High-density distribution box
By designing a high-density distribution box and utilizing a combination of hinged and wire structures, the problems of insufficient rotation angle and instability in existing fiber optic distribution boxes were solved, thereby improving the stability of fiber optic connections and space utilization efficiency.
Patent Information
- Application Number
- CN202422662524.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-11-01
AI Technical Summary
Existing fiber optic distribution boxes have insufficient rotation angle and inadequate stability after rotation, making it impossible to accommodate more fiber optic cables within a limited space, resulting in an unreasonable structure.
A high-density patch panel was designed, including a box body, a patch panel, a hinge structure, a conductor structure, and a cable passage. The patch panel rotates around the hinge structure, and the rotation range is limited by the hinge structure contacting the backrest to ensure stability. The conductor structure and cable passage rationally distribute optical cables and fiber optic lines.
It achieves stable fiber optic connection and transmission within a limited space, ensures stable fiber optic connection operations and reasonable allocation of optical cables, and improves the utilization efficiency of fiber optic boxes.
Smart Images

Figure CN223597954U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to communication technical field especially is high density distribution box. BACKGROUND
[0002] With people's increasing demand for communication bandwidth, optical fibers have been used in large quantities in wired communication networks, and optical fiber fusion distribution boxes are generally fixed in indoor and outdoor optical fiber distribution equipment and are important components of indoor and outdoor optical fiber distribution equipment, integrating optical fiber disc storage and distribution functions. In order to facilitate operation, the existing optical fiber distribution box rotates the distribution support out of the distribution box in a rotary manner. The existing rotary distribution box has insufficient rotation angle and stability after rotation, and the existing accessory box structure is unreasonable, which cannot accommodate more optical fiber lines in a limited space. SUMMARY
[0003] In order to overcome the shortcomings of the prior art, the utility model provides a high-density distribution box.
[0004] The utility model discloses a high-density distribution box, which comprises a box body, a distribution disc hinged in the box body, the distribution disc and the box body being buckled, the distribution disc comprising a bottom disc, a hinge structure fixedly connected with the bottom disc, a wire outlet structure fixedly connected with the bottom disc and arranged on the side of the hinge structure, a wire guide structure fixedly connected with the bottom disc, and a distribution structure arranged in the center of the bottom disc, the wire guide structure being arranged on the outside of the distribution structure, a wire passage one being formed between the side wall of the box body and the wire guide structure, a wire passage two being formed between the wire guide structure and the wire outlet structure, and a wire inlet being arranged on the first side wall and communicated with the wire passage one.
[0005] Preferably, the box body comprises a bottom plate and a top plate, the bottom disc is arranged on the bottom plate and in contact with the bottom plate, the bottom plate is sequentially fixed with a first side wall, a second side wall, a third side wall, and a fourth side wall, a gap is arranged between the bottom disc and the second side wall, a hinge shaft one is arranged on the bottom plate at a position away from the second side wall by a certain distance and hinged with the hinge structure, the wire inlet is arranged on the first side wall, the wire outlet structure is arranged on the third side wall, the distribution disc is hinged with the bottom plate and the top plate, the distribution disc is buckled with the fourth side wall, a backrest is arranged at the connection between the second side wall and the third side wall, and the width of the backrest is smaller than the width of the gap.
[0006] Preferably, the distribution structure comprises a wire winding support one, a wire winding support two, and a wire passing support fixedly connected with the bottom disc, the wire passing support is arranged between the wire winding support one and the wire winding support two, the wire winding support one, the wire winding support two, and the wire passing support are arranged on the same straight line, the wire winding support one and the wire winding support two have the same structure, and a plurality of wire winding supports are arranged on the wire winding support one and the wire winding support two respectively.
[0007] Preferably, the wire passing holder comprises a wire passing disc one fixed with the bottom disc, a limiting seat fixed with the bottom disc and arranged outside the wire passing disc one, the limiting seat is arranged outside the wire passing disc one and a plurality of limiting seats are arranged, a disc wire channel is arranged between the wire passing disc one and the limiting seat, the wire passing disc one and the top of the limiting seat are respectively provided with a wire fixing clamp one and a wire fixing clamp two towards the direction of the disc wire channel, a wire passing groove one is arranged between the wire fixing clamp one and the wire fixing clamp two and communicates with the disc wire channel, the limiting seat is arranged three, and a wire passing groove two, a wire passing groove three and a wire passing groove four are respectively arranged between adjacent limiting seats.
[0008] Preferably, the wire winding holder one comprises a wire passing disc two fixedly connected with the bottom disc, an inclined fixing seat fixedly connected with the side surface of the wire passing disc two, a hinged seat fixed with the inclined fixing seat, and a wire winding disc hinged with the hinged seat, the inclined fixing seat is arranged on the side surface of the wire passing holder, and the wire passing disc two is provided with an opening one and an opening two towards the side surface of the inclined fixing seat.
[0009] Preferably, the wire winding disc comprises a wire winding holder disc, a hinged shaft two fixedly connected with the side surface of the wire winding holder disc, the wire winding holder disc is provided with a detachable fiber melting clamp block and a fiber winding block arranged beside the fiber melting clamp block, and the wire winding holder disc is provided with a wire outlet one.
[0010] Preferably, the wire guide structure comprises a first wire guide wall and a second wire guide wall fixed with the bottom disc, the first wire guide wall comprises a first wire part arranged inside the fourth side wall, a second wire part fixedly connected with the first wire part and extending along the inner side of the first side wall, a third wire part fixedly connected with the second wire part and extending along the inner side of the second side wall, and a fourth wire part fixedly connected with the third wire part and extending outside the wire winding holder two and connected with the wire passing holder, the second wire guide wall comprises a fifth wire part arranged inside the wire outlet structure, a sixth wire part fixedly connected with the fifth wire part and arranged inside the first wire part, and a seventh wire part fixedly connected with the sixth wire part and arranged inside the first wire part.
[0011] Preferably, the wire passing channel one comprises a wire inlet channel and a wire outlet channel, the first wire part, the second wire part, the third wire part and the fourth wire part form a continuous wire inlet channel with the fourth side wall, the first side wall, the second side wall and the fifth wire part, the wire inlet channel communicates with the wire passing groove two, and the fifth wire part, the sixth wire part and the seventh wire part form a wire outlet channel with the wire outlet structure, the first wire part and the second wire part.
[0012] The utility model discloses a beneficial effect provides high density distribution box, the distribution board rotates the space of outside from the box body around the hinged structure, when distribution board rotates to certain amplitude, the hinged structure and backrest resist and touch, thereby limited distribution board to the maximum amplitude of rotation outside, distribution board rotates a certain angle and distribution board's hinged structure and backrest resist and touch, ensure the stability of distribution board when operator operates distribution board. When fusing fiber butt joint, the optical cable passes into the wire channel through the wire inlet and is guided into the distribution structure through the wire structure, and the operator carries out the fusing fiber operation and fixes the fusing fiber part in the distribution box and is introduced from the wire channel two and enters the optical fiber connector in the wire outlet structure and is connected with the wire outlet structure. After operator completes the fusing fiber work, rotates distribution board into the box body and distribution box and box body buckle, thereby ensuring the stability in distribution box, ensuring transmission stability when optical fiber connects. The wire inlet channel and wire outlet channel design compact and reasonable, can reasonably distribute optical cable and optical fiber wire in limited space. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is the structure schematic diagram of high density distribution box of the utility model.
[0014] Figure 2 It is the explosion structure schematic diagram of high density distribution box of the utility model.
[0015] Figure 3 It is the partial structure schematic diagram of high density distribution box of the utility model.
[0016] Figure 4 It is Figure 3 The structure schematic diagram of top view.
[0017] Figure 5 It is the partial structure schematic diagram of high density distribution box of the utility model.
[0018] Figure 6 It is the partial structure schematic diagram of distribution board of high density distribution box of the utility model.
[0019] Figure 7 It is the structure schematic diagram of winding support one of high density distribution box of the utility model.
[0020] Figure 8 It is the wire inlet structure schematic diagram of high density distribution box of the utility model.
[0021] Figure 9 It is the wire outlet structure schematic diagram of high density distribution box of the utility model. DETAILED DESCRIPTION
[0022] The embodiments of the present application are described below in conjunction with the accompanying drawings and related embodiments, and the embodiments of the present application are not limited to the following examples, and the present application relates to the necessary components in the related technical field, which should be regarded as the known technology in the technical field, and can be known and mastered by the skilled in the art.
[0023] In the description of the present application, it should be pointed out that the terms "upper", "lower", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, or the orientation or positional relationship commonly used when the product of the present application is used, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, structure and operation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "one", "two" and the like are only used for description, and cannot be understood as indicating or implying relative importance. It should be pointed out in the description of the present application that, unless otherwise specified and limited, the terms "provided", "connected" should be understood broadly, 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 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.
[0024] Referring to Figures 1 to 9 , the present application is realized as follows: a high-density wiring box, comprising a box body 1, a wiring disc 2 is hingedly connected in the box body 1, the wiring disc 2 is buckled with the box body 1, the wiring disc 2 comprises a bottom disc 21, a hinge structure 22 fixedly connected with the bottom disc 21, a wire outlet structure 23 fixedly arranged on the side of the hinge structure 22 and the bottom disc 21, a wire guide structure 24 fixedly connected with the bottom disc 21, a wiring structure 25 arranged in the center of the bottom disc 21, the wire guide structure 24 is arranged outside the wiring structure 25, the wire outlet structure 23 is provided with an optical fiber connector connected with the external plug-in connection, a wire passing channel one 3 is formed between the side wall of the box body 1 and the wire guide structure 24, a wire passing channel two 4 is formed between the wire guide structure 24 and the wire outlet structure 23, and the side wall of the box body 1 is provided with a wire inlet 5 communicated with the wire passing channel one 3. The box body 1 is fixed with a stop piece 7 located at the wiring disc 2.
[0025] When the present application is applied, the wire outlet structure 23 is provided as a multi-layer optical fiber plug-in head, the wiring disc 2 rotates out of the space outside the box body 1 around the hinge structure 22, so as to facilitate the optical fiber fusion fiber butt joint operation of the operator.
[0026] When the fiber is fused, the cable enters the through channel through the inlet 5, is guided into the distribution structure 25 through the guide structure 24, is fused by the operator, and is fixed in the distribution box. The fiber is connected with the fiber connector in the outlet structure 23. After the operator completes the fusion operation or maintenance work, the distribution disc 2 is rotated into the box body, and the distribution disc 2 is buckled with the box body 1. The stability of the distribution disc 2 in the box body 1 is ensured.
[0027] On the basis of the above embodiment, as a further preferred, the box body 1 comprises a bottom plate 11 and a top plate 12, the bottom disc 21 is arranged on the bottom plate 11 and is in contact with the bottom plate 11, the bottom plate 11 is sequentially fixed with a first side wall 13, a second side wall 14, a third side wall 15 and a fourth side wall 16, a gap 6 is arranged between the bottom disc 21 and the second side wall 14, the bottom plate 11 is provided with a hinge shaft I 111 hinged with the hinge structure 22 at a position away from the second side wall 14 by a certain distance, the distribution disc 2 rotates around the hinge shaft I 111, the inlet 5 is arranged on the first side wall 13, the outlet structure 23 is arranged on the third side wall 15, the distribution disc 2 is hinged with the bottom plate 11 and the top plate 12, the distribution disc 2 is buckled with the fourth side wall 16, a backrest 17 is arranged at the connection position of the second side wall 14 and the third side wall 15, and the width of the backrest 17 is smaller than the width of the gap 6. The width of the backrest 17 extending into the gap 6 determines the rotation range of the distribution disc 2.
[0028] The bottom plate 11 protrudes from the bottom disc 21 in the direction of the third side wall 15 by a certain distance, so that, after the distribution disc 2 is pulled out and rotated, the bottom plate 11 of the protruding part of the bottom disc 21 supports the distribution disc 2, thereby facilitating the operator to operate the distribution disc 2.
[0029] In the utility model, the outlet structure 23 occupies the whole third side wall 15, and in actual application, when the application scene does not need too many outlet structures 23, the third side wall 15 is used to fill the positions without the outlet structure 23.
[0030] The distribution disc 2 rotates out of the space outside the box body 1 around the hinge structure 22, when the distribution disc 2 rotates by a certain range, the hinge structure 22 is in contact with the backrest 17, thereby limiting the maximum range of the outward rotation of the distribution disc 2. Generally, the distribution disc 2 is rotated by more than 90 DEG and less than 145 DEG, which is convenient for the operator to operate. In the embodiment, when the distribution disc 2 is rotated outward by 103 DEG, the hinge structure 22 of the distribution disc 2 is in contact with the backrest, thereby ensuring the stability of the distribution disc 2 when the operator operates the distribution disc 2.
[0031] On the basis of the above-mentioned embodiments, as a further preferred, the wiring structure 25 comprises a winding holder one 251, a winding holder two 252 and a wire passing holder 253 fixedly connected with the bottom disc 21, the wire passing holder 253 is arranged between the winding holder one 251 and the winding holder two 252, the winding holder one 251, the winding holder two 252 and the wire passing holder 253 are arranged on the same straight line, the winding holder one 251 and the winding holder two 252 have the same structure, in the embodiment, the winding holder one 251 and the winding holder two 252 are respectively provided with four stacks, and the winding holder one 251 and the winding holder two 252 can be provided with more quantities according to the actual situation on site.
[0032] The wire passing holder 253 comprises a wire passing disc one 2531 fixedly connected with the bottom disc 21 and a limiting seat 2532 fixedly connected with the bottom disc 21 and arranged outside the wire passing disc one 2531, the limiting seat 2532 is provided with a plurality of limiting seats 2532 and is arranged outside the wire passing disc one 2531, a disc wire channel 2533 is arranged between the wire passing disc one 2531 and the limiting seat 2532, the wire passing disc one 2531 and the limiting seat 2532 are respectively provided with a wire fixing clamp one 2534 and a wire fixing clamp two 2535 facing the direction of the disc wire channel 2533, a wire passing groove one 2536 communicating with the disc wire channel 2533 is arranged between the wire fixing clamp one 2534 and the wire fixing clamp two 2535, the limiting seat 2532 is provided with three limiting seats 2532, and a wire passing groove two 2537, a wire passing groove three 2538 and a wire passing groove four 2539 are respectively arranged between adjacent limiting seats 2532. When the external optical cable enters the wire passing holder, it enters the wire passing groove two 2537 and then enters the disc wire channel 2533 from the wire passing groove one 2536, and the arrangement of the wire fixing clamp one 2534 and the wire fixing clamp two 2535 ensures that the optical cable in the disc wire channel 2533 does not jump out of the disc wire channel 2533 due to other uncertain factors, thereby ensuring the stability of the external optical cable.
[0033] The winding support 251 includes a wire passing disc two 2511 fixedly connected with the bottom disc 21, an inclined fixed seat 2512 fixedly connected with the side surface of the wire passing disc two 2511, a hinged seat 2513 fixed with the inclined fixed seat 2512, and a winding disc 2514 hinged with the hinged seat 2513. The inclined fixed seat 2512 is arranged on the side surface of the wire passing support 253, and the wire passing disc two 2511 is provided with an opening one 2515 and an opening two 2516 towards the side surface of the inclined fixed seat 2512. The inclined fixed seat, the hinged seat 2513 and the wire passing disc two 2511 form an obtuse angle greater than 90°. In the embodiment, the inclined fixed seat 2512, the hinged seat 2513 and the wire passing disc two 2511 form an angle of 145°. The hinged seat 2513 is designed to be stacked once from top to bottom, and the winding disc 2514 is hinged with the hinge joint. The winding disc 2514 is hinged with the hinge joint of the winding disc 2514. When the winding disc 2514 is not held by external force, the winding disc 2514 is placed on the winding disc 2514 under the influence of gravity. When the operator needs to install or maintain, the winding disc 2514 needed is only turned upward around the hinge joint, which is simple and convenient. The inclined fixed seat 2512, the hinged seat 2513 and the wire passing disc two 2511 form an angle of 145°, so that the upper part of the hinged seat 2513 is a blank area. When the winding disc 2514 is wound upward, the winding disc 2514 can be placed in the blank area of the hinged seat 2513, thereby providing the operator with operation space for the winding disc 2514 on the wire passing disc two 2511.
[0034] The winding disc 2514 includes a winding tray 25141 and a hinged shaft two 25142 fixedly connected with the side surface of the winding tray 25141. The winding tray 25141 is hinged with the hinged seat 2513 through the hinged shaft two 25142 and can rotate around the hinged seat 2513. The winding tray 25141 is provided with a detachable fiber fusion clamp block 25143 and a fiber winding block 25144 arranged beside the fiber fusion clamp block 25143. The winding tray 25141 is provided with a wire outlet one 25145, and the wire outlet one 25145 is provided with two sides connected with the hinged shaft two 25142.
[0035] The fiber fusion clamp block 25143 is designed to be detachable, and different models of fiber fusion clamp blocks 25143 can be assembled according to the needs of the site, which is suitable for different application types. The optical fiber line is wound around the fiber fusion clamp block 25143 from the wire outlet one 25145, and the excess optical fiber line is wound outside the fiber fusion clamp block 25143, then enters the fiber fusion clamp block 25143 for fiber fusion, and then passes through the wire outlet one 25145.
[0036] The wire structure 24 comprises a first wire wall 241 fixed with the bottom disc 21, and a second wire wall 242, the first wire wall 241 comprises a first wire part 2411 arranged inside the fourth side wall 16, a second wire part 2412 fixedly connected with the first wire part 2411 and extending along the inner side of the first side wall 13, a third wire part 2413 fixedly connected with the second wire part 2412 and extending along the inner side of the second side wall 14, and a fourth wire part 2414 fixedly connected with the third wire part 2413 and extending outside the wire holding groove two 252 and connecting with the wire passing groove three 253, the second wire wall 242 comprises a fifth wire part 2421 arranged inside the wire outlet structure 23, a sixth wire part 2422 fixedly connected with the fifth wire part 2421 and arranged inside the first wire part 2411, and a seventh wire part 2423 fixedly connected with the sixth wire part 2422 and arranged inside the first wire part 2411.
[0037] The wire passing channel one 3 comprises a wire inlet channel 31 and a wire outlet channel 32, the first wire part 2411, the second wire part 2412, the third wire part 2413, the fourth wire part 2414 and the fifth wire part 2421 form a continuous wire inlet channel 31, the wire inlet channel 31 communicates with the wire passing groove two 2537, and the fifth wire part 2421, the sixth wire part 2422 and the seventh wire part 2423 form a wire outlet channel 32.
[0038] The wire inlet channel 31 and the wire outlet channel 32 are designed to be compact and reasonable, and can reasonably distribute the optical cable and the optical fiber wire in limited space.
[0039] As Figure 8 Figure 9 The external optical cable is divided into two parts, the two parts of the external optical cable enter the wire inlet channel 31 from the wire inlet 5, then enter the wire groove two, then wrap around the outer side of the wire passing disc one 2531 of the wire passing holder 253, the wrapped external optical cable is divided into two parts, one part of the external optical cable enters the wire holding groove one 251 from the wire passing groove three 2538, and the other part of the external optical cable enters the wire holding groove two 252 from the wire passing groove four 2539, the external optical cable entering the wire holding groove one 251 and the wire holding groove two 252 will be wound around the wire passing disc two 2511, and then enter the wire holding disc 25141 from the wire passing groove two 2516. The optical fiber wire in the optical cable enters the wire passing groove one 2515 in the wire holding disc 25141, then is wound around the wire holding disc 2514, then the excess optical fiber wire is arranged, then the optical fiber wire is fused by the fiber fusing clamp 25143, and then the optical fiber wire exits from the wire passing groove two 2516 and is connected with the wire outlet structure 23.
[0040] In conclusion, the embodiment can reasonably allocate optical cables and optical fiber lines in limited space, and also facilitates operators to perform maintenance.
[0041] It should be noted that, for the ordinary skilled in the art, without departing from the principles of the utility model, a number of improvements and refinements can be made, and these improvements and refinements should also be considered within the scope of the utility model.
Claims
1. A high-density terminal block, characterized by The utility model provides a kind of cable distribution box, including box (1), the hinge structure (22) is fixedly connected with bottom disc (21) in the box (1), the cable distribution box (2) is connected with box (1), the cable distribution box (2) includes bottom disc (21), hinge structure (22) fixedly connected with bottom disc (21), outlet structure (23) fixed with bottom disc (21) and arranged in the side of hinge structure (22), wire structure (24) fixedly connected with bottom disc (21), wiring structure (25) is arranged in the center of bottom disc (21), wire structure (24) is arranged outside wiring structure (25), the side wall of box (1) and wire structure (24) form wire channel one (3), wire structure (24) and outlet structure (23) form wire channel two (4), the side wall of box (1) is equipped with wire inlet (5) communicated with wire channel one (3).
2. The high-density connector of claim 1, wherein The box (1) includes bottom plate (11) and top plate (12), the bottom disc (21) is arranged on the bottom plate (11) and contacts with the bottom plate (11), the bottom plate (11) is fixed with first side wall (13), second side wall (14), third side wall (15) and fourth side wall (16) in sequence, the clearance (6) is equipped between the bottom disc (21) and the second side wall (14), the bottom plate (11) is equipped with the hinge shaft one (111) hinged with hinge structure (22) at a position away from the second side wall (14) by a certain distance, the wire inlet (5) is arranged on the first side wall (13), the outlet structure (23) is arranged on the third side wall (15), the cable distribution box (2) is hinged with the bottom plate (11) and the top plate (12), the cable distribution box (2) is buckled with the fourth side wall (16), the connecting portion of the second side wall (14) and the third side wall (15) is equipped with backrest (17), and the width of the backrest (17) is less than the width of the clearance (6).
3. The high-density connector of claim 2, wherein the plurality of conductive pins are arranged in a plurality of rows, and the plurality of conductive pins in each row are arranged in a plurality of columns. The wiring structure (25) includes wire holder one (251), wire holder two (252) and wire passing holder (253) fixedly connected with bottom disc (21), the wire passing holder (253) is arranged between wire holder one (251) and wire holder two (252), wire holder one (251), wire holder two (252) and wire passing holder (253) are arranged on the same straight line, wire holder one (251) and wire holder two (252) have the same structure, and wire holder one (251) and wire holder two (252) are respectively provided with a plurality of.
4. The high-density connector of claim 3, wherein the plurality of conductive pins are arranged in a plurality of rows, and the plurality of conductive pins in each row are arranged in a plurality of columns. The wire passing holder (253) comprises a wire passing disc I (2531) fixed with the bottom disc (21), a limiting seat (2532) fixed with the bottom disc (21) and arranged outside the wire passing disc I (2531), the limiting seat (2532) is arranged outside the wire passing disc I (2531) and a plurality of limiting seats (2532) are arranged, a disc wire channel (2533) is arranged between the wire passing disc I (2531) and the limiting seat (2532), the wire passing disc I (2531) and the top of the limiting seat (2532) are respectively provided with a wire fixing clamp I (2534) and a wire fixing clamp II (2535) towards the direction of the disc wire channel (2533), the wire fixing clamp I (2534) and the wire fixing clamp II (2535) are provided with a wire passing groove I (2536) communicated with the disc wire channel (2533), the limiting seat (2532) is provided with three limiting seats (2532), and a wire passing groove II (2537), a wire passing groove III (2538) and a wire passing groove IV (2539) are respectively arranged between adjacent limiting seats (2532).
5. The high-density junction box as described in claim 4, characterized in that... The wire winding holder I (251) comprises a wire passing disc II (2511) fixedly connected with the bottom disc (21), an inclined fixing seat (2512) fixedly connected with the side surface of the wire passing disc II (2511), a hinged seat (2513) fixed with the inclined fixing seat (2512), and a wire winding disc (2514) hinged with the hinged seat (2513), the inclined fixing seat (2512) is arranged on the side surface of the wire passing holder (253), and the wire passing disc II (2511) is provided with an opening I (2515) and an opening II (2516) towards the side surface of the inclined fixing seat (2512).
6. The high-density connector of claim 5, wherein the plurality of conductive pins are arranged in a plurality of rows, and the plurality of conductive pins in each row are arranged in a plurality of columns. The wire winding disc (2514) comprises a wire winding holder disc (25141) and a hinged shaft II (25142) fixedly connected with the side surface of the wire winding holder disc (25141), the wire winding holder disc (25141) is provided with a detachable fused fiber clamping block (25143) and a fiber winding block (25144) arranged beside the fused fiber clamping block (25143), and the wire winding holder disc (25141) is provided with a wire outlet I (25145).
7. The high-density connector of claim 3, wherein the plurality of conductive pins are arranged in a plurality of rows, and the plurality of rows are arranged in a plurality of columns. The wire structure (24) comprises a first wire wall (241) and a second wire wall (242) fixed with the bottom disc (21), the first wire wall (241) comprises a first wire part (2411) arranged inside the fourth side wall (16), a second wire part (2412) fixedly connected with the first wire part (2411) and extending along the inner side of the first side wall (13), a third wire part (2413) fixedly connected with the second wire part (2412) and extending along the inner side of the second side wall (14), and a fourth wire part (2414) fixedly connected with the third wire part (2413) and extending outside the wire holding part two (252) and connected with the wire passing holding part (253), the second wire wall (242) comprises a fifth wire part (2421) arranged inside the wire outlet structure (23), a sixth wire part (2422) fixedly connected with the fifth wire part (2421) and arranged inside the first wire part (2411), and a seventh wire part (2423) fixedly connected with the sixth wire part (2422) and arranged inside the first wire part (2411).
8. The high-density connector of claim 7, wherein the plurality of conductive pins are arranged in a plurality of rows, and the plurality of conductive pins in each row are arranged in a plurality of columns. The wire passing channel one (3) comprises a wire inlet channel (31) and a wire outlet channel (32), the first wire part (2411), the second wire part (2412), the third wire part (2413), the fourth wire part (2414) and the fifth wire part (2421) form a continuous wire inlet channel (31) in communication with the fourth side wall (16), the first side wall (13), the second side wall (14) and the wire passing groove two (2537), the fifth wire part (2421), the sixth wire part (2422) and the seventh wire part (2423) form a wire outlet channel (32) in communication with the wire outlet structure (23), the first wire part (2411) and the second wire part (2412).