Subthreshold Schmitt trigger using body-bias technique for ultra low power and high performance applications
Vandana Niranjan, Maneesha Gupta, Nupur Pzakash
Abstract
Vandana Niranjan, Maneesha Gupta, Nupur Pzakash
Abstract
Digital subthreshold logic provides extremely low power consumption since the power supplies are kept below the threshold voltage and using the small subthreshold current of MOS transistors to operate. In this paper, a body-bias technique to match the subthreshold currents of both the NMOS and PMOS transistors is explored and a Schmitt trigger circuit employing this bias technique is proposed. Extensive circuit simulations were conducted and the results were compared with standard body bias technique in terms of performance parameters. The simulation results were obtained with 0.18 μm technology parameters. The conclusion is that Schmitt trigger with this body biasing is suitable for high performance and ultra low power applications.
OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Digital subthreshold logic provides extremely low power consumption since the power supplies are kept below the threshold voltage and using the small subthreshold current of MOS transistors to operate. In this paper, a body-bias technique to match the subthreshold currents of both the NMOS and PMOS transistors is explored and a Schmitt trigger circuit employing this bias technique is proposed. Extensive circuit simulations were conducted and the results were compared with standard body bias technique in terms of performance parameters. The simulation results were obtained with 0.18 μm technology parameters. The conclusion is that Schmitt trigger with this body biasing is suitable for high performance and ultra low power applications.
Key concepts: Schmitt trigger, Subthreshold conduction, NMOS logic, PMOS logic, Ultra low power, Biasing, Transistor, Power (physics)