An ultra category 5 high temperature resistant data transmission cable
Patent Information
- Application Number
- CN202521996212.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-09-17
AI Technical Summary
在特殊施工环境的特殊铺装地段需要对电缆进行局部外部加强进而加强耐高温性能,传统的缆线耐高温加强多为使用耐高温材料进行临时包裹,耐高温性能有限且耐用性能差
隔热中空腔由上下两组独立腔体组成,中空型外套管的隔热中空腔由上下两组独立腔体组成,中空腔体具有很好的隔热效果;
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Figure CN224759173U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a Category 5e high-temperature resistant data transmission cable, belonging to the technical field of high-temperature resistant data transmission cables. Background Technology
[0002] High-temperature resistant data transmission cables are special cables designed for stable data transmission (such as digital signals, video, and network signals) in extreme high-temperature environments. They require not only insulation and sheath materials that can withstand high temperatures, but also special design for their internal conductors, shielding, and overall structure to ensure stable electrical performance and physical integrity at high temperatures. In special installation areas with challenging construction environments, cables need localized external reinforcement to enhance their high-temperature resistance. Traditional high-temperature reinforcement for cables often involves temporary wrapping with high-temperature resistant materials, resulting in limited high-temperature resistance and poor durability. Utility Model Content
[0003] The purpose of this invention is to provide a Category 5e high-temperature resistant data transmission cable to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: a Category 5e high-temperature resistant data transmission cable, comprising a protective rubber layer, an alloy braided layer, a heat insulation layer, a cable core, a hollow outer sheath, and a side heat-conducting heat dissipation frame. The protective rubber layer is woven with the alloy braided layer, the heat insulation layer, and the cable core in a concentric sequence from the outside to the inside. The hollow outer sheath is fixedly installed on the outer diameter of the protective rubber layer by screws, and the side heat-conducting heat dissipation frame is fixedly installed on both sides of the hollow outer sheath by screws.
[0005] Preferably, the hollow outer sleeve is composed of a protective outer diameter sleeve, a heat-insulating hollow cavity, a clamping sleeve, and an alloy heat-conducting plate. The protective outer diameter sleeve, the heat-insulating hollow cavity, and the clamping sleeve are integrally welded and installed, and the alloy heat-conducting plate is welded and installed on both sides of the outer diameter of the protective outer diameter sleeve.
[0006] Preferably, the side heat conduction and heat dissipation frame is composed of a U-shaped clamping frame, a locking screw, an upper alloy guard plate, a heat dissipation alloy plate, and a lower alloy guard plate. The U-shaped clamping frame is screwed with a locking screw through its threaded through hole, and the upper alloy guard plate, the heat dissipation alloy plate, and the lower alloy guard plate are sequentially positioned and welded to the outer end face of the U-shaped clamping frame.
[0007] Preferably, the heat-insulating hollow cavity is composed of two independent cavities, upper and lower.
[0008] Compared with the prior art, the beneficial effects of this utility model are: The heat-insulating hollow cavity consists of two independent cavities, upper and lower. The heat-insulating hollow cavity of the hollow outer tube consists of two independent cavities, upper and lower. The hollow cavity has a very good heat insulation effect. The side heat conduction heat dissipation frame consists of a U-shaped clamping bracket, locking screws, an upper alloy guard plate, a heat dissipation alloy plate, and a lower alloy guard plate. The U-shaped clamping bracket of the side heat conduction heat dissipation frame is clamped and fixed to the alloy heat conduction plate to quickly conduct heat to the heat dissipation alloy plate for rapid heat dissipation. The upper and lower alloy guard plates have high structural strength and provide good protection for the heat dissipation alloy plate. Attached Figure Description
[0009] Figure 1 This is a schematic diagram of the structure of the Category 5e high-temperature resistant data transmission cable of this utility model; Figure 2 This is a schematic diagram of the installation structure of the Category 5e high-temperature resistant data transmission cable of this utility model; Figure 3 This is a schematic diagram of the hollow outer sleeve of this utility model; Figure 4 This is a schematic diagram of the structure of the side-conducting heat dissipation bracket of this utility model.
[0010] In the diagram: 1. Protective adhesive layer, 2. Alloy braided layer, 3. Heat insulation layer, 4. Cable core, 5. Hollow outer jacket, 6. Side heat conduction and heat dissipation frame, 7. Protective outer diameter sleeve, 8. Heat insulation hollow cavity, 9. Clamping sleeve, 10. Alloy heat conduction plate, 11. U-shaped clamping frame, 12. Locking screw, 13. Upper alloy protective plate, 14. Heat dissipation alloy plate, 15. Lower alloy protective plate. Detailed Implementation The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.
[0011] like Figures 1-4 As shown, a Category 5e high-temperature resistant data transmission cable includes a protective rubber layer 1, an alloy braided layer 2, a heat insulation layer 3, a cable core 4, a hollow outer sheath 5, and a side heat-conducting heat dissipation frame 6. The protective rubber layer 1 is braided with the alloy braided layer 2, the heat insulation layer 3, and the cable core 4 in a concentric sequence from the outside to the inside. The hollow outer sheath 5 is fixed to the outer diameter of the protective rubber layer 1 by screws. The side heat-conducting heat dissipation frame 6 is fixed to both sides of the hollow outer sheath 5 by screws.
[0012] The hollow outer sleeve 5 consists of a protective outer diameter sleeve 7, a heat-insulating hollow cavity 8, a clamping sleeve 9, and an alloy heat-conducting plate 10. The protective outer diameter sleeve 7, the heat-insulating hollow cavity 8, and the clamping sleeve 9 are integrally welded and installed. The alloy heat-conducting plate 10 is welded and installed on both sides of the outer diameter of the protective outer diameter sleeve 7. The protective outer diameter sleeve 7 has excellent protective performance. The hollow design of the heat-insulating hollow cavity 8 has excellent heat insulation performance. The alloy heat-conducting plate 10 conducts heat to the side heat-conducting heat dissipation frame 6.
[0013] The side heat-conducting heat dissipation bracket 6 consists of a U-shaped clamping bracket 11, locking screws 12, an upper alloy guard plate 13, a heat dissipation alloy plate 14, and a lower alloy guard plate 15. The U-shaped clamping bracket 11 is screwed with a locking screw 12 through the threaded through hole. The upper alloy guard plate 13, the heat dissipation alloy plate 14, and the lower alloy guard plate 15 are sequentially positioned and welded to the outer end face of the U-shaped clamping bracket 11. The U-shaped clamping bracket 11 is clamped and fixedly installed with the alloy heat-conducting plate 10. The heat dissipation alloy plate 14 is designed for rapid heat dissipation. The upper and lower alloy guard plates have high structural strength and provide good protection for the alloy heat-conducting plate 14. The heat-insulating hollow cavity 8 is composed of two independent cavities, one above the other, and the heat insulation performance of each independent cavity is stable.
[0014] Specific usage: A Category 5e high-temperature resistant data transmission cable. This device is suitable for local reinforcement operations in special construction sites. The heat insulation layer of the data transmission cable has a very good heat insulation effect. The heat insulation cavity of the hollow outer tube is composed of two independent cavities, which have a very good heat insulation effect. The U-shaped clamping frame of the side heat conduction and heat dissipation frame is clamped and fixed to the alloy heat conduction plate to quickly conduct heat to the heat dissipation alloy plate for rapid heat dissipation. The upper and lower alloy protective plates have high structural strength and provide a good protective effect for the heat dissipation alloy plate.
[0015] The above description is a preferred embodiment of the present utility model. For those skilled in the art, any changes, modifications, substitutions and variations made to the implementation methods without departing from the principles and spirit of the present utility model, based on the teachings of the present utility model, still fall within the protection scope of the present utility model.
Claims
1. A Category 5e high-temperature resistant data transmission cable, characterized in that, It includes a protective rubber layer (1), an alloy braided layer (2), a heat insulation layer (3), a cable core (4), a hollow outer tube (5), and a side heat conduction and heat dissipation frame (6). The protective rubber layer (1) is braided in a concentric order from the outside to the inside, consisting of the alloy braided layer (2), the heat insulation layer (3), and the cable core (4). The outer diameter of the protective rubber layer (1) is fixed with a hollow outer tube (5) by screws. The side heat conduction and heat dissipation frame (6) is fixed with screws on both sides of the hollow outer tube (5).
2. The Category 5e high-temperature resistant data transmission cable according to claim 1, characterized in that: The hollow outer sleeve (5) consists of a protective outer diameter sleeve (7), a heat-insulating hollow cavity (8), a clamping sleeve (9), and an alloy heat-conducting plate (10). The protective outer diameter sleeve (7), the heat-insulating hollow cavity (8), and the clamping sleeve (9) are integrally welded and installed. The alloy heat-conducting plate (10) is welded and installed on both sides of the outer diameter of the protective outer diameter sleeve (7).
3. The Category 5e high-temperature resistant data transmission cable according to claim 1, characterized in that: The side heat conduction heat dissipation bracket (6) is composed of a U-shaped clamping bracket (11), a locking screw (12), an upper alloy guard plate (13), a heat dissipation alloy plate (14) and a lower alloy guard plate (15). The U-shaped clamping bracket (11) has a threaded through hole with a locking screw (12) screwed in. The upper alloy guard plate (13), the heat dissipation alloy plate (14) and the lower alloy guard plate (15) are sequentially positioned and welded to the outer end face of the U-shaped clamping bracket (11).
4. The Category 5e high-temperature resistant data transmission cable according to claim 2, characterized in that: The heat-insulating hollow cavity (8) consists of two independent cavities, upper and lower.