Nanoelectronic Devices for Hardware and Software Security
Herausgeber: Singh, Arun Kumar; Raj, Balwinder
Nanoelectronic Devices for Hardware and Software Security
Herausgeber: Singh, Arun Kumar; Raj, Balwinder
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This book has comprehensive coverage of the principles, basic concepts, structure, modelling, practices, and circuit applications of nanoelectronics in hardware/software security. It will also cover the future research directions in this domain.
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This book has comprehensive coverage of the principles, basic concepts, structure, modelling, practices, and circuit applications of nanoelectronics in hardware/software security. It will also cover the future research directions in this domain.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd (Sales)
- Seitenzahl: 340
- Erscheinungstermin: 7. Oktober 2024
- Englisch
- Abmessung: 254mm x 178mm x 19mm
- Gewicht: 612g
- ISBN-13: 9781032116952
- ISBN-10: 1032116951
- Artikelnr.: 71688170
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- 06621 890
- Verlag: Taylor & Francis Ltd (Sales)
- Seitenzahl: 340
- Erscheinungstermin: 7. Oktober 2024
- Englisch
- Abmessung: 254mm x 178mm x 19mm
- Gewicht: 612g
- ISBN-13: 9781032116952
- ISBN-10: 1032116951
- Artikelnr.: 71688170
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- 06621 890
Dr. Balwinder Raj (MIEEE'2006) has been an Associate Professor at National Institute of Technical Teachers Training and Research, Chandigarh, India, since December 2019. Earlier, he worked at National Institute of Technology (NIT, Jalandhar), Punjab, India from May 2012 to December 2019. Dr. Raj also worked as Assistant Professor at ABV-IIITM Gwalior (an autonomous institute established by Ministry of HRD, Govt. of India) July 2011 to April 2012. He received Best Teacher Award from Indian Society for Technical Education (ISTE) New Delhi on 26th July 2013. His areas of research interest are classical/non-classical nanoscale semiconductor device modeling; nanoelectronics and their applications in hardware security, sensors and circuit design, FinFET-based memory design, low power VLSI design, digital/analog VLSI design and FPGA implementation. Dr. Arun Kumar Singh is an Associate Professor in the Department of Electronics and Communication Engineering, Punjab Engineering College (Deemed to be University), Chandigarh. Earlier to PEC, he had worked as Lecturer at Global Institute of Technology from July, 2004 to April 2006. His core research interests focus on novel, high-speed semiconductor nanodevices operating at room temperature, terahertz frequencies, and their application in energy harvesting.
1. Emerging Nanoelectronic Devices
2. A Novel Vertical Tunnel FET and its Application in Mixed Mode
3. Vertical T-Shaped Heterojunction Tunnel Field-Effect Transistor for Low
Power Security system
4. Silicene and Germanene Nanoribbons for Interconnect Applications
5. Memristors and Its Applications
6. Memristor: A Novel Device for Better Hardware/Software Security
7. A State-of-the-Art Study on Physical Unclonable Functions for Hardware
Intrinsic Security"
8. Review on Medical Internet of Things based RFID Security Protocols
9. SOA-MZI based nanoscale optical communication with various
10. Modulation formats
11. Effect of Dielectric Material on Electrical Parameters Present Near
Source Region in Hetero
12. Gate Dielectric TFET
13. Quantum Dot Cellular Automata based Encoder circuit using layered
Universal Gates
14. Investigation of Nano Structured Honeycomb Patch Antenna with Photonic
Crystal Substrate
15. Silicon Micromachining for sub-millimeter wave and THz Technology
16. Photodetectors for security application
17. Nano-Rectifier: A Review, Current Status and Future Scope
18. Graphene SymFET and SiNW FET for IP Piracy prevention Security Systems
2. A Novel Vertical Tunnel FET and its Application in Mixed Mode
3. Vertical T-Shaped Heterojunction Tunnel Field-Effect Transistor for Low
Power Security system
4. Silicene and Germanene Nanoribbons for Interconnect Applications
5. Memristors and Its Applications
6. Memristor: A Novel Device for Better Hardware/Software Security
7. A State-of-the-Art Study on Physical Unclonable Functions for Hardware
Intrinsic Security"
8. Review on Medical Internet of Things based RFID Security Protocols
9. SOA-MZI based nanoscale optical communication with various
10. Modulation formats
11. Effect of Dielectric Material on Electrical Parameters Present Near
Source Region in Hetero
12. Gate Dielectric TFET
13. Quantum Dot Cellular Automata based Encoder circuit using layered
Universal Gates
14. Investigation of Nano Structured Honeycomb Patch Antenna with Photonic
Crystal Substrate
15. Silicon Micromachining for sub-millimeter wave and THz Technology
16. Photodetectors for security application
17. Nano-Rectifier: A Review, Current Status and Future Scope
18. Graphene SymFET and SiNW FET for IP Piracy prevention Security Systems
1. Emerging Nanoelectronic Devices
2. A Novel Vertical Tunnel FET and its Application in Mixed Mode
3. Vertical T-Shaped Heterojunction Tunnel Field-Effect Transistor for Low
Power Security system
4. Silicene and Germanene Nanoribbons for Interconnect Applications
5. Memristors and Its Applications
6. Memristor: A Novel Device for Better Hardware/Software Security
7. A State-of-the-Art Study on Physical Unclonable Functions for Hardware
Intrinsic Security"
8. Review on Medical Internet of Things based RFID Security Protocols
9. SOA-MZI based nanoscale optical communication with various
10. Modulation formats
11. Effect of Dielectric Material on Electrical Parameters Present Near
Source Region in Hetero
12. Gate Dielectric TFET
13. Quantum Dot Cellular Automata based Encoder circuit using layered
Universal Gates
14. Investigation of Nano Structured Honeycomb Patch Antenna with Photonic
Crystal Substrate
15. Silicon Micromachining for sub-millimeter wave and THz Technology
16. Photodetectors for security application
17. Nano-Rectifier: A Review, Current Status and Future Scope
18. Graphene SymFET and SiNW FET for IP Piracy prevention Security Systems
2. A Novel Vertical Tunnel FET and its Application in Mixed Mode
3. Vertical T-Shaped Heterojunction Tunnel Field-Effect Transistor for Low
Power Security system
4. Silicene and Germanene Nanoribbons for Interconnect Applications
5. Memristors and Its Applications
6. Memristor: A Novel Device for Better Hardware/Software Security
7. A State-of-the-Art Study on Physical Unclonable Functions for Hardware
Intrinsic Security"
8. Review on Medical Internet of Things based RFID Security Protocols
9. SOA-MZI based nanoscale optical communication with various
10. Modulation formats
11. Effect of Dielectric Material on Electrical Parameters Present Near
Source Region in Hetero
12. Gate Dielectric TFET
13. Quantum Dot Cellular Automata based Encoder circuit using layered
Universal Gates
14. Investigation of Nano Structured Honeycomb Patch Antenna with Photonic
Crystal Substrate
15. Silicon Micromachining for sub-millimeter wave and THz Technology
16. Photodetectors for security application
17. Nano-Rectifier: A Review, Current Status and Future Scope
18. Graphene SymFET and SiNW FET for IP Piracy prevention Security Systems