网路线接头结构
By designing a detachable cover structure for the network cable connector, the problem of exposed core wires was solved, achieving stable signal transmission and preventing leakage.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LIVEWIRE ASIA PACIFIC CO LTD
- Filing Date
- 2025-07-11
- Publication Date
- 2026-07-17
AI Technical Summary
During the installation of existing network cable connectors, the core wires are easily exposed, which can lead to leakage or malfunctions due to environmental exposure, affecting signal transmission performance.
Design a network cable connector structure, including a crystal head and a removable cover. The cover is fixed by a tight fit between the plug and the plug hole, covering the front end of the core wire and preventing the core wire from being exposed.
It effectively prevents leakage current in the core wire and environmental exposure, ensuring the stability and efficiency of signal transmission, and the cover is reliably fixed and not easy to fall off.
Smart Images

Figure CN224520255U_ABST
Abstract
Claims
1. A network junction structure, comprising: include: A crystal connector includes a connector body having a front end face and a rear end face; each side of the front end face has a insertion hole; the portion of the front end face between the two insertion holes has multiple core holes extending in a front-rear direction, the multiple core holes being arranged laterally and the middle portions of any two adjacent core holes being connected; the rear end face has a network cable insertion hole, the front end of which is connected to the rear end of the multiple core holes; the portion of the connector body adjacent to the front end face forms a front end portion, the lower side of the front end portion having multiple slots equal in number to the multiple core holes, the upper end of each slot leading to each of the core holes; a locking tab is connected to the upper side of the front end portion; as well as A cover has a cover plate with a rear end on the side facing the crystal head. A plug is connected to each side of the rear end. Each plug has a tapered rod portion, the diameter of which is smaller than the diameter of the plug hole. Each plug is inserted into the plug hole through the tapered rod portion, so that each plug can be tightly fixed in the plug hole, and the cover plate covers the front end of the plurality of core holes.
2. The network junction structure of claim 1, wherein, The crystal head and the cap are made of plastic; the diameter of each of the inserts at its maximum diameter is slightly larger than the diameter of the insert hole.
3. The network junction structure of claim 1, wherein, Each of the insert rods forms a base adjacent to the rear portion, each base being cylindrical and connected to the tapered rod portion at its maximum diameter; each base is inserted into and fixed in the insert rod hole in a tight fit manner.
4. The network junction structure of claim 3, wherein, The diameter of each of the bases is 1.1 mm, the diameter length of each of the tapered rods at the point of maximum diameter is 1.1 mm, and the diameter length of each of the tapered rods facing the end of each of the insertion holes is 0.7 mm.
5. The network junction structure of claim 3, wherein, The length of each base in the front-to-back direction is 0.3 mm, the length of each tapered rod in the front-to-back direction is 1.7 mm, and the length of each insertion hole in the front-to-back direction is greater than or equal to 0.2 mm.
6. The network junction structure of claim 1, wherein, A recess is formed at the rear portion located between the two inserts, the recess covering the front end of the plurality of core holes.
7. The network cable connector structure as described in claim 1, wherein, The cover plate has a front face on the side opposite to the crystal head; the cover plate is a rectangular plate with top and bottom sides and left and right sides; the portion of the front face adjacent to the top and bottom sides each forms a first inclined surface, and the angle between each first inclined surface and the front-back direction is 45 degrees; the portion of the front face adjacent to the left and right sides each forms a second inclined surface, and the angle between each second inclined surface and the front-back direction is 60 degrees.