Flexible printed circuit for bridging and display panel
View Patent ↗A flexible printed circuit for bridging is provided. The flexible printed circuit has at least one via, at least one overflow groove is provided at a first distance from an edge of the via, and the overflow groove is provided in a cover layer on a side of a soldering surface of the flexible printed circuit.
1. A flexible printed circuit for bridging, wherein the flexible printed circuit has at least one via, at least one overflow groove is provided at a first distance from an edge of the via, and the overflow groove is provided in a cover layer on a side of a soldering surface of the flexible printed circuit;
wherein a first copper plating layer is provided on a side of the cover layer that is away from the soldering surface;
wherein a groove depth of the overflow groove is less than a thickness of the cover layer, a second copper plating layer is provided on a groove bottom of the overflow groove and a groove wall of the overflow groove that is close to the via, and the second copper plating layer is connected to the first copper plating layer.
2. The flexible printed circuit of claim 1 , wherein the overflow groove is an annular groove, and a distance between a first point on an inner ring edge of the annular groove and a second point on the edge of the via that is closest to the first point is the first distance.
3. The flexible printed circuit of claim 1 , wherein the first distance is greater than or equal to 0.3 mm.
4. The flexible printed circuit of claim 1 , wherein the overflow groove has a groove width of at least 0.2 mm.
5. The flexible printed circuit of claim 1 , wherein a third copper plating layer is provided on an inner wall of the via, and the third copper plating layer is connected to the first copper plating layer.
6. The flexible printed circuit of claim 1 , wherein a cross-sectional shape of the overflow groove is any one of: a rectangle, a trapezoid, or an arc shape.
7. The flexible printed circuit of claim 1 , wherein the via is circular in shape and the overflow groove is an annular overflow groove having a same center as the circular via.
8. The flexible printed circuit of claim 1 , wherein the via is square in shape and the overflow groove is a linear overflow groove or a square ring.
9. A display panel, comprising a main flexible printed circuit and a flexible printed circuit for bridging, wherein the flexible printed circuit for bridging has at least one via, at least one overflow groove is provided at a first distance from an edge of the via, the overflow groove is provided in a cover layer on a side of a soldering surface of the flexible printed circuit for bridging, the main flexible printed circuit is connected to the flexible printed circuit through the via, and the via and the overflow groove are provided with a soldering material;
wherein a first copper plating layer is provided on a side of the cover layer that is away from the soldering surface;
wherein a groove depth of the overflow groove is less than a thickness of the cover layer, a second copper plating layer is provided on a groove bottom of the overflow groove and a groove wall of the overflow groove that is close to the via, and the second copper plating layer is connected to the first copper plating layer.
10. The display panel of claim 9 , wherein the overflow groove is an annular groove, and a distance between a first point on an inner ring edge of the annular groove and a second point on the edge of the via that is closest to the first point is the first distance.
11. The display panel of claim 9 , wherein the first distance is equal to or greater than 0.3 mm, and the overflow groove has a groove width of at least 0.2 mm.
12. The display panel of claim 9 , wherein a third copper plating layer is provided on an inner wall of the via, and the third copper plating layer is connected to the first copper plating layer.
13. The display panel of claim 9 , wherein a cross-sectional shape of the overflow groove is any one of: a rectangle, a trapezoid, or an arc shape.
14. The display panel of claim 9 , wherein the via is circular in shape and the overflow groove is an annular overflow groove having a same center as the circular via.
15. The display panel of claim 9 , wherein the via is square in shape and the overflow groove is a linear overflow groove or a square ring.