IP Library Granted Patent US 10,496,317
Granted Patent B2
US 10,496,317 · App. 15/180,858 · Granted Dec 3, 2019

Memory system including memories having different characteristics and operation method thereof

Inventors: Yong-Kee Kwon (Gyeonggi-do, KR); Yong-Ju Kim (Gyeonggi-do, KR); Hong-Sik Kim (Gyeonggi-do, KR); Sang-Gu Jo (Gyeonggi-do, KR); Do-Sun Hong (Gyeonggi-do, KR)
Assignee: SK hynix Inc.
G06F3/0647G06F3/061G06F3/0619G06F3/0638G06F3/0653G06F3/0656G06F3/0685G06F12/0802G06F12/0868G06F2212/1024G06F2212/1044G06F2212/214G06F2212/401G06F2212/502G06F2212/60
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Quick Facts
Patent No.
US 10,496,317
App. No.
15/180,858
Granted
Dec 3, 2019
Kind
B2
Abstract

A memory system may include a first memory having a first operating speed, and a second memory having a second operating speed which is different from the first operating speed. A compression device may compress data of the first memory, and may transfer the compressed data to the second memory. The compression device may select a compression scheme among a plurality of compression schemes based on at least one characteristic of the data of the first memory and a data processing combination selected among a plurality of data processing combinations between a series of data processing units of the first memory and a series of data processing units of the second memory, and may compress the data of the first memory according to the selected compression scheme.

Claims (46)

1. A memory system comprising:

a first memory having a first operating speed;

a second memory having a second operating speed; and

a compression device configured to compress data of the first memory, and transfer the compressed data to the second memory,

wherein the compression device selects a compression scheme among a plurality of compression schemes based on at least one characteristic of the data of the first memory and a data processing combination selected among a plurality of data processing combinations between a series of data processing units of the first memory and a series of data processing units of the second memory, and compresses the data of the first memory according to the selected compression scheme,

wherein the characteristic of the data of the first memory represents a ratio of the number of 0's to the number of 1's contained in the data of the first memory,

wherein the series of data processing units of the first memory comprises units of read and/or write operations of the first memory, and the series of data processing units of the second memory comprises units of read and/or write operations of the second memory,

wherein the compressed data is stored in the second memory, and

wherein the first operating speed of the first memory is greater than the second operating speed of the second memory.

2. The memory system of claim 1 , wherein the compression device comprises:

a monitoring unit configured to monitor a compression ratio corresponding to each of the plurality of compression schemes based on the at least one characteristic of the data of the first memory; and

a selecting unit configured to select one compression scheme which maximizes a compression ratio among the plurality of compression schemes.

3. The memory system of claim 1 , wherein the compression device comprises:

a monitoring unit configured to monitor a compression ratio corresponding to each of the plurality of data processing combinations; and

a selecting unit configured to select a data processing combination which maximizes the compression ratio among the plurality of compression schemes, and select the compression scheme corresponding to the selected data processing combination.

4. The memory system of claim 1 , wherein the compression device comprises a control unit configured to adjust a size of the data to be transferred to the second memory according to the selected compression scheme.

5. The memory system of claim 1 , wherein the compression device resets the selected compression scheme at a predetermined time or at a point of time when the memory system is booted.

6. The memory system of claim 1 , further comprising a decompression device configured to decompress the compressed data transferred to the second memory based on the selected compression scheme, and transfer the decompressed data to the first memory.

7. The memory system of claim 1 , wherein the first memory comprises a volatile memory and the second memory comprises a nonvolatile memory.

8. The memory system of claim 7 ,

wherein the first memory comprises at least one of a buffer memory for the nonvolatile memory and a buffer and cache memory, and

wherein the second memory comprises a power backup storage for the volatile memory.

9. An operation method of memory system comprising:

compressing data from a first memory having a first operating speed; and

transferring the compressed data to a second memory having a second operating speed,

wherein the compressing of the data comprises selecting a compression scheme among a plurality of compression schemes based on at least one characteristic of the data of the first memory and a data processing combination selected among a plurality of data processing combinations between a series of data processing units of the first memory and a series of data processing units of the second memory, and compressing the data according to the selected compression scheme,

wherein the characteristic of the data of the first memory represents a ratio of the number of 0's to the number of 1's contained in the data,

wherein the series of data processing units of the first memory comprises units of read and/or write operations of the first memory, and the series of data processing units of the second memory comprises units of read and/or write operations of the second memory,

wherein the first operating speed of the first memory is greater than the second operating speed of the second memory, and

wherein the second memory stores the compressed data after being output from the first memory.

10. The operation method of claim 9 , wherein the compressing of the data comprises:

monitoring a compression ratio corresponding to each of the plurality of compression schemes based on the characteristic of the data of the first memory; and

selecting a compression scheme which maximizes the compression ratio among the plurality of compression schemes.

11. The operation method of claim 9 , wherein the compressing of the data comprises:

monitoring a compression ratio corresponding to each of the plurality of data processing combinations;

selecting a data processing combination which maximizes the compression ratio among the plurality of compression schemes; and

selecting the compression scheme corresponding to the selected data processing combination.

12. The operation method of claim 9 , wherein the transferring comprises adjusting a size of the data to be transferred to the second memory according to the selected compression scheme.

13. The operation method of claim 9 , wherein the compressing of the data comprises resetting the selected compression scheme at a predetermined time or at a point of time when the memory system is booted.

14. The operation method of claim 9 , further comprising:

decompressing the compressed data transferred to the second memory based on the selected compression scheme; and

transferring the decompressed data to the first memory.

15. The operation method of claim 9 , wherein the first memory comprises a volatile memory and the second memory comprises a nonvolatile memory.

16. The operation method of claim 15 ,

wherein the first memory comprises at least one of a buffer memory for the nonvolatile memory and a buffer and cache memory,

wherein the second memory comprises a power backup storage for the volatile memory.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2024
From: SK HYNIX INC.
To: MIMIRIP LLC
Reel/Frame 067335/0246 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2016
From: KWON, YONG-KEE; KIM, YONG-JU; KIM, HONG-SIK; JO, SANG-GU; HONG, DO-SUN
To: SK HYNIX INC.
Reel/Frame 038898/0990 →
Priority Claims (1)
KR 10-2015-0167619 · Nov 27, 2015 · national
Continuity (1)
Related Publication 20170153844A1 · Jun 1, 2017