Implanting device of common-mode magnetic core
By designing a common-mode core implantation device that supports the base and guide plate, the direction is defined by the guide plate and hole group, and combined with the blowing mechanism, the automatic orientation selection and rapid implantation of the common-mode core is achieved, solving the problem of low implantation efficiency in the prior art.
Patent Information
- Application Number
- CN202422211834.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-09-10
AI Technical Summary
Existing common-mode core implantation devices need to determine the direction one by one, resulting in low implantation efficiency.
An implantation device including a support base, connecting fence, guide plate, implantation plate and end plate is designed. The guide plate and hole group define the entry direction of the common-mode magnetic core, and the implantation is assisted by a blowing mechanism to achieve automatic orientation selection.
The rapid implantation of common-mode magnetic cores is achieved, and the tedious operation of manually determining directions is avoided, and the implantation efficiency is improved.
Smart Images

Figure CN223193640U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of common mode magnetic core production, in particular to an implantation device for common mode magnetic cores. Background Art
[0002] Currently, existing implantation devices require determining the direction when implanting common-mode cores, and then pushing them down for implantation. This method is rather cumbersome because there are more than one common-mode cores to be implanted, and each requires determining the direction, resulting in low implantation efficiency. Utility Model Content
[0003] The present invention aims to solve the above-mentioned shortcomings of the prior art and provides a common mode magnetic core implantation device to solve the above-mentioned problems.
[0004] The utility model solves the technical problem by adopting the following technical solution: the implantation device of the common mode magnetic core comprises a support base, a connecting enclosure, a guide plate, an implantation plate, and an end plate. The support base is arranged on the tabletop of the workbench and provides lower support for the connecting enclosure. The connecting enclosure has an inner cavity and the guide plate, the implantation plate, and the end plate are placed inside. An air inlet is arranged on the inner wall of one side of the inner cavity. The guide plate is placed in the inner cavity of the connecting enclosure and is located below the air inlet and is connected to the upper end face and the lower end face of the connecting enclosure. A spacing is formed between the guide plate and the end plate, a spacing is formed between the guide plate and the end plate, a spacing is formed between the upper end surface of the connecting enclosure for several common-mode cores to be placed inside, and a spacing is formed between the lower end surface of the connecting enclosure for the implantation plate and the end plate to be placed inside. The upper end surface of the implantation plate is tightly fitted with the guide plate, and the lower end surface is tightly fitted with the end plate. Several hole groups for the common-mode cores to pass through are arranged on the guide plate, the implantation plate, and the end plate. The holes of the hole group can limit the entry direction of the common-mode core when the common-mode core enters, and adhesive tape is glued to the end surface of the end plate away from the implantation plate.
[0005] Further improvement, the support base includes two supporting parts symmetrically distributed front and back, the supporting part includes a bottom plate, a stop block, and a support block, the stop block and the support block are arranged on the bottom plate in a manner symmetrically distributed front and back, and are spaced apart, and a slot is formed on the upper end face of the support block for placing the connecting enclosure therein, and the connecting enclosure is allowed to abut against the end face of the stop block after being placed in the slot.
[0006] For further improvement, mounting grooves for placing baffles are formed on the upper and lower end surfaces of the connecting fence.
[0007] Further improvement is made in that the guide plate is connected to the connecting enclosure by bolts after being placed into the inner cavity of the connecting enclosure.
[0008] Further improvement is made, the hole group has multiple columns and rows, and each column and row has at least one hole, and the holes in adjacent columns or adjacent rows are staggered.
[0009] Further improved, the hole has a narrow section and a wide section. The width dimension of the narrow section remains unchanged, and the width gradually increases from the connection between the wide section and the narrow section to the end of the wide section.
[0010] The beneficial effects of the present utility model are:
[0011] The present utility model is a device for assisting in implanting a common-mode magnetic core, so that the common-mode magnetic core is glued on the adhesive paper and held in the hole of the end plate, and each common-mode magnetic core can achieve automatic orientation before entering the hole, without the need to operate one by one to determine the entry direction, thereby achieving rapid implantation. Description of the Drawings
[0012] Figure 1 is a schematic structural view of the present utility model;
[0013] Figure 2 is a schematic structural view of the connection enclosure of the present utility model;
[0014] Figure 3 is a schematic structural view of the guide plate, the implanting plate, and the end plate of the present utility model;
[0015] Figure 4 is the present utility model Figure 3 is a partial enlarged schematic view of part A in the present utility model. Detailed Embodiment
[0016] The present utility model will be further described below in conjunction with the drawings:
[0017] Referring to the attached drawings: This implanting device for a common-mode magnetic core includes a support base 1, a connecting enclosure 2, a guide plate 3, an implanting plate 4, and an end-sealing plate 5. The support base 1 provides lower support for the connecting enclosure 2. The connecting enclosure 2 has an inner cavity and houses the guide plate 3, the implanting plate 4, and the end-sealing plate 5. An air inlet 21 is provided on the inner wall of one side of its inner cavity. The guide plate 3 is placed in the inner cavity of the connecting enclosure 2 and is located below the air inlet 21, and there are gaps formed between the upper end surface and the lower end surface of the connecting enclosure 2. The gap formed with the upper end surface of the connecting enclosure 2 is for placing a number of common-mode magnetic cores, and the gap formed with the lower end surface of the connecting enclosure 2 is for placing the implanting plate 4 and the end-sealing plate 5. The upper end surface of the implanting plate 4 is closely attached to the guide plate 3, and the lower end surface is closely attached to the end-sealing plate 5. A number of hole groups 6 for the common-mode magnetic cores to pass through are provided on the guide plate 3, the implanting plate 4, and the end-sealing plate 5. The holes 61 of the hole group 6 can define the entry direction of the common-mode magnetic core when the common-mode magnetic core enters. A piece of adhesive paper 7 is glued on the end surface of the end-sealing plate 5 facing away from the implanting plate 4. The principle of the present utility model is that the support base 1 provides support for the connecting enclosure 2 to limit the connecting enclosure 2 in the final position. The guide plate 3 is located at a position slightly below the middle of the inner cavity of the connecting enclosure 2 and there are gaps formed between the upper end surface and the lower end surface of the connecting enclosure 2, thereby obtaining a space for placing the common-mode magnetic cores and a space for placing the implanting plate 4 and the end-sealing plate 5 (the configurations of the guide plate 3, the implanting plate 4, and the end-sealing plate 5 are the same except for the thickness). After the common-mode magnetic core enters the space where it should be placed, an external blowing mechanism blows air into the space where the common-mode magnetic core is located. The air enters through the air inlet 21. The common-mode magnetic core jumps in this space under the influence of the wind force and falls into the hole group 6 through the jump. After passing through the hole group provided on the end-sealing plate 5, the common-mode magnetic core adheres to the adhesive paper 7, thereby setting the common-mode magnetic core on the end-sealing plate 5. At the same time, the holes 61 can define the entry direction of the common-mode magnetic core, so that it is not necessary to achieve position matching for each common-mode magnetic core before entering the holes 61 through manual intervention, thereby achieving rapid implantation.
[0018] The support base 1 includes two support parts 11 symmetrically distributed front and back. The support part 11 includes a bottom plate 11-1, a stop block 11-2, and a support block 11-3. The stop block 11-2 and the support block 11-3 are both arranged on the bottom plate 11-1 in a front-and-back symmetric distribution manner and form a spacing. On the upper end surface of the support block 11-3, a slot 11-31 is formed for the connection enclosure 2 to be placed therein, and it is allowed that after the connection enclosure 2 is placed in the slot 11-31, it abuts against the end surface of the stop block 11-2. When the two support parts 11 support the connection enclosure 2, they respectively support the front end and the rear end of the connection enclosure 2. The bottom plate 11-1 of the support part 11 is used to arrange the stop block 11-2 and the support block 11-3 at the same time. The support block 11-3 allows part of the connection enclosure 2 to be inserted therein through the slot 11-31. The stop block 11-2 provides front-end limit and rear-end limit for the connection enclosure 2 after the connection enclosure 2 is inserted into the slot 11-31, and can also quickly limit the final position of the connection enclosure 2 on the support base 1. At the same time, there is a spacing between the stop block 11-2 and the support block 11-3, and this spacing makes the support position of the support block 11-3 for the connection enclosure 2 close to the central position, so that the support effect on the connection enclosure 2 is better, that is, the stability of the connection enclosure 2 on the support base 1 is better.
[0019] On the upper end surface and the lower end surface of the connection enclosure 2, mounting grooves 22 for inserting the baffle 8 are formed. The mounting grooves 22 are used to insert the baffle 8, and when implanted, the baffle 8 is arranged in both mounting grooves 22. The baffle 8 at the lower end surface of the connection enclosure 2 is used to support the adhesive tape to maintain the flatness of the adhesive tape. The baffle 8 at the upper end surface of the connection enclosure 2 is used to prevent the common-mode magnetic core blown by the wind from jumping out. That is, under the action of the wind, the common-mode magnetic core will jump, and when removing the implanted end plate 5 and adhesive tape 7, it can also prevent the common-mode magnetic core that has not been implanted in the adhesive tape 7 from staying in the space.
[0020] After the guide plate 3 is placed in the inner cavity of the connection enclosure 2, it is connected to the connection enclosure 2 by bolts 9 to limit the guide plate 3 at the final position in the inner cavity of the connection enclosure 2 and achieve detachable connection. The detachable guide plate 3 can be replaced to match different sizes of common-mode magnetic cores, increasing the scope of use.
[0021] The hole group 6 has multiple columns and multiple rows, and each column and each row of holes 61 has at least one. The two holes 61 in adjacent columns or the two holes 61 in adjacent rows are arranged in a staggered manner. Such a setting makes the hole group 6 have multiple holes 61, and the arrangement method and specific quantity are used to meet the implantation requirements.
[0022] The hole 61 has a narrow section 61-1 and a wide section 61-2. The width dimension of the narrow section 61-1 remains unchanged, and the width gradually increases from the connection of the wide section 61-2 and the narrow section 61-1 to the end of the wide section 61-2. The size of the hole 61 matches the size of the common mode magnetic core, that is, the common mode magnetic core also has a narrow section part and a wide section part. This enables the common mode magnetic core to enter the hole 61 in a correct posture. That is, when the wide section part of the common mode magnetic core matches the position of the narrow section 61-1 or when the narrow section part of the common mode magnetic core matches the position of the wide section 61-2, the common mode magnetic core cannot enter. In this way, fast edge selection is achieved, and there is no need for manual intervention to make each common mode magnetic core achieve position matching before entering the hole 61, thus improving the implantation efficiency.
[0023] Although the present utility model has been illustrated and described by reference to the preferred embodiments, those skilled in the art should understand that various changes in form and details may be made within the scope of the claims.
Claims
1. A common mode magnetic core implantation device, characterized in that: The invention comprises a support base (1), a connecting enclosure (2), a guide plate (3), an implant plate (4), and an end plate (5), wherein the support base (1) provides lower support for the connecting enclosure (2), the connecting enclosure (2) has an inner cavity and the guide plate (3), the implant plate (4), and the end plate (5) are placed therein, and an air inlet (21) is provided on an inner wall of one side of the inner cavity, the guide plate (3) is placed in the inner cavity of the connecting enclosure (2) and is located below the air inlet (21) and forms a gap between the guide plate (3) and the upper end face and the lower end face of the connecting enclosure (2), and forms a gap between the guide plate (3) and the upper end face of the connecting enclosure (2). The spacing formed is for placing a plurality of common-mode magnetic cores therein, and the spacing formed between the lower end surface of the connecting enclosure (2) is for placing the implant plate (4) and the end plate (5) therein, the upper end surface of the implant plate (4) is tightly fitted with the guide plate (3), and the lower end surface is tightly fitted with the end plate (5), and the guide plate (3), the implant plate (4), and the end plate (5) are all provided with a plurality of hole groups (6) for the common-mode magnetic cores to pass through, and the holes (61) of the hole group (6) can limit the entry direction of the common-mode magnetic cores when the common-mode magnetic cores enter, and the end surface of the end plate (5) facing away from the implant plate (4) is glued with adhesive tape (7).
2. The common mode core implantation device according to claim 1, characterized in that: The support base (1) comprises two support parts (11) symmetrically distributed front and back, the support part (11) comprising a bottom plate (11-1), a stopper (11-2), and a support block (11-3), the stopper (11-2) and the support block (11-3) being arranged on the bottom plate (11-1) in a manner of being symmetrically distributed front and back, and forming a spacing therebetween, and a slot (11-31) for the connection enclosure (2) to be placed therein is formed on the upper end surface of the support block (11-3), and the connection enclosure (2) is allowed to abut against the end surface of the stopper (11-2) after being placed in the slot (11-31).
3. The common mode core implantation device according to claim 2, characterized in that: The upper end surface and the lower end surface of the connecting enclosure (2) are both formed with mounting grooves (22) for receiving the baffle (8).
4. The common mode core implantation device according to claim 3, characterized in that: After being placed in the inner cavity of the connecting enclosure (2), the guide plate (3) is connected to the connecting enclosure (2) via bolts (9).
5. The common mode core implantation device according to claim 1, characterized in that: The hole group (6) has multiple columns and rows, and each column and row has at least one hole (61), and the holes (61) in adjacent columns or the holes (61) in adjacent rows are staggered.
6. The common mode core implantation device according to claim 5, characterized in that: The hole (61) has a narrow section (61-1) and a wide section (61-2); the width of the narrow section (61-1) remains unchanged, and the width of the wide section (61-2) gradually increases from the connection point between the wide section (61-2) and the narrow section (61-1) to the tail end of the wide section (61-2).