CABLE
20220217878 · 2022-07-07
Inventors
Cpc classification
H05K9/0088
ELECTRICITY
International classification
Abstract
A cable comprising: a core wires; a shielding layer covering the core wires; and an outer insulating layer covering the shielding layer; wherein the shielding layer is aluminum coated PP, or aluminum coated PE, or aluminum coated PTFE, or copper coated PP, or copper coated PE, or copper coated PTFE.
Claims
1. A cable comprising: a pair of core wires; a shielding layer covering the core wires; and an outer insulating layer covering the shielding layer; wherein the shielding layer is selected from the group consisting of aluminum coated PP, aluminum coated PE, aluminum coated PTFE, copper coated PP, copper coated PE, and copper coated PTFE.
2. The cable as claimed in claim 1, wherein the shielding layer is selected from the group consisting of a PP layer and a metal aluminum layer formed on the PP layer, a PE layer and a metal aluminum layer formed on the PE layer, a PTFE layer and a metal aluminum layer formed on the PTFE layer, a PP layer and a metal copper layer formed on the PP layer, a PE layer and a metal copper layer formed on the PE layer, and a PTFE layer and a metal copper layer formed on the PTFE layer.
3. The cable as claimed in claim 1, wherein the aluminum layer of the shielding layer faces outward or the copper layer of the shielding layer faces outward.
4. The cable as claimed in claim 1, wherein the outer insulating layer is a wrapping tape made of PET material having one or more layers.
5. The cable as claimed in claim 1, wherein the differential insertion loss of the cable is attenuated less than −14 dB at a frequency of 40 GHz.
Description
BRIEF DESCRIPTION OF THE DRAWING
[0007]
[0008]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0009] Referring to
[0010] In this embodiment of two core wires 10, each core wire 10 includes an inner conductor 1 and an inner insulating layer 2 covering the inner conductor 1. The inner insulating layer 2 of each core wire 10 is extruded and molded to cover the inner conductor 1. The inner conductor 1 is used for transmitting high-speed signal. The inner insulating layers 2 of the two core wires 10 are in contact with each other. The shielding layer 30 is wrapping around the two core wire 10 in a longitudinal wrapping way or in a spiral winding way. The upper and lower sides between the shielding layer 30 and the two core wires 10 form air gaps 70. There are two ground wires 60, and the ground wires 60 are located on the left and right sides of the shielding layer 30, or located in the corresponding air gaps 70 on the upper and lower sides. The ground wire 60 can be only one. The shielding layer 30 can be one of Aluminum coated with PP (polypropylene), Aluminum coated with PE (polyethylene), Aluminum coated with PTFE (Polytetrafluoroethylene), Copper coated with PP, Copper coated with PE, Copper coated with PTFE. The shielding layer 30 is a PP layer 31 and a metal aluminum layer 32 formed on the PP layer 31, or a PE layer 31 and a metal aluminum layer 32 formed on the PE layer 31, or a PTFE layer 31 and a metal aluminum layer 32 formed on the PTFE layer 31, or a PP layer 31 and a metal copper layer 32 formed on the PP layer 31, or a PE layer 31 and a metal copper layer 32 formed on the PE layer 31, or a PTFE layer 31 and a metallic copper layer 32 formed on the PTFE layer 31. The aluminum layer 32 of the shielding layer 30 faces outward or the copper layer 32 faces outward. The outer insulating layer 50 can be provided as one layer or multiple layers, and its material can be PET (polyethylene terephthalate) tape. The outer insulating layer 50 is wrapped around the shielding layer 30 in a spiral winding way or a longitudinal winding way.
[0011] Please refer to
[0012]
[0013] The present invention uses aluminum coated PP, or aluminum coated PE, or aluminum coated PTFE, or copper coated PP, or copper coated PE, or copper coated PTFE as the shielding layer. The loss factor of PP, PE, PTFE material is smaller than that of traditional PET material, so the overall attenuation value of the cable is smaller, which improves the shielding effect. Compared with PET, PP material is lighter in weight and cheaper in price. The cable of the present invention has a high-speed data transmission capability with a signal transmission frequency greater than 40 GHz.