High speed six operands 16-bits carry save adder

Adders are commonly found in the critical path of many building blocks of microprocessors and digital signal processing chips. The most important for measuring the quality of adder designs in the past were propagation delay, and area. The purpose of the project is to implement a high-speed three lev...

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Main Author: Awatif Hashim
Other Authors: Norina Idris (Advisor)
Format: Learning Object
Language:English
Published: School of Microelectronic Engineering 2008
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Online Access:http://dspace.unimap.edu.my/xmlui/handle/123456789/1933
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Institution: Universiti Malaysia Perlis
Language: English
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spelling my.unimap-19332008-10-08T09:04:41Z High speed six operands 16-bits carry save adder Awatif Hashim Norina Idris (Advisor) Microprocessors Quartus II software High speed adder Carry Save Adder (CSA) Metal oxide semiconductors, Complementary Integrated circuits Adders are commonly found in the critical path of many building blocks of microprocessors and digital signal processing chips. The most important for measuring the quality of adder designs in the past were propagation delay, and area. The purpose of the project is to implement a high-speed three levels six operands of 16-bits CSA with RCA at the end of the design. The objective of this project are design faster execution of CSA using gate logic design and implement it to the Altera UP2 board. The project is simulated and clarifies the output using Quartus II software and Altera UP2 board implementation to verify the design architectures. The high-speed circuit was designed by using smallest delay between five different logic gates Full Adder (FA) and by adding pipeline. This project has been achieved from 16.84MHz to the 90.09MHz speed on EPF10K70RC240-4 device. This result contribute CSA is in faster speed. 2008-09-03T08:49:31Z 2008-09-03T08:49:31Z 2007-03 Learning Object http://hdl.handle.net/123456789/1933 en School of Microelectronic Engineering
institution Universiti Malaysia Perlis
building UniMAP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Perlis
content_source UniMAP Library Digital Repository
url_provider http://dspace.unimap.edu.my/
language English
topic Microprocessors
Quartus II software
High speed adder
Carry Save Adder (CSA)
Metal oxide semiconductors, Complementary
Integrated circuits
spellingShingle Microprocessors
Quartus II software
High speed adder
Carry Save Adder (CSA)
Metal oxide semiconductors, Complementary
Integrated circuits
Awatif Hashim
High speed six operands 16-bits carry save adder
description Adders are commonly found in the critical path of many building blocks of microprocessors and digital signal processing chips. The most important for measuring the quality of adder designs in the past were propagation delay, and area. The purpose of the project is to implement a high-speed three levels six operands of 16-bits CSA with RCA at the end of the design. The objective of this project are design faster execution of CSA using gate logic design and implement it to the Altera UP2 board. The project is simulated and clarifies the output using Quartus II software and Altera UP2 board implementation to verify the design architectures. The high-speed circuit was designed by using smallest delay between five different logic gates Full Adder (FA) and by adding pipeline. This project has been achieved from 16.84MHz to the 90.09MHz speed on EPF10K70RC240-4 device. This result contribute CSA is in faster speed.
author2 Norina Idris (Advisor)
author_facet Norina Idris (Advisor)
Awatif Hashim
format Learning Object
author Awatif Hashim
author_sort Awatif Hashim
title High speed six operands 16-bits carry save adder
title_short High speed six operands 16-bits carry save adder
title_full High speed six operands 16-bits carry save adder
title_fullStr High speed six operands 16-bits carry save adder
title_full_unstemmed High speed six operands 16-bits carry save adder
title_sort high speed six operands 16-bits carry save adder
publisher School of Microelectronic Engineering
publishDate 2008
url http://dspace.unimap.edu.my/xmlui/handle/123456789/1933
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