Flexible circuit board
A flexible circuit board including at least two electrical conducting layers, at least two non-electrical conducting layers, and at least one adhesion layer is provided. The non-electrical conducting layers are disposed between the electrical conducting layers. The non-electrical conducting layers are adhered together via the adhesion layer. A sum of thickness of the non-electrical conducting layers is greater than 4 mil, and there is no electrical conducting layer sandwiched between the at least two non-electrical conducting layers.
1. A flexible circuit board, comprising:
at least two electrical conducting layers;
at least two non-electrical conducting layers, disposed between the at least two electrical conducting layers; and
at least one adhesion layer, the at least two non-electrical conducting layers being adhered together via the at least one adhesion layer, wherein a sum of thickness of the at least two non-electrical conducting layers is greater than 4 mil, and there is no electrical conducting layer sandwiched between the at least two non-electrical conducting layers,
wherein one of the electrical conducting layers is a signal transmission layer, and the other of the electrical conducting layers is an Electromagnetic Interference (EMI) shielding layer.
2. The flexible circuit board according to claim 1 , wherein the at least two non-electrical conducting layers comprise at least one material.
3. The flexible circuit board according to claim 1 , wherein the at least two non-electrical conducting layers comprise at least one of polyimide (PI), modified polyimide (modified PI), polyimide stiffener (PI stiffener) and liquid crystal polymer (LCP).
4. The flexible circuit board according to claim 1 , wherein the electrical conducting layer and the non-electrical conducting layer located on the same side of the adhesive layer are a flexible copper clad laminate (FCCL).
5. The flexible circuit board according to claim 1 , wherein the number of the at least two non-electrical conducting layers is greater than or equal to the number of the at least two electrical conducting layers.
6. The flexible circuit board according to claim 1 , comprising a plurality of electrical conducting layers, wherein the electrical conducting layers are divided into a plurality of signal transmission layers and a plurality of grounding layers, and the flexible circuit board further comprises at least one conductive hole electrically connected between the grounding layers.
7. The flexible circuit board according to claim 6 , wherein the signal transmission layer and the grounding layers that are on the same layer form at least one signal transmission path and a plurality of grounding paths, and the lateral sides or the two opposite sides of the at least one signal transmission path are provided with the grounding paths or the at least one conductive hole.
8. The flexible circuit board according to claim 1 , comprising a plurality of conductive holes, wherein the spacing between the mutually adjacent conductive holes is less than or equal to 2 mm.
9. A flexible circuit board, comprising:
at least two electrical conducting layers;
at least two non-electrical conducting layers, disposed between the at least two electrical conducting layers; and
at least one adhesion layer, the at least two non-electrical conducting layers being adhered together via the at least one adhesion layer, wherein a sum of thickness of the at least two non-electrical conducting layers is greater than 4 mil, and there is no electrical conducting layer sandwiched between the at least two non-electrical conducting layers,
wherein the at least two electrical conducting layers comprise a plurality of signal transmission layers, a plurality of grounding layers and an Electromagnetic Interference (EMI) shielding layer, the EMI shielding layer is electrically connected to at least a part of the grounding layers, and the EMI shielding layer covers at least a part of the at least two non-electrical conducting layers.
10. The flexible circuit board according to claim 9 , wherein the EMI shielding layer completely covers the at least two non-electrical conducting layers.