Disclosure of Invention
In view of the above-mentioned shortcomings of the prior art, it is an object of the present invention to provide a multipurpose adaptor for network cable and telephone line, which can transmit both network signal and telephone signal.
To achieve the above and other related objects, the present invention provides a network cable and telephone line multipurpose adaptor, which comprises an input port and an output port, wherein the input port comprises at least one RJ45 network port and/or at least one RJ11 telephone interface, and the output port comprises at least one RJ45 network port and/or at least one RJ11 telephone interface.
Further, the input ports are 8-core network ports of 1 RJ45 and 4-core telephone interfaces of 1 RJ11, and the output ports are 8-core network ports of 1 RJ 45.
Further, the input port is an 8-core network port of 1 RJ45 + a 2-core telephone interface of 2 RJ11, and the output port of the adaptor is an 8-core network port of 1 RJ 45.
Furthermore, the input port of the adaptor is an 8-core network port of 1 RJ45 + a 2-core telephone interface of 1 RJ11, and the output port of the adaptor is an 8-core network port of 1 RJ 45.
Furthermore, the input port of the adaptor is an 8-core net port of 1 RJ45, and the output port of the adaptor is an 8-core net port of 1 RJ 45.
Further, the input port of the adaptor is a 2-core telephone port of 1 RJ11, and the output port of the adaptor is a 4-core telephone port of 1 RJ 11.
Further, the surface of the adapter is provided with a magnetic material so as to be conveniently fixed on a metal surface. And a plurality of adapters can also be connected in a row by magnetism.
As described above, the adapter, compared with the existing products, the adapter utilizes the connection change of the circuit inside the adapter between the telephone and the network cable without using the circuit to realize the multifunction and redundancy of the circuit, thereby realizing the following functions under the condition of not changing the original circuit and construction structure:
1. simultaneously transmitting 1-path network signals and 1-path or 2-path telephone signals through one network cable;
2. redundancy of telephone lines and network lines is realized, and fault tolerance and reliability of the system are improved;
3. the installation and the fixing are more convenient.
Detailed Description
The following description is provided for illustrative purposes, and other advantages and features of the present invention will become apparent to those skilled in the art from the following detailed description.
Please refer to fig. 1-8. It should be understood that the structure, ratio, size and the like shown in the drawings attached to the present specification are only used for matching with the content disclosed in the specification, so as to be known and read by those skilled in the art, and are not used for limiting the limit conditions that the present invention can be implemented, so that the present invention has no technical essential meaning, and any structure modification, ratio relationship change or size adjustment should still fall within the scope that the technical content disclosed in the present invention can cover without affecting the function that the present invention can produce and the purpose that the present invention can achieve. Meanwhile, the terms such as "upper", "lower", "left", "right", "middle" and "one" used in the present specification are for convenience of description, and are not intended to limit the scope of the present invention, and changes or adjustments of the relative relationship thereof may be made without substantial technical changes, and the present invention is also regarded as the scope of the present invention.
Referring to FIG. 1: a net cable of RJ45 has 8 cables. Two wire sequence modes T568A and T568B are used for network transmission, and are defined as follows for interface signals:
RJ45 network cable pin numbering
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Model definition
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T568B line sequence
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T568A line sequence
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1
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TX + (transmission)
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Orange and white
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Green and white
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2
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TX- (Transmission)
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Orange
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Green
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3
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RX + (transmission)
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Green and white
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Orange and white
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4
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Is not used
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Blue (B)
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Blue (B)
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5
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Is not used
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Blue and white
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Blue and white
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6
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RX + (transmission)
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Green
| Orange |
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7
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Is not used
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White in white
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White in white
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8
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Is not used
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Ash of
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Ash of |
Where, according to the pin definition, the standard wiring, whether T568A or T568B, for a hundred megabit transmission network, the following four wires are not used: 4,5,7,8.
Referring to FIG. 2: an RJ11 telephone line typically has 4 lines, all 4 being used for digital telephones and only those two lines numbered 3,4 being used for analog telephones. The two numbers 2,5 are not used.
The first embodiment:
referring to FIG. 3: the four lines 1,2,3 and 6 are used as network signal transmission. And the remaining 4,5,7,8 for transmitting telephone signals. Therefore, the purpose of simultaneously transmitting the 1 network and the 1 four-core telephone in one network line is realized.
The network part supports a hundred million network, and the telephone part supports a four-core digital or analog telephone.
The input port of the adapter is an 8-core network port of 1 RJ45 + a 4-core telephone port of 1 RJ 11;
the output port of the adapter is 1 RJ45 network port.
The internal connection mode is as follows:
1,2,3 and 6 of the RJ45 network port of the input port are respectively connected with 1,2,3 and 6 of the RJ45 port of the output port for transmission network;
2,3,4 and 5 of RJ11 telephone ports of the input port are respectively connected with 4,5,7 and 8 of RJ45 ports of the output port for transmitting a 4-core telephone.
Second embodiment:
referring to FIG. 4: the four lines 1,2,3 and 6 are used as network signal transmission. And the remaining 4,5,7,8 for transmitting telephone signals. Therefore, the purpose of simultaneously transmitting the 1-network telephone and the (2-path 2-core) telephone on one network line is realized.
The network part supports a hundred million network, and the telephone part supports 2-path 2-core analog telephones.
The input port of the adapter is 1 RJ45 8-core network port +2 RJ11 2-core telephone port.
The output port of the adapter is 1 RJ45 network port.
The internal connection mode is as follows:
and 1,2,3 and 6 of the RJ45 network port of the input port are respectively connected with 1,2,3 and 6 of the RJ45 port of the output port for transmission network.
3 and 4 of RJ11 telephone port 2 of the input port are respectively connected with 4 and 5 of RJ45 port of the output port for transmitting a 2-core telephone.
3 and 4 of the port 1 of the RJ11 telephone of the input port are respectively connected with 7 and 8 of the port RJ45 of the output port for transmitting a 2-core telephone.
The third embodiment:
referring to FIG. 5: the four lines 1,2,3 and 6 are used as network signal transmission. And the remaining 4,5,7,8 for transmitting telephone signals. Thus, the purpose of simultaneously transmitting the 1-network telephone and the (1-path 2-core) telephone on one network line is realized.
The network part supports a hundred million network, and the telephone part supports 1-path 2-core analog telephone.
The input port of the adapter is 1 RJ45 network port with 8 cores +1 RJ11 telephone interface with 2 cores.
The output port of the adapter is 1 RJ45 network port.
The internal connection mode is as follows:
and 1,2,3 and 6 of the RJ45 network port of the input port are respectively connected with 1,2,3 and 6 of the RJ45 port of the output port for transmission network.
3 of the RJ11 telephone port of the input port is simultaneously connected with 4,5 of the RJ45 port of the output port,
4 of the RJ11 telephone ports of the input ports are simultaneously connected with 7 and 8 of the RJ45 ports of the output ports.
This makes it possible to implement redundancy for the telephone lines 3,4, which can still be guaranteed to be operational as long as, of the lines connected to the outlets, (4,5) or (7,8) do not transmit a fault at the same time.
Meanwhile, the two lines bear the original one line, so that the resistance and the loss of the line can be reduced, and the communication quality is improved.
The fourth embodiment:
referring to FIG. 6: the four lines 1,2,3 and 6 are used as network signal transmission. While the remaining 4,5,7,8 are used for the same connections to the network, but are connected to the same ports as 1,2,3, 6.
And the network part supports a hundred million network.
The input port of the adapter is 1 RJ45 8-core network port.
The output port of the adapter is 1 RJ45 8-core network port.
The internal connection mode is as follows:
the RJ45 network port 1 of the input port is simultaneously connected with the RJ45 port 1 and 4 of the output port for transmission network.
2 of the RJ45 network ports of the input ports are simultaneously connected with 2,5 of the RJ45 ports of the connection ports for transmission network.
3 of RJ45 network ports of the input ports are simultaneously connected with 3 and 7 of RJ45 ports of the connection output ports for transmission network.
The RJ45 network port 6 of the input port is simultaneously connected with the RJ45 port 6 and 8 of the output port for transmission network.
This makes it possible to implement redundancy in the network lines, which can still be guaranteed to be operational as long as, of the lines to be connected via the outlets, (1,4), (2,5), (3.7) or (6,8) do not transmit any fault at the same time.
Meanwhile, the two lines bear the original one line, so that the resistance and the loss of the line can be reduced, and the communication quality is improved.
Fifth embodiment:
referring to FIG. 7: the 2 lines 3,4 are used as telephone signal transmission. While the remaining 2,5 are used for the same telephone but are connected to the same port as 3, 4.
The input port of the adapter is a 2-core telephone port of 1 RJ 11.
The output port of the adapter is a 4-core telephone port of 1 RJ 11.
The internal connection mode is as follows:
3 of RJ11 telephone ports of the input ports are simultaneously connected with 2 and 3 of RJ11 ports of the connection output ports for transmitting telephones.
4 of the RJ11 telephone ports of the input ports are simultaneously connected with 4,5 of the RJ11 ports of the connection output ports for transmitting the telephone.
This makes it possible to implement redundancy for telephone lines which can still be guaranteed to be operational as long as (2,3) or (4,5) in the line to which the outlet is connected do not transmit a fault at the same time.
Meanwhile, the two lines bear the original one line, so that the resistance and the loss of the line can be reduced, and the communication quality is improved.
Meanwhile, in the above first to fifth embodiments, as shown with reference to fig. 8, the magnetic material 2 is mounted on the surface of the adapter 1 to facilitate the fixing to the metal surface. And a plurality of adapters 1 may be magnetically connected in a row.
The above embodiments are merely illustrative of the principles and effects of the present invention, and are not to be construed as limiting the invention. Modifications and variations can be made to the above-described embodiments by those skilled in the art without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which may be made by those skilled in the art without departing from the spirit and technical spirit of the present invention be covered by the claims of the present invention.