Cable with demagnetizing layer of graphene
10008306 ยท 2018-06-26
Inventors
Cpc classification
H01B11/06
ELECTRICITY
H01B11/12
ELECTRICITY
H01R31/06
ELECTRICITY
H01B11/10
ELECTRICITY
International classification
H01B11/06
ELECTRICITY
H01B13/22
ELECTRICITY
Abstract
A cable includes a transmission cord having two connecting terminals formed on two opposite ends thereof, two connectors respectively mounted on the two connecting terminals of the transmission cord, two end caps mounted on the transmission cord and respectively connected with the two connectors, and at least one demagnetizing layer mounted on the two connectors and received in the two end caps. The transmission cord includes a conducting wire, an insulating layer wrapped around the conducting wire to insulate the conducting wire, and a protective layer wrapped around an outer face of the transmission cord. The at least one demagnetizing layer is made of graphene to prevent the electromagnetic waves of the ambient environment from interfering with the signal transmission of the transmission cord.
Claims
1. A cable comprising: a transmission cord having two connecting terminals formed on two opposite ends thereof; two connectors respectively mounted on the two connecting terminals of the transmission cord; two end caps mounted on the transmission cord and respectively connected with the two connectors; and at least one demagnetizing layer mounted on the two connectors and received in the two end caps; wherein: the transmission cord includes: a conducting wire; an insulating layer wrapped around the conducting wire to insulate the conducting wire; and a protective layer wrapped around an outer face of the transmission cord to protect a whole structure of the transmission cord; the conducting wire is made of metallic material; the protective layer is made of insulating material; each of the two connectors has a first end provided with a connecting portion mounted on mounted on each of the two connecting terminals of the transmission cord and electrically connected with the conducting wire of the transmission cord; each of the two connectors has a second end provided with a fitting portion electrically coupled to an audio device; each of the two end caps has a tubular shape; each of the two end caps is mounted on an outer face of the connecting portion of each of the two connectors; the connecting portion of each of the two connectors is received in each of the two end caps; and the at least one demagnetizing layer is made of graphene material and covers the connecting portion of each of the two connectors.
2. The cable of claim 1, wherein the at least one demagnetizing layer presents a nanometer dimension.
3. The cable of claim 1, wherein the at least one demagnetizing layer presents a manner of a mounting tube, a sticking manner or a clamping manner.
4. The cable of claim 3, wherein when the at least one demagnetizing layer presents a manner of a mounting tube, the at least one demagnetizing layer is a mounting tube extending from the connecting portion of each of the two connectors toward the transmission cord and completely covering the protective layer and a connection of the two connecting terminals of the transmission cord and the connecting portion of each of the two connectors.
5. The cable of claim 3, wherein when the at least one demagnetizing layer presents a sticking manner, the at least one demagnetizing layer is a roll tape wound around the transmission cord.
6. The cable of claim 3, wherein the when the at least one demagnetizing layer presents a clamping manner, the at least one demagnetizing layer is clamped on the two connectors or the transmission cord and includes a shell and a cover.
7. The cable of claim 1, wherein the transmission cord is made of copper, silver, silver-plated copper, tin-plated copper, gold or an alloy.
8. The cable of claim 1, wherein the transmission cord is a single-core cord or a stranded cord.
9. The cable of claim 1, wherein each of the two connectors has a 3.5 connector type, a 6.3 connector type, an RCA terminal type, an XLR balance terminal type, a banana plug type, a corrugated plug type, a Y-shaped plug type or an electric plug type.
10. The cable of claim 1, wherein the transmission cord further includes at least one isolating layer wrapped around an outer face of the insulating layer for isolating an electromagnetic signal interference.
11. The cable of claim 1, wherein the at least one isolating layer is made of an aluminum foil, a hot melt aluminum foil, a tin foil or a mesh weaving metallic thread that is wrapped from inside to outside.
12. The cable of claim 1, wherein the connecting portion of each of the two connectors is connected with the conducting wire of the transmission cord by soldering.
13. The cable of claim 1, wherein the at least one demagnetizing layer is wrapped around an electrical connection of the conducting wire of the transmission cord and the connecting portion of each of the two connectors.
14. The cable of claim 1, wherein the transmission cord further includes a steel wire located in the protective layer to reinforce a tensile strength of the transmission cord.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING(S)
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DETAILED DESCRIPTION OF THE INVENTION
(7) Referring to the drawings and initially to
(8) The transmission cord 1 functions as an audio signal line or a power supply line. The transmission cord 1 includes a conducting wire 11, an insulating layer 12 wrapped around the conducting wire 11 to insulate the conducting wire 11, and a protective layer 14 wrapped around an outer face of the transmission cord 1 to protect a whole structure of the transmission cord 1. The conducting wire 11 is made of metallic material for transmitting a signal. The protective layer 14 is made of insulating material.
(9) Each of the two connectors 2 has a first end provided with a connecting portion 21 mounted on mounted on each of the two connecting terminals 15 of the transmission cord 1 and electrically connected with the conducting wire 11 of the transmission cord 1. Each of the two connectors 2 has a second end provided with a fitting portion 22 electrically coupled to an audio device, such as a sound or an acoustics for transmitting the signal. Preferably, the fitting portion 22 of each of the two connectors 2 is inserted into a slot of the sound.
(10) Each of the two end caps 3 has a tubular shape. Each of the two end caps 3 is mounted on an outer face of the connecting portion 21 of each of the two connectors 2, and the connecting portion 21 of each of the two connectors 2 is received in each of the two end caps 3. Thus, each of the two end caps 3 protects each of the two connectors 2 and the at least one demagnetizing layer 4.
(11) The at least one demagnetizing layer 4 is made of graphene material and covers the connecting portion 21 of each of the two connectors 2. Thus, the at least one demagnetizing layer 4 is located between each of the two end caps 3 and the connecting portion 21 of each of the two connectors 2.
(12) In the preferred embodiment of the present invention, the at least one demagnetizing layer 4 presents a nanometer dimension.
(13) In the preferred embodiment of the present invention, the transmission cord 1 is made of copper, silver, silver-plated copper, tin-plated copper, gold or an alloy.
(14) In the preferred embodiment of the present invention, the transmission cord 1 is a single-core cord or a stranded cord.
(15) In the preferred embodiment of the present invention, each of the two connectors 2 has a 3.5 connector type, a 6.3 connector type, an RCA terminal type, an XLR balance terminal type, a banana plug type, a corrugated plug type, a Y-shaped plug type or an electric plug type. Thus, each of the two connectors 2 is available for sounds having slots of different specifications.
(16) In the preferred embodiment of the present invention, the transmission cord 1 further includes at least one isolating layer 13 wrapped around an outer face of the insulating layer 12 for isolating an electromagnetic signal interference caused by noises produced by radio waves. The protective layer 14 protects and prevents the at least one isolating layer 13 from being worn out or broken.
(17) In the preferred embodiment of the present invention, the at least one isolating layer 13 is made of an aluminum foil, a hot melt aluminum foil, a tin foil or a mesh weaving metallic thread that is wrapped from inside to outside.
(18) In the preferred embodiment of the present invention, the connecting portion 21 of each of the two connectors 2 is connected with the conducting wire 11 of the transmission cord 1 by soldering.
(19) In the preferred embodiment of the present invention, the transmission cord 1 further includes a steel wire located in the protective layer 14, to reinforce a tensile strength of the transmission cord 1.
(20) In assembly, when the two connectors 2 are respectively mounted on the two connecting terminals 15 of the transmission cord 1, the conducting wire 11 of the transmission cord 1 is exposed outward, so that the at least one isolating layer 13 cannot isolate the electromagnetic signal interference at the two connecting terminals 15 of the transmission cord 1. At this time, the at least one demagnetizing layer 4 covers the two connecting terminals 15 of the transmission cord 1 to provide an isolating effect. It is appreciated that, the at least one demagnetizing layer 4 is made of graphene material to provide a better isolating effect. In addition, the at least one demagnetizing layer 4 presents a nanometer dimension, to produce a volume effect, so that when the diameter of the solid particles is reduced gradually, the chemical property thereof produces variation, such that the at least one demagnetizing layer 4 has a prominent demagnetizing feature and provides a better isolating effect. It is noted that, each of the two end caps 3 is made of a metallic shell that attenuates the electromagnetic waves by reflection to reduce the electromagnetic signal interference caused by the electromagnetic waves.
(21) Besides, the conducting wire 11 is made of different kinds of metallic material, with different transmission features, and with different noise absorbing extents, so that the at least one isolating layer 13 cannot obstruct the noise interferences completely. Thus, the at least one demagnetizing layer 4 has different mounting manners to correspond to the conducting wire 11 made of different kinds of metallic material.
(22) In the preferred embodiment of the present invention, the at least one demagnetizing layer 4 presents a manner of a mounting tube, a sticking manner or a clamping manner.
(23) As shown in
(24) As shown in
(25) As shown in
(26) As shown in
(27) Accordingly, the at least one demagnetizing layer 4 covers the transmission cord 1 and the connecting portion 21 of each of the two connectors 2 to prevent the noises or the electromagnetic waves of the ambient environment from interfering with or interrupting the signal transmission of the transmission cord 1 and to eliminate the noises, so that the transmission cord 1 produces clean and bright audio signals and transmits the audio signals smoothly and steadily. In addition, each of the two end caps 3 is locked onto the connecting portion 21 of each of the two connectors 2, so that the at least one demagnetizing layer 4 is secured on the connecting portion 21 of each of the two connectors 2 to closely cover the connecting portion 21 of each of the two connectors 2. Further, the at least one demagnetizing layer 4 is made of graphene material to provide an enhanced isolating effect and to obstruct the noises or the electromagnetic waves efficiently.
(28) Although the invention has been explained in relation to its preferred embodiment(s) as mentioned above, it is to be understood that many other possible modifications and variations can be made without departing from the scope of the present invention. It is, therefore, contemplated that the appended claim or claims will cover such modifications and variations that fall within the scope of the invention.