Influence of Temperature on Nanoscale Semiconductor Devices

Printed Book
SR 376
Inclusive of VAT
Sold as: EACH
SR22Per Month/24 months
Author:Gana, Sulaiman Muhammad
Date of Publication: 2025
Book classification:Education,English Books,
No. of pages:168 Pages
Format:Paperback

This book is printed on demand and is non-refundable after purchase

Available Formats :

Printed Book

It will be sent to your address

SR376
Incl. VAT

Choose your delivery preference

Or

About this Product

The book investigates the impact of temperature on electron transport in Double-Gate (DG) and Silicon-On-Insulator (SOI) MOSFETs using a quasi-ballistic transport model. By employing the NanoMOS simulation tool, the study examines key transport parameters such as drain current, electron velocity, 2D electron density, and channel resistance over a temperature range of 50K to 850K and varying doping concentrations. The results show that SOI MOSFETs outperform DG MOSFETs at higher temperatures and doping levels, offering better electron mobility and stronger on-state current. However, DG MOSFETs are more suitable for smaller channel lengths due to their superior on-state current at 10 nm. The findings suggest that temperature and doping concentration significantly influence MOSFET performance, providing insights into optimizing device design for high-performance applications.
Show more

Specifications

SKU9786208429300
Manufacturer Number9786208429300
year published2025
Show more

Report an issue with this product.

Customer Reviews