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Showing results 1-50 of 339 << Previous 1 2 3 4 5 6 7    Next >>

2020
1 Låte, Even; Ytterdal, Trond; Aunet, Snorre.
An Energy Efficient Level Shifter Capable of Logic Conversion From Sub-15 mV to 1.2 V. IEEE Transactions on Circuits and Systems - II - Express Briefs 2020 p. -
NTNU Untitled
 
2019
2 Aunet, Snorre.
Asynchronous ultra low voltage / low power CMOS - what and why, but not much about how.. No.133 Asynchronous Circuit Design and Its Applications: Past, Present and Future; 2019-05-15 - 2019-05-19
NTNU Untitled
 
3 Boland, Connor.
Low Power Environmental Air Quality Monitoring. Trondheim: NTNU 2019
NTNU Untitled
 
4 Christensen, Steinar Thune; Aunet, Snorre; Qadir, Omer.
A Configurable and Versatile Architecture for Low Power, Energy Efficient Hardware Acceleration of Convolutional Neural Networks. I: 2019 IEEE Nordic Circuits and Systems Conference (NORCAS): NORCHIP and International Symposium of System-on-Chip (SoC). IEEE 2019 ISBN 9781728127699. p. -
NTNU Untitled
 
5 Christensen, Steinar Thune.
En Konfigurerbar og Fleksibel Arkitektur for Laveffekt, Energieffektiv Maskinvareakselerasjon av Nevrale Nettverk basert på Foldning. Trondheim: NTNU 2019
NTNU Untitled
 
6 Fini, Simone.
Sub-Threshold Design of Arithmetic Circuits: when Serial might overcome Parallel Architectures. Trondheim: NTNU 2019
NTNU Untitled
 
7 Hossein Zadeh, Somayeh; Ytterdal, Trond; Aunet, Snorre.
Exploring optimal back bias voltages for ultra low voltage CMOS digital Circuits in 22 nm FDSOI Technology. 2019 IEEE Nordic Circuits and Systems Conference (NORCAS): NORCHIP and International Symposium of System-on-Chip (SoC); 2019-10-29 - 2019-10-30
NTNU UiO Untitled
 
8 Hossein Zadeh, Somayeh; Ytterdal, Trond; Aunet, Snorre.
Exploring optimal back bias voltages for ultra low voltage CMOS digital Circuits in 22 nm FDSOI Technology. I: 2019 IEEE Nordic Circuits and Systems Conference (NORCAS): NORCHIP and International Symposium of System-on-Chip (SoC). IEEE 2019 ISBN 9781728127699. p. -
NTNU Untitled
 
9 Hossein Zadeh, Somayeh; Ytterdal, Trond; Aunet, Snorre.
Ultra-Low Voltage Subthreshold Binary Adder Architectures for IoT Applications: Ripple Carry Adder or Kogge Stone Adder. I: 2019 IEEE Nordic Circuits and Systems Conference (NORCAS): NORCHIP and International Symposium of System-on-Chip (SoC). IEEE 2019 ISBN 9781728127699. p. -
NTNU Untitled
 
10 Hossein Zadeh, Somayeh; Ytterdal, Trond; Aunet, Snorre.
Ultra-Low Voltage Subthreshold Binary Adder Architectures for IoT Applications: Ripple Carry Adder or Kogge Stone Adder. 2019 IEEE Nordic Circuits and Systems Conference (NORCAS): NORCHIP and International Symposium of System-on-Chip (SoC); 2019-10-29 - 2019-10-30
NTNU UiO Untitled
 
11 Paintsil, Wesley Ryan.
A comparative study for commercial TVOC sensors. Trondheim: NTNU 2019
NTNU Untitled
 
12 Seyedi, Azam; Aunet, Snorre; Kjeldsberg, Per Gunnar.
Nwise: an Area Efficient and Highly Reliable Radiation Hardened Memory Cell Designed for Space Applications. I: 2019 IEEE Nordic Circuits and Systems Conference (NORCAS): NORCHIP and International Symposium of System-on-Chip (SoC). IEEE 2019 ISBN 9781728127699. p. -
NTNU Untitled
 
13 Seyedi, Azam; Aunet, Snorre; Kjeldsberg, Per Gunnar.
Towards Compact Radiation Hardened Memories for Space Applications. Lecture, Circuit and Radio Systems Group; 2019-11-29 - 2019-11-29
NTNU UiO Untitled
 
14 Vatanjou, Ali Asghar.
Ultra Low-Power/Low-Energy CMOS Mixed-Signal Building Blocks. Trondheim: NTNU 2019 (ISBN 978-82-326-4322-6) 122 p.
NTNU Untitled
 
15 Zadeh, Somayeh Hossein; Ytterdal, Trond; Aunet, Snorre.
Ultra low voltage subthreshold Binary Adder Architectures for IoT Applications: Ripple Carry Adder or Kogge Stone Adder. IEEE NORCAS 2019; 2019-10-29 - 2019-10-30
NTNU Untitled
 
16 Zadeh, Somayeh Hossein; Ytterdal, Trond; Aunet, Snorre.
Low Energy CMOS building blocks for IoT. lunchforedrag, gruppen for Krets- og radiosystemer; 2019-06-28 - 2019-06-28
NTNU Untitled
 
17 Zadeh, Somayeh Hossein; Ytterdal, Trond; Aunet, Snorre.
Low Energy CMOS building blocks for IoT. 10th annual workshop, Norwegian PhD Network on Nanotechnology for Microsystems; 2019-06-17 - 2019-06-19
NTNU Untitled
 
2018
18 Aunet, Snorre.
Possibilities with ultra low power / low energy integrated circuits. IEEE Norway Section Annual General Meeting 2018; 2018-12-11 - 2018-12-11
NTNU Untitled
 
19 Choe, Ju Song.
Test system design for a Photomultiplier Readout Board. Trondheim: NTNU 2018 219 p.
NTNU Untitled
 
20 Hossein Zadeh, Somayeh; Ytterdal, Trond; Aunet, Snorre.
Comparison of Ultra Low Power Full Adder Cells in 22 nm FDSOI Technology. I: Proceedings of the 2018 IEEE Nordic Circuits and Systems Conference (NORCAS): NORCHIP and International Symposium of System-on-Chip (SoC). IEEE 2018 ISBN 978-1-5386-7656-1. p. -
NTNU Untitled
 
21 Låte, Even; Ytterdal, Trond; Aunet, Snorre.
A loadless 6T SRAM cell for sub- & near- threshold operation implementedin 28 nm FD-SOI CMOS technology. Integration 2018 ;Volume 63. p. 56-63
NTNU Untitled
 
22 Paldas, Auritro.
Towards Predictable Placement of Standard Cells for Regularly Structured Designs. Trondheim: NTNU 2018 75 p.
NTNU Untitled
 
23 Rørstad Helle, Even.
Humidity Sensor. Trondheim: NTNU 2018 90 p.
NTNU Untitled
 
24 Stubsjøen, Sivert.
Force measurement using a capacitive sensor and a compressible material. Trondheim: NTNU 2018 38 p.
NTNU Untitled
 
25 Vatanjou, Ali Asghar; Ytterdal, Trond; Aunet, Snorre.
An Ultra-Low Voltage and Low-Energy Level Shifter in 28 nm UTBB-FDSOI. IEEE Transactions on Circuits and Systems - II - Express Briefs 2018 ;Volume 66.(6) p. 899-903
NTNU Untitled
 
26 Østerhus, Stian.
Subthreshold CMOS Cell Library by 22 nm FDSOI Technology. Trondheim: NTNU 2018 177 p.
NTNU Untitled
 
2017
27 Aunet, Snorre.
Introduction to ultra-low power electronic circuits design. WIBEC (Horizon 2020 project) training school - selected topics in Electronics, Communication, and Sensing; 2017-10-17 - 2017-10-17
NTNU Untitled
 
28 Aunet, Snorre.
Introduction to ultra-low power electronic circuits design. invitert foredrag; 2017-11-03 - 2017-11-03
NTNU Untitled
 
29 Aunet, Snorre.
Introduction to ultra-low power electronic circuits design. invitert foredrag; 2017-11-03 - 2017-11-03
NTNU Untitled
 
30 Aunet, Snorre.
Ultra-low power electronic circuits for medical applications. WIBEC (Horizon 2020 project) training school - selected topics in Electronics, Communication, and Sensing; 2017-10-17 - 2017-10-17
NTNU Untitled
 
31 Hasanbegovic, Amir.
Exploring the SEU Dependence on Supply Voltage scaling in 90 nm and 65 nm CMOS Flip-flops. : Universitetet i Oslo 2017 108 p.
UiO Untitled
 
32 Lesund, Martin.
Ultra-low power serial communication for Internet of Things. Gløshaugen: NTNU 2017 122 p.
NTNU Untitled
 
33 Lid, Gunnar.
Ultra-low power Design of DSRC modulator/demodulator in 28nm FD_SOI. Gløshaugen: NTNU 2017 70 p.
NTNU Untitled
 
34 L'Orange, Simon.
4-7Ghz Tunable Programmable Pulse Generator in 65nm CMOS. NTNU, Trondheim: NTNU 2017 54 p.
NTNU Untitled
 
35 Låte, Even; Vatanjou, Ali Asghar; Ytterdal, Trond; Aunet, Snorre.
Extended Comparative Analysis of Flip-Flop Architectures for Subthreshold Applications in 28 nm FD-SOI. Microprocessors and microsystems 2017 ;Volume 48. p. 11-20
NTNU Untitled
 
36 Tørresen, Jim; Aunet, Snorre.
Special issue: Selected papers from the 1st NORCAS conference (2015 Nordic Circuits and Systems Conference (NORCAS): Norchip & International Symposium on System-on-Chip (SoC)). Microprocessors and microsystems 2017 ;Volume 48. p. 1-2
NTNU UiO Untitled
 
37 Vatanjou, Ali Asghar; Låte, Even; Ytterdal, Trond; Aunet, Snorre.
Ultra-Low Voltage and Energy Efficient Adders in 28 nm FDSOI Exploring Poly-Biasing for Device Sizing. Microprocessors and microsystems 2017 ;Volume 56. p. 92-100
NTNU Untitled
 
38 Vatanjou, Ali Asghar; Ytterdal, Trond; Aunet, Snorre.
Ultra-Low Voltage/Energy CMOS Building Blocks in 28 nm FDSOI Technology. 8th NanoNetwork annual workshop; 2017-06-12 - 2017-06-14
NTNU UiO Untitled
 
2016
39 Aunet, Snorre; Tørresen, Jim.
Special issue: selected papers from the 1st NORCAS conference (2015 Nordic Circuits and Systems Conference (NORCAS): NORCHIP and International Symposium on System-on-Chip (SoC)). Analog Integrated Circuits and Signal Processing 2016 ;Volume 89.(2) p. 271-272
UiO Untitled
 
40 Barua, Anomadarshi.
Voice over mesh network. Trondheim: NTNU 2016 137 p.
NTNU Untitled
 
41 Hasanbegovic, Amir; Aunet, Snorre.
Heavy Ion Characterization of Temporal-, Dual- and Triple Redundant Flip-Flops Across a Wide Supply Voltage Range in a 65 nm Bulk CMOS Process. IEEE Transactions on Nuclear Science 2016 ;Volume 63.(6) p. 2962-2970
NTNU UiO Untitled
 
42 Kvam Oma, Åsmund.
Design of a near-threshold microcontroller. Trondheim: NTNU 2016 77 p.
NTNU Untitled
 
43 Liknes, Kai Robert.
Ultra Low Leakage Memory. Trondheim: NTNU 2016 78 p.
NTNU Untitled
 
44 Vatanjou, Ali Asghar; Låte, Even; Ytterdal, Trond; Aunet, Snorre.
Ultra-Low Voltage Adders in 28 nm FDSOI Exploring Poly-Biasing for Device Sizing. IEEE Nordic Conference on Circuits and Systems; 2016-11-01 - 2016-11-02
NTNU Untitled
 
45 Vatanjou, Ali Asghar; Låte, Even; Ytterdal, Trond; Aunet, Snorre.
Ultra-Low Voltage Adders in 28 nm FDSOI Exploring Poly-Biasing for Device Sizing. I: Proceedings of the 2nd IEEE Nordic Circuits and Systems Conference (NORCaS), 2016. IEEE conference proceedings 2016 ISBN 978-1-5090-1095-0. p. -
NTNU Untitled
 
46 Vatanjou, Ali Asghar; Ytterdal, Trond; Aunet, Snorre.
28 nm UTBB-FDSOI energy efficient and variation tolerant custom digital-cell library with application to a subthreshold MAC block. I: Proceedings of the 23rd International Conference - "Mixed Design of Integrated Circuits and Systems" (MIXDES), Lodz, Poland. IEEE conference proceedings 2016 ISBN 9788363578084. p. 105-110
NTNU Untitled
 
47 Vatanjou, Ali Asghar; Ytterdal, Trond; Aunet, Snorre.
28 nm UTBB-FDSOI energy efficient and variation tolerant custom digital-cell library with application to a subthreshold MAC block. "Mixed Design of Integrated Circuits and Systems" (MIXDES).; 2016-06-23 - 2016-06-25
NTNU Untitled
 
2015
48 Atarzadeh, Hourieh; Aunet, Snorre; Ytterdal, Trond.
An Ultra-Low-Power/High-Speed 9-bit Adder Design: Analysis and Comparison Vs. Technology from 130nm-LP to UTBBFD-SOI-28nm. I: Nordic Circuits and Systems Conference (NORCAS): NORCHIP & International Symposium on System-on-Chip (SoC), 2015. IEEE conference proceedings 2015 ISBN 978-1-4673-6576-5. p. -
NTNU Untitled
 
49 Atarzadeh, Hourieh; Aunet, Snorre; Ytterdal, Trond.
An Ultra-Low-Power/High-Speed 9-bit Adder Design: Analysis and Comparison Vs. Technology from 130nm-LP to UTBBFD-SOI-28nm. 1st NORCaS Conference; 2015-10-26 - 2015-10-28
NTNU Untitled
 
50 Aunet, Snorre.
Ultra Low Power / Low Energy Integrated Circuits. Nano Matchmaking Seminar; 2015-06-02 - 2015-06-02
NTNU Untitled
 
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