Antenna-in-package structures with broadside and end-fire radiations
Package structures are provided having antenna-in-packages that are integrated with semiconductor RFIC (radio frequency integrated circuit) chips to form compact integrated radio/wireless communications systems that operate in the millimeter wave (mmWave) frequency range with radiation in broadside and end-fire directions.
1. An antenna package, comprising:
a first substrate;
a second substrate bonded to the first substrate using an adhesive layer;
wherein the first substrate comprises a first metallization layer disposed on a first surface of the first substrate and a second metallization layer disposed on a second surface of the first substrate,
wherein the first metallization layer comprises a first planar antenna, and a grounded planar parasitic element disposed adjacent to the first planar antenna, wherein the first planar antenna is configured to receive or transmit broadside signals, wherein the grounded planar parasitic element is configured to reduce surface waves on the surface of the first substrate, and wherein the second metallization layer comprises a capacitively coupled ground plane;
wherein the second substrate comprises a third metallization layer disposed on a first surface of the second substrate, wherein the third metallization layer comprises a dedicated ground plane, wherein the capacitively coupled ground plane is coupled to the dedicated ground plane through the adhesive layer;
wherein the second substrate comprises a fourth metallization layer formed on second surface of the second substrate, wherein the fourth metallization layer comprises a plurality of contact pads, one or more antenna feed lines, and a second planar antenna, wherein the second planar antenna is configured to transmit or receive end-fire signals;
a plurality of metalized via holes formed through the first and second substrates to provide one or more antenna feed lines from contact pads of the fourth metallization layer to the first planar antenna, and to provide connections from contact pads of the fourth metallization layer to the power supply patch of the first metallization layer;
a plurality of metalized via holes formed through the first substrate to provide connections from the grounded planar parasitic element of the first metallization layer to the capacitively coupled ground plane of the second metallization layer; and
a plurality of metalized via holes formed through the second substrate to provide connections from contact pads of the fourth metallization layer to the ground plane of the third metallization layer.
2. The antenna package of claim 1 , wherein the first and second substrates are printed circuit boards that are each formed from a hydrocarbon ceramic laminate.
3. The antenna package of claim 1 , wherein the grounded planar parasitic element comprises a grounded patch element disposed adjacent to a critical edge of the first planar antenna.
4. The antenna package of claim 1 , wherein the grounded planar parasitic element comprises a grounded parasitic ring element that surrounds the first planar antenna.
5. The antenna package of claim 1 , wherein the first metallization layer comprises a power supply patch which is configured to distribute a DC power supply voltage.