Auxiliary signal flat cable assembling device
By using the carrier components and sliding components of the auxiliary signal cable assembly device, the automatic bending and connection of the Bluetooth headset signal cable is realized, solving the problem of inconvenience in manual assembly and improving assembly efficiency and reliability.
Patent Information
- Application Number
- CN202520056551.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-10
AI Technical Summary
In the existing technology, the assembly of Bluetooth headset signal cables relies on manual operation, which makes assembly inconvenient and inefficient.
An auxiliary signal cable assembly device is used, including a carrier assembly, a sliding assembly, and a fixing assembly. The carrier assembly fixes the product, while the sliding assembly moves the signal cable above the product. The limit slots and magnetic structure are used to achieve automated bending and connection of the signal cable.
It improves the convenience and reliability of assembly operations, avoids damage to signal cables, and increases production efficiency.
Smart Images

Figure CN223785516U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the assembling technical field, in particular to an auxiliary signal wire assembling device. BACKGROUND
[0002] With the development of science and technology, in the fast-paced life, people pursue more and more strong convenience and efficient audio experience, and the demand for Bluetooth earphones is higher and higher. Bluetooth earphones have become an indispensable part of people's life due to their wireless connection, small size, portability and various functions. In the production process of earphone products, signal wires need to be assembled into products.
[0003] At present, the main way is still to manually buckle the signal wire and the product interface on the product for connection by the staff. Such an assembling method is inconvenient to operate, and the assembling efficiency is low. CONTENT OF THE INVENTION
[0004] The application aims to provide an auxiliary signal wire assembling device, which can improve the convenience of assembling operation, improve the assembling reliability and production efficiency.
[0005] The application discloses an auxiliary signal wire assembling device for assisting the assembly of a signal wire and a product. The signal wire comprises a fixing area, a bending area and a connecting area arranged in sequence. First and second connecting ends are arranged on the front and back surfaces of the signal wire, respectively. The first connecting end is located in the fixing area, and the second connecting end is located in the connecting area. A product interface is arranged on the inner wall of the product.
[0006] The auxiliary signal wire assembling device comprises a carrier assembly, a sliding assembly and a fixing assembly. The carrier assembly is used for fixing the product. The sliding assembly is connected with the carrier assembly. The fixing assembly is connected with the sliding assembly. One end of the fixing assembly, which is away from the sliding assembly, is provided with a limiting clamping groove. The limiting clamping groove is used for abutting against the fixing area on the back surface of the signal wire to fix the signal wire.
[0007] The fixing assembly can slide left and right relative to the carrier assembly through the sliding assembly, and is used for driving the signal wire on the fixing assembly to move above the product, so that the second connecting end is located above the product interface. The second connecting end on the connecting area is bent through the bending area, and is connected with the product interface below.
[0008] Optionally, the limiting slot comprises a limiting bottom plate, an upper limiting baffle, a lower limiting baffle and a right limiting baffle, the upper limiting baffle and the lower limiting baffle are horizontally arranged on the limiting bottom plate, the upper limiting baffle and the lower limiting baffle are both in L shape, the right limiting baffle is located on the right side of the upper limiting baffle and the lower limiting baffle in the length direction, and the left side of the upper limiting baffle and the lower limiting baffle in the length direction forms an opening.
[0009] Optionally, the sliding assembly comprises a fixed plate, a sliding rail, a sliding block, a sliding plate and a support arm, the fixed plate is connected with the carrier assembly, the sliding rail is arranged on the side of the fixed plate away from the carrier assembly, the sliding block is in sliding connection with the sliding rail, the sliding plate is connected with the side of the sliding block away from the sliding rail, one end of the support arm is connected with the sliding plate, and the other end is connected with the fixed assembly, and the support arm is located above the carrier assembly.
[0010] Optionally, the sliding assembly comprises a first limiting column and a second limiting column, the first limiting column and the second limiting column are both arranged on the side of the fixed plate away from the carrier assembly, and the first limiting column and the second limiting column are respectively located on the left and right sides of the sliding block, the first limiting column is used for abutting against one side of the sliding block to avoid the sliding block from being separated from the sliding rail, and when the second limiting column abuts against the other side of the sliding block, the second connecting end is located above the product interface.
[0011] Optionally, the sliding assembly further comprises a first magnetic structure, one end of the support arm close to the fixed assembly is provided with a first magnetic accommodation groove, and the first magnetic structure is arranged in the first magnetic accommodation groove.
[0012] The fixed assembly comprises a main body and a second magnetic structure, the main body is provided with a second magnetic accommodation groove, the second magnetic structure is arranged in the second magnetic accommodation groove, and the first magnetic structure and the second magnetic structure are attracted to each other.
[0013] The main body and the support arm are magnetically connected through the first magnetic structure and the second magnetic structure.
[0014] Optionally, one side of the main body close to the support arm is provided with a first connecting hole and a second connecting hole, the sliding assembly further comprises a first connecting column and a second connecting column, one end of the first connecting column is connected with one end of the support arm close to the fixed assembly, the other end of the first connecting column extends into the first connecting hole and is connected with the main body, one end of the second connecting column is connected with one end of the support arm close to the fixed assembly, and the other end of the second connecting column extends into the second connecting hole and is connected with the main body.
[0015] Optionally, the first magnetic accommodation groove comprises a first sub-magnetic accommodation groove and a second sub-magnetic accommodation groove, the first sub-magnetic accommodation groove and the second sub-magnetic accommodation groove are located at two opposite corners of one end of the support arm close to the fixed assembly; the first magnetic structure comprises a first sub-magnetic structure and a second sub-magnetic structure, the first magnetic structure is located in the first sub-magnetic accommodation groove, and the second magnetic structure is located in the second sub-magnetic accommodation groove.
[0016] The first connecting column and the second connecting column are respectively located at other two opposite corners of one end of the support arm close to the fixed assembly.
[0017] Optionally, the carrier assembly comprises a first clamping part and a second clamping part, the first clamping part is connected with the second clamping part, the fixed plate is connected with one side of the first clamping part away from the second clamping part, and the first clamping part and the second clamping part are respectively used for abutting against two sides of the product.
[0018] Optionally, a positioning groove is arranged on the first clamping part, a first positioning magnetic structure is arranged in the positioning groove, a second positioning magnetic structure is arranged on the support arm, the first positioning magnetic structure and the second positioning magnetic structure are attracted to each other, and when the second positioning magnetic structure is located above the first positioning magnetic structure, the second connecting end is located above the product interface.
[0019] Compared with the scheme that the signal flat cable is manually pre-bent by a worker and then connected with the product, the product is fixed on the carrier assembly, one end of the signal flat cable is inserted into the limiting slot, the sliding assembly is slid to move the signal flat cable above the product, the connecting region is folded downward to bend the bending region, so that the second connecting end on the connecting region is connected with the product interface, then the sliding assembly is slid, the signal flat cable is slid out of the limiting slot on the fixed assembly, and the assembly is completed. Since one end of the signal flat cable is fixed in the limiting slot, only the other end of the signal flat cable needs to be folded, the assembly operation convenience is improved, and the product and the signal flat cable are not damaged due to simultaneous operation of the two ends of the signal flat cable, so that the assembly reliability and production efficiency of the product and the signal flat cable are improved. BRIEF DESCRIPTION OF DRAWINGS
[0020] The accompanying drawings included herein are part of the specification and illustrate one or more embodiments of the present application and, together with the written description, serve to explain the principles behind the application. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can obtain other drawings according to these drawings without creating any creative labor. In the drawings:
[0021] Figure 1 is a schematic diagram of a signal flat cable of an embodiment of the present application;
[0022] Figure 2 is a front schematic diagram of an auxiliary signal flat cable assembly device of an embodiment of the present application;
[0023] Figure 3 is a rear schematic diagram of an auxiliary signal flat cable assembly device of an embodiment of the present application;
[0024] Figure 4 is a partial enlarged schematic diagram of Figure 2 ;
[0025] Figure 5 is a schematic diagram of a supporting arm of an embodiment of the present application;
[0026] Figure 6 is a schematic diagram of a fixing assembly of an embodiment of the present application.
[0027] wherein, 10, signal flat cable; 11, first connecting end; 12, second connecting end; 13, fixing area; 14, bending area; 15, connecting area; 20, product; 21, product interface; 30, signal flat cable assembly device; 100, carrier assembly; 110, first clamping part; 111, positioning groove; 112, first positioning magnetic structure; 120, second clamping part; 200, sliding assembly; 210, fixing plate; 220, sliding rail; 230, sliding block; 240, sliding plate; 250, supporting arm; 261, first limiting column; 262, second limiting column; 270, first magnetic accommodating groove; 271, first sub-magnetic accommodating groove; 272, second sub-magnetic accommodating groove; 280, first magnetic structure; 281, first sub-magnetic structure; 282, second sub-magnetic structure; 291, first connecting column; 292, second connecting column; 310, second positioning magnetic structure; 400, fixing assembly; 410, main body part; 411, second magnetic accommodating groove; 412, second magnetic structure; 421, first connecting hole; 422, second connecting hole; 430, limiting clamping groove; 431, limiting bottom plate; 432, upper limiting barrier wall; 433, lower limiting barrier wall; 434, right limiting barrier wall. DETAILED DESCRIPTION
[0028] It needs to be understood that the terms used herein, the specific structural and functional details disclosed, are only for the purpose of describing specific embodiments, and are representative, but the present application can be embodied in many alternative forms, and should not be interpreted as being limited to the embodiments set forth herein.
[0029] In the description of the present application, the terms "first", "second", "third" and the like are used only for the purpose of description, and are not to be construed as indicating relative importance or implying that the indicated technical features are limited to a certain number. Thus, unless otherwise specified, the features defined with "first", "second", "third" and the like can explicitly or implicitly include one or more of the features; the meaning of "plurality" is two or more. The term "comprising" and any variation thereof means non-exclusive inclusion, and one or more other features, integers, steps, operations, units, components and / or combinations thereof can be present or added.
[0030] In addition, the terms indicating the orientation or positional relationship of "center", "transverse", "upper", "lower", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like are described based on the orientation or relative position relationship shown in the drawings, and are only for the convenience of description of the simplified description of the present application, and do not indicate that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present application.
[0031] In addition, unless otherwise specified and limited, the terms "mounting", "connecting", "connecting" should be broadly understood, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be connected inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0032] The present application will be described in detail below with reference to the accompanying drawings and optional embodiments.
[0033] Figure 1 is a schematic diagram of a signal flat cable of an embodiment of the present application, Figure 2 is a front view of an auxiliary signal flat cable assembly device of an embodiment of the present application, Figure 3 is a rear view of an auxiliary signal flat cable assembly device of an embodiment of the present application, in combination with Figures 1-3 As shown in FIG. 8, the present application discloses an auxiliary signal flat cable assembly device 30 for assisting the assembly of a signal flat cable 10 and a product 20, the signal flat cable 10 comprising a fixed region 13, a bending region 14 and a connecting region 15 arranged in sequence, the signal flat cable 10 being provided with a first connecting end 11 and a second connecting end 12 on the front and back surfaces thereof respectively, and the first connecting end 11 being located at the fixed region 13, the second connecting end 12 being located at the connecting region 15, and the product 20 being provided with a product interface 21 on the inner wall thereof.
[0034] The auxiliary signal wire assembly device 30 comprises a carrier assembly 100 for fixing the product 20, a sliding assembly 200 connected with the carrier assembly 100, and a fixing assembly 400 connected with the sliding assembly 200, wherein an end of the fixing assembly 400 away from the sliding assembly 200 is provided with a limiting clamping groove 430 for abutting against the fixing area 13 on the back of the signal wire 10 to fix the signal wire 10.
[0035] The fixing assembly 400 can slide left and right relative to the carrier assembly 100 through the sliding assembly 200, for driving the signal wire 10 on the fixing assembly 400 to move above the product 20, so that the second connecting end 12 is above the product interface 21, and the second connecting end 12 on the connecting area 15 is connected with the product interface 21 below through the bending of the bending area 14.
[0036] For example, the product 20 is an earphone product 20, and the first connecting end 11 and the second connecting end 12 of the signal wire 10 need to be pre-bent before being connected with the product interface 21, and the first connecting end 11 is convenient for being connected with other parts. At present, the staff manually pre-bend the signal wire 10 and then connect the signal wire 10 with the earphone for assembly. However, the short signal wire 10 is not easy to be bent at both ends at the same time, and then connected with the product 20 for assembly. Therefore, the product 20 is fixed on the carrier assembly 100, and then one end of the signal wire 10, i.e. the fixing area 13, is inserted into the limiting clamping groove 430. The signal wire 10 is moved above the product 20 by sliding the sliding assembly 200, and then the connecting area 15 is folded downward to bend the bending area 14, so that the second connecting end 12 on the connecting area 15 is connected and fixed with the product interface 21. Then, the signal wire 10 is slid out of the limiting clamping groove 430 on the fixing assembly 400 by sliding the sliding assembly 200, and the assembly is completed.
[0037] Compared with the scheme that the signal flat cable 10 is manually pre-bent and then connected with the product 20 by workers, the product 20 is fixed on the carrier assembly 100, then one end of the signal flat cable 10 is inserted into the limiting card slot 430, the sliding assembly 200 is slid to move the signal flat cable 10 above the product 20, then the connecting area 15 is folded downward to bend the bending area 14, so that the second connecting end 12 on the connecting area 15 is connected and fixed with the product interface 21, then the sliding assembly 200 is slid, the signal flat cable 10 is slid out of the limiting card slot 430 on the fixing assembly 400, and the assembly is completed. Since one end of the signal flat cable 10 is fixed on the limiting card slot 430, only the other end of the signal flat cable 10 needs to be folded, the assembly operation convenience is improved, and the signal flat cable 10 is prevented from being damaged due to simultaneous operation of both ends, so that the assembly reliability and production efficiency of the product 20 and the signal flat cable 10 are improved.
[0038] In combination Figure 4 As shown in the drawings, the limiting card slot 430 comprises a limiting bottom plate 431, an upper limiting baffle 432, a lower limiting baffle 433 and a right limiting baffle 434. The upper limiting baffle 432 and the lower limiting baffle 433 are horizontally arranged on the limiting bottom plate 431, and the shapes of the upper limiting baffle 432 and the lower limiting baffle 433 are both L-shaped. The right limiting baffle 434 is located on the right side of the upper limiting baffle 432 and the lower limiting baffle 433 in the length direction, and the left side of the upper limiting baffle 432 and the lower limiting baffle 433 in the length direction forms an opening.
[0039] The signal flat cable 10 is inserted into the limiting card slot 430 from one side of the opening, and the right limiting baffle 434 is used to limit the end of the signal flat cable 10, so as to avoid that the part of the signal flat cable 10 exposed from the limiting card slot 430 is too small, and the folding operation is difficult to be performed.
[0040] The upper limiting baffle 432 and the lower limiting baffle 433 are used to limit the upper and lower sides of the signal flat cable 10, and the shapes of the upper limiting baffle 432 and the lower limiting baffle 433 are both L-shaped to longitudinally limit the signal flat cable 10.
[0041] Preferably, the limiting bottom plate 431, the upper limiting baffle 432, the lower limiting baffle 433 and the right limiting baffle 434 are integrally formed with the main body part 410 of the fixing assembly 400.
[0042] The sliding assembly 200 comprises a fixed plate 210, a slide rail 220, a sliding block 230, a sliding plate 240 and a support arm 250; the fixed plate 210 is connected with the carrier assembly 100, the slide rail 220 is arranged on the side of the fixed plate 210 away from the carrier assembly 100, the sliding block 230 is in sliding connection with the slide rail 220, the sliding plate 240 is connected with the side of the sliding block 230 away from the slide rail 220, one end of the support arm 250 is connected with the sliding plate 240, and the other end is connected with the fixed assembly 400, and the support arm 250 is located above the carrier assembly 100.
[0043] Through the mutual sliding between the sliding block 230 and the slide rail 220, the left and right sliding of the sliding plate 240 is driven, and the left and right sliding of the support arm 250 is driven, so that the left and right sliding of the fixed assembly 400 is driven, the left and right sliding of the signal cable 10 in the limiting clamping groove 430 is driven, and the signal cable 10 can be slid above the product interface 21, facilitating the assembly of the signal cable 10 and the product 20.
[0044] The carrier assembly 100 comprises a first clamping part 110 and a second clamping part 120, the first clamping part 110 is connected with the second clamping part 120, the fixed plate 210 is connected with the side of the first clamping part 110 away from the second clamping part 120, and the first clamping part 110 and the second clamping part 120 are respectively used for abutting against the two sides of the product 20. The product 20 is stably fixed, and the problem that the product 20 is displaced to cause assembly failure during the assembly of the signal cable 10 and the product 20 is avoided.
[0045] The sliding assembly 200 comprises a first limiting column 261 and a second limiting column 262, the first limiting column 261 and the second limiting column 262 are both arranged on the side of the fixed plate 210 away from the carrier assembly 100, and the first limiting column 261 and the second limiting column 262 are respectively located on the left and right sides of the sliding block 230, the first limiting column 261 is used for abutting against one side of the sliding block 230 to avoid the disengagement of the sliding block 230 from the slide rail 220, and the second limiting column 262 is used for abutting against the other side of the sliding block 230, so that the second connecting end 12 is located above the product interface 21.
[0046] After the signal cable 10 is assembled on the product 20, the sliding block 230 is slid to drive the sliding plate 240 to move rightward, drive the support arm 250 and the fixed assembly 400 to move rightward together, so that the signal cable 10 can be disengaged from the opening of the limiting clamping groove 430, and at this time, the first limiting column 261 prevents the disengagement of the sliding block 230 from the slide rail 220, and avoids the excessive sliding distance.
[0047] The second limiting block not only prevents the sliding block 230 from being separated from the slide rail 220, but also positions the signal flat cable 10 above the product 20, i.e. the second connecting end 12 is positioned above the product interface 21. After positioning, the sliding plate 240 and the fixed plate 210 can be fixed together by screws or other structures to avoid the situation that the support arm 250 still slides left and right after positioning.
[0048] In combination Figure 2 As shown, in addition to the means of positioning the signal flat cable 10 above the product 20 by the second limiting column 262, the first positioning magnetic structure 112 and the second positioning magnetic structure 310 can also be used for positioning by magnetic attraction. Specifically, the first clamping part 110 is provided with a positioning groove 111, the first positioning magnetic structure 112 is arranged in the positioning groove 111, the support arm 250 is provided with the second positioning magnetic structure 310, and the first positioning magnetic structure 112 and the second positioning magnetic structure 310 attract each other. When the second positioning magnetic structure 310 is above the first positioning magnetic structure 112, the second connecting end 12 is above the product interface 21.
[0049] When the sliding block 230 slides and drives the support arm 250 to move to the closest position of the first positioning magnetic structure 112 and the second positioning magnetic structure 310, the attraction between the first positioning magnetic structure 112 and the second positioning magnetic structure 310 is the strongest. At this time, the second connecting end 12 is above the product interface 21, achieving the effect of positioning the second connecting end 12 above the product interface 21. Moreover, the first positioning magnetic structure 112 and the second positioning magnetic structure 310 can also avoid the situation that the support arm 250 still moves left and right after the second connecting end 12 is slid above the product interface 21.
[0050] Figure 5 FIG. 1 is a schematic view of a support arm according to an embodiment of the present application, Figure 6 FIG. 2 is a schematic view of a fixed assembly according to an embodiment of the present application, in combination Figures 5-6 As shown, the sliding assembly 200 further comprises a first magnetic structure 280, and the support arm 250 is provided with a first magnetic accommodating groove 270 at one end close to the fixed assembly 400, and the first magnetic structure 280 is arranged in the first magnetic accommodating groove 270.
[0051] The fixing assembly 400 comprises a main body 410 and a second magnetic structure 412, the main body 410 is provided with a second magnetic accommodating groove 411, the second magnetic structure 412 is arranged in the second magnetic accommodating groove 411, and the first magnetic structure 280 and the second magnetic structure 412 are attracted to each other; the main body 410 and the support arm 250 are magnetically connected through the first magnetic structure 280 and the second magnetic structure 412.
[0052] In short, the main body 410 and the support arm 250 are magnetically connected through the first magnetic structure 280 and the second magnetic structure 412, so that the fixing assembly 400 can be quickly disassembled from the sliding assembly 200, and the signal flat cable 10 can be more conveniently installed on the limiting clamping groove 430, thereby improving the assembly efficiency.
[0053] Moreover, the main body 410 is provided with a first connecting hole 421 and a second connecting hole 422 on the side close to the support arm 250; the sliding assembly 200 further comprises a first connecting column 291 and a second connecting column 292, one end of the first connecting column 291 is connected with the end of the support arm 250 close to the fixing assembly 400, and the other end extends into the first connecting hole 421 and is connected with the main body 410; one end of the second connecting column 292 is connected with the end of the support arm 250 close to the fixing assembly 400, and the other end extends into the second connecting hole 422 and is connected with the main body 410.
[0054] After the fixing assembly 400 is magnetically adsorbed on the support arm 250, when the signal flat cable 10 is bent, the signal flat cable 10 will give the fixing assembly 400 an upward overturning force, and the first connecting column 291 extends into the first connecting hole 421 and is connected with the main body 410, and the second connecting column 292 extends into the second connecting hole 422 and is connected with the main body 410, so that the fixing assembly 400 can be prevented from being separated from the support arm 250, thereby improving the connection reliability of the fixing assembly 400 and the support arm 250.
[0055] Moreover, the number of the first magnetic accommodating grooves 270 comprises two, and the number of the first magnetic structures 280 comprises two, that is, the first magnetic accommodating grooves 270 comprise a first sub-magnetic accommodating groove 271 and a second sub-magnetic accommodating groove 272, the first sub-magnetic accommodating groove 271 and the second sub-magnetic accommodating groove 272 are respectively located at two opposite corners of the end of the support arm 250 close to the fixing assembly 400; the first magnetic structure 280 comprises a first sub-magnetic structure 281 and a second sub-magnetic structure 282, the first magnetic structure 280 is located in the first sub-magnetic accommodating groove 271, and the second magnetic structure 412 is located in the second sub-magnetic accommodating groove 272.
[0056] The first connecting column 291 and the second connecting column 292 are respectively arranged at other two opposite corners of one end of the branch arm 250 close to the fixing assembly 400. In this way, the number of connecting columns can be reduced, and only two connecting columns are arranged, and four connecting columns arranged at four corners are not needed.
[0057] It should be noted that the inventive concept of the present application can form a very large number of embodiments, but the length of the application file is limited, and it is not possible to list them one by one, and therefore, on the premise of not conflicting, the above-described embodiments or technical features can be combined to form new embodiments, and the combination of each embodiment or technical feature will enhance the original technical effect.
[0058] The above is a further detailed description of the present application in combination with specific optional embodiments, and it cannot be considered that the specific implementation of the present application is limited to these descriptions. For ordinary skilled persons in the technical field of the present application, without departing from the concept of the present application, a number of simple deductions or substitutions can be made, and all should be considered within the protection scope of the present application.
Claims
1. An auxiliary signal wire harness assembly device characterized by comprising: The application relates to an auxiliary signal cable assembly device for assembling a signal cable and a product, wherein the signal cable comprises a fixing area, a bending area and a connecting area arranged in sequence, the signal cable is provided with a first connecting end and a second connecting end on the front and back surfaces respectively, the first connecting end is located in the fixing area, the second connecting end is located in the connecting area, and an inner wall of the product is provided with a product interface. The auxiliary signal cable assembly device comprises a carrier assembly, a sliding assembly and a fixing assembly, the carrier assembly is used for fixing the product, the sliding assembly is connected with the carrier assembly, the fixing assembly is connected with the sliding assembly, one end of the fixing assembly, which is away from the sliding assembly, is provided with a limiting clamping groove, the limiting clamping groove is used for abutting against the fixing area on the back surface of the signal cable to fix the signal cable, and the fixing assembly can slide leftward and rightward relative to the carrier assembly through the sliding assembly. The fixing assembly is used for driving the signal cable on the fixing assembly to move above the product to make the second connecting end above the product interface, and the second connecting end on the connecting area is connected with the product interface below through the bending of the bending area.
2. The auxiliary signal wire arrangement assembly of claim 1, wherein, The limiting clamping groove comprises a limiting bottom plate, an upper limiting baffle, a lower limiting baffle and a right limiting baffle, the upper limiting baffle and the lower limiting baffle are horizontally arranged on the limiting bottom plate, the upper limiting baffle and the lower limiting baffle are both in L shape, the right limiting baffle is located on the right side of the upper limiting baffle and the lower limiting baffle in the length direction, and the left side of the upper limiting baffle and the lower limiting baffle in the length direction forms an opening.
3. The auxiliary signal wire dressing assembly of claim 1, wherein, The sliding assembly comprises a fixing plate, a sliding rail, a sliding block, a sliding plate and a supporting arm, the fixing plate is connected with the carrier assembly, the sliding rail is arranged on the side of the fixing plate, which is away from the carrier assembly, the sliding block is slidingly connected with the sliding rail, the sliding plate is connected with the side of the sliding block, which is away from the sliding rail, one end of the supporting arm is connected with the sliding plate, and the other end is connected with the fixing assembly, and the supporting arm is located above the carrier assembly.
4. The auxiliary signal wire arrangement assembly of claim 3, wherein, The sliding assembly comprises a first limiting column and a second limiting column, the first limiting column and the second limiting column are both arranged on the side of the fixing plate, which is away from the carrier assembly, the first limiting column and the second limiting column are respectively located on the left and right sides of the sliding block, the first limiting column is used for abutting against one side of the sliding block to avoid the sliding block from separating from the sliding rail, and the second limiting column is used for abutting against the other side of the sliding block to make the second connecting end above the product interface.
5. The auxiliary signal wire arrangement assembly of claim 4, wherein, The sliding assembly further comprises a first magnetic structure, one end of the supporting arm, which is close to the fixing assembly, is provided with a first magnetic accommodating groove, and the first magnetic structure is arranged in the first magnetic accommodating groove. The fixing assembly comprises a main body and a second magnetic structure, the main body is provided with a second magnetic accommodating groove, the second magnetic structure is arranged in the second magnetic accommodating groove, the first magnetic structure and the second magnetic structure are attracted to each other. The main body part and the branch arm are magnetically connected through the first magnetic structure and the second magnetic structure.
6. The auxiliary signal wire arrangement assembly of claim 5, wherein, The main body part is provided with a first connecting hole and a second connecting hole on one side close to the branch arm; the sliding assembly further comprises a first connecting column and a second connecting column, one end of the first connecting column is connected with one end of the branch arm close to the fixing assembly, and the other end of the first connecting column extends into the first connecting hole and is connected with the main body part; one end of the second connecting column is connected with one end of the branch arm close to the fixing assembly, and the other end of the second connecting column extends into the second connecting hole and is connected with the main body part.
7. The auxiliary signal wire arrangement assembly of claim 6, wherein, The first magnetic accommodating groove comprises a first sub-magnetic accommodating groove and a second sub-magnetic accommodating groove, and the first sub-magnetic accommodating groove and the second sub-magnetic accommodating groove are respectively located at two opposite corners of one end of the branch arm close to the fixing assembly; the first magnetic structure comprises a first sub-magnetic structure and a second sub-magnetic structure, the first sub-magnetic structure is located in the first sub-magnetic accommodating groove, and the second sub-magnetic structure is located in the second sub-magnetic accommodating groove. The first connecting column and the second connecting column are respectively located at the other two opposite corners of one end of the branch arm close to the fixing assembly.
8. The auxiliary signal wire routing assembly of claim 3, wherein, The carrier assembly comprises a first clamping part and a second clamping part, the first clamping part is connected with the second clamping part, the fixing plate is connected with one side of the first clamping part away from the second clamping part, and the first clamping part and the second clamping part are respectively used for abutting against two sides of the product.
9. The auxiliary signal wire arrangement assembly of claim 8, wherein, The first clamping part is provided with a positioning groove, the first positioning magnetic structure is arranged in the positioning groove, the second positioning magnetic structure is arranged on the branch arm, the first positioning magnetic structure and the second positioning magnetic structure attract each other, and when the second positioning magnetic structure is located above the first positioning magnetic structure, the second connecting end is located above the product interface.