Computational Analysis Of Novel Dual Tail Comparator To Reduce The Power Consumption And Compare With Conventional Comparator
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newlineAnalog-to-Digital Converters (ADCs) and Digital-to-Analog converters
newline(DACs) are important newline components in modern microelectronics
newlineapplications that require an interface between the analogue and progressive
newlinedigital signal processing worlds. Nowadays consumer electronics, medical
newlineequipment, communication and newline instrumentation applications, are
newlinecurrent growing areas. With the rapid newline development of CMOS
newlinetechnology, more and more signal processing circuits and building newline
newlineblocks are being implemented in the digital domain for cheaper cost, lower
newlinepower consumption, higher yield, and greater reconfigurability. It
newlineis implemented to digital and analogue blocks into newline one chip with
newlineadditional ADCs or DACs. Newline Analog circuits such as voltage newline
newlinereference and operational amplifiers, as well as mixed signal circuits such as
newlinecomparators, are the basic building blocks of ADCs and DACs. The different single comparator, usually referred to as a 1-bit ADC, is
newlinefrequently present in newline ADCs. The comparator is utilized in various
newlineapplications, including high-speed wireless and wire line newline
newlinecommunication systems, memory, relaxation oscillators, null detectors, zero- crossing detectors, newline peak detectors, switching power regulators, and
newlinenew generation VLSI logic circuits. Compared to another logic style, the Pseudo NMOS logic style has
newlinelower power consumption and less delay. Transistor count has been observed
newlineto be lower in modified pseudo-n mos type designs than in other logic style
newlinedesigns. The power consumption of the comparator is 1.104854e-004 watts
newlinecompared to the dual tail and double tail comparator. In this simulation of the
newlineproposed comparator a 180nm CMOS technology consumes the power of
newline69and#956;W at 1.2v Ac power supply voltage. The proposed circuit is a low-offset
newlinelow-power high-speed comparator which works at a wide input common-mode
newlinevoltage range. Relays with a built-in time delay have that capability.