A single channel fiber optic slip ring for flange port output
Patent Information
- Application Number
- CN202522290188.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-29
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-10-29
AI Technical Summary
目前,市面上的单通道光纤滑环多采用直接引出光纤线和光纤插头的输出方式,这种方式在实际安装和使用过程中存在诸多不便
[0017]采用上述一种法兰端口输出的单通道光纤滑环,具体到实际使用中,由于在所述光纤滑环本体的所述滑环转子外延的所述接线连接有所述光纤插头,且所述光纤插头插接连接有所述光纤插座,同时所述光纤插头和所述光纤插座的外部分别组合设置有所述插头法兰支撑组件和所述插座法兰支撑组件,继而在所述光纤插头与所述光纤插座插接完毕后,借助所述插头法兰支撑组件的所述插头法兰板和所述插座法兰支撑组件的所述插座法兰座同轴对照后透过所述法兰孔位加装螺钉的方式,能够实现所述插头法兰支撑组件和所述插座法兰支撑组件的组装连接,从而借助所述插头法兰支撑组件和所述插座法兰支撑组件能够对插接后所述光纤插头与所述光纤插座进行回转支撑防护及防松动保护,既确保了信号传输的稳定性,同时也避免出现以外损坏的情况,而由于通过所述光纤插头轴向穿过所述插头法兰支撑组件的所述插头固定套和径向拧紧所述插头锁紧螺钉压紧在所述光纤插头外部的方式,能够将所述光纤插头与所述插头法兰支撑组件快速组合在一起,同时仅需拧松所述插头锁紧螺钉后便可使所述光纤插头沿轴向与所述插头固定套彼此分开,以此能够将所述光纤插头与所述插头法兰支撑组件彼此分开,所述光纤插头与所述插头法兰支撑组件的组合及拆分方式简单易实现,既便于将所述光纤插头与所述插头法兰支撑组件组合在一起进行使用,同时也便于后续将所述光纤插头与所述插头法兰支撑组件分开后对所述光纤插头进行检查维护,又由于通过所述光纤插座轴向穿过所述插座法兰支撑组件的所述插座固定套和径向拧紧所述插座锁紧螺钉压紧在所述光纤插座外部的方式,能够将所述光纤插座与所述插座法兰支撑组件快速组合在一起,同时仅需拧松所述插座锁紧螺钉后便可使所述光纤插座沿轴向与所述插座固定套彼此分开,以此能够将所述光纤插座与所述插座法兰支撑组件彼此分开,所述光纤插座与所述插座法兰支撑组件的组合及拆分方式简单易实现,既便于将所述光纤插座与所述插座法兰支撑组件组合在一起进行使用,同时也便于后续将所述光纤插座与所述插座法兰支撑组件分开后对所述光纤插座进行检查维护。
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Figure CN224745166U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of optical fiber transmission equipment technology, and specifically to a single-channel optical fiber slip ring with flange port output. Background Technology
[0002] In fields such as industrial automation, aerospace, and intelligent equipment, fiber optic signal transmission between stationary and rotating components is often required, and fiber optic slip rings are key devices for achieving this function. Currently, most single-channel fiber optic slip rings on the market use a direct fiber optic cable and fiber optic connector output method, which presents many inconveniences in actual installation and use.
[0003] In practice, the directly led-out fiber optic cables and fiber optic plugs lack a stable fixing structure. During equipment operation, factors such as vibration and pulling can easily cause the fiber optic plugs and fiber optic sockets to loosen, which in turn affects the stability of signal transmission and may even cause damage to the fiber optic plugs and fiber optic sockets, increasing equipment maintenance costs and failure risks. Utility Model Content
[0004] The purpose of this invention is to provide a single-channel fiber optic slip ring with flange port output to solve the above problems, as detailed below.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] This utility model provides a single-channel fiber optic slip ring with flange port output, including a fiber optic slip ring body, a stator fixing sleeve, a fiber optic plug and a fiber optic socket, wherein the stator fixing sleeve is coaxially fixed around the stator of the fiber optic slip ring body.
[0007] The slip ring rotor of the fiber optic slip ring body is electrically connected to an outwardly extending wiring. The end of the wiring is connected to a fiber optic plug, and the fiber optic plug is plugged into the fiber optic socket. At the same time, the fiber optic plug and the fiber optic socket are respectively equipped with a plug flange support assembly and a socket flange support assembly. The plug flange support assembly and the socket flange support assembly are used to provide rotational support and anti-loosening protection for the fiber optic plug and the fiber optic socket after plugging in by means of the docking combination of the plug flange support assembly and the socket flange support assembly.
[0008] Preferably, the stator fixing sleeve is installed in such a way that multiple connecting screws are vertically inserted around the stator flange at the top of the fiber optic slip ring body, and the bottom ends of the connecting screws are all threaded into the top of the stator fixing sleeve.
[0009] Preferably, the fiber optic plug and the fiber optic socket are of type SC or type LC.
[0010] Preferably, the plug flange support assembly includes a plug support plate and a plug slewing bearing. The fiber optic plug passes vertically through the middle of the plug support plate in an axial sliding fit. The outer periphery of the plug support plate is coaxially fixed with the inner ring of the plug slewing bearing, and a plug flange plate is coaxially fixed to the outer ring of the plug slewing bearing. A plug fixing sleeve is fixedly installed on the bottom end face of the plug support plate. The fiber optic plug passes vertically through the plug fixing sleeve in an axial sliding fit, and the fiber optic plug and the plug fixing sleeve are coaxially detachable and combinable.
[0011] Preferably, the detachable combination of the fiber optic plug and the plug fixing sleeve is specifically that the outer peripheral end face of the plug fixing sleeve is vertically provided with plug locking holes, and the plug locking holes are all through holes. At the same time, plug locking screws are coaxially inserted into the plug locking holes in a threaded manner.
[0012] Preferably, the inner ends of the plug locking screws are all coaxially attached with rubber pads whose outer diameter is smaller than that of the plug locking hole, and the outer ends of the plug locking screws are all coaxially provided with plug force grooves in the form of internal hexagons.
[0013] Preferably, the socket flange support assembly includes a socket support plate and a socket slewing bearing. The fiber optic socket passes vertically through the middle of the socket support plate in an axial sliding fit. The outer periphery of the socket support plate is coaxially fixed with the inner ring of the socket slewing bearing, and a socket flange seat is coaxially fixed to the outer ring of the socket slewing bearing. A socket fixing sleeve is fixedly installed on the top surface of the socket support plate. The fiber optic socket passes vertically through the socket fixing sleeve in an axial sliding fit, and the fiber optic socket and the socket fixing sleeve are coaxially detachable and combinable.
[0014] Preferably, the detachable combination of the fiber optic socket and the socket fixing sleeve is specifically that the outer peripheral end face of the socket fixing sleeve is vertically provided with a socket locking hole, and the socket locking holes are all through holes. At the same time, the socket locking holes are coaxially inserted with socket locking screws in a threaded manner.
[0015] Preferably, the inner ends of the socket locking screws are all coaxially attached with rubber pads whose outer diameter is smaller than that of the socket locking hole, and the outer ends of the socket locking screws are all coaxially provided with socket force grooves in the form of internal hexagons.
[0016] Preferably, both the plug flange plate and the socket flange seat have multiple flange holes, and the flange holes of the plug flange plate are through holes, while the flange holes of the socket flange seat are blind holes. In addition, the flange holes of the plug flange plate and the plug flange seat are coaxially aligned.
[0017] In practical applications of a single-channel fiber optic slip ring with a flange port output, the fiber optic plug is connected to the wiring on the outer edge of the slip ring rotor of the slip ring body, and the fiber optic plug is plugged into the fiber optic socket. Simultaneously, a plug flange support assembly and a socket flange support assembly are respectively assembled on the outside of the fiber optic plug and the fiber optic socket. After the fiber optic plug and the fiber optic socket are connected, screws are installed through the flange holes by aligning the plug flange plate of the plug flange support assembly and the socket flange seat of the socket flange support assembly coaxially. This assembly enables the connection and assembly of the plug flange support assembly and the socket flange support assembly. These assemblies provide rotational support and anti-loosening protection for the fiber optic plug and socket after insertion, ensuring signal transmission stability and preventing accidental damage. Furthermore, the fiber optic plug is quickly assembled with the plug flange support assembly by axially passing through the plug fixing sleeve of the plug flange support assembly and radially tightening the plug locking screws. Loosening the plug locking screw allows the fiber optic plug to separate axially from the plug fixing sleeve, thus separating the fiber optic plug from the plug flange support assembly. The assembly and disassembly of the fiber optic plug and the plug flange support assembly are simple and easy to implement, facilitating both initial use and subsequent inspection and maintenance of the fiber optic plug after separation. Furthermore, the fiber optic socket is quickly assembled by passing axially through the socket fixing sleeve of the socket flange support assembly and radially tightening the socket locking screw to press it against the outside of the fiber optic socket. Similarly, loosening the socket locking screw allows the fiber optic socket to separate axially from the socket fixing sleeve, thus separating the fiber optic socket from the socket flange support assembly. The assembly and disassembly of the fiber optic socket and the socket flange support assembly are simple and easy to implement, facilitating both initial use and subsequent inspection and maintenance of the fiber optic socket after separation.
[0018] The beneficial effects are as follows: 1. The present invention has an optical fiber plug connected to the outer extension of the slip ring rotor of the optical fiber slip ring body, and the optical fiber plug is connected to an optical fiber socket. At the same time, the external parts of the optical fiber plug and the optical fiber socket are respectively equipped with a plug flange support assembly and a socket flange support assembly. After the optical fiber plug and the optical fiber socket are plugged in, the plug flange plate of the plug flange support assembly and the socket flange seat of the socket flange support assembly are aligned coaxially and screws are installed through the flange holes. The plug flange support assembly and the socket flange support assembly can provide rotation support protection and anti-loosening protection for the plug and the optical fiber socket after plugging in, which not only ensures the stability of signal transmission, but also avoids accidental damage.
[0019] 2. By axially passing the fiber optic plug through the plug fixing sleeve of the plug flange support assembly and radially tightening the plug locking screw to press it against the outside of the fiber optic plug, the fiber optic plug and the plug flange support assembly can be quickly assembled together. At the same time, by simply loosening the plug locking screw, the fiber optic plug can be separated from the plug fixing sleeve axially, thus separating the fiber optic plug and the plug flange support assembly. The assembly and disassembly of the fiber optic plug and the plug flange support assembly are simple and easy to implement. It is convenient to use the fiber optic plug and the plug flange support assembly together, and it is also convenient to inspect and maintain the fiber optic plug after separating the fiber optic plug and the plug flange support assembly.
[0020] 3. By axially passing the fiber optic socket through the socket fixing sleeve of the socket flange support assembly and radially tightening the socket locking screws to press it against the outside of the fiber optic socket, the fiber optic socket and the socket flange support assembly can be quickly assembled together. At the same time, by simply loosening the socket locking screws, the fiber optic socket can be separated from the socket fixing sleeve axially, thus separating the fiber optic socket and the socket flange support assembly. The assembly and disassembly of the fiber optic socket and the socket flange support assembly are simple and easy to implement, which facilitates the use of the fiber optic socket and the socket flange support assembly together, and also facilitates the inspection and maintenance of the fiber optic socket after it is separated from the socket flange support assembly. Attached Figure Description
[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0022] Figure 1 This is an overall isometric schematic diagram of this utility model. Figure 1;
[0023] Figure 2 This is a utility model Figure 1 A magnified view of part A;
[0024] Figure 3 This is an overall isometric schematic diagram of this utility model. Figure 2 ;
[0025] Figure 4 This is a utility model Figure 3 A magnified view of section B;
[0026] Figure 5 This is a utility model Figure 1 Front view diagram;
[0027] Figure 6 This is a utility model Figure 1 A left-view diagram;
[0028] Figure 7 This is a utility model Figure 1 A top-down view.
[0029] The annotations in the attached figures are explained as follows:
[0030] 1. Fiber optic slip ring body; 101. Stator flange; 102. Connecting screws; 103. Stator fixing sleeve; 104. Wiring; 105. Slip ring rotor; 2. Fiber optic socket; 3. Socket flange support assembly; 301. Socket fixing sleeve; 302. Socket locking hole; 303. Socket locking screw; 304. Socket force groove; 305. Socket support plate; 306. Socket rotary bearing; 307. Socket flange seat; 4. Fiber optic plug; 5. Plug flange support assembly; 501. Plug flange plate; 502. Plug rotary bearing; 503. Plug support plate; 504. Plug fixing sleeve; 505. Plug force groove; 506. Plug locking screw; 507. Plug locking hole; 6. Flange holes. Detailed Implementation
[0031] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be described in detail below. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other implementation methods obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0032] See Figures 1-7As shown, this utility model provides a single-channel fiber optic slip ring with flange port output, including a fiber optic slip ring body 1, a stator fixing sleeve 103, a fiber optic plug 4, and a fiber optic socket 2. The stator fixing sleeve 103 is coaxially fixed around the stator of the fiber optic slip ring body 1. The slip ring rotor 105 of the fiber optic slip ring body 1 is electrically connected to an outwardly extending wiring 104. The end of the wiring 104 is connected to the fiber optic plug 4, and the fiber optic plug 4 is plugged into the fiber optic socket 2. At the same time, a plug flange support assembly 5 and a socket flange support assembly 3 are respectively assembled on the outside of the fiber optic plug 4 and the fiber optic socket 2, so as to connect the plug and socket 2 by means of the mating combination of the plug flange support assembly 5 and the socket flange support assembly 3. The fiber optic plug 4 and fiber optic socket 2 are protected by rotational support and anti-loosening measures. Specifically, the plug flange support assembly 5 includes a plug support plate 503 and a plug slewing bearing 502. The fiber optic plug 4 passes vertically through the middle of the plug support plate 503 with an axial sliding fit. The outer periphery of the plug support plate 503 is coaxially fixed with the inner ring of the plug slewing bearing 502, and the outer ring of the plug slewing bearing 502 is coaxially fixed with a plug flange plate 501. A plug fixing sleeve 504 is fixedly installed on the bottom end face of the plug support plate 503. The fiber optic plug 4 passes vertically through the plug fixing sleeve 504 with an axial sliding fit, and the fiber optic plug 4 and the plug fixing sleeve 504 are coaxially detachable and combinable. The socket flange support assembly 3 includes a socket support plate 305 and a socket rotary bearing 306. The fiber optic socket 2 vertically passes through the middle of the socket support plate 305 via an axial sliding fit. The outer periphery of the socket support plate 305 is coaxially fixed to the inner ring of the socket rotary bearing 306, and a socket flange seat 307 is coaxially fixed to the outer ring of the socket rotary bearing 306. A socket fixing sleeve 301 is fixedly installed on the top surface of the socket support plate 305. The fiber optic socket 2 vertically passes through the socket fixing sleeve 301 via an axial sliding fit, and the fiber optic socket 2 and the socket fixing sleeve 301 are coaxially detachable and combinable. The purpose of this arrangement is that after the fiber optic plug 4 and the fiber optic socket 2 are connected, the fiber optic socket 2 can be detached and assembled using... After the plug flange plate 501 of the plug flange support assembly 5 and the socket flange seat 307 of the socket flange support assembly 3 are aligned coaxially, screws are installed through the flange holes 6 to achieve the assembly and connection of the plug flange support assembly 5 and the socket flange support assembly 3. Thus, the plug flange support assembly 5 and the socket flange support assembly 3 can provide rotational support and anti-loosening protection for the fiber optic plug 4 and the fiber optic socket 2 after insertion. Specifically, the rotational support of the fiber optic socket 2 can be achieved by the outer ring of the socket slewing bearing 306 remaining stationary while the inner ring rotates, and the rotational support of the fiber optic plug 4 can be achieved by the outer ring of the plug slewing bearing 502 remaining stationary while the inner ring rotates.
[0033] See Figures 1-7As shown, the following optimizations have been made to this application. Specifically, the stator fixing sleeve 103 is installed as follows: multiple connecting screws 102 are vertically inserted around the stator flange 101 at the top of the fiber optic slip ring body 1, and the bottom ends of the connecting screws 102 are threaded into the top of the stator fixing sleeve 103. This arrangement allows for the coaxial assembly of the stator fixing sleeve 103 outside the stator of the fiber optic slip ring body 1, thereby achieving static restraint of the stator using the stator fixing sleeve 103. Optionally, the fiber optic plug 4 and fiber optic socket 2 can be of type SC or LC, allowing for flexible selection based on the interface type of external optical signal equipment in the actual application scenario, thus improving equipment compatibility.
[0034] See Figures 1-4 As shown, the detachable combination of the fiber optic plug 4 and the plug fixing sleeve 504 is specifically as follows: each of the outer peripheral end faces of the plug fixing sleeve 504 has a plug locking hole 507 vertically opened, and the plug locking holes 507 are all through holes. At the same time, each of the plug locking holes 507 has a plug locking screw 506 coaxially inserted in a threaded manner. The purpose of this arrangement is that by the fiber optic plug 4 axially passing through the plug fixing sleeve 504 of the plug flange support assembly 5 and radially tightening the plug locking screw 506 to press it against the outside of the fiber optic plug 4, the fiber optic plug 4 and the plug flange support assembly 5 can be quickly combined together. At the same time, by simply loosening the plug locking screw 506, the fiber optic plug 4 can be separated from the plug fixing sleeve 504 axially, thereby separating the fiber optic plug 4 from the plug flange support assembly 5. The combination and separation of the fiber optic plug 4 and the plug flange support assembly 5 is simple and easy to implement. Alternatively, the inner end of each plug locking screw 506 is coaxially attached with a rubber pad whose outer diameter is smaller than that of the plug locking hole 507. The outer end of each plug locking screw 506 is coaxially provided with an internal hexagonal plug force groove 505. This design firstly facilitates the improvement of locking stability and provides buffer protection by having the rubber pad directly contact the surface of the fiber optic plug 4. Secondly, it facilitates the smooth tightening and loosening of the plug locking screw 506 with tools such as an external hexagonal wrench.
[0035] See Figures 1-4As shown, the detachable combination method of the fiber optic socket 2 and the socket fixing sleeve 301 is as follows: each of the outer peripheral end faces of the socket fixing sleeve 301 has a socket locking hole 302 vertically opened, and the socket locking holes 302 are all through holes. At the same time, each of the socket locking holes 302 has a socket locking screw 303 coaxially inserted in a threaded manner. The purpose of this arrangement is that by the fiber optic socket 2 passing axially through the socket fixing sleeve 301 of the socket flange support assembly 3 and the socket locking screw 303 being tightened radially to press it against the outside of the fiber optic socket 2, the fiber optic socket 2 and the socket flange support assembly 3 can be quickly combined together. At the same time, by simply loosening the socket locking screw 303, the fiber optic socket 2 can be separated from the socket fixing sleeve 301 axially, thereby separating the fiber optic socket 2 and the socket flange support assembly 3. The combination and disassembly of the fiber optic socket 2 and the socket flange support assembly 3 are simple and easy to implement. Alternatively, the inner end of each socket locking screw 303 is coaxially attached with a rubber pad whose outer diameter is smaller than that of the socket locking hole 302. The outer end of each socket locking screw 303 is coaxially provided with an internal hexagonal socket force groove 304. This design firstly facilitates the improvement of locking stability and provides buffer protection by allowing the rubber pad to directly contact the surface of the fiber optic socket 2. Secondly, it facilitates the smooth tightening and loosening of the socket locking screw 303 with tools such as an external hexagonal wrench.
[0036] See Figures 1-7 As shown, both the plug flange plate 501 and the socket flange seat 307 have multiple flange holes 6. The flange holes 6 of the plug flange plate 501 are through holes, while the flange holes 6 of the socket flange seat 307 are blind holes. Furthermore, the flange holes 6 of the plug flange plate 501 and the plug flange seat are coaxially aligned. This arrangement facilitates the connection of the plug flange plate 501 and the socket flange seat 307 by installing screws through each set of aligned flange holes 6, ensuring that the plug flange plate 501 and the socket flange seat 307 are used as a single unit. It should be noted that at least one of the plug flange plate 501 and the socket flange seat 307 should be subjected to radial clamping restraint from the outside, such as by using a clamp or a fixing sleeve, to fix the plug flange plate 501 and the socket flange seat 307 in their respective positions.
[0037] With the above structure, in practical use, since the fiber optic plug 4 is connected to the wiring 104 extending from the slip ring rotor 105 of the fiber optic slip ring body 1, and the fiber optic plug 4 is plugged into the fiber optic socket 2, and the fiber optic plug 4 and the fiber optic socket 2 are respectively equipped with a plug flange support assembly 5 and a socket flange support assembly 3 on their exteriors, after the fiber optic plug 4 and the fiber optic socket 2 are plugged in, the plug flange plate 501 of the plug flange support assembly 5 and the socket flange seat 307 of the socket flange support assembly 3 are aligned coaxially and screws are installed through the flange holes 6, thus achieving plug flange support. The assembly and connection of component 5 and socket flange support component 3 provide rotational support and anti-loosening protection for the fiber optic plug 4 and fiber optic socket 2 after insertion, ensuring the stability of signal transmission and preventing accidental damage. Furthermore, the fiber optic plug 4 is quickly assembled with the plug flange support component 5 by passing the plug fixing sleeve 504 axially through the plug flange support component 5 and the radially tightening plug locking screw 506. After step 506, the fiber optic plug 4 can be separated from the plug retaining sleeve 504 axially, thus separating the fiber optic plug 4 from the plug flange support assembly 5. The assembly and disassembly of the fiber optic plug 4 and the plug flange support assembly 5 are simple and easy to implement. This facilitates both the use of the fiber optic plug 4 and the plug flange support assembly 5 together and the subsequent inspection and maintenance of the fiber optic plug 4 after separation. Furthermore, the socket retaining sleeve 301, which passes axially through the socket flange support assembly 3, and the radially tightened socket locking screw 303, press against the fiber optic socket 2. The external design of the fiber optic socket 2 allows for quick assembly of the fiber optic socket 2 and the socket flange support assembly 3. Furthermore, simply loosening the socket locking screw 303 allows the fiber optic socket 2 to be separated axially from the socket fixing sleeve 301, thus separating the fiber optic socket 2 from the socket flange support assembly 3. This simple and easy assembly and disassembly method facilitates both the use of the fiber optic socket 2 and the socket flange support assembly 3 together and subsequent inspection and maintenance of the fiber optic socket 2 after separation.
[0038] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.
Claims
1. A single-channel fiber optic slip ring with flange port output, comprising a fiber optic slip ring body (1), a stator fixing sleeve (103), a fiber optic plug (4), and a fiber optic socket (2), characterized in that: The stator fixing sleeve (103) is coaxially fixed around the stator of the fiber optic slip ring body (1); The slip ring rotor (105) of the fiber optic slip ring body (1) is electrically connected to an outwardly extending wiring (104). The end of the wiring (104) is connected to a fiber optic plug (4), and the fiber optic plug (4) is plugged into the fiber optic socket (2). At the same time, the fiber optic plug (4) and the fiber optic socket (2) are respectively equipped with a plug flange support assembly (5) and a socket flange support assembly (3) on their exteriors. The plug flange support assembly (5) and the socket flange support assembly (3) are used to provide rotational support protection and anti-loosening protection for the fiber optic plug (4) and the fiber optic socket (2) after plugging in by means of the docking combination of the plug flange support assembly (5) and the socket flange support assembly (3).
2. The single-channel fiber optic slip ring with flange port output according to claim 1, characterized in that: The stator fixing sleeve (103) is installed in such a way that multiple connecting screws (102) are vertically inserted around the stator flange (101) at the top of the fiber optic slip ring body (1), and the bottom ends of the connecting screws (102) are all inserted into the top of the stator fixing sleeve (103) in a threaded manner.
3. The single-channel fiber optic slip ring with flange port output according to claim 2, characterized in that: The fiber optic plug (4) and the fiber optic socket (2) are of type SC or LC.
4. A single channel fiber optic skiving ring for flange ported output according to claim 1, 2 or 3, wherein: The plug flange support assembly (5) includes a plug support plate (503) and a plug slewing bearing (502). The fiber optic plug (4) passes vertically through the middle of the plug support plate (503) in an axial sliding fit. The outer periphery of the plug support plate (503) is coaxially fixed with the inner ring of the plug slewing bearing (502). The outer ring of the plug slewing bearing (502) is coaxially fixed with a plug flange plate (501). A plug fixing sleeve (504) is fixedly installed on the bottom end face of the plug support plate (503). The fiber optic plug (4) passes vertically through the plug fixing sleeve (504) in an axial sliding fit. The fiber optic plug (4) and the plug fixing sleeve (504) are coaxially detachable and combinable.
5. A single-channel fiber optic slip ring with flange port output according to claim 4, characterized in that: The detachable combination of the fiber optic plug (4) and the plug fixing sleeve (504) is specifically as follows: the outer peripheral end face of the plug fixing sleeve (504) is provided with a plug locking hole (507) perpendicularly, and the plug locking holes (507) are all through holes. At the same time, the plug locking holes (507) are all coaxially inserted with plug locking screws (506) in a threaded manner.
6. A single-channel fiber optic slip ring with flange port output according to claim 5, characterized in that: The inner end of each plug locking screw (506) is coaxially attached with a rubber pad whose outer diameter is smaller than that of the plug locking hole (507), and the outer end of each plug locking screw (506) is coaxially provided with a plug force groove (505) in the shape of an internal hexagon.
7. A single-channel fiber optic slip ring with flange port output according to claim 5 or 6, characterized in that: The socket flange support assembly (3) includes a socket support plate (305) and a socket rotary bearing (306). The fiber optic socket (2) passes vertically through the middle of the socket support plate (305) in an axial sliding fit. The outer periphery of the socket support plate (305) is coaxially fixed with the inner ring of the socket rotary bearing (306). The outer ring of the socket rotary bearing (306) is coaxially fixed with a socket flange seat (307). A socket fixing sleeve (301) is fixedly installed on the top surface of the socket support plate (305). The fiber optic socket (2) passes vertically through the socket fixing sleeve (301) in an axial sliding fit. The fiber optic socket (2) and the socket fixing sleeve (301) are coaxially detachable and combinable.
8. A single channel fiber optic skiving ring for flange ported output according to claim 7, wherein: The detachable combination of the fiber optic socket (2) and the socket fixing sleeve (301) is specifically as follows: the outer peripheral end face of the socket fixing sleeve (301) is vertically provided with socket locking holes (302), and the socket locking holes (302) are all through holes. At the same time, the socket locking holes (302) are all coaxially inserted with socket locking screws (303) in a threaded manner.
9. A single-channel fiber optic slip ring with flange port output according to claim 8, characterized in that: The inner ends of the socket locking screws (303) are all coaxially attached with rubber pads whose outer diameter is smaller than that of the socket locking hole (302), and the outer ends of the socket locking screws (303) are all coaxially provided with socket force grooves (304) in the form of internal hexagonal sockets.
10. A single-channel fiber optic slip ring with flange port output according to claim 8 or 9, characterized in that: Both the plug flange plate (501) and the socket flange seat (307) are provided with multiple flange holes (6). The flange holes (6) of the plug flange plate (501) are through holes, and the flange holes (6) of the socket flange seat (307) are blind holes. At the same time, the flange holes (6) of the plug flange plate (501) and the plug flange seat are coaxially aligned.