An anti-interference signal transmission cable

By designing the storage frame and guide components of the anti-interference signal transmission cable, combined with the reinforcement base and shielding layer, the problem of insufficient cable strength and anti-twist capability is solved, and cable storage and use with high strength and anti-interference effect is achieved.

CN114758835BActive Publication Date: 2025-07-11广东坚宝电缆有限公司
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Patent Information

Application Number
CN202210323250.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-03-29
Publication Date
2025-07-11
Estimated Expiration
2042-03-29

AI Technical Summary

Technical Problem

The existing anti-interference signal transmission cables are weak in strength and anti-twist capability, and the external structure is simple, which cannot meet the needs of use in different situations.

Method used

The first storage frame and the second storage frame are adopted, combined with the transverse lifting cable guide assembly and transverse adjustment assembly, and the structural design of the reinforced base, shielding layer and anti-twist arc sheet, the strength and anti-interference effect of the cable are improved, and the signal shielding effect is enhanced through the signal shielding coating of the aluminum foil layer and the copper wire braided layer.

Benefits of technology

It realizes the high strength and anti-interference effect of the cable, can flexibly adjust the position, place it stably, and store it in a simple way, and use it in a variety of ways, which improves the anti-interference ability of the cable in the storage state.

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Abstract

The present invention discloses an anti-interference signal transmission cable, belonging to the technical field of signal transmission, which includes a first storage frame, a second storage frame, a cable body, a reinforcement base, a horizontally moving and lifting cable guiding component, and a horizontally moving adjustment component. Horizontally moving adjustment components are installed at the bottom of the inner cavities of the first storage frame and the second storage frame. The horizontally moving and lifting cable guiding component is fixedly arranged on the horizontally moving adjustment component. The cable body is arranged in the first storage frame and the second storage frame and passes through the two horizontally moving and lifting cable guiding components. Cable connectors are arranged at both ends of the cable body. The cable body of the present invention has high strength and anti-interference effect. The first storage frame and the second storage frame can flexibly adjust their positions, are stably placed, have good anti-interference effect, and can effectively store the cable when not in use. It is simple and convenient to use, has various usage methods, and has multiple functions.
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Description

Technical Field

[0001] The present invention relates to a cable, in particular to an anti-interference signal transmission cable, belonging to the technical field of signal transmission. Background Art

[0002] A power cable is a cable product used to transmit and distribute high-power electric energy in the main line of a power system. The basic structure of a power cable consists of four parts: a core (conductor), an insulating layer, a shielding layer, and a protective layer. The anti-interference means of existing anti-interference signal transmission cables are basically mature and can meet basic usage requirements. However, their own strength and anti-twisting ability are still relatively weak, and the external structure is also relatively simple, unable to meet the usage requirements of the cable under different conditions. Therefore, we propose an optimized and improved anti-interference signal transmission cable. Summary of the Invention

[0003] The purpose of the present invention is to provide an anti-interference signal transmission cable to solve the above problems. The cable body has high strength and anti-interference effect. The first storage frame and the second storage frame can flexibly adjust their positions, are stably placed, have good anti-interference effect, and can effectively store the cable when not in use. It is simple and convenient to use, has various usage methods, and is functional.

[0004] The present invention achieves the above purpose through the following technical solutions. An anti-interference signal transmission cable includes a first storage frame, a second storage frame, a cable body, a reinforcement base, a horizontally moving and lifting cable guiding component, and a horizontal movement adjusting component. The horizontal movement adjusting components are installed at the bottom of the inner cavities of the first storage frame and the second storage frame. The horizontally moving and lifting cable guiding component is fixedly arranged on the horizontal movement adjusting component. The cable body passes through the first storage frame and the second storage frame and passes through the two horizontally moving and lifting cable guiding components. Cable connectors are arranged at both ends of the cable body.

[0005] Preferably, reinforcement bases are welded at the bottoms of the first storage frame and the second storage frame. The material density of the reinforcement base is greater than that of the first storage frame and the second storage frame. Signal shielding coatings are provided on the outer surfaces of the reinforcement base, the first storage frame, and the second storage frame, which are specifically composed of an aluminum foil layer and a copper wire braided layer.

[0006] By adopting the above solution, the weight of the reinforcement base is increased, so that the center of gravity of the entire frame is close to the lower part, which has the effect of increasing the placement stability of the first storage frame and the second storage frame. The signal shielding coating composed of the aluminum foil layer and the copper wire braided layer can effectively ensure the signal shielding effect after the first storage frame and the second storage frame are combined, thereby improving the anti-interference effect of the cable body in the storage state.

[0007] Preferably, the cable body includes a shielding layer, a reinforcement layer, a cable core, anti-twist arc pieces, and reinforcement connecting pieces. The shielding layer is arranged on the outermost layer, the cable core is arranged inside the reinforcement layer, the reinforcement layer is arranged inside the shielding layer, and the reinforcement layer is connected to the inner wall of the shielding layer through the anti-twist arc pieces. The reinforcement connecting pieces are arranged between two adjacent anti-twist arc pieces.

[0008] By adopting the above solution, the shielding layer also adopts an aluminum foil layer and a copper wire braided layer to achieve a basic anti-interference effect. The setting of the reinforcement layer provides a second layer of protection for the cable core, further improving the protection effect of the cable core. The anti-twist arc pieces evenly arranged in all directions effectively improve the strength of the cable body. When twisted and squeezed, they can provide an effective elastic return force, playing a better anti-twist and self-protection role. The reinforcement connecting pieces can provide a stronger force when the two anti-twist arc pieces are stressed, further improving the pressure-bearing capacity of the cable body, and effectively ensuring the strength and anti-interference effect of the cable body.

[0009] Preferably, cable winding protrusions are welded inside both the first storage frame and the second storage frame, and anti-detachment baffles are welded on the cable winding protrusions.

[0010] By adopting the above solution, the movement of the horizontal translation and lifting cable guiding assembly drives the cable body to move, and the cable body is wound around the cable winding protrusions distributed up and down. The anti-detachment baffles effectively prevent the cable body from detaching.

[0011] Preferably, the horizontal translation adjustment assembly includes a driving motor, a reinforcement shaft, an adjustment lead screw, and a sliding seat. The reinforcement shaft is fixedly arranged on the side wall of the first storage frame or the second storage frame. The driving motor is fixedly installed on the other side wall of the first storage frame or the second storage frame. One end of the adjustment lead screw is fixedly connected to the reinforcement shaft, and the other end of the adjustment lead screw is installed on the output shaft of the driving motor. The sliding seat is installed on the adjustment lead screw, and the bottom of the sliding seat is in contact with the inner wall of the bottom of the first storage frame or the second storage frame. The horizontal translation and lifting cable guiding assembly is fixedly installed on the top of the sliding seat.

[0012] By adopting the above solution, the driving motor is used as the driving force to control the rotation of the adjusting lead screw, so that the rotation of the adjusting lead screw can push the sliding seat to move. The sliding seat can move left and right according to the rotation direction of the adjusting lead screw. In actual use, the movement of the sliding seat controls the movement of the transverse movement and lifting type cable guiding component, and the movement of the transverse movement and lifting type cable guiding component drives the movement of the cable body, so as to wind the cable body on each cable winding protrusion distributed up and down, realizing the winding storage of the cable body.

[0013] Preferably, the transverse movement and lifting type cable guiding component includes an adjusting telescopic rod, a lifting mounting seat and a cable threading ring. The adjusting telescopic rod is fixedly installed on the top of the sliding seat, the lifting mounting seat is fixedly installed on the telescopic end of the adjusting telescopic rod, the cable threading ring is welded on the top of the lifting mounting seat, and the cable body is threaded through the cable threading ring.

[0014] By adopting the above solution, the adjusting telescopic rod controls the height of the lifting mounting seat, and further controls the height change of the cable threading ring. In actual use, the cable body is threaded through the cable threading ring. The movement of the sliding seat controls the left and right movement of one end of the cable body, and the adjusting telescopic rod controls the up and down movement of the cable body. The two cooperate to effectively realize the winding and storage of the cable body on the cable winding protrusion, with simple structure, good winding effect, low cost and high economic value.

[0015] The beneficial effects of the present invention are as follows: The shielding layer of the cable body of the present invention adopts an aluminum foil layer and a copper wire braided layer to achieve a basic anti-interference effect. The reinforcement layer provides a second layer of protection for the cable core, further improving the protection effect of the cable core. The anti-twist arc pieces evenly arranged in all directions effectively improve the strength of the cable body, playing a better anti-twist and self-protection effect. The reinforcement connecting pieces can further improve the pressure-bearing capacity of the cable body, effectively ensuring the strength and anti-interference effect of the cable body.

[0016] When the present invention is in use, the left and right movement of one end of the cable body is controlled by the transverse movement adjusting component, and the up and down movement of the cable body is controlled by the transverse movement and lifting type cable guiding component. The two cooperate to effectively realize the winding and storage of the cable body on the cable winding protrusion, with simple structure, good winding effect, low cost and high economic value.

[0017] The first storage frame and the second storage frame of the present invention can flexibly adjust their positions and are stably placed. The signal shielding coating can effectively ensure the signal shielding effect after the first storage frame and the second storage frame are combined, improving the anti-interference effect of the cable body in the storage state. When not in use, it can also effectively store the cable, with simple and convenient use, diverse usage methods and strong functionality. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the external structure of the present invention from the left side view.

[0019] Figure 2 It is a schematic diagram of the external structure of the present invention from the right side view.

[0020] Figure 3 It is a schematic diagram of the internal structure of the second storage frame in the present invention.

[0021] Figure 4 It is a schematic diagram of the structure of the horizontal movement adjustment component in the present invention.

[0022] Figure 5 It is a schematic diagram of the structure of the horizontal movement and lifting type cable guiding component in the present invention.

[0023] Figure 6 It is a cross-sectional view of the cable body in the present invention.

[0024] In the figure: 1. The first storage frame, 2. The second storage frame, 3. The cable body, 3-1. The shielding layer, 3-2. The reinforcement layer, 3-3. The cable core, 3-4. The anti-twist arc piece, 3-5. The reinforcement connecting piece, 4. The reinforcement base, 5. The cable winding protrusion, 6. The anti-detachment baffle, 7. The horizontal movement and lifting type cable guiding component, 7-1. The adjustment telescopic rod, 7-2. The lifting mounting seat, 7-3. The cable threading ring, 8. The horizontal movement adjustment component, 8-1. The driving motor, 8-2. The reinforcement shaft, 8-3. The adjustment lead screw, 8-4. The sliding seat, 9. The cable joint. Detailed implementation manners

[0025] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0026] Please refer to Figure 1-6 as shown, Embodiment 1

[0027] An anti-interference signal transmission cable includes a first storage frame 1, a second storage frame 2, a cable body 3, a reinforcement base 4, a horizontal movement and lifting type cable guiding component 7, and a horizontal movement adjustment component 8. The horizontal movement adjustment components 8 are installed at the bottom of the inner cavities of the first storage frame 1 and the second storage frame 2. The horizontal movement and lifting type cable guiding component 7 is fixedly arranged on the horizontal movement adjustment component 8. The cable body 3 is threaded through the first storage frame 1 and the second storage frame 2 and passes through the two horizontal movement and lifting type cable guiding components 7. Cable joints 9 are arranged at both ends of the cable body 3.

[0028] As a technical optimization solution of the present invention, as Figure 1 shown, reinforcement bases 4 are welded to the bottoms of the first storage frame 1 and the second storage frame 2. The material density of the reinforcement bases 4 is greater than that of the first storage frame 1 and the second storage frame 2. Signal shielding coatings are provided on the outer surfaces of the reinforcement bases 4, the first storage frame 1, and the second storage frame 2, which are specifically composed of an aluminum foil layer and a copper wire braided layer.

[0029] During the actual use of this embodiment, the weight of the reinforcement base 4 is greater, so that the center of gravity of the entire frame is close to the lower part, which has the effect of increasing the placement stability of the first storage frame 1 and the second storage frame 2. The signal shielding coating composed of the aluminum foil layer and the copper wire braided layer can effectively ensure the signal shielding effect after the first storage frame 1 and the second storage frame 2 are combined, thereby improving the anti-interference effect of the cable body 3 in the storage state.

[0030] As a technical optimization solution of the present invention, as Figure 2 shown, cable winding protrusions 5 are welded inside both the first storage frame 1 and the second storage frame 2, and anti-detachment baffles 6 are welded on the cable winding protrusions 5.

[0031] During the actual use of this embodiment, the movement of the horizontal translation and lifting cable guiding component 7 drives the movement of the cable body 3, and the cable body 3 is wound around the respective cable winding protrusions 5 distributed up and down. The anti-detachment baffle 6 effectively prevents the cable body 3 from detaching.

[0032] Embodiment 2

[0033] An anti-interference signal transmission cable includes a first storage frame 1, a second storage frame 2, a cable body 3, a reinforcement base 4, a horizontal translation and lifting cable guiding component 7, and a horizontal translation adjusting component 8. Horizontal translation adjusting components 8 are installed at the bottoms of the inner cavities of the first storage frame 1 and the second storage frame 2. The horizontal translation and lifting cable guiding component 7 is fixedly arranged on the horizontal translation adjusting component 8. The cable body 3 passes through the first storage frame 1 and the second storage frame 2 and passes through the two horizontal translation and lifting cable guiding components 7. Cable connectors 9 are provided at both ends of the cable body 3.

[0034] Based on Embodiment 1, this embodiment details the structure of the cable body 3. As Figure 6 shown, the cable body 3 includes a shielding layer 3-1, a reinforcement layer 3-2, a cable core 3-3, anti-twist arc pieces 3-4, and reinforcement connecting pieces 3-5. The shielding layer 3-1 is arranged on the outermost layer, the cable core 3-3 is arranged inside the reinforcement layer 3-2, the reinforcement layer 3-2 is arranged inside the shielding layer 3-1, and the reinforcement layer 3-2 is connected to the inner wall of the shielding layer 3-1 through the anti-twist arc pieces 3-4. Reinforcement connecting pieces 3-5 are arranged between two adjacent anti-twist arc pieces 3-4.

[0035] In actual use of this embodiment, the shielding layer 3-1 also adopts an aluminum foil layer and a copper wire braided layer to achieve a basic anti-interference effect. The setting of the reinforcement layer 3-2 provides a second layer of protection for the cable core 3-3, further improving the protection effect of the cable core 3-3. The anti-twist arc pieces 3-4 evenly arranged in all directions effectively improve the strength of the cable body 3. When twisted or squeezed, they can provide an effective rebounding force, achieving a better anti-twist and self-protection effect. The reinforcement connecting piece 3-5 can provide a stronger force when stressed between two anti-twist arc pieces 3-4, further improving the pressure-bearing capacity of the cable body 3 and effectively ensuring the strength and anti-interference effect of the cable body 3.

[0036] Embodiment 3

[0037] An anti-interference signal transmission cable includes a first storage frame 1, a second storage frame 2, a cable body 3, a reinforcement base 4, a horizontally moving and lifting cable guiding component 7, and a horizontally moving adjustment component 8. Horizontally moving adjustment components 8 are installed at the bottom of the inner cavities of the first storage frame 1 and the second storage frame 2. The horizontally moving and lifting cable guiding component 7 is fixedly arranged on the horizontally moving adjustment component 8. The cable body 3 is threaded through the first storage frame 1 and the second storage frame 2 and passes through two horizontally moving and lifting cable guiding components 7. Cable connectors 9 are provided at both ends of the cable body 3.

[0038] In this embodiment, the structure of the horizontally moving adjustment component 8 is specified on the basis of Embodiment 1. As Figure 4 shown, the horizontally moving adjustment component 8 includes a driving motor 8-1, a reinforcement shaft 8-2, an adjustment lead screw 8-3, and a sliding seat 8-4. The reinforcement shaft 8-2 is fixedly arranged on the side wall of the first storage frame 1 or the second storage frame 2. The driving motor 8-1 is fixedly installed on the side wall of the other side of the first storage frame 1 or the second storage frame 2. One end of the adjustment lead screw 8-3 is fixedly connected to the reinforcement shaft 8-2, and the other end of the adjustment lead screw 8-3 is installed on the output shaft of the driving motor 8-1. The sliding seat 8-4 is installed on the adjustment lead screw 8-3, and the bottom of the sliding seat 8-4 is in contact with the inner bottom wall of the first storage frame 1 or the second storage frame 2. The horizontally moving and lifting cable guiding component 7 is fixedly installed on the top of the sliding seat 8-4.

[0039] During the actual use of this embodiment, the driving motor 8-1 is used as the driving force to control the rotation of the adjusting lead screw 8-3. The rotation of the adjusting lead screw 8-3 can push the sliding seat 8-4 to move. The sliding seat 8-4 can move left and right according to the rotation direction of the adjusting lead screw 8-3. During the actual use, the movement of the sliding seat 8-4 controls the movement of the transverse moving and lifting cable guiding assembly 7. The movement of the transverse moving and lifting cable guiding assembly 7 drives the movement of the cable body 3, so as to wind the cable body 3 on each cable winding protrusion 5 distributed up and down, realizing the winding and storage of the cable body 3.

[0040] Embodiment 4

[0041] An anti-interference signal transmission cable includes a first storage frame 1, a second storage frame 2, a cable body 3, a reinforcement base 4, a transverse moving and lifting cable guiding assembly 7 and a transverse moving adjustment assembly 8. Transverse moving adjustment assemblies 8 are installed at the bottom of the inner cavities of the first storage frame 1 and the second storage frame 2. The transverse moving and lifting cable guiding assembly 7 is fixedly arranged on the transverse moving adjustment assembly 8. The cable body 3 is threaded through the first storage frame 1 and the second storage frame 2 and passes through two transverse moving and lifting cable guiding assemblies 7. Cable connectors 9 are arranged at both ends of the cable body 3.

[0042] On the basis of Embodiment 1, the structure of the transverse moving and lifting cable guiding assembly 7 is specified in this embodiment, as Figure 5 shown. The transverse moving and lifting cable guiding assembly 7 includes an adjusting telescopic rod 7-1, a lifting mounting seat 7-2 and a cable threading ring 7-3. The adjusting telescopic rod 7-1 is fixedly installed on the top of the sliding seat 8-4. The lifting mounting seat 7-2 is fixedly installed on the telescopic end of the adjusting telescopic rod 7-1. The cable threading ring 7-3 is welded on the top of the lifting mounting seat 7-2. The cable body 3 is threaded through the cable threading ring 7-3.

[0043] During the actual use of this embodiment, the adjusting telescopic rod 7-1 controls the height of the lifting mounting seat 7-2, and further controls the height change of the cable threading ring 7-3. During the actual use, the cable body 3 is threaded through the cable threading ring 7-3. The movement of the sliding seat 8-4 controls the left and right movement of one end of the cable body 3, and the adjusting telescopic rod 7-1 controls the up and down movement of the cable body 3. The two cooperate to effectively realize the winding and storage of the cable body 3 on the cable winding protrusion 5. The structure is simple, the winding effect is good, the cost is low, and the economic value is high.

[0044] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-described exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present invention. Any reference signs in the claims should not be construed as limiting the claims involved.

[0045] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An anti-interference signal transmission cable, characterized in that: It includes a first storage frame (1), a second storage frame (2), a cable body (3), a reinforcement base (4), a horizontally moving and lifting cable guiding assembly (7) and a horizontally moving adjustment assembly (8). The horizontally moving adjustment assembly (8) is installed at the bottom of the inner cavities of both the first storage frame (1) and the second storage frame (2). The horizontally moving and lifting cable guiding assembly (7) is fixedly arranged on the horizontally moving adjustment assembly (8). The cable body (3) is threaded through the first storage frame (1) and the second storage frame (2) and passes through the two horizontally moving and lifting cable guiding assemblies (7). Cable connectors (9) are arranged at both ends of the cable body (3). The horizontally moving adjustment assembly (8) includes a driving motor (8-1), a reinforcement shaft (8-2), an adjustment lead screw (8-3) and a sliding seat (8-4). The reinforcement shaft (8-2) is fixedly arranged on the side wall of the first storage frame (1) or the second storage frame (2). The driving motor (8-1) is fixedly installed on the other side wall of the first storage frame (1) or the second storage frame (2). One end of the adjustment lead screw (8-3) is fixedly connected to the reinforcement shaft (8-2), and the other end of the adjustment lead screw (8-3) is installed on the output shaft of the driving motor (8-1). The sliding seat (8-4) is installed on the adjustment lead screw (8-3), and the bottom of the sliding seat (8-4) is in contact with the inner wall of the bottom of the first storage frame (1) or the second storage frame (2). The horizontally moving and lifting cable guiding assembly (7) is fixedly installed on the top of the sliding seat (8-4). The horizontally moving and lifting cable guiding assembly (7) includes an adjustment telescopic rod (7-1), a lifting mounting seat (7-2) and a cable threading ring (7-3). The adjustment telescopic rod (7-1) is fixedly installed on the top of the sliding seat (8-4). The lifting mounting seat (7-2) is fixedly installed on the telescopic end of the adjustment telescopic rod (7-1). The cable threading ring (7-3) is welded on the top of the lifting mounting seat (7-2). The cable body (3) is threaded through the cable threading ring (7-3). Reinforcement bases (4) are welded to the bottoms of both the first storage frame (1) and the second storage frame (2). The material density of the reinforcement bases (4) is greater than that of the first storage frame (1) and the second storage frame (2). Signal shielding coatings are provided on the outer surfaces of the reinforcement bases (4), the first storage frame (1) and the second storage frame (2), which are specifically composed of an aluminum foil layer and a copper wire braided layer. The cable body (3) includes a shielding layer (3-1), a reinforcement layer (3-2), a cable core (3-3), anti-twist arc pieces (3-4) and reinforcement connecting pieces (3-5). The shielding layer (3-1) is arranged on the outermost layer. The cable core (3-3) is arranged inside the reinforcement layer (3-2), the reinforcement layer (3-2) is arranged inside the shielding layer (3-1), and the reinforcement layer (3-2) is connected to the inner wall of the shielding layer (3-1) through the anti-twist arc piece (3-4), and the reinforcement connecting piece (3-5) is arranged between two adjacent anti-twist arc pieces (3-4); Cable winding protrusions (5) are welded inside both the first storage frame (1) and the second storage frame (2), and anti-detachment baffles (6) are welded on the cable winding protrusions (5).

Citation Information

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