Network jumper system for improving signal transmission

文档序号:1711045 发布日期:2019-12-13 浏览:34次 中文

阅读说明:本技术 一种提高信号传输的网络跳线系统 (Network jumper system for improving signal transmission ) 是由 宋杰 于 2019-08-15 设计创作,主要内容包括:本发明公开了一种提高信号传输的网络跳线系统,所述网络跳线系统包括网络跳线(1),所述网络跳线(1)包括信号传输线(11)以及与所述信号传输线(11)连接的水晶头(12),所述水晶头(12)内部设置有使得所述信号传输线(11)内部芯线结构的对绞线展开长度减少的导线结构。本发明能降低下现有技术中网络跳线串扰和回波损耗的技术问题。(The invention discloses a network jumper system for improving signal transmission, which comprises a network jumper (1), wherein the network jumper (1) comprises a signal transmission line (11) and a crystal head (12) connected with the signal transmission line (11), and a wire structure for reducing the spreading length of a twisted pair wire of a core wire structure in the signal transmission line (11) is arranged in the crystal head (12). The invention can reduce the technical problems of network jumper wire crosstalk and return loss in the prior art.)

1. The utility model provides an improve signal transmission's network wire jumper system, network wire jumper system includes network wire jumper (1), network wire jumper (1) including signal transmission line (11) and with quartzy head (12) that signal transmission line (11) are connected, its characterized in that, quartzy head (12) inside is provided with makes the wire structure that the twisted pair line of the inside heart yearn structure of signal transmission line (11) expandes length reduction.

2. The network jumper system for improving signal transmission according to claim 1, wherein the conductor structure is a conductor slot corresponding to each core wire (13) of the signal transmission line (11).

3. The network jumper system for improving signal transmission of claim 2, wherein the length of the wire groove is less than the length of the metal sheet connected to the port.

4. A network jumper system for improving signal transmission according to claim 3, wherein the wire guide is near the front end of the crystal head (12).

5. The network jumper system for improving signal transmission of claim 4, wherein the front end of the crystal head (12) is provided with a through hole (14) corresponding to and communicating with the wire groove.

6. A network jumper system for improving signal transmission according to claim 1, wherein the wire structure comprises a through slot and a through hole (14), the through slot is arranged inside the crystal head (12) and extends to a position close to the front end of the crystal head (12), and the front end of the crystal head (12) is provided with the through hole (14) corresponding to the core wire (13) and communicating with the through slot.

7. A network jumper system for improving signal transmission according to any one of claims 1 to 6, characterized in that the network jumper system further comprises a patch panel (2), the patch panel (2) is provided with a first socket part (21) and a second socket part (22), the first socket part (21) and the second socket part (22) are connected by a signal line, the first socket part (21) is matched with a crystal head (12) of a network jumper (1), and the second socket part (22) is matched with a crystal head (12) of another network jumper (1).

8. A network patching system for improving signal transmission, according to claim 7, wherein the first (21) and second (22) outlet parts are fitted back-to-back on the patch panel (2).

9. The method for installing the network jumper wire according to claim 5, wherein the method comprises the following specific steps: (1) removing the outer skin of the signal transmission line to expose the core wire; (2) spreading the twisted pair of the core wire for a certain length; (3) the unfolded twisted pairs penetrate into the through holes along the wire grooves and penetrate out of the through holes, and meanwhile, the twisted pairs outside the wire grooves are not unfolded; (4) cutting off the redundant core wires penetrating out of the through hole along the front end of the crystal head; (5) the core wire is connected with the metal sheet through the crystal head clamp.

Technical Field

The invention relates to the technical field of network jumper wires, in particular to a network jumper wire system for improving signal transmission.

Background

Disclosure of Invention

In order to overcome the defects of the prior art, the invention aims to provide a network jumper system for improving signal transmission, which can reduce the technical problems of network jumper crosstalk and return loss in the prior art.

The purpose of the invention is realized by adopting the following technical scheme:

The utility model provides an improve signal transmission's network wire jumper system, network wire jumper system includes the network wire jumper, the network wire jumper include signal transmission line and with the quartzy head that signal transmission line is connected, the inside wire structure that makes that is provided with of quartzy head the twisted pair line of the inside heart yearn structure of signal transmission line expandes length reduction.

Preferably, the conductor structure is a conductor slot corresponding to each core wire of the signal transmission line.

Preferably, the length of the wire guide groove is smaller than the length of the metal sheet connected with the port.

Preferably, the wire guide is located near a front end of the crystal head.

Preferably, the front end of the crystal head is provided with a through hole corresponding to and communicated with the wire groove.

Preferably, the wire structure includes logical groove and through-hole, it is in to lead to the groove setting the quartzy first inside and extend to the position that is close to quartzy first front end, the front end of quartzy head be provided with the heart yearn corresponds and with lead to the through-hole of groove intercommunication.

preferably, the network jumper system further comprises a distribution frame, wherein a first socket part and a second socket part are arranged on the distribution frame, the first socket part and the second socket part are connected through a signal line, the first socket part is matched with a crystal head of the network jumper, and the second socket part is matched with a crystal head of another network jumper.

Preferably, said first and second outlet members are mounted on said frame in back-to-back engagement.

A method for installing a network jumper comprises the following specific steps: (1) removing the outer skin of the signal transmission line to expose the core wire; (2) spreading the twisted pair of the core wire for a certain length; (3) the unfolded twisted pairs penetrate into the through holes along the wire grooves and penetrate out of the through holes, and meanwhile, the twisted pairs outside the wire grooves are not unfolded; (4) cutting off the redundant core wires penetrating out of the through hole along the front end of the crystal head; (5) the core wire is connected with the metal sheet through the crystal head clamp.

Compared with the prior art, the invention has the beneficial effects that: the invention can effectively shorten the extension length of the twisted pair wire of the core wire part in the process of connecting the network jumper wire with the crystal head, and can effectively reduce crosstalk and return loss.

Drawings

Fig. 1 is a schematic diagram illustrating installation of a network jumper in an embodiment of the present invention.

Fig. 2 is a schematic perspective view of a distribution frame in an embodiment of the present invention.

Fig. 3 is a front view of a distribution frame in an embodiment of the invention.

Figure 4 is a schematic view of the mounting of one socket part and a second socket part in this embodiment.

Fig. 5 is a detection map of a network system in the prior art.

Fig. 6 is a diagram illustrating data items of a network system in the prior art.

Fig. 7 is a detection map of the network system in this embodiment.

Fig. 8 is a diagram illustrating various data detected by the network system in this embodiment.

Detailed Description

The invention will be further described with reference to the accompanying drawings and the detailed description below:

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