Optical fiber wiring device
By introducing a combination design of grooves, wire clamps, and guide rings into the fiber optic cabling device, and combining it with 360-degree rotation of the heating element and pulse heating control, the problems of poor fiber optic positioning and inflexible heating device are solved, thereby improving the stability and ease of operation of fiber optic cabling.
Patent Information
- Application Number
- CN202520562517.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-28
AI Technical Summary
Existing fiber optic cabling devices suffer from poor fiber optic positioning, easy dislocation and breakage, and the heating device cannot be flexibly adjusted, which limits the scope of use and ease of operation of the equipment.
The design incorporates a combination of grooves, wire pressure plates, and guide rings, along with a heating element that rotates 360 degrees via a rotating shaft. Combined with pulse heating control, this ensures stable fiber output and uniform heating.
It improves the stability and ease of operation of fiber optic cabling, avoids fiber optic dislocation and breakage, adapts to different operating scenarios, and improves cabling efficiency and quality.
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Figure CN223955859U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wiring device technical field, especially the optical fiber wiring device of a kind of. BACKGROUND
[0002] With social development and technology change, fiber to the home has gradually become mainstream home communication network installation mode.For the performance requirement of optical fiber wiring device is increasing day by day.At present, there are more optical fiber wiring glue guns on the market, for example, some optical fiber wiring glue guns melt hot melt adhesive by heating, and the optical fiber is bonded at the target position, such as wall surface, ceiling, etc.Patent CN219328928 discloses an optical fiber wiring device, which comprises a main body, a heating device, the heating device comprises a first part and a second part arranged oppositely, and a first limiting member and a second limiting member arranged oppositely on the first part and the second part to form an optical fiber accommodating part, i.e., a limiting area, the first part and the second part can be switched between open state or closed state.The first part or the second part has an arc-shaped end structure, and the first limiting member or the second limiting member extends to the end.The efficiency and aesthetics of optical fiber wiring are improved, the wiring difficulty is reduced, and the appearance also has a certain degree of aesthetics.However, the wiring device has the following problems:1) the limiting effect of the optical fiber is not good: the opening of the limiting area is close to the wiring point of the device, which makes the optical fiber easy to dislocate from the limiting area, and the arc-shaped end is long, the optical fiber limited on the limiting member of the end is exposed, when working at high position, the optical fiber is easy to fall off from the limiting member, and it is difficult for the operator to hold with hand because of the high position, which further increases the risk of dislocation of the optical fiber;2) the problem of easy breakage of optical fiber is more prominent: due to the poor limiting effect, the optical fiber is easy to dislocate, and after heating, the optical fiber becomes very thin after the glue is melted, which makes the optical fiber extremely easy to break, which not only causes the waste of optical fiber material, but also may affect the quality and progress of the whole wiring engineering, affect the wiring efficiency, increase the cost and limit the use scene;3) the heating device in the device is fixed, and the position of the heating head cannot be adjusted flexibly in the actual wiring process, which is difficult to meet the needs of different wiring positions and angles, and limits the use range and operation convenience of the equipment. CONTENT OF THE UTILITY MODEL
[0003] The utility model aims at overcoming the defects of the prior art and providing an optical fiber wiring device to improve the efficiency, stability and operation convenience of optical fiber wiring and meet the market demand for high-quality optical fiber wiring.
[0004] The purpose of the utility model can be realized by the following technical solutions:
[0005] An optical fiber wiring device comprises:
[0006] The main body extends to both ends along its own axis and includes a first end, a main body, and a second end connected in sequence. The main body has a cavity inside.
[0007] A heating device for heating an optical fiber is disposed at one end of the main body near end two. The heating device includes a heating element and a groove formed on the heating element, the groove accommodating the optical fiber.
[0008] A wire clamping plate, used to fix the optical fiber, is sleeved on the heating element;
[0009] A guide ring, used to limit the optical fiber, is disposed between the main body and the heating device;
[0010] A control circuit element, which generates and controls pulse signals, is disposed within the cavity. The control circuit element is electrically connected to the heating element so that the control circuit element controls the operation of the heating element to achieve pulsed heating of the optical fiber.
[0011] Furthermore, the heating element includes a first end, a heating element body one, a second end, and a heating element body two connected in sequence. The heating element body two is inclined downward along the top of the second end, and a curved area is formed at the other end of the heating element body two. The groove is continuously formed along the top of the first end to the end of the curved area. The groove accommodates and guides the optical fiber, facilitating the pulling of the optical fiber and achieving good wiring.
[0012] Furthermore, the optical fiber is an optical fiber with hot melt adhesive.
[0013] Furthermore, the heating element is any one of a nickel-chromium alloy wire, a PTC thermistor, or a metal-ceramic heating element.
[0014] Furthermore, the heating element can be designed as two or more pieces joined together, or as any shape, depending on the actual application scenario and requirements, to further enhance its applicability.
[0015] Furthermore, the wire clamping plate includes a first plate, a top plate, and a second plate connected in sequence. The first and second plates are opposing bent plates, and a third plate is provided at the bottom of the first or second plate. The wire clamping plate is a key component ensuring stable fiber optic cabling. It fits tightly against a portion of the heating element, securing the fiber optic cable and preventing it from falling during cabling. The third plate facilitates rotation of the heating element by the operator, preventing burns during rotation.
[0016] Furthermore, the first plate, the top plate, and the second plate are conformally shaped to the heating element.
[0017] Further, the optical fiber disc is provided, and the optical fiber is wound on the optical fiber disc; the outer surface of the main body is provided with a clamping seat, the optical fiber disc is sleeved on the clamping seat and can rotate relative to the clamping seat; and the end portion one is provided with an expansion socket, and the expansion socket is detachably connected with the main body.
[0018] Further, the expansion socket is threadedly connected with the main body or is clamped with the main body.
[0019] Further, the optical fiber disc is detachably connected with the clamping seat.
[0020] Further, the optical fiber disc comprises a first side plate, a hollow shaft and a second side plate which are sequentially connected, the first side plate and the second side plate are oppositely arranged, the hollow shaft penetrates through the first side plate and the second side plate, the hollow shaft is sleeved on the clamping seat and can rotate relative to the clamping seat.
[0021] Further, the first connecting member is provided between the heating device and the main body, the first connecting member is rotatably connected with the heating member through a rotating shaft, the first connecting member is connected with the main body, and the first connecting member is electrically connected with the heating member and the control circuit element respectively; the end portion two is provided with a second connecting member, the second connecting member is used as an extension of the main body, and the second connecting member is detachably connected with the main body; the optical fiber wiring device further comprises a telescopic rod, and the telescopic rod is detachably connected with the expansion socket. The heating member is rotatable through the rotating shaft by 360 degrees, so that the heating position can be flexibly adjusted according to actual needs in the process of optical fiber wiring, the optical fiber is uniformly heated, and the optical fiber is prevented from being separated from the heating member.
[0022] Further, the second connecting member is clamped with the main body
[0023] Further, the first connecting member comprises a plurality of connecting assemblies.
[0024] Further, the plurality of connecting assemblies comprise a shaft, a screw sleeve, a nut and the like conventional connecting members.
[0025] Further, the guide ring is sleeved on the first connecting member, and the guide ring comprises a guide ring body, a limiting slot and a positioning hole which are formed in the guide ring body.
[0026] Further, the inner wall of the positioning hole is provided with a thread. The positioning hole is matched with a screw to position the guide ring body and prevent the guide ring from rotating around the connecting member. The guide ring can further limit and fix the optical fiber. In the process of wiring, the optical fiber is pulled out, the optical fiber is pulled out from the optical fiber disc at this time, a section of the optical fiber (i.e. the optical fiber section passing through the limiting slot) is reserved between the optical fiber disc and the guide ring, the optical fiber at this position presents a smooth line, the optical fiber is prevented from being wound on the optical fiber disc and being unable to be pulled out in the process of wiring, and the optical fiber is prevented from running around.
[0027] Further, a battery compartment is arranged in the cavity, and a power supply is arranged in the battery compartment, and the power supply is used to supply power to the heating element.
[0028] Further, a sleeve is detachably connected with the second connecting piece to cover the heating device and the first connecting piece, and the curved surface area is exposed when the sleeve covers the heating device and the first connecting piece.
[0029] Further, the sleeve and the second connecting piece are connected through threads, clamping or magnetic attraction.
[0030] Further, a switch control area is arranged on the main body, and the switch control area further comprises a heating indicator light and / or an illumination switch.
[0031] Further, the control circuit element comprises a controller, the controller is electrically connected with the heating element, the heating switch and the illumination switch, and the optical fiber wiring device further comprises a temperature sensor, the temperature sensor is arranged in the cavity and is electrically connected with the controller.
[0032] Further, the controller can control the heating element to realize five-grade temperature adjustment.
[0033] Further, the controller is a PCL controller.
[0034] Compared with the prior art, the optical fiber wiring device has the following technical effects:
[0035] (1) The groove, the wire pressing plate and the guide ring in the optical fiber wiring device are matched with each other, the optical fiber can be stably discharged, and the optical fiber can be prevented from dislocation and running disorderly.
[0036] (2) The position of the wire pressing plate in the optical fiber wiring device can be flexibly adjusted, and different operation scenes can be adapted, for example, the optical fiber can be effectively prevented from falling off when operating on the ground and on the roof.
[0037] (3) The heating element in the optical fiber wiring device can be rotated by 360 degrees through the rotating shaft, the heating position can be flexibly adjusted according to actual needs during the optical fiber wiring process, the optical fiber can be uniformly heated, and the situation that the optical fiber is separated from the heating element can be avoided.
[0038] (4) The optical fiber wiring device is a hand-controlled pulse type heating device, the optical fiber can be heated and bonded at necessary positions, and the optical fiber is prevented from being easily broken by full heating. BRIEF DESCRIPTION OF DRAWINGS
[0039] Figure 1 Fig. 1 shows a top view of the optical fiber wiring device in some embodiments of the present application;
[0040] Figure 2 Fig. 2 shows a bottom view of the optical fiber wiring device in some embodiments of the present application;
[0041] Figure 3 Fig. 3 shows a schematic diagram of the installation process structure of the wire pressing plate in some embodiments of the present application;
[0042] Figure 4 Fig. 4 shows a schematic diagram of the structure of the wire pressing plate after installation in some embodiments of the present application;
[0043] Figure 5 Fig. 5 shows a schematic diagram of the structure of the optical fiber wiring device in some embodiments of the present application; Figure 4 Fig. 6 shows a partial enlarged view of the position Q in Fig. 5;
[0044] Figure 6 Fig. 7 shows a schematic diagram of the structure of the optical fiber wiring device in some embodiments of the present application;
[0045] Reference signs:
[0046] 1-heating device, 101-heating element, 1011-first end, 1012-heating element body one, 1013-second end, 1014-heating element body two, 1015-curved surface area, 102-groove, 2-first connecting element, 3-main body, 301-end one, 302-main body, 303-end two, 4-extension socket, 5-optical fiber disc, 6-wire pressing plate, 7-guide ring, 701-guide ring body, 702-limiting groove, 703-positioning hole, 8-switch control area, 801-illumination switch, 802-heating switch, 803-heating indicator light, 9-clamping seat, 10-second connecting element, 11-optical fiber, 12-sleeve. DETAILED DESCRIPTION
[0047] The present application will be further described below with reference to the specific embodiments in conjunction with the accompanying drawings.
[0048] Although some embodiments of the present application have been described in the present application, those skilled in the art can understand that these embodiments are only shown as examples. Those skilled in the art can think of many variations, alternatives and improvements under the teaching of the present application without going beyond the scope of the present application. The appended claims are intended to define the scope of the present application, and thus cover the methods and structures within the scope of these claims themselves and their equivalent transformations.
[0049] It should be noted that the components in the various drawings can be shown exaggerated in scale for illustrative purposes and are not necessarily to scale. In the various drawings, identical or functionally similar components are designated with the same reference numerals.
[0050] In the present application, unless otherwise specified, "arranged on", "arranged above" and "arranged over" do not exclude the case where an intermediate object is arranged between them. In addition, "arranged on or above" only indicates the relative positional relationship between the two components, and in certain cases, such as after reversing the product direction, it can also be converted to "arranged below or below", and vice versa.
[0051] In the present application, the embodiments are only intended to illustrate the scheme of the present application and should not be understood as limiting.
[0052] In the present application, unless otherwise specified, the quantifier "one" does not exclude the scenario of multiple elements.
[0053] It should also be noted here that in the embodiments of the present application, only a part of the components or assemblies can be shown for the sake of clarity and simplicity, but those skilled in the art can understand that under the guidance of the present application, the required components or assemblies can be added according to the specific scene. In addition, unless otherwise stated, the features in different embodiments of the present application can be combined with each other. For example, the feature in the second embodiment can be used to replace the corresponding or functionally similar feature in the first embodiment, and the resulting embodiment also falls within the scope or range disclosed in the present application.
[0054] It should also be noted here that within the scope of the present application, the words "same", "equal", "equal" and the like do not mean that the two values are absolutely equal, but allow a certain reasonable error, that is, the words also cover "substantially the same", "substantially equal", "substantially equal". By analogy, in the present application, the terms "perpendicular to", "parallel to" and the like also cover the meanings of "substantially perpendicular to", "substantially parallel to".
[0055] In the following examples, the optical fiber is an optical fiber with a hot melt adhesive coating.
[0056] An optical fiber wiring device, Figure 1 A top view of the optical fiber wiring device is shown, Figure 2The bottom view of the optical fiber wiring device is shown. It can be seen that the optical fiber wiring device comprises a main body 3 extending along its own axis to both ends, a cavity arranged in the main body 3, a heating device 1 arranged at one end of the main body 3 close to the end portion 303, a first connecting piece 2 arranged between the main body 3 and the heating device 1, a guide ring 7 sleeved on the first connecting piece 2, an optical fiber disc 5 around which an optical fiber 11 is arranged, a battery compartment arranged in the cavity, a switch control area 8 arranged on the main body 3, and control circuit elements and a temperature sensor arranged in the cavity; the heating device 1 is used for heating the optical fiber 11 and comprises a heating element 101 and a groove 102 opened on the heating element 101, the groove 102 is used for accommodating and guiding the optical fiber 11, facilitating the pulling of the optical fiber 11 and realizing good wiring, and a power supply is arranged in the battery compartment, the power supply is used for supplying power to the heating element 2; the optical fiber wiring device further comprises a wire pressing plate 6 sleeved on the heating element 101, which is used for fixing the optical fiber 11.
[0057] The heating element 101 is any one of a nickel-chromium alloy wire, a PTC thermistor or a metal ceramic heating sheet. Exemplarily, the heating element 101 is a metal ceramic heating sheet. The heating element 101 comprises a first end portion 1011, a first heating element body 1012, a second end portion 1013, a second heating element body 1014 connected in sequence, the second heating element body 1014 is inclined downward along the top of the second end portion 1013, and a curved surface region 1015 is formed at the other end of the second heating element body 1014, and the groove 102 is continuously opened from the top of the first end portion 1011 to the end of the curved surface region 1015.
[0058] The main body 3 comprises an end portion 301, a main body 302 and an end portion 303 connected in sequence, the end portion 301 is provided with a second connecting piece 10, the second connecting piece 10 is an extension of the main body 3 and is clamped with the main body 3, and the end portion 303 is provided with an expansion socket 4 which is clamped with the main body 3; the outer surface of the main body 3 is provided with a clamping seat 9, the optical fiber disc 5 is sleeved on the clamping seat 9, the optical fiber disc 5 is detachably connected with the clamping seat 9 and can rotate relative to the clamping seat 9.
[0059] The guide ring 7 is used for limiting the optical fiber 11 and comprises a guide ring body 701, a limiting groove 702 and a positioning hole 703 opened on the guide ring body 701, a screw thread (not shown) arranged on the inner wall of the positioning hole 703, and the positioning hole 703 cooperates with the screw to position the guide ring body 701 and prevent the guide ring 7 from rotating around the connecting piece 2. Figure 4 The first connecting piece 2 is rotationally connected with the heating element 101 through a rotating shaft, the first connecting piece 2 comprises a plurality of connecting assemblies, the plurality of connecting assemblies comprise a shaft, a screw sleeve, a nut and other conventional connecting pieces, the first connecting piece 2 is connected with the main body 3, and the heating element 101 is rotationally connected with the main body 3 through the rotating shaft to realize 360-degree rotation, which facilitates flexible adjustment of the heating position according to actual needs during the optical fiber wiring process, ensures uniform heating of the optical fiber and avoids the situation that the optical fiber is separated from the heating element.
[0060] The wire pressing plate 6 comprises a first plate 601, a top plate 602 and a second plate 603 connected in sequence, the first plate 601 and the second plate 602 are opposite bent plates, the bottom of the first plate 601 or the second plate 602 is further provided with a third plate 604, and the first plate 601, the top plate 602 and the second plate 603 are adapted to the heating element 101. Figure 3 The installation process structure diagram of the wire pressing plate 6 is shown, Figure 4 The structure diagram of the wire pressing plate 6 after installation is shown. During installation, it only needs to be gently pushed to the heating element 101 to complete the installation, at this time, the wire pressing plate 6 is tightly buckled on the heating element 101 and tightly adheres to the partial segment body of the heating element 101, which plays a fixing role on the optical fiber 11 and prevents the optical fiber from falling during the wiring process. The position of the wire pressing plate 6 can be flexibly adjusted according to needs, in addition, the third plate 604 facilitates the rotation of the operator on the heating element 101, avoiding being scalded during the rotation process.
[0061] The control circuit element is used to generate and control pulse signals, and the control circuit element comprises a controller, the controller is a PCL controller, the controller is electrically connected with the heating element 101, the heating indicator 803, the heating switch 802, the lighting switch 801 and the temperature sensor, and the control circuit element is electrically connected with the first connecting piece 2 and the heating element 101, so that the control circuit element controls the operation of the heating element 101, realizes pulse heating on the optical fiber, and the device can realize five-grade temperature adjustment, which can meet the heating needs of different optical fiber materials and wiring scenes. In addition, the control circuit element and the switch control area 8 jointly realize controlled pulse heating, which can accurately control the heating position, avoid the optical fiber from being easily broken due to full-range heating, improve the success rate of optical fiber wiring, save energy and reduce equipment loss.
[0062] The optical fiber disc 5 comprises a first side plate, a hollow shaft and a second side plate connected in sequence, the first side plate and the second side plate are oppositely arranged, the hollow shaft penetrates through the first side plate and the second side plate, and the hollow shaft is sleeved on the clamping seat 9 and can rotate relative to the clamping seat 9.
[0063] The switch control area 8 comprises a heating switch 802, a heating indicator 803 and / or a lighting switch 801, and exemplarily, the switch control area 8 comprises the heating switch 802, the heating indicator 803 and the lighting switch 801.
[0064] Here, the use steps of the optical fiber wiring device are briefly introduced, which specifically comprise:
[0065] First, the battery compartment is charged to ensure that the battery compartment is fully charged and the optical fiber wiring device is normally powered; then the optical fiber disc 5 with optical fiber is installed on the clamping seat 9 arranged on the main body 3, then the guide ring 7 is loosened (the screw in the positioning hole 703 is loosened), which can rotate around the first connecting piece 2, and is rotated to the appropriate position, then the optical fiber 11 on the optical fiber disc 5 is passed through the limiting groove 702, so that the extracted optical fiber 11 is in the same straight line with the heating device 1, and then the guide ring 7 is fixed through the positioning hole 703 and the screw to prevent the guide ring 7 from rotating around the connecting piece 2 during wiring; then the optical fiber 11 is extracted (introduced into the groove 102), and then the wire pressing plate 6 is pushed to the heating part 101, at this time the wire pressing plate 6 is tightly buckled on the heating part 101 and tightly fits with the part segment body of the heating part 101, at this time the optical fiber 11 is located in the groove 102 of the heating device 3; then, press the heating switch 802 to start the heating of the heating device 3, and start wiring using the optical fiber wiring device after heating to the rated working temperature, the specific wiring process is: the optical fiber 11 in the groove 102 is heated by the heating part 101, so that the optical fiber 11 is directed to the target position (such as wall surface, ceiling), and the hot melt adhesive coating on the surface of the optical fiber 11 is melted by heat, the optical fiber 11 is pressed to the target position, and when the hot melt adhesive coating on the optical fiber 20 solidifies, the optical fiber 11 is fixed at the target position, and then the next segment of wiring is started.
[0066] The optical fiber is usually bundled, and if the line position is not adjusted, it is easy to be stuck during extraction, affecting the wiring efficiency, and if the guide ring 7 is extracted, the optical fiber 11 may be thrown out due to the loss of constraint, or even bent by 90 degrees, greatly increasing the difficulty of optical fiber extraction. The guide ring 7 greatly avoids this problem, because during the wiring process, the optical fiber 11 is extracted, at this time the optical fiber 11 is pulled out from the optical fiber disc 5, and a section of the optical fiber 11 (i.e. the section of the optical fiber 11 passing through the limiting groove 702) is reserved between the optical fiber disc 5 and the guide ring 7. The optical fiber 11 at this place presents a smooth line, avoiding the phenomenon that the optical fiber 11 is wound on the optical fiber disc 5 and cannot be pulled out during wiring, and avoiding the running of the optical fiber 11.
[0067] In some embodiments of the present application, the optical fiber wiring device further comprises a sleeve 12 ( Figure 6 ), the sleeve 12 is detachably connected with the second connecting piece 10 to cover the heating device 1 and the first connecting piece 2, and the curved surface area 1015 is exposed when covering.
[0068] In some embodiments of the present application, the optical fiber wiring device further comprises a lighting lamp, which is arranged on the outer surface of the second connecting piece 10 or the outer surface of the main body 3.
[0069] In some embodiments of the present application, the fiber wiring device further comprises a telescopic rod, which is detachably connected with the extension socket 4.
[0070] In some embodiments of the present application, the heating element 101 can also be designed in the form of two or more spliced pieces or in any shape according to the actual application scene and requirements, further improving its applicability.
[0071] Although some embodiments of the present application have been described in the present application, those skilled in the art can understand that these embodiments are only shown as examples. Those skilled in the art can think of numerous variations, alternatives and improvements without departing from the scope of the present application under the teaching of the present application. The appended claims are intended to define the scope of the present application and thus cover the methods and structures within the scope of the claims themselves and their equivalent transformations.
Claims
1. A fiber routing device, comprising: The utility model relates to a kind of fiber optic cable routing device, including: Main body, which extends to both ends along its own axis, including sequentially connected end one, main body and end two, a cavity is provided in the main body; Heating device for heating optical fiber, provided in the end of the main body close to end two, the heating device includes heating element and groove opened on the heating element, the groove contains the optical fiber; Wire pressure plate for fixing optical fiber, sleeved on the heating element; Guide ring for limiting optical fiber, provided between the main body and heating device; Control circuit element for generating and controlling pulse signal, provided in the cavity, the control circuit element is electrically connected with the heating element, so that the control circuit element controls the operation of the heating element, realizes the pulse heating of optical fiber.
2. The fiber routing device of claim 1, wherein, The heating element includes sequentially connected first end, heating element body one, second end, heating element body two, the heating element body two is inclined along the top of the second end, and a curved surface region is formed at the other end of the heating element body two, and the groove is continuously opened from the top of the first end to the end of the curved surface region.
3. The fiber optic routing device of claim 2, wherein, The wire pressure plate includes sequentially connected first plate, top plate and second plate, the first plate and the second plate are opposite bending plates, and the bottom of the first plate or the second plate is further provided with a third plate.
4. The fiber routing device of claim 2, wherein, Further including optical fiber disc, the optical fiber disc is wound with optical fiber; The outer surface of the main body is provided with a clamping seat, the optical fiber disc is sleeved on the clamping seat, and can rotate relative to the clamping seat; The end one is provided with an expansion socket, and the expansion socket is detachably connected with the main body; The fiber optic cable routing device further includes a telescopic rod, and the telescopic rod is detachably connected with the expansion socket.
5. The fiber routing device of claim 2, wherein, The first connecting piece is rotatably connected between the heating device and the main body, and the first connecting piece is electrically connected with the heating element and the control circuit element.
6. The fiber optic routing device of claim 5, wherein, The guide ring is sleeved on the first connecting piece, and the guide ring includes a guide ring body, a limiting groove and a positioning hole opened on the guide ring body.
7. The fiber optic routing device of claim 6, wherein, Further including battery compartment, the battery compartment is provided in the cavity, and a power supply is provided in the battery compartment; The power supply is used to supply power to the heating element.
8. The fiber optic routing device of claim 6, wherein, Further including a sleeve, the sleeve is detachably connected with the second connecting piece to cover the heating device and the first connecting piece, and the curved surface region is exposed when covering; The fiber optic cable routing device further includes a lighting lamp, and the lighting lamp is provided on the outer surface of the second connecting piece or the outer surface of the main body.
9. The fiber routing device of claim 1, wherein, Further including a switch control area, the switch control area includes a heating switch, and the switch control area is provided on the main body; The switch control area further includes a heating indicator and / or a lighting switch.
10. The fiber optic routing device of claim 9, wherein, The control circuit element includes a controller, and the controller is electrically connected with the heating element, the heating switch and the lighting switch; The fiber optic cable routing device further includes a temperature sensor, and the temperature sensor is provided in the cavity and electrically connected with the controller.