Flexible conductive track arrangement and manufacturing method
A flexible conductive track arrangement has a pre-flexing condition in which the arrangement is generally planar. Conductive tracks are formed from a metal layer and they are covered above and below by insulator layers. The elongate conductive tracks are generally planar but locally corrugated perpendicularly to the general plane. This enables improved binding performance, for example to form tight windings using the conductive tracks.
1. A flexible conductive track arrangement, comprising:
a set of conductive tracks formed from a metal layer;
a first insulator layer above the conductive tracks; and
a second insulator layer below the conductive tracks,
wherein the conductive tracks extend in a plane and are locally corrugated perpendicular to the plane, the set of conductive tracks being wound around a carrier, and
wherein the corrugations are formed by two sloped sides connected to a top surface that is parallel to a bottom surface creating separate islands with raised ridges.
2. The flexible conductive track arrangement according to claim 1 , wherein the corrugations have a height in the range of 0.5 to 10 μm.
3. The flexible conductive track arrangement according to claim 1 , wherein the corrugations have a pitch in the range of 5 to 50 μm.
4. The flexible conductive track arrangement according to claim 1 , wherein the conductive track length is in the range of 10 cm to 40 cm.
5. The flexible conductive track arrangement according to claim 1 , wherein the set of conductive tracks comprises 10 to 30 tracks.
6. The flexible conductive track arrangement according to claim 1 , wherein the set of tracks has an overall width between 0.2 and 1.0 mm.
7. The flexible conductive track arrangement according to claim 1 , wherein the first and second insulator layers each comprise a ceramic sub-layer adjacent the metal layer and an outer polymer sub-layer.
8. A conductor arrangement, comprising:
a carrier; and
a flexible conductive track arrangement comprising a set of conductive tracks formed from a metal layer, a first insulator layer above the conductive tracks, and a second insulator layer below the conductive tracks, wherein the conductive tracks extend in a plane and are locally corrugated perpendicular to the plane, the flexible conductive track arrangement being wound around the carrier, and wherein the corrugations are formed by two sloped sides connected to a top surface that is parallel to a bottom surface creating separate islands with raised ridges.
9. The conductor arrangement according to claim 8 , wherein the carrier comprises a section having a tubular or cylindrical shape.
10. The conductor arrangement according to claim 9 , wherein in at least one location within the section the carrier comprises a cross section with a cross sectional dimension of less than 1 mm or less than 0.5 mm.
11. The conductor arrangement according to claim 10 , wherein the cross section is circular and the cross sectional dimension is the diameter.