve a 360° flip of the flip part 20, in another embodiment of the present application, a relief notch is provided on the main body part 10 of the embodiment of the present application. The two mounting holes 12 are respectively arranged on opposite sides of the relief notch. The relief notch is used to make way for the mounting holes 12 so that the flip part 20 can flip 360°. By providing the relief notch, an unobstructed rotation space can be provided for the flip part 20, so that the flip part 20 can flip 360°, thereby realizing shooting at any angle of the flip part 20, and thus improving the flexibility and versatility of the use of the imaging device. The setting of the relief notch can prevent the flip part 20 from colliding or interfering with other parts of the main body part 10 when rotating, so that the rotation of the flip part 20 is smoother and freer, meeting the different imaging needs of users. By providing the relief notch, a hidden storage position can be provided for the flip part 20, so that the flip part 20 can be completely stored in the main body part 10, thereby improving the convenience and aesthetics of the use of the imaging device. The setting of the relief notch can make the flip part 20 not occupy the space of the main body part 10 and does not affect the appearance of the main body part 10 when not in use, so that the imaging device is more thin and concise, and at the same time protects the components of the flip part 20 and the imaging part 30, preventing the intrusion of dust and stains.
[0086] See Figure 24 As shown, a contact part 92 electrically connected to the control board of the electronic device is provided on the frame body 90 of the embodiment of the present application. The data transmission part includes a contact connector 41. When the main body part 10 is adsorbed on the frame body 90, the contact connector 41 contacts and is electrically connected to the contact part 92. By providing the contact part 92, a reliable electrical connection position can be provided for the data transmission part, so that the data transmission part can be electrically connected to the control board of the electronic device, thereby realizing data transmission between the imaging device and the electronic device, and thus improving the functionality and compatibility of the use of the imaging device. When the data transmission part is adsorbed on the frame body 90, it automatically contacts and is electrically connected to the contact part 92 on the frame body 90, so that the data transmission part can transmit electrical signals to the control board of the electronic device, enabling the imaging device to cooperate with the control board of the electronic device and the image processor 62, etc., thereby improving the use effect and performance of the imaging device. There are multiple magnetic attraction structures 91, and the contact part 92 is arranged between two magnetic attraction structures 91. Among them, the magnetic attraction structure 91 is a magnet.
[0087] In addition, the provision of the contact connector 41 can provide a simple connection method for the data transmission part, enabling the data transmission part to quickly and conveniently contact and electrically connect with the contact part 92, thereby improving the convenience and stability of use of the imaging device. The provision of the contact connector 41 allows the data transmission part to contact the contact part 92 directly when adsorbed on the housing 90 without complex plugging or pairing operations, enabling the data transmission part to be detachably connected to the contact part 92 and thus enhancing the flexibility of use of the imaging device.
[0088] When the imaging device needs to be connected to an electronic device, the user can bring the main body part 10 of the imaging device close to the housing 90 of the electronic device. By using the magnetic force of the magnetic adsorption part 11 and the magnetic structure 91, the main body part 10 of the imaging device is adsorbed on the housing 90, enabling the data transmission part of the imaging device to automatically contact and electrically connect with the contact part 92 on the housing 90, thereby realizing data transmission between the imaging device and the electronic device and enabling the imaging device to cooperate with the control board and image processor 62 of the electronic device, etc., thus improving the use effect and performance of the imaging device.
[0089] When the imaging device needs to be disconnected from the electronic device, the user can pull the main body part 10 of the imaging device away from the housing 90 of the electronic device. By using the magnetic force of the magnetic adsorption part 11 and the magnetic structure 91, the main body part 10 of the imaging device is separated from the housing 90, enabling the data transmission part of the imaging device to automatically disconnect and electrically disconnect from the contact part 92 on the housing 90, thereby realizing data disconnection between the imaging device and the electronic device and enabling the imaging device to be separated from the control board and image processor 62 of the electronic device, etc., thus enhancing the flexibility of use of the imaging device. Among them, the above-mentioned contact connector 41 can adopt a PogoPin connector.
[0090] See Figure 2 、 Figure 4 、 Figures 12 to 14 and Figures 16 to 19 As shown, the contact connector 41 of the embodiment of the present application is provided on the main body part 10. The imaging device includes a main board part 60 electrically connected to the imaging part 30. The main board part 60 is installed inside the main body part 10 and is electrically connected to the contact connector 41. Through the provision of the main board part 60, a reliable electrical connection position can be provided for the imaging part 30, enabling the imaging part 30 to be electrically connected to the main board part 60, thereby realizing data exchange between the imaging part 30 and the main board part 60 and improving the use functionality and compatibility of the imaging device. The provision of the main board part 60 enables the imaging part 30 to be electrically connected to the main board part 60 through the wire 70, enabling the imaging part 30 to transmit image signals to the main board part 60, enabling the imaging device to process and display the images of the imaging part 30, and further improving the use effect and performance of the imaging device.
[0091] Among them, the main body part 10 includes a housing 14 and a cover 15. There is a cavity between the cover 15 and the housing 14 for installing the main board part 60. The cover 15 and the housing 14 can be connected by threaded fasteners or snap connection. The main board part 60 is fixed to the housing 14 by screws, and the damping part is installed in the cavity.
[0092] When the imaging device needs to be connected to an electronic device, the user can bring the main body part 10 of the imaging device close to the frame 90 of the electronic device, and use the magnetic force of the magnetic attraction part 11 and the magnetic attraction structure 91 to adsorb the main body part 10 of the imaging device on the frame 90, so that the contact connector 41 on the main board part 60 of the imaging device automatically contacts and electrically connects with the contact part 92 on the frame 90, thereby realizing the electrical connection between the main board part 60 and the control board of the electronic device, so that the imaging device can cooperate with the control board and the image processor 62 of the electronic device, etc., thereby improving the use effect and performance of the imaging device.
[0093] See Figures 5 to 8 As shown, the main board part 60 and the imaging part 30 in the embodiment of the present application are electrically connected by a wire 70. At least one of the rotating shafts 22 is internally provided with a through cavity 221, and the through cavity 221 is communicated with the inside of the main body part 10 for the wire 70 to pass through. Through the setting of the through cavity 221, a rotatable channel can be provided for the wire 70, so that the wire 70 can pass through the rotating shaft 22, thereby realizing the relative rotation between the wire 70 and the rotating shaft 22, thereby improving the use flexibility and stability of the imaging device. The setting of the through cavity 221 avoids entanglement or pulling between the wire 70 and the rotating shaft 22, thereby protecting the integrity and safety of the wire 70.
[0094] Through the setting of the wire 70, a reliable electrical connection method can be provided for the main board part 60 and the imaging part 30, so that the main board part 60 and the imaging part 30 can be electrically connected through the wire 70, thereby realizing data exchange between the main board part 60 and the imaging part 30, thereby improving the use functionality and compatibility of the imaging device. When the flipping part 20 needs to rotate, the user can rotate the flipping part 20 along the rotation axis to the required shooting angle, so that the flipping part 20 can shoot on both sides of the flipping base 21, thereby realizing shooting on both the front and back sides of the imaging part 30 and tilting shooting at different angles, thereby improving the use flexibility and versatility of the imaging device. During the rotation of the flipping part 20, the wire 70 also rotates with the rotation of the rotating shaft 22 and passes through the through cavity 221 of the rotating shaft 22, thereby realizing the relative rotation between the wire 70 and the rotating shaft 22, avoiding entanglement or pulling between the wire 70 and the rotating shaft 22, thereby protecting the integrity and safety of the wire 70.
[0095] A first connecting portion is provided on the flipping portion 20 of the embodiment of the present application, and a second connecting portion is provided on the side wall of the accommodating recess 13. When the flipping portion 20 is in the hidden position, the first connecting portion is connected to the second connecting portion to fix the flipping portion 20 in the accommodating recess 13. Among them, the side walls on each side of the accommodating recess 13 are preferably side walls capable of stopping the flipping of the flipping portion 20. Through the arrangement of the first connecting portion and the second connecting portion, a reliable fixing method can be provided for the flipping portion 20, so that when the flipping portion 20 is stored, a tight fit can be formed between the flipping portion 20 and the accommodating recess 13, avoiding accidental shaking of the flipping portion 20 out of the accommodating recess 13, and preventing wear and damage of the components of the flipping portion 20.
[0096] When the flipping portion 20 needs to be stored, the user can rotate the flipping portion 20 along the rotation axis to a position parallel to the main body portion 10, and then push the flipping portion 20 into the accommodating recess 13 until the flipping portion 20 is completely hidden in the main body portion 10, so that the flipping portion 20 does not occupy the space of the main body portion 10 and does not affect the appearance of the main body portion 10, making the imaging device thinner, lighter and more concise. At the same time, the components of the flipping portion 20 and the imaging portion 30 are protected, and the intrusion of dust and stains is prevented. During the storage process of the flipping portion 20, the first connecting portion on the flipping portion 20 is automatically connected to the second connecting portion on the side wall of the accommodating recess 13.
[0097] The first connecting portion and the second connecting portion can adopt snap fasteners, snap rings, card slots, etc. to realize the connection between the first connecting portion and the second connecting portion. This form can increase the tightness and detachable property of the connecting portion, thereby improving the use flexibility and maintainability of the connecting portion.
[0098] In a preferred embodiment, the first connecting portion of the embodiment of the present application includes a first magnet assembly 23, and the second connecting portion includes a second magnet assembly 131. When the flipping portion 20 is in the hidden position, the first magnet assembly 23 and the second magnet assembly 131 attract each other to fix the flipping portion 20 in the receiving recess 13. By providing the first magnet assembly 23 and the second magnet assembly 131, a more reliable fixing method can be provided for the flipping portion 20, so that when the flipping portion 20 is stored, a closer match can be formed with the receiving recess 13. The first magnet assembly 23 can cause the flipping portion 20 to attract the second magnet assembly 131 on the side wall of the receiving recess 13 when the flipping portion 20 is stored, so that the flipping portion 20 is subjected to a greater fixing force, preventing wear and damage of the components of the flipping portion 20. In addition, compared with structures such as buckles and snap rings, the fixing method by magnetic force has a longer service life and is not easily damaged. Among them, both the first magnet assembly 23 and the second magnet assembly 131 include a plurality of magnets to ensure the adsorption strength. Preferably, the second magnet assembly 131 includes two magnets, which are respectively located on both sides of the receiving recess 13, and the first magnet assembly 23 includes two magnets, and the positions correspond to the two magnets of the second magnet assembly 131 respectively. By providing the first magnet assembly 23 and the second magnet assembly 131, a simpler disassembly method can be provided for the flipping portion 20, so that when the flipping portion 20 is in use, a faster and more convenient disassembly can be achieved between the flipping portion 20 and the receiving recess 13, thereby improving the use flexibility and maintainability of the imaging device.
[0099] The imaging unit 30 of the embodiment of the present application includes a first circuit board 31 and a first camera 32. The first circuit board 31 is electrically connected to the main board unit 60 through a wire 70. An angle sensing unit 311 is provided on the first circuit board 31. The first camera 32 is disposed on the first side of the flipping base 21 and is electrically connected to the first circuit board 31. Among them, the first side of the flipping base 21 is located in the flipping direction of the flipping unit 20. Through the arrangement of the first circuit board 31, a reliable electrical connection position can be provided for the first camera 32 to realize data exchange between the first camera 32 and the first circuit board 31, thereby improving the usability and compatibility of the imaging device. The arrangement of the first circuit board 31. Through the arrangement of the first camera 32, a component that can be photographed can be provided for the flipping unit 20, so that the flipping unit 20 can perform shooting on the first side of the flipping base 21, thereby realizing the shooting of the front side of the flipping unit 20 and improving the usability and versatility of the imaging device. Among them, a socket 312 is provided on the first circuit board 31, and the flexible cable of the first camera 32 is plugged into the socket 312. The socket 312 is a BTB female socket. Through the arrangement of the angle sensing unit 311, a component that can be sensed can be provided for the flipping unit 20, so that the electronic device can sense the angle of the imaging device, realizing the adjustment and control of the orientation of the imaging device by the user. In addition to the arrangement of the angle sensing unit 311, the first circuit board 31 can also have functions such as a gyroscope, an accelerometer, and a magnetometer, so that the imaging device can sense parameters such as the angle, speed, and direction of the imaging device, thereby improving the use effect and performance of the imaging device. When the imaging device needs to take a picture, the user can pull out the flipping unit 20 from the accommodating recess 13, and then rotate the flipping unit 20 along the rotation axis to the required shooting angle. Through the angle sensing unit 311, a practical scenario is obtained. For example, when the first camera 32 faces downward, a signal for inspection work or document shooting is obtained, and the control unit controls the tablet system to adjust to the corresponding mode, such as increasing the font resolution, black and white mode, etc.
[0100] See Figure 5 , Figure 6 , Figure 10 and Figure 11As shown, the main board unit 60 of the embodiment of the present application includes a main board 61 and an image processor 62 (ISP - Image Signal Processor) disposed on the main board 61. The main board unit 60 is electrically connected to a wire 70. The image processor 62 is disposed on the main board 61 and electrically connected to the main board 61, enabling the image processor 62 to process the image signals on the main board 61, so that the imaging device can process and display the images of the imaging unit 30, thereby improving the usage effect and performance of the imaging device. The setting of the image processor 62 can also endow the image processor 62 with functions such as image enhancement, image compression, image encoding, and image decoding, so that the imaging device can optimize and convert the images of the imaging unit 30, thereby improving the usage effect and performance of the imaging device. When the imaging device needs to be used, the user can connect the imaging device to the data transmission unit of the electronic device, so that the imaging device can perform data exchange with the electronic device, thereby realizing the use of the imaging device. During the use of the imaging device, the main board unit 60 is electrically connected to the wire 70, enabling the imaging device to perform data transmission with the data transmission unit of the wire 70, thereby realizing the coordinated use of the imaging device and the control board of the electronic device. The main board unit 60 can also manage and control the power supply of the main board unit 60, so that the imaging device can adjust and control the power supply of the main board unit 60.
[0101] Among them, the angle sensor can be an acceleration sensor. Since the acceleration sensor is affected by gravity when placed statically, there will be a gravitational acceleration of 1g. Using this property, by measuring the components of the gravitational acceleration on the X / Y axes, the tilt angle in the vertical plane can be calculated.
[0102] To meet more application scenarios, the imaging unit 30 of the embodiments of the present application further includes a second camera, which is disposed on the second side of the flipping base 21 and electrically connected to the first circuit board 31, wherein the first side of the flipping base 21 is disposed opposite to the second side of the flipping base 21. By providing the second camera, the second camera can be disposed on the second side of the flipping base 21, so that the second camera can capture images in the direction opposite to the flipping direction of the flipping part 20, thereby realizing the capture of the reverse side of the flipping part 20, meeting different imaging needs of users, and at the same time ensuring the clarity and stability of the second camera. The provision of the second camera can also endow the second camera with functions such as face recognition, face beautification, and face stickers, so that the imaging device can perform face-related processing on the images of the second camera, thereby improving the usage effect of the imaging device. The second camera can provide a switchable component for the imaging unit 30, so that the imaging unit 30 can switch between the first camera 32 and the second camera, thereby realizing the switching between the front and back sides of the imaging unit 30. Thus, different imaging needs of users are met, and at the same time, the clarity and stability of the first camera 32 and the second camera are ensured. For example, if the first camera 32 is a 13M wide-angle autofocus camera, the second camera can be a 50M autofocus camera, and users can select the corresponding camera for use according to different needs.
[0103] The imaging unit 30 of the embodiments of the present application further includes an illumination unit, which is disposed on the first side of the flipping base 21 and electrically connected to the first circuit board 31. By providing the illumination unit, a component that can provide illumination for the imaging unit 30 can be provided, and the illumination unit can have functions such as a flash, a fill light, and an infrared light, so that the imaging device can illuminate and fill light for the images of the imaging unit 30, thereby improving the usage effect and performance of the imaging device.
[0104] By providing the illumination unit, a component that can be coordinated with the imaging unit 30 can be provided, so that the imaging unit 30 can be coordinated with the illumination unit, thereby realizing the adjustment and control of the illumination of the imaging unit 30. The illumination unit is electrically connected to the first circuit board 31, so that the illumination unit can transmit illumination signals to the first circuit board 31, so that the imaging device can adjust and control the illumination of the illumination unit. The illumination unit and the first circuit board 31 can perform switching of illumination signals, so that the imaging device can switch between different illumination modes, thereby realizing the adjustment and control of the illumination of the imaging unit 30 and meeting different imaging needs of users.
[0105] Please refer to Figures 20 to 24As shown, according to the second aspect of the present application, an electronic device is provided. The electronic device includes a housing 90, a magnetic attraction structure 91 provided on the housing 90, a control board and a camera device provided inside the housing 90. Among them, the camera device is the above-mentioned camera device. A contact portion 92 is provided on the housing 90, and the contact portion 92 is electrically connected to the control board. Both the contact portion 92 and the magnetic attraction structure 91 are provided on the back of the upper part of the housing 90 or the upper end of the housing 90.
[0106] Among them, an electronic device refers to an electronic product having components such as a display screen, a control board, an image processor 62, etc., such as a tablet computer, a notebook computer, a smart phone, etc., and can be used in various occasions such as education, entertainment, and office. The housing 90 refers to the outer shell of the electronic device, which is used to protect the internal components of the electronic device and also plays a role in aesthetics. The magnetic attraction structure 91 refers to a structure that uses magnetism to adsorb objects and can be used to achieve the connection or separation between objects. The magnetic attraction portion 11 refers to a part on the camera device, which is used to attract the magnetic attraction structure 91 to achieve the connection or separation between the camera device and the electronic device.
[0107] Due to the fact that the housing 90 of the electronic device in the embodiment of the present application does not need to integrate a complex camera flipping mechanism, the frame of the housing 90 can be set very narrow, improving the screen ratio. In addition, when the electronic device is carried, the camera device can be disassembled and packed to avoid damage and is convenient to carry. The camera device in the embodiment of the present application can be manually rotated, and the rotation can exceed 270°. It can be used for multiple purposes with a simple operation and obvious cost-benefit.
[0108] In a specific embodiment, the data transmission process is as follows: The data of the CAM Sensor (i.e., the first camera 32) is connected to the CAM small board (i.e., the first circuit board 31) through a connector. The CAM small board is connected to the main board 61 through a wire 70 passing through the rotating shaft 22. The MIPI signal is calculated and processed by the ISP (image processor 62) on the side of the main board 61 and converted into a USB differential signal. It is connected to the control board of the tablet through the Pogopin on the accessory main board 61, and finally transmitted to the CPU on the control board of the tablet through USB. See Figure 25 As shown.
[0109] Table 1 Data Signal Definition
[0110]
[0111] The above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the various embodiments of the present application, and should all be included within the protection scope of the present application.
Claims
1. An electronic device, It is characterized in that The electronic device includes a frame, a magnetic attraction structure arranged on the frame, and a control board arranged inside the frame, and also includes a camera device, wherein the camera device includes: A main body, wherein the main body is provided with a magnetic attraction portion, and the magnetic attraction portion is detachably connected to the magnetic attraction structure through magnetic attraction force; A flipping portion, the flipping portion being rotatably disposed on the main body; A camera unit, wherein the camera unit is arranged on the flip unit; A data transmission unit is provided on the main body or the flip unit and is electrically connected to the camera unit. Data is transmitted between the camera unit and the control board via the data transmission unit.
2. The electronic device according to claim 1, It is characterized in that The frame is provided with a contact portion, the contact portion is electrically connected to the control board, the data transmission portion includes a contact connector, and when the main body is adsorbed on the frame, the contact connector contacts and is electrically connected to the contact portion.
3. The electronic device according to claim 2, It is characterized in that The contact portion and the magnetic attraction structure are arranged on the back of the upper part of the frame or the upper end of the frame.
4. The electronic device according to claim 2, It is characterized in that A damping part is arranged between the flip part and the main body to generate damping between the rotation axis of the flip part and the main body.
5. The electronic device according to claim 4, It is characterized in that The flip part includes a flip seat and rotating shafts respectively arranged on both sides of the flip seat. The two rotating shafts located on both sides of the flip seat are concentrically arranged with the rotating axis. The main body is provided with two opposite mounting holes, and the two rotating shafts are respectively rotatably arranged in the two mounting holes.
6. The electronic device according to claim 5, It is characterized in that The damping part comprises a rotation damper, which is installed in the main body, and one of the two rotating shafts is drivingly connected to the rotation damper.
7. The electronic device according to claim 5, It is characterized in that The main body is provided with a receiving recess, the two mounting holes are respectively arranged on two opposite sides of the receiving recess, and the flip portion has a hidden position received in the receiving recess.
8. The electronic device according to claim 5, It is characterized in that The main body is provided with a clearance notch, and the two mounting holes are respectively arranged on two opposite sides of the clearance notch, and the clearance notch is used to make way for the mounting holes so that the flip part can be flipped 360 degrees.
9. The electronic device according to claim 5, It is characterized in that The contact connector is disposed on the main body, and the camera device includes a main board portion electrically connected to the camera portion, and the main board portion is installed in the main body.
10. The electronic device according to claim 9, It is characterized in that The main board part and the camera part are electrically connected via electric wires. A through cavity is provided inside at least one of the rotating shafts. The through cavity is communicated with the inside of the main body part, and the electric wires are passed through the through cavity.
11. The electronic device according to claim 7, wherein, a first connecting portion is provided on the flipping portion, and a second connecting portion is provided on a side wall of the accommodating recess. When the flipping portion is in the hidden position, the first connecting portion is connected to the second connecting portion to fix the flipping portion in the accommodating recess.
12. The electronic device according to claim 11, wherein, the first connecting portion includes a first magnet assembly, and the second connecting portion includes a second magnet assembly. When the flipping portion is in the hidden position, the first magnet assembly and the second magnet assembly attract each other to fix the flipping portion in the accommodating recess.
13. The electronic device according to claim 10, wherein, the imaging portion includes a first circuit board and a first camera. The first circuit board is electrically connected to the main board portion through the electric wire. An angle sensing portion is provided on the first circuit board. The first camera is provided on a first side of the flipping base body and is electrically connected to the first circuit board, wherein the first side of the flipping base body is located in the flipping direction of the flipping portion.
14. The electronic device according to claim 13, wherein, the imaging portion further includes a second camera. The second camera is provided on a second side of the flipping base body and is electrically connected to the first circuit board, wherein the first side of the flipping base body and the second side of the flipping base body are oppositely arranged.
15. The electronic device according to claim 14, wherein, the main board portion includes a main board and an image processor provided on the main board, wherein: the main board is electrically connected to the first circuit board, and MIPI signals of the first camera and the second camera are transmitted to the main board through the first circuit board; the main board is electrically connected to the image processor, and the main board transmits the MIPI signals to the image processor for calculation and processing to be converted into USB differential signals; the image processor is electrically connected to the CPU on the control board, and the image processor transmits the USB differential signals to the CPU on the control board of the electronic device.
16. The electronic device according to claim 13, wherein, the imaging portion further includes an illumination portion. The illumination portion is provided on the first side of the flipping base body and is electrically connected to the first circuit board.