Circuit board storage device
By designing a combined structure of a carrying plate and a carrying slot, along with tilting and rolling auxiliary devices, the problems of crushing damage and inconvenience in picking up and putting down circuit boards during storage and transfer are solved, achieving safe storage and retrieval and efficient operation of circuit boards.
Patent Information
- Application Number
- CN202422651201.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-10-31
AI Technical Summary
In existing technologies, circuit boards are prone to damage from compression during storage and transfer due to stacking, and are also inconvenient to retrieve.
Design a circuit board storage device, which adopts a combination structure of a carrier plate and a carrier slot. The carrier slot is used to vertically place the circuit board, and an opening is formed on the side of the carrier plate to facilitate the lateral sliding and placement of the circuit board. The inclined carrier plate and storage rack are combined to prevent the circuit board from falling out. A rolling auxiliary device is provided on the inner side wall to improve the ease of operation.
This effectively avoids damage caused by the stacking of circuit boards, improves the convenience of picking up and placing circuit boards and operational efficiency, and reduces the risk of damage to circuit boards during operation.
Smart Images

Figure CN223632092U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of storage tables, in particular to a circuit board storage device. BACKGROUND
[0002] In the prior art circuit board processing procedure, the storage and transfer process of the circuit board is often to stack multiple circuit boards on the storage table, and then take out the circuit boards one by one for processing in the subsequent processing procedure. The prior art circuit board storage scheme adopts the stacking mode, and the lower circuit boards are severely squeezed, which easily leads to damage of the circuit boards. CONTENT OF THE UTILITY MODEL
[0003] In order to solve the above technical problems, the present application provides a circuit board storage device, which comprises a storage table, multiple storage racks arranged on the storage table, and a carrier plate arranged on the storage rack; the carrier plate is provided with multiple carrier grooves for vertically placing circuit boards; one end of the carrier groove extends to the side surface of the carrier plate, and an opening is formed on the side surface of the carrier plate. By arranging the carrier plate and the carrier grooves on the carrier plate, the circuit boards are placed in the carrier grooves, avoiding the problem of damage of the circuit boards caused by stacking. At the same time, the opening is formed on the side surface of the carrier plate connected with the carrier groove, so that the circuit boards can be placed into the carrier groove through the side surface, improving the portability of the circuit boards.
[0004] Preferably, the carrier plate is detachably arranged on the storage rack. By arranging the carrier plate detachable from the storage rack, the carrier plate can be taken off to take and place the circuit boards, and after the storage or taking of the circuit boards is completed, the carrier plate is placed back on the storage rack, improving the efficiency and flexibility of taking and placing the circuit boards.
[0005] Preferably, the storage rack is provided with at least two accommodation regions of the carrier plate, and a limiting device is arranged between the at least two accommodation regions of the carrier plate. By arranging multiple carrier plate accommodation regions on the storage rack, the volume and loading capacity of the single carrier plate can be reduced, facilitating the operation of the single carrier plate, improving the operation efficiency, and reducing the risk of device damage caused by improper operation.
[0006] Preferably, the carrier plate is arranged in an inclined state, and the position of the carrier plate forming the opening side is higher than the other side. One end of the carrier groove is connected with the side surface of the carrier plate to form an opening, which can be used for taking and placing the circuit boards. However, due to the formation of the opening, the carrier plate cannot limit the circuit boards in the carrier groove, and the circuit boards in the carrier groove may fall out of the carrier plate during movement, causing damage of the circuit boards. By arranging the carrier plate in an inclined state, the position of the carrier plate forming the opening side is higher than the other side, and the inclined carrier plate limits the circuit boards from falling out along the direction of the opening, avoiding the problem of damage of the circuit boards caused by falling out.
[0007] Preferably, the storage rack is arranged obliquely, and a side of the loading plate forming the opening is close to a higher side of the storage rack. By arranging the storage rack obliquely, the loading plate only needs to be placed on the storage rack to achieve its oblique placement, without the need to additionally arrange an oblique mechanism to make the loading plate oblique.
[0008] Preferably, the inner side wall of the loading groove is provided with a rolling auxiliary device. By arranging the rolling auxiliary device on the inner side wall of the loading groove, the circuit board is facilitated to be embedded into the loading groove, and the convenience of the circuit board taking and placing operation is improved.
[0009] Preferably, the rolling auxiliary device is a roller or a bearing, and a central axis of the roller or the bearing is perpendicular to the bottom surface of the loading groove. By arranging the roller or the bearing with the central axis perpendicular, the circuit board is facilitated to be placed into the loading groove in a lateral sliding manner.
[0010] Preferably, the inner side wall of the loading groove is provided with a groove, and the groove is used for mounting the rolling auxiliary device. By arranging the groove on the inner side wall of the loading groove, the roller or the bearing is embedded and mounted in the groove, and the non-groove part of the inner side wall of the loading groove can limit and fix the circuit board.
[0011] Preferably, a part of the rolling auxiliary device protrudes from the inner side wall. By protruding a part of the roller or the bearing from the inner side wall, it is ensured that the circuit board can be in full contact with the roller or the bearing during the taking and placing process, so as to facilitate the circuit board to be placed into the loading groove in a sliding manner.
[0012] From the above, at least the following beneficial effects can be obtained by applying the present application:
[0013] (1) By arranging the loading plate and the loading groove on the loading plate for vertically placing the circuit board, the circuit board storage device of the present application can avoid the problem of extrusion damage caused by stacking the circuit board;
[0014] (2) By arranging a section of the loading groove to communicate with one side of the loading plate to form an opening, the circuit board can be placed into the loading groove in a lateral sliding manner, and the convenience of taking and placing the circuit board is improved;
[0015] (3) By arranging the loading plate to be oblique, the opening side of the loading groove of the loading plate is higher than the opposite side, so as to avoid the circuit board from falling out during movement. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the description of the embodiments of the present application or the prior art. Obviously, the drawings in the following description are only part of the embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.
[0017] Figure 1 FIG. 1 is a schematic diagram of a circuit board storage device according to an embodiment of the present application;
[0018] Figure 2 FIG. 2 is a second schematic diagram of a circuit board storage device according to an embodiment of the present application;
[0019] Figure 3 FIG. 3 is a schematic diagram of a carrier plate according to an embodiment of the present application.
[0020] Reference Signs
[0021] 100, storage table; 200, storage rack; 300, carrier plate; 101, roller; 210, accommodation area; 220, limiting device; 310, carrier groove; 311, opening; 312, inner side wall; 313, rolling auxiliary device; 314, groove. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, 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 a person of ordinary skill in the art without creative labor fall within the scope of protection of the present application.
[0023] To solve the above technical problems, the present embodiment provides a circuit board storage device, which comprises a storage table 100, a plurality of storage racks 200 arranged on the storage table 100, and a carrier plate 300 arranged on the storage rack 200; the carrier plate 300 is provided with a plurality of carrier grooves 310, and the carrier grooves 310 are used for vertically placing circuit boards. By arranging the carrier plate 300 and the carrier grooves 310 on the carrier plate 300, the circuit boards can be placed in the carrier grooves 310, thereby avoiding the problem of damage caused by the extrusion of the circuit boards due to the stacking of the circuit boards.
[0024] In an embodiment of the present application, a plurality of carrier grooves 310 are arranged in the carrier plate 300, the plurality of carrier grooves 310 are cuboid grooves, and the long sides of the plurality of carrier grooves 310 are arranged in parallel. The carrier grooves 310 arranged in the form of a cuboid can be used for accommodating circuit boards; by arranging the width of the carrier grooves 310, the carrier grooves 310 can accommodate and abut and clamp the circuit boards at the same time, so that the circuit boards are limited to a vertically placed state; by arranging the groove width between adjacent carrier grooves 310, the space of the carrier plate 300 can be reasonably utilized, and at the same time, the circuit boards in adjacent carrier grooves 310 can be prevented from being damaged due to contact and collision.
[0025] Further, one end of the object loading groove 310 extends to the side of the object loading plate 300, and an opening 311 is formed in the side of the object loading plate 300. The object loading groove 310 is connected to the side of the object loading plate 300 to form the opening 311, so that the circuit board can be placed into the object loading groove 310 through the side, improving the portability of the circuit board.
[0026] In an embodiment of the present application, the object loading groove 310 is a cuboid groove arranged on the object loading plate 300, and the long side of the cuboid object loading groove 310 is parallel to one side of the object loading plate 300. One end surface of the cuboid object loading groove 310 is arranged in the object loading plate 300 to form a stop limiting surface of the object loading groove 310. The other end surface of the cuboid object loading groove 310 is connected to the side of the object loading plate 300 to form the opening 311 in the side of the object loading plate 300, which can be used as the feeding opening of the object loading groove 310.
[0027] In another embodiment of the present application, the object storage platform 100 comprises a plurality of object storage racks 200, and the plurality of object storage racks 200 divide the object storage platform 100 in the vertical direction to form a plurality of layers of object storage spaces. Each layer of object storage space is used to carry the object loading plate 300 and store the circuit board arranged on the object loading plate 300. When the vertical space utilization rate of the object storage platform 100 is high, that is, the distance between the circuit board and the upper object storage rack 200 is small after the circuit board is placed, the operator or the automatic material taking device cannot directly store or take out the circuit board from the object storage platform 100 in the vertical direction. Therefore, in the embodiment of the present application, one end of the object loading groove 310 is connected to the side of the object loading plate 300, and the opening 311 is formed in the side of the object loading plate 300 for storing and taking out the circuit board. Through the above arrangement, the circuit board of the present application can be slid to store or take out the circuit board through the side opening 311 of the object loading plate 300, and the circuit board does not need to displace in the direction perpendicular to the object loading plate 300, which facilitates the storage and taking operation of the circuit board.
[0028] Further, the object loading plate 300 is detachably arranged on the object storage rack 200. Through the arrangement of the object loading plate 300 which is detachable from the object storage rack 200, the object loading plate 300 can be taken off to separately store or take the circuit board, and then the object loading plate 300 is placed back on the object storage rack 200 after the storage or taking of the circuit board is completed, which improves the efficiency and flexibility of the storing and taking of the circuit board.
[0029] In an embodiment of the present application, the storage table 100 is fixedly provided with the storage rack 200, and the storage rack 200 is provided with a loading plate 300 containing area 210 for placing the loading plate 300. The loading plate 300 is a relatively independent plate body from the storage rack 200 or the storage table 100, and can be taken out or placed in the containing space of the storage rack 200. Based on this, in an embodiment of the present application, the operator or the automatic taking and placing device can take out the loading plate 300, and then store the circuit board on the loading plate 300. After completing the storage and loading of the circuit board, the loading plate 300 together with the circuit board is finally placed in the containing space of the storage rack 200. In another embodiment of the present application, the loading plate 300 is placed in the containing space of the storage rack 200, and the operator or the automatic taking and placing device can also not take out the loading plate 300, and directly complete the storage and taking operation of the circuit board on the loading plate 300 of the storage rack 200.
[0030] Further, the storage rack 200 is provided with at least two loading plate 300 containing areas 210, and the at least two loading plate 300 containing areas 210 are provided with a limiting device 220. Since the area of the storage rack 200 is relatively large, if the loading plate 300 is arranged to be similar to the area of the storage rack 200, the area of a single loading plate 300 will be relatively large, and the loading of the circuit board will be more, which is not convenient for moving operation of the loading plate 300, and is easy to cause damage to the loading plate 300 or the circuit board in the operation process. Therefore, an embodiment of the present application is provided with at least two loading plate 300 containing areas 210 in each layer of the storage rack 200, and a plurality of loading plate 300 containing areas 210 are arranged on the storage rack 200, which can reduce the volume and loading amount of a single loading plate 300, facilitate the operation of a single loading plate 300, improve the operation efficiency, and reduce the risk of device damage caused by improper operation. At the same time, the loading plate 300 limiting device 220 is arranged on the storage rack 200, which further facilitates the taking and placing of the loading plate 300 on the storage rack 200.
[0031] Further, the carrier plate 300 is arranged to be inclined, and the position of the side of the carrier plate 300 forming the opening 311 is higher than the other side. In an embodiment of the present application, the carrier groove 310 is a cuboid groove, and the end face of the cuboid groove communicates with the side face of the carrier plate 300 to form the opening 311, and the opening 311 can be used to take and place the circuit board. However, since the end face of the carrier groove 310 forms the opening 311, the carrier plate 300 cannot limit the circuit board in the carrier groove 310, and the circuit board in the carrier groove 310 can fall out of the carrier plate 300 during movement, causing damage to the circuit board. Therefore, the carrier plate 300 is arranged to be inclined, and the position of the side of the carrier plate 300 forming the opening 311 is higher than the other side. Thus, from the opening 311 of the carrier groove to the opposite closed stop face of the opening 311 of the carrier groove, an extension direction from the upper inclined side to the lower inclined side is formed, and the circuit board in the carrier groove 310 is limited by the gravity and the inclined carrier plate 300, and will not fall out of the carrier plate 300. Through the above arrangement, the circuit board can be limited from falling out along the direction of the opening 311, and the problem of damage caused by falling out of the circuit board is avoided.
[0032] Further, the storage rack 200 is arranged to be inclined, and the side of the carrier plate 300 forming the opening 311 is close to the higher side of the storage rack 200. In an embodiment of the present application, the storage rack 200 is fixed to the storage table 100, and the carrier plate 300 is arranged to be separable from the storage rack 200. The storage rack 200 is fixed to the storage table 100 to be inclined, and when the carrier plate 300 is placed in the storage rack 200, it follows the posture of the storage rack 200 to form an inclination, so as to avoid the circuit board in the carrier plate 300 from falling out; and when the carrier plate 300 is taken out and placed on the workbench, the carrier plate 300 is placed to be parallel to the horizontal plane without inclination, so as to facilitate the storage and taking operation of the circuit board in the carrier plate 300. Through the inclined arrangement of the storage rack 200, the carrier plate 300 only needs to be placed on the storage rack 200 to realize the inclined placement of itself, and there is no need to additionally arrange an inclined mechanism to incline the carrier plate 300.
[0033] Further, the inner side wall 312 of the carrier groove 310 is provided with a rolling auxiliary device 313. When the circuit board is taken and placed on the carrier plate 300, the circuit board is slid along the length direction of the carrier groove 310 or perpendicular to the carrier plate 300 and embedded in the carrier groove 310, and the rolling auxiliary device 313 arranged on the inner side wall 312 of the carrier groove 310 can be relatively rotatably abutted against the circuit board, so as to facilitate the sliding taking and placing operation of the circuit board. Through the rolling auxiliary device 313 arranged on the inner side wall 312 of the carrier groove 310, the circuit board can be embedded in the carrier groove 310, and the convenience of the taking and placing operation of the circuit board is improved.
[0034] Further, the rolling auxiliary device 313 is a roller or bearing, and the central axis of the roller or bearing is perpendicular to the bottom surface of the object slot 310. The roller or bearing arranged vertically through the central axis facilitates the lateral sliding of the circuit board into the object slot 310.
[0035] Further, the inner side wall 312 of the object slot 310 is provided with a groove 314, and the groove 314 is used for the rolling auxiliary device 313. In an embodiment of the present application, the rolling auxiliary devices 313 are uniformly and spacedly arranged in the object slot 310. Since the rolling auxiliary devices 313 are arranged in a spaced manner, the part of the circuit board that is not in contact with the rolling auxiliary device 313 can not be effectively contacted or clamped, causing the problem that the circuit board is deflected in the sliding direction when being taken or placed, or is overturned to the two sides and collides with other circuit boards in the object slot 310 when being static. Therefore, the inner side wall 312 of the object slot 310 in the embodiment of the present application is provided with a groove 314, the rolling auxiliary device 313 is installed in the groove 314 of the inner side wall 312, and the part of the inner side wall 312 that is not formed with the groove 314 protrudes to contact and clamp the circuit board. By arranging the groove 314 in the inner side wall 312 of the object slot 310, the roller or bearing is embedded and installed in the groove 314, and the part of the inner side wall 312 of the object slot 310 that is not the groove 314 can limit and fix the circuit board.
[0036] Further, a part of the rolling auxiliary device 313 protrudes from the inner side wall 312. In an embodiment of the present application, the main body of the roller or bearing is embedded in the groove 314 of the inner side wall 312, and a small part of the roller or bearing protrudes from the inner side wall 312 to better contact the circuit board and assist the sliding movement of the circuit board during the taking and placing process. By protruding a part of the roller or bearing from the inner side wall 312, it is ensured that the circuit board can be in full contact with the roller or bearing during the taking and placing process, so as to facilitate the sliding of the circuit board into the object slot 310.
[0037] The above-described embodiments do not constitute a limitation on the protection scope of the technical solutions. Any modification, equivalent replacement and improvement made within the spirit and principles of the above-described embodiments shall be included in the protection scope of the technical solutions.
Claims
1. A circuit board storage device, characterized by: The utility model provides a circuit board storage device, including storage platform (100), a plurality of storage shelves (200) are arranged in the storage platform (100), and the carrier plate (300) is arranged in the storage shelf (200), the carrier plate (300) is provided with a plurality of carrier grooves (310), and the carrier groove (310) is used for vertically placing circuit board, one end of the carrier groove (310) extends to the side of the carrier plate (300), and the opening (311) is formed in the side of the carrier plate (300).
2. The circuit board storage device of claim 1, wherein: The carrier plate (300) is detachably arranged in the storage shelf (200).
3. The circuit board storage device of claim 2, wherein: The storage shelf (200) is provided with at least two accommodation areas (210) of the carrier plate (300), and a limiting device (220) is arranged between the at least two accommodation areas (210) of the carrier plate (300).
4. The circuit board storage device of claim 1, wherein: The carrier plate (300) is arranged obliquely, and the position of the carrier plate forming the opening (311) on one side is higher than that on the other side.
5. The circuit board storage device of claim 4, wherein: The storage shelf (200) is arranged obliquely, and the carrier plate (300) is arranged on the side of the opening (311) close to the higher side of the storage shelf (200).
6. The circuit board storage device of claim 1, wherein: The inner side wall (312) of the carrier groove (310) is provided with a rolling auxiliary device (313).
7. The circuit board storage device of claim 6, wherein: The rolling auxiliary device (313) is a roller or a bearing, and the central axis of the roller or the bearing is perpendicular to the bottom surface of the carrier groove.
8. The circuit board storage device of claim 6, wherein: The inner side wall (312) of the carrier groove (310) is provided with a groove (314) for mounting the rolling auxiliary device (313).
9. The circuit board storage device of claim 8, wherein: Part of the rolling auxiliary device (313) protrudes from the inner side wall (312).