Kumar S, Singh L, Swarnakar S (2017) Design of one bit magni- tude comparator using nonlinear plasmonic waveguide. Plasmonics 12(2):369-375Kumar, S., Singh, L., Swarnakar, S.: Design of one bit magnitude comparator using nonlinear plasmonic waveguide. Plasmonics 11, 1-7 (2016). doi:...
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In the advanced technology low power, speed and size play a significant role specifically in the field of magnitude VLSI circuits. In this paper small power dissipation and less area over conventional 2-bit comparator is proposed and using this comparator a new style 12-bit comparator is proposed...
In this paper, the design of a 4-bit magnitude comparator using Simulink is presented. An overview of a magnitude comparator is carried out in the first section, in terms of its application in engineering. The second section presents the methodology of the design; thus, a closer look at the...
A hybrid design approach for implementing a two-bit Magnitude Comparator (MC) has been proposed in this work. The hybrid design consists of three different logic techniques namely: (a) Pass Transistor Logic (PTL), (b) Transmission Gate Logic (TGL) and (c) Conventional Static CMOS Logic (C...
In Ref. [11] a comparator which uses bitwise competition logic to detect the location of the first ‘1’ from the most significant bit, without arithmetic computations is presented. This methodology lowers the transistor count and shows also an improvement in delay. The magnitude comparators ...
4 -bit magnitude comparator using various logic styles is explained in this. Comparison is one of the common arithmetic operation that is used to determine which number is greater, equal to, or less. Every device from op-amp to Alu needs to performs comparison operation. At designing level ,...
7483 4-bit Binary Full Adder ✔️ ✔️ ✔️ ✔️ 7485 4-bit Magnitude Comparator ✔️ ✔️ ✔️ ✔️ 7486 Quad EXCLUSIVE-OR Gate ✔️ ✔️ ✔️ ✔️ 7490 Decade Counter ✔️ ✔️ ✔️ ✔️ 7493 4-bit Binary Counter ✔️ ✔...
In computation, in each cycle, 1 bit is input to the IMA, and the computation result from the IMA is converted to digital format, shifted by 1 bit, and accumulated. Therefore, it takes another 16 cycles to process the input. The nonlinear activation is then applied, and the results are...
But a request for a static resource will be several orders of magnitude less resource-intensive than a requst for a dynamic resource. Not all servers have identical processing power. Need to query back-end server to discover memory and CPU usage, server load, and perhaps even network latency....