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기록

CONFIGURABLE WRITE PROCESSING SPEEDS AT A MEMORY SYSTEM

발명심사 중
24청구항 · 3 독립항
§ Ⅰ

개요

출원인

Micron Technology, Inc.

발명자

Wenjun Wu

IPC 분류

G6F 3/6G6F 12/1009

CPC 분류

G6F3/617G6F3/659G6F3/673G6F12/1009

Methods, systems, and devices for configurable write processing speeds at a memory system are described. The described techniques provide for a memory system to slow a write processing speed when the memory system identifies that entries within an active foreground changelog (AL) correspond to a threshold quantity of memory regions. Slowing the write processing speed may allow for additional time for the memory system flush logical-to-physical (L2P) mappings from a background changelog (BL) while still receiving write commands and populating the AL with new L2P mappings. For example, slowing the write processing speed may increase a duration associated with new L2P mappings within the AL satisfying the threshold quantity of memory regions and may enable the memory system to increase the threshold quantity of memory regions without incurring additional latency when flushing L2P mappings to the memory arrays.

원문 (중국어)

Methods, systems, and devices for configurable write processing speeds at a memory system are described. The described techniques provide for a memory system to slow a write processing speed when the memory system identifies that entries within an active foreground changelog (AL) correspond to a threshold quantity of memory regions. Slowing the write processing speed may allow for additional time for the memory system flush logical-to-physical (L2P) mappings from a background changelog (BL) while still receiving write commands and populating the AL with new L2P mappings. For example, slowing the write processing speed may increase a duration associated with new L2P mappings within the AL satisfying the threshold quantity of memory regions and may enable the memory system to increase the threshold quantity of memory regions without incurring additional latency when flushing L2P mappings to the memory arrays.