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Most of the redundancy-based methodologies adopt majority voters to ensure the fault masking.
Unlike the majority voters, amalgamating voters are not capable of producing benign outputs.
Majority voters are typically used in redundancy hardening techniques aiming to increase the reliability of nanoscale circuits.
Two reliable majority voters (RMV), based on the CT, are designed which outperforms the existing majority logic in QCA.
This paper represents an efficient 2-to-4 decoder, which has been designed with the help of three-input majority voters and successfully implemented in QCA.
The use of Triple Modular Redundancy (TMR) with majority voters can guarantee 100% single fault masking coverage for a given circuit against transient faults.
Similar(39)
In this paper, we present two majority voter circuits based on nanometer STT-MTJ.
At one time these issues had majority voter support.
The model is validated by simulating the basic logic gates such as inverter and majority voter.
The proposed ALU requires only 68 MVs (Majority Voter), which is 35% more area efficient than the existing work.
This paper presents a comparative analysis of different majority voter designs in 7 nm FinFET under radiation effects.
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