Communication terminal and communication equipment assembly
By incorporating a cable tie base and snap-fit components into the communication terminal, the cable can be bent and snapped within the designated space, thus resolving the instability caused by the cable and improving the stability and aesthetics of the communication terminal.
Patent Information
- Application Number
- CN202423270839.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Because the cables of communication terminals extend vertically, their center of gravity is unstable, making them prone to tipping over and potentially causing malfunctions due to excessive temperature.
A cable tie base and cable tie connector are installed in the communication terminal. After the cable is bent within the housing space, it is snapped into the cable tie connector, which lowers the center of gravity and improves stability.
By combining the bent cable with the cable tie connector, the center of gravity of the communication terminal is lowered, avoiding malfunctions caused by tipping over and excessive temperature, thus improving stability and aesthetics.
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Figure CN223745027U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of communication technology, specifically relating to a communication terminal and communication equipment components. Background Technology
[0002] In the field of communication technology, FTTR (Fiber to the Room) is a networking technology that lays optical fibers to every room to achieve comprehensive network coverage. It can achieve network coverage without dead zones and reach gigabit network transmission speeds, easily meeting people's network needs in daily life and office work.
[0003] In related technologies, communication terminals are usually placed on a support structure (such as a table), and the communication terminals usually adopt a downward cable exit method. When the cable is in a free state, due to the rigidity of the cable and the long vertical extension of the cable, the cable will raise the center of gravity of the communication terminal. As a result, the communication terminal may become unstable or even fall over. Moreover, when it falls over, the communication terminal is prone to failure due to excessive temperature. Utility Model Content
[0004] The purpose of this application is to provide a communication terminal and communication equipment component that can solve the problem of poor stability of communication terminals in related technologies.
[0005] In a first aspect, embodiments of this application provide a communication terminal, including a device body and a cable tray base. The device body is disposed on the cable tray base, and at least one of the device body and the cable tray base has a receiving space. The device body has a plug-in port for connecting a cable, the plug-in port facing the cable tray base, and the plug-in port communicating with the receiving space.
[0006] The cable harness base is provided with a cable harness snap-fit connector. The cable connected to the plug-in port can be bent within the receiving space and snap-fit with the cable harness snap-fit connector to extend out of the receiving space.
[0007] Optionally, the number of the cable harness connectors is at least one, and each cable harness connector includes a first hook. The first hook includes a first latching portion, a second latching portion, and a third latching portion that are bent and connected in sequence. The first latching portion is connected to the cable harness base, and the first latching portion and the third latching portion are opposite to each other.
[0008] The first latching part, the second latching part, and the third latching part together form a first latching space, and a first opening is formed between the first latching part and the third latching part. The first opening is used for the cable to pass through, and the first opening is connected to the first latching space.
[0009] Optionally, each of the cable harness connectors further includes a second hook, with the first hook and the second hook spaced apart. The second hook includes a fourth hook portion, a fifth hook portion, and a sixth hook portion that are sequentially bent and connected. The fourth hook portion is connected to the cable harness base, and the fourth hook portion is opposite to the sixth hook portion.
[0010] The fourth, fifth, and sixth latching portions together form a second latching space, and a second opening is formed between the fourth and sixth latching portions. The second opening is used for the cable to pass through and communicates with the second latching space.
[0011] The second opening is opposite to the first opening, and a third opening is formed between the third latching portion and the sixth latching portion, the third opening being connected to the first opening and the second opening respectively.
[0012] Optionally, the third latching portion is provided with a first protrusion structure, the first protrusion structure protruding from the surface of the third latching portion facing the first latching portion, and the first protrusion structure can cooperate with the cable for limiting.
[0013] The sixth latching portion is provided with a second protruding structure, which protrudes from the surface of the sixth latching portion facing the fourth latching portion, and the second protruding structure can cooperate with the cable for limiting.
[0014] Optionally, at least two of each of the plug-in ports and the cable tie connectors are provided at intervals, and each plug-in port corresponds to one of the cable tie connectors.
[0015] Optionally, the device body has a first accommodating space, the cable harness base has a second accommodating space, the first accommodating space and the second accommodating space are connected, and the cable harness connector is located within the second accommodating space.
[0016] The cable connected to the plug-in port extends through the first receiving space into the second receiving space and is bent within the second receiving space.
[0017] Optionally, the cable harness base has a supported surface and a mounting surface facing away from each other. The supported surface is parallel to the mounting surface. The supported surface is used to contact the component supporting the communication terminal. The cable harness connector is disposed on the mounting surface.
[0018] Optionally, the cable harness base protrudes from the side of the device body, and the portion of the cable harness base protruding from the side of the device body is a first part, and the cable harness clip is disposed in the first part.
[0019] Optionally, the cable harness base is detachably connected to the device body, and / or the cable harness clip is detachably connected to the cable harness base.
[0020] Secondly, embodiments of this application also provide a communication device component, including the aforementioned communication terminal and cable, wherein the cable is connected to the plug-in port and is engaged with the cable tie connector.
[0021] In this embodiment, at least one of the device body and the cable harness base is provided with a receiving space. The cable connected to the wiring port can be bent within the receiving space and then extend from the side of the communication terminal. The length of the vertically extending portion of the cable is shortened, and most of the cable is in a bent state, which helps to lower the center of gravity of the communication terminal and improve its stability. Moreover, the cable harness base is provided with a cable harness clip, which engages with the bent cable to improve the stability of the cable after bending and prevent excessive movement of the bent portion of the cable. This helps to stably lower the center of gravity of the communication terminal, further improving its stability and preventing it from tipping over. This also prevents the communication terminal from malfunctioning due to excessive temperature when it tipps over. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the structure of a communication terminal disclosed in an embodiment of this application;
[0023] Figure 2 This is a front view of a communication terminal disclosed in an embodiment of this application;
[0024] Figure 3 This is a side view of a communication terminal disclosed in an embodiment of this application;
[0025] Figure 4 This is a top view of a communication terminal disclosed in an embodiment of this application;
[0026] Figure 5 This is a schematic diagram of the structure of a communication terminal disclosed in another embodiment of this application;
[0027] Figure 6 This is a schematic diagram of the structure of a communication terminal disclosed in another embodiment of this application.
[0028] Explanation of reference numerals in the attached figures:
[0029] 100 - Equipment body, 100a - Side of equipment body, 110 - Plug-in port, 120 - First receiving space
[0030] 200 - Cable harness base, 200a - Supported surface, 200b - Mounting surface, 210 - Second receiving space
[0031] 300 - Cable harness connector, 301 - First hook, a1 - First opening, 310 - First connector, 320 - Second connector, 330 - Third connector, 331 - First protruding structure, 302 - Second hook, a2 - Second opening, 340 - Fourth connector, 350 - Fifth connector, 360 - Sixth connector, 361 - Second protruding structure.
[0032] b-Third opening,
[0033] 400-cable. Detailed Implementation
[0034] The technical solutions of the embodiments of this application will be clearly described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application are within the scope of protection of this application.
[0035] The terms "first," "second," etc., used in the specification and claims of this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such use of data can be interchanged where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first," "second," etc., are generally of the same class and the number of objects is not limited; for example, a first object can be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.
[0036] The communication terminal and communication equipment components provided in this application will be described in detail below with reference to the accompanying drawings, through specific embodiments and application scenarios.
[0037] Please refer to Figures 1-6 The communication terminal disclosed in this application includes a device body 100 and a cable tie base 200. The device body 100 serves as the main component of the communication terminal and is used to communicate with components other than the communication terminal. The cable tie base 200 serves as a support component of the device body 100 and is used to support the device body 100 and to bind the cable 400 connected to the device body 100.
[0038] The main body 100 is disposed on the cable tie base 200. Optionally, the cable tie base 200 has a support surface, and the main body 100 is disposed on the support surface. At least one of the main body 100 and the cable tie base 200 has a receiving space. Optionally, only the main body 100 may have a receiving space, only the cable tie base 200 may have a receiving space, or both the main body 100 and the cable tie base 200 may have receiving spaces. The main body 100 has a plug-in port 110 for connecting the cable 400. The plug-in port 110 faces the cable tie base 200. Optionally, the cable tie base 200 is located below the main body 100, and the plug-in port 110 is vertically downward, thus ensuring that the cable 400 connected to the plug-in port 110 adopts a downward-facing exit method.
[0039] Furthermore, the plug-in port 110 is connected to the receiving space. In this way, the cable 400 connected to the plug-in port 110 can be bent within the receiving space and extend from the side of the communication terminal. The length of the vertically extending portion of the cable 400 is shortened, and most of the cable 400 is in a bent state, which helps to lower the center of gravity of the communication terminal and improve the stability of the communication terminal.
[0040] refer to Figures 4-6 As shown, the cable management base 200 is equipped with a cable management clip 300, which can engage with the cable 400. Specifically, the cable 400 connected to the plug-in port 110 can be bent within the receiving space and engaged with the cable management clip 300 to extend beyond the receiving space. Optionally, the cable management clip 300 has a slot, into which the cable 400 can be inserted to achieve the engagement of the cable management clip 300 with the cable 400. The position of the cable management base 200 where the cable management clip 300 is located is not limited, as long as the cable management clip 300 can engage with the bent cable 400.
[0041] In this embodiment, the cable tie 300 is engaged with the bent cable 400 to improve the stability of the cable 400 after bending and to prevent excessive movement of the bent portion of the cable 400. This helps to lower the center of gravity of the communication terminal, further improving its stability and preventing it from tipping over. This also prevents the communication terminal from malfunctioning due to overheating when it tips over. At the same time, it also improves the aesthetics and practicality of the communication terminal.
[0042] In one optional embodiment, the number of cable tie connectors 300 is at least one, that is, the number of cable tie connectors 300 can be one; or, the number of cable tie connectors 300 is at least two, and the cable tie connectors 300 are spaced apart. (In conjunction with...) Figure 1 and Figure 2As shown, each cable tie connector 300 includes a first hook 301, which includes a first connector portion 310, a second connector portion 320, and a third connector portion 330 that are bent and connected in sequence. The first connector portion 310 is connected to the cable tie base 200, and the first connector portion 310 and the third connector portion 330 are opposite to each other. Optionally, the first snap-fit portion 310 and the wire harness base 200 can be connected by welding, bonding or other methods, or the first snap-fit portion 310 and the wire harness base 200 can be integrally formed; the first snap-fit portion 310, the second snap-fit portion 320 and the third snap-fit portion 330 can be an integral structure. Further optionally, the first snap-fit portion 310, the second snap-fit portion 320 and the third snap-fit portion 330 can be formed into an integral structure by injection molding, or the first snap-fit portion 310, the second snap-fit portion 320 and the third snap-fit portion 330 can be a separate structure. Further optionally, the first snap-fit portion 310 and the second snap-fit portion 320, and the second snap-fit portion 320 and the third snap-fit portion 330 are connected by welding, bonding or other methods respectively.
[0043] The first latching portion 310, the second latching portion 320, and the third latching portion 330 together form a first latching space. In one embodiment, the end of the bent cable 400 directly passes through the first latching space for latching.
[0044] In another embodiment, reference Figure 2 , Figure 5 as well as Figure 6 As shown, a first opening a1 is formed between the first latching part 310 and the third latching part 330. That is, the first opening a1 is located on one side of the first latching space. The first opening a1 is used for the cable 400 to pass through, and the first opening a1 is connected to the first latching space.
[0045] In this embodiment, the bent cable 400 can be directly inserted into the first snap-fit space through the first opening a1, so that the first hook 301 and the cable 400 can be snapped together. That is, the cable tie snap-fit component 300 and the cable 400 can be snapped together. The snap-fit process is relatively simple and convenient.
[0046] In a further embodiment, reference is made to... Figure 5 and Figure 6As shown, each cable tie connector 300 also includes a second hook 302, that is, each cable tie connector 300 includes a first hook 301 and a second hook 302, the first hook 301 and the second hook 302 are spaced apart. Specifically, the second hook 302 includes a fourth hook portion 340, a fifth hook portion 350 and a sixth hook portion 360 connected in sequence by bending. The fourth hook portion 340 is connected to the cable tie base 200, and the fourth hook portion 340 and the sixth hook portion 360 are opposite to each other. The fourth hook portion 340, the fifth hook portion 350 and the sixth hook portion 360 together form a second hook space, and a second opening a2 is formed between the fourth hook portion 340 and the sixth hook portion 360. The second opening a2 is used for the cable 400 to pass through, and the second opening a2 is connected to the second hook space.
[0047] Optionally, the fourth snap-fit portion 340 and the wire harness base 200 can be connected by welding, bonding, or other methods, or the fourth snap-fit portion 340 and the wire harness base 200 can be integrally formed; the fourth snap-fit portion 340, the fifth snap-fit portion 350 and the sixth snap-fit portion 360 can be an integral structure. Further optionally, the fourth snap-fit portion 340, the fifth snap-fit portion 350 and the sixth snap-fit portion 360 can be formed into an integral structure by injection molding, or the fourth snap-fit portion 340, the fifth snap-fit portion 350 and the sixth snap-fit portion 360 can be a separate structure. Further optionally, the fourth snap-fit portion 340 and the fifth snap-fit portion 350, and the fifth snap-fit portion 350 and the sixth snap-fit portion 360 can be connected by welding, bonding, or other methods, respectively.
[0048] The second opening a2 is opposite to the first opening a1, and a third opening b is formed between the third latching part 330 and the sixth latching part 360. The third opening b is connected to the first opening a1 and the second opening a2 respectively. Specifically, the third opening b is used for the cable 400 to pass through. After the cable 400 passes through the third opening b, the cable 400 can further pass through the first opening a1 or the second opening a2, and then enter the first latching space or the second latching space, so that the cable 400 can be latched and engaged with the first latch 301 or the second latch 302.
[0049] Optionally, there may be a gap between the first latching portion 310 and the fourth latching portion 340, or the two may be directly connected.
[0050] In this embodiment, the number of hooks included in each cable tie 300 is increased, and each cable 400 corresponds to a first hook 301 and a second hook 302. Users can choose to engage the cable 400 with the first hook 301 or with the second hook 302 as needed to adjust the exit position of the cable 400, thereby making the communication terminal more widely applicable.
[0051] Of course, in other embodiments, each cable tie connector 300 may not include the second hook 302, that is, each cable tie connector 300 may only include the first hook 301.
[0052] In an optional embodiment, refer to Figure 5 and Figure 6 As shown, the third latching portion 330 is provided with a first protrusion structure 331, which protrudes from the surface of the third latching portion 330 facing the first latching portion 310. The first protrusion structure 331 can engage with the cable 400 for positioning. Optionally, the first protrusion structure 331 is located at the end of the third latching portion 330 away from the second latching portion 320. The first protrusion structure 331 can be a square protrusion, an arc-shaped protrusion, etc., and the specific shape of the first protrusion structure 331 is not limited in this embodiment.
[0053] In this embodiment, the third latching part 330 is provided with a first protrusion structure 331. The first protrusion structure 331 prevents the cable 400 from coming out of the first latching space, which helps to improve the latching stability of the first latch 301 on the cable 400, further prevents the cable 400 from moving, ensures the stability of the center of gravity of the communication terminal, and further improves the stability of the communication terminal.
[0054] Of course, in other embodiments, the third latching portion 330 may not have the first protrusion structure 331, and the surfaces of the first latching portion 310 and the third latching portion 330 may directly contact the cable 400.
[0055] In an optional embodiment, refer to Figure 5 and Figure 6 As shown, the sixth latching portion 360 is provided with a second protrusion structure 361, which protrudes from the surface of the sixth latching portion 360 facing the fourth latching portion 340. The second protrusion structure 361 can engage with the cable 400 for positioning. Optionally, the second protrusion structure 361 is located at the end of the sixth latching portion 360 away from the fifth latching portion 350. The second protrusion structure 361 can be a square protrusion, an arc-shaped protrusion, etc., and the specific shape of the second protrusion structure 361 is not limited in this embodiment.
[0056] In this embodiment, the sixth latching part 360 is provided with a second protrusion structure 361. The second protrusion structure 361 prevents the cable 400 from coming out of the second latching space, which helps to improve the latching stability of the second latch 302 on the cable 400, further avoids the movement of the cable 400, ensures the stability of the center of gravity of the communication terminal, and further improves the stability of the communication terminal.
[0057] Of course, in other embodiments, the sixth latching portion 360 may not have the second protrusion structure 361, and the surfaces of the fourth latching portion 340 and the sixth latching portion 360 may directly contact the cable 400.
[0058] In this embodiment, the first hook 301 and the second hook 302 have the same structure and are symmetrically arranged. Optionally, the first latching portion 310 and the fourth latching portion 340 have the same structure, the second latching portion 320 and the fifth latching portion 350 have the same structure, the third latching portion 330 and the sixth latching portion 360 have the same structure, and the first protrusion structure 331 and the second protrusion structure 361 have the same structure.
[0059] In one alternative embodiment, reference is made to... Figure 1 , Figure 2 as well as Figure 5 As shown, there is only one plug-in port 110 and one cable tie 300. That is to say, the communication terminal can only connect to and tie on one cable 400.
[0060] In another embodiment, reference Figure 6 As shown, at least two plug-in ports 110 and at least two cable tie connectors 300 are provided at intervals, and the number of plug-in ports 110 and cable tie connectors 300 is at least two. Each plug-in port 110 corresponds one-to-one with a cable tie connector 300. That is, the communication terminal can connect to and connect at least two cables 400. Optionally, the arrangement direction of the plug-in ports 110 is parallel to the arrangement direction of the cable tie connectors 300, and the arrangement direction of the plug-in ports 110 is the width direction of the device body 100. Of course, the arrangement direction of the plug-in ports 110 can also be other directions.
[0061] In this embodiment, multiple plug-in ports 110 are used to allow multiple cables 400 to exit simultaneously. Furthermore, multiple cable tie clips 300 are used to engage with the multiple cables 400, which can simultaneously fix the multiple bent cables 400, improve the stability of the multiple cables 400 after bending, and avoid excessive movement of the bent parts of each cable 400, which is conducive to further improving the stability of the communication terminal.
[0062] In an optional embodiment, refer to Figures 1-2 as well as Figures 5-6As shown, the device body 100 has a first receiving space 120, and the cable harness base 200 has a second receiving space 210. The first receiving space 120 and the second receiving space 210 are connected, and the cable harness connector 300 is located within the second receiving space 210. The cable 400 connected to the plug-in port 110 extends through the first receiving space 120 into the second receiving space 210 and is bent within the second receiving space 210. The cable harness connector 300 is located within the second receiving space 210. Optionally, the device body 100 has a first receiving groove forming the first receiving space 120, and the cable harness base 200 has a second receiving groove forming the second receiving space 210. The first receiving groove and the second receiving groove are connected.
[0063] In this embodiment, both the device body 100 and the cable tie base 200 are provided with accommodating spaces, which increases the accommodating space and allows the cable 400 to be bent sufficiently within the accommodating space. Furthermore, the cable tie base 200 also has accommodating spaces, which helps reduce the height of the bent cable 400 and further improves the stability of the communication terminal. In addition, the cable 400 is bent within the second accommodating space 210, resulting in a larger distance between the bend of the cable 400 and the plug-in port 110, thus facilitating the user to insert one end of the cable 400 into the plug-in port 110.
[0064] In an optional embodiment, combined with Figure 2 and Figure 3 As shown, the cable tie base 200 has a supported surface 200a and a mounting surface 200b facing away from each other. The supported surface 200a and the mounting surface 200b are parallel. The supported surface 200a is used to contact the component supporting the communication terminal. The cable tie clip 300 is disposed on the mounting surface 200b. Optionally, the component supporting the communication terminal can be a table, and the tabletop is in contact with the supported surface 200a. The cable tie base 200 has a second receiving groove, which forms a receiving space. The mounting surface 200b is the groove wall surface of the second receiving groove.
[0065] In this embodiment, the cable tie 300 is disposed on the mounting surface 200b, which is parallel to the supported surface 200a. Therefore, the extension direction of the cable 400 after being tied tends to be parallel to the supported surface 200a. This helps to maintain the stability of the center of gravity of the communication terminal and further improves the stability of the communication terminal.
[0066] Of course, in other embodiments, the cable tie connector 300 may also be located at other positions on the cable tie base 200 other than the mounting surface 200b.
[0067] In an optional embodiment, refer to Figure 3 as well as Figure 4As shown, the cable tie base 200 protrudes from the side 100a of the device body, and the portion of the cable tie base 200 protruding from the side 100a of the device body is the first part, and the cable tie connector 300 is disposed in the first part. That is to say, in the height direction of the device body 100, the cable tie connector 300 is staggered with the device body 100, and the cable tie connector 300 is not directly opposite the device body 100.
[0068] In this embodiment, the cable tie 300 is located on the part of the cable tie base 200 that protrudes from the side 100a of the device body. This increases the distance between the cable tie 300 and the device body 100, providing more space for the cable 400 to bend fully. This ensures that the cable 400 is fully bent before it is engaged with the cable tie 300, which is more conducive to improving the engagement stability of the cable 400.
[0069] Of course, in other embodiments, the cable harness base 200 may not protrude from the side 100a of the device body, and the cable harness connector 300 is opposite to the device body 100 in the height direction of the device body 100.
[0070] In one optional embodiment, the cable harness base 200 is fixedly connected to the device body 100 by non-removable means such as welding or bonding.
[0071] In another embodiment, the cable harness base 200 is detachably connected to the device body 100. Optionally, the cable harness base 200 and the device body 100 can be connected by a detachable method such as snap-fit or bolt connection. Further optionally, one of the cable harness base 200 and the device body 100 is provided with a first slot, and the other is provided with a first locking block. The first locking block can extend into the first slot to achieve snap-fit between the cable harness base 200 and the device body 100. Alternatively, one of the cable harness base 200 and the device body 100 is provided with a first connecting hole, and the other is provided with a first threaded hole. A first fastener passes through the first connecting hole and extends into the first threaded hole to connect the cable harness base 200 and the device body 100. The first fastener can be a bolt, screw, or other threaded fastener.
[0072] Using this embodiment, users can install and disassemble the main body 100 of the equipment as needed to facilitate maintenance and repair of the main body 100 of the equipment.
[0073] In one optional embodiment, the cable tie 300 and the cable tie base 200 can be fixedly connected by non-removable means such as welding or bonding.
[0074] In another embodiment, the cable tie connector 300 is detachably connected to the cable tie base 200. Optionally, the cable tie connector 300 and the cable tie base 200 can be connected by a detachable method such as snap-fit or bolt connection. Further optionally, one of the cable tie connector 300 and the cable tie base 200 is provided with a second slot, and the other is provided with a second locking block. The second locking block can extend into the second slot to achieve snap-fit between the cable tie connector 300 and the cable tie base 200. Alternatively, one of the cable tie connector 300 and the cable tie base 200 is provided with a second connecting hole, and the other is provided with a second threaded hole. A second fastener passes through the second connecting hole and extends into the second threaded hole to connect the cable tie connector 300 and the cable tie base 200. The second fastener can be a bolt, screw, or other threaded fastener.
[0075] Using this embodiment, the user can install and remove the cable tie connector 300 as needed to facilitate replacement of the cable tie connector 300, ensure continuous engagement between the cable tie connector 300 and the cable 400, and ensure the engagement stability of the cable 400.
[0076] Based on the communication terminal disclosed in this application, this application embodiment also discloses a communication device component, which includes the communication terminal in the above embodiment and a cable 400. The cable 400 is connected to the plug-in port 110 and is engaged with the cable tie connector 300.
[0077] In this embodiment, the cable 400 of the communication equipment component is connected to the plug-in port 110 of the communication terminal. The cable 400 is bent within the accommodating space and is engaged with the bent cable 400 by the cable tie connector 300. This helps to lower the center of gravity of the communication equipment component, further improves the stability of the communication equipment component, and avoids the situation of falling over.
[0078] The embodiments of this application have been described above with reference to the accompanying drawings. However, this application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of this application without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of this application.
Claims
1. A communication terminal, characterized by comprising: The device body (100) is arranged on the cable base (200), at least one of the device body (100) and the cable base (200) is provided with a containing space, the device body (100) is provided with a plug-in port (110) for connecting a cable (400), the plug-in port (110) faces the cable base (200), and the plug-in port (110) communicates with the containing space, The cable base (200) is provided with a cable clamping piece (300), and the cable (400) connected with the plug-in port (110) can be clamped and matched with the cable clamping piece (300) after being bent in the containing space to extend out of the containing space.
2. The communication terminal according to claim 1, characterized by The number of the cable clamping pieces (300) is at least one, each cable clamping piece (300) comprises a first clamping hook (301), the first clamping hook (301) comprises a first clamping part (310), a second clamping part (320) and a third clamping part (330) which are sequentially and bendedly connected, the first clamping part (310) is connected with the cable base (200), and the first clamping part (310) is opposite to the third clamping part (330), The first clamping part (310), the second clamping part (320) and the third clamping part (330) jointly form a first clamping space, and a first opening (a1) is formed between the first clamping part (310) and the third clamping part (330), the first opening (a1) is used for passing the cable (400), and the first opening (a1) communicates with the first clamping space.
3. The communication terminal according to claim 2, characterized by Each cable clamping piece (300) further comprises a second clamping hook (302), the first clamping hook (301) and the second clamping hook (302) are arranged in a spaced manner, the second clamping hook (302) comprises a fourth clamping part (340), a fifth clamping part (350) and a sixth clamping part (360) which are sequentially and bendedly connected, the fourth clamping part (340) is connected with the cable base (200), and the fourth clamping part (340) is opposite to the sixth clamping part (360), The fourth clamping part (340), the fifth clamping part (350) and the sixth clamping part (360) jointly form a second clamping space, and a second opening (a2) is formed between the fourth clamping part (340) and the sixth clamping part (360), the second opening (a2) is used for passing the cable (400), and the second opening (a2) communicates with the second clamping space, The second opening (a2) is opposite to the first opening (a1), and a third opening (b) is formed between the third clamping part (330) and the sixth clamping part (360), the third opening (b) respectively communicates with the first opening (a1) and the second opening (a2).
4. The communication terminal according to claim 3, characterized by The third clamping part (330) is provided with a first protruding structure (331) protruding from the surface of the third clamping part (330) towards the first clamping part (310), which can be limitedly matched with the cable (400); The sixth clamping part (360) is provided with a second protruding structure (361) protruding from the surface of the sixth clamping part (360) towards the fourth clamping part (340), which can be limitedly matched with the cable (400).
5. The communication terminal according to claim 1, characterized by The plug-in port (110) and the cable clamping piece (300) are both spaced apart by at least two, and the plug-in port (110) and the cable clamping piece (300) are one-to-one corresponding.
6. The communication terminal according to claim 1, characterized by The device main body (100) is provided with a first accommodating space (120), and the cable base (200) is provided with a second accommodating space (210), the first accommodating space (120) and the second accommodating space (210) are communicated, and the cable clamping piece (300) is located in the second accommodating space (210), The cable (400) connected with the plug-in port (110) extends into the second accommodating space (210) through the first accommodating space (120) and is bent in the second accommodating space (210).
7. The communication terminal according to claim 1, characterized by The cable base (200) is provided with a back supported surface (200a) and a mounting surface (200b), the supported surface (200a) and the mounting surface (200b) are parallel, the supported surface (200a) is used for contacting and supporting the components of the communication terminal, and the cable clamping piece (300) is arranged on the mounting surface (200b).
8. The communication terminal according to claim 1, characterized by The cable base (200) protrudes from the side surface (100a) of the device main body, and the part of the cable base (200) protruding from the side surface (100a) of the device main body is a first part, and the cable clamping piece (300) is arranged on the first part.
9. The communication terminal according to claim 1, characterized by The cable base (200) and the device main body (100) are detachably connected, and / or the cable clamping piece (300) and the cable base (200) are detachably connected.
10. A communications device assembly, characterized by The communication terminal and the cable (400) of any one of claims 1-9 are included, the cable (400) is connected with the plug-in port (110), and the cable (400) is clamped and matched with the cable clamping piece (300).