Hybrid cable, method for its manufacture and use of such a hybrid cable
US-9799424-B2 · Oct 24, 2017 · US
US10784016B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10784016-B2 |
| Application number | US-201716338261-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 25, 2017 |
| Priority date | Oct 27, 2016 |
| Publication date | Sep 22, 2020 |
| Grant date | Sep 22, 2020 |
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An intrinsically safe explosion-proof compound cable includes a plurality of unit cables. Each of the unit cables is configured to transmit a signal or power. The plurality of unit cables include one or more shielded cables each having a shield layer and one or more unshielded cables without the shield layer. At least a highest-frequency unit cable that is the unit cable configured to transmit the signal or power at the highest frequency among the plurality of unit cables is the unshielded cable.
Opening claim text (preview).
The invention claimed is: 1. An intrinsically safe explosion-proof compound cable comprising a plurality of unit cables being configured to transmit a signal or power regulated by a plurality of barrier circuits, the plurality of unit cables including one or more shielded cables having a shield layer and one or more unshielded cables without the shield layer, wherein: at least a highest-frequency unit cable that is the unit cable configured to transmit the signal or power at the highest frequency among the plurality of unit cables is the unshielded cable, all of the one or more unshielded cables among the plurality of unit cables are configured to transmit the signal or power regulated by only one of the plurality of barrier circuits, and the one or more shielded cables that are the other unit cables are configured to transmit the signal or power regulated by the other barrier circuits. 2. The intrinsically safe explosion-proof compound cable of claim 1 , wherein the compound cable is provided with a shield layer covering all of the unit cables. 3. The intrinsically safe explosion-proof compound cable claim 1 , wherein: the compound cable is a cable configured to connect a first signal processor provided with a plurality of signal-processing circuits and a second signal processor provided with a plurality of signal-processing circuits, and the plurality of unit cables are configured to connect the plurality of signal-processing circuits of the first signal processor with the plurality of signal-processing circuits of the second signal processor. 4. The intrinsically safe explosion-proof compound cable of claim 3 , wherein the compound cable is a cable configured to connect a teach pendant as the first signal processor with a control device of a robot as the second signal processor. 5. The intrinsically safe explosion-proof compound cable of claim 4 , wherein the compound cable includes a first unit cable configured to transmit an image signal for an image circuit, a second unit cable configured to transmit power of a power source for the image circuit, and a third unit cable configured to transmit a signal and power of the power source for a CPU circuit, a fourth unit cable configured to transmit power of the power source for a back-light circuit, a fifth unit cable configured to transmit a signal for an enabling switch circuit, and a sixth unit cable configured to transmit a signal for an emergency-stop switch circuit, and wherein the first unit cable is, or the first unit cable and the second unit cable are the unshielded cables. 6. A teach pendant comprising the intrinsically safe explosion-proof compound cable provided with the compound cable and the teach pendant of claim 4 . 7. The intrinsically safe explosion-proof compound cable of claim 3 , wherein the compound cable is a cable configured to connect a robot as the first signal processor with a control device of the robot as the second signal processor. 8. The intrinsically safe explosion-proof compound cable of claim 7 , wherein the compound cable includes a seventh unit cable configured to transmit a signal for an encoder which detects a rotational angle of a motor configured to drive a joint of the robot, an eighth unit cable configured to transmit a signal for a limit switch provided to the robot, and a ninth unit cable configured to transmit a signal for a pressure switch provided to the robot, and wherein the seventh unit cable is the unshielded cable. 9. A robot comprising the intrinsically safe explosion-proof compound cable provided with the compound cable and the robot of claim 7 . 10. A signal processor comprising the intrinsically safe explosion-proof compound cable provided with the compound cable of claim 3 and the first signal processor. 11. A communication system comprising the compound cable and the plurality of barrier circuits according to claim 1 .
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