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Integrated Ferroelectrics
An International Journal
Volume 124, 2011 - Issue 1
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Original Articles

Modeling a Common-Source Amplifier Using a Ferroelectric Transistor

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Pages 147-156 | Received 03 Jun 2010, Accepted 27 Oct 2010, Published online: 27 Jun 2011

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Read on this site (4)

Mitchell R. Hunt, Rana Sayyah, Cody Mitchell, Crystal L. McCartney, Todd C. Macleod & Fat D. Ho. (2014) Mathematical Models of the Common-Source and Common-Gate Amplifiers Using a Metal-Ferroelectric-Semiconductor Field Effect Transistor. Integrated Ferroelectrics 157:1, pages 81-88.
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Mitchell Hunt, Rana Sayyah, ToddC. Macleod & FatD. Ho. (2013) Expanded Characterization of the Common-Drain Amplifier Using Metal-Ferroelectric-Semiconductor Field Effect Transistors. Integrated Ferroelectrics 141:1, pages 134-144.
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Mitchell Hunt, Rana Sayyah, ToddC. Macleod & FatD. Ho. (2012) A Mathematical Model for the Common-Drain Amplifier Using a Metal-Ferroelectric-Semiconductor Field Effect Transistor. Integrated Ferroelectrics 139:1, pages 106-115.
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Mitchell Hunt, Rana Sayyah, ToddC. Macleod & FatD. Ho. (2012) Characterization of a Common-Gate Amplifier Using Ferroelectric Transistors. Integrated Ferroelectrics 134:1, pages 121-129.
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Articles from other publishers (3)

Hanxiang Li, Dazhi Ding, Zi He, Hong Cheng Yin & Lin Guan. (2019) Electro-Thermal Analysis of MOSFET Amplifier circuit by the SETD Model. Electro-Thermal Analysis of MOSFET Amplifier circuit by the SETD Model.
Rana Sayyah, Mitchell Hunt & Fat D. Ho. (2013) A physically-derived nonquasi-static model of ferroelectric amplifiers for computer-aided device simulation – Part II: The ferroelectric common-source and common-gate amplifiers. Solid-State Electronics 86, pages 58-63.
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Rana Sayyah, Mitchell Hunt & Fat D. Ho. (2013) A physically-derived nonquasi-static model of ferroelectric amplifiers for computer-aided device simulation – Part I: The ferroelectric common-drain amplifier. Solid-State Electronics 86, pages 51-57.
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