Carrier for common mode inductor production
By designing a common mode inductor production vehicle including sliders, return springs and clamping members, the problem of manual operation of inductor bracket clamping and positioning in traditional production processes is solved, and automatic clamping and adjustment of inductor brackets is realized, and processing efficiency is improved.
Patent Information
- Application Number
- CN202421778095.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-07-25
AI Technical Summary
During the traditional common mode inductor production process, the clamping and positioning of the inductor brackets relies on manual operation or simple mechanical devices, resulting in low machining efficiency.
A common mode inductor production vehicle including a base, a clamping structure and a drive assembly is designed. The clamping structure realizes automatic clamping and adjustment of the inductor bracket through the combination of slider, return spring and clamping member.
The vehicle improves the automatic clamping and adjustment capabilities of the inductor bracket, simplifies worker operation, improves processing efficiency, and is adapted to inductor brackets of different thicknesses and sizes.
Smart Images

Figure CN222851263U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of inductor processing, in particular to a carrier for producing common-mode inductors. Background Art
[0002] In the field of electronic manufacturing, common-mode inductors are an electronic component commonly used for power conversion and electromagnetic compatibility improvement. As electronic equipment develops towards miniaturization and integration, the production efficiency and precision requirements for common-mode inductors are getting higher and higher. In the traditional common-mode inductor production process, the clamping and positioning of the inductor bracket often rely on manual operation or simple mechanical devices. Different adjustments need to be made according to different inductors during processing, resulting in low processing efficiency.
[0003] The utility model is produced based on the above-mentioned shortcomings. Utility Model Content
[0004] The purpose of the utility model is to overcome the problems of the prior art and provide a common mode inductor production carrier which can adapt to different inductor brackets and has a simple structure.
[0005] In order to achieve the above purpose, the utility model adopts the following scheme:
[0006] A carrier for producing common-mode inductors, comprising: a base, wherein the base is provided with a clamping structure capable of clamping an inductor bracket, the clamping structure comprises a mounting seat connected to the base, the mounting seat is connected with a first sliding member capable of sliding relative to the mounting seat, the mounting seat is also connected with a second sliding member capable of sliding relative to the mounting seat, a first return spring capable of driving the first sliding member to slide toward the second sliding member is provided between the first sliding member and the mounting seat, a second return spring capable of driving the second sliding member to slide toward the first return spring is provided between the second sliding member and the mounting seat, a first clamping member and a second clamping member are provided on the first sliding member at intervals in front and behind, and the second sliding member is connected with a third clamping member capable of cooperating with the first clamping member and the second clamping member to clamp the inductor bracket.
[0007] A first adjusting component capable of adjusting the height position between the first clamping member and the first sliding member is provided between the first sliding member and the second clamping member, a second adjusting component capable of adjusting the height position between the first clamping member and the first sliding member is provided between the first sliding member and the second clamping member, and a third adjusting component capable of adjusting the height position between the third clamping member and the first sliding member is provided between the second sliding member and the third clamping member.
[0008] The first clamping member is provided with a first extension portion extending downward, and the first extension portion is provided with a plurality of first adjustment holes spaced apart in the height direction. The first adjustment assembly includes a first connecting frame connected to the upper end of the first sliding member, and the first connecting frame is provided with a first through groove in which the first clamping member can slide, and the side of the first connecting frame is provided with a first mounting hole corresponding to the first adjustment hole, the axis through which the first through groove penetrates and the axis through which the first mounting hole penetrates are arranged perpendicular to each other, and the first adjustment hole is connected with a first screw which penetrates from the first mounting hole.
[0009] The second clamping member is provided with a second extension portion extending downward, and the second extension portion and the second clamping member are provided with a plurality of second adjustment holes at intervals along the height direction. The second adjustment assembly includes a first straight groove provided on the first connecting frame and capable of allowing the second clamping member to move therein, the first straight groove and the first through groove are arranged at intervals and are on the same parallel line, the side of the first connecting frame is provided with a second straight groove corresponding to the second adjustment hole, the axis through which the first straight groove penetrates and the axis through which the second straight groove penetrates are arranged perpendicular to each other, and the second adjustment hole is connected with a second screw penetrating from the second straight groove.
[0010] The third clamping member is provided with a third extension portion extending downward, and the third extension portion is provided with a plurality of third adjustment holes at intervals along the height direction. The third adjustment assembly includes a second connecting frame connected to the upper end of the second sliding member, and the second connecting frame is provided with a third straight groove in which the third clamping member can move. The side of the first connecting frame is provided with a fourth straight groove corresponding to the third adjustment hole, and the axis through which the third straight groove penetrates and the axis through which the fourth straight groove penetrates are arranged perpendicular to each other, and the third adjustment hole is connected with a third screw that penetrates from the fourth straight groove.
[0011] The first sliding member is provided with a first slide rail extending along the width direction of the base, and the first slide rail is connected to a shelf seat capable of placing the lower end of the inductor bracket, and the shelf seat is provided with a plurality of slots for the coil pins to be inserted into, and the height of the shelf seat is higher than the height of the first connecting frame and the second connecting frame, so that a clearance space is formed between the top surface of the shelf seat and the top surfaces of the first connecting frame and the second connecting frame.
[0012] A first support rod and a second support rod are slidably connected to the mounting seat, and the first support rod and the second support rod are spaced apart from each other. A driving component capable of driving the first sliding member and the second sliding member to slide is provided between the first support rod, the second support rod, the first sliding member and the second sliding member.
[0013] The driving assembly includes a first connecting member passing through the first sliding member and the first support rod, a second connecting member passing between the second sliding member and the second support rod, a linkage member that can connect the first connecting member and the second connecting member and can drive the first connecting member and the second connecting member to move, a rotating shaft is connected to the mounting seat, one end of the rotating shaft is connected to the linkage member, and the other end of the rotating shaft is connected to an operating member that can drive it to move.
[0014] The linkage member is provided with a first sliding groove and a second sliding groove capable of allowing the first connecting member and the second connecting member to move.
[0015] The first sliding member and the second sliding member are sliding blocks arranged in an L shape.
[0016] Compared with the existing technology, the utility model has the following advantages: when the present structure is adopted, the inductor bracket is aligned with the first clamping member, the second clamping member and the third clamping member, and then the third clamping member is pulled, the third clamping member and the second sliding member slide relative to the mounting seat, at this time the second return spring is stretched from the initial state, and a gap is formed between the third clamping member and the first clamping member and the second clamping member so that the inductor bracket can be clamped in. The first clamping member, the second clamping member and the first sliding member also slide relative to the mounting seat under the push of the inductor bracket, and at this time the first return spring is also stretched from the initial state. When the inductor bracket is completely clamped in, the third clamping member is released, and the second return spring is reset and pulled. The second sliding member is driven to slide toward the first sliding member, and at the same time, the first return spring also drives the first sliding member to slide toward the second sliding member. At this time, the first clamping member, the second clamping member and the third clamping member cooperate to clamp and fix the inductor bracket. The operation is very convenient for workers. They only need to pull open the third clamping member to complete the automatic clamping of the third clamping member. The operation is very convenient, and the first sliding member and the second sliding member can slide relative to the mounting seat to provide flexible adjustment space to adapt to inductor brackets of different thicknesses and sizes. The adaptation range is wider, and the base is placed on a circulating conveyor. Workers can quickly clamp the inductor bracket to form a streamlined operation and improve processing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is one of the structural schematic diagrams of the common mode inductor production carrier of the utility model;
[0018] Figure 2 This is the second structural schematic diagram of the common mode inductor production carrier of the utility model;
[0019] Figure 3 It is a side view of the carrier used for producing the common mode inductor of the utility model;
[0020] Figure 4 This is one of the exploded views of the carrier for producing common mode inductors of the utility model;
[0021] Figure 5 It is a structural schematic diagram of the base, inductor bracket and clamping structure of the carrier for common mode inductor production of the utility model;
[0022] Figure 6 This is one of the exploded views of the base, inductor bracket and clamping structure of the common mode inductor production carrier of the utility model;
[0023] Figure 7 This is the second exploded view of the base, inductor bracket and clamping structure of the common mode inductor production carrier of the utility model;
[0024] Figure 8 It is a side view of a placement seat in a carrier for producing common-mode inductors of the utility model.
[0025] Reference numerals: base 1; inductor bracket 2; clamping structure 3; mounting seat 31, first support rod 311, second support rod 312, first sliding member 32, first slide rail 321, shelf seat 322, slot 323, second sliding member 33, first return spring 34, second return spring 35, first clamping member 36, first extension portion 361, first adjustment hole 362, second clamping member 37, second extension portion 371, second adjustment hole 372, third clamping member 38, third extension portion Part 381, the third adjustment hole 382, the driving component 39, the first connecting member 391, the second connecting member 392, the linkage member 393, the first slide groove 3931, the second slide groove 3932, the rotating shaft 394, the operating member 395; the first adjusting component 4, the first connecting frame 41, the first through groove 411, the first mounting hole 412, the second adjusting component 5, the first straight groove 51, the second straight groove 52, the third adjusting component 6, the second connecting frame 61, the third straight groove 62, and the fourth straight groove 63. DETAILED DESCRIPTION
[0026] The present invention is further described in detail below in conjunction with the embodiments:
[0027] The following is a further detailed description of the specific implementation of the present invention in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
[0028] like Figures 1 to 8As shown, a carrier for common mode inductor production includes: a base 1, the base 1 is provided with a clamping structure 3 capable of clamping an inductor bracket 2, the clamping structure 3 includes a mounting seat 31 connected to the base 1, the mounting seat 31 is connected with a first sliding member 32 capable of sliding relative to the mounting seat 31, and the mounting seat 31 is also connected with a second sliding member 33 capable of sliding relative to the mounting seat 31, a first return spring 34 capable of driving the first sliding member 32 to slide toward the second sliding member 33 is provided between the first sliding member 32 and the mounting seat 31, a second return spring 35 capable of driving the second sliding member 33 to slide toward the first return spring 34 is provided between the second sliding member 33 and the mounting seat 31, a first clamping member 36 and a second clamping member 37 are arranged at intervals on the first sliding member 32, and a third clamping member 38 capable of cooperating with the first clamping member 36 and the second clamping member 37 to clamp the inductor bracket 2 is connected to the second sliding member 33.
[0029] When the present structure is adopted, the inductor bracket 2 is aligned with the first clamping member 36, the second clamping member 37 and the third clamping member 38, and then the third clamping member 38 is pulled, and the third clamping member 38 and the second sliding member 33 slide relative to the mounting seat 31. At this time, the second return spring 35 is stretched from the initial state, and a gap is formed between the third clamping member 38 and the first clamping member 36 and the second clamping member 37 so that the inductor bracket 2 can be inserted. The first clamping member 36, the second clamping member 37 and the first sliding member 32 also slide relative to the mounting seat 31 under the push of the inductor bracket 2. At this time, the first return spring 34 is also stretched from the initial state. When the inductor bracket 2 is fully inserted, the third clamping member 38 is released. The clamping member 38 and the second return spring 35 reset and pull the second sliding member 33 to slide toward the first sliding member 32. At the same time, the first return spring 34 also drives the first sliding member 32 to slide toward the second sliding member 33. At this time, the first clamping member 36, the second clamping member 37 and the third clamping member 38 cooperate to clamp and fix the inductor bracket 2. The operation is very convenient for workers. They only need to pull open the third clamping member 38 to complete the automatic clamping of the third clamping member 38. The operation is very convenient, and the first sliding member 32 and the second sliding member 33 can slide relative to the mounting seat 31 to provide flexible adjustment space to adapt to inductor brackets 2 of different thicknesses and sizes, and the adaptation range is wider.
[0030] like Figure 4As shown, a first adjusting component 4 capable of adjusting the height position between the first clamping member 36 and the first sliding member 32 is provided between the first sliding member 32 and the first clamping member 36, a second adjusting component 5 capable of adjusting the height position between the first clamping member 36 and the first sliding member 32 is provided between the first sliding member 32 and the second clamping member 37, and a third adjusting component 6 capable of adjusting the height position between the third clamping member 38 and the first sliding member 32 is provided between the second sliding member 33 and the third clamping member 38. Through the first component 4, the second component 5 and the third adjusting component 6, the operator can flexibly adjust the relative height between each clamping member and each sliding member according to the specific height requirements of the inductor bracket 2 to adapt to the inductor brackets 2 of different height specifications.
[0031] like Figure 4 As shown, the first clamping member 36 is provided with a first extension portion 361 extending downward, and the first extension portion 361 is provided with a plurality of first adjustment holes 362 spaced apart in the height direction. The first adjustment assembly 4 includes a first connecting frame 41 connected to the upper end of the first sliding member 32, and the first connecting frame 41 is provided with a first through slot 411 in which the first clamping member 36 can slide, and the side of the first connecting frame 41 is provided with a first mounting hole 412 corresponding to the first adjustment hole 362, and the axis through which the first through slot 411 penetrates and the axis through which the first mounting hole 412 penetrates are arranged perpendicular to each other, and the first adjustment hole 362 is connected with a first screw penetrated from the first mounting hole 412. The first screw is inserted into the first adjustment hole 362 from the first mounting hole 412 to fix the first clamping member 36 to the first connecting frame 41. The first connecting frame 41 is arranged on the first through slot 411, so that the first clamping member 36 can slide inside, simplifying the adjustment process. At the same time, multiple height adjustment options are provided through multiple first adjustment holes 362, which can adapt to inductor brackets 2 of different heights and have a wider range of uses. The arrangement of the first through slot 411 and the first mounting hole 412 makes the adjustment component more compact in structure and saves space.
[0032] like Figure 4As shown, the second clamping member 37 is provided with a second extension portion 371 extending downward, and the second extension portion 371 and the second clamping member 37 are provided with a plurality of second adjustment holes 372 at intervals along the height direction. The second adjustment assembly 5 includes a first straight groove 51 provided on the first connecting frame 41 and capable of allowing the second clamping member 37 to move therein. The first straight groove 51 and the first through groove 411 are arranged at intervals and are on the same parallel line. The side of the first connecting frame 41 is provided with a second straight groove 52 capable of corresponding to the second adjustment hole 372. The axis through which the first straight groove 51 penetrates and the axis through which the second straight groove 52 penetrates are arranged perpendicular to each other. The second adjustment hole 372 is connected with a second screw penetrating from the second straight groove 52. The second screw is inserted into the second adjustment hole 372 from the second straight groove 52 to fix the second clamping member 37 to the first connecting frame 41. The second extension portion 371 can slide along the first straight slot 51 and adjust the width between the first clamping member 36 to adapt to inductor brackets 2 of different lengths. At the same time, multiple height adjustment options are provided through multiple second adjustment holes 372, which can adapt to inductor brackets 2 of different heights and have a wider range of uses. The setting of the first straight slot 51 and the second straight slot 52 makes the first adjustment component 4 and the second adjustment component 5 more compact in structure and saves space.
[0033] like Figure 4 As shown, the third clamping member 38 is provided with a third extension portion 381 extending downward, and the third extension portion 381 is provided with a plurality of third adjustment holes 382 spaced apart in the height direction. The third adjustment assembly 6 includes a second connecting frame 61 connected to the upper end of the second sliding member 33, and the second connecting frame 61 is provided with a third straight groove 62 in which the third clamping member 38 can move. The side of the first connecting frame 41 is provided with a fourth straight groove 63 corresponding to the third adjustment hole 382, and the axis through which the third straight groove 62 penetrates and the axis through which the fourth straight groove 63 penetrates are arranged perpendicular to each other. The third adjustment hole 382 is connected with a third screw penetrated from the fourth straight groove 63. The third screw is inserted into the third adjustment hole 382 from the fourth straight groove 63 to fix the third clamping member 38 to the second connecting frame 42. The second extension portion 371 can slide along the first straight groove 51 and be adjusted between the first clamping member 36 and the second clamping member 37 and located at the center of the first clamping member 36 and the second clamping member 37, so that the inductor bracket 2 can be clamped. At the same time, multiple height adjustment options are provided through multiple third adjustment holes 382, which can adapt to inductor brackets 2 of different heights and have a wider range of uses. The provision of the third straight groove 62 and the fourth straight groove 63 makes the structure more compact and saves space.
[0034] like Figure 4 and Figure 8As shown, the first sliding member 32 is provided with a first slide rail 321 extending along the width direction of the base 1, and the first slide rail 321 is connected with a shelf 322 capable of accommodating the lower end of the inductor bracket 2, and the shelf 322 is provided with a plurality of slots 323 capable of being inserted into the coil pins, and the height of the shelf 322 is higher than the height of the first connecting frame 41 and the second connecting frame 61, so that a clearance space is formed between the top surface of the shelf 322 and the top surface of the first connecting frame 41 and the second connecting frame 61. The slot 323 is provided to locate the coil pins. After the machine completes the winding of the coil, the detection instrument can determine whether the coil is qualified. Therefore, the slot 323 is not only used to locate the coil pins, but also can provide support for the detection instrument when it is against the coil pins. It is easy to use, and the position of the shelf 322 is changed by the first slide rail 321, so as to adapt to inductors of different specifications.
[0035] like Figures 5 to 7 As shown, the mounting seat 31 is slidably connected with a first support rod 311 and a second support rod 312, the first support rod 311 and the second support rod 312 are arranged at intervals up and down, and a driving assembly 39 capable of driving the first sliding member 32 and the second sliding member 33 to slide is arranged between the first support rod 311, the second support rod 312, the first sliding member 32 and the second sliding member 33. The arrangement of the first support rod 311 and the second support rod 312 facilitates the positioning and guiding of the sliding of the first sliding member 32 and the second sliding member 33, and the driving assembly 39 facilitates the workers to operate the sliding of the first sliding member 32 and the second sliding member 33.
[0036] like Figures 5 to 7 As shown, the driving assembly 39 includes a first connecting member 391 passing through the first sliding member 32 and the first support rod 311, a second connecting member 392 passing between the second sliding member 33 and the second support rod 312, a linkage member 393 is provided between the first connecting member 391 and the second connecting member 392, which can connect the two and drive the first connecting member 391 and the second connecting member 392 to move, a rotating shaft 394 is connected to the mounting seat 31, one end of the rotating shaft 394 is connected to the linkage member 393, and the other end of the rotating shaft 394 is connected to an operating member 395 that can drive it to move. The first connecting member 391 and the second connecting member 392 are screws. Through the design of the first connecting member 391 and the second connecting member 392, the movement of the first sliding member 32 and the second sliding member 33 can be accurately controlled to ensure the accuracy of the clamping process. The existence of the linkage member 393 allows the first connecting member and the second connecting member to move synchronously, which can ensure the coordinated movement of the two sliding members and improve the synchronization and stability of the clamping operation. The design of the operating member 395 makes it possible to control the movement of the entire drive assembly 39 through a single operating action, thereby simplifying the operating process and improving the operating efficiency of workers.
[0037] like Figures 5 to 7 As shown, the linkage member 393 is provided with a first slide groove 3931 and a second slide groove 3932 capable of allowing the first connection member 391 and the second connection member 392 to move. When the linkage member 393 rotates, the groove wall of the first slide groove 3931 and the first connection member 391 abut against each other, and at the same time, the groove wall of the second slide groove 3932 and the second connection member 392, thereby making the first support rod 311 and the second support rod 312 slide relative to the mounting seat 31 and move away or move toward each other and get closer.
[0038] like Figures 5 to 7 As shown, the first sliding member 32 and the second sliding member 33 are sliding blocks arranged in an L shape. The L-shaped design structure is more compact, reduces the occupation of surrounding space, provides better stability, and reduces shaking or deviation during movement.
[0039] The above generally describes the present invention in detail, but it is obvious to a person skilled in the art that some modifications or improvements can be made to the present invention. Therefore, modifications or improvements that do not depart from the spirit of the present invention are within the scope of protection of the present invention.
Claims
1. A common mode inductor production carrier, characterized in that: include: A base (1), wherein the base (1) is provided with a clamping structure (3) capable of clamping an inductor bracket (2), wherein the clamping structure (3) comprises a mounting seat (31) connected to the base (1), wherein the mounting seat (31) is connected with a first sliding member (32) capable of sliding relative to the mounting seat (31), wherein the mounting seat (31) is further connected with a second sliding member (33) capable of sliding relative to the mounting seat (31), wherein a sliding member (32) capable of driving the first sliding member (32) toward the second sliding member (33) is provided between the first sliding member (32) and the mounting seat (31). ) is provided between the second sliding member (33) and the mounting seat (31), and a second returning spring (35) is provided which can drive the second sliding member (33) to slide toward the first returning spring (34); a first clamping member (36) and a second clamping member (37) are provided on the first sliding member (32) at intervals in front and back; and a third clamping member (38) is connected to the second sliding member (33) and can cooperate with the first clamping member (36) and the second clamping member (37) to clamp the inductor bracket (2).
2. The common mode inductor production carrier according to claim 1, characterized in that: A first adjusting component (4) capable of adjusting the height position between the first clamping component (36) and the first sliding component (32) is provided between the first sliding component (32) and the first clamping component (36); a second adjusting component (5) capable of adjusting the height position between the first clamping component (36) and the first sliding component (32) is provided between the first sliding component (32) and the second clamping component (37); and a third adjusting component (6) capable of adjusting the height position between the third clamping component (38) and the first sliding component (32) is provided between the second sliding component (33) and the third clamping component (38).
3. The common mode inductor production carrier according to claim 2, characterized in that: The first clamping member (36) is provided with a first extending portion (361) extending downward, and the first extending portion (361) is provided with a plurality of first adjustment holes (362) spaced apart in the height direction. The first adjustment assembly (4) comprises a first connecting frame (41) connected to the upper end of the first sliding member (32), and the first connecting frame (41) is provided with a first through groove (411) in which the first clamping member (36) can slide, and the side surface of the first connecting frame (41) is provided with a first mounting hole (412) corresponding to the first adjustment hole (362), and the axis through which the first through groove (411) penetrates and the axis through which the first mounting hole (412) penetrates are arranged perpendicular to each other, and the first adjustment hole (362) is connected with a first screw penetrated from the first mounting hole (412).
4. The common mode inductor production carrier according to claim 3, characterized in that: The second clamping member (37) is provided with a second extension portion (371) extending downward, and the second extension portion (371) and the second clamping member (37) are provided with a plurality of second adjustment holes (372) at intervals along the height direction. The second adjustment component (5) includes a first straight groove (51) provided on the first connecting frame (41) and capable of allowing the second clamping member (37) to move therein, the first straight groove (51) and the first through groove (411) are arranged at intervals and are located on the same parallel line, the side surface of the first connecting frame (41) is provided with a second straight groove (52) corresponding to the second adjustment hole (372), the axis through which the first straight groove (51) penetrates and the axis through which the second straight groove (52) penetrates are arranged perpendicular to each other, and the second adjustment hole (372) is connected with a second screw penetrated from the second straight groove (52).
5. The common mode inductor production carrier according to claim 3, characterized in that: The third clamping member (38) is provided with a third extension portion (381) extending downward, and the third extension portion (381) is provided with a plurality of third adjustment holes (382) spaced apart in the height direction. The third adjustment assembly (6) includes a second connecting frame (61) connected to the upper end of the second sliding member (33), and the second connecting frame (61) is provided with a third straight groove (62) in which the third clamping member (38) can move. The side of the first connecting frame (41) is provided with a fourth straight groove (63) corresponding to the third adjustment hole (382), and the axis through which the third straight groove (62) penetrates and the axis through which the fourth straight groove (63) penetrates are arranged perpendicular to each other, and the third adjustment hole (382) is connected with a third screw penetrated from the fourth straight groove (63).
6. The common mode inductor production carrier according to claim 5, characterized in that: The first sliding member (32) is provided with a first slide rail (321) extending along the width direction of the base (1); the first slide rail (321) is connected with a shelf (322) capable of shelf the lower end of the inductor bracket (2); the shelf (322) is provided with a plurality of slots (323) capable of being inserted into the coil pins; the height of the shelf (322) is higher than the height of the first connecting frame (41) and the second connecting frame (61), so that a clearance space is formed between the top surface of the shelf (322) and the top surfaces of the first connecting frame (41) and the second connecting frame (61).
7. The common mode inductor production carrier according to claim 1, characterized in that: The mounting seat (31) is slidably connected with a first support rod (311) and a second support rod (312); the first support rod (311) and the second support rod (312) are spaced apart from each other in an upper and lower direction; and a driving component (39) capable of driving the first sliding member (32) and the second sliding member (33) to slide is provided between the first support rod (311), the second support rod (312), the first sliding member (32) and the second sliding member (33).
8. The common mode inductor production carrier according to claim 7, characterized in that: The driving assembly (39) includes a first connecting member (391) passing through the first sliding member (32) and the first supporting rod (311), a second connecting member (392) passing between the second sliding member (33) and the second supporting rod (312), a linkage member (393) connecting the first connecting member (391) and the second connecting member (392) and capable of driving the first connecting member (391) and the second connecting member (392) to move, a rotating shaft (394) is connected to the mounting seat (31), one end of the rotating shaft (394) is connected to the linkage member (393), and the other end of the rotating shaft (394) is connected to an operating member (395) capable of driving the rotating shaft (394) to move.
9. The common mode inductor production carrier according to claim 8, characterized in that: The linkage member (393) is provided with a first sliding groove (3931) and a second sliding groove (3932) capable of allowing the first connecting member (391) and the second connecting member (392) to move.
10. The common mode inductor production carrier according to claim 1, characterized in that: The first sliding member (32) and the second sliding member (33) are sliding blocks arranged in an L shape.