IP Library Granted Patent US 9,299,390
Granted Patent B2
US 9,299,390 · App. 14/707,021 · Granted Mar 29, 2016

Discrete three-dimensional vertical memory comprising off-die voltage generator

Inventor: Guobiao Zhang (Corvallis, OR)
Assignees: HangZhou HaiCun Informationa Technology Co., Ltd.; Guobiao Zhang
G11C5/02G11C5/14G11C5/145G11C7/00G11C8/14G11C13/0002G11C2213/71H01L23/3121H01L24/13H01L24/16H01L24/32H01L24/48H01L24/73H01L25/0655H01L25/0657H01L25/105H01L25/18H01L2224/131H01L2224/16145H01L2224/32145H01L2224/32225H01L2224/48091H01L2224/48145H01L2224/48227H01L2224/73265H01L2225/0651H01L2225/06506H01L2225/06513H01L2225/06562H01L2225/107H01L2225/1023H01L2225/1064H01L2924/16251
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Quick Facts
Patent No.
US 9,299,390
App. No.
14/707,021
Granted
Mar 29, 2016
Kind
B2
Abstract

The present invention discloses a discrete three-dimensional vertical memory (3D-M V ). It comprises at least a 3D-array die and at least a voltage-generator die. The 3D-array die comprises a plurality of vertical memory strings. At least a voltage generator for the 3D-array die is located on the voltage-generator die instead of the 3D-array die. The 3D-array die and the voltage-generator die have substantially different back-end-of-line (BEOL) structures.

Claims (26)

1. A discrete three-dimensional vertical memory (3D-M V ), comprising:

a 3D-array die comprising at least a 3D-M V array, wherein said 3D-M V array comprises a plurality of vertical memory strings, each of said vertical memory strings comprising a plurality of vertically stacked memory cells;

a voltage-generator die comprising at least a portion of a voltage generator for providing said 3D-array die with at least a read voltage and/or a write voltage other than the voltage supply;

wherein said portion of said voltage generator is absent from said 3D-array die; the number of memory cells on each of said vertical memory strings in said 3D-array die is substantially more than the number of interconnect levels in said voltage-generator die; and, said 3D-array die and said voltage-generator die are separate dice.

2. The memory according to claim 1 , wherein said 3D-array die further comprises at least a peripheral circuit located outside said 3D-M V array, and the number of interconnect levels of said voltage-generator die is more than the number of interconnect levels of said peripheral circuit.

3. The memory according to claim 1 , wherein said 3D-array die further comprises at least a peripheral circuit located outside said 3D-M V array, and said peripheral circuit and said voltage-generator die comprise different interconnect materials.

4. The memory according to claim 1 , wherein said 3D-M V is a vertical-NAND.

5. The memory according to claim 1 , wherein each of said memory cells comprises at least a vertical transistor.

6. The memory according to claim 1 , wherein said 3D-M V is a three-dimensional read-only memory (3D-ROM) or a three-dimensional random-access memory (3D-RAM).

7. The memory according to claim 1 , wherein said 3D-array die and said voltage-generator die are located in a memory package, a memory module, a memory card, or a solid-state drive.

8. The memory according to claim 1 , further comprising another 3D-array die including at least another 3D-M V array, wherein said voltage-generator die comprises at least another portion of another voltage generator for said another 3D-array die.

9. The memory according to claim 1 , wherein said voltage generator comprises at least a DC-to-DC converter.

10. A discrete three-dimensional vertical memory (3D-M V ), comprising:

a 3D-array die comprising at least a 3D-M V array and a peripheral circuit located outside said 3D-M V array, wherein said 3D-M V array comprises a plurality of vertical memory strings, each of said vertical memory strings comprising a plurality of vertically stacked memory cells;

a voltage-generator die comprising at least a portion of a voltage generator for providing said 3D-array die with at least a read voltage and/or a write voltage other than the voltage supply;

wherein said portion of said voltage generator is absent from said 3D-array die; said peripheral circuit and said voltage-generator die comprise different interconnect materials; and, said 3D-array die and said voltage-generator die are separate dice.

11. The memory according to claim 10 , wherein said peripheral circuit comprises high-temperature interconnect materials.

12. The memory according to claim 10 , wherein said voltage-generator die comprises high-speed interconnect materials.

13. The memory according to claim 10 , wherein the number of memory cells on each of said vertical memory strings in said 3D-array die is substantially more than the number of interconnect levels in said voltage-generator die.

14. The memory according to claim 10 , wherein the number of interconnect levels of said voltage-generator die is more than the number of interconnect levels of said peripheral circuit.

15. The memory according to claim 10 , wherein said 3D-M V is a vertical-NAND.

16. The memory according to claim 10 , wherein each of said memory cells comprises at least a vertical transistor.

17. The memory according to claim 10 , wherein said 3D-M V is a three-dimensional read-only memory (3D-ROM) or a three-dimensional random-access memory (3D-RAM).

18. The memory according to claim 10 , wherein said 3D-array die and said voltage-generator die are located in a memory package, a memory module, a memory card, or a solid-state drive.

19. The memory according to claim 10 , further comprising another 3D-array die including at least another 3D-M V array, wherein said voltage-generator die comprises at least another portion of another voltage generator for said another 3D-array die.

20. The memory according to claim 10 , wherein said voltage generator comprises at least a DC-to-DC converter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2025
From: ZHANG, GUOBIAO, DR.
To: HANGZHOU HAICUN INFORMATION TECHNOLOGY CO., LTD.
Reel/Frame 070703/0666 →
Continuity (6)
Continuation In Part 14636359 · Mar 3, 2015
Continuation In Part 14047011 · Oct 6, 2013
Continuation In Part 13787787 · Mar 6, 2013
Continuation In Part 13591257 · Aug 22, 2012
Provisional Application 61529929 · Sep 1, 2011
Related Publication 20150243331A1 · Aug 27, 2015