A wire following jig and jig mechanism
Patent Information
- Application Number
- CN202522133972.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-30
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-09-30
AI Technical Summary
[0004]本实用新型实施例提供一种随线治具及治具机构,以解决现有技术中进行不同加工处理时,需要对传输导线和电源导线重新进行穿接定位,操作繁琐,生产效率较低的问题
[0015]The beneficial effects of the following fixture provided in this embodiment of the utility model are as follows: The following fixture includes a base, a splitter block, and at least one fixing member. The cable tray on the base can accommodate the active optical cable body. The fixing member is located on one side of the cable tray. One end of the fixing member is rotatably connected to the base, and when the other end of the fixing member is connected to the base, it can press and fix the active optical cable body within the cable tray, thus positioning the active optical cable body. When the other end of the fixing member is detached from the base, it can loosen the active optical cable body, allowing the active optical cable to be removed from the cable tray after processing. The splitter block is mounted on the base and has several splitter holes. The conductors of the active optical cable can be threaded through the splitter holes to split the conductors of the active optical cable. The splitter block is located at one end of the cable tray, and the splitter holes communicate with the cable tray. This design ensures that while the active optical cable body is fixed within the cable tray, the splitter holes of the splitter block can correspondingly fix the conductors of the active optical cable, thereby simultaneously achieving the positioning of the active optical cable body and the conductors. Therefore, when performing different processing, it is only necessary to fix the positioning fixture of the active optical cable to the corresponding processing fixture, without the need to re-thread and position the conductor. This makes the operation of the active optical cable simple and convenient when switching to different processing, and can effectively improve production efficiency.
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Figure CN224773232U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of active optical cable processing fixtures, and in particular to a cable-following fixture and fixture mechanism. Background Technology
[0002] An active fiber optic data cable includes a cable body and a terminal circuit board. The cable body includes several fiber optic cables and several conductors. Generally, the conductors are connected to the terminal circuit board by soldering, while the fiber optic cables are connected to the terminal circuit board by crimping using fiber optic connectors.
[0003] Active fiber optic data cables require processing such as wire stripping, cutting, tin plating, and soldering during production. In existing technologies, each processing step necessitates re-fixing the cable body in the corresponding fixture and re-threading and positioning the wires. Furthermore, each wire must be threaded according to a specific sequence, making the process cumbersome and resulting in low production efficiency. Utility Model Content
[0004] This utility model provides a wire-following fixture and fixture mechanism to solve the problem that in the prior art, when performing different processing, it is necessary to reconnect and reposition the transmission wires and power wires, which is cumbersome and has low production efficiency.
[0005] This utility model discloses a cable-following fixture, which includes: a base having a cable-receiving groove for accommodating the main body of an active optical cable; a cable splitter block mounted on the base and located at one end of the cable-receiving groove, the cable splitter block having a plurality of cable splitting holes communicating with the cable-receiving groove for allowing the conductors of the active optical cable to pass through; and at least one fixing member located on one side of the cable-receiving groove, one end of the fixing member being rotatably connected to the base, and when the other end of the fixing member is connected to the base, it can press and fix the main body of the active optical cable in the cable-receiving groove; when the other end of the fixing member is detached from the base, it can release the main body of the active optical cable.
[0006] Optionally, the plurality of branch holes include two first branch holes for fixing power wires and a plurality of second branch holes for fixing transmission wires. The two first branch holes and the plurality of second branch holes are arranged in a row. The branch block is provided with an isolation protrusion on the side near the cable tray. The isolation protrusion is located between the first branch holes and the second branch holes.
[0007] Optionally, the branch block is provided with a cable tray on the side away from the base, and the cable tray is used for the optical fiber routing of the active optical cable.
[0008] Optionally, the base is provided with a mounting groove communicating with one end of the cable tray, and the cable divider block is detachably installed in the mounting groove.
[0009] This utility model also discloses a fixture mechanism, which includes a connecting fixture and the above-mentioned wire-following fixture. The connecting fixture is provided with a receiving groove for mounting the wire-following fixture.
[0010] Optionally, the connecting fixture is a wire stripping fixture for connecting with the wire stripping device. The wire stripping fixture includes a positioning seat and a first clamping member. The receiving groove is disposed on the positioning seat. The first clamping member is detachably disposed on the side of the positioning seat away from the bottom of the receiving groove and abuts against the fixing member. The first clamping member has a first pressing block on the side facing the bottom of the receiving groove, and the first pressing block abuts against the wire splitting block.
[0011] Optionally, the base is provided with a plurality of insertion holes and mounting holes, the mounting holes are provided with magnetic suction components, the bottom of the receiving groove is provided with a post, the post is inserted into the insertion hole, and the magnetic suction components are magnetically attracted to the positioning seat to fix the wire-following fixture.
[0012] Optionally, the connecting fixture is a welding fixture, which includes a fixed base, a second clamping member, and a third clamping member. The receiving groove is disposed on the fixed base. The second clamping member and the third clamping member are detachably disposed on the side of the fixed base away from the bottom of the receiving groove. The third clamping member abuts against the fixed member. The second clamping member is provided with a second pressing block, which abuts against the dividing block.
[0013] Optionally, the second clamping member has a notch that communicates with the receiving groove and is located on one side of the splitter block. The notch is used to allow the optical fiber of the active optical cable to pass through the receiving groove.
[0014] Optionally, the base is provided with a plurality of insertion holes and mounting holes, the mounting holes are provided with magnetic suction components, the bottom of the receiving groove is provided with a post, the post is inserted into the insertion hole, and the magnetic suction components are magnetically attracted to the fixing base to fix the wire-following fixture.
[0015] The beneficial effects of the following fixture provided in this embodiment of the utility model are as follows: The following fixture includes a base, a splitter block, and at least one fixing member. The cable tray on the base can accommodate the active optical cable body. The fixing member is located on one side of the cable tray. One end of the fixing member is rotatably connected to the base, and when the other end of the fixing member is connected to the base, it can press and fix the active optical cable body within the cable tray, thus positioning the active optical cable body. When the other end of the fixing member is detached from the base, it can loosen the active optical cable body, allowing the active optical cable to be removed from the cable tray after processing. The splitter block is mounted on the base and has several splitter holes. The conductors of the active optical cable can be threaded through the splitter holes to split the conductors of the active optical cable. The splitter block is located at one end of the cable tray, and the splitter holes communicate with the cable tray. This design ensures that while the active optical cable body is fixed within the cable tray, the splitter holes of the splitter block can correspondingly fix the conductors of the active optical cable, thereby simultaneously achieving the positioning of the active optical cable body and the conductors. Therefore, when performing different processing, it is only necessary to fix the positioning fixture of the active optical cable to the corresponding processing fixture, without the need to re-thread and position the conductor. This makes the operation of the active optical cable simple and convenient when switching to different processing, and can effectively improve production efficiency. Attached Figure Description
[0016] The technical solution of this utility model will be further described in detail below with reference to the accompanying drawings and embodiments. In the accompanying drawings: Figure 1 This is one of the schematic diagrams of the wire-following fixture provided in this embodiment of the utility model; Figure 2 This is a schematic diagram of the assembly of the cable-following fixture and the active optical cable provided in this embodiment of the utility model; Figure 3 This is a second schematic diagram of the wire-following fixture provided in this embodiment of the utility model; Figure 4 This is a schematic diagram of the dividing block provided in an embodiment of the present utility model; Figure 5 This is one of the schematic diagrams of the assembly of the wire-following fixture and the wire-stripping fixture provided in this embodiment of the utility model; Figure 6 This is a schematic diagram illustrating the use of the wire stripping fixture provided in this embodiment of the utility model; Figure 7 This is the second schematic diagram of the assembly of the wire-following fixture and the wire-stripping fixture provided in this embodiment of the utility model; Figure 8 This is one of the schematic diagrams of the assembly of the wire-following fixture and welding fixture provided in this embodiment of the utility model; Figure 9 This is a schematic diagram illustrating the use of the wire-following fixture provided in this embodiment of the utility model; Figure 10This is the second schematic diagram of the assembly of the wire-following fixture and welding fixture provided in this embodiment of the utility model.
[0017] The labels for the attached figures are as follows: 100. Fixture mechanism; 1. Cable guide fixture; 11. Base; 111. Cable receiving groove; 112. Mounting groove; 1121. Positioning post; 113. Insertion hole; 114. Mounting hole; 12. Cable splitter block; 121. Cable splitter hole; 1211. First cable splitter hole; 1212. Second cable splitter hole; 123. Positioning hole; 124. Isolation protrusion; 125. Cable routing groove; 13. Fixing component; 131. First fixing component; 1311. 132. Abutment groove; 14. Pressing block; 141. Pressing part; 2. Connecting fixture; 21. Wire stripping fixture; 211. Positioning seat; 212. Pressure plate; 2121. First pressing block; 22. Welding fixture; 221. Fixing seat; 222. Second clamping member; 2221. Second pressing block; 2222. Notch; 223. Third clamping member; 23. Receiving groove; 231. Insert post; 200. Active optical cable; 201. Active optical cable body; 202. Optical fiber of active optical cable; 203. Conductor of active optical cable; 2031. Power supply conductor; 2032. Transmission conductor; 300. Optical fiber connector; 400. Terminal circuit board. Detailed Implementation
[0018] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The preferred embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0019] This utility model embodiment provides a wire-following fixture 1, such as... Figures 1 to 4 As shown, the cable-following fixture 1 includes a base 11, a splitter block 12, and at least one fixing member 13. The base 11 is provided with a cable receiving groove 111 for accommodating the active optical cable body 201; the splitter block 12 is detachably mounted on the base 11 and located at one end of the cable receiving groove 111. The splitter block 12 is provided with a plurality of splitter holes 121, which communicate with the cable receiving groove 111 for the wires 203 of the active optical cable to pass through; the fixing member 13 is located on one side of the cable receiving groove 111. One end of the fixing member 13 is rotatably connected to the base 11, and when the other end of the fixing member 13 is connected to the base 11, it can press and fix the active optical cable body 201 in the cable receiving groove 111. When the other end of the fixing member 13 is detached from the base 11, it can release the active optical cable body 201.
[0020] Specifically, the cable tray 111 on the base 11 can accommodate the active optical cable body 201. The fixing member 13 is located on one side of the cable tray 111. One end of the fixing member 13 is rotatably connected to the base 11, and when the other end of the fixing member 13 is connected to the base 11, it can press and fix the active optical cable body 201 in the cable tray 111, thus positioning the active optical cable body 201. When the other end of the fixing member 13 is detached from the base 11, it can release the active optical cable body 201, allowing the active optical cable 200 to be removed from the cable tray 111 after processing. The splitter block 12 is installed on the base 11 and has several splitter holes 121. The conductors 203 of the active optical cable can be passed through the splitter holes 121 to split the conductors 203 of the active optical cable. The splitter block 12 is located at one end of the cable tray 111, and the splitter holes 121 are connected to the cable tray 111. This design ensures that while the active optical cable body 201 is fixed within the cable tray 111, the branching holes 121 of the branching block 12 can correspondingly fix the conductors 203 of the active optical cable, thus simultaneously achieving the positioning of both the active optical cable body 201 and the conductors 203. Therefore, during different processing steps, only the accompanying fixture 1 of the positioned active optical cable 200 needs to be fixed to the corresponding processing fixture; there is no need to re-thread and reposition the conductors 203 of the active optical cable. This makes the operation of the active optical cable 200 simple and convenient during different processing steps, effectively improving production efficiency.
[0021] In one embodiment, the accompanying fixture 1 includes two fixing members 13, namely a first fixing member 131 and a second fixing member 132. The first fixing member 131 is located at the end of the base 11 away from the splitter block 12, and the second fixing member 132 is located between the first fixing member 131 and the splitter block 12. The first fixing member 131 and the second fixing member 132 cooperate to form a double fixation, ensuring that the active optical cable body 201 can be firmly fixed in the cable tray 111 to prevent the active optical cable 200 from shifting during processing. It is worth mentioning that both the first fixing member 131 and the second fixing member 132 have a pressing groove on the side that presses the active optical cable body 201, and the pressing groove is adapted to the contour of the active optical cable body 201. Therefore, on the one hand, it can ensure that the first fixing member 131 and the second fixing member 132 can closely fit the outer contour of the active optical cable body 201 when pressing the active optical cable body 201, increasing the stability of the positioning of the active optical cable body 201. On the other hand, it can ensure that the fixing member 13 can evenly distribute the pressure when pressing, avoiding excessive local pressure that could damage the active optical cable body 201.
[0022] More specifically, such as Figure 3 and Figure 4As shown, one end of both the first fixing member 131 and the second fixing member 132 is rotatably connected to one side of the base 11, and the other end is connected to the other side of the base 11 by means of magnetic attraction, insertion, or compression. For example, a pressing block 14 is rotatably provided on the other side of the base 11, and the pressing block 14 has a pressing part 141. The other end of the first fixing member 131 has an abutment groove 1311, and the pressing part 141 can extend into the abutment groove 1311 and press against the bottom of the groove, thereby connecting the other end of the first fixing member 131 to the other side of the base 11. The other end of the second fixing member 132 can be magnetically fixed to the other side of the base 11.
[0023] Furthermore, as one specific implementation method in some embodiments of this utility model, such as Figures 2 to 4 As shown, the plurality of branch holes 121 include two first branch holes 1211 for fixing power wires 2031 and a plurality of second branch holes 1212 for fixing transmission wires 2032. The two first branch holes 1211 and the plurality of second branch holes 1212 are arranged in a row. The branch block 12 is provided with an isolation protrusion 124 on the side near the wire receiving groove 111. The isolation protrusion 124 is located between the first branch holes 1211 and the second branch holes 1212.
[0024] Specifically, the active optical cable conductors 203 include two power conductors 2031 and several transmission conductors 2032. The two power conductors 2031 are used for power transmission, and the several transmission conductors 2032 are used for data signal transmission. The first branch hole 1211 in the branch hole 121 can be used to thread the power conductors 2031, and the second branch hole 1212 can be used to thread the transmission conductors 2032, thereby achieving the branching and positioning of the power conductors 2031 and transmission conductors 2032. Furthermore, the two first branch holes 1211 and the several second branch holes 1212 are arranged in a row, allowing the power conductors 2031 and transmission conductors 2032 to be neatly and orderly arranged and fixed to be threaded into the corresponding branch holes 121. This improves the accuracy of branching the power conductors 2031 and transmission conductors 2032, facilitates wiring and inspection by operators, and reduces rework caused by wiring errors.
[0025] In addition, the splitter block 12 has an isolation protrusion 124 on the side near the cable tray 111, and the isolation protrusion 124 is located between the first splitter hole 1211 and the second splitter hole 1212. The isolation protrusion 124 can effectively isolate the power supply wire 2031 and the transmission wire 2032, and avoid mutual interference between the power supply wire 2031 and the transmission wire 2032.
[0026] Furthermore, as one specific implementation method in some embodiments of this utility model, such as Figures 2 to 4As shown, the side of the splitter block 12 away from the base 11 is provided with a cable tray 125, which is used for the cable tray 125 for the optical fiber 202 of the active optical cable.
[0027] Specifically, the splitter block 12 is provided with a cable tray 125 on the side away from the base 11. The cable tray 125 can ensure that after the cable fixture 1 is fixed to the corresponding processing fixture, it provides cable tray space for the optical fiber 202 of the active optical cable, so that the optical fiber 202 of the active optical cable can pass through the cable tray 125 and pass through the splitter block 12, so as to facilitate the corresponding processing of the optical fiber 202 of the active optical cable.
[0028] Furthermore, as one specific implementation method in some embodiments of this utility model, such as Figures 2 to 4 As shown, the base 11 is provided with a mounting groove 112 that communicates with one end of the cable tray 111, and the cable divider 12 can be detachably installed in the mounting groove 112.
[0029] Specifically, the base 11 is provided with a mounting groove 112 communicating with one end of the cable tray 111, and the splitter block 12 is detachably installed in the mounting groove 112. This design allows the operator to remove the splitter block 12 from the base 11 before processing, so that the conductors 203 of the active optical cable can be threaded into the splitter hole 121 according to the wiring sequence. After the conductors 203 of the active optical cable are threaded, the active optical cable body 201 is placed into the cable tray 111, and the splitter block 12 can be reinstalled on the base 11. Finally, the active optical cable body 201 is pressed and fixed by the fastener 13, thereby simultaneously achieving the positioning of the active optical cable body 201 and the conductors 203 of the active optical cable.
[0030] More specifically, each end of the mounting groove 112 is provided with a positioning post 1121, and each end of the splitter block 12 is provided with a positioning hole 123, into which the positioning post 1121 is inserted. Thus, through the cooperation of the positioning hole 123 and the positioning post 1121, the splitter block 12 can be accurately installed in the mounting groove 112, ensuring the stability and positioning accuracy of the splitter block 12, and allowing the splitter block 12 to be detachably installed in the mounting groove 112.
[0031] This utility model also discloses a fixture mechanism 100, such as Figures 5 to 10 As shown, the fixture mechanism 100 includes a connecting fixture 2 and the aforementioned cable-following fixture 1. The connecting fixture 2 is provided with a receiving groove 23 for mounting the cable-following fixture 1.
[0032] Specifically, the connecting fixture 2 is provided with a receiving groove 23, which can be used to install the following fixture 1, so that the following fixture 1 can be used in conjunction with the connecting fixture 2. Thus, when performing different processing, it is only necessary to fix the following fixture 1 of the positioned active optical cable 200 to the receiving groove 23 of the connecting fixture 2, and it can be assembled into the corresponding processing equipment for processing along with the connecting fixture 2. Therefore, it is not necessary to re-thread and position the conductor 203 of the active optical cable, making the operation of the active optical cable 200 simple and convenient when performing different processing, and effectively improving production efficiency.
[0033] Furthermore, as one specific implementation method in some embodiments of this utility model, such as Figures 5 to 7 As shown, the connecting fixture 2 is a wire stripping fixture 21, which is used to connect with the wire stripping device. The wire stripping fixture 21 includes a positioning seat 211 and a first clamping member. The receiving groove 23 is provided on the positioning seat 211. The first clamping member is detachably provided on the side of the positioning seat 211 away from the bottom of the receiving groove 23 and abuts against the fixing member 13. The first clamping member has a first pressing block 2121 on the side facing the bottom of the receiving groove 23. The first pressing block 2121 abuts against the wire splitting block 12.
[0034] Specifically, the connecting fixture 2 is a wire stripping fixture 21, which includes a positioning seat 211 and a first clamping member. A receiving groove 23 is provided in the positioning seat 211 and is used to install the wire-following fixture 1, so that the wire-following fixture 1, after positioning the active optical cable 200, can be quickly assembled with the wire stripping fixture 21 for use. This allows for convenient installation at the cutting station, wire stripping station, and tinning station of the wire stripping device to cut, strip, and tin-plate the conductors 203 of the active optical cable. The first clamping member is detachably located on the side of the positioning seat 211 away from the bottom of the receiving groove 23 and abuts against the fixing member 13, thereby pressing and fixing the wire-following fixture 1 in the receiving groove 23, ensuring the stability of the assembly of the wire-following fixture 1 with the wire stripping fixture 21. In addition, a first pressing block 2121 is provided on the side of the first pressing member facing the bottom of the receiving groove 23. The first pressing block 2121 abuts against the splitter block 12. The first pressing block 2121 can press and fix the splitter block 12 to prevent the position of the active optical cable conductor 203 from shifting during the processing.
[0035] Furthermore, as one specific implementation method in some embodiments of this utility model, such as Figure 3 and Figures 5 to 7 As shown, the base 11 is provided with several insertion holes 113 and mounting holes 114. A magnetic attracting element is provided in the mounting hole 114. A post 231 is provided at the bottom of the receiving groove 23. The post 231 is inserted into the insertion hole 113. The magnetic attracting element is magnetically attracted to the base 11 and the pressure plate 212 to fix the wire-following fixture 1.
[0036] Specifically, the base 11 is provided with several insertion holes 113, and the bottom of the receiving groove 23 is provided with insertion posts 231. The insertion posts 231 are inserted into the insertion holes 113, thereby achieving the initial fixation of the wire-following fixture 1 and the positioning seat 211. In addition, the base 11 is also provided with several mounting holes 114, and magnetic attracting elements are provided in the mounting holes 114. The magnetic attracting elements can magnetically attract the base 11 and the pressure plate 212, thereby stably fixing the wire-following fixture 1 in the receiving groove 23, while also facilitating quick assembly and disassembly between the wire-following fixture 1 and the positioning seat 211, increasing the convenience of use.
[0037] Furthermore, as one specific implementation method in some embodiments of this utility model, such as Figures 8 to 10 As shown, the connecting fixture 2 is a welding fixture 22. The welding fixture 22 includes a fixed base 221, a second clamping member 222 and a third clamping member 223. The receiving groove 23 is provided on the fixed base 221. The second clamping member 222 and the third clamping member 223 are detachably provided on the side of the fixed base 221 away from the bottom of the receiving groove 23. The third clamping member 223 abuts against the fixed member 13. The second clamping member 222 is provided with a second pressing block 2221. The second pressing block 2221 abuts against the dividing block 12.
[0038] Specifically, the connecting fixture 2 is a welding fixture 22, which includes a fixing base 221, a second clamping member 222, and a third clamping member 223. A receiving groove 23 is located on the fixing base 221 and is used to mount the accompanying fixture 1, allowing the accompanying fixture 1, after positioning the active optical cable 200, to be quickly assembled with the stripping fixture 21 for use. This facilitates convenient installation at the welding station of the welding device for welding the conductors 203 of the active optical cable. The second clamping member 222 and the third clamping member 223 are both located on the side of the fixing base 221 away from the bottom of the receiving groove 23. The third clamping member 223 abuts against the fixing member 13, thereby pressing and fixing the accompanying fixture 1 within the receiving groove 23, ensuring the stability of the assembly of the accompanying fixture 1 with the welding fixture 22. In addition, the second clamping member 222 is provided with a second pressing block 2221 on the side facing the bottom of the receiving groove 23. The second pressing block 2221 abuts against the splitter block 12. The second pressing block 2221 can press and fix the splitter block 12 to prevent the position of the active optical cable conductor 203 from shifting during the processing.
[0039] Furthermore, as one specific implementation method in some embodiments of this utility model, such as Figures 8 to 10 As shown, the second clamping member 222 is provided with a notch 2222, which communicates with the receiving groove 23 and is located on one side of the splitter block 12. The notch 2222 is used to allow the optical fiber 202 of the active optical cable to pass through the receiving groove 23.
[0040] Specifically, the second clamping member 222 is provided with a notch 2222, which communicates with the receiving groove 23 and is located on one side of the splitter block 12. This allows the optical fiber 202 of the active optical cable to bend and pass through the receiving groove 23 through the notch 2222 when the conductor 203 of the active optical cable is soldered to the terminal circuit board 400. This achieves separation between the optical fiber 202 and the conductor 203 of the active optical cable, preventing the optical fiber 202 of the active optical cable from interfering with the soldering of the conductor 203 of the active optical cable to the terminal circuit board 400.
[0041] It is worth mentioning that the second clamping member 222 can be rotatably connected to the fixed base 221. Thus, after the conductor 203 of the active optical cable is soldered to the terminal circuit board 400, the second clamping member 222 rotates outward from the receiving groove 23 so that the optical fiber 202 of the active optical cable can be connected to the terminal circuit board 400 through the optical fiber connector 300.
[0042] Furthermore, as one specific implementation method in some embodiments of this utility model, such as Figure 3 and Figures 8 to 10 As shown, the base 11 is provided with a plurality of insertion holes 113 and mounting holes 114. A magnetic attracting element is provided in the mounting hole 114. A second insert post 231 is provided at the bottom of the fixing groove. The second insert post 231 is inserted into the insertion hole 113. The magnetic attracting element is magnetically attracted to the base 11 and the second clamping element 222 to fix the wire-following fixture 1.
[0043] Specifically, the base 11 is provided with several insertion holes 113, and the bottom of the receiving groove 23 is provided with insertion posts 231. The insertion posts 231 are inserted into the insertion holes 113, thereby achieving the initial fixation of the cable-following fixture 1 and the fixing base 221. In addition, the base 11 is also provided with several mounting holes 114, and magnetic attracting elements are provided in the mounting holes 114. The magnetic attracting elements can magnetically attract with the fixing base 221, thereby stably fixing the cable-following fixture 1 in the receiving groove 23, while also facilitating quick assembly and disassembly between the cable-following fixture 1 and the fixing base 221, increasing the convenience of use.
[0044] It should be understood that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Those skilled in the art can modify the technical solutions described in the above embodiments, or make equivalent substitutions for some of the technical features; and all such modifications and substitutions should fall within the protection scope of the appended claims of this utility model.
Claims
1. A wire following tool characterized by, include: The base is provided with a cable tray for accommodating the active optical cable body; The splitter block is mounted on the base and located at one end of the cable tray. The splitter block has several splitter holes that communicate with the cable tray and are used for the wires of the active optical cable to pass through. At least one fixing member is located on one side of the cable tray. One end of the fixing member is rotatably connected to the base, and when the other end of the fixing member is connected to the base, it can press and fix the active optical cable body in the cable tray. When the other end of the fixing member is detached from the base, it can release the active optical cable body.
2. The wire following tool according to claim 1, wherein The plurality of branch holes include two first branch holes for fixing power wires and a plurality of second branch holes for fixing transmission wires. The two first branch holes and the plurality of second branch holes are arranged in a row. The branch block has an isolation protrusion on the side near the cable tray, and the isolation protrusion is located between the first branch holes and the second branch holes.
3. The wire following tool according to claim 2, wherein The branch block is provided with a cable tray on the side away from the base, and the cable tray is used for the optical fiber routing of the active optical cable.
4. The wire guide of claim 1, wherein The base is provided with a mounting groove that communicates with one end of the cable tray, and the cable divider can be detachably installed in the mounting groove.
5. A jig mechanism characterized by comprising: The device includes a connecting fixture and a follow-up fixture as described in any one of claims 1-4, wherein the connecting fixture is provided with a receiving groove for mounting the follow-up fixture.
6. The fixture mechanism of claim 5, wherein, The connecting fixture is a wire stripping fixture used to connect with the wire stripping device. The wire stripping fixture includes a positioning seat and a first clamping member. The receiving groove is provided on the positioning seat. The first clamping member is detachably provided on the side of the positioning seat away from the bottom of the receiving groove and abuts against the fixing member. The first clamping member has a first pressing block on the side facing the bottom of the receiving groove, and the first pressing block abuts against the wire splitting block.
7. The fixture mechanism of claim 6, wherein, The base is provided with a plurality of insertion holes and mounting holes. A magnetic suction element is provided in the mounting hole. A post is provided at the bottom of the receiving groove. The post is inserted into the insertion hole. The magnetic suction element is magnetically attracted to the positioning seat to fix the wire-following fixture.
8. The fixture mechanism of claim 5, wherein, The connecting fixture is a welding fixture, which includes a fixed base, a second clamping member and a third clamping member. The receiving groove is provided on the fixed base. The second clamping member and the third clamping member are detachably provided on the side of the fixed base away from the bottom of the receiving groove. The third clamping member abuts against the fixed member. The second clamping member is provided with a second pressing block, and the second pressing block abuts against the dividing block.
9. The tooling mechanism of claim 8, wherein, The second clamping member has a notch that communicates with the receiving groove and is located on one side of the splitter block. The notch is used to allow the optical fiber of the active optical cable to pass through the receiving groove.
10. The tooling mechanism of claim 9, wherein, The base is provided with a plurality of insertion holes and mounting holes. A magnetic attracting element is provided in the mounting hole. A post is provided at the bottom of the receiving groove. The post is inserted into the insertion hole. The magnetic attracting element is magnetically attracted to the fixing base to fix the wire-following fixture.