IP Library › Granted Patent US 10,388,568
Granted Patent B2
US 10,388,568 · App. 15/950,169 · Granted Aug 20, 2019

3D semiconductor device and system

Inventors: Zvi Or-Bach (San Jose, CA); Deepak C. Sekar (San Jose, CA); Brian Cronquist (San Jose, CA)
Assignee: Monolithic 3D Inc.
H01L21/8221G11C5/025G11C5/063G11C13/003G11C16/0483G11C17/06G11C17/14G11C29/82H01L21/6835H01L21/76254H01L21/8238H01L21/823871H01L21/823885H01L21/84H01L21/845H01L23/36H01L23/544H01L25/0655H01L25/0657H01L25/18H01L27/0207H01L27/0688H01L27/0694H01L27/092H01L27/105H01L27/10873H01L27/10876H01L27/10897H01L27/11H01L27/112H01L27/1157H01L27/11206H01L27/11578H01L27/11803H01L29/785H01L29/78696H03K17/687H03K19/0016H03K19/0948H03K19/17704H03K19/17756H03K19/17764H03K19/17796G11C8/10G11C17/16G11C29/021G11C29/028G11C2213/71H01L23/367H01L23/3677H01L23/481H01L23/49827H01L23/5252H01L24/16H01L24/32H01L24/48H01L27/1104H01L27/1108H01L27/249H01L27/2436H01L2223/5442H01L2223/54426H01L2223/54453H01L2224/16145H01L2224/16225H01L2224/32145H01L2224/32225H01L2224/45015H01L2224/45099H01L2224/48091H01L2224/48227H01L2224/73204H01L2224/73265H01L2225/06513H01L2225/06517H01L2225/06527H01L2225/06541H01L2225/06589H01L2924/00H01L2924/00012H01L2924/00014H01L2924/01019H01L2924/01066H01L2924/01322H01L2924/10253H01L2924/12032H01L2924/12042H01L2924/1305H01L2924/13062H01L2924/13091H01L2924/14H01L2924/1433H01L2924/1436H01L2924/1437H01L2924/1461H01L2924/15311H01L2924/181H01L2924/19107H01L2924/207H01L2924/3011H01L2924/3025
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Quick Facts
Patent No.
US 10,388,568
App. No.
15/950,169
Granted
Aug 20, 2019
Kind
B2
Abstract

A 3D semiconductor device, the device including: a first single crystal layer including a plurality of first transistors; at least one first metal layer interconnecting the plurality of first transistors, where the interconnecting includes forming memory peripheral circuits; a plurality of second transistors overlaying the at least one first metal layer; a second metal layer overlaying the plurality of second transistors; a first memory cell overlaying the memory peripheral circuits; and a second memory cell overlaying the first memory cell, where the first memory cell includes at least one of the second transistors, where at least one of the second transistors includes a source, channel and drain, where the source, the channel and the drain have the same dopant type.

Claims (94)

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

a first single crystal layer comprising a plurality of first transistors;

at least one first metal layer interconnecting said plurality of first transistors,

wherein said interconnecting comprises forming memory peripheral circuits;

a plurality of second transistors atop at least a portion of said at least one first metal layer;

a second metal layer atop at least a portion of said plurality of second transistors;

a first memory cell atop said memory peripheral circuits;

a second memory cell atop said first memory cell;

a staircase structure atop at least a portion of said first single crystal layer; and

a non-volatile NAND memory,

wherein said first memory cell comprises at least one of said second transistors,

wherein said memory peripheral circuits control at least said first memory cell,

wherein at least one of said second transistors comprises a source, channel and drain,

wherein said source, said channel and said drain have a same dopant type,

wherein said non-volatile NAND memory comprises said first memory cell,

wherein at least one of said second transistors comprises a polysilicon channel,

wherein said non-volatile NAND memory comprises at least a portion of a memory array structure,

wherein said memory array structure comprises wordlines and bitlines, said bitlines are orthogonally oriented to said wordlines,

wherein said wordlines and bitlines are adapted to function as memory control lines,

wherein said wordlines and bitlines are connected to said memory peripheral circuits,

wherein said connected to comprises said staircase structure, and

wherein processing of said first transistors accounts for a thermal processing of said second transistors by adjusting a thermal budget of said first transistors accordingly.

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

wherein said first memory cell is self-aligned to said second memory cell being processed following a same lithography step.

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

wherein at least one of said second transistors is a vertically oriented transistor.

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

an upper level disposed atop said second metal layer,

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

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

a first plurality of external connections underlying said first single crystal layer,

wherein said first plurality of external connections comprises connections from said device to a first external device; and

a second plurality of external connections overlying said second metal layer,

wherein said second plurality of external connections comprises connections from said device to a second external device, and

wherein said first plurality of external connections comprises a through silicon via (TSV).

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

wherein said memory peripheral circuits comprise a decoder circuit,

wherein said decoder circuit is at least partially overlaid by said memory array structure.

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

a first single crystal layer comprising a plurality of first transistors;

at least one first metal layer interconnecting said plurality of first transistors,

wherein said interconnecting comprises forming memory peripheral circuits;

a plurality of second transistors atop at least a portion of said at least one first metal layer;

a second metal layer atop at least a portion of said plurality of second transistors;

a third metal layer disposed above said first metal layer and under said second metal layer;

a first memory cell atop said memory peripheral circuits;

a second memory cell atop said first memory cell; and

a non-volatile NAND memory,

wherein said first memory cell comprises at least one of said second transistors,

wherein said memory peripheral circuits control at least said first memory cell,

wherein at least one of said second transistors comprises a source, channel and drain,

wherein said source, said channel and said drain have a same dopant type,

wherein said non-volatile NAND memory comprises said first memory cell,

wherein said third metal layer is significantly thicker than said first metal layer or said second metal layer.

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

wherein at least one of said second transistors comprises a polysilicon channel.

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

wherein said first memory cell is self-aligned to said second memory cell being processed following a same lithography step.

10. The 3D semiconductor device according to claim 7 , further comprising:

an upper level disposed atop said second metal layer,

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

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

wherein processing of said first transistors accounts for a thermal processing of said second transistors by adjusting a thermal budget of said first transistors accordingly.

12. The 3D semiconductor device according to claim 7 , further comprising:

a first plurality of external connections underlying said first single crystal layer,

wherein said first plurality of external connections comprises connections from said device to a first external device; and

a second plurality of external connections overlying said second metal layer,

wherein said second plurality of external connections comprises connections from said device to a second external device, and

wherein said first plurality of external connections comprises a through silicon via (TSV).

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

a first single crystal layer comprising a plurality of first transistors;

at least one first metal layer interconnecting said plurality of first transistors,

wherein said interconnecting comprises forming memory peripheral circuits;

a plurality of second transistors atop at least a portion of said at least one first metal layer;

a second metal layer atop at least a portion of said plurality of second transistors;

a third metal layer disposed above said first metal layer and under said second metal layer;

a first memory cell atop said memory peripheral circuits; and

a second memory cell atop said first memory cell,

wherein said first memory cell comprises at least one of said second transistors,

wherein at least one of said second transistors comprises a source, channel and drain,

wherein said source, said channel and said drain have a same dopant type,

wherein said third metal layer is significantly thicker than said first metal layer or said second metal layer.

14. The 3D semiconductor device according to claim 13 ,

wherein said memory peripheral circuits control at least said first memory cell.

15. The 3D semiconductor device according to claim 13 ,

wherein processing of said first transistors accounts for a thermal processing of said second transistors by adjusting a thermal budget of said first level accordingly.

16. The 3D semiconductor device according to claim 13 ,

wherein said first memory cell is self-aligned to said second memory cell being processed following a same lithography step.

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

an upper level disposed atop said second metal layer,

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

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

a non-volatile NAND memory,

wherein said non-volatile NAND memory comprises said first memory cell.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2018
From: OR-BACH, ZVI; SEKAR, DEEPAK; CRONQUIST, BRIAN
To: MONOLITHIC 3D INC.
Reel/Frame 046410/0835 →
Continuity (6)
Continuation In Part 15904347 · Feb 24, 2018
Continuation In Part 15488514 · Apr 16, 2017
Continuation In Part 14975830 · Dec 20, 2015
Continuation In Part 13623756 · Sep 20, 2012
Continuation 13635436
Related Publication 20180301380A1 · Oct 18, 2018