AI Article Synopsis

  • Embedded Dynamic RAM (eDRAM) is crucial for high-performance processors, with a new type called heterogeneous 2T-eDRAM combining silicon and molybdenum disulfide (MoS) to solve retention issues.
  • The low OFF current of the MoS write transistor allows for significantly improved data retention while the Si read transistor enhances high drive current, leading to a 1000x better retention and 100x higher sense margin than previous types.
  • A novel 3D design stacking MoS on Si increases integration density, achieving 6000 s data retention, a 35 μA/μm sense margin, and speeds of 5 ns, representing a major leap in memory technology.

Article Abstract

Embedded Dynamic RAM (eDRAM) has become a key solution for large-capacity cache in high-performance processors. A heterogeneous two transistor capacitorless eDRAM (2T-eDRAM) that combines silicon and molybdenum disulfide (MoS) is reported to address the short retention issue in conventional gain cell (GC) eDRAMs meanwhile eliminate the pillar capacitor in one transistor and one capacitor (1T1C) eDRAMs. The MoS write transistor with low OFF current (I) enables long data retention, while the Si read transistor offers high drive current and logic compatibility. This combination enhances data retention by 1000 times and sense margin by 100 times respectively compared to full Si and MoS counterparts. A three-dimensional (3D) design stacking MoS on Si is demonstrated with back-end-of-line (BEOL) process to double integration density. With 6000 s data retention, 35 μA/μm sense margin, 5 ns access speeds, 3D integration and CMOS logic compatibility, this Si-MoS eDRAM marks a significant advancement in memory technology.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11557895PMC
http://dx.doi.org/10.1038/s41467-024-54218-wDOI Listing

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