Title :
A 14-transistor CMOS full adder with full voltage-swing nodes
Author :
Vesterbacka, Mark
Author_Institution :
Dept. of Electr. Eng., Linkoping Univ., Sweden
fDate :
6/21/1905 12:00:00 AM
Abstract :
We explain how exclusive OR and NOR circuits (XOR/XNOR) are used to realize a general full adder circuit based on pass transistors. A six-transistor CMOS XOR circuit that also produces a complementary XNOR output is introduced in the general full adder. The resulting full adder circuit is realized using only 14 MOSFETs, while having full voltage-swing in all circuit nodes. Layouts have been made in a 0.35 μm process for both the proposed full adder circuit and another 16-transistor full adder circuit based on pass transistors. The performance of the proposed full adder is evaluated by comparison of the simulation results obtained from HSPICE for both layouts. The two adders yield similar performance in terms of power consumption, power delay product, and propagation delay. The area is somewhat lower for the proposed adder due to the reduced device count. However, due to two feedback MOSFETs in the proposed adder that need to be ratioed, there is a higher cost in terms of design effort for the proposed adder
Keywords :
CMOS logic circuits; MOSFET; NOR circuits; SPICE; adders; delays; 14-transistor CMOS full adder; HSPICE; NOR circuits; complementary XNOR output; exclusive OR; full voltage-swing nodes; pass transistors; power consumption; power delay product; propagation delay; simulation results; Adders; CMOS logic circuits; Circuit simulation; Costs; Energy consumption; Feedback; Logic devices; MOSFETs; Propagation delay; Voltage;
Conference_Titel :
Signal Processing Systems, 1999. SiPS 99. 1999 IEEE Workshop on
Conference_Location :
Taipei
Print_ISBN :
0-7803-5650-0
DOI :
10.1109/SIPS.1999.822379