Typesetting auxiliary device for inductor production
By designing matrix-arranged sorting slots and guide sleeves in the inductor sorting device, combined with the cooperation of springs and guide frames, the problem of efficient sorting of inductors placed one by one inside the placement box was solved, achieving efficient and accurate sorting of inductors.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SUQIAN CHANGJIE TECHNOLOGY CO LTD
- Filing Date
- 2025-06-17
- Publication Date
- 2026-05-19
AI Technical Summary
In practice, existing inductor layout devices require multiple inductors to be placed one by one inside the placement box, making it difficult to achieve efficient layout work.
Design an inductor production layout auxiliary device. By opening multiple matrix-arranged layout grooves inside the top plate and integrally forming multiple matrix-arranged guide sleeves at the bottom of the supporting base plate, the inductor is corrected into the layout grooves by the cooperation of springs and guide frames, and the inductor is entered into the layout device by the movement of the top plate.
This improves the efficiency of inductor layout, ensures that inductors are accurately placed into the guide bushings, avoids errors, and achieves efficient inductor layout.
Smart Images

Figure CN224263938U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of inductor production auxiliary technology, specifically an inductor production layout auxiliary device. Background Technology
[0002] An inductor converts electrical energy into magnetic energy and stores it. The structure of an inductor is similar to a transformer, but it has only one winding. An inductor has a certain inductance; it only impedes changes in current. If no current is flowing through the inductor, it will attempt to impede the current flow when the circuit is closed; if current is flowing through the inductor, it will attempt to maintain a constant current when the circuit is open. Inductors are also called chokes, reactors, or dynamic reactors.
[0003] After production, the inductors need to be laid out to facilitate the handling of the entire assembly after production is completed.
[0004] The patent document with announcement number CN211443225U describes an inductor layout device. This device installs multiple sets of movable placement plates on the top and inside the placement box. The front component of the movable placement plate has an elongated slot, and a cover plate is installed inside the slot. Two sets of plug-in rods are installed on the front of the cover plate. The inductor body is then placed inside the slot, which can be used for inductor layout and positioning.
[0005] However, in the process of implementing the above technical solution, the following technical problems were found:
[0006] This inductor layout device can arrange multiple inductors by forming an inner cavity inside the placement box to accommodate them. However, in practice, multiple inductors need to be placed inside the placement box one by one, making it difficult to achieve efficient inductor layout. Utility Model Content
[0007] To overcome the shortcomings of existing inductor layout devices, which form an internal cavity inside a placement box to house multiple inductors, requiring each inductor to be placed one by one in the box during actual operation, making efficient inductor layout difficult, this application provides an inductor production layout auxiliary device. This device features multiple matrix-arranged sorting grooves inside a sorting top plate and multiple matrix-arranged guide sleeves integrally formed on the bottom of a supporting base plate. When multiple inductors are placed on top of the sorting top plate and the plate is moved left and right on top of the supporting base plate, the inductors can be aligned into the sorting grooves and supported by the top surface of the supporting base plate. This ensures that the heavier inductors face downwards. Subsequently, the sorting top plate is moved from the back to the front, allowing the inductors to pass through the supporting base plate and enter the layout device, thus improving layout efficiency.
[0008] The technical solution adopted by the embodiments of this application to solve its technical problem is:
[0009] An inductor production layout auxiliary device includes a sorting top plate and a supporting bottom plate, wherein the supporting bottom plate is disposed at the bottom of the sorting top plate;
[0010] The top plate has multiple sorting grooves arranged in a matrix inside. The top of both ends of the support base plate are fitted with limiting ribs. Two springs are provided between the limiting ribs and the surface of one end of the top plate. The bottom surface of the support base plate is integrally formed with multiple guide sleeves arranged in a matrix.
[0011] The sorting top plate moves left and right on the top of the supporting base plate. After compressing the two springs at one end, the pressure of the two springs at the other end is released. The compressed springs are reset and the released springs are supported, so that the sorting top plate swings in the horizontal plane on the top of the supporting base plate. This corrects multiple inductors to the inside of the sorting groove, which is supported by the top surface of the supporting base plate. Then, they enter multiple guide sleeves one by one and fall into the inside of the layout device.
[0012] In one possible implementation, the top channel size of each of the plurality of sorting grooves is larger than the bottom channel size, and the inner wall of the sorting grooves transitions smoothly from top to bottom.
[0013] In one possible implementation, the top surface of the supporting base plate is machined with multiple guide frames, which are arranged in a matrix and are all in a figure-eight shape, with the narrow end of each guide frame close to the connection point between the guide sleeve and the guide frame.
[0014] In one possible implementation, the bottom of the tidying top plate is provided with multiple intersecting channels, and when the tidying top plate covers the top of the supporting bottom plate, multiple guide frames are respectively located inside the multiple channels.
[0015] In one possible implementation, when the sorting top plate moves on top of the supporting bottom plate, it drives the inductor inside the sorting groove to move towards the wide end of the guide frame. When it moves towards the narrow end of the guide frame, the guide frame corrects its position until it falls into the inside of the guide sleeve.
[0016] In one possible implementation, the top plate has two guide rods integrally formed at both ends, and the interior of each of the two limiting ribs has a strip groove; the four springs are respectively sleeved on the outside of the four guide rods, and one end of each guide rod extends into the interior of the strip groove. When the top plate moves on top of the supporting base plate, it drives the guide rod to slide inside the strip groove.
[0017] In one possible implementation, each of the four springs has a washer at both ends, the washer being sleeved on the outside of the guide rod, with the washer at each end of one of the springs abutting against the side of the top plate and the side of the limiting rib, respectively.
[0018] In one possible implementation, pull plates are assembled and connected to the middle of both ends of the top plate, and both ends of the supporting bottom plate are turned up and have finger grooves inside.
[0019] The beneficial effects of this application are as follows:
[0020] Firstly, in this solution, multiple matrix-arranged sorting grooves are opened inside the sorting top plate, and multiple matrix-arranged guide sleeves are integrally formed at the bottom of the supporting base plate. When multiple inductors are placed on the top of the sorting top plate and the sorting top plate is controlled to move left and right on the top of the supporting base plate, multiple inductors can be corrected to the inside of the sorting grooves and supported by the top surface of the supporting base plate. This makes it easier for the heavier heads of multiple inductors to face downwards. Then, the sorting top plate is controlled to move from the back to the front, so that multiple inductors pass through the inside of the supporting base plate and enter the layout device, thereby improving layout efficiency.
[0021] Secondly, in this solution, when the control base plate moves from the back to the front, the inductors are driven to move by the sorting grooves on the sorting top plate. Influenced by multiple guide frames arranged in a matrix on the top of the base plate and guiding the inductors in a figure-eight shape, multiple inductors can enter the interior of the layout device through multiple guide sleeves, ensuring the speed at which the inductors enter the guide sleeves and avoiding errors.
[0022] Thirdly, in this solution, by setting limiting ribs at both ends of the top of the bearing base plate, and setting a spring supported by a guide rod between the limiting ribs and one side of the tidying top plate, when the control pull plate drives the tidying top plate to move to one end on the top of the bearing base plate, the two springs at that end can be compressed. After the pull plate is released, the compressed spring is reset and supported by the spring on the opposite side, so that the tidying top plate can swing left and right in the horizontal plane on the top of the bearing base plate, which can easily correct the position and angle of the inductor. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0024] Figure 2 This utility model Figure 1 Enlarged diagram of section A in the middle;
[0025] Figure 3 This is a schematic diagram of the top structure of the supporting base plate of this utility model;
[0026] Figure 4This is a schematic diagram of the bottom structure of the supporting base plate of this utility model.
[0027] Reference numerals in the attached drawings: 1. Supporting base plate; 2. Top plate; 3. Slot; 4. Spring; 5. Inductor; 6. Finger slot; 7. Limiting rib; 8. Strip groove; 9. Guide rod; 10. Pull plate; 11. Shim; 12. Guide frame; 13. Guide sleeve. Detailed Implementation
[0028] The technical solution in this application embodiment is to solve the problems mentioned in the background art, and the overall idea is as follows:
[0029] Example 1:
[0030] This embodiment describes the specific structure of an inductor production layout auxiliary device, which can be referred to in detail below. Figures 1-4 As shown, it includes a top plate 2 and a supporting base plate 1 located at the bottom of the top plate 2. The top plate 2 has multiple sorting grooves 3 arranged in a matrix. The top of both ends of the supporting base plate 1 are connected to limiting ribs 7. Two springs 4 are provided between the limiting ribs 7 and the surface of one end of the top plate 2. The bottom surface of the supporting base plate 1 is integrally formed with multiple guide sleeves 13 arranged in a matrix.
[0031] Among them, the top channel size of multiple sorting grooves 3 is larger than the bottom channel size, and the inner wall of sorting grooves 3 smoothly transitions from top to bottom. When multiple inductors 5 are placed on the top of sorting top plate 2 and the sorting top plate 2 is controlled to move left and right on the top of the supporting base plate 1, multiple inductors 5 can be corrected to the inside of sorting grooves 3 and supported by the top surface of the supporting base plate 1, which is beneficial for the heavier heads of multiple inductors 5 to face downwards.
[0032] Secondly, to facilitate the forward and backward movement of the top plate 2 during the sorting process, the inductor 5 inside the sorting groove 3 is controlled to enter the guide sleeve 13 at the corresponding position, such as... Figure 1 and Figure 3 As shown, the top surface of the supporting base plate 1 is machined with multiple guide frames 12. The multiple guide frames 12 are arranged in a matrix and are all in a figure-eight shape. By bringing the narrow end of the guide frame 12 close to the connection point between the guide sleeve 13 and the guide frame 12, when the sorting top plate 2 moves on the top of the supporting base plate 1, the inductor 5 is moved by the sorting groove 3 on the sorting top plate 2. This causes the inductor 5 inside the sorting groove 3 to move towards the wide end of the guide frame 12. When moving towards the narrow end of the guide frame 12, the multiple inductors 5 can be guided and corrected in position by the guide frame 12, and enter the multiple guide sleeves 13 one by one, and finally fall into the interior of the layout device (the multiple guide sleeves 13 all extend into the layout device at the position for placing the inductor 5).
[0033] Meanwhile, to prevent multiple guide frames 12 from affecting the left-right and front-back movement of the top plate 2 on the top of the supporting base plate 1, such as... Figure 1 As shown, the bottom of the top plate 2 is provided with multiple intersecting channels. When the top plate 2 covers the top of the supporting base plate 1, multiple guide frames 12 are located inside the multiple channels, which can provide space for the top plate 2 to move and avoid interference from the multiple guide frames 12.
[0034] The above design opens multiple matrix-arranged sorting grooves 3 inside the sorting top plate 2 and integrally forms multiple matrix-arranged guide sleeves 13 at the bottom of the supporting base plate 1. When multiple inductors 5 are placed on the top of the sorting top plate 2 and the sorting top plate 2 is controlled to move left and right on the top of the supporting base plate 1, multiple inductors 5 can be corrected to the inside of the sorting grooves 3 and supported by the top surface of the supporting base plate 1, which is beneficial for the heavier heads of multiple inductors 5 to face downwards.
[0035] Meanwhile, when the control base plate 1 moves from the back to the front, the inductor 5 is driven to move by the sorting groove 3 on the sorting top plate 2. Affected by the multiple guide frames 12 arranged in a matrix on the top of the base plate 1 and guiding the inductor 5 in a figure-eight shape, multiple inductors 5 can enter the interior of the typesetting device through multiple guide sleeves 13, thereby improving typesetting efficiency.
[0036] Example 2:
[0037] Based on Example 1, this example describes the specific structure of the top plate 2, such as... Figure 1 and Figure 2 As shown, both ends of the top plate 2 are integrally formed with two guide rods 9, and the interior of the two limiting ribs 7 is provided with strip grooves 8;
[0038] Among them, four springs 4 are respectively sleeved on the outside of four guide rods 9. One end of the guide rod 9 extends into the inside of the strip groove 8. When the top plate 2 moves on the top of the supporting base plate 1, it drives the guide rod 9 to slide inside the strip groove 8, which can provide movement guidance for the top plate 2.
[0039] Secondly, to avoid interference between the two ends of the spring 4 and the limiting rib 7 and the side of the top plate 2, such as Figure 2 As shown, each of the four springs 4 has a washer 11 at both ends. The washer 11 is sleeved on the outside of the guide rod 9. By having the washer 11 located at both ends of one spring 4 abut against the side of the top plate 2 and the side of the limiting rib 7 respectively, the top plate 2 can move back and forth on the top of the bearing base plate 1. The contact between the washer 11 and the top plate 2 and the contact between the washer 11 and the limiting rib 7 can ensure the smoothness of the movement of the top plate 2.
[0040] In some examples, pull plates 10 are assembled and connected to the middle of both ends of the top plate 2. Both ends of the support base plate 1 are flipped up and have finger grooves 6 inside. When the support base plate 1 is pressed against from the inside of the finger grooves 6, and the pull plates 10 are controlled to move the top plate 2 to one end on the top of the support base plate 1, the two springs 4 at that end can be compressed, while the pressure of the two springs 4 at the other end is released. After the pull plates 10 are released, the compressed springs 4 are reset and the released springs 4 are supported, so that the top plate 2 swings left and right in the horizontal plane on the top of the support base plate 1, so that the top plate 2 swings automatically and the position of the inductor 5 is corrected by the sizing grooves 3.
[0041] The above design sets limiting ribs 7 at both ends of the top of the bearing base plate 1, and sets springs 4 supported by guide rods 9 between the limiting ribs 7 and one side of the tidying top plate 2. When the bearing base plate 1 is pressed from the inside of the finger groove 6, and the control pull plate 10 drives the tidying top plate 2 to move to one end of the top of the bearing base plate 1, the two springs 4 at that end can be compressed, while the pressure of the two springs 4 at the other end is released. After the pull plate 10 is released, the compressed springs 4 are reset and the released springs 4 are supported, so that the tidying top plate 2 can swing left and right in the horizontal plane at the top of the bearing base plate 1, which can easily correct the position and angle of the inductor 5.
[0042] Finally, it should be noted that the above embodiments are merely examples for clearly illustrating the present invention and are not intended to limit the implementation. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.
Claims
1. An inductor production typesetting auxiliary device, characterized in that, include: Tidy up the top slab (2); A supporting base plate (1) is provided at the bottom of the top plate (2); The top plate (2) has multiple sorting grooves (3) arranged in a matrix inside. The top of both ends of the supporting base plate (1) are connected with limiting ribs (7). Two springs (4) are provided between the limiting ribs (7) and the surface of one end of the top plate (2). The bottom surface of the supporting base plate (1) is integrally formed with multiple guide sleeves (13) arranged in a matrix. The sorting top plate (2) moves left and right on the top of the supporting base plate (1). After compressing the two springs (4) at one end, it releases the pressure of the two springs (4) at the other end. It is supported by the reset of the compressed spring (4) and the released spring (4), so that the sorting top plate (2) swings in the horizontal plane on the top of the supporting base plate (1), correcting multiple inductors (5) to the inside of the sorting groove (3), supported by the top surface of the supporting base plate (1), and then entering multiple guide sleeves (13) one by one, falling into the inside of the layout device.
2. The inductor production layout auxiliary device as described in claim 1, characterized in that: The top channel of each of the sorting grooves (3) is larger than the bottom channel, and the inner wall of the sorting groove (3) transitions smoothly from top to bottom.
3. The inductor production layout auxiliary device as described in claim 1, characterized in that: The top surface of the supporting base plate (1) is machined with multiple guide frames (12), which are arranged in a matrix and are all in a figure-eight shape. The narrow end of the guide frame (12) is close to the connection point between the guide sleeve (13) and the guide frame (12).
4. The inductor production layout auxiliary device as described in claim 1, characterized in that: The bottom of the top plate (2) is provided with multiple intersecting channels. When the top plate (2) covers the top of the supporting base plate (1), multiple guide frames (12) are located inside the multiple channels respectively.
5. The inductor production layout auxiliary device as described in claim 1, characterized in that: When the top plate (2) moves on top of the supporting bottom plate (1), it drives the inductor (5) inside the sorting groove (3) to move towards the wide end of the guide frame (12). When it moves towards the narrow end of the guide frame (12), the guide frame (12) corrects its position until it falls into the inside of the guide sleeve (13).
6. The inductor production layout auxiliary device as described in claim 1, characterized in that: The top plate (2) has two guide rods (9) integrally formed at both ends, and the two limiting ribs (7) are provided with strip grooves (8) inside; Among them, the four springs (4) are respectively sleeved on the outside of the four guide rods (9). One end of the guide rod (9) extends into the inside of the strip groove (8). When the top plate (2) moves on the top of the supporting bottom plate (1), it drives the guide rod (9) to slide inside the strip groove (8).
7. The inductor production layout auxiliary device as described in claim 6, characterized in that: Each of the four springs (4) has a washer (11) at both ends. The washer (11) is sleeved on the outside of the guide rod (9). The washer (11) at both ends of one of the springs (4) abuts against the side of the top plate (2) and the side of the limiting rib (7), respectively.
8. The inductor production layout auxiliary device as described in claim 1, characterized in that: The top plate (2) is fitted with pull plates (10) at the middle of both ends, and the bottom plate (1) is flipped up at both ends and has finger grooves (6) inside.