IP Library › Granted Patent US 12,648,143
Granted Patent B2
US 12,648,143 · App. 19/243,077 · Granted Jun 2, 2026

3D semiconductor device and structure with logic and memory

Inventors: Zvi Or-Bach (Haifa, IL); Jin-Woo Han (San Jose, CA)
Assignee: Monolithic 3D Inc.
H10B43/27H10B43/10H10B43/20H10D30/63H10D30/69H10D62/834H10D64/64H10D89/10H10W20/435H10B41/10H10B41/20H10B53/20
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Quick Facts
Patent No.
US 12,648,143
App. No.
19/243,077
Filed
Jun 19, 2025
Granted
Jun 2, 2026
Kind
B2
Art Unit
2824
USPC
257/324
Abstract

A 3D semiconductor device including: a first level including a single crystal layer, a memory control circuit, a first metal layer, a second metal layer, and a third metal layer; connection of the first transistors comprises the first, and/or the second, and/or the third metal layer; a fourth metal layer disposed atop third transistors disposed atop second transistors disposed atop said first level; a memory array including word-lines and at least four memory mini arrays which include at least four rows by four columns of memory cells, each of the memory cells includes at least one of the second transistors (at least one with a metal gate) or at least one of the third transistors; a connection path from the fourth metal to the third metal including a via disposed through the memory array; the memory control circuit includes first transistors and voltage regulators.

Claims (82)

1 . A 3D semiconductor device, the device comprising:

a first level comprising a first single crystal layer and a memory control circuit, said memory control circuit comprising a plurality of first transistors,

wherein said first level comprises a first metal layer, a second metal layer, and a third metal layer, and

wherein connection of said plurality of first transistors comprises said first metal layer, and/or said second metal layer, and/or said third metal layer;

a plurality of second transistors disposed atop said first level;

a plurality of third transistors disposed atop said plurality of second transistors;

a fourth metal layer disposed atop said plurality of third transistors;

a memory array comprising word-lines,

wherein said memory array comprises at least four memory mini-arrays,

wherein each of said memory mini-arrays comprises at least four rows by four columns of memory cells,

wherein at least one of said plurality of second transistors comprises a metal gate, and

wherein each of said memory cells comprises at least one of said plurality of second transistors or at least one of said plurality of third transistors; and

a connection path from said fourth metal to said third metal,

wherein said connection path comprises a via disposed through said memory array, and

wherein said memory control circuit comprises a plurality of voltage regulators.

2 . The 3D semiconductor device according to claim 1 ,

wherein said memory control circuit is configured to control each of said four memory mini-arrays independently.

3 . The 3D semiconductor device according to claim 1 ,

wherein at least one of said plurality of second transistors is self-aligned to at least one of said plurality of third transistors, being processed following a same lithography step.

4 . The 3D semiconductor device according to claim 1 ,

wherein said memory control circuit comprises at least one Look Up Table circuit (“LUT”).

5 . The 3D semiconductor device according to claim 1 ,

wherein said memory control circuit comprises at least one cache memory unit.

6 . The 3D semiconductor device according to claim 1 , further comprising:

an upper level disposed atop said fourth metal layer,

wherein said upper level comprises a mono-crystalline silicon layer.

7 . The 3D semiconductor device according to claim 1 ,

wherein said memory control circuit comprises at least one power down control circuit.

8 . A 3D semiconductor device, the device comprising:

a first level comprising a first single crystal layer and a memory control circuit, said memory control circuit comprising a plurality of first transistors,

wherein said first level comprises a first metal layer, a second metal layer, and a third metal layer, and

wherein connection of said plurality of first transistors comprises said first metal layer, and/or said second metal layer, and/or said third metal layer;

a plurality of second transistors disposed atop said first level;

a plurality of third transistors disposed atop said plurality of second transistors;

a fourth metal layer disposed atop said plurality of third transistors;

a memory array comprising word-lines,

wherein said memory array comprises at least four memory mini-arrays,

wherein each of said memory mini-arrays comprises at least four rows by four columns of memory cells,

wherein at least one of said plurality of second transistors comprises a metal gate, and

wherein each of said memory cells comprises at least one of said plurality of second transistors or at least one of said plurality of third transistors; and

a connection path from said fourth metal to said third metal,

wherein said connection path comprises a via disposed through said memory array, and

wherein said memory control circuit comprises at least one SRAM cache memory circuit.

9 . The 3D semiconductor device according to claim 8 ,

wherein said memory control circuit is configured such that it is able to control each of said at least four memory mini-arrays independently.

10 . The 3D semiconductor device according to claim 8 ,

wherein at least one of said plurality of second transistors is self-aligned to at least one of said plurality of third transistors, being processed following a same lithography step.

11 . The 3D semiconductor device according to claim 8 ,

wherein said first level comprises at least one in-out interface control circuit.

12 . The 3D semiconductor device according to claim 8 ,

wherein said first level comprises at least one differential read circuit.

13 . The 3D semiconductor device according to claim 8 , further comprising:

an upper level disposed atop said fourth metal layer,

wherein said upper level comprises a mono-crystalline silicon layer.

14 . The 3D semiconductor device according to claim 8 , further comprising:

a second connection path between said fourth metal and said second metal,

wherein said second connection path comprises a via through said memory array.

15 . A 3D semiconductor device, the device comprising:

a first level comprising a first single crystal layer and a memory control circuit, said memory control circuit comprising a plurality of first transistors,

wherein said first level comprises a first metal layer, a second metal layer, and third metal layer, and

wherein connection of said plurality of first transistors comprises said first metal layer, and/or said second metal layer, and/or said third metal layer;

a plurality of second transistors disposed atop said first level;

a plurality of third transistors disposed atop said plurality of second transistors;

a fourth metal layer disposed atop said plurality of third transistors;

a memory array comprising word-lines,

wherein said memory array comprises at least four memory mini-arrays,

wherein each of said memory mini-arrays comprises at least four rows by four columns of memory cells,

wherein at least one of said plurality of second transistors comprises a metal gate, and

wherein each of said memory cells comprises at least one of said plurality of second transistors or at least one of said plurality of third transistors; and

a connection path from said fourth metal to said third metal,

wherein said connection path comprises a via disposed through said memory array, and

wherein said memory control circuit comprises a plurality of antifuse elements.

16 . The 3D semiconductor device according to claim 15 ,

wherein said memory control circuit is configured such that it is able to control each of said at least four memory mini-arrays independently.

17 . The 3D semiconductor device according to claim 15 ,

wherein at least one of said plurality of second transistors is self-aligned to at least one of said plurality of third transistors, being processed following a same lithography step.

18 . The 3D semiconductor device according to claim 15 ,

wherein said memory control circuit comprises at least one error correcting circuit.

19 . The 3D semiconductor device according to claim 15 ,

wherein said memory control circuit comprises at least one cache memory circuit.

20 . The 3D semiconductor device according to claim 15 ,

wherein said memory control circuit comprises a memory refresh circuit.

Continuity (17)
Continuation In Part 18991631 · Dec 22, 2024
Continuation In Part 18738721 · Jun 10, 2024
Continuation In Part 18516958 · Nov 22, 2023
Continuation In Part 17665560 · Feb 6, 2022
Continuation In Part 17524737 · Nov 11, 2021
Continuation In Part 17396711 · Aug 8, 2021
Continuation In Part 17063397 · Oct 5, 2020
Continuation In Part 16526763 · Jul 30, 2019
Continuation In Part 15990611 · May 26, 2018
Continuation 15333138 · Oct 24, 2016
Provisional Application 62307568 · Mar 14, 2016
Provisional Application 62286362 · Jan 23, 2016
Provisional Application 62276953 · Jan 10, 2016
Provisional Application 62271251 · Dec 27, 2015
Provisional Application 62266610 · Dec 12, 2015
Provisional Application 62246054 · Oct 24, 2015
Related Publication 20260075821A1 · Mar 12, 2026
References Cited (4)
US 10666264B1 · Brewer · 2020 [cited by examiner]
US 12016181B2 · Or-Bach · 2024 [cited by examiner]
US 20200203328A1 · Park · 2020 [cited by examiner]
US 20200328176A1 · Liu · 2020 [cited by examiner]