Proposed Title :
A 22nm CMOS Implementation of Class AB Bulk Driven OTA method at 0.2 V
Improvement of this Project:
- To Design a Class AB Bulk Driven OTA method at 22nm CMOS technology using 0.2 V at 100 KHz frequency. Similarly compared this same work with existing method of 180nm CMOS technology using 0.3 V at 3.5 KHz frequency.
Software implementation:
- Tanner EDA
Proposed System:
In this paper presents a operational trans-conductance amplifier (OTA) to provide a novelty for an ultralow voltage (ULV), ultralow power (ULP). In the Miller Zero compensation technique of multipath method will required low voltage driven with a combination of non-tailed differential bulk driven. Thus, a straightforward class of AB low power efficient ULV structure have been acquire, which can work on the supply voltages below the threshold of the MOS transistors used. While simultaneously providing the common more range of the input rail to rail. The existing method of OTA based architecture was developed at 180nm CMOS technology using 0.3V at 3.5 KHz frequency. In the proposed method of OTA architecture was developed at 22nm CMOS technology using 0.2V at 100 KHz frequency, finally this work as developed in Tanner EDA tool, and proved the comparison of delay and power consumptions.
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A Compact 0.3 V Class AB Bulk Driven OTA
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