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Research Article 


HYBRID MODEL FOR SEQUENTIAL AND COMBINATIONAL CIRCUITS MODELLEDON NEW XOR-XNOR GATES FOR LOW POWER APPLICATIONS

BOGI KAVYA, T.KAVITHA.

Abstract
Considering that there can be many developments in VLSI innovation and there are masses of reliable varieties of growing VLSI circuits. A few of the styles are CMOS, PTL, GDI (Gate Diffusion Input) strategies. GDI method lets in making low-electricity digital combinatorial circuit with the aid of which we're able to remove terrible marks of CMOS, PTL strategies. This approach permits reducing electricity intake, breeding maintain-up, in addition to location of virtual circuits even as retaining low intricacy of reasoning format. This paper goes over regarding the performance characteristics of a Full Adder primarily based definitely Carry Select Adder making use of numerous logics in addition to furthermore GDI-MUX method. The adders are applied in hundreds of information path packages in addition to moreover the area, power utilization and maintain-up in the style can be reduced. The proposed method is the GDI-Mix which lets in the decrease of above talked about requirements further to likewise lower the kind of transistors. The Full Adder based totally Carry Select Adder made in Complementary Pass Transistor Logic, Complementary Metal Oxide Semiconductor Reasoning and moreover Gateway Diffusion Input-- Mix and they are contrasted and additionally the greenest technique is diagnosed. The numerous strategies are in assessment to treat to the format location; transistor be counted range, hold-up, and furthermore power dissipation are prolonged long past over proper right here on this paper showing benefits and drawbacks of GDI contrasted to CMOS layout.

Key words: PTL, GDI, SUM, CARRY, ALU, XOR, XNOR.


 
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Pubmed Style

BOGI KAVYA, T.KAVITHA. HYBRID MODEL FOR SEQUENTIAL AND COMBINATIONAL CIRCUITS MODELLEDON NEW XOR-XNOR GATES FOR LOW POWER APPLICATIONS. EEO. 2021; 20(5): 4115-4122. doi:10.17051/ilkonline.2021.05.451


Web Style

BOGI KAVYA, T.KAVITHA. HYBRID MODEL FOR SEQUENTIAL AND COMBINATIONAL CIRCUITS MODELLEDON NEW XOR-XNOR GATES FOR LOW POWER APPLICATIONS. http://ilkogretim-online.org//?mno=68945 [Access: April 09, 2021]. doi:10.17051/ilkonline.2021.05.451


AMA (American Medical Association) Style

BOGI KAVYA, T.KAVITHA. HYBRID MODEL FOR SEQUENTIAL AND COMBINATIONAL CIRCUITS MODELLEDON NEW XOR-XNOR GATES FOR LOW POWER APPLICATIONS. EEO. 2021; 20(5): 4115-4122. doi:10.17051/ilkonline.2021.05.451



Vancouver/ICMJE Style

BOGI KAVYA, T.KAVITHA. HYBRID MODEL FOR SEQUENTIAL AND COMBINATIONAL CIRCUITS MODELLEDON NEW XOR-XNOR GATES FOR LOW POWER APPLICATIONS. EEO. (2021), [cited April 09, 2021]; 20(5): 4115-4122. doi:10.17051/ilkonline.2021.05.451



Harvard Style

BOGI KAVYA, T.KAVITHA (2021) HYBRID MODEL FOR SEQUENTIAL AND COMBINATIONAL CIRCUITS MODELLEDON NEW XOR-XNOR GATES FOR LOW POWER APPLICATIONS. EEO, 20 (5), 4115-4122. doi:10.17051/ilkonline.2021.05.451



Turabian Style

BOGI KAVYA, T.KAVITHA. 2021. HYBRID MODEL FOR SEQUENTIAL AND COMBINATIONAL CIRCUITS MODELLEDON NEW XOR-XNOR GATES FOR LOW POWER APPLICATIONS. Elementary Education Online, 20 (5), 4115-4122. doi:10.17051/ilkonline.2021.05.451



Chicago Style

BOGI KAVYA, T.KAVITHA. "HYBRID MODEL FOR SEQUENTIAL AND COMBINATIONAL CIRCUITS MODELLEDON NEW XOR-XNOR GATES FOR LOW POWER APPLICATIONS." Elementary Education Online 20 (2021), 4115-4122. doi:10.17051/ilkonline.2021.05.451



MLA (The Modern Language Association) Style

BOGI KAVYA, T.KAVITHA. "HYBRID MODEL FOR SEQUENTIAL AND COMBINATIONAL CIRCUITS MODELLEDON NEW XOR-XNOR GATES FOR LOW POWER APPLICATIONS." Elementary Education Online 20.5 (2021), 4115-4122. Print. doi:10.17051/ilkonline.2021.05.451



APA (American Psychological Association) Style

BOGI KAVYA, T.KAVITHA (2021) HYBRID MODEL FOR SEQUENTIAL AND COMBINATIONAL CIRCUITS MODELLEDON NEW XOR-XNOR GATES FOR LOW POWER APPLICATIONS. Elementary Education Online, 20 (5), 4115-4122. doi:10.17051/ilkonline.2021.05.451








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