Chip inductor storage rack for circuit board production

By designing a chip inductor storage rack for easy disassembly and assembly circuit board production, the problems of large space and low space utilization in the existing technology are solved, and the effect of saving transportation costs and improving usage efficiency is achieved.

CN223157322UActive Publication Date: 2025-07-25SHENZHEN SANFUXIN ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422291404.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-07-25
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

The existing chip inductor storage racks for circuit board production do not have the function of convenient disassembly and assembly, which occupies a lot of space during transportation and increases transportation costs, and cannot disassemble and assembly and adjustments based on the actual storage space, resulting in low space utilization.

Method used

A patch inductor storage rack including two shells and a connecting mechanism is designed. By setting up components such as flat plates, rectangular plates, hole blocks, clamp plates, round rods and anti-slip pads, the storage rack is easily disassembled and installed and space adjustment.

Benefits of technology

It realizes space saving during transportation, reduces transportation costs, and improves space utilization and utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a chip inductor storage rack for circuit board production, which relates to the technical field of circuit board production and comprises two shells, a connecting mechanism is arranged between the two shells and comprises a flat plate, a rectangular plate is placed at the top of the flat plate, and perforated blocks are fixed at four corners of the bottom of the rectangular plate. By arranging the connecting mechanism, the chip inductor storage rack for circuit board production has the function of being convenient to disassemble and assemble, namely, when the chip inductor storage rack capable of being disassembled and assembled is transported, the transportation space can be saved, so that the transportation cost is reduced, and the transportation efficiency is improved. And meanwhile, the chip inductor storage rack can be dismounted and adjusted according to the characteristics of the actual storage space, so that the utilization rate of the space is improved, the using effect of the chip inductor storage rack for circuit board production is improved, and meanwhile the using efficiency of the chip inductor storage rack for circuit board production is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of circuit board production, in particular to a patch inductor storage rack for circuit board production. Background Art

[0002] A patch inductor, also known as a power inductor, a high-current inductor, and a surface-mounted high-power inductor, has the advantages of miniaturization, high quality, and convenient installation. It is widely used in the production of various circuit boards. When the patch inductor is not in use, in order to avoid physical damage to the patch inductor during storage, such as collision and extrusion, etc., people generally place the patch inductor on a patch inductor storage rack for storage.

[0003] When the existing patch inductor storage rack for circuit board production is in use, although it can avoid physical damage to the patch inductor during storage, it does not have the function of being convenient for disassembly and assembly. That is, the patch inductor storage rack is generally formed by fixing multiple placement racks together. This will cause the patch inductor storage rack to occupy more space during transportation, thereby increasing the transportation cost. At the same time, the patch inductor storage rack cannot be disassembled and adjusted according to the characteristics of the actual storage space, resulting in its inability to make full use of the limited space, which not only reduces the use effect of the patch inductor storage rack for circuit board production, but also reduces the use efficiency of the patch inductor storage rack for circuit board production.

[0004] Therefore, it is necessary to propose a new type of patch inductor storage rack for circuit board production to solve the above-mentioned technical problems. Content of the Utility Model

[0005] The purpose of the utility model is to solve the problem that the patch inductor storage rack for circuit board production does not have the function of being convenient for disassembly and assembly, which easily causes the patch inductor storage rack to occupy more space during transportation, thereby increasing the transportation cost. At the same time, the patch inductor storage rack cannot be disassembled and adjusted according to the characteristics of the actual storage space, which easily leads to its inability to make full use of the limited space, and a patch inductor storage rack for circuit board production is proposed.

[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme: A patch inductor storage rack for circuit board production, including two shells, and a connection mechanism is arranged between the two shells;

[0007] The connecting mechanism includes a flat plate. A rectangular plate is placed on the top of the flat plate. Four corners of the bottom of the rectangular plate are fixedly provided with perforated blocks. Two rectangular holes are formed on the front surface of the flat plate. A clamping plate is movably sleeved in each of the two rectangular holes. A rectangular block is arranged on the front surface and the rear surface of each clamping plate. The four rectangular blocks are divided into two groups. A round rod is fixedly provided on the opposite side of each group of rectangular blocks. An anti-slip pad is adhesively connected to the opposite side of each group of rectangular blocks. Placement grooves are formed at the four corners of the top of the flat plate.

[0008] Compared with the prior art, the advantages and positive effects of the present utility model are as follows.

[0009] 1. In the present utility model, by providing a connecting mechanism, the patch inductor storage rack for circuit board production can have the function of being convenient for disassembly and assembly. That is, when the patch inductor storage rack that can be disassembled and assembled is transported, the transportation space can be saved, thereby reducing the transportation cost. At the same time, the patch inductor storage rack can be disassembled and adjusted according to the characteristics of the actual storage space, so as to improve the utilization rate of space, which not only improves the use effect of the patch inductor storage rack for circuit board production, but also improves the use efficiency of the patch inductor storage rack for circuit board production. With the cooperation of the rectangular block, the round rod and the bearing, the anti-slip pad can be driven to rotate on the surface of the clamping plate. With the cooperation of the clamping plate and the rectangular hole, the perforated block can be fixed in the placement groove.

[0010] 2. In the present utility model, with the cooperation of the rubber pad and the shell, the rotated rotating plate can be fixed. With the cooperation of the rectangular groove and the long rod, the rotating plate can rotate on the shell. With the action of the fixing block, it is convenient to rotate the rotating plate. With the cooperation of the rotating plate and the rubber pad, it can be avoided that the patch inductor falls from the inside of the shell. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 is a three-dimensional view of a patch inductor storage rack for circuit board production proposed by the present utility model;

[0012] Figure 2 is a three-dimensional structural schematic diagram of the shell and the rectangular groove of a patch inductor storage rack for circuit board production proposed by the present utility model;

[0013] Figure 3 is a partial three-dimensional view of a patch inductor storage rack for circuit board production proposed by the present utility model;

[0014] Figure 4 is a partial three-dimensional view of a patch inductor storage rack for circuit board production proposed by the present utility model;

[0015] Figure 5This utility model provides a partially sectional perspective view of the connection mechanism of a storage rack for chip inductors used in circuit board production;

[0016] Figure 6 This utility model provides a partially sectional perspective view of a storage rack for chip inductors used in circuit board production;

[0017] Figure 7 This utility model provides a partially sectional perspective view of the connection mechanism of a storage rack for chip inductors used in circuit board production from another angle.

[0018] Legend: 1. Housing; 2. Connection mechanism; 201. Flat plate; 202. Rectangular plate; 203. Block with hole; 204. Rectangular hole; 205. Clamping plate; 206. Rectangular block; 207. Round rod; 208. Anti-slip pad; 209. Placing groove; 3. Rectangular groove; 4. Long rod; 5. Rotating plate; 6. Rubber pad; 7. Fixed block. Detailed implementation manners

[0019] In order to more clearly understand the above-mentioned objects, features and advantages of this utility model, the following further describes this utility model with reference to the drawings and embodiments. It should be noted that, without conflict, the embodiments of this application and the features in the embodiments can be combined with each other.

[0020] Please refer to Figures 1-7 , this utility model provides a technical solution: a storage rack for chip inductors used in circuit board production, including two housings 1, and a connection mechanism 2 is arranged between the two housings 1;

[0021] The connection mechanism 2 includes a flat plate 201, a rectangular plate 202 is placed on the top of the flat plate 201, four corners of the bottom of the rectangular plate 202 are fixedly provided with blocks with holes 203, two rectangular holes 204 are opened on the front surface of the flat plate 201, clamping plates 205 are movably sleeved in the two rectangular holes 204 respectively, rectangular blocks 206 are arranged on the front surface and the rear surface of each clamping plate 205, the four rectangular blocks 206 are divided into two groups, round rods 207 are fixedly arranged on the opposite sides of each group of rectangular blocks 206, anti-slip pads 208 are adhesively connected to the opposite sides of each group of rectangular blocks 206, and placing grooves 209 are opened at the four corner positions of the top of the flat plate 201.

[0022] As shown in Figures 1-3 , Figure 6 and Figure 7 , the bottom of the flat plate 201 is fixed to the top of one of the housings 1, the top of the rectangular plate 202 is fixed to the bottom of the other housing 1, each block with hole 203 is movably sleeved in each placing groove 209 respectively, the four placing grooves 209 are divided into two groups, and the cooperation of the placing grooves 209 and the blocks with holes 203 can prevent the rectangular plate 202 from sliding on the flat plate 201.

[0023] As Figure 1 , Figure 3 , Figure 5 and Figure 7 shown, the inner parts of each group of placement grooves 209 are respectively communicated with the inner parts of each rectangular hole 204. The four perforated blocks 203 are divided into two groups. Each clamping plate 205 is movably sleeved between the through holes of each group of perforated blocks 203. The four round rods 207 are divided into two groups. The four anti-slip pads 208 are divided into two groups, which is convenient to increase the friction between the rectangular block 206 and the flat plate 201 under the action of the anti-slip pads 208.

[0024] As Figure 5 and Figure 7 shown, the opposite ends of each group of round rods 207 respectively penetrate through the opposite sides of each group of anti-slip pads 208 movably. The opposite ends of each group of round rods 207 are respectively rotatably connected to the front surface grooves and the rear surface grooves of each clamping plate 205 through bearings. The opposite sides of each group of anti-slip pads 208 are respectively in contact with the front surface and the rear surface of each clamping plate 205, and the perforated block 203 can be fixed inside the placement groove 209 under the cooperation of the clamping plate 205 and the rectangular hole 204.

[0025] As Figure 1 , Figure 2 , Figure 4 and Figure 6 shown, a rectangular groove 3 is opened on one side of the inner wall of each housing 1. A long rod 4 is fixed inside each rectangular groove 3. A rotating plate 5 is rotatably connected to the outer surface of each long rod 4, which is convenient to prevent the chip inductor from falling out of the housing 1 under the cooperation of the rotating plate 5 and the rubber pad 6.

[0026] As Figure 1 , Figure 4 and Figure 6 shown, a rubber pad 6 is adhesively connected to the top and the bottom of each rotating plate 5. A fixing block 7 is fixed at a position near the edge of the front surface of each rotating plate 5, which is convenient to rotate the rotating plate 5 under the action of the fixing block 7.

[0027] As Figure 1 , Figure 2 , Figure 4 and Figure 6 shown, the four rubber pads 6 are divided into two groups. The opposite sides of each group of rubber pads 6 are respectively in contact with the bottom of the inner wall of each housing 1 and the top of the inner wall of each housing 1. The two ends of each long rod 4 respectively penetrate through the opposite sides of each group of rubber pads 6 movably, which is convenient to increase the friction between the rotating plate 5 and the housing 1 under the action of the rubber pads 6.

[0028] Usage method and working principle of this device: When it is necessary to disassemble the storage rack for chip inductors used in circuit board production, first rotate one group of rectangular blocks 206 by 90 degrees. At this time, the rotating rectangular blocks 206 will drive the corresponding anti-slip pads 208 to rotate. At the same time, the rotating rectangular blocks 206 will also drive the corresponding round rods 207 to rotate. When this group of rectangular blocks 206 completes the rotation operation, the surfaces of this group of anti-slip pads 208 will separate from the surface of the flat plate 201. Subsequently, apply a force to one of the rectangular blocks 206 in this group of rectangular blocks 206, so that this rectangular block 206 moves towards the front surface direction of the housing 1. At this time, the moving rectangular block 206 will drive the corresponding group of round rods 207, the corresponding group of anti-slip pads 208, the corresponding clamping plate 205 and the corresponding other rectangular block 206 to move out of the corresponding rectangular hole 204 together. At the same time, the moving clamping plate 205 will also move out from between the corresponding group of perforated blocks 203. Subsequently, operate according to the above operation steps to move another group of rectangular blocks 206, another group of anti-slip pads 208, another group of round rods 207 and another clamping plate 205 out of the other rectangular hole 204 together. Then lift the other housing 1. At this time, the moving housing 1 will drive the rectangular plate 202 to move, and the moving rectangular plate 202 will drive the two groups of perforated blocks 203 to move. When the two groups of perforated blocks 203 both move out of the corresponding group of placement grooves 209, directly remove this housing 1 at this time, and the disassembly of the chip inductor storage rack is completed at this time. When it is necessary to assemble the chip inductor storage rack, just perform the reverse operation according to the above operation steps. When it is necessary to take out the chip inductor placed inside one of the housings 1, first apply a force to the fixing block 7 on this housing 1 and make the fixing block 7 move. At this time, the moving fixing block 7 will, under the cooperation of the corresponding long rod 4 and the corresponding rectangular groove 3, make the corresponding rotating plate 5 rotate. At this time, the rotating rotating plate 5 will drive the corresponding group of rubber pads 6 to rotate together. When the rotating plate 5 rotates to a certain angle (convenient for taking out the chip inductor according to the actual situation), at this time, release the force applied to the fixing block 7. At this time, the corresponding rotating plate 5 can stop rotating under the cooperation of the corresponding group of rubber pads 6 and the corresponding housing 1. Subsequently, the chip inductor placed inside this housing 1 can be taken out. When the operation of taking out the chip inductor is completed, directly perform the reverse operation according to the above operation steps to make the corresponding rotating plate 5 reset to its original position.

[0029] Among them, the bearing is a common part in real life.

[0030] The above are only the preferred embodiments of the present utility model, and are not intended to limit the present utility model in other forms. Any person skilled in the relevant art may use the technical content disclosed above to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, any simple modification, equivalent change, and modification made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution content of the present utility model still fall within the protection scope of the technical solution of the present utility model.

Claims

1. A storage rack for chip inductors used in circuit board production, comprising two shells (1), characterized in that: A connecting mechanism (2) is arranged between the two shells (1); The connecting mechanism (2) includes a flat plate (201). A rectangular plate (202) is placed on the top of the flat plate (201). Four corner positions of the bottom of the rectangular plate (202) are respectively fixed with perforated blocks (203). Two rectangular holes (204) are formed in the front surface of the flat plate (201). A clamping plate (205) is movably sleeved in each of the two rectangular holes (204). A rectangular block (206) is arranged on the front surface and the rear surface of each clamping plate (205). The four rectangular blocks (206) are divided into two groups. A round rod (207) is fixed on the opposite side of each group of rectangular blocks (206). An anti-slip pad (208) is adhesively connected to the opposite side of each group of rectangular blocks (206). Placing grooves (209) are formed at the four corner positions of the top of the flat plate (201).

2. The patch inductor storage rack for circuit board production according to claim 1, wherein: The bottom of the flat plate (201) is fixed to the top of one of the shells (1), and the top of the rectangular plate (202) is fixed to the bottom of the other shell (1). Each perforated block (203) is respectively movably sleeved in each of the placing grooves (209). The four placing grooves (209) are divided into two groups.

3. The patch inductor storage rack for circuit board production according to claim 1, characterized in that: The interior of each group of placing grooves (209) is respectively communicated with the interior of each rectangular hole (204). The four perforated blocks (203) are divided into two groups. Each clamping plate (205) is respectively movably sleeved between the through holes of each group of perforated blocks (203). The four round rods (207) are divided into two groups. The four anti-slip pads (208) are divided into two groups.

4. The chip inductor storage rack for circuit board production according to claim 1, characterized in that: The opposite ends of each group of round rods (207) respectively movably penetrate through the opposite sides of each group of anti-slip pads (208). The opposite ends of each group of round rods (207) are respectively rotatably connected to the groove positions on the front surface and the rear surface of each clamping plate (205) through bearings. The opposite sides of each group of anti-slip pads (208) are respectively in contact with the front surface and the rear surface of each clamping plate (205).

5. The patch inductor storage rack for circuit board production according to claim 1, wherein: A rectangular groove (3) is formed on one side of the inner wall of each shell (1). A long rod (4) is fixed in the interior of each rectangular groove (3). A rotating plate (5) is rotatably connected to the outer surface of each long rod (4).

6. The chip inductor storage rack for circuit board production according to claim 5, characterized in that: A rubber pad (6) is adhesively connected to the top and the bottom of each rotating plate (5). A fixing block (7) is fixed at a position close to the edge on the front surface of each rotating plate (5).

7. The chip inductor storage rack for circuit board production according to claim 6, characterized in that: The four rubber pads (6) are divided into two groups. The opposite sides of each group of rubber pads (6) are respectively in contact with the bottom and the top of the inner wall of each shell (1). The two ends of each long rod (4) respectively movably penetrate through the opposite sides of each group of rubber pads (6).