Design of High Speed Kogge-Stone Based Carry Select Adder AIM: The main aim of the project is to design “ Design of High Speed Kogge-Stone Based Carry Select Adder”. (ABSTRACTIn this paper, we propose a high speed Carry Select Adder by replacing Ripple Carry Adders with parallel prefiadders. Adders are the basic b!ilding bloc"s in digital integrated circ!it based designs. Ripple Carry Adders #RCA$ are !s!ally preferred for addition of two m!lti%bit n!mbers as these RCAs offer fast design time among all types of adders. &owe'er RCAs are slowest adders as e'ery f!ll adder m!st wait till the carry is generated from pre'io!s f!ll adder. (n the other hand, Carry )oo" Ahead #C)A$ adders are faster adders, b!t they re*!ired more area. The Carry Select Adder is a compromise on between the RCA and C)A in term of area and de la y. CS)A is desi gned by !s ing d!al RCA+ d!e to this arrangement the area and delay are still concerned factors. It is clear that there is a sc ope for red!ci ng de la y in s!ch an arrangement. In this researc h, we ha 'e implemented CS)A with prefiadders. refiadders are tree str!ct!re based and are pr ef er re d to speed !p the bi na ry ad di ti ons. This wo r" esti ma tes the performance of proposed design in terms of )ogic and ro!te delay. The eperimental res!lts show that the performance of CS)A with parallel prefiadder is faster and area efficient compared to con'entional modified CS)A. V.Mallikarjun a (Project manager) Mobile No: +91-8297578555. ISO: 9001- 2008 CERTIFIEDCOMPANYBranch!: "#$ra%a$ & Na'()r
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8/14/2019 Design of High Speed Kogge-Stone Based Carry Select Adder.doc
Design of High Speed Kogge-Stone Based Carry Select Adder
AIM:
The main aim of the project is to design “ Design of High Speed Kogge-Stone
Based Carry Select Adder”.
(ABSTRACT
In this paper, we propose a high speed Carry Select Adder by replacing RippleCarry Adders with parallel prefi adders. Adders are the basic b!ilding bloc"s in
digital integrated circ!it based designs. Ripple Carry Adders #RCA$ are !s!ally
preferred for addition of two m!lti%bit n!mbers as these RCAs offer fast design
time among all types of adders. &owe'er RCAs are slowest adders as e'ery f!ll
adder m!st wait till the carry is generated from pre'io!s f!ll adder. (n the other
hand, Carry )oo" Ahead #C)A$ adders are faster adders, b!t they re*!ired more
area. The Carry Select Adder is a compromise on between the RCA and C)A in
term of area and delay. CS)A is designed by !sing d!al RCA+ d!e to this
arrangement the area and delay are still concerned factors. It is clear that there is a
scope for red!cing delay in s!ch an arrangement. In this research, we ha'e
implemented CS)A with prefi adders. refi adders are tree str!ct!re based and
are preferred to speed !p the binary additions. This wor" estimates the
performance of proposed design in terms of )ogic and ro!te delay. The
eperimental res!lts show that the performance of CS)A with parallel prefi adder
is faster and area efficient compared to con'entional modified CS)A.
V.Mallikarjuna (Project manager) Mobile No: +91-8297578555.
ISO: 9001- 2008 CERTIFIED COMPANY Branch!: "#$ra%a$ &Na'()r
8/14/2019 Design of High Speed Kogge-Stone Based Carry Select Adder.doc
In this architect!re, a high speed Carry Select Adder by replacing Ripple Carry
Adders with parallel prefi adders. Adders are the basic b!ilding bloc"s in digital
integrated circ!it based designs. Ripple Carry Adders #RCA$ are !s!ally preferred
for addition of two m!lti%bit n!mbers as these RCAs offer fast design time among
all types of adders.
Ad"antage:
-ollowing the approach, the Carry Select Adder is a compromise on between theRCA and C)A in term of area and delay. CS)A is designed by !sing d!al RCA+
d!e to this arrangement the area and delay are still concerned factors. It is clear
that there is a scope for red!cing delay in s!ch an arrangement.
B#$CK DIA%RAM:
-ig. CS)A architect!re
V.Mallikarjuna (Project manager) Mobile No: +91-8297578555.
ISO: 9001- 2008 CERTIFIED COMPANY Branch!: "#$ra%a$ &Na'()r
8/14/2019 Design of High Speed Kogge-Stone Based Carry Select Adder.doc