The present disclosure relates to a cable signal transmission system.
Conventionally, a technique related to a cable for differential signals which is used in order to transmit a high-speed digital signal of several Gbps or higher is disclosed. In a technical field for cables for differential signals, various proposals aimed at providing an improvement in the signal transmission performance and an improvement in the noise resistance have been presented (for example, Patent Literature 1).
Patent Literature 1: JP 2011-86458 A
In cable signal transmission using a conventional cable for differential signals, a cable having a configuration to include a physical grounding line, such as a conductor for shielding or a drain line has been used, for the improvement in the signal transmission performance and the improvement in the noise resistance.
It is an object of the present disclosure to provide a cable signal transmission system having a cable configuration that eliminates the need for a physical grounding line, such as a conductor for shielding or a drain line.
A cable signal transmission system according to the present disclosure includes: a differential driver to generate a differential signal between a positive phase signal and a negative phase signal from a signal inputted to the differential driver; a splitter to split the positive phase signal into two or more split positive phase signals, and to split the negative phase signal into two or more split negative phase signals; and a multi-core cable having four or more cores and connected to the splitter, to separately transmit each of the signals after the splitting by the splitter. In the multi-core cable, each of two or more inner cables via which the split positive phase signals are transmitted is disposed adjacent to a corresponding at least one of two or more inner cables via which the split negative phase signals are transmitted.
Because the cable signal transmission system according to the present disclosure includes the above-mentioned configuration, a virtual perfect conductor wall (referred to as an “electric wall” hereinafter) is generated at a boundary where an inner cable for a positive phase signal and an inner cable for a negative phase signal are adjacent to each other, and functions as a grounding line. Therefore, the cable signal transmission system according to the present disclosure can eliminate the need for a conductor for shielding and a drain wire which are physical grounding lines.
In the cable portion 1b which includes the multi-core cable, of the cable signal transmission system according to Embodiment 1, each of the two inner cables via which the positive phase signals are transmitted is disposed adjacent to the two inner cables via which the negative phase signals are transmitted. More concretely, the positive-phase signal conductors 2p1 and 2p2 are arranged diagonally, and the negative-phase signal conductors 2n1 and 2n2 are arranged diagonally.
In the cable portion 1b which includes the multi-core cable, according to Embodiment 1, at an end of the cable portion, the positive-phase signal conductors 2p1 and 2p2 are connected to respective positive phase signal output pins of the differential driver 3a serving as the differential signal source, and the negative-phase signal conductors 2n1 and 2n2 are connected to respective negative phase signal output pins of the differential driver 3a serving as the differential signal source. More specifically, the cable signal transmission system according to the present disclosure splits each of the positive and negative phase signals into split signals, and transmits these split signals using different signal conductors. The transmission destination includes a configuration that combines the split signals after the splitting into a signal and uses the combined signal.
In the cable signal transmission system according to Embodiment 1, a differential line through which the positive phase signals and the negative phase signals are transmitted is formed. Further, because in the cable signal transmission system of the present disclosure the positive phase signals are arranged in such a way as to be adjacent to the negative phase signals, electric walls 10a and 10b are formed between the positive phase signals and the negative phase signals. These electric walls 10a and 10b function as virtual grounding lines.
An advantageous effect provided by the cable signal transmission system according to Embodiment 1 becomes clear by comparing this embodiment with a case of transmitting a positive phase signal and a negative phase signal without splitting each of these signals.
As mentioned above, in the cable signal transmission system according to the present disclosure, while the cable portion 1b itself uses a multi-core cable having a typical configuration, the cable portion 1b is split-connected to the differential driver 3a serving as a differential signal source, and, as a result, there achieves a transmission form for differential signals in which many virtual grounding lines are generated, so that the improvement in the resistance of the whole of the cable transmission system to noise can be provided. Therefore, the cable signal transmission system according to the present disclosure can eliminate the need for a conductor for shielding and a drain line which are physical grounding lines. Further, because not a cable having a special configuration, but a typical cable having a low cost which is ordinarily used can be used, a cost reduction can be expected.
There is no difference between Embodiment 1 and Embodiment 2, except for the configuration of the cable portion 1b. Therefore, in order to avoid a repetitive explanation, an explanation about the common portion will be omitted.
Also in the case of the mode shown in Embodiment 2, in the cable signal transmission system according to the present disclosure, while the cable portion 1b itself uses a multi-core cable having a typical configuration, the cable portion is split-connected to a differential driver 3a serving as a differential signal source, and, as a result, there achieves a transmission form for differential signals in which many virtual grounding lines are generated, so that the improvement in the resistance of the whole of the cable transmission system to noise can be provided. Therefore, the cable signal transmission system according to the present disclosure can eliminate the need for a conductor for shielding and a drain line which are physical grounding lines. Further, because not a cable having a special configuration, but a typical cable having a low cost which is ordinarily used can be used, a cost reduction can be expected.
Also in the case of the mode shown in Embodiment 3, in the cable signal transmission system according to the present disclosure, while the cable portion 1b itself uses a multi-core cable having a typical configuration, the cable portion is split-connected to a differential driver 3a serving as a differential signal source, and, as a result, there achieves a transmission form for differential signals in which many virtual grounding lines are generated, so that the improvement in the resistance of the whole of the cable transmission system to noise can be provided. Therefore, the cable signal transmission system according to the present disclosure can eliminate the need for a conductor for shielding and a drain line which are physical grounding lines. Further, because not a cable having a special configuration, but a typical cable having a low cost which is ordinarily used can be used, a cost reduction can be expected.
It can be considered that the selection of inner cables for positive phase signals and inner cables for negative phase signals is performed as follows. First, any one of the inner cables is set in such a way that the inner cable and any other inner cable adjacent to the inner cable are not used for signals in phase, as much as possible. This is because an electric wall which functions as a virtual grounding line is not generated even when signals in phase are adjacent to each other. Further, it is desirable to make the number of positive phase signals after the splitting and the number of negative phase signals after the splitting be equal to each other. This is because the amplitude of the split positive phase signals and that of the split negative phase signals are made to be equal to each other. In a further typical example, an arrangement in which each of the inner cables for positive phase signals and a corresponding at least one of the inner cables for negative phase signals are geometrically symmetrical to each other is used.
Also in the case of the mode shown in Embodiment 4, in the cable signal transmission system according to the present disclosure, while the cable portion 1b itself uses a multi-core cable having a typical configuration, the cable portion is split-connected to a differential driver 3a serving as a differential signal source, and, as a result, there achieves a transmission form for differential signals in which many virtual grounding lines are generated, so that the improvement in the resistance of the whole of the cable transmission system to noise can be provided. Therefore, the cable signal transmission system according to the present disclosure can eliminate the need for a conductor for shielding and a drain line which are physical grounding lines. Further, because not a cable having a special configuration, but a typical cable having a low cost which is ordinarily used can be used, a cost reduction can be expected.
A mode in which a cable signal transmission system according to the present disclosure employs a cable system which is wired in a building is also considered. Generally, in a building such as an office building, a cable system is disposed in many cases. Further, such a cable system may have an unused signal conductor. Because a cable signal transmission system according to the present disclosure can use a multi-core cable having a typical configuration, it is possible to configure a cable signal transmission system using an unused signal conductor of a cable system wired in a building.
In the cable signal transmission system according to the present disclosure like the mode shown in Embodiment 5, while a cable portion 1b itself uses a multi-core cable having a typical configuration, the cable portion is split-connected to a differential driver 3a serving as a differential signal source, and, as a result, there achieves a transmission form for differential signals in which many virtual grounding lines are generated, so that the improvement in the resistance of the whole of the cable transmission system to noise can be provided. Therefore, the cable signal transmission system according to the present disclosure can be configured using an unused signal conductor of a cable system wired in a building.
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a dielectric, 1b cable portion, 2p, 2p1, 2p2 positive-phase signal conductor, 2n, 2n1, 2n2 negative-phase signal conductor, 3a differential signal source or differential driver, 4 splitter, and 10, 10a, 10b, 10c electric wall.
This application is a Continuation of PCT International Application No. PCT/JP2020/034579, filed on Sep. 11, 2020, all of which is hereby expressly incorporated by reference into the present application.
Number | Date | Country | |
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Parent | PCT/JP2020/034579 | Sep 2020 | US |
Child | 18159441 | US |