Packages with Si-substrate-free interposer and method forming same
A method includes forming a plurality of dielectric layers, forming a plurality of redistribution lines in the plurality of dielectric layers, forming stacked vias in the plurality of dielectric layers with the stacked vias forming a continuous electrical connection penetrating through the plurality of dielectric layers, forming a dielectric layer over the stacked vias and the plurality of dielectric layers, forming a plurality of bond pads in the dielectric layer, and bonding a device die to the dielectric layer and a first portion of the plurality of bond pads through hybrid bonding.
1. A method comprising:
forming a logic die, wherein forming the logic die comprises:
forming at least one first device on a first substrate; and
forming a first interconnect layer over the at least one first device, wherein the first interconnect layer comprises at least one first interconnect structure;
forming a memory die, wherein forming the memory die comprises:
forming at least one second device on a second substrate; and
forming a second interconnect layer over the at least one second device, wherein the second interconnect layer comprises at least one second interconnect structure; and
bonding the first interconnect layer of the logic die with the second interconnect layer of the memory die, such that the at least one first device of the logic die is electrically connected with the at least one second device of the memory die through the at least one first interconnect structure or the at least one second interconnect structure.
2. The method of claim 1 , further comprising bonding the memory die to a blank die.
3. The method of claim 2 , further comprising bonding the blank die to a first die, wherein the blank die comprises a third substrate.
4. The method of claim 3 , wherein the first die and the memory die are bonded to the blank die through an adhesive layer that has a thermal conductivity higher than 5 W/K*m.
5. The method of claim 4 , wherein the third substrate comprises a metal.
6. The method of claim 1 , wherein the bonding of the first interconnect layer of the logic die with the second interconnect layer of the memory die comprises dielectric-to-dielectric bonding and metal-to-metal bonding at a bonding interface.
7. A method comprising:
forming a first memory die, wherein forming the first memory die comprises:
forming at least one first device on a first substrate; and
forming a first interconnect layer over the at least one first device, wherein the first interconnect layer comprises at least one first interconnect structure;
forming a second memory die, wherein forming the second memory die comprises;
forming at least one second device on a second substrate; and
forming a second interconnect layer over the at least one second device, wherein the second interconnect layer comprises at least one second interconnect structure;
bonding the first interconnect layer of the first memory die to the second interconnect layer of the second memory die, such that the at least one first device of the first memory die is electrically connected with the at least one second device of the second memory die through the at least one first interconnect structure or the at least one second interconnect structure;
forming a logic die, wherein forming the logic die comprises:
forming at least one third device on a third substrate; and
forming a third interconnect layer over the at least one third device, wherein the third interconnect layer comprises at least one third interconnect structure; and
bonding the logic die to the first memory die, such that the at least one third device of the logic die is electrically connected with the at least one first device of the first memory die through the at least one first interconnect structure or the at least one third interconnect structure.
8. The method of claim 7 , wherein bonding the first interconnect layer of the first memory die with the second interconnect layer of the second memory die comprises dielectric-to-dielectric bonding and metal-to-metal bonding at a bonding interface.
9. The method of claim 7 , further comprising forming at least one vertical interconnect structure extending through the second substrate of the second memory die, wherein the at least one vertical interconnect structure provides electrical connection to the at least one second interconnect structure.
10. The method of claim 7 , further comprising forming at least one vertical interconnect structure extending through the third substrate of the logic die, wherein the at least one vertical interconnect structure provides electrical connection to the at least one third interconnect structure.
11. The method of claim 7 , further comprising bonding the logic die to a first die, wherein a top surface of the first die is level with a top surface of the first memory die.
12. The method of claim 11 , further comprising bonding the first memory die and the first die to a second die, wherein the first memory die and the first die are bonded to the second die through an adhesive layer that has a thermal conductivity higher than 5 W/K*m.
13. The method of claim 12 , wherein the second die is free of passive devices and active devices, and wherein the second die comprises a silicon substrate.
14. The method of claim 12 , further comprising encapsulating the second memory die in a first encapsulating material prior to bonding the first memory die to the second memory die.
15. The method of claim 13 , further comprising encapsulating the first die in a second encapsulating material prior to bonding the first memory die to the second die.
16. A package comprising:
a logic die comprising:
at least one first device on a first substrate; and
a first interconnect layer over the at least one first device, the first interconnect layer comprising at least one first interconnect structure;
a first memory die comprising:
at least one second device on a second substrate; and
a second interconnect layer over the at least one second device, the second interconnect layer comprising at least one second interconnect structure;
a second memory die comprising:
at least one third device on a third substrate; and
a third interconnect layer over the at least one third device, the third interconnect layer comprising at least one third interconnect structure, wherein the logic die is bonded with the first memory die, and the at least one first device of the logic die is electrically connected with the at least one second device of the first memory die through the at least one first interconnect structure or the at least one second interconnect structure; and wherein the third interconnect layer of the second memory die is bonded with the second interconnect layer of the first memory die, and the at least one first device of the logic die is electrically connected with the at least one third device of the second memory die through the at least one first interconnect structure, the at least one second interconnect structure, or the at least one third interconnect structure.
17. The package of claim 16 , further comprising a bonding interface between the third interconnect layer of the second memory die and the second interconnect layer of the first memory die, wherein the bonding interface comprises dielectric-to-dielectric bonding and metal-to-metal bonding.
18. The package of claim 16 , further comprising a first die bonded to the first memory die, wherein the logic die and the second memory die are surrounded by a first encapsulating material.
19. The package of claim 18 , further comprising a second die bonded to the first die and the logic die, wherein the second die is bonded to the first die using an adhesive layer that has a thermal conductivity higher than 5 W/K*m.
20. The package of claim 19 , further comprising a bonding interface between the first interconnect layer of the logic die and a fourth interconnect layer of the second die, wherein the bonding interface comprises dielectric-to-dielectric bonding and metal-to-metal bonding.