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- W4385452364 abstract "Multi-level Cells (MLC) are the key components of emerging memory technologies that enable high density storage and but also make memories more prone to errors due to reduced margin and inter-cell interference. To overcome the above challenge, effective schemes for detecting and correcting MLC memory errors up to magnitude-3 are presented and evaluated in this work. The proposed Single Level-Single Error Correction (SL-SEC) scheme is capable of detecting and correcting a single bit error occurring at any bit position of a cell in MLC memories and the Multi-level-Single Error Correction (ML-SEC) scheme corrects a single bit Limited Magnitude Error (LME) occurring at multiple levels simultaneously. For a 32-bit data with 3-bits per cell configured MLC memory, the proposed ML-SEC scheme consumes 58% less area and 64.41% less power for the encoder, and 32.81% less area and 41.83% less power for the decoder. The Interleaved Parity-Single Error Correction-Double Adjacent Error Correction (IP-SEC-DAEC) schemes protect all the bits present in a cell. For a 32-bit data with 3-bits per cell MLC memory, the proposed H-matrix of low redundancy IP-SEC-DAEC scheme consumes 12.12% less area and 13.34% less power for the encoder, and 11% less area and 11.34% less power for the decoder than the existing H-matrix. The proposed schemes are compared with the existing alternatives and the findings show that the proposed techniques are significantly more effective in terms of encoding, error detection and correction circuitry complexity, as well as in terms of delay, area, and power overhead." @default.
- W4385452364 created "2023-08-02" @default.
- W4385452364 creator A5018286534 @default.
- W4385452364 creator A5092785188 @default.
- W4385452364 date "2023-06-01" @default.
- W4385452364 modified "2023-09-26" @default.
- W4385452364 title "Multi-bit Limited Magnitude Error Detection and Correction Codes for MLC Cell Memories" @default.
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- W4385452364 doi "https://doi.org/10.1109/icces57224.2023.10192841" @default.
- W4385452364 hasPublicationYear "2023" @default.
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