Development of Android application for MOSFET modeling and analysis
In this study, an Android application for calculating MOSFET scattering parameters was developed to address the problems encountered by existing electronicdesign automation (EDA) tools in obtaining MOSFET parameters quickly and conveniently, especially for electronic students who require such auxili...
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Nanyang Technological University
2024
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sg-ntu-dr.10356-1771242024-05-24T15:56:13Z Development of Android application for MOSFET modeling and analysis Hong, Xinyu Tan Eng Leong School of Electrical and Electronic Engineering EELTan@ntu.edu.sg Engineering MOSFET EDA Android Scattering parameters In this study, an Android application for calculating MOSFET scattering parameters was developed to address the problems encountered by existing electronicdesign automation (EDA) tools in obtaining MOSFET parameters quickly and conveniently, especially for electronic students who require such auxiliary tools. This application simplifies the complex calculation process, allowing users to quickly obtain the necessary MOSFET scattering parameters by inputting relevant parameters. It can display the data calculation principles and steps according to user needs, effectively supporting the needs of circuit design and analysis. Meanwhile, in order to verify the accuracy and practicality of the application, this study chose MATLAB and Simpletex software as the main auxiliary testing tools. The test results show that the Android application has shown good performance in calculating MOSFET scattering parameters, demonstrating its potential in teaching and practical applications in the field of electronic design and helping students in this field to have a deeper understanding of critical concepts in circuit design. Master's degree 2024-05-23T02:39:48Z 2024-05-23T02:39:48Z 2024 Thesis-Master by Coursework Hong, X. (2024). Development of Android application for MOSFET modeling and analysis. Master's thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/177124 https://hdl.handle.net/10356/177124 en application/pdf Nanyang Technological University |
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Engineering MOSFET EDA Android Scattering parameters |
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Engineering MOSFET EDA Android Scattering parameters Hong, Xinyu Development of Android application for MOSFET modeling and analysis |
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In this study, an Android application for calculating MOSFET scattering parameters was developed to address the problems encountered by existing electronicdesign automation (EDA) tools in obtaining MOSFET parameters quickly and conveniently, especially for electronic students who require such auxiliary tools. This application simplifies the complex calculation process, allowing users to quickly obtain the necessary MOSFET scattering parameters by inputting relevant parameters. It can display the data calculation principles and steps according to user needs, effectively supporting the needs of circuit design and analysis.
Meanwhile, in order to verify the accuracy and practicality of the application, this study chose MATLAB and Simpletex software as the main auxiliary testing tools. The test results show that the Android application has shown good performance in calculating MOSFET scattering parameters, demonstrating its potential in teaching and practical applications in the field of electronic design and helping students in this field to have a deeper understanding of critical concepts in circuit design. |
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Tan Eng Leong |
author_facet |
Tan Eng Leong Hong, Xinyu |
format |
Thesis-Master by Coursework |
author |
Hong, Xinyu |
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Hong, Xinyu |
title |
Development of Android application for MOSFET modeling and analysis |
title_short |
Development of Android application for MOSFET modeling and analysis |
title_full |
Development of Android application for MOSFET modeling and analysis |
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Development of Android application for MOSFET modeling and analysis |
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Development of Android application for MOSFET modeling and analysis |
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development of android application for mosfet modeling and analysis |
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Nanyang Technological University |
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2024 |
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https://hdl.handle.net/10356/177124 |
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