2021
DOI: 10.3390/ma14195721
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A Feasible Alternative to FDSOI and FinFET: Optimization of W/La2O3/Si Planar PMOS with 14 nm Gate-Length

Abstract: At the 90-nm node, the rate of transistor miniaturization slows down due to challenges in overcoming the increased leakage current (Ioff). The invention of high-k/metal gate technology at the 45-nm technology node was an enormous step forward in extending Moore’s Law. The need to satisfy performance requirements and to overcome the limitations of planar bulk transistor to scales below 22 nm led to the development of fully depleted silicon-on-insulator (FDSOI) and fin field-effect transistor (FinFET) technologi… Show more

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Cited by 9 publications
(1 citation statement)
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References 45 publications
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“…Better device switching (on/off) can result from steeping SS and a larger I on /I off ratio. Table 3 illustrates a comparison of the optimized and calibrated device parameters with different 14-nm FinFET device technologies [28][29][30]. Finally, it should be highlighted that nowadays the interest for the FinFET technology is spreading more and more in many fields of application-such as single-molecule detection [31], pH sensing [32,33], biomedicine [34], label-free biosensing [35], 5G power amplifiers [36], energy harvesting [37], and space application [38], just to mention a few.…”
Section: Device Optimizationmentioning
confidence: 99%
“…Better device switching (on/off) can result from steeping SS and a larger I on /I off ratio. Table 3 illustrates a comparison of the optimized and calibrated device parameters with different 14-nm FinFET device technologies [28][29][30]. Finally, it should be highlighted that nowadays the interest for the FinFET technology is spreading more and more in many fields of application-such as single-molecule detection [31], pH sensing [32,33], biomedicine [34], label-free biosensing [35], 5G power amplifiers [36], energy harvesting [37], and space application [38], just to mention a few.…”
Section: Device Optimizationmentioning
confidence: 99%