IP Library › Granted Patent US 11,449,122
Granted Patent B2
US 11,449,122 · App. 17/242,857 · Granted Sep 20, 2022

Peak power management for multi-die operations

Inventor: Qiang Tang (Hubei, CN)
Assignee: Yangtze Memory Technologies Co., Ltd.
G06F1/3225G06F1/3275
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Quick Facts
Patent No.
US 11,449,122
App. No.
17/242,857
Granted
Sep 20, 2022
Kind
B2
Abstract

A method of peak power management (PPM) is provided for two NAND memory dies. Each NAND memory die comprises a PPM circuit having a PPM contact pad held at an electric potential common between the two NAND memory dies. The method includes the following steps: detecting the electric potential during a first peak power check (PPC) routine for the first NAND memory die; driving the electric potential to a second voltage level if the detected electric potential is at a first voltage level higher than the second voltage level; generating a pausing signal in the electric potential to pause a second PPC routine for the second NAND memory die if no pausing signal is detected; and generating a resuming signal in the electric potential to resume the second PPC routine for the second NAND memory die after the first NAND memory die completes a first peak power operation.

Claims (57)

1. A method of peak power management (PPM) for multiple NAND memory dies, wherein the multiple NAND memory dies comprise a first NAND memory die and a second NAND memory die, and each of the first NAND memory die and the second NAND memory die comprises a PPM circuit having a PPM contact pad held at an electric potential common between the first NAND memory die and the second NAND memory die, the method comprising:

detecting the electric potential of the PPM contact pad at a first timing during a first peak power check (PPC) routine for the first NAND memory die;

driving the electric potential of the PPM contact pad to a second voltage level if the detected electric potential is at a first voltage level at the first timing, wherein the second voltage level is lower than the first voltage level;

enabling the first NAND memory die to wait for a first delay time period;

determining whether there is a pausing signal in the electric potential of the PPM contact pad at a second timing during the first PPC routine for the first NAND memory die, wherein the second timing is later than the first timing;

generating the pausing signal in the electric potential of the PPM contact pad to pause a second PPC routine for the second NAND memory die if no pausing signal is detected at the second timing;

enabling the first NAND memory die to perform a first peak power operation; and

generating a resuming signal in the electric potential of the PPM contact pad to resume the second PPC routine for the second NAND memory die after the first NAND memory die completes the first peak power operation.

2. The method according to claim 1 , further comprising:

detecting the electric potential of the PPM contact pad at a third timing during the second PPC routine for the second NAND memory die.

3. The method according to claim 2 , further comprising:

enabling the second NAND memory die to pause the second PPC routine if the detected electric potential is at the second voltage level at the third timing.

4. The method according to claim 3 , further comprising:

resuming the second PPC routine for the second NAND memory die in response to the resuming signal generated after the first NAND memory die completes the first peak power operation.

5. The method according to claim 4 , wherein the resuming the second PPC routine for the second NAND memory die comprises:

driving the electric potential of the PPM contact pad to the second voltage level; and

enabling the second NAND memory die to wait for a third delay time period, wherein the third delay time period of the second NAND memory die is different from the first delay time period of the first NAND memory die.

6. The method according to claim 5 , wherein the resuming the second PPC routine for the second NAND memory die comprises:

enabling the second NAND memory die to perform a second peak power operation; and

generating the resuming signal in the electric potential of the PPM contact pad to resume a third PPC routine for a third NAND memory die after the second NAND memory die completes the second peak power operation.

7. The method according to claim 2 , further comprising:

enabling the second NAND memory die to wait for a third delay time period if the detected electric potential is at the first voltage level at the third timing, wherein the third delay time period of the second NAND memory die is different from the first delay time period of the first NAND memory die.

8. The method according to claim 7 , further comprising:

determining whether there is the pausing signal in the electric potential of the PPM contact pad at a fourth timing during the second PPC routine for the second NAND memory die, wherein the fourth timing is later than the third timing; and

pausing the second PPC routine for the second NAND memory die if the pausing signal is detected at the fourth timing.

9. The method according to claim 8 , further comprising:

resuming the second PPC routine for the second NAND memory die in response to the resuming signal generated after the first NAND memory die completes the first peak power operation.

10. The method according to claim 1 , further comprising:

determining whether there is the pausing signal in the electric potential of the PPM contact pad at a fourth timing during the second PPC routine for the second NAND memory die, wherein the fourth timing is later than the third timing; and

generating the pausing signal in the electric potential of the PPM contact pad to pause a third PPC routine for a third NAND memory die among the multiple NAND memory dies if no pausing signal is detected at the fourth timing, wherein the third NAND memory comprises the PPM circuit having the PPM contact pad held at an electric potential common between the second NAND memory die and the third NAND memory die.

11. The method according to claim 10 , further comprising:

enabling the second NAND memory die to perform a second peak power operation; and

generating the resuming signal in the electric potential of the PPM contact pad to resume the third PPC routine for the third NAND memory die after the second NAND memory die completes the second peak power operation.

12. The method according to claim 1 , further comprising:

prior to performing the first peak power operation, waiting for a second delay time period in the first PPC routine for the first NAND memory die.

13. The method according to claim 1 , wherein the generating the resuming signal comprises driving the electric potential of the PPM contact pad to the first voltage level.

14. The method according to claim 1 , wherein the generating the pausing signal comprises generating a positive pulse in the electric potential of the PPM contact pad, the positive pulse having a pulse width in a range between about 0.1 μS and about 10 μS.

15. The method according to claim 14 , wherein the determining whether there is the pausing signal comprises measuring the electric potential of the PPM contact pad at a first probing and a second probing, wherein the first probing and the second probing are separated with a measurement time period longer than the pulse width.

16. A peak power management (PPM) circuit for managing peak power operations between multiple NAND memory dies in a memory chip, comprising:

a PPM contact pad held at an electric potential common between the PPM circuit disposed on a first NAND memory die and the PPM circuit disposed on a second NAND memory die,

wherein the PPM circuit is configured to:

detect the electric potential of the PPM contact pad at a first timing during a first peak power check (PPC) routine for the first NAND memory die;

drive the electric potential of the PPM contact pad to a second voltage level if the detected electric potential is at a first voltage level at the first timing, wherein the second voltage level is lower than the first voltage level;

enable the first NAND memory die to wait for a first delay time period;

determine whether there is a pausing signal in the electric potential of the PPM contact pad at a second timing during the first PPC routine for the first NAND memory die, wherein the second timing is later than the first timing;

generate the pausing signal in the electric potential of the PPM contact pad to pause a second PPC routine for the second NAND memory die if no pausing signal is detected at the second timing;

enable the first NAND memory die to perform a first peak power operation; and

generate a resuming signal in the electric potential of the PPM contact pad to resume the second PPC routine for the second NAND memory die after the first NAND memory die completes the first peak power operation.

17. The PPM circuit according to claim 16 , wherein the PPM circuit is further configured to:

detect the electric potential of the PPM contact pad at a third timing during the second PPC routine for the second NAND memory die.

18. The PPM circuit according to claim 17 , wherein the PPM circuit is further configured to:

enable the second NAND memory die to pause the second PPC routine if the detected electric potential is at the second voltage level at the third timing.

19. The PPM circuit according to claim 18 , wherein the PPM circuit is further configured to:

resume the second PPC routine for the second NAND memory die in response to the resuming signal generated after the first NAND memory die completes the first peak power operation.

20. The PPM circuit according to claim 19 , wherein the PPM circuit is further configured to:

drive the electric potential of the PPM contact pad to the second voltage level; and

enable the second NAND memory die to wait for a third delay time period, wherein the third delay time period of the second NAND memory die is different from the first delay time period of the first NAND memory die.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2021
From: TANG, QIANG
To: YANGTZE MEMORY TECHNOLOGIES CO., LTD.
Reel/Frame 056092/0808 →
Continuity (2)
Continuation PCTCN2021075725 · Feb 7, 2021
Related Publication 20220253122A1 · Aug 11, 2022