Integrated device
By combining a positioning plate and a moving plate, along with a drive structure and magnetic components, the problem of jamming during manual loading and unloading of functional modules is solved, enabling rapid integration and loading/unloading of functional modules, thereby improving production efficiency and product quality.
Patent Information
- Application Number
- CN202520489482.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-18
AI Technical Summary
In the automotive power supply industry, manual loading and unloading of functional modules is prone to jamming, resulting in low production efficiency and difficulty in achieving precise assembly of multiple functional modules.
It adopts a combination structure of positioning plate and moving plate, and realizes the switching between positioning state and moving state of moving plate through driving structure. The positioning part realizes the rapid integration and placement of functional modules. Combined with components such as driving structure, slider, slide rail and magnetic parts, the ease of operation is improved.
It enables rapid integration and placement of multiple functional modules, improving production efficiency, avoiding the risks of module displacement and inaccurate assembly, and enhancing product quality.
Smart Images

Figure CN223903764U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of integration, and particularly relates to an integrated device. BACKGROUND
[0002] In the vehicle power supply industry, as users have higher and higher requirements for products, product platforms are more and more standardized, and the integration degree of functional modules is higher and higher. In the related art, multiple functional modules are assembled on a positioning plate to realize the integration of the multiple functional modules, and then the integrated multiple functional modules are manually taken out. However, the manual taking and placing of the functional modules is often prone to jamming, and manual operation is difficult, resulting in reduced production efficiency. CONTENT OF THE UTILITY MODEL
[0003] In view of this, the present application provides an integrated device, which comprises a positioning plate and a moving plate arranged on one side of the positioning plate, and a plurality of positioning portions are arranged on the surface of the positioning plate facing the moving plate, and the moving plate can move relative to the positioning plate;
[0004] The integrated device has a positioning state and a moving and taking state, and the moving plate can move in a direction away from the positioning plate to switch the integrated device from the positioning state to the moving and taking state. When the integrated device is in the positioning state, the vertical distance between the moving plate and the positioning plate is less than the length of the positioning portion. When the integrated device is in the moving and taking state, the vertical distance between the moving plate and the positioning plate is greater than or equal to the length of the positioning portion.
[0005] The integrated device provided by the present application is composed of a positioning plate and a moving plate. Specifically, when the integrated device is in the positioning state, the vertical distance between the moving plate and the positioning plate is less than the length of the positioning portion, which can be understood as the positioning portion protruding relative to the moving plate. Multiple functional modules can be respectively sleeved on the positioning portion to assemble the multiple functional modules on the moving plate, thereby positioning the positions of the multiple functional modules and realizing the integration of the multiple functional modules. Then, the moving plate is moved relative to the positioning plate, so that the integrated device is in the moving and taking state. At this time, the vertical distance between the moving plate and the positioning plate is greater than or equal to the length of the positioning portion, and the multiple functional modules can be separated from the positioning portion, and the integrated multiple functional modules can be taken out from the moving plate.
[0006] In summary, the positioning plate and the moving plate are cooperated in the present application, which can realize the rapid integration and taking and placing of multiple functional modules, greatly improve the production efficiency, improve the product quality, avoid the risk of displacement between multiple functional modules caused by manual taking and placing in the related art, and avoid the risk of inaccurate assembly caused by directly installing multiple functional modules without using a positioning plate in the related art.
[0007] The integrated device further comprises a driving structure, which is arranged on the moving plate and at least partially located between the moving plate and the positioning plate, and drives the moving plate to move away from or close to the positioning plate.
[0008] The driving structure comprises a first slider and a second slider, the first slider is arranged on the surface of the moving plate facing the positioning plate, the first slider is provided with a first inclined surface, the second slider is provided with a second inclined surface, the first inclined surface and the second inclined surface have the same inclination direction, the first inclined surface abuts against the second inclined surface, the second slider slides relative to the first slider, thereby driving the first slider to move along the arrangement direction of the positioning plate and the moving plate, when the integrated device is in the positioning state, the first inclined surface and the second inclined surface partially overlap, when the integrated device is in the picking state, the first inclined surface and the second inclined surface completely overlap.
[0009] The positioning plate is provided with a mounting hole, the mounting hole penetrates through the surface of the positioning plate facing the moving plate and the surface of the positioning plate away from the moving plate, the first slider is arranged in the mounting hole, and the plurality of positioning portions are arranged on the side of the mounting hole;
[0010] The positioning plate is further provided with a slide, and the second slider slides relative to the positioning plate through the slide;
[0011] The positioning plate is further provided with a relief hole, the relief hole penetrates through the surface of the positioning plate facing the moving plate and the surface of the positioning plate away from the moving plate, the relief hole is communicated with the mounting hole, and the second slider passes through the relief hole.
[0012] The integrated device further comprises a limiting piece and a slide rail, the limiting piece is movably arranged on the slide rail, the second slider is slidably connected to the slide rail, and the limiting piece is used for abutting against the second slider.
[0013] The second slider is provided with a first magnetic part, the limiting piece is provided with a second magnetic part, and the first magnetic part and the second magnetic part attract each other.
[0014] The integrated device further comprises a control piece, the control piece is arranged on the second slider, at least part of the control piece protrudes from the positioning plate and the moving plate, and the control piece can drive the second slider to slide relative to the first slider.
[0015] The integrated device further comprises a fixing structure and a pre-tightening structure, and the pre-tightening structure is arranged between the moving plate and the fixing structure.
[0016] The fixed structure comprises a fixed plate and a support column, the integrated device further comprises a base, the support column is arranged between the fixed plate and the base, the moving plate is sleeved on the support column, and the positioning plate is connected to the base.
[0017] The pre-tightening structure is an elastic element, the elastic element is sleeved on the support column, one end of the elastic element abuts against the moving plate, and the other end of the elastic element abuts against the fixed plate.
[0018] The positioning part satisfies at least one of the following conditions:
[0019] The positioning part is arranged away from the moving plate.
[0020] The moving plate is provided with a through hole, and the moving plate is sleeved on the positioning part through the through hole.
[0021] The positioning part comprises a first positioning sub-part and a second positioning sub-part, and the length of the first positioning sub-part is greater than the length of the second positioning sub-part. BRIEF DESCRIPTION OF DRAWINGS
[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required to be used in the embodiments of the present application will be described below.
[0023] Figure 1 A perspective structural view of an integrated device provided by an embodiment of the present application is provided.
[0024] Figure 2 An exploded view of the structure of a positioning plate, a moving plate and a positioning part provided by an embodiment of the present application is provided.
[0025] Figure 3 A structural schematic view in a positioning state provided by an embodiment of the present application is provided.
[0026] Figure 4 A structural schematic view in a moving state provided by an embodiment of the present application is provided.
[0027] Figure 5 A perspective structural view of an integrated device provided by an embodiment of the present application is provided.
[0028] Figure 6 A side view of an integrated device provided by an embodiment of the present application is provided.
[0029] Figure 7 A perspective structural view of part of an integrated device provided by an embodiment of the present application is provided.
[0030] Figure 8 A perspective structural view of a second sliding block and a limiting part provided by an embodiment of the present application is provided.
[0031] Figure 9 A perspective view of the second slider and the limiting member provided for an embodiment of the present application is shown from another angle.
[0032] Label explanation: integrated device 1, positioning plate 11, mounting hole 111, avoiding hole 112, slide 113, moving plate 12, via 121, positioning part 13, first positioning subpart 131, second positioning subpart 132, driving structure 14, first slider 141, first inclined surface 1411, second slider 142, second inclined surface 1421, first magnetic part 1422, slide rail 15, limiting member 16, second magnetic part 161, control member 17, support column 181, fixed plate 182, elastic element 183, base 19. DETAILED DESCRIPTION
[0033] The following is a preferred embodiment of the present application, it should be noted that for those skilled in the art, without departing from the principles of the present application, can make a number of improvements and refinements, these improvements and refinements are also considered to be within the scope of protection of the present application.
[0034] Please refer to Figures 1-4 The present embodiment provides an integrated device, the integrated device 1 includes a positioning plate 11 and a moving plate 12 arranged on one side of the positioning plate 11, the surface of the positioning plate 11 facing the moving plate 12 is provided with a plurality of positioning parts 13, and the moving plate 12 can move relative to the positioning plate 11.
[0035] Among them, the integrated device 1 has a positioning state and a moving state, the moving plate 12 can move towards the direction away from the positioning plate 11, so that the integrated device 1 is switched from the positioning state to the moving state; when the integrated device 1 is in the positioning state, the vertical distance between the moving plate 12 and the positioning plate 11 is less than the length of the positioning part 13; when the integrated device 1 is in the moving state, the vertical distance between the moving plate 12 and the positioning plate 11 is greater than or equal to the length of the positioning part 13.
[0036] The integrated device 1 provided by the present embodiment is used to integrate a plurality of functional modules, and can be applied to the fields of battery manufacturing, communication equipment, test equipment, etc., which are not limited by the present embodiment. Optionally, the specifications and sizes of the plurality of functional modules are different. Optionally, the specifications and sizes of part of the functional modules are different, and the specifications and sizes of another part of the functional modules are the same. Optionally, the specifications and sizes of the plurality of functional modules are the same. Specifically, each functional module is provided with an integrated plate, and the integrated plate is provided with a positioning hole for accommodating the positioning part 13, so as to realize the positioning and cooperation of the functional module and the positioning part 13.
[0037] The positioning plate 11 is provided with a plurality of positioning portions 13 for positioning a plurality of functional modules, so as to realize the integration of the plurality of functional modules. The positioning portion 13 can also be understood as a positioning column, and the positioning portion 13 protrudes from the surface of the positioning plate 11. Optionally, the number of the positioning portions 13 is 2-10, and the number of the positioning portions 13 can be exemplified as 2, or 3, or 4, or 5, or 6, or 7, or 8, or 9, or 10, etc. For example, the number of the positioning portions 13 is 5. The plurality of positioning portions 13 have intervals therebetween.
[0038] In an embodiment, the positioning portion 13 satisfies at least one of the following conditions: the positioning portion 13 is arranged to avoid the moving plate 12.
[0039] For example, at least part of the positioning portions 13 are arranged on the left side of the moving plate 12. For another example, at least part of the positioning portions 13 are arranged on the right side of the moving plate 12. For still another example, at least part of the positioning portions 13 are arranged along the circumferential direction of the moving plate 12, which can also be understood as that at least part of the positioning portions 13 are arranged around the moving plate 12.
[0040] And / or, the moving plate 12 is provided with a through hole 121, and the moving plate 12 is sleeved on the positioning portion 13 through the through hole 121.
[0041] The positioning portion 13 can pass through the through hole 121. Specifically, when the integrated device 1 is in a positioning state, the positioning portion 13 passes through the through hole 121, at this time, the positioning portion 13 protrudes from the moving plate 12, so as to sleeve the functional module on the positioning portion 13. When the integrated device 1 is in a moving state, the moving plate 12 and the positioning plate 11 are away from each other, and the positioning portion 13 is arranged outside the through hole 121, so as to take out the plurality of functional modules from the moving plate 12.
[0042] And / or, the positioning portion 13 comprises a first positioning sub-portion 131 and a second positioning sub-portion 132, and the length of the first positioning sub-portion 131 is greater than the length of the second positioning sub-portion 132.
[0043] Optionally, the number of the first positioning sub-portion 131 is at least one, and the number of the second positioning sub-portion 132 is at least one. For example, the number of the first positioning sub-portion 131 is 4, and the number of the second positioning sub-portion 132 is 1. Optionally, the first positioning sub-portion 131 and the second positioning sub-portion 132 are arranged adjacently. Optionally, the first positioning sub-portion 131 and the second positioning sub-portion 132 are arranged on the circumferential side of the moving plate 12. Optionally, the first positioning sub-portion 131 can pass through the through hole 121. The present embodiment is adapted to functional modules of various specifications and sizes by arranging the first positioning sub-portion 131 and the second positioning sub-portion 132 with different lengths, thereby increasing the application range of the integrated device 1.
[0044] The moving plate 12 is movable relative to the positioning plate 11. For example, as shown in Figure 1 FIG. 1, the moving plate 12 is movable up and down relative to the positioning plate 11; wherein the moving plate 12 is movable in a direction away from the positioning plate 11, which can also be understood as the moving plate 12 is movable upward relative to the positioning plate 11; the moving plate 12 is movable in a direction towards the positioning plate 11, which can also be understood as the moving plate 12 is movable downward relative to the positioning plate 11. The moving direction of the moving plate 12 is shown as direction D in Figure 1 FIG. 1.
[0045] For another example, the moving plate 12 is movable left and right relative to the positioning plate 11. For yet another example, the moving plate 12 is movable forward and backward relative to the positioning plate 11. The present embodiment does not limit the moving direction of the moving plate 12 relative to the positioning plate 11, as long as the integrated device 1 is switched between the positioning state and the removal state by changing the position of the moving plate 12.
[0046] The integrated device 1 has a positioning state, wherein the vertical distance between the moving plate 12 and the positioning plate 11 is less than the length of the positioning portion 13, so that the positioning portion 13 protrudes from the moving plate 12, so as to facilitate the functional modules to be sleeved on the positioning portion 13. Then, the moving plate 12 is moved relative to the positioning plate 11, so that the integrated device 1 is switched from the positioning state to the removal state. In the removal state, the vertical distance between the moving plate 12 and the positioning plate 11 is greater than or equal to the length of the positioning portion 13, so as to avoid the positioning portion 13 interfering with the removal of the functional modules. The vertical distance between the moving plate 12 and the positioning plate 11 is shown as L1 in Figure 4 FIG. 1, and the length of the positioning portion 13 is shown as L2 in Figure 4 FIG. 1.
[0047] In addition, after the plurality of functional modules are removed from the moving plate 12, the moving plate 12 is movable towards the positioning plate 11, so as to restore the moving plate 12 to the original position, so that the integrated device 1 is switched from the removal state to the positioning state.
[0048] Specifically, when the integrated device 1 is in the positioning state, the plurality of functional modules can be assembled on the moving plate 12 respectively, and the positioning portion 13 is cooperated with the functional modules, so as to position the plurality of functional modules, thereby realizing the integration of the plurality of functional modules; then, the moving plate 12 is moved relative to the positioning plate 11, so that the integrated device 1 is switched to the removal state, wherein the positioning portion 13 is separated from the plurality of functional modules, and the integrated plurality of functional modules can be removed from the moving plate 12.
[0049] In summary, the present embodiment can realize the rapid integration and pick-and-place of multiple functional modules by adopting the cooperation of the positioning plate 11 and the moving plate 12, greatly improves the production efficiency, improves the product quality, avoids the risk of displacement between multiple functional modules caused by manual pick-and-place in the related art, and avoids the risk of inaccurate assembly caused by directly installing multiple functional modules without using the positioning plate 11 in the related art.
[0050] For reference Figures 1-7 In an embodiment, the integrated device 1 further comprises a driving structure 14, which is arranged on the moving plate 12, and at least partially located between the moving plate 12 and the positioning plate 11. The driving structure 14 drives the moving plate 12 to move away from or close to the positioning plate 11.
[0051] The driving structure 14 is used to drive the moving plate 12 to move relative to the positioning plate 11. Optionally, the driving structure 14 is arranged on the surface of the moving plate 12 facing the positioning plate 11. The driving structure 14 can be a transmission mechanism, such as a sliding block, a sliding rail, a gear reduction box, a synchronous belt drive, etc. The driving structure 14 can also be an electric motor, such as a direct drive motor, or a servo motor, or a stepper motor, etc.
[0052] In summary, the present embodiment drives the moving plate 12 by the driving structure 14 to reduce the operation difficulty of the integrated device 1 and improve the production efficiency. Moreover, the driving structure 14 is at least partially located between the moving plate 12 and the positioning plate 11, which can reduce the interference of the driving structure 14 on the positioning part 13 and the functional module, and improve the reliability of the integrated device 1.
[0053] For reference Figures 1-7 In an embodiment, the driving structure 14 comprises a first sliding block 141 and a second sliding block 142. The first sliding block 141 is arranged on the surface of the moving plate 12 facing the positioning plate 11. The first sliding block 141 is provided with a first inclined surface 1411, and the second sliding block 142 is provided with a second inclined surface 1421. The first inclined surface 1411 and the second inclined surface 1421 have the same inclination direction, and the first inclined surface 1411 abuts against the second inclined surface 1421. The second sliding block 142 slides relative to the first sliding block 141, thereby driving the first sliding block 141 to move along the arrangement direction of the positioning plate 11 and the moving plate 12. When the integrated device 1 is in the positioning state, the first inclined surface 1411 and the second inclined surface 1421 partially overlap. When the integrated device 1 is in the pick-and-place state, the first inclined surface 1411 and the second inclined surface 1421 completely overlap.
[0054] The first sliding block 141 is fixed to the surface of the moving plate 12 facing the positioning plate 11, and the connection mode of the first sliding block 141 and the moving plate 12 can be threaded connection, adhesive connection, clamping, etc., which is not limited in the embodiment. The second sliding block 142 abuts against the first sliding block 141, and the second sliding block 142 can slide relative to the first sliding block 141, thereby driving the first sliding block 141 to move along the lifting direction of the integrated device 1. The arrangement direction of the positioning plate 11 and the moving plate 12 can also be understood as the lifting direction of the integrated device 1.
[0055] For example, by sliding the second sliding block 142 along the horizontal direction, the first sliding block 141 is driven to slide along the vertical direction, and the moving plate 12 is driven to move away from or close to the positioning plate 11, that is, the moving plate 12 is driven to move up and down.
[0056] The first inclined surface 1411 is arranged on the surface of the first sliding block 141 facing the second sliding block 142, and the second inclined surface 1421 is arranged on the surface of the second sliding block 142 facing the first sliding block 141. The first inclined surface 1411 can cooperate with the second inclined surface 1421 to drive the first sliding block 141 to slide along the second sliding block 142. The inclination directions of the first inclined surface 1411 and the second inclined surface 1421 are the same, and it can also be understood that the angle between the first sliding block 141 and the horizontal line is equal to the angle between the second sliding block 142 and the horizontal line.
[0057] The first inclined surface 1411 abuts against the second inclined surface 1421, for example, the first inclined surface 1411 directly contacts the second inclined surface 1421; for another example, the first inclined surface 1411 indirectly contacts the second inclined surface 1421 through other components.
[0058] When the integrated device 1 is in the positioning state, the first inclined surface 1411 and the second inclined surface 1421 partially overlap, which provides a basis for the subsequent sliding of the second inclined surface 1421 relative to the first inclined surface 1411. And when the integrated device 1 is in the moving state, the first inclined surface 1411 and the second inclined surface 1421 completely overlap, so as to position the integrated device 1, and ensure that the vertical distance between the moving plate 12 and the positioning plate 11 is greater than or equal to the length of the positioning part 13, and the functional module is removed from the integrated device 1.
[0059] In summary, the embodiment sets the first inclined surface 1411 on the first sliding block 141 and the second inclined surface 1421 on the second sliding block 142, so that the second sliding block 142 can smoothly slide relative to the first sliding block 141, thereby reducing the operation difficulty of the integrated device 1 and improving the reliability of the integrated device 1.
[0060] Please refer to Figures 1-7In an embodiment, the positioning plate 11 is provided with a mounting hole 111, the mounting hole 111 penetrates the surface of the positioning plate 11 facing the moving plate 12 and the surface of the positioning plate 11 away from the moving plate 12, the first sliding block 141 is arranged in the mounting hole 111, and the plurality of positioning portions 13 are arranged around the mounting hole.
[0061] The positioning plate 11 is provided with a mounting hole 111, the mounting hole 111 penetrates the surface of the positioning plate 11 facing the moving plate 12 and the surface of the positioning plate 11 away from the moving plate 12, the first sliding block 141 is arranged in the mounting hole 111, and the plurality of positioning portions 13 are arranged around the mounting hole.
[0062] The mounting hole 111 is arranged on the positioning plate 11, so that the first sliding block 141 drives the moving plate 12 to move without interfering with the positioning plate 11, the structure of the integrated device 1 is optimized, and the overall size of the integrated device 1 is reduced.
[0063] The positioning plate 11 is further provided with a sliding channel 113, and the second sliding block 142 slides relative to the positioning plate 11 through the sliding channel 113.
[0064] At least part of the second sliding block 142 is arranged in the sliding channel 113, and the second sliding block 142 can slide relative to the groove wall of the sliding channel 113. The sliding channel 113 is arranged on the positioning plate 11 to limit the sliding path of the second sliding block 142 and guide the sliding direction of the second sliding block 142, thereby improving the reliability of the integrated device 1.
[0065] The positioning plate 11 is further provided with a relief hole 112, the relief hole 112 penetrates the surface of the positioning plate 11 facing the moving plate 12 and the surface of the positioning plate 11 away from the moving plate 12, the relief hole 112 communicates with the mounting hole 111, and the second sliding block 142 passes through the relief hole 112.
[0066] The relief hole 112 is arranged on the positioning plate 11 to avoid the second sliding block 142, so as to avoid interference of the second sliding block 142 with the positioning plate 11, thereby improving the reliability of the integrated device 1.
[0067] Please refer to Figures 1-7 In an embodiment, the integrated device 1 further comprises a limiting piece 16 and a sliding rail 15, the limiting piece 16 is movably arranged on the sliding rail 15, the second sliding block 142 is slidably connected to the sliding rail 15, and the limiting piece 16 is used for abutting against the second sliding block 142.
[0068] The slide rail 15 is arranged on the side of the second sliding block 142 away from the first sliding block 141. The slide rail 15 is arranged away from the positioning plate 11 compared with the driving structure 14. Optionally, the extension direction of the slide rail 15 is horizontal.
[0069] The limiting piece 16 is used for limiting the sliding range of the second sliding block 142. Optionally, the limiting piece 16 is arranged on the circumferential side of the end of the slide rail 15. Optionally, the number of the limiting piece 16 is at least one. The limiting piece 16 is arranged adjacent to the end of the slide rail 15. The slide rail 15 has two opposite ends. For example, the limiting piece 16 is arranged on the circumferential side of one end of the slide rail 15. For another example, the limiting piece 16 is arranged on the circumferential side of the other end of the slide rail 15. For still another example, the limiting piece 16 is arranged on the circumferential side of one end of the slide rail 15 and on the circumferential side of the other end of the slide rail 15.
[0070] In summary, in the embodiment, the slide rail 15 cooperating with the second sliding block 142 and the limiting piece 16 are arranged. The slide rail 15 can guide the sliding direction of the second sliding block 142 and limit the sliding path of the second sliding block 142, thereby improving the reliability of the integrated device 1. The limiting piece 16 can limit the sliding range of the second sliding block 142, thereby further improving the reliability of the integrated device 1.
[0071] For reference Figures 8-9 , the second sliding block 142 is provided with a first magnetic part 1422, and the limiting piece 16 is provided with a second magnetic part 161. The first magnetic part 1422 and the second magnetic part 161 are attracted to each other.
[0072] The connection mode of the second sliding block 142 and the first magnetic part 1422 can be threaded connection, adhesive connection, clamping, etc. The connection mode of the limiting piece 16 and the second magnetic part 161 can be threaded connection, adhesive connection, clamping, etc. The embodiment does not limit this. Optionally, the first magnetic core part is embedded in the second sliding block 142, and the second magnetic part 161 is embedded in the limiting piece 16.
[0073] In the embodiment, the first magnetic part 1422 and the second magnetic part 161 are arranged. Under the action of the first magnetic part 1422 and the second magnetic part 161, the second sliding block 142 can slide towards the direction close to the limiting piece 16, thereby reducing the operation difficulty of the user moving the second sliding block 142 and improving the reliability of the integrated device 1.
[0074] For reference Figures 1-7In an embodiment, the integrated device 1 further comprises a control member 17, the control member 17 is arranged on the second sliding block 142, at least part of the control member 17 protrudes from the positioning plate 11 and the moving plate 12, and the control member 17 can drive the second sliding block 142 to slide relative to the first sliding block 141.
[0075] The control member 17 can also be understood as a handle, a button, etc. The control member 17 is fixed to the second sliding block 142, and the connection mode between the control member 17 and the second sliding block 142 can be threaded connection, adhesive connection, clamping, etc., which is not limited in the embodiment. For example, part of the control member 17 protrudes from the positioning plate 11 and the moving plate 12, and the other part of the control member 17 corresponds to the positioning plate 11 and the moving plate 12. Specifically, the second sliding block 142 can be driven to slide relative to the first sliding block 141 by pushing the control member 17.
[0076] In summary, the embodiment sets the control member 17 to facilitate the user to control the sliding of the second sliding block 142, reduces the operation difficulty of the integrated device 1, improves the production efficiency, and at least part of the control member 17 protrudes from the positioning plate 11 and the moving plate 12, which can further reduce the operation difficulty of the integrated device 1 and facilitate the user to operate.
[0077] Please refer to Figures 1-7 In an embodiment, the integrated device 1 further comprises a fixing structure and a pre-tightening structure, and the pre-tightening structure is arranged between the moving plate 12 and the fixing structure.
[0078] The pre-tightening structure can apply a pre-tightening force to realize the close fit of the fixing structure and the moving plate 12, and improve the rigidity and stability of the integrated device 1. The fixing structure can cooperate with the pre-tightening structure to fix the integrated device 1.
[0079] Please refer to Figures 1-7 In an embodiment, the fixing structure comprises a fixing plate 182 and a support 181, and the integrated device further comprises a base 19, the support 181 is arranged between the fixing plate 182 and the base 19, the moving plate 12 is sleeved on the support 181, and the positioning plate 11 is connected to the base 19.
[0080] The pre-tightening structure is an elastic element 183, the elastic element 183 is sleeved on the support 181, one end of the elastic element 183 abuts against the moving plate 12, and the other end of the elastic element 183 abuts against the fixing plate 182.
[0081] The support column 181 is arranged on the side of the positioning plate 11, and the fixed plate 182 is arranged at the end of the support column 181 and located on the side of the moving plate 12 away from the positioning plate 11. The positioning plate 11, the support column 181, and the guide rail are fixed on the base 19. The moving plate 12 can move relative to the support column 181. The support column 181 can also serve as a track of the moving plate 12 to guide the moving direction of the moving plate 12. The elastic element 183 is sleeved on the support column 181 and connected between the moving plate 12 and the fixed plate 182. The connection mode of the elastic element 183 with the moving plate 12 and the connection mode of the elastic element 183 with the fixed plate 182 can be screw connection, adhesive connection, clamping, etc., which are not limited in the embodiment.
[0082] When the moving plate 12 moves towards the direction away from the positioning plate 11, the distance between the moving plate 12 and the fixed plate 182 is reduced, and the elastic element 183 is in a compressed state. Moreover, the elastic element 183 in the compressed state has a rebound force to make the moving plate 12 move towards the direction close to the positioning plate 11, so as to restore the moving plate 12 to the original position.
[0083] In summary, by arranging the support column 181, the fixed plate 182, the base 19, and the elastic element 183, the moving plate 12 can be better supported and guided to move, and the reliability of the integrated device 1 is improved. Moreover, the arrangement of the elastic element 183 is conducive to restoring the moving plate 12 to the original position, and the operation difficulty of the user is reduced.
[0084] The use process of the integrated device 1 will be described in detail as follows: a plurality of functional modules are sleeved on the positioning part 13 by manual operation, and the plurality of functional modules are arranged on the moving plate 12. After the plurality of functional modules are assembled, the control member 17 is manually held and pushed inward. Under the drive of the control member 17, the second sliding block 142 slides relative to the first sliding block 141, so as to drive the moving plate 12 and the plurality of functional modules to rise upward. The moving plate 12 and the plurality of functional modules move away from the positioning plate 11, and the plurality of functional modules can be easily removed from the moving plate 12 when the plurality of functional modules are separated from the positioning part 13.
[0085] It can be seen that, by adopting the cooperation between the positioning plate 11 and the moving plate 12, the integrated device 1 can realize the rapid integration and pick-and-place of the plurality of functional modules, greatly improve the production efficiency, and improve the product quality. The risk of displacement between the plurality of functional modules caused by manual pick-and-place in the related art is avoided, and the risk of inaccurate assembly caused by directly installing the plurality of functional modules without using the positioning plate 11 in the related art is avoided.
[0086] Unless otherwise stated or contradictory, the terms or phrases used in the present application have the following meanings:
[0087] In the present application, "first", "second", and the like are used only for the purpose of description, and should not be understood as indicating or implying relative importance or implying the number of the technical features indicated. Therefore, the features defined as "first", "second" can explicitly or implicitly include at least one of the features.
[0088] In the present application, "one or more" refers to any one, any two or any two or more of the listed items. Among them, "several" refers to any two or more.
[0089] In the present application, it should be understood that the orientations or positional relationships indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", and the like are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0090] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral. It can be mechanical connection, or electrical connection. It can be directly connected, or indirectly connected through an intermediate medium. It can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0091] In the present application, the phrase "embodiment" "embodiment" means that the specific features, structures or characteristics described in conjunction with the embodiment can be included in at least one embodiment of the present application. The appearance of the phrase in the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment independent of or alternative to other embodiments. Those skilled in the art explicitly and implicitly understand that the embodiments described in the present application can be combined with other embodiments. In addition, it should also be understood that the features, structures or characteristics described in the embodiments of the present application can be combined with each other without contradiction, to form another embodiment without departing from the spirit and scope of the present application.
[0092] The above is part of the embodiments of the present application. It should be pointed out that for those skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, which are also considered within the scope of protection of the present application.
Claims
1. An integrated device, characterized by The integrated device comprises a positioning plate and a moving plate arranged on one side of the positioning plate, a surface of the positioning plate facing the moving plate is provided with a plurality of positioning portions, and the moving plate is capable of moving relative to the positioning plate; The integrated device has a positioning state and a moving state, the moving plate is capable of moving away from the positioning plate to switch the integrated device from the positioning state to the moving state, when the integrated device is in the positioning state, a vertical distance between the moving plate and the positioning plate is less than a length of the positioning portion, and when the integrated device is in the moving state, the vertical distance between the moving plate and the positioning plate is greater than or equal to the length of the positioning portion.
2. The integrated device of claim 1, wherein, The integrated device further comprises a driving structure arranged on the moving plate, the driving structure is at least partially located between the moving plate and the positioning plate, and the driving structure drives the moving plate to move away from or close to the positioning plate.
3. The integrated device of claim 2, wherein, The driving structure comprises a first sliding block and a second sliding block, the first sliding block is arranged on a surface of the moving plate facing the positioning plate, the first sliding block is provided with a first inclined surface, the second sliding block is provided with a second inclined surface, the first inclined surface and the second inclined surface have the same inclination direction, the first inclined surface abuts against the second inclined surface, the second sliding block slides relative to the first sliding block to drive the first sliding block to move along an arrangement direction of the positioning plate and the moving plate, the first inclined surface and the second inclined surface partially overlap when the integrated device is in the positioning state, and the first inclined surface and the second inclined surface completely overlap when the integrated device is in the moving state.
4. The integrated device of claim 3, wherein, The positioning plate is provided with a mounting hole penetrating through a surface of the positioning plate facing the moving plate and a surface of the positioning plate away from the moving plate, the first sliding block is arranged in the mounting hole, and the plurality of positioning portions are arranged on a periphery of the mounting hole. The positioning plate is further provided with a sliding channel, the second sliding block slides relative to the positioning plate through the sliding channel. The positioning plate is further provided with a avoiding hole penetrating through a surface of the positioning plate facing the moving plate and a surface of the positioning plate away from the moving plate, the avoiding hole is communicated with the mounting hole, and the avoiding hole is used for the second sliding block to pass through.
5. The integrated device of claim 3, wherein, The integrated device further comprises a limiting piece and a sliding rail, the limiting piece is movably arranged on the sliding rail, the second sliding block is slidably connected to the sliding rail, and the limiting piece is used for abutting against the second sliding block.
6. The integrated device of claim 5, wherein, The second sliding block is provided with a first magnetic portion, the limiting piece is provided with a second magnetic portion, and the first magnetic portion and the second magnetic portion are attracted to each other.
7. The integrated device of claim 3, wherein, The integrated device further comprises a control piece, the control piece is arranged on the second sliding block, at least part of the control piece protrudes from the positioning plate and the moving plate, and the control piece is capable of driving the second sliding block to slide relative to the first sliding block.
8. The integrated device of claim 2, wherein, The integrated device further comprises a fixing structure and a pre-tightening structure, the pre-tightening structure is arranged between the moving plate and the fixing structure.
9. The integrated device of claim 8, wherein, The fixing structure comprises a fixing plate and a support column, the integrated device further comprises a base, the support column is arranged between the fixing plate and the base, the moving plate is sleeved on the support column, and the positioning plate is connected to the base; The pre-tightening structure is an elastic element, the elastic element is sleeved on the support column, one end of the elastic element abuts against the moving plate, and the other end of the elastic element abuts against the fixing plate.
10. The integrated device of any one of claims 1-9, wherein, The positioning part satisfies at least one of the following conditions: The positioning part is arranged away from the moving plate; The moving plate is provided with a through hole, and the moving plate is sleeved on the positioning part through the through hole; The positioning part comprises a first positioning sub-part and a second positioning sub-part, and the length of the first positioning sub-part is greater than the length of the second positioning sub-part.