Thin-film devices and fabrication
US-2024082949-A1 · Mar 14, 2024 · US
US10650941B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10650941-B2 |
| Application number | US-201615007432-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 27, 2016 |
| Priority date | Mar 3, 2009 |
| Publication date | May 12, 2020 |
| Grant date | May 12, 2020 |
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Official abstract text for this publication.
Cable foil tape having random or pseudo-random patterns or long pattern lengths of discontinuous metallic shapes and a method for manufacturing such patterned foil tape are provided. In some embodiments, a laser ablation system is used to selectively remove regions or paths in a metallic layer of a foil tape to produce random distributions of randomized shapes, or pseudo-random patterns or long pattern lengths of discontinuous shapes in the metal layer. In some embodiments, the foil tape is double-sided, having a metallic layer on each side of the foil tape, and the laser ablation system is capable of ablating nonconductive pathways into the metallic layer on both sides of the foil tape.
Opening claim text (preview).
We claim: 1. A communication cable comprising: a first communication connector and a second communication connector; a plurality of twisted pairs of insulated conductors extending between said first communication connector and said second communication connector; and a laminated film spanning a length and wrapped around said plurality of twisted pairs, said laminated film including: an insulating substrate having a first edge extending in a direction of said length; and at least one layer of metallic shapes formed from a metal layer, said metallic shapes being arranged in a random or pseudo-random layout, at least some of said metallic shapes being near to said first edge, and at least some of said metallic shapes that are near to said first edge being nonadjacent with said first edge. 2. The communication cable of claim 1 , wherein all of said metallic shapes that are near to said first edge are nonadjacent with said first edge. 3. The communication cable of claim 1 , wherein said insulating substrate further has a second edge substantially parallel with said first edge, at least some of said metallic shapes being near to said second edge, at least some of said metallic shapes that are near to said second edge being nonadjacent with said second edge. 4. The communication cable of claim 3 , wherein all of said metallic shapes that are near to said first edge are nonadjacent with said first edge, and wherein all of said metallic shapes that are near to said second edge are nonadjacent with said second edge. 5. The communication cable of claim 1 , wherein said metallic shapes have a thickness in the range of approximately 0.1 micrometer to approximately 100 micrometer. 6. A communication cable comprising: a first communication connector and a second communication connector; a plurality of twisted pairs of insulated conductors extending between said first communication connector and said second communication connector; and a laminated film spanning a length and wrapped around said plurality of twisted pairs, said laminated film including: an insulating substrate having a first edge extending in a direction of said length; and at least one layer of metallic shapes formed from a metal layer, said metallic shapes being arranged in a random or pseudo-random layout, at least some of said metallic shapes being near to said first edge, at least some of said metallic shapes that are near to said first edge being separated from said first edge by a gap having a width ranging from less than 5 mil to about 0.5 mil. 7. The communication cable of claim 6 , wherein all of said metallic shapes that are near to said first edge are separated from said first edge by said gap having a width ranging from less than 5 mil to about 0.5 mil. 8. The communication cable of claim 6 , wherein said insulating substrate further has a second edge substantially parallel with said first edge, at least some of said metallic shapes being near to said second edge, at least some of said metallic shapes that are near to said second edge being separated from said second edge by a second gap having a width ranging from less than 5 mil to about 0.5 mil. 9. The communication cable of claim 8 , wherein all of said metallic shapes that are near to said first edge are separated from said first edge by said gap having a width ranging from less than 5 mil to about 0.5 mil, and wherein all of said metallic shapes that are near to said second edge are separated from said second edge by said second gap having a width ranging from less than 5 mil to about 0.5 mil. 10. The communication cable of claim 6 , wherein said metallic shapes have a thickness in the range of approximately 0.1 micrometer to approximately 100 micrometer.
the conductive material being removed by irradiation, e.g. by photons, alpha or beta particles · CPC title
Assembling elongated conductors, e.g., splicing, etc. · CPC title
Patterned shielding planes, ground planes or power planes (H05K1/0253 takes precedence) · CPC title
using absorbing layers on the workpiece, e.g. for marking or protecting purposes · CPC title
taking account of the properties of the material involved · CPC title
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