Difference between revisions of "Main Page"
From iis-projects
(→Digital Design) |
(→Integrated Devices, Electronics, And Systems Group (Prof. Wang)) |
||
(84 intermediate revisions by 30 users not shown) | |||
Line 1: | Line 1: | ||
__NOTOC__ | __NOTOC__ | ||
<CENTER><H1> Welcome to IIS-Projects</H1></CENTER> | <CENTER><H1> Welcome to IIS-Projects</H1></CENTER> | ||
− | + | On this page, you will find student and research projects at the [http://www.iis.ee.ethz.ch Integrated Systems Laboratory] of the [http://www.ethz.ch ETH Zurich]. | |
− | + | ||
==Institute Organization== | ==Institute Organization== | ||
− | The IIS Consists of | + | The IIS Consists of 7 main research groups |
* [[Analog| Analog and Mixed Signal Design]] | * [[Analog| Analog and Mixed Signal Design]] | ||
− | * [[Digital| | + | * [[Digital| Digital Circuits and Systems]] |
− | * [[ | + | * [[Energy Efficient Circuits and IoT Systems Group| Energy Efficient Circuits and IoT Systems]] |
* [[:Category:Nano-TCAD|Nano-TCAD]] | * [[:Category:Nano-TCAD|Nano-TCAD]] | ||
+ | * [[Integrated Information Processing| Integrated Information Processing]] | ||
+ | * [[:Category:Physical Characterization|Physical Characterization]] | ||
+ | * [[Integrated Devices, Electronics, And Systems|Integrated Devices, Electronics, And Systems]] | ||
+ | |||
+ | ===[[Integrated Devices, Electronics, And Systems|Integrated Devices, Electronics, And Systems Group (Prof. Wang)]]=== | ||
+ | * [[Simulation of 2D artificial cilia metasurface in COMSOL]] | ||
+ | * [[An Ultra-Compact High-Power CMOS Power Amplifier for Millimeter-Wave 5G Communications]] | ||
+ | * [[Noise Figure Measurement for Cryogenic System]] | ||
+ | * [[Design of a D-Band Variable Gain Amplifier for 6G Communication]] | ||
+ | * [[Super Resolution Radar/Imaging at mm-Wave frequencies]] | ||
+ | * [[Machine Learning Assisted Direct Synthesis of Passive Networks]] | ||
+ | * [[High resolution, low power Sigma Delta ADC]] | ||
+ | * [[Electrically verifying a CMOS Multi-Modal Electrochemical, Impedance, and Optical Cellular Sensing Array for Massively Paralleled Exoelectrogen Screening]] | ||
+ | * [[A FPGA-based data streaming system that enables real-time monitoring of cell culture and neuroactivities]] | ||
+ | |||
+ | ===[[Analog|Analog and Mixed Signal Design Group (Dr. Burger)]]=== | ||
+ | * [[Analog IC Design]] | ||
+ | * [[Mixed Signal IC Design]] | ||
+ | * [[Wireless Communication Systems for the IoT]] | ||
+ | <!--* [[High-Performance & V2X Cellular Communications]]---> | ||
+ | |||
+ | ===[[Digital|Digital Circuits and Systems Group (Prof. Benini)]]=== | ||
+ | * [[High Performance SoCs]] | ||
+ | * [[Energy Efficient SoCs]] | ||
+ | * [[Acceleration and Transprecision]] | ||
+ | * [[Heterogeneous SoCs]] | ||
+ | * [[Event-Driven Computing]] | ||
+ | * [[HW/SW Safety and Security]] | ||
+ | * [[Low Power Embedded Systems and Wireless Sensors Networks]] | ||
+ | * [[Embedded Artificial Intelligence:Systems And Applications]] | ||
+ | * [[Students' International Competitions: F1(AMZ), Swissloop, Educational Rockets]] | ||
+ | * [[Wireless Communication Systems for the IoT]] | ||
+ | * [[Energy Efficient Autonomous UAVs]] | ||
+ | * [[Biomedical Circuits, Systems, and Applications]] | ||
+ | ** [[Digital Medical Ultrasound Imaging]] | ||
+ | **[[Flexible Electronic Systems and Embedded Epidermal Devices]] | ||
+ | ** [[Human Intranet]] | ||
+ | <!-- ** [[Biomedical System on Chips]] --> | ||
+ | ** [[Wearables for Sports and Fitness Tracking]] | ||
+ | * [[Cryptography|Cryptographic Hardware]] | ||
+ | * [[Deep Learning Projects|Deep Learning Acceleration]] | ||
+ | * [[IBM Research]] | ||
+ | * [[Huawei Research]] | ||
− | == | + | ===[[Energy Efficient Circuits and IoT Systems Group| Energy Efficient Circuits and IoT Systems Group (Prof. Jang)]]=== |
− | |||
− | |||
− | |||
− | |||
− | |||
<DynamicPageList> | <DynamicPageList> | ||
− | category = | + | category = EECIS |
category = Available | category = Available | ||
category = Hot | category = Hot | ||
</DynamicPageList> | </DynamicPageList> | ||
− | ===[[ | + | |
+ | ===[[:Category:Nano-TCAD|Nano-TCAD Group (Prof. Luisier)]]=== | ||
<DynamicPageList> | <DynamicPageList> | ||
− | category = | + | category = Nano-TCAD |
category = Available | category = Available | ||
category = Hot | category = Hot | ||
</DynamicPageList> | </DynamicPageList> | ||
− | ===[[ | + | ===[[Integrated Information Processing|Integrated Information Processing Group (Prof. Studer)]]=== |
<DynamicPageList> | <DynamicPageList> | ||
− | category = | + | category = IIP |
− | category = Available | + | category = Available |
− | |||
− | |||
</DynamicPageList> | </DynamicPageList> | ||
− | ===[[:Category: | + | ===[[:Category:Physical Characterization|Physical Characterization Group (Dr.Ciappa)]]=== |
<DynamicPageList> | <DynamicPageList> | ||
− | category = | + | category = Physical Characterization |
category = Available | category = Available | ||
category = Hot | category = Hot | ||
</DynamicPageList> | </DynamicPageList> | ||
− | ===[[:Category: | + | |
+ | ===[[:Category:Collaboration|Collaborations with other groups/departments]]=== | ||
<DynamicPageList> | <DynamicPageList> | ||
− | category = | + | category = Collaboration |
category = Available | category = Available | ||
− | |||
</DynamicPageList> | </DynamicPageList> | ||
Line 73: | Line 110: | ||
; [http://www.iis.ee.ethz.ch http://www.iis.ee.ethz.ch] | ; [http://www.iis.ee.ethz.ch http://www.iis.ee.ethz.ch] | ||
: Integrated Systems Laboratory Main homepage | : Integrated Systems Laboratory Main homepage | ||
− | |||
− | |||
; [http://www.nano-tcad.ethz.ch http://www.nano-tcad.ethz.ch] | ; [http://www.nano-tcad.ethz.ch http://www.nano-tcad.ethz.ch] | ||
:Nano-TCAD group homepage | :Nano-TCAD group homepage |
Latest revision as of 16:14, 27 September 2023
Welcome to IIS-Projects
On this page, you will find student and research projects at the Integrated Systems Laboratory of the ETH Zurich.
Institute Organization
The IIS Consists of 7 main research groups
- Analog and Mixed Signal Design
- Digital Circuits and Systems
- Energy Efficient Circuits and IoT Systems
- Nano-TCAD
- Integrated Information Processing
- Physical Characterization
- Integrated Devices, Electronics, And Systems
Integrated Devices, Electronics, And Systems Group (Prof. Wang)
- Simulation of 2D artificial cilia metasurface in COMSOL
- An Ultra-Compact High-Power CMOS Power Amplifier for Millimeter-Wave 5G Communications
- Noise Figure Measurement for Cryogenic System
- Design of a D-Band Variable Gain Amplifier for 6G Communication
- Super Resolution Radar/Imaging at mm-Wave frequencies
- Machine Learning Assisted Direct Synthesis of Passive Networks
- High resolution, low power Sigma Delta ADC
- Electrically verifying a CMOS Multi-Modal Electrochemical, Impedance, and Optical Cellular Sensing Array for Massively Paralleled Exoelectrogen Screening
- A FPGA-based data streaming system that enables real-time monitoring of cell culture and neuroactivities
Analog and Mixed Signal Design Group (Dr. Burger)
Digital Circuits and Systems Group (Prof. Benini)
- High Performance SoCs
- Energy Efficient SoCs
- Acceleration and Transprecision
- Heterogeneous SoCs
- Event-Driven Computing
- HW/SW Safety and Security
- Low Power Embedded Systems and Wireless Sensors Networks
- Embedded Artificial Intelligence:Systems And Applications
- Students' International Competitions: F1(AMZ), Swissloop, Educational Rockets
- Wireless Communication Systems for the IoT
- Energy Efficient Autonomous UAVs
- Biomedical Circuits, Systems, and Applications
- Cryptographic Hardware
- Deep Learning Acceleration
- IBM Research
- Huawei Research
Energy Efficient Circuits and IoT Systems Group (Prof. Jang)
- Optimal routing for 2D Mesh-based Analog Compute-In-Memory Accelerator Architecture (IBM-Zurich)
- Energy Efficient Serial Link
- Design of low mismatch DAC used for VAD
- Neural Recording Interface and Signal Processing
- Development of an implantable Force sensor for orthopedic applications
- Energy-efficient Circuits for Fully Wireless Brain-machine Interfaces
- Design of Time-Encoded Spiking Neural Networks (IBM-Zurich)
- Spiking Neural Network for Motor Function Decoding Based on Neural Dust
- Hardware/software codesign neural decoding algorithm for “neural dust”
- Application Specific Frequency Synthesizers (Analog/Digital PLLs)
Nano-TCAD Group (Prof. Luisier)
- Efficient Banded Matrix Multiplication for Quantum Transport Simulations
- Charge and heat transport through graphene nanoribbon based devices
- Molecular Binding Kinetics Modelling of NO2 on Graphene/hBN Heterostructure
- Quantum Transport Modeling of Interband Cascade Lasers (ICL)
- Every individual on the planet should have a real chance to obtain personalized medical therapy
- Integrated silicon photonic structures-Lumiphase
- Characterization techniques for silicon photonics-Lumiphase
- Implementation of Computationally Efficient Scattering Mechanisms for Periodic Devices and 2D Materials
- Electrothermal characterization of van der Waals Heterostructures with a partial overlap
- Phase-change memory devices for emerging computing paradigms
- Finite element modeling of electrochemical random access memory
- Influence of the Initial Filament Geometry on the Forming Step in CBRAM.
- Nanoscale Hybrid III-V Plasmonic Laser for Low-Power Photonic ICs
- Design space exploration of InP Heterojunction Bipolar Transistors (DHBTs)
- Quantum transport in 2D heterostructures
- Development of an efficient algorithm for quantum transport codes
- Investigation of Metal Diffusion in Oxides for CBRAM Applications
- Investigation of Redox Processes in CBRAM
Integrated Information Processing Group (Prof. Studer)
- Artificial Reverberation for Embedded Systems
- High-Speed SAR ADC for next generation wireless communication in 12nm FinFET
- High-Speed Digital-to-Analog Converter (DAC) for massive MIMO testing in 65nm CMOS
- Modular Frequency-Modulation (FM) Music Synthesizer
- Alias-Free Oscillator Synchronization for Arbitrary Waveforms
- Analysis of Low-Power Wide Area Network Technologies for the Internet of Things
- Low-Complexity MIMO Detection
- Low-power time synchronization for IoT applications
- Forward error-correction ASIC using GRAND
- Through Wall Radar Imaging using Machine Learning
- Passive Radar for UAV Detection using Machine Learning
- Reconfigurable Fully-Unrolled 2D-FFT Core Generator for Multi-Antenna mmWave Communication
- Digitally-Controlled Analog Subtractive Sound Synthesis
- Low Resolution Neural Networks
- Accelerating Applications Relying on Matrix-Vector-Product-Like Operations
- XNORLAX: Fused XNOR-LATCH Custom-Standard-Cell-Based Processing-in-Memory
- VLSI Design of an Asynchronous LDPC Decoder
- FFT HDL Code Generator for Multi-Antenna mmWave Communication
- Deep Unfolding of Iterative Optimization Algorithms
- Low-Resolution 5G Beamforming Codebook Design
- Design-Space Exploration of Low-Resolution Matrix-Vector Multipliers
- Practical Reconfigurable Intelligent Surfaces (RIS)
- Self-Supervised User Positioning in Cell-Free Massive MIMO Systems
- Signal Acquisition and Clock Offset Compensation for High-Rate Pulse UWB PHYs
- Peak-to-average power Reduction
Physical Characterization Group (Dr.Ciappa)
- Characterization of the susceptibility to cosmic radiation of wide bandgap power devices by radioactive sources and at cryogenic temperatures
- Design of an on-field adaptable pulse-processing unit for semicondutor radiation detectors
- Design and Exploitation of a Test-Bench for Non-Destructive Characterization of the Susceptibility of Silicon Carbide (SiC) Power Devices to Cosmic Radiation
- Experimental Validation of Impact Ionization Models for TCAD Simulation by a Novel Characterization Technique
- Design and implementation of the front-end for a portable ionizing radiation detector
Collaborations with other groups/departments
Selected Projects in Progress
For a complete list, see Projects in Progress.
- A RISC-V ISA Extension for Pseudo Dual-Issue Monte Carlo in Snitch (1M/2S)
- Accelerating Matrix Multiplication on a 216-core MPSoC (1M)
- ASIC Implementation of a Low-Power mmWave Massive MIMO Equalizer with a Custom Number Format
- ASIC implementation of an interpolation-based wideband massive MIMO detector
- Jammer Mitigation Meets Machine Learning
Selected Completed Projects
For a complete list, see Completed Projects.
- Benchmarking a heterogeneous 217-core MPSoC on HPC applications (M/1-3S)
- VLSI Implementation of a Systolic Array for LMMSE Detection in mmWave Massive MIMO-OFDM
- Audio Visual Speech Recognition (1S/1M)
- Audio Visual Speech Separation (1S/1M)
- Evaluating SoA Post-Training Quantization Algorithms
Selected Research Projects
For a complete list, see Research Projects.
- Benchmarking a heterogeneous 217-core MPSoC on HPC applications (M/1-3S)
- VLSI Implementation of a Systolic Array for LMMSE Detection in mmWave Massive MIMO-OFDM
- Audio Visual Speech Recognition (1S/1M)
- Audio Visual Speech Separation (1S/1M)
- Evaluating SoA Post-Training Quantization Algorithms
Links to Other IIS Webpages
- http://www.iis.ee.ethz.ch
- Integrated Systems Laboratory Main homepage
- http://www.nano-tcad.ethz.ch
- Nano-TCAD group homepage
- http://www.dz.ee.ethz.ch
- Microelectronics Design Center
- http://asic.ethz.ch/cg
- The IIS-ASIC Chip Gallery
- http://eda.ee.ethz.ch
- EDA Wiki (ETH Zurich internal access only!)