COAXIAL CABLE AND SIGNAL TRANSMISSION ASSEMBLY THEREOF
20230326630 · 2023-10-12
Inventors
Cpc classification
H01B11/1869
ELECTRICITY
International classification
Abstract
This invention is a coaxial cable and a signal transmission assembly thereof. The coaxial cable includes a conductive cored wire, an insulating tape and a metal foil Mylar film a conductive layer and an outer jacket. The conductive cored wire includes an outer peripheral surface. The insulating tape is wrapped onto the outer peripheral surface of the conductive cored wire in a spiral winding manner or a longitudinal wrapping manner. The metal foil Mylar film is wrapped onto the insulating tape in a spiral winding manner, a longitudinal wrapping manner, and the conductive layer is wrapped onto the metal foil Mylar film. The jacket is wrapped onto the conductive layer. A distance between the conductive core wire and the metal foil Mylar film can be adjust by control the number of wrapping turns of the insulating tape to improve the yield rate of the coaxial cable manufacturing.
Claims
1. A coaxial cable, comprising: a conductive cored wire, including an outer peripheral surface; an insulating tape, wrapped onto the outer peripheral surface of the conductive cored wire in a spiral winding manner or a longitudinal wrapping manner; a metal foil Mylar film, wrapped onto the insulating tape in a spiral winding manner or a longitudinal wrapping manner, wherein apart from the insulating tape, no other objects are provided between the outer peripheral surface of the conductive cored wire and the metal foil Mylar film; a conductive layer wrapped onto the metal foil Mylar film; and a jacket wrapped onto the conductive layer.
2. (canceled)
3. The coaxial cable according to claim 1, wherein a material of the insulating tape is polytetrafluoroethylene.
4. (canceled)
5. A signal transmission assembly comprising: a plurality of coaxial cables, wherein each of the coaxial cables comprising: a conductive cored wire, including an outer peripheral surface; an insulating tape, wrapped onto the outer peripheral surface of the conductive cored wire in a spiral winding manner or a longitudinal wrapping manner; a metal foil Mylar film, wrapped onto the insulating tape in a spiral winding manner or a longitudinal wrapping manner, wherein apart from the insulating tape, no other objects are provided between the outer peripheral surface of the conductive cored wire and the metal foil Mylar film; a conductive layer wrapped onto the metal foil Mylar film; and an outer jacket, wherein plurality of coaxial cables are disposed within the outer jacket.
6. The signal transmission assembly according to claim 5, further comprising a conductor disposed within the outer jacket.
7. The signal transmission assembly according to claim 5, further comprising a conductor disposed outside the outer jacket.
8. The signal transmission assembly according to claim 5, wherein the coaxial cables and the outer jacket constitute a sub cable set, the signal transmission assembly further comprising a connecting portion and an another sub cable set identical to the sub cable set constituted by the coaxial cables and the outer jacket; the connecting portion connects the sub cable set and the another sub cable set, so as to constitute a cable set.
9. The signal transmission assembly according to claim 8, further comprising a conductor disposed between the sub cable set and the another sub cable set.
10. A signal transmission assembly, comprising at least one coaxial cable, comprising: a conductive cored wire, including an outer peripheral surface; an insulating tape, wrapped onto the outer peripheral surface of the conductive cored wire in a spiral winding manner or a longitudinal wrapping manner; a metal foil Mylar film, wrapped onto the insulating tape in a spiral winding manner or a longitudinal wrapping manner, wherein apart from the insulating tape, no other objects are provided between the outer peripheral surface of the conductive cored wire and the metal foil Mylar film; and a conductive layer wrapped onto the metal foil Mylar film; a conductive wire; an outer conductive layer, wherein the coaxial cable and the conductive wire are disposed within the outer conductive layer; and an outer jacket, wherein the outer conductive layer is disposed between the outer jacket and the coaxial cable, and between the outer jacket and the conductive wire.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019]
[0020]
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[0022]
[0023]
[0024]
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0029]
[0030] In one embodiment, a material of the insulating tape 11 is polytetrafluoroethylene (PTFE). Generally, the insulating tape 11 is fully wrapped onto the outer peripheral surface 103 of the conductive cored wire 10. When it is needed to connect the coaxial cable 1, both the insulating tape 11 and the shield layer 12 corresponding to the parts of the two end of the conductive cored wire 10 are removed in accordance with requirement. The insulating tape 11 is wrapped onto the outer peripheral surface in a spiral winding manner, a longitudinal wrapping manner, or in a combination of the spiral winding manner and the longitudinal wrapping manner. Noteworthy in that the insulating tape 11 wrapped between the outer peripheral surface 103 and shield layer 12 means: no objects formed through other method and/or material between the outer peripheral surface 103 and the shield layer 12, only the insulating tape 11 is directly wrapped onto the outer peripheral surface 103. Alternatively, the conductive cored wire 10 is a metallic conductive wire. Furthermore, the conductive cored wire 10 is a copper conductive wire or an electroplated metallic conductive wire.
[0031] The shield layer 12 may be a single-layer structure or a multi-layer structure, and the shield layer 12 may include the structure of a metallic conductor etc., so as to form a Faraday cage, such that the conductive cored wire 10 transmits signals without interference, and the surrounding interference is also avoided while the signals are transmitted through the conductive cored wire 10.
[0032] As shown in
[0033] Another embodiment of this disclosure is shown in
[0034] The conductive layer 124 is constituted of a metal wire made of a high conductive material, for example a copper wire. In particular, the metal wire such as the copper wire is wrapped over the metallized PET film 122 in a spiral winding manner, so as to form the conductive layer 124, as shown in
[0035] Additionally, as shown in
[0036]
[0037] As shown in
[0038] In an embodiment as shown in
[0039] In an embodiment as shown in
[0040] In another embodiment as shown in
[0041] In one embodiment, the signal transmission assembly 2 further includes a conductor 21 disposed between the sub cable set 2a and the another sub cable set 2b. In an example, an accommodating space 221 is formed in the connecting portion 22 between the sub cable set 2a and another sub cable set 2b, so as to accommodate the conductor 21. In an embodiment, the conductor 21 is any one of a power line, a ground line, and a drain wire. Furthermore, the conductor 21 and the conductive cored wires of the single cables in the sub cable set 2a and another sub cable set 2b are arranged parallel. In an example, the connecting portion 22 and the jackets 14 of the sub cable set 2a and another sub cable set 2b are formed by extrusion molding.
[0042]
[0043] In an embodiment, the outer conductive layer 24 is similar to the conductive layer 124 and formed by spiral winding a metal wire (such as the copper wire); or the outer conductive layer 24 is a composite structure including a spiral winded metal wire and a braided metal net.
[0044] Alternatively, the conductive wire 23 is any one of a CC line, a SBU1 line, a SBU2 line, a Vcon line, a power line and a drain wire. Reasonably, a plurality of conductive wires 23 are of a single type as mentioned above or a combination of at least part of types as mentioned above.
[0045] The outer conductive layer 24 disposed between the outer jacket 20 and both the conductive wire 23 and the jacket 14 means that the conductive wire 23 and the jacket 14 are formed within the outer conductive layer 24, and the outer jacket 20 is wrapped outside the outer conductive layer 24.
[0046] In an embodiment, the high frequency signal transmission assembly is a USB coaxial cable, a HDMI coaxial cable, a display port (DP) coaxial cable or a small form-factor pluggable transceiver (SFP) coaxial cable.
[0047] The arrangement in
[0048] For example, there are two drain wires (D+ and D−) at a middle part of the high frequency signal transmission assembly 2, the drain wires are surrounded with a jacket radially from the outside by the middle part of the high frequency signal transmission assembly 2. At least part of jacket is arranged around with CC line, SBU1 line, SBU2 line, two Vcon lines. The conductive wire 23 as mentioned above is surrounded with, for example, the plurality of single coaxial cables 1 and two power lines. Then, the outer conductive layer 24 and the outer jacket 20 are radially wrapped outside the plurality of single coaxial cable 1 and the two power lines in sequence.
[0049] The above disclosure is only the preferred embodiment of this disclosure, and not used for limiting the scope of this disclosure. All equivalent variations and modifications on the basis of shapes, structures, features and spirits described in the claims of this disclosure should be included in the claims of this disclosure.