Publication | Closed Access
Variability Mitigation Mechanisms in Scaled 3T1D-DRAM Memories to 22 nm and Beyond
10
Citations
10
References
2012
Year
Non-volatile MemoryElectrical EngineeringL1 Memory CacheEngineeringMemory ArchitecturePhysicsApplied PhysicsComputer EngineeringComputer ArchitectureMemory DeviceVariability Mitigation MechanismsSemiconductor MemoryCapacitorless Dram CellsMicroelectronics3T1d-dram CellScaled 3T1d-dram MemoriesMulti-channel Memory Architecture3D Memory
It has been stated that 3T1D-DRAM cell is a valid alternative to be implemented on L1 memory cache to substitute 6T, highly affected by variability. In this paper, it is shown that the 3T1D memory cells present significant tolerance to high levels of device parameter fluctuation when they are scaled to nodes smaller than 22 nm. Furthermore, we present some strategies to mitigate the cell variability. Moreover, while scaling down capacitorless DRAM cells is a challenging trend, we also show how the scaling drawbacks can be compensated through the following: 1) the channel strain of the cell devices and 2) the proposal of new strategies to further enhance the memory cell behavior.
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