Structure and formation method of chip package with antenna element
Structures and formation methods of a chip package are provided. The chip package includes a semiconductor die having a conductive element and a first protective layer surrounding the semiconductor die. The chip package also includes a second protective layer over the semiconductor die and the first protective layer. The chip package further includes an antenna element over the second protective layer. The antenna element is electrically connected to the conductive element of the semiconductor die.
1. A method for forming a chip package, comprising:
forming a first conductive feature over a support substrate;
disposing a semiconductor die over the support substrate;
forming a first protective layer over the support substrate to surround the semiconductor die and the first conductive feature;
replacing the support substrate with a second protective layer;
disposing a conductive pin in the second protective layer;
forming an antenna element over the second protective layer, wherein the antenna element is electrically connected to the conductive pin; and
forming electrical connection between a conductive element of the semiconductor die and the antenna element through the first conductive feature.
2. The method for forming a chip package as claimed in claim 1 , further comprising:
forming an opening in the second protective layer; and
forming a second conductive feature in the opening to be electrically connected to the first conductive feature, wherein the second conductive feature is electrically connected to the antenna element, and is electrically connected to the conductive element of the semiconductor die through the first conductive feature.
3. The method for forming a chip package as claimed in claim 1 , further comprising:
forming an opening in the second protective layer;
printing a conductive paste over the second protective layer to fill the opening; and
curing the conductive paste to form a conductive layer, wherein the conductive layer has a first portion over the second protective layer and a second portion filling the opening, the first portion forms the antenna element, and the second portion forms a second conductive feature.
4. The method for forming a chip package as claimed in claim 3 , wherein the conductive pin is installed in the opening before printing the conductive paste.
5. The method for forming a chip package as claimed in claim 4 , wherein the conductive pin has a lower portion and an upper portion, the lower portion is between the upper portion and the first protective layer, and the lower portion is wider than the upper portion.
6. The method for forming a chip package as claimed in claim 1 , further comprising:
forming an opening in the second protective layer; and
forming a conductive layer over the first protective layer, wherein the conductive layer has a first portion over the second protective layer and a second portion extending into the opening, the first portion forms the antenna element, and the second portion forms a second conductive feature.
7. The method for forming a chip package as claimed in claim 6 , wherein the conductive layer is formed using an electroplating process, an electroless plating process, or a combination thereof.
8. The method for forming a chip package as claimed in claim 6 ,
wherein the conductive pin is installed in the opening before the conductive layer is formed, and the method further comprises:
forming a seed layer on the conductive pin before the conductive layer is formed.
9. The method for forming a chip package as claimed in claim 1 , further comprising:
disposing a second semiconductor die over the support substrate before the first protective layer is formed, wherein after the first protective layer is formed, the first protective layer surrounds the second semiconductor die.
10. The method for forming a chip package as claimed in claim 1 , wherein the second protective layer has a lower dielectric constant than that of the first protective layer.
11. The method for forming a chip package as claimed in claim 1 , wherein the second protective layer has a lower dissipation factor than that of the first protective layer.
12. The method for forming a chip package as claimed in claim 1 , further comprising forming a shielding element over the support substrate before the semiconductor die is disposed, wherein the semiconductor die covers a portion of the shielding element after the semiconductor die is disposed.
13. The method for forming a chip package as claimed in claim 12 , wherein the shielding element is electrically isolated from the antenna element.
14. A method for forming a chip package, comprising:
forming a first conductive feature over a support substrate;
disposing a semiconductor die over the support substrate;
forming a first protective layer over the support substrate to surround the semiconductor die and the first conductive feature;
removing the support substrate;
forming a second protective layer over the first protective layer;
disposing a conductive pin in the second protective layer;
forming an antenna element over the second protective layer, wherein the antenna element is electrically connected to the conductive pin; and
forming electrical connection between a conductive element of the semiconductor die and the antenna element through the first conductive feature.
15. The method for forming a chip package as claimed in claim 14 , further comprising:
forming an opening in the second protective layer; and
forming a second conductive feature in the opening to be electrically connected to the first conductive feature, wherein the second conductive feature is electrically connected to the antenna element, and is electrically connected to the conductive element of the semiconductor die.
16. The method for forming a chip package as claimed in claim 14 , further comprising:
forming an opening in the second protective layer;
printing a conductive paste over the second protective layer to fill the opening; and
curing the conductive paste to form a conductive layer, wherein the conductive layer has a first portion over the second protective layer and a second portion filling the opening, the first portion forms the antenna element, and the second portion electrically connects the antenna element and the conductive element of the semiconductor die.
17. The method for forming a chip package as claimed in claim 16 , wherein the conductive pin is installed in the opening before printing the conductive paste.
18. The method for forming a chip package as claimed in claim 14 , wherein the conductive pin has a lower portion and an upper portion, the lower portion is between the upper portion and the first protective layer, and the lower portion is wider than the upper portion.
19. A method for forming a chip package, comprising:
forming a conductive feature over a support substrate;
disposing a semiconductor die over the support substrate;
forming a first protective layer to surround the semiconductor die and the conductive feature;
forming a second protective layer over the first protective layer;
disposing a conductive pin in the second protective layer;
forming an antenna element over the second protective layer, wherein the second protective layer is between the antenna element and the semiconductor die, and the antenna element is electrically connected to the conductive pin; and
forming electrical connection between a conductive element of the semiconductor die and the antenna element through the conductive feature.
20. The method for forming the chip package as claimed in claim 19 , further comprising:
forming an opening in the second protective layer; and
forming a conductive layer over the second protective layer, wherein a first portion of the conductive layer extends into the opening, and a second portion of the conductive layer forms the antenna element.