• DocumentCode
    1766306
  • Title

    A 3 Dimensional Built-In Self-Repair Scheme for Yield Improvement of 3 Dimensional Memories

  • Author

    Wooheon Kang ; Changwook Lee ; Hyunyul Lim ; Sungho Kang

  • Author_Institution
    Dept. of Electr. & Electron. Eng., Yonsei Univ., Seoul, South Korea
  • Volume
    64
  • Issue
    2
  • fYear
    2015
  • fDate
    42156
  • Firstpage
    586
  • Lastpage
    595
  • Abstract
    A 3-dimensional Built-In Self-Repair (3D BISR) scheme is proposed for 3-dimensional (3D) memories. The proposed 3D BISR scheme consists of two phases: a parallel test-repair phase, and a serial test-repair phase. After all memory dice are simultaneously tested, only the faulty memory dice are serially tested and repaired using one Built-In Redundancy Analysis (BIRA) module. Thus, it is a faster test-repair with low area overhead. The proposed BIRA algorithm with a post-share redundancy scheme performs exhaustive searches for all combinations of spare rows and columns. Experimental results show that the proposed 3D BISR is up to two times faster than the 3D serial test-serial repair BISR when seven 2048 × 2048 bit memory dice are stacked. The proposed 3D BISR requires 44.55% of the area in comparison to a 3D parallel test-parallel repair BISR for four stacked memory dice (one 128 K RAM, two 256 K RAMs, and 512 K RAM). The yield of 3D memories is the highest due to the exhaustive search BIRA algorithm with the post-share redundancy scheme as shown in various experimental results.
  • Keywords
    built-in self test; redundancy; three-dimensional integrated circuits; 3-dimensional built-in self-repair scheme; 3-dimensional memories; 3D memories; 3D serial test-serial repair BISR; BIRA module; area overhead; built-in redundancy analysis module; faulty memory dice; parallel test-repair phase; postshare redundancy scheme; serial test-repair phase; stacked memory dice; yield improvement; Built-in self-test; Circuit faults; Computer aided manufacturing; Maintenance engineering; Random access memory; Redundancy; Three-dimensional displays; 3D built-in self-repair; 3D memory; area overhead; built-in redundancy analysis; built-in self-test; repair rate; yield;
  • fLanguage
    English
  • Journal_Title
    Reliability, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9529
  • Type

    jour

  • DOI
    10.1109/TR.2015.2410274
  • Filename
    7061513