PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 27, 2026Electronics0 citationsOpen Access

Word-Line-Shared 2T0C DRAM with Offset Bias Scheme Enabling Three-Terminal Operation and Selective Read-Out

View Full Paper
JKJi-Hun KimWLWoo-Guk LeeWCWoo-Tack Choi

Key Points

  • The aim is to improve selective read-out capabilities in two-transistor zero-capacitor DRAM for high-density integration.
  • Developed two types of three-terminal 2T0C DRAM: bit-line-shared and word-line-shared.
  • Implemented an offset bias scheme to enhance read selectivity.
  • Conducted SPICE simulations to evaluate array-level selectivity and sensing margins.
  • Achieved read selectivity values of 1.63 × 10^5 for BLS and 1.51 × 10^5 for WLS under optimized conditions.
  • The WLS structure exhibited a selected cell on-current of approximately 0.17 μA, significantly higher than BLS.
  • Retention times for both structures exceeded 800 seconds, comparable to traditional 2T0C DRAM.

Abstract

Two-transistor zero-capacitor (2T0C) DRAM has attracted attention as an alternative memory due to its high potential for monolithic 3D integration (M3D). However, conventional 2T0C DRAM consists of four terminals, requiring large contact and peripheral area in the array. Moreover, selective read-out in the array has not been sufficiently addressed, as half-selected cells are susceptible to unintended current. To address this, two types of three-terminal 2T0C DRAM, bit-line-shared (BLS) and word-line-shared (WLS), were implemented, together with an offset bias scheme that enables selective read by applying complementary biases to the read terminals. Both structures exhibited retention times exceeding 800 s, comparable to conventional 2T0C DRAM. Array-level read selectivity and sensing margin were evaluated through SPICE simulations under various parasitic capacitance and offset bias conditions. Under optimized conditions, read selectivity values of 1.63 × 105 and 1.51 × 105 were achieved for the BLS and WLS structures, respectively. Notably, the WLS structure exhibited a selected cell on-current of approximately 0.17 μA, one order of magnitude higher than that of the BLS structure. This on-current advantage is analytically attributed to the structural decoupling of write-induced VSN drop and read-induced VGS enhancement in the WLS configuration. These results establish the WLS three-terminal 2T0C DRAM with the offset bias scheme as a more favorable configuration for high-density array implementation.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Kim et al. (2026) studied this question.

synapsesocial.com/papers/6a168a640c924ddd1bd591f3https://doi.org/10.3390/electronics15112273
Ask AI
Helpful
Bookmark
Share
View Full Paper