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CN116819704B - Guide rail type optical fiber distribution frame - Google Patents

Guide rail type optical fiber distribution frame Download PDF

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Publication number
CN116819704B
CN116819704B CN202310702207.2A CN202310702207A CN116819704B CN 116819704 B CN116819704 B CN 116819704B CN 202310702207 A CN202310702207 A CN 202310702207A CN 116819704 B CN116819704 B CN 116819704B
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China
Prior art keywords
optical fiber
plate
distribution frame
wire
guide rail
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CN202310702207.2A
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Chinese (zh)
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CN116819704A (en
Inventor
金鸿
林三五
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Anhui Fengrui Communication Technology Co ltd
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Wuhan Zhima Technology Co ltd
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Priority to CN202310702207.2A priority Critical patent/CN116819704B/en
Publication of CN116819704A publication Critical patent/CN116819704A/en
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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/44Mechanical structures for providing tensile strength and external protection for fibres, e.g. optical transmission cables
    • G02B6/4439Auxiliary devices
    • G02B6/444Systems or boxes with surplus lengths
    • G02B6/4452Distribution frames

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Light Guides In General And Applications Therefor (AREA)

Abstract

本发明提供一种导轨式光纤配线架,包括配线架本体,所述配线架本体包括支架、支撑机构、独立光纤机盒和压线机构,所述支架的顶部安装有顶板,所述顶板的侧边均开设有条形开口,每个所述条形开口的内侧均安装有压线机构,所述支架的内侧安装有多个独立光纤机盒,每个所述独立光纤机盒的底部均安装有支撑机构,所述支撑机构的边缘处与支架的内侧焊接为整体,该导轨式光纤配线架将独立光纤机盒放置在独立的支撑机构上,通过支撑机构能够沿着底部的托板将上方放置的独立光纤机盒朝向两个位置进行移动,从而提高了光纤线连接的灵活性,扩大了适用范围,实现理线的效果,避免线材均从配线架的一侧进行接入,使线材更加整洁。

The present invention provides a guide rail type optical fiber distribution frame, comprising a distribution frame body, wherein the distribution frame body comprises a bracket, a supporting mechanism, an independent optical fiber machine box and a wire pressing mechanism, a top plate is installed on the top of the bracket, strip openings are opened on the sides of the top plate, a wire pressing mechanism is installed on the inner side of each strip opening, a plurality of independent optical fiber machine boxes are installed on the inner side of the bracket, a supporting mechanism is installed on the bottom of each independent optical fiber machine box, and the edge of the supporting mechanism is welded to the inner side of the bracket as a whole, the guide rail type optical fiber distribution frame places the independent optical fiber machine box on the independent supporting mechanism, and the independent optical fiber machine box placed on the top can be moved toward two positions along the bottom support plate through the supporting mechanism, thereby improving the flexibility of optical fiber line connection, expanding the scope of application, achieving the effect of wire management, avoiding that all wires are connected from one side of the distribution frame, and making the wires neater.

Description

Guide rail type optical fiber distribution frame
Technical Field
The invention relates to the field of distribution frames, in particular to a guide rail type optical fiber distribution frame.
Background
The optical fiber distribution frame is used for forming and distributing the trunk optical cable in the optical fiber communication system, and can conveniently realize connection, distribution and scheduling of optical fiber lines. Along with the increasing degree of network integration, an optical number hybrid distribution frame integrating ODF, DDF and power distribution units is provided, and the optical number hybrid distribution frame is suitable for small and medium wiring systems from optical fiber to cell, optical fiber to building, remote module and wireless base station.
In the prior art, the optical fiber connector box is directly arranged on the distribution frame and then connected with a plurality of external optical fiber wires for use, but the optical fiber connector box on the conventional distribution frame can only be connected towards one side, so that the flexibility is poor, a large number of wires are connected from one side of the distribution frame, the wire winding confusion probability is increased, the wire arrangement difficulty is improved, and the efficient operation is difficult to perform in the later wire searching process.
Disclosure of Invention
Aiming at the defects existing in the prior art, the invention aims to provide a guide rail type optical fiber distribution frame so as to solve the problems in the background art.
In order to achieve the above object, the present invention is realized by the following technical scheme: the utility model provides a guide tracked optic fibre distribution frame, includes the distribution frame body, the distribution frame body includes support, supporting mechanism, independent optic fibre machine box and line ball mechanism, the roof is installed at the top of support, bar opening has all been seted up to the side of roof, every line ball mechanism is all installed to bar open-ended inboard, a plurality of independent optic fibre machine boxes are installed to the inboard of support, every supporting mechanism is all installed to the bottom of independent optic fibre machine box, supporting mechanism's edge welds with the inboard of support as wholly, every independent optic fibre machine box's top all is provided with the baffle, the side and the support part fixed connection of baffle.
Further, the supporting mechanism comprises a sliding plate and a supporting plate, a longitudinal sliding rail and a transverse sliding rail are arranged on the surface of the supporting plate, a cross groove is formed in the joint between the longitudinal sliding rail and the transverse sliding rail, an upright post is arranged at the top of the supporting plate, and a first magnetic suction plate is embedded on the surface of the supporting plate.
Further, the second magnetic plate is embedded on the surface of the supporting plate, two first magnetic plates and two second magnetic plates are arranged, and each first magnetic plate and each second magnetic plate are kept in a vertical state.
Further, the bottom of slide inlays and is equipped with the ball, every the ball is all pressed in the inboard of horizontal slide rail or vertical slide rail, and the interval between every cross recess is the same with the interval between every ball, the bottom of stand passes through the intermediate position swing joint of support bearing and slide surface, the one end of horizontal slide rail and vertical slide rail is all aligned with the side of layer board.
Further, the surface of independent optic fibre machine box is provided with the box shell, and the front end of box shell installs the optic fibre connection port, the inboard of baffle is hollow structure, and the edge of baffle is provided with the line concentration hole.
Further, the wire casing has been seted up to the top front end of machine box shell, center sleeve has been seted up to the top intermediate position of machine box shell, and the inboard of wire casing is linked together with center sleeve's inside, the hole has been seted up to the bottom of baffle.
Further, the bottom of roof is connected with the bracing piece, the bottom plate is installed to the bottom of bracing piece, the threading hole has been seted up to the inboard of bracing piece, and the top of bracing piece is provided with the wire hole.
Further, the bracing piece is through the position butt joint of through hole department with the line concentration hole, the inboard of bracing piece is hollow structure, and the bracing piece is linked together with the inside cavity of roof through the wire outlet at top.
Further, the line ball mechanism includes spring and clamp plate, the bottom and the open-ended bottom fixed connection of bar of spring, the clamp plate is installed at the top of spring, the draw-in groove has been seted up on the surface of clamp plate.
Furthermore, the clamping grooves are provided with a plurality of clamping grooves, the distance between each clamping groove is the same, and the optical fiber wires connected with the surfaces of the independent optical fiber boxes finally pass through the strip-shaped openings at the tops.
The invention has the beneficial effects that: the invention relates to a guide rail type optical fiber distribution frame which comprises a distribution frame body, wherein the distribution frame body comprises a bracket, a bottom plate, a supporting mechanism, an independent optical fiber machine box, a sliding plate, a stand column, a supporting bearing, a ball, a first magnetic suction plate, a supporting plate, a transverse sliding rail, a longitudinal sliding rail, a cross groove, a second magnetic suction plate, a machine box shell, an optical fiber connecting port, a central sleeve, a baffle plate, a line collecting hole, a supporting rod, a threading hole, a line outlet hole, a top plate, a line pressing mechanism, a strip-shaped opening, a spring, a pressing plate, a clamping groove and a line slot.
1. The guide rail type optical fiber distribution frame is characterized in that the independent optical fiber boxes are placed on the independent supporting mechanisms, and the independent optical fiber boxes placed above can be moved towards two positions along the supporting plates at the bottom through the supporting mechanisms, so that the flexibility of optical fiber wire connection is improved, the application range is enlarged, and other obstacles in the installation environment can be avoided.
2. This guide tracked optic fibre distribution frame all is provided with hollow baffle structure at the top of every independent optic fibre box, consequently can collect a large amount of wires that every independent optic fibre box is connected through the baffle at top, realizes the effect of reason line, avoids the wire rod all to insert from one side of distribution frame, makes the wire rod more clean and tidy.
3. The guide rail type optical fiber distribution frame is characterized in that optical fiber wires connected with different independent optical fiber boxes are all penetrated out upwards from the inner side of a single upright post, the optical fiber wires are pressed into a row by means of a wire pressing mechanism at the top, and in the state, external wire searching equipment can be used for directly carrying out wire searching operation from the optical fiber wires corresponding to the optical fiber connection ports of the independent optical fiber boxes, and the optical fiber wires are directly and rapidly searched from the strip-shaped openings at the side edges of the top plate, so that the wire searching efficiency is improved.
Drawings
FIG. 1 is a schematic view of the configuration of a guide-rail type optical fiber distribution frame according to the present invention;
FIG. 2 is a schematic view of a supporting mechanism of a guide rail type optical fiber distribution frame according to the present invention;
FIG. 3 is a schematic view of the structure of an independent fiber box portion of a rail type fiber distribution frame according to the present invention;
FIG. 4 is a schematic view of a top plate portion of a guide rail type optical fiber distribution frame according to the present invention;
FIG. 5 is a schematic diagram of a portion of a wire pressing mechanism of a guide rail type optical fiber distribution frame according to the present invention;
In the figure: 1. a bracket; 2. a bottom plate; 3. a support mechanism; 4. an independent fiber optic housing; 5. a slide plate; 6. a column; 7. a support bearing; 8. a ball; 9. a first magnetic plate; 10. a supporting plate; 11. a transverse slide rail; 12. a longitudinal slide rail; 13. a cross groove; 14. a second magnetic plate; 15. a machine box shell; 16. an optical fiber connection port; 17. a central sleeve; 18. a baffle; 19. a line concentration hole; 20. a support rod; 21. a threading hole; 22. a wire outlet hole; 23. a top plate; 24. a wire pressing mechanism; 25. a strip-shaped opening; 26. a spring; 27. a pressing plate; 28. a clamping groove; 29. wire slot.
Detailed Description
The invention is further described in connection with the following detailed description, in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the invention easy to understand.
Referring to fig. 1 to 5, the present invention provides a technical solution: the utility model provides a guide tracked optic fibre distribution frame, includes the distribution frame body, the distribution frame body includes support 1, supporting mechanism 3, independent optic fibre machine box 4 and line ball mechanism 24, roof 23 is installed at the top of support 1, bar opening 25 has all been seted up to the side of roof 23, every bar opening 25's inboard all installs line ball mechanism 24, a plurality of independent optic fibre machine boxes 4 are installed to the inboard of support 1, every supporting mechanism 3 is all installed to the bottom of independent optic fibre machine box 4, the edge of supporting mechanism 3 welds as an entirety with the inboard of support 1, every the top of independent optic fibre machine box 4 all is provided with baffle 18, the side and the support 1 part fixed connection of baffle 18, and during this guide tracked optic fibre distribution frame installation, directly place a plurality of independent optic fibre machine boxes 4 on corresponding supporting mechanism 3 respectively, place each independent optic fibre machine box 4 through supporting mechanism 3 to rotate through stand 6 part on the supporting mechanism 3, can directly rotate independent optic fibre box 4 part, realize that optic fibre connection port 16 is followed the top of the optical fibre is adjusted to the top of the corresponding optical fibre that the end of each optical fibre is directly penetrating from the top of support 5 to the top of the end-to the end of each optical fibre that the top of the frame is followed the end-to the optical fibre is connected to the top of the end of each optical fibre line of the end-to the optical fibre connection point of the top of the support piece of the optical fibre box 16.
In this embodiment, the supporting mechanism 3 includes a sliding plate 5 and a supporting plate 10, the surface of the supporting plate 10 is provided with a longitudinal sliding rail 12 and a transverse sliding rail 11, a joint between the longitudinal sliding rail 12 and the transverse sliding rail 11 is provided with a cross groove 13, the top of the supporting plate 10 is provided with a column 6, the surface of the supporting plate 10 is embedded with a first magnetic suction plate 9, the surface of the supporting plate 10 is embedded with a second magnetic suction plate 14, the first magnetic suction plate 9 and the second magnetic suction plate 14 are both provided with two, each first magnetic suction plate 9 and each second magnetic suction plate 14 are kept in a vertical state, the bottom of the sliding plate 5 is embedded with a ball 8, each ball 8 is pressed on the inner side of the transverse sliding rail 11 or the longitudinal sliding rail 12, the interval between each cross groove 13 is the same as the interval between each ball 8, the bottom of the column 6 is movably connected with the middle position of the surface of the sliding plate 5 through a supporting bearing 7, the two ends of the transverse slide rail 11 and the longitudinal slide rail 12 are aligned with the side edges of the supporting plate 10, the independent optical fiber machine box 4 is placed on the independent supporting mechanism 3, the independent optical fiber machine box 4 placed above can be moved towards two positions along the supporting plate 10 at the bottom through the supporting mechanism 3, so that the flexibility of optical fiber wire connection is improved, the application range is expanded, other obstacles in the installation environment can be avoided, in particular, as the bottom of the sliding plate 5 is pressed on the supporting plate 10 through four balls 8, and under initial loading, each ball 8 is pressed on the inner side of the crossed groove 13, the balls 8 matched with the bottom of the sliding plate 5 can be directly pulled to move along the transverse slide rail 11 or the longitudinal slide rail 12, the sliding plate 5 and the independent optical fiber machine box 4 at the top can slide out towards two different positions, by means of the structure, the moving-out direction of the independent optical fiber boxes 4 can be changed without disassembly, and the position of each independent optical fiber box 4 is changed according to specific control directions.
In this embodiment, the surface of the independent fiber optic box 4 is provided with the box shell 15, and the front end of the box shell 15 is provided with the fiber optic connection port 16, the inboard of baffle 18 is hollow structure, and the edge of baffle 18 is provided with the line concentration hole 19, slot 29 has been seted up to the top front end of box shell 15, central sleeve 17 has been seted up to the top intermediate position of box shell 15, and the inboard of slot 29 is linked together with the inside of central sleeve 17, the hole has been seted up to the bottom of baffle 18, all be provided with hollow baffle 18 structure at the top of each independent fiber optic box 4, consequently can collect a large amount of wires that every independent fiber optic box 4 is connected through baffle 18 at top, realize the effect of wire arrangement, avoid the wire to all insert from one side of distribution frame, make the wire rod cleaner, specifically, at the front end of each box shell 15 through all insert the corresponding fiber optic connection port 16 after, can unify insert the slot 29 inboard at top to the inside of top to from the center sleeve 17 at the top outside, then insert out the wire rod into the inside of the baffle 18, the hole is penetrated into the inside of the baffle group through hole 20 after the wire arrangement is provided with the wire arrangement hole is penetrated into the inside of the baffle 18.
In this embodiment, the bottom of roof 23 is connected with bracing piece 20, bottom plate 2 is installed to the bottom of bracing piece 20, threading hole 21 has been seted up to the inboard of bracing piece 20, and the top of bracing piece 20 is provided with wire hole 22, bracing piece 20 dock with the position of line concentration hole 19 through threading hole 21 department, the inboard of bracing piece 20 is hollow structure, and bracing piece 20 is linked together with the inside cavity of roof 23 through wire hole 22 at top, through foretell threading process, can uniformly penetrate same bracing piece 20 inboard with the optical fiber line that every independent fiber box 4 is connected to penetrate the top inboard at top from the top of bracing piece 20, can cooperate wire pressing mechanism 24 to press the optical fiber line, and form single-row structure.
In this embodiment, the wire pressing mechanism 24 includes the spring 26 and the clamp plate 27, the bottom of spring 26 and the bottom fixed connection of bar opening 25, clamp plate 27 is installed at the top of spring 26, the draw-in groove 28 has been seted up on the surface of clamp plate 27, the draw-in groove 28 is provided with a plurality ofly, and the interval between every draw-in groove 28 is the same, the optic fibre line that independent optic fibre box 4 surface connection finally outwards wears out from the bar opening 25 at top, the optic fibre line that will be connected in the different independent optic fibre boxes 4 departments all upwards wears out from single stand 6 inboard to press into the row with the wire pressing mechanism 24 at top with this part optic fibre line, can use outside hunting equipment directly to carry out the hunting operation from the optic fibre line that optic fibre connection port 16 that this independent optic fibre box 4 departments corresponds under this state, and directly seek from the bar opening 25 of roof 23 side, improved the efficiency of hunting, the optic fibre line can all be passed through independent draw-in groove 28 and extruded the top opening 25 with the spring 26 at the bottom upwards to press the optic fibre line 27, can be with the optic fibre line hunting efficiency that the independent optic fibre line 25 is worn out to the place of the bar opening 25, the optical source can be directly obtained from the end of the optical fibre box when the position is worn out to the opening, the optical fibre is the opening is directly to the place of the end of the optical fibre is directly to the line hunting.
While the fundamental and principal features of the invention and advantages of the invention have been shown and described, it will be apparent to those skilled in the art that the invention is not limited to the details of the foregoing exemplary embodiments, but may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present disclosure describes embodiments, not every embodiment is provided with a separate embodiment, and that this description is provided for clarity only, and that the disclosure is not limited to the embodiments described in detail below, and that the embodiments described in the examples may be combined as appropriate to form other embodiments that will be apparent to those skilled in the art.

Claims (7)

1.一种导轨式光纤配线架,包括配线架本体,其特征在于:所述配线架本体包括支架(1)、支撑机构(3)、独立光纤机盒(4)和压线机构(24),所述支架(1)的顶部安装有顶板(23),所述顶板(23)的侧边均开设有条形开口(25),每个所述条形开口(25)的内侧均安装有压线机构(24),所述支架(1)的内侧安装有多个独立光纤机盒(4),每个所述独立光纤机盒(4)的底部均安装有支撑机构(3),所述支撑机构(3)的边缘处与支架(1)的内侧焊接为整体,每个所述独立光纤机盒(4)的顶部均设置有挡板(18),所述挡板(18)的侧边与支架(1)部分固定连接,所述支撑机构(3)包括滑板(5)和托板(10),所述托板(10)的表面开设有纵向滑轨(12)和横向滑轨(11),且纵向滑轨(12)和横向滑轨(11)之间的连接处设置有交叉凹槽(13),所述托板(10)的顶部设置有立柱(6),且托板(10)的表面嵌装有第一磁吸板(9),所述托板(10)的表面嵌装有第二磁吸板(14),且第一磁吸板(9)和第二磁吸板(14)均设置有两个,每个第一磁吸板(9)以及每个第二磁吸板(14)之间均保持垂直状态,所述滑板(5)的底部嵌装有滚珠(8),每个所述滚珠(8)均按压在横向滑轨(11)或者纵向滑轨(12)的内侧,且每个交叉凹槽(13)之间的间距与每个滚珠(8)之间的间距相同,所述立柱(6)的底部通过支撑轴承(7)与滑板(5)表面的中间位置活动连接,所述横向滑轨(11)和纵向滑轨(12)的一端均与托板(10)的侧边相对齐。1. A guide rail type optical fiber distribution frame, comprising a distribution frame body, characterized in that: the distribution frame body comprises a bracket (1), a supporting mechanism (3), an independent optical fiber machine box (4) and a wire pressing mechanism (24), the top of the bracket (1) is installed with a top plate (23), the side of the top plate (23) is provided with a strip opening (25), the inner side of each strip opening (25) is installed with a wire pressing mechanism (24), the inner side of the bracket (1) is installed with a plurality of independent optical fiber machine boxes (4), the bottom of each independent optical fiber machine box (4) is installed with a supporting mechanism (3), the edge of the supporting mechanism (3) is welded to the inner side of the bracket (1) as a whole, the top of each independent optical fiber machine box (4) is provided with a baffle (18), the side of the baffle (18) is fixedly connected to the bracket (1) part, the supporting mechanism (3) comprises a slide plate (5) and a support plate (10), the surface of the support plate (10) is provided with a longitudinal slide rail (12) and a transverse slide rail ( 11), and a cross groove (13) is provided at the connection between the longitudinal slide rail (12) and the transverse slide rail (11), a column (6) is provided on the top of the support plate (10), and a first magnetic attraction plate (9) is embedded on the surface of the support plate (10), and a second magnetic attraction plate (14) is embedded on the surface of the support plate (10), and two first magnetic attraction plates (9) and two second magnetic attraction plates (14) are provided, and each first magnetic attraction plate (9) and each second magnetic attraction plate (14) are kept vertically The bottom of the slide plate (5) is embedded with a ball (8), each of the ball (8) is pressed against the inner side of the transverse slide rail (11) or the longitudinal slide rail (12), and the spacing between each cross groove (13) is the same as the spacing between each ball (8), the bottom of the column (6) is movably connected to the middle position of the surface of the slide plate (5) through a support bearing (7), and one end of the transverse slide rail (11) and the longitudinal slide rail (12) are aligned with the side of the support plate (10). 2.根据权利要求1所述的一种导轨式光纤配线架,其特征在于:所述独立光纤机盒(4)的表面设置有机盒外壳(15),且机盒外壳(15)的前端安装有光纤连接端口(16),所述挡板(18)的内侧呈空心结构,且挡板(18)的边缘处设置有集线孔(19)。2. A guide rail type optical fiber distribution frame according to claim 1, characterized in that: a box shell (15) is arranged on the surface of the independent optical fiber box (4), and a fiber optic connection port (16) is installed at the front end of the box shell (15), the inner side of the baffle (18) is a hollow structure, and a wire collection hole (19) is arranged at the edge of the baffle (18). 3.根据权利要求2所述的一种导轨式光纤配线架,其特征在于:所述机盒外壳(15)的顶部前端开设有线槽(29),所述机盒外壳(15)的顶部中间位置开设有中心套筒(17),且线槽(29)的内侧与中心套筒(17)的内部相连通,所述挡板(18)的底部开设有孔洞。3. A guide rail type optical fiber distribution frame according to claim 2, characterized in that: a wire groove (29) is opened at the top front end of the machine box shell (15), a center sleeve (17) is opened at the top middle position of the machine box shell (15), and the inner side of the wire groove (29) is connected to the inside of the center sleeve (17), and a hole is opened at the bottom of the baffle (18). 4.根据权利要求2所述的一种导轨式光纤配线架,其特征在于:所述顶板(23)的底部连接有支撑杆(20),所述支撑杆(20)的底部安装有底板(2),所述支撑杆(20)的内侧开设有穿线孔(21),且支撑杆(20)的顶部设置有出线孔(22)。4. A guide rail type optical fiber distribution frame according to claim 2, characterized in that: the bottom of the top plate (23) is connected to a support rod (20), the bottom of the support rod (20) is installed with a bottom plate (2), the inner side of the support rod (20) is provided with a threading hole (21), and the top of the support rod (20) is provided with a wire outlet hole (22). 5.根据权利要求4所述的一种导轨式光纤配线架,其特征在于:所述支撑杆(20)通过穿线孔(21)处与集线孔(19)的位置进行对接,所述支撑杆(20)的内侧呈空心结构,且支撑杆(20)通过顶部的出线孔(22)与顶板(23)的内部空腔相连通。5. A guide rail type optical fiber distribution frame according to claim 4, characterized in that: the support rod (20) is connected to the position of the wire collection hole (19) through the wire threading hole (21), the inner side of the support rod (20) is a hollow structure, and the support rod (20) is connected to the internal cavity of the top plate (23) through the wire outlet hole (22) at the top. 6.根据权利要求4所述的一种导轨式光纤配线架,其特征在于:所述压线机构(24)包括弹簧(26)和压板(27),所述弹簧(26)的底部与条形开口(25)的底部固定连接,所述弹簧(26)的顶部安装有压板(27),所述压板(27)的表面开设有卡槽(28)。6. A guide rail type optical fiber distribution frame according to claim 4, characterized in that: the wire pressing mechanism (24) comprises a spring (26) and a pressing plate (27), the bottom of the spring (26) is fixedly connected to the bottom of the strip opening (25), the top of the spring (26) is installed with a pressing plate (27), and the surface of the pressing plate (27) is provided with a card slot (28). 7.根据权利要求6所述的一种导轨式光纤配线架,其特征在于:所述卡槽(28)设置有多个,且每个卡槽(28)之间的间距相同,所述独立光纤机盒(4)表面连接的光纤线最终从顶部的条形开口(25)处向外穿出。7. A guide rail type optical fiber distribution frame according to claim 6, characterized in that: a plurality of the card slots (28) are provided, and the spacing between each card slot (28) is the same, and the optical fiber wires connected to the surface of the independent optical fiber box (4) eventually pass outward from the strip opening (25) at the top.
CN202310702207.2A 2023-06-14 2023-06-14 Guide rail type optical fiber distribution frame Active CN116819704B (en)

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CN202310702207.2A CN116819704B (en) 2023-06-14 2023-06-14 Guide rail type optical fiber distribution frame

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CN213069276U (en) * 2020-09-30 2021-04-27 广东天乐通信光电设备有限公司 Large capacity fiber optic distribution frame
CN214845943U (en) * 2021-06-08 2021-11-23 宁波天韵通信设备有限公司 An optical fiber distribution frame cable feeding device
CN217766982U (en) * 2022-08-12 2022-11-08 成都锐比科技发展有限公司 Multilayer optical fiber distribution frame
CN218995734U (en) * 2022-12-15 2023-05-09 武汉金锐立科技有限公司 Frame-type optical cable distribution frame

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US6983095B2 (en) * 2003-11-17 2006-01-03 Fiber Optic Network Solutions Corporation Systems and methods for managing optical fibers and components within an enclosure in an optical communications network

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CN213069276U (en) * 2020-09-30 2021-04-27 广东天乐通信光电设备有限公司 Large capacity fiber optic distribution frame
CN214845943U (en) * 2021-06-08 2021-11-23 宁波天韵通信设备有限公司 An optical fiber distribution frame cable feeding device
CN217766982U (en) * 2022-08-12 2022-11-08 成都锐比科技发展有限公司 Multilayer optical fiber distribution frame
CN218995734U (en) * 2022-12-15 2023-05-09 武汉金锐立科技有限公司 Frame-type optical cable distribution frame

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