How many transistors does it take to implement an SRAM cell?
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21 Feb 2015 7 Citations | The proposed architecture of the TG8T SRAM cell is analogous to the standard 6T SRAM cell, the only exception is that they possess full transmission gates which replace an access pass transistor. |
26 Mar 2013 13 Citations | The new structure uses fewer controlling signal in comparison to the conventional 8T-cell SRAM. |
14 Mar 2011 | Based on the simulation results, we recommend designing SRAM arrays using 8T SRAM cell or 10T SRAM cell in future nano-scale CMOS where BTI effect is a reliability barrier for SRAM design. |
In this paper, we propose a novel 8T subthreshold SRAM cell for improving the writing “0” characteristics of the conventional 8T cell. | |
01 Dec 2004 43 Citations | This is an experimental demonstration of a fully working tall triple gate SRAM cell with the smallest cell size ever reported. |
The parameters used in the proposed cell are comparable to the existing 8T SRAM cell at same technology and design rules. | |
24 Citations | Based on our cooptimization scheme, a SRAM cell is effectively designed. |
08 Dec 2003 11 Citations | This result represents the first experimental demonstration of a fully working Triple Gate SRAM cell with the smallest cell size ever reported. |
24 Citations | For a high-speed SRAM cell design, we recommend focusing on the optimization of architecture and peripheral circuits. |
The scaling of CMOS technology has significant impacts on working of SRAM cell. |
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What are the different SRAM architectures?5 answersDifferent SRAM architectures include 6T, 7T, 8T, 9T, and hybrid architectures. These architectures are designed to improve stability, power consumption, and delay in SRAM cells. The 6T SRAM cell is a commonly used architecture, but it has limitations in terms of power and stability. To address these limitations, other architectures such as 7T, 8T, and 9T have been proposed, which offer improved stability and power consumption at the cost of increased area. Hybrid architectures, such as the combination of 6T and 7T cells, have also been proposed to achieve better power reduction and area improvement compared to traditional architectures. Overall, these different SRAM architectures provide options for optimizing performance parameters based on specific application requirements.
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