Package architecture with memory chips having different process regions
Embodiments of a microelectronic assembly include: a first integrated circuit (IC) die having a first memory circuit and a second memory circuit, a second IC die; a third IC die; and a package substrate. The first IC die comprises: a first portion comprising a first active region and a first backend region in contact with the first active region; and a second portion comprising a second active region and a second backend region in contact with the second active region. The second portion is surrounded by the first portion in plan view, the first memory circuit is in the first portion, the second memory circuit is in the second portion, the first active region comprises transistors that are larger than transistors in the second active region, and the first backend region comprises conductive traces that have a larger pitch than conductive traces in the second backend region.
1 . A microelectronic assembly, comprising:
a first integrated circuit (IC) die having a first memory circuit and a second memory circuit,
a second IC die;
a third IC die; and
a package substrate,
wherein:
the second IC die is between the first IC die and the package substrate,
the first IC die comprises:
a first portion comprising a first active region and a first backend region in contact with the first active region; and
a second portion comprising a second active region and a second backend region in contact with the second active region,
the second portion is surrounded by the first portion in plan view,
the first memory circuit is in the first portion,
the second memory circuit is in the second portion,
the first active region comprises transistors that are larger than transistors in the second active region, and
the first backend region comprises conductive traces that have a larger pitch than conductive traces in the second backend region.
2 . The microelectronic assembly of claim 1 , wherein:
the first portion is configured for speeds in a range between 60 nanoseconds and 100 nanoseconds, and
the second portion is configured for speeds in a range between 20 nanoseconds and 50 nanoseconds.
3 . The microelectronic assembly of claim 1 , wherein the first memory circuit and the second memory circuit are dynamic random-access memory (DRAM) circuits.
4 . The microelectronic assembly of claim 1 , wherein: the third IC die is between the first IC die and the second IC die.
5 . The microelectronic assembly of claim 1 , wherein:
the first IC die is one of a plurality of first IC dies, and
each of the first IC dies in the plurality of first IC dies has the first memory circuit and the second memory circuit.
6 . The microelectronic assembly of claim 1 , wherein:
an organic dielectric material is between the second IC die and the package substrate, and
through-dielectric vias (TDVs) through the organic dielectric material conductively couple the second IC die and the package substrate.
7 . The microelectronic assembly of claim 1 , wherein:
the first IC die is coupled to the second IC die,
the third IC die is adjacent to the first IC die, and
the third IC die is coupled to the second IC die.
8 . The microelectronic assembly of claim 1 , wherein:
the third IC die comprises another one of the first memory circuit and another one of the second memory circuit in structures substantially similar to the first IC die, and
the third IC die is between the first IC die and the second IC die.
9 . An integrated circuit (IC) structure, comprising:
a substrate comprising a semiconductor material;
a first portion comprising a first active region and a first backend region; and
a second portion comprising a second active region and a second backend region,
wherein:
the first portion is in contact with the second portion along an interface,
the first active region and the second active region are in the substrate,
the first active region comprises transistors that are larger than transistors in the second active region,
the first backend region comprises conductive traces that have a larger pitch than conductive traces in the second backend region, and
the first portion and the second portion comprise dynamic random-access memory (DRAM) circuits.
10 . The IC structure of claim 9 , wherein:
the first backend region comprises a first number of metal layers,
the second backend region comprises a second number of metal layers, and
the first number is smaller than the second number.
11 . The IC structure of claim 9 , wherein:
the first active region does not contain any through-substrate vias (TSVs), and
the second active region comprises one or more TSVs.
12 . The IC structure of claim 9 , wherein:
the first backend region does not contain metal-insulator-metal (MIM) capacitors, and
the second backend region comprises MIM capacitors.
13 . The IC structure of claim 9 , wherein:
the first active region does not contain trench capacitors, and
the second active region comprises trench capacitors.
14 . The IC structure of claim 9 , wherein:
the first backend region comprises a first inorganic dielectric material,
the second backend region comprises a second inorganic dielectric material, and
the first inorganic dielectric material is different from the second inorganic dielectric material.
15 . The IC structure of claim 9 , wherein the second backend region further extends over the first backend region.
16 . The IC structure of claim 9 , wherein the first portion is surrounded by the second portion in plan view.
17 . The IC structure of claim 9 , wherein the second portion is surrounded by the first portion in plan view.
18 . An integrated circuit (IC) structure, comprising:
a substrate comprising a semiconductor material, the substrate having a first side and an opposing second side;
a first portion comprising a first active region and a first backend region; and
a second portion comprising a second active region and a second backend region,
wherein:
the first portion is on the first side of the substrate,
the second portion is on the second side of the substrate,
the first active region comprises transistors that are larger than transistors in the second active region,
the first backend region comprises conductive traces that have a larger pitch than conductive traces in the second backend region, and
the first portion and the second portion comprise dynamic random-access memory (DRAM) circuits.
19 . The IC structure of claim 18 , further comprising vias extending through the substrate, wherein the vias conductively couple the first portion and the second portion.
20 . The IC structure of claim 18 , further comprising first interconnects coupled to the first portion and second interconnects coupled to the second portion, wherein the first interconnects have a larger pitch than the second interconnects.