Camera
By designing a through structure or a removable plug-in interface on the camera body, the processing difficulty caused by the plug-in and pull-out design of the existing camera memory card is solved, and a more efficient production process and lower cost are achieved.
Patent Information
- Application Number
- CN202421793237.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The memory card plug-in and outlet design of existing cameras leads to increased processing difficulty of metal fuselage, affecting production efficiency and cost.
A camera is designed with a through-structured plug interface on the body of the fuselage, or the plug interface is arranged on a removable connected plug interface carrier, thereby simplifying the processing technology and improving machining ease.
Through the through structure or removable connection plug-in interface design, the processing difficulty of the camera body and plug-in interface is reduced, production efficiency is improved and manufacturing costs are reduced.
Smart Images

Figure CN222839739U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of camera equipment, and in particular to a camera. Background Art
[0002] At present, the body shell of the camera is often provided with a memory card insertion port, and the circuit board in the body cavity is provided with a memory card slot to assemble various hardware such as SD cards, and the memory card insertion port is covered and protected by a card cover. In order to adapt to the installation of various hardware, the memory card insertion port and the card cover are designed to be larger and larger, which brings difficulties to the processing technology such as demolding of the metal body of the camera. Utility Model Content
[0003] In view of this, the present application provides a camera to facilitate the production and processing of camera components.
[0004] An embodiment of the present application provides a camera, comprising: a body, a circuit board is provided in a cavity of the body, a memory card slot is provided on the circuit board, a memory card plug-in port is provided on the body, and the memory card plug-in port corresponds to the memory card slot; a card cover, the card cover is arranged at the memory card plug-in port, and a plug-in portion is provided at one end of the card cover; wherein the plug-in portion is plugged into a plug-in port on the body, and the plug-in port is a through structure; or, the plug-in portion is plugged into a plug-in port on a plug-in port carrier, and the plug-in port carrier is detachably connected to the body.
[0005] In a specific embodiment, it also includes an end cover, which is fixedly connected to the end of the fuselage and closes the first end of the plug interface; wherein the plug-in portion on the card cover is plugged into the plug interface from the second end of the plug interface; the second end of the plug interface is connected to the first end of the plug interface.
[0006] In a specific implementation, a receiving groove is provided on the body, and the plug interface carrier is fixed in the receiving groove.
[0007] In a specific embodiment, a guide groove is provided on the side wall of the accommodating groove; and a guide strip that slidably cooperates with the guide groove is provided on the side of the plug-in interface carrier.
[0008] In a specific embodiment, it also includes an end cover, which is fixedly connected to the end of the fuselage, and the first end of the plug port carrier is limited to the end cover; wherein the plug port is arranged at the second end of the plug port carrier.
[0009] In a specific embodiment, the outer surface of the card cover, the outer surface of the plug interface carrier, and the outer surface of the body are flush with each other.
[0010] In a specific embodiment, the plug port carrier is an end cover, and the end cover is fixedly connected to the end of the fuselage.
[0011] In a specific embodiment, the fuselage is provided with a port on the side connected to the end cover, and the port is communicated with the cavity of the fuselage; a first seal is also provided along the circumference of the port, wherein the plug port is located radially outside the first seal.
[0012] In a specific implementation, there are more than two plug-in parts and more than two plug-in interfaces, and each of the plug-in parts is plugged into one of the plug-in interfaces; or there are more than two plug-in parts and one plug-in interface, and the more than two plug-in parts are plugged into the plug-in interface.
[0013] In a specific implementation, the circuit board is a first circuit board, and a memory card slot is provided on the first circuit board; or, the circuit board is a second circuit board, and a memory card slot is provided on the second circuit board; wherein the memory card slot on the first circuit board and the memory card slot on the second circuit board both correspond to the above-mentioned memory card plug-in port on the body, and the memory card slot on the first circuit board and the memory card slot on the second circuit board have different relative positions to the memory card plug-in port.
[0014] In a specific implementation, a first stop structure is protruded from the inner wall of the memory card insertion port, and when the card cover is covered on the memory card insertion port, a side of the card cover facing the cavity of the body can abut against the first stop structure.
[0015] In a specific embodiment, the card cover is provided with a first hole structure, and the body is provided with a second hole structure, and the first hole structure and the second hole structure are penetrated by connecting pieces to connect the card cover to the body.
[0016] In a specific embodiment, the card cover is provided with a restraining member, and an anti-drop hole is provided in the cavity of the fuselage, wherein the first end of the restraining member is connected to the side of the card cover facing the cavity of the fuselage, the second end of the restraining member is passed through the anti-drop hole, and the second end of the restraining member is provided with an anti-drop structure for preventing the second end of the restraining member from falling off from the anti-drop hole.
[0017] In a specific embodiment, a second stop structure is protruded from the inner wall of the memory card insertion port, and a second seal and a pressure plate are provided on the side of the card cover facing the cavity of the body, the second seal is clamped between the card cover and the pressure plate, and the circumferential edge of the second seal is located between the card cover and the second stop structure.
[0018] In a specific embodiment, a hot melt is protruded from the side of the card cover facing the cavity of the fuselage, the hot melt passes through the second seal and the pressure plate, and on the side of the pressure plate facing away from the second seal, the hot melt can be hot-melted to connect the card cover, the second seal and the pressure plate.
[0019] In a specific implementation, an avoidance structure is provided on one end of the card cover relative to the plug-in portion, and / or on an inner wall of one side of the memory card plug-in port relative to the plug-in port.
[0020] The camera provided by the embodiment of the present application includes a body and a card cover, a circuit board is provided in the cavity of the body, a memory card slot is provided on the circuit board, a memory card plug-in port is provided on the body, and the memory card plug-in port corresponds to the memory card slot; the card cover is provided at the memory card plug-in port, and a plug-in portion is provided at one end of the card cover; wherein the plug-in portion is plugged into a plug-in port on the body, and the plug-in port is a through structure; or, the plug-in portion is plugged into a plug-in port on a plug-in port carrier, and the plug-in port carrier is detachably connected to the body. The present application designs a variety of schemes for the plug-in port, and can provide corresponding plug-in port processing methods for different camera structures. By designing the plug-in port as a through structure on the body, it is convenient to process the plug-in port on the body, or to process the plug-in port on a plug-in port carrier, and the plug-in port carrier is detachably connected to the body, which also improves the ease of processing of the body and the plug-in port. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0022] Figure 1 A schematic diagram of a camera plug-in interface configured as a through structure provided in an embodiment of the present application;
[0023] Figure 2 A schematic diagram of a camera body with a plug-in interface configured as a through structure provided in an embodiment of the present application;
[0024] Figure 3 A schematic diagram of the composition of a camera provided with an insertion interface carrier provided in an embodiment of the present application;
[0025] Figure 4 A schematic diagram of the composition of a camera with a plug interface disposed on an end cover provided in an embodiment of the present application;
[0026] Figure 5A cross-sectional schematic diagram of a camera with a plug interface disposed on an end cover provided in an embodiment of the present application;
[0027] Figure 6 A schematic diagram of a card cover of a camera provided in an embodiment of the present application.
[0028] Description of main reference numerals:
[0029] 100-camera; 1001-plug interface; 10-body; 11-memory card plug-in port; 12-accommodating slot; 13-guide slot; 14-first sealing member; 15-first stop structure; 16-second hole structure; 17-connecting member; 20-card cover; 21-plug-in portion; 22-first hole structure; 23-restraint member; 24-anti-slip structure; 25-second sealing member; 26-pressing plate; 27-hot melt; 30-plug interface carrier; 31-guide strip; 40-end cover. DETAILED DESCRIPTION
[0030] The embodiments of the present application are described in detail below with reference to the accompanying drawings.
[0031] It should be clear that the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in the field without creative work are within the scope of protection of the present application.
[0032] The camera body shell is often provided with a memory card insertion port, and the circuit board in the body cavity is provided with a memory card slot to assemble various hardware such as SD cards, and the memory card insertion port is covered and protected by a card cover. In order to adapt to the installation of various hardware, the memory card insertion port and the card cover are designed to be larger and larger, which brings difficulties to the processing technology such as demolding of the metal body of the camera.
[0033] To solve the above problems, Figure 1 As shown, an embodiment of the present application provides a camera 100 , which includes a body 10 and a card cover 20 .
[0034] A circuit board is provided in the cavity of the body 10, and a memory card slot is provided on the circuit board. A memory card insertion port 11 is provided on the body 10, and the memory card insertion port 11 corresponds to the memory card slot; the camera 100 can be configured with a corresponding optical imaging module according to different shooting or observation requirements, and the circuit board can convert the optical signal used for the optical imaging module into an electrical signal, and digitally store the photos taken by the camera 100 or the recorded video information in the memory card. Due to the different application functions of different cameras 100, the shapes and sizes of the configured circuit boards are often different, and the installation positions of the circuit boards in the cavity of the body 10 of the camera 100 are also different. Therefore, in order to facilitate the installation or removal of the memory card from the memory card slot of the circuit board, the memory card insertion port 11 provided on the body 10 should correspond to the memory card slot, and the projection area from the memory card insertion port 11 to the cavity of the body 10 should be large enough to adapt to circuit boards of different shapes or installation positions, and cover the position of the memory card slot on the circuit board as much as possible, so as to provide sufficient operating space for installing and removing the memory card.
[0035] In order to realize the detachable connection between the card cover 20 and the body 10, in this embodiment, the card cover 20 is arranged at the memory card insertion port 11, and an inserting portion 21 is provided at one end of the card cover 20; wherein the inserting portion 21 is inserted into the inserting port 1001 on the body 10, and the inserting port 1001 is a through structure; Figure 2 As shown, since the plug-in port 1001 provided on the fuselage 10 is a through structure, it is convenient for the fuselage 10 to be demolded along the through direction and form the plug-in port 1001. In addition, when the plug-in port 1001 is processed by machining, the through structure of the plug-in port 1001 on the fuselage 10 is also convenient for the tool to enter or withdraw. For example, when the plug-in port 1001 is a blind hole, if the fuselage 10 is demolded to form the blind hole, the mold can only be removed from the open end of the blind hole. If the blind hole is processed by machining, the tool can only be entered and withdrawn from the open end of the blind hole. The design of the demoulding process or the machining process brings difficulties, especially when the structure of the fuselage 10 is more complicated, which is bound to increase the manufacturing cost. When the plug interface 1001 is a through structure, if the fuselage 10 is demoulded to form the through structure, it is possible to choose to demould from one end of the through structure according to the situation. If the through structure is machined, it is also possible to choose to advance and retract the tool from one end of the through structure to machine the through hole structure according to the situation. It can be understood that this embodiment has a more flexible process selection scheme and is conducive to achieving more economical process processing costs.
[0036] Alternatively, when the structure of the body 10 is not convenient for arranging the plug interface 1001, the plug-in portion 21 is plugged into the plug interface 1001 on the plug interface carrier 30, and the plug interface carrier 30 is detachably connected to the body 10. The plug interface 1001 is arranged on the plug interface carrier 30, which can further simplify the design of the demoulding process of the body 10. Especially for the camera body 100 with a relatively complex shape and structure, the structures with different functions are designed as split types, which is conducive to reducing the processing difficulty and manufacturing cost. According to the application scenario and product shape of the camera 100, the structural components of the camera 100 can be appropriately selected as the plug interface carrier 30. For example, when the camera 100 is also equipped with an auxiliary component connected to the body 10, the auxiliary component can be used as the plug interface carrier 30, and the plug interface 1001 can be processed on the auxiliary component. In this way, the structural characteristics of each component of the camera 100 can be fully utilized, and it is avoided that a single component affects the processing and manufacturing or production cost due to the integration of too many functional structures.
[0037] The shapes of the plug-in portion 21 and the plug-in interface 1001 are adapted to facilitate smooth insertion of the plug-in portion 21 into the plug-in interface 1001 or removal from the plug-in interface 1001. For example, the plug-in portion 21 may be a protrusion structure arranged on the side wall at one end of the card cover 20, and the plug-in interface 1001 may be a hole body or a groove body structure. The plug-in portion 21 and the plug-in interface 1001 may form a clearance fit size, and the end of the plug-in portion 21 or the opening of the plug-in interface 1001 may be designed as a sloped surface or an arc surface or the like, so that the plug-in portion 21 can be more smoothly inserted into the plug-in interface 1001.
[0038] The camera 100 provided in the embodiment of the present application includes a body 10 and a card cover 20. A circuit board is provided in the cavity of the body 10, and a memory card slot is provided on the circuit board. A memory card plug-in port 11 is provided on the body 10, and the memory card plug-in port 11 corresponds to the memory card slot. The card cover 20 is arranged at the memory card plug-in port 11, and a plug-in portion 21 is provided at one end of the card cover 20. The plug-in portion 21 is plugged into a plug-in port 1001 on the body 10, and the plug-in port 1001 is a through structure. Alternatively, the plug-in portion 21 is plugged into a plug-in port 1001 on a plug-in port carrier 30, and the plug-in port carrier 30 is detachably connected to the body 10. The present application designs a variety of schemes for the plug interface 1001, and can provide corresponding plug interface 1001 processing methods for different camera 100 structures. By designing the plug interface 1001 as a through structure on the body 10, it is convenient to process the plug interface 1001 on the body 10, or to process the plug interface 1001 on the plug interface carrier 30, and the plug interface carrier 30 is detachably connected to the body 10, which also improves the ease of processing of the body 10 and the plug interface 1001.
[0039] When the plug interface 1001 is a through structure provided on the body 10, in order to improve the integrity of the functional structure of the body 10, optionally, in one embodiment of the present application, an end cover 40 is further included, which is fixedly connected to the end of the body 10 and closes the first end of the plug interface 1001; wherein the plug-in portion 21 on the card cover 20 is plugged into the plug interface 1001 from the second end of the plug interface 1001; the second end of the plug interface 1001 is connected to the first end of the plug interface 1001. In this embodiment, the end cover 40 can be adaptively designed according to the specific structure of the camera 100, for example Figure 1 As shown in the figure (because the product structure of the camera 100 is relatively complex, this embodiment only provides a schematic diagram of the configuration method of the plug interface 1001 and the plug-in portion 21), the first end of the plug interface 1001 is closed by the end cover 40 to prevent the plug interface 1001 from being directly exposed to affect the external appearance of the camera 100 or dust from accumulating in the plug interface 1001. The end cover 40 can be detachably connected to the body 10 by bolts and other components. In addition, the end cover 40 can also be further arranged with a lens, or a corresponding circuit board assembly can be installed, etc., which is not limited in this embodiment.
[0040] When the plug-in interface carrier 30 is detachably connected to the body 10, optionally, in one embodiment of the present application, as Figure 3 As shown, the housing 10 is provided with a receiving groove 12, and the plug interface carrier 30 is fixed in the receiving groove 12. In this solution, the plug interface carrier 30 can be a specialized component for processing and configuring the plug interface 1001, and can be made of a material different from that of the housing 10. For example, when the housing 10 is made of metal material, the plug interface carrier 30 can be made of metal material, or can be made of plastic material to have a more economical processing performance. Since the plug interface carrier 30 detachable from the housing 10 is used, when processing and configuring the plug interface 1001 on the plug interface carrier 30, the plug interface 1001 can be designed and processed into a blind hole structure, or the plug interface 1001 can be designed and processed into a through structure. However, no matter whether the plug interface 1001 adopts a blind hole structure or a through structure, since the plug interface carrier 30 is independent of the housing 10, it is conducive to reducing the processing difficulty of the plug interface 1001, and also reduces the processing difficulty of the housing 10.
[0041] When configuring the detachable connection scheme between the plug interface 1001 and the body 10, in order to improve the ease of assembly, optionally, in one embodiment of the present application, as Figure 3As shown, a guide groove 13 is provided on the side wall of the receiving groove 12; and a guide strip 31 is provided on the side of the plug interface carrier 30 to slide with the guide groove 13. The sliding cooperation between the guide groove 13 and the guide strip 31 facilitates the assembly of the plug interface carrier 30 and the fuselage 10. When the guide groove 13 adopts a dovetail groove or other structure, the positioning and installation accuracy of the plug interface carrier 30 relative to the fuselage 10 can be improved. According to the structural characteristics of the components, the guide strip 31 can also be set on the side wall of the receiving groove 12, and the guide groove 13 can be set on the side of the plug interface carrier 30, which is not limited in this embodiment.
[0042] Optionally, in one embodiment of the present application, Figure 3 As shown, it also includes an end cover 40, which is fixedly connected to the end of the fuselage 10, and the first end of the plug interface carrier 30 is limited to the end cover 40; wherein the plug interface 1001 is arranged at the second end of the plug interface carrier 30.
[0043] In this embodiment, the plug interface carrier 30 can be embedded in the receiving groove 12 from the notch of the receiving groove 12 along the axial direction of the notch of the receiving groove 12, and then the displacement of the plug interface carrier 30 along the embedding direction is limited by the end cover 40 fixed to the end of the fuselage 10. For example, the end cover 40 and the first end of the plug interface carrier 30 can be configured with a matching stop structure or mortise and tenon structure to stop and limit the plug interface carrier 30 in the embedding direction; the plug interface carrier 30 can also be embedded in the receiving groove 12 from one side of the receiving groove 12. For example, a notch can be provided on the side of the receiving groove 12 away from the memory card plug-in port 11, and a stopper can be provided on the side of the receiving groove 12 close to the memory card plug-in port 11. The plug interface carrier 30 is embedded in the receiving groove 12 through the notch, and the second end of the plug interface carrier 30 abuts against the stopper, and the end cover 40 abuts against the first end of the plug interface carrier 30, thereby limiting the plug interface carrier 30. It can be seen that, due to the use of the plug interface carrier 30 that is detachable from the body 10, a variety of design schemes can be configured for the processing scheme and installation scheme of the plug interface carrier 30, thereby improving the flexibility of the process processing, and under the premise of achieving the structural function, it is beneficial to reduce the production and processing cost of the component. Optionally, in an embodiment of the present application, the outer surface of the card cover 20, the outer surface of the plug interface carrier 30, and the outer surface of the body 10 are flush, which can improve the aesthetic appearance of the camera 100.
[0044] In some application scenarios, the camera 100 may be equipped with an end cap 40 connected to the body 10, and components such as a lens may be configured in the end cap 40. The end cap 40 may have a larger structure or volume. In order to fully utilize the structural features of each component of the camera 100, optionally, in an embodiment of the present application, Figure 4As shown, the plug interface carrier 30 is an end cap 40, and the end cap 40 is fixedly connected to the end of the body 10. It can be understood that since the end cap 40 is independent of the body 10 and is detachably connected to the body 10, in this embodiment, the end cap 40 is used as the plug interface carrier 30, and a plug interface 1001 is opened on the side where the end cap 40 is connected to the body 10, which can also reduce the difficulty of processing the plug interface 1001 and the body 10, and make full use of the structural features of the end cap 40, avoid adding additional components to process the plug interface 1001, thereby improving the functional integration of the components of the camera 100 and reducing the redundancy of the components.
[0045] Since the end cover 40 equipped with a camera often has a receiving cavity, and the receiving cavity is communicated with the cavity of the body 10 to realize line wiring or arrange related components, foreign matter such as rainwater and dust may invade the connection between the end cover 40 and the body 10, so the sealing of the connection between the end cover 40 and the body 10 needs to be considered, and the end cover 40 is provided with a plug interface 1001 at the connection with the body 10. In order to ensure that the plug interface 1001 provided on the end cover 40 does not affect the sealing, optionally, in one embodiment of the present application, as Figure 5 As shown, the fuselage 10 is provided with a port on one side of the connection end cover 40 , and the port is communicated with the cavity of the fuselage 10 ; a first sealing member 14 is also provided along the circumference of the port, wherein the plug-in port 1001 is located radially outside the first sealing member 14 .
[0046] Specifically, the first seal 14 can be embedded in one side of the port of the body 10, or can be embedded in the side where the end cover 40 is connected to the body 10. Since the first seal 14 is provided along the circumferential direction of the port, foreign matter such as rainwater and dust can be prevented from radially invading the connection between the body 10 and the end cover 40. In addition, since the plug-in port 1001 is designed to be radially outside the first seal 14, each time the card cover 20 is opened or closed, foreign matter from the memory card plug-in port 11 and the plug-in port 1001 cannot radially invading the interior of the body 10 through the first seal 14, thereby ensuring the sealing performance of the camera 100.
[0047] Optionally, in one embodiment of the present application, Figure 1 , Figure 4 As shown, there are more than two plug-in parts 21, more than two plug-in ports 1001, and each plug-in part 21 is plugged into one plug-in port 1001; or Figure 3 As shown, there are more than two plug-in parts 21 and one plug-in interface 1001 , and the more than two plug-in parts 21 are plugged into the plug-in interface 1001 .
[0048] In this embodiment, the plug interface 1001 can be designed to be multiple, and each plug part 21 can be inserted into one plug interface 1001 respectively. The plug interface 1001 can also be designed to be single to further simplify the processing technology. The single plug interface 1001 can have a larger opening size to accommodate the insertion of multiple plug parts 21. In addition, in this embodiment, the plug parts 21 are configured to be more than two, which is conducive to improving the alignment accuracy of the plug parts 21 and the plug interface 1001 when the card cover 20 is covered. For example, on the outer surface of the card cover 20 and the outer surface of the plug interface carrier 30, When the outer surface of the body 10 and the outer surface of the body 10 adopt an arc structure with a large curvature, if the number of the plug-in portion 21 is configured to be single, or the size of the single plug-in portion 21 along the circumference of the arc structure is large, when the card cover 20 is buckled, it is difficult for the plug-in portion 21 and the plug-in port 1001 to be quickly aligned along the circumference of the arc structure, which is inconvenient for users to operate. In this embodiment, the number of the plug-in portions 21 is configured to be more than two, which is conducive to the multiple plug-in portions 21 to form a supporting and guiding effect at the positions where they are in contact with the plug-in port 1001, so that the user can buckle the card cover 20 according to the guiding touch.
[0049] In order to ensure that the memory card insertion port 11 can adapt to circuit boards of different shapes or installation positions, so that there is sufficient operating space when loading and unloading a memory card from the memory card insertion port 11, optionally, in an embodiment of the present application, the circuit board is a first circuit board, and a memory card slot is provided on the first circuit board; or, the circuit board is a second circuit board, and a memory card slot is provided on the second circuit board; wherein the memory card slot on the first circuit board and the memory card slot on the second circuit board both correspond to the above-mentioned memory card insertion port 11 on the body 10, and the memory card slot on the first circuit board and the memory card slot on the second circuit board have different relative positions to the memory card insertion port 11.
[0050] The first circuit board and the second circuit board may have the same or different shapes and sizes, and the relative positions of the memory card slot and the memory card plug-in port 11 on the first circuit board are different from the relative positions of the memory card slot and the memory card plug-in port 11 on the second circuit board. For example, the memory card slot on the first circuit board may be located on one side of the memory card plug-in port 11, and the memory card slot on the second circuit board may be located on the other side of the memory card plug-in port 11. This ensures that the memory card plug-in port 11 has a matching size relative to circuit boards of different shapes or installation positions, and the projected area from the memory card plug-in port 11 toward the cavity of the body 10 can cover the memory card slots opened by circuit boards of various models and specifications, thereby improving the adaptability of the body 10 to circuit boards of different models and specifications.
[0051] Optionally, in one embodiment of the present application, Figure 1-Figure 5As shown, the inner wall of the memory card insertion port 11 is further provided with a first stop structure 15, and when the card cover 20 is covered on the memory card insertion port 11, the side of the card cover 20 facing the cavity of the body 10 can abut against the first stop structure 15. For example, the first stop structure 15 can be a ring-shaped structure formed by the inner wall of the memory card insertion port 11, and when the card cover 20 is covered on the memory card insertion port 11, the first stop structure 15 can limit the card cover 20 in the axial direction of the memory card insertion port 11, so that the card cover 20 has a stable and firm support, and prevents the card cover 20 from sinking into the cavity of the body 10.
[0052] Optionally, in one embodiment of the present application, Figure 1 , Figure 3 , Figure 4 As shown, the card cover 20 is provided with a first hole structure 22, and the body 10 is provided with a second hole structure 16. The first hole structure 22 and the second hole structure 16 are penetrated with a connecting member 17 to connect the card cover 20 to the body 10. The first hole structure 22 may be a through hole opened at one end of the card cover 20 relative to the plug-in portion 21, and the second hole structure 16 may be formed by a protrusion on the inner wall of the memory card plug-in port 11. For example, the second hole structure 16 may be a threaded hole provided on the first stopper structure 15, and a bolt as a connecting member 17 is penetrated through the first hole structure 22 and the second hole structure 16 to connect the card cover 20 to the body 10.
[0053] Optionally, in one embodiment of the present application, the card cover 20 is provided with a restraining member 23, and an anti-dropping hole is provided in the cavity of the fuselage 10, wherein the first end of the restraining member 23 is connected to the side of the cavity of the card cover 20 facing the fuselage 10, the second end of the restraining member 23 is passed through the anti-dropping hole, and the second end of the restraining member 23 is provided with an anti-dropping structure 24 for preventing the second end of the restraining member 23 from falling off from the anti-dropping hole. The restraining member 23 can be made of an elastic or ductile material and has an appropriate length, so that after the card cover 20 is opened from the fuselage 10, the card cover 20 can still maintain a loose connection with the fuselage 10 through the restraining member 23, so as to prevent the card cover 20 from being completely separated from the fuselage 10 and forgotten or lost.
[0054] like Figure 6 As shown, the anti-slip structure 24 can be a branch structure that forks and extends from the second end of the restraint 23 toward the first end of the restraint 23, and the branch structure forms a barb shape. When inserted into the anti-slip hole, the branch structure closes toward the main body of the second end of the restraint 23 to facilitate the smooth insertion of the second end of the restraint 23 into the anti-slip hole. After being inserted into the anti-slip hole, the branch structure returns to the barb shape under the action of elasticity to prevent the second end of the restraint 23 from escaping from the anti-slip hole.
[0055] Optionally, in one embodiment of the present application, Figure 5 , Figure 6As shown, the inner wall of the memory card insertion port 11 is convexly provided with a second stop structure, and the side of the card cover 20 facing the cavity of the body 10 is provided with a second seal 25 and a pressure plate 26, the second seal 25 is sandwiched between the card cover 20 and the pressure plate 26, and the circumferential edge of the second seal 25 is located between the card cover 20 and the second stop structure. Among them, the second stop structure can be the same structure as the first stop structure 15 to simplify the structural design of the body 10. When the card cover 20 is covered on the memory card insertion port 11, the circumferential edge of the second seal 25 and the card cover 20 and the second stop structure located on both sides of the second seal 25 are in close contact, so that after the card cover 20 is covered, the memory card insertion port 11 can be sealed to prevent foreign matter from entering the cavity of the body 10.
[0056] Optionally, in one embodiment of the present application, Figure 6 As shown, a hot melt 27 is protruded from one side of the card cover 20 facing the cavity of the fuselage 10 , and the hot melt 27 passes through the second sealing member 25 and the pressure plate 26 , and on the side of the pressure plate 26 facing away from the second sealing member 25 , the hot melt 27 can be hot-melted to connect the card cover 20 , the second sealing member 25 and the pressure plate 26 .
[0057] Optionally, in one embodiment of the present application, an avoidance structure is provided on one end of the card cover 20 relative to the plug-in portion 21, and / or on the inner wall of the memory card plug-in port 11 relative to the plug-in port 1001. For example, the avoidance structure may be a groove provided on the side wall of the end of the card cover 20 relative to the plug-in portion 21, or a notch provided on the inner wall of the memory card plug-in port 11 relative to the plug-in port 1001, or a avoidance structure formed by both the groove and the notch, thereby providing an operating space for the user to cover or open the card cover 20 at the memory card plug-in port 11.
[0058] It should be noted that, in this document, relational terms such as first and second, etc. are merely used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations.
[0059] Moreover, the terms "comprises," "comprising," or any other variation thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of additional identical elements in the process, method, article, or apparatus that includes the element.
[0060] The above content has described the embodiments of the present application in detail. Those skilled in the art can design and modify the device and its use within the scope of the present application according to the on-site construction conditions.
[0061] Each embodiment in this specification is described in a related manner, and the same or similar parts between the embodiments can be referenced to each other, and each embodiment focuses on the differences from other embodiments.
[0062] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto. Any changes or substitutions that can be easily thought of by a person skilled in the art within the technical scope disclosed in the present application should be included in the protection scope of the present application. Therefore, the protection scope of the present application shall be based on the protection scope of the claims.
Claims
1. A camera, characterized in that: include: A body, wherein a circuit board is disposed in a cavity of the body, a memory card slot is disposed on the circuit board, and a memory card insertion port is disposed on the body, the memory card insertion port corresponds to the memory card slot; A card cover, the card cover is arranged at the memory card insertion port, and one end of the card cover is provided with a plug-in portion; The plug-in portion is plugged into a plug-in port on the body, and the plug-in port is a through structure; or, the plug-in portion is plugged into a plug-in port on a plug-in port carrier, and the plug-in port carrier is detachably connected to the body.
2. The camera according to claim 1, characterized in that It also includes an end cover, which is fixedly connected to the end of the fuselage and closes the first end of the plug interface; Wherein, the plug-in portion on the card cover is plugged into the plug-in interface from the second end of the plug-in interface; the second end of the plug-in interface is connected to the first end of the plug-in interface.
3. The camera according to claim 1, characterized in that The body is provided with a receiving groove, and the plug interface carrier is fixed in the receiving groove.
4. The camera according to claim 3, characterized in that A guide groove is arranged on the side wall of the accommodating groove; and a guide strip which is slidably matched with the guide groove is arranged on the side of the plug-in interface carrier.
5. The camera according to claim 3 or 4, characterized in that: It also includes an end cover, which is fixedly connected to the end of the fuselage, and the first end of the plug-in port carrier is limited to the end cover; Wherein, the plug-in port is arranged at the second end of the plug-in port carrier.
6. The camera according to claim 1, characterized in that The outer surface of the card cover, the outer surface of the plug-in port carrier, and the outer surface of the body are flush with each other.
7. The camera according to claim 1, characterized in that The plug-in port carrier is an end cover, and the end cover is fixedly connected to the end of the fuselage.
8. The camera according to claim 7, characterized in that The fuselage is provided with a port on one side connected to the end cover, and the port is communicated with the cavity of the fuselage; a first sealing member is also provided along the circumference of the port, wherein the insertion port is located radially outside the first sealing member.
9. The camera according to claim 1, characterized in that: There are more than two plug-in parts, there are more than two plug-in interfaces, and each of the plug-in parts is plugged into one of the plug-in interfaces; or There are more than two plug-in parts, and there is one plug-in interface, and the more than two plug-in parts are plugged into the plug-in interface.
10. The camera according to claim 1, characterized in that The circuit board is a first circuit board, and a memory card slot is provided on the first circuit board; or the circuit board is a second circuit board, and a memory card slot is provided on the second circuit board; Among them, the memory card slot on the first circuit board and the memory card slot on the second circuit board both correspond to the above-mentioned memory card insertion port on the body, and the memory card slot on the first circuit board and the memory card slot on the second circuit board have different relative positions to the memory card insertion port.