CABLE WITH NON-CIRCULAR GROUND WIRES
20220375644 · 2022-11-24
Inventors
Cpc classification
H01B7/1805
ELECTRICITY
International classification
Abstract
A cable with a non-circular ground wire is provided, including two wires, two ground wires, and an insulating tape; wherein the inner sides of the wires are in contact with each other; the ground wires are respectively arranged on two opposite sides of the wires; each ground wire at least includes a first side, a second side, and a third side; the first and second sides respectively contact the outer surfaces of the two wires, and the shapes of the first side and the second side respectively correspond to the shapes of the outer surfaces of the two wires; the insulating tape covers the outer surfaces of the wires and the third sides of the ground wires. Thereby, the mechanical properties of the cable of the present invention, such as small impedance variation of high-frequency signal transmission, transmission stability, structural flexibility and bending, can be significantly improved.
Claims
1. A cable with non-circular ground wires, comprising: two wires, with inner sides of the two wires in contact with each other; two ground wires, respectively arranged on two opposite sides of the wires, each ground wire at least comprising a first side, a second side, and a third side; the first and second sides respectively contacting the outer surfaces of the two wires, and the shapes of the first side and the second side respectively corresponding to the shapes of the outer surfaces of the two wires; wherein a first rounded corner is formed between the first side and the second side of the ground wire, and the third side of the ground wire includes a fourth side, a fourth round corner, and a fifth side, a second rounded corner is formed between the first side and the fourth side of the ground wire, and a third rounded corner is formed between the second side and the fifth side of the ground wire; wherein the positions of the first side and the fifth side of the ground wire correspond to each other and the shapes are symmetrical, and the positions of the second side and the fourth side of the ground wire correspond to each other and the shapes are symmetrical; the first and fourth rounded corners of the ground wire are diagonal corners and the angles are equal, and the second and third rounded corners of the ground wire are diagonal corners and the angles are equal; and an insulating tape, covering the outer surfaces of the wires and the third sides of the ground wires.
2. The cable with non-circular ground wires according to claim 1, wherein the cross-section of each wire is circular, and the first side and the second side of the ground wires are arc-shaped.
3. The cable with non-circular ground wires according to claim 2, wherein the diameters of the wires are equal, and the arc lengths of the first side and the second side of the ground wires are equal.
4. The cable with non-circular ground wires according to claim 3, wherein the arc length of the first side and the second side of each ground wire is equal to 1/12 of the circumference of each wire.
5. The cable with non-circular ground wires according to claim 1, wherein each ground wire comprises a bushing and a conductor; the bushing has a first side and a second side, one side of the bushing is recessed with a groove, and the conductor is embedded in the groove and protrudes from one side of the bushing, and one side of the conductor and one side of the bushing are jointly defined as the third side.
6. The cable with non-circular ground wires according to claim 5, wherein the cross-section of the inner surface of the groove is arc-shaped, and the cross section of the conductor is circular.
7. The cable with non-circular ground wires according to claim 5, wherein the bushing is made of polytetrafluoroethylene (PTFE), polyethylene (PE), or polyvinyl chloride (PVC).
8. The cable with non-circular ground wires according to claim 1, wherein each ground wire is conductor.
9. The cable with non-circular ground wires according to claim 1, wherein each wire comprises a conductor and an insulating layer, and the insulating layer covers an outer surface of the conductor; wherein, the first side and the second side of the ground wire respectively contact the outer surface of the insulating layers, and the shape of the first side and the shape of the second side of each ground wire respectively correspond to the shapes of the outer surface of the insulating layers; and wherein the insulating tape covers the outer surfaces of the insulating layers and the third sides of the ground wires.
10. The cable with non-circular ground wires according to claim 1, wherein the insulating tape includes at least an inner layer and an outer layer; the inner layer covers the outer surfaces of the wires and the third sides of the ground wires, and the outer layer covers the outer surface of the inner layer.
11. The cable with non-circular ground wires according to claim 10, wherein the inner layer is made of aluminum foil Mylar, and the outer layer is made of polyethylene terephthalate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The present invention will be apparent to those skilled in the art by reading the following detailed description of a preferred embodiment thereof, with reference to the attached drawings, in which:
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0029] The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
[0030] Referring to
[0031] More specifically, each wire 10 includes a conductor 11 and an insulating layer 12, and the insulating layer 12 covers an outer surface of the conductor 11. The first sides 21 and the second sides 22 of the ground wires 20 respectively contact the outer surfaces of the insulating layers 12, and the shapes of the first sides 21 and second sides 22 of the ground wires 20 correspond to the shape of the outer surface of the insulating layers 12, respectively. The insulating layer 12 can provide a good insulating effect, and is made of materials, such as, preferably polytetrafluoroethylene. However, it is not limited to the above, and other common insulating materials can also be used as the material of the insulating layer 12. Each ground wire 20 is a conductor. The insulating tape 30 includes at least an inner layer 31 and an outer layer 32. The inner layer 31 covers the outer surfaces of the insulating layers 12 of the wires 10 and the third sides 23 of the ground wires 20, and the outer layer 32 covers the outer surface of the inner layer 31. Preferably, the inner layer 31 is made of aluminum foil Mylar (Al-Mylar), and the outer layer 32 is made of polyethylene terephthalate (PET). However, the material of the inner layer 31 and the outer layer 32 is not limited to the above, and other insulating materials can also be used as the material of the inner layer 31 and the outer layer 32.
[0032] Based on the aforementioned structural configuration, the cross-section of each ground wire 20 presents a non-circular shape. The wires 10 and the ground wires 20 can contact each other by surfaces with matching shapes. The contact area is large, so that an excellent fit can be achieved. Therefore, during the process of covering the outer surfaces of the wires 10 and the third sides 23 of the ground wires 20 with the insulating tape 30, although the tension of the insulating tape 30 will directly squeeze the wires 10 and the ground wires 20, the wires 10 and the ground wires 20 can be kept tightly in contact without loosening, deflection and deformation, so the wires 10 and the ground wires 20 are kept in stable relative position. Thereby, the cable 1 of the present invention can obtain the following effects: first, the signal heat loss is low, and the stability of high-frequency signal transmission is significantly improved; second, the overall structural strength is significantly improved; third, the structure provides better mechanical characteristics, such as, the cable 1 for better flexibility and bendability, and the wire 10 for better concentricity; fourth, the distance between the two conductors 11 is relatively stable, and hence the impedance variation is small to provide better impedance stability.
[0033] In the first embodiment, the cross-section of each wire 10 is circular, and the first side 21 and the second side 22 of each ground wire 20 are arc surfaces matching the wires 10. More specifically, the first side 21 and the second side 22 of each ground wire 20 are arc surfaces that are recessed inward, so as to match the shape of the outer surface of each wire 10. Therefore, the wires 10 and the ground wires 20 use arc surfaces as the contact surfaces, and the contact area is large, so that an excellent tightness can be obtained.
[0034] Preferably, the diameters of the two wires 10 are the same, and the arc lengths of the first side 21 and the second side 22 of each ground wire 20 are the same.
[0035] Preferably, the arc length of the first side 21 and the second side 22 of each ground wires 20 is equal to ¼ of the circumference of each wire 10. In other words, the first side 21 of the ground wire 20 is in contact with ¼ area of the outer surface of one of the wires 10, and the second side 22 of the ground wire 20 is in contact with the other wire 10 for ¼ of the outer surface area. Therefore, at least half of the outer surface of the wires 10 contact the first side 21 and the second side 22 of the ground wire 20, and the contact area is the large, so that the best bonding can be obtained, the heat dissipation effect is the best, the signal heat loss is the lowest, and the stability of the high-frequency signal transmission is the most outstanding.
[0036] Preferably, a first angle θ1 is formed between the first side 21 and the second side 22 of the ground wire 20, a second angle θ2 is formed between the first side 21 and the third side 23 of the ground wire 20, a third angle θ3 is formed between the second side 22 and the third side 23 of the ground wire 20. The first angle θ1 is greater than the second angle θ2 and the third angle θ3, and the second angle θ2 is equal to the third angle θ3. As such, the cross-section of each ground wire 20 has a non-circular shape such as a triangle with concave on both sides, which is similar to the shape of the space formed by the wires 10 and the insulating tape 30. Before the insulating tape 30 covers the outer surface of the wires 10 and the third sides 23 of the ground wires 20, the space between the wires 10 and the insulating tape 30 is almost filled by the ground wires 20 so that the wires 10 and the ground wires 20 can be kept tightly coupled. Therefore, during the process of covering the outer surfaces of the wires 10 and the third sides 23 of the grounding bodies 20 with the insulating tape 30, although the tension of the insulating tape 30 will directly squeeze the wires 10 and the ground wires 20, the wires 10 and the ground wires 20 can be kept tightly coupled and the relative positions remain unchanged. Furthermore, the cross-section of each ground wire 20 is symmetrical, so that the overall shape of the cable 1 of the present invention is symmetrical. Hence, the stability of high-frequency signal transmission and the overall structural strength of the cable 1 of the present invention can be significantly improved. At the same time, the structure provides better mechanical characteristics for reliability and reliability testing.
[0037] In the first embodiment, the shape of an inner surface of the insulating tape 30 corresponds to the shape of the combined outer surface of the wires 10 and the third side 23 of the ground wire 20. Specifically, the inner surface of the insulating tape 30 is the inner surface of the inner layer 31. Based on the above structural configuration, the wires 10 and the ground wires 20 can contact the insulating tape 30 in a surface contact manner with matching shapes of the contact surfaces of each other, and the contact area is large, so that an excellent tightness can be obtained. What's important is that during the process of covering the outer surfaces of the wires 10 and the third sides 23 of the ground wires 20 with the insulating tape 30, even if the tension of the insulating tape 30 directly squeezes the wires 10 and the ground wires 20, the wires 10, the ground wires 20, and the insulating tape 30 can be kept tightly coupled.
[0038] Preferably, each wire 10 is circular, the third side 23 of each ground wire 20 is arc-shaped so that the overall combined outer surface is in contact with the inner surface of the insulating tape 30, and the insulating tape 30 is elliptical. In other words, the third side 23 of each ground wire 20 is a curved surface protruding outward, so that it can correspond to the shape of the inner surface of the insulating tape 30. Thereby, the wires 10, the ground wires 20, and the insulating tape 30 can use the arc surface as the contact surface, and the contact area is the largest, so that the best fit can be obtained, the heat dissipation effect is the best, the signal heat loss is the lowest, and the stability of high-frequency signal transmission is the most outstanding.
[0039] Refer to
[0040] Accordingly, because the second embodiment uses the bushing 201 to reduce the volume of the conductor 202, and the bushing 201 is lighter in weight than that of the conductor 202, the weight of the cable 1A of the second embodiment is lighter than that of the first embodiment, which is conducive to the processing load of the terminal station.
[0041] Furthermore, the shape of the conductor 202 is no different from that of a general conductor, which means that the conductor 202 is a general conductor and can be purchased from the market. Therefore, as long as the bushing 201 is manufactured, and then the bushing 201 and the conductor 202 are assembled, the ground wire 20A of the second embodiment is complete, which is easy to manufacture.
[0042] In addition, materials such as polytetrafluoroethylene, polyethylene or polyvinyl chloride makes the bushing 201 easy to form a curved surface in the first side 21 and the second side 22, as well as easy to form the groove 2011.
[0043] In addition, compared with the first embodiment, the cross-section of the conductor 202 of the ground wire 20A of the second embodiment is circular, so it is cylindrical as a whole, and the tip discharge interference is lower.
[0044] In addition, compared with the first embodiment, the contact area between the conductor 202 of the ground wire 20A of the second embodiment and the inner surface of the insulating tape 30 is smaller, and hence, the fit is slightly less, the heat dissipation effect is slightly worse, the signal heat loss is slightly higher, and the stability of high-frequency signal transmission is slightly worse. However, it still outperforms the general ground wire.
[0045] Refer to
[0046] Accordingly, the cross-section of the ground wire 20B of the third embodiment is a non-circular but symmetrical shape such as a rhombus with four concave sides and four rounded corners, so that the ground wire 20B of the third embodiment is easy to process and produce.
[0047] Furthermore, compared with the first embodiment, the four rounded tips of the ground wire 20B of the third embodiment have lower tip discharge interference.
[0048] In addition, compared with the first embodiment and the second embodiment, the ground wire 20B of the third embodiment has an even smaller contact area with the inner surface of the insulating tape 30, the fit is the worst, and the heat dissipation effect is the worst, the signal heat loss is the highest, and the stability of high-frequency signal transmission is the worst, but still outperforms the general ground wire.
[0049] Although the present invention has been described with reference to the preferred embodiments thereof, it is apparent to those skilled in the art that a variety of modifications and changes may be made without departing from the scope of the present invention which is intended to be defined by the appended claims.