Data cable single-head processing special carrier and data cable double-head processing special carrier

By designing a special vehicle for single-head and double-head processing of data cables, the problem that existing equipment can only clamp a single wire is solved, and rapid clamping and disassembly is achieved, production efficiency and product quality are improved, and plug-in interfaces are protected.

CN111952812BActive Publication Date: 2025-08-29DONGGUAN LONGXUN AUTOMATION CO LTD
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Patent Information

Application Number
CN202010791885.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-08-08
Publication Date
2025-08-29
Estimated Expiration
2040-08-08

AI Technical Summary

Technical Problem

The existing data line production equipment can only clamp a single wire. The clamping process is cumbersome and cannot be disassembled and clamped quickly, resulting in low production efficiency and the single-sided clamped wire is prone to shake and produces defective products.

Method used

Design a special vehicle for single and double-head processing of data cables, adopting mold frames and mold strip structures, combined with rotatable clamping and plug-ins, to achieve quick clamping and disassembly of data cables, stable clamping, and protect the plug-in interface through a flare-shaped slot.

Benefits of technology

It realizes rapid clamping and disassembly of data cables, improves production efficiency, improves product quality, protects the plug-in interface, and avoids scratches.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a special carrier for single-head processing of data cables and a special carrier for double-head processing of data cables, comprising a mold frame surrounded by borders and a mold strip installed on the mold frame, at least one border of the mold frame is provided with a long through-groove running through the upper and lower end faces thereof, and a plurality of wire grooves, the data cables are inserted into the wire grooves, the long through-groove contains a plurality of pairs of rotatable wire clamping members, each pair of the wire clamping members clamps the two sides of the data cables; the mold strip is parallel to the long through-groove, and a plurality of connectors are provided on the mold strip, each of the connectors corresponds to a wire groove, the connector is provided with a slot matching the plug interface of the data cable, the plug interface extends into the slot and is clamped by it.
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Description

Technical Field

[0001] The present invention relates to the technical field of data cable processing equipment, and in particular to a special carrier for single-head processing of data cables and a special carrier for double-head processing of data cables. Background Art

[0002] As mobile phones, computers, and other electronic devices have become an integral part of people's lives and workplaces, data cables used for charging or transmitting data have become essential electronic accessories. Current data cable production relies primarily on manual processing and assembly, resulting in low efficiency and a lack of product standardization. With the advent of Industry 2.0, demands for automated and standardized data cable production are increasing, placing even higher demands on data cable production equipment. Existing data cable carriers can only clamp a single wire, a cumbersome process that prevents quick disassembly and re-clamping. Wires clamped on one side are prone to shaking, resulting in defective products during processing, reducing production efficiency, and failing to meet the demands of modern automated production. Summary of the Invention

[0003] In order to overcome the shortcomings of the existing technology, the present invention provides a special carrier for single-head processing of data cables and a special carrier for double-head processing of data cables, which solves the defects of existing wire processing that can only clamp a single wire, the clamping process is cumbersome, and it cannot be quickly disassembled and clamped. It realizes the rapid clamping and disassembly of data cables, stable clamping, and easy processing.

[0004] The technical solution of the present invention is as follows: a dedicated carrier for single-head processing of data cables, comprising a mold frame surrounded by borders and a mold bar mounted on the mold frame, wherein at least one border of the mold frame is provided with a long through-slot extending through the upper and lower end surfaces thereof, and a plurality of wire grooves, wherein the data cables are inserted into the wire grooves, and wherein the long through-slots contain a plurality of pairs of rotatable wire clamping members, each pair of the wire clamping members clamping both sides of the data cables;

[0005] The mold bar is parallel to the long through slot, and is provided with a plurality of connectors, each of which corresponds to a wire slot. The connector is provided with a slot matching the plug interface of the data cable, and the plug interface extends into the slot and is clamped by it.

[0006] The connector includes an upper pressing block and a lower clamping block, the top of the lower clamping block is provided with the slot; the upper pressing block has a pressing portion, which extends from above the slot and covers the notch, pressing the data line interface downward.

[0007] The upper portion of the slot wall is trumpet-shaped and expands outward to form a slot opening, the lower portion of the slot wall is straight, and the upper portion of the slot wall and the lower portion of the slot wall are connected by an arc-shaped transition.

[0008] The mold bar is provided with a mounting groove matching the upper pressing block and the lower clamping block. The mounting groove, the upper pressing block and the lower clamping block are all provided with mounting holes. A mounting shaft passes through the mounting holes to install the three in series.

[0009] The mounting hole on the upper pressing block is an elliptical long hole, so that the upper pressing block can slide up and down to cooperate with and press the plug interface of the data cable.

[0010] The long through groove and the wire trough are arranged to intersect, and each pair of the wire clamping members are respectively placed on both sides of the wire trough;

[0011] The wire trough is a blind trough, and a partition is provided below the long through trough to divide the space inside the long through trough into several independent accommodating chambers; each pair of the wire clamping members is centered on the partition and is mirror-imaged in the accommodating chambers on both sides of the partition.

[0012] Each of the clamping members has a main body portion. A rotating portion and a pushing portion are provided at the lower portion of the main body portion. The pushing portion is located between the two main bodies, and the rotating portion is pivotally connected to the long through slot.

[0013] The pushing portion protrudes from the main body, and when the clamping member rotates to a certain angle, a pair of opposing pushing portions abut against and interfere with each other, thereby preventing the clamping member from continuing to rotate;

[0014] The rotating part and the long through slot are respectively provided with an axial hole and a pivot that cooperate with each other, or

[0015] The two rotating parts on each pair of the clamping members are arranged in front and rear positions respectively. The rotating parts are provided with coaxial axial holes. A pivot passes through the two axial holes and the long through slot to pivotally connect the two.

[0016] The upper part of the main body protrudes out a first limiting part and a second limiting part to both sides respectively, an arc-shaped groove is provided under the first limiting part, and the arc-shaped grooves of the pair of clamping members form a clamping position.

[0017] A first elastic member is provided between two adjacent pairs of the clamping members, and the first elastic member is also provided between the outermost clamping members and the slot wall of the long through slot in the long through slot.

[0018] A carrier dedicated to double-end processing of a data cable comprises the above-mentioned carrier dedicated to single-end processing of a data cable, wherein two of the data cable processing carriers respectively clamp and fix the two ends of the data cable.

[0019] The two data cable carriers are arranged side by side left and right, or side by side up and down.

[0020] The carrier for single-head processing of data cables and the carrier for double-head processing of data cables of the present invention have at least one of the following beneficial effects:

[0021] The special carrier for single-head processing of data cables can clamp several wires at the same time, the clamping process is simple, and the data cables can be quickly clamped and disassembled, thereby improving production efficiency.

[0022] The carrier specially used for single-head processing of data cables clamps the cables stably, facilitates processing, and is beneficial to improving product quality.

[0023] The data cable single-head processing special carrier clamps the cable firmly, the upper part of the slot is trumpet-shaped, and the upper part of the slot wall and the lower part of the slot wall are connected with an arc-shaped transition, which is convenient for inserting the data cable plug interface and can protect the shell of the plug interface to avoid scratches.

[0024] The special carrier for double-end processing of the data cable can clamp and process both ends of the data cable at the same time, saving working procedures and improving processing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0026] Figure 1 This is a schematic diagram of the front structure of the special carrier for single-head processing of data cables according to the present invention.

[0027] Figure 2 for Figure 1 The reverse side structural diagram of the special carrier for single-head processing of data cables is shown.

[0028] Figure 3 for Figure 1 For clarity of the diagram, the first elastic member is omitted in the figure.

[0029] Figure 4 Schematic diagram of the structure of the clamping member of the present invention.

[0030] Figure 5 This is another structural schematic diagram of the clamping member of the present invention.

[0031] Figure 6 It is a schematic diagram of the exploded structure of the mold strip and the connector of the present invention.

[0032] Figure 7 This is a schematic structural diagram of the special carrier for double-end processing of data cables according to the present invention. DETAILED DESCRIPTION

[0033] The following describes embodiments of the present invention in detail, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the embodiments of the present invention, and should not be construed as limiting the present invention.

[0034] In the description of the embodiments of the present invention, it should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the embodiments of the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention.

[0035] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the embodiments of the present invention, "plurality" means two or more, unless otherwise specifically defined.

[0036] Reference Figure 1 and Figure 2 The data cable single-head processing special carrier 1 includes a mold frame surrounded by a frame 10 and a mold bar 20 mounted on the mold frame. At least one frame 10 of the mold frame is provided with a long through-groove 11 running through the upper and lower end surfaces thereof, and a plurality of wire grooves 12, into which the data cable 30 is inserted. The long through-groove 11 contains a plurality of pairs of rotatable wire clamping members 40, and each pair of the wire clamping members 40 clamps both sides of the data cable 30. It should be understood that the number of the wire grooves 12 is at least one, and can be flexibly set according to production needs, and this application does not impose any restrictions on this.

[0037] The mold strip 20 is parallel to the elongated through-slot 11 and is equipped with several connectors 50, each corresponding to a cable trough 12. Each connector 50 has a slot 51 that matches the plug-in port 31 of the data cable 30. The plug-in port extends into and is clamped by the slot 51. The dedicated carrier for single-end data cable processing of the present invention secures the data cable 30 with the clamping member 40 and the plug-in port 31 with the connector 50, thereby facilitating data cable processing.

[0038] In some embodiments of the present invention, the long through groove 11 and the wire groove 12 are independently provided and do not intersect with each other.

[0039] In some embodiments of the present invention, the long through groove 11 and the wire groove 12 are arranged to intersect, and each pair of the wire clamping members are placed on both sides of the wire groove. Each pair of the wire clamping members cooperates with the long through groove and the wire groove to achieve wire clamping, which has a compact structure, a reasonable layout, and saves space.

[0040] Refer to 1, Figure 2 and Figure 3 In some embodiments of the present invention, the cable trough 12 is a blind trough, and the elongated through-channel 11 is provided with a partition 13 below the cable trough 12, dividing the space within the elongated through-channel 11 into several independent receiving chambers. Each pair of the cable clamping members 40 is mirror-imaged and positioned within the receiving chambers 14 on either side of the partition 13, centered on the partition 13. The blind trough prevents the data cable from falling out of the elongated through-channel 11, and the partition 13 divides the elongated through-channel 11 into several independent receiving chambers 14, thereby preventing adjacent cable clamping members 40 from interfering with each other and affecting the cable clamping effect.

[0041] Reference Figure 3 , Figure 4 and Figure 5 In some embodiments of the present invention, the wire clamping member 40 is pivotally connected to the long through slot 11 by other methods commonly used in the prior art. The present invention does not limit its pivoting method and structure. Specifically, each of the wire clamping members 40 has a main body 41, and the lower part of the main body 41 is provided with a rotating part 42 and a pushing part 43, the pushing part 43 is located between the two main bodies 41, and the rotating part 42 is pivotally connected to the long through slot 11. A pushing member pushes the pushing part 43 upward, so that a pair of the wire clamping members 40 rotate respectively with the pivot point as the center, thereby opening the upper ends of a pair of the main bodies 41, so that the data line can enter between the pair of the main bodies 41.

[0042] Preferably, the pushing portion 43 protrudes from the main body 41 , and when the clamping member rotates by a certain angle, a pair of opposing pushing portions 43 abut against and interfere with each other, thereby preventing the clamping member 40 from continuing to rotate.

[0043] Preferably, the rotating portion is provided with an axial hole 44, and the elongated slot 11 is provided with a pivot shaft that cooperates with the axial hole. It should be understood that the pivot shaft can also be provided on the rotating portion, with the axial hole correspondingly provided on the slot wall of the elongated slot. Alternatively, the elongated slot 11 is provided with another axial hole, and a pivot shaft 15 passes through the two axial holes to connect the wire clamp 40 and the frame 10.

[0044] Preferably, the two rotating portions 42 on each pair of clamping members 40 are arranged in a front-to-rear configuration, i.e., one rotating portion 42a protrudes laterally from the front end of one main body, and the other rotating portion 42b protrudes laterally from the rear end of the other main body. This allows the axial holes 44 on the two rotating portions 42a and 42b to be coaxial, and a pivot 15 passes through the two axial holes and the elongated through-slot to pivotally connect the two. This structure enables the clamping members to rotate synchronously and move in a coordinated manner.

[0045] The main body 41 has a first stopper 45 and a second stopper 46 extending from its upper side. The first stopper 45 has an arcuate groove 47 formed below it. The arcuate grooves 47 of the pair of clamping members form a clamping position. The data cable 30 is clamped at the clamping position 40. When clamping the data cable, the first stopper 45 prevents the data cable from falling out of the main body.

[0046] A first elastic member 16 is disposed between two adjacent pairs of the clamping members 40. The first elastic member 16 is also disposed between the outermost clamping member 40 and the wall of the long through-slot 11. Each end of the first elastic member 16 compresses a clamping member 40. The second limiting portion 46 restrains the first elastic member 16 from above, while the rotating portion 42 restrains the first elastic member 46 from below, thereby preventing the first elastic member 16 from disengaging from the clamping member 40. The first elastic member 16 is preferably a circular spring.

[0047] Preferably, a third limiting portion 47 is further provided on the main body 41 below the second limiting portion 46 , and one end of the first elastic member 16 is accommodated in the third limiting portion 47 , thereby preventing the first elastic member 16 from shifting.

[0048] When clamping the data cable 30, the pusher pushes the clamping member 40 upward, overcoming the compressive force of the first elastic member 16 and rotating. The opposing pair of first stoppers 45 open, and the data cable 30 enters the clamping position. When the pusher is withdrawn, the first elastic member 16 pushes against the clamping member 40, causing it to return to its original position, thereby clamping the data cable 30. To release the data cable 30, the process repeats.

[0049] Reference Figure 3 and Figure 6 The connector 50 includes an upper pressing block 51 and a lower clamping block 52. The top of the lower clamping block 52 is provided with the slot 521. It should be understood that the shape of the slot 521 can be flexibly selected according to the needs of processing different data cable plug-in interfaces, for example, it can be USB TYPE-A, USB TYPE-B, USB TYPE-C, USB-mini, USB-micro, lighting cable, etc.

[0050] The upper portion of the slot 521's walls flare outwards in a trumpet shape, forming a notch. The lower portion is straight, connected by an arc-shaped transition. The data cable connector enters the slot from the top and slides downwards. The trumpet-shaped structure of the upper portion allows for unobstructed access, while the arc-shaped transition protects the connector and prevents scratches on its outer wall.

[0051] The upper pressing block 51 has a pressing portion 511 that extends from above the slot 521 and covers the slot, pressing downwards the plug interface of the data cable 30. The upper pressing block 51 is formed by wrapping a spring with copper material.

[0052] The upper pressing block 51 and the lower clamping block 52 are mounted on the mold strip 20. A first mounting groove 21 is defined on the side of the mold strip 20 facing the elongated through-slot 11, which matches the upper pressing block 51 and the lower clamping block 52. A second mounting groove 22 is defined on the bottom surface of the mold strip, with the first mounting groove 21 communicating with the second mounting groove 22. The upper pressing block 51 also has a mounting portion 512, which is received in the second mounting groove 22. The second mounting groove 22 and the mounting portion 512 are respectively provided with a first limiting hole 221 and a second limiting hole 514, respectively. The ends of a second elastic member 53 are respectively received in the first limiting hole 221 and the second limiting hole 514.

[0053] A connecting portion 513 is provided between the mounting portion 512 and the pressing portion 511. The mounting portion 512 and the pressing portion 511 are located on either side of the connecting portion 513. The connecting portion 513 is accommodated in the first mounting slot 21. When the pressing portion 511 is pressed by the data cable connector, the pressing portion 511 moves upward, driving the connecting portion 513 and the mounting portion 512 upward, and the mounting portion 512 compresses the second elastic member 53. The second elastic member 53 compresses the second mounting slot 22 and exerts a reaction force on the mounting portion 512, thereby causing the pressing portion 511 to compress the data cable connector.

[0054] The first mounting slot 21, the connecting portion 513, and the lower clamping block 52 are all provided with mounting holes 54a, 54b, and 54c. A mounting shaft (not shown) passes through the mounting hole 54 to mount the three in series. Preferably, the mounting hole 54b on the connecting portion 513 is an elliptical slot, allowing the upper clamping block 51 to move up and down to engage and compress the data cable connector.

[0055] The first mounting groove 21 is a stepped groove having a lower groove 211 and an upper groove 212. The lower groove 212 accommodates the connecting portion 513, and the upper groove 211 accommodates the lower clamping block 51. The stepped groove allows the upper pressing block 51 to move up and down smoothly without interference from the lower clamping block 52.

[0056] Reference Figure 7 A special carrier for double-end processing of a data line comprises two of the above-mentioned data line processing carriers 1 , which respectively clamp and fix the two ends of a data line 30 .

[0057] The two data cable carriers 1 are arranged side by side left and right, or arranged side by side up and down. Preferably, the two data cable single-head processing special carriers are fixedly connected or detachably connected.

[0058] The data line processing carrier is placed on the data line production line and moves along the data line processing station to facilitate data line processing.

[0059] Preferably, when the two data cable carriers are arranged side by side, the adjacent frames thereof are fixedly connected, and the fixed connection method is to fix the connection by clamping with a first clamping member and a second clamping member that match each other.

[0060] The above is a further detailed description of the present invention in conjunction with specific preferred embodiments, and the specific implementation of the present invention should not be considered to be limited to these descriptions. For those skilled in the art of the present invention, without departing from the concept of the present invention, its architecture can be flexible and varied, and a series of products can be derived. Simply making a few simple deductions or substitutions should be considered to fall within the scope of patent protection of the present invention as determined by the submitted claims.

Claims

1. A special carrier for processing a single head of a data cable, comprising a mold frame surrounded by a frame and a mold strip mounted on the mold frame, characterized in that: At least one side frame of the mold frame is provided with a long through-groove running through the upper and lower end surfaces thereof, and a plurality of wire grooves; the data cable is inserted into the wire groove, and the long through-groove contains a plurality of pairs of rotatable wire clamping members, each pair of the wire clamping members clamping two sides of the data cable; Each of the clamping members has a main body, a rotating portion and a pushing portion are provided at the lower portion of the main body, the pushing portion is located between the two main bodies, and the rotating portion is pivotally connected to the long through slot; The pushing portion protrudes from the main body, and when the clamping member rotates to a certain angle, a pair of opposing pushing portions abut against and interfere with each other, thereby preventing the clamping member from continuing to rotate; The rotating part and the long through slot are respectively provided with an axial hole and a pivot that cooperate with each other, or The two rotating parts on each pair of the clamping members are respectively arranged in front and rear positions, and the rotating parts are provided with coaxial axial holes, and a pivot passes through the two axial holes and the long through slot to pivotally connect the two; The mold bar is parallel to the long through slot, and a plurality of connectors are provided on the mold bar, each connector corresponds to a wire slot, and the connector is provided with a slot matching the plug interface of the data cable, and the plug interface extends into the slot.

2. The data cable single-head processing special carrier according to claim 1, characterized in that: The connector includes an upper pressing block and a lower clamping block, the top of the lower clamping block is provided with the slot; the upper pressing block has a pressing portion, which extends from above the slot and covers the notch, pressing the data line plug-in port downward.

3. The data cable single-head processing special carrier according to claim 1, characterized in that: The upper portion of the slot wall is trumpet-shaped and expands outward to form a slot opening, the lower portion of the slot wall is straight, and the upper portion of the slot wall and the lower portion of the slot wall are connected by an arc-shaped transition.

4. The data cable single-head processing special carrier according to claim 2, characterized in that: The mold bar is provided with a mounting groove matching the upper pressing block and the lower clamping block; the mounting groove, the upper pressing block and the lower clamping block are all provided with mounting holes, and a mounting shaft passes through the mounting holes to install the three in series.

5. The data cable single-head processing special carrier according to claim 4, characterized in that: The mounting hole on the upper pressing block is an elliptical long hole, so that the upper pressing block can slide up and down to cooperate with and press the plug interface of the data cable.

6. The data cable single-head processing dedicated carrier according to claim 1, characterized in that: The upper part of the main body protrudes out a first limiting part and a second limiting part to both sides respectively, an arc-shaped groove is provided under the first limiting part, and the arc-shaped grooves of the pair of clamping members form a clamping position.

7. The data cable single-head processing special carrier according to claim 1, characterized in that: A first elastic member is provided between two adjacent pairs of the clamping members, and the first elastic member is also provided between the outermost clamping members and the slot wall of the long through slot in the long through slot.

8. A special carrier for double-end processing of a data cable, comprising two special carriers for single-end processing of a data cable according to any one of claims 1 to 7, wherein the two special carriers for single-end processing of a data cable respectively clamp and fix the two ends of the data cable.

9. The dedicated carrier for double-head processing of data cables according to claim 8, characterized in that: The two data line single-head processing special carriers are arranged side by side on the left and right, or on the top and bottom.

Citation Information

Patent Citations

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