Microelectronics: Device characterization and modeling,
Device physics and novel structures, Materials and
characterization techniques, Reliability and failure analysis,
Radiation effects, Packaging, surface mount technology,
Optoelectronics, MEMS and MOEMS devices, Smart power devices and
sensors, Custom and semi-custom circuits, Interconnects,
Embedded system design, Systems on Chip (SoCs), Reconfigurable
chip design, Design for testability, Low-voltage, low-power VLSI
design, ANN applications, Circuits for wireless communications,
Modelling and simulation (process, device, circuit, logic,
timing, functional), Trends in sub-micron technologies, Special
microelectronic devices (magnetic memory, novel memory,
imaging), Signal processing and multiplexing, DRAM, SRAM, flash
high density, NVM, Logic/microprocessors, embedded logic, SiGe,
GaN, and SiC devices, SOI, RF mixed analog/digital, Quantum
computing, Microactuators, sensors and sensor networks,
Biomimetic devices, Terahertz technology, System level
verification,
Nanoelectronics: Nanomaterial, Nanofabriction,
Nanomeasurement, Nanodevice, Nanocircuit, Nanocharacterization,
Advanced silicon devices and device physics, Nanotechnology for
IC manufacturing, RF and mixed signal ICs, Noise behavior of MOS
structures, Non-volatile memory technologies, Computational
nanoelectronics, Particle simulation methods, Parameter
extraction techniques, Interconnect modeling and algorithms,
Modeling fabrication processes and equipment, Ballistic and
quantum mechanical effects, Characterization and processing of
new materials, Reliability of nanodevices and ESD design, Novel
devies and post-CMOS silicon device structure, Key process
technologies to integrate sub-100 nm Si ULSIs, Advanced physics
in nanoelectronics analysis and synthesis, Physics and chemistry
of surface and interface phenomena, Sub-100 nm silicon CMOS
devices and their integration technologies, Process control,
failure analysis, yield enhancements and modeling, Analytical
methods and simulation algorithms for nanoelectronics, Advanced
silicon circuits and systems, Advanced digital, analog,
mixed-signal, and memory, Low power technologies and power aware
systems, Integration of circuit and device simulation, Analog
and digital circuits composed of nanodevices, System-level
integration and packaging technologies, Chemical phenomena in
the design of nanocircuits, Neural network, fuzzy logic, and
multi-valued logic, Physical and circuit models of nanodevices
and interconnects, Benchmarking, calibration, and verification
of simulators, Integrated nanolelectronics and multifunction
integrated circuits, Design, modeling, and simulation of
nanoelectronic integrated circuits, Design and CAD technologies
for the advanced packaging and system integration, Modeling and
simulation of thermal, mechanical and electrical performance of
packaging and system integration
Quantum Electronics: Spintronics, Quantum computing,
Single electron devices, Nanotubes and nanostructures, Quantum
phenomena in nanoscale, Dynamics of nanostructures, Quantum
transport and quantum devices, Quantum wire, quantum well, and
quantum dot, Wireless cellular automata, Hybrid micro-nanoelectronic
logic, Heterostructures and superlattices, Compound
semiconductor materials and devices, Self-assembly, nano and
molecular scale devices, Spin and carrier control in quantum
nanostructures, Ab-initio calculations of the electronic
properties of nanostructures
Biomolecular Electronics: Molecular switches, Molecular
electronics, Molecular manufacturing, Molecular electronic
devices, Nanocomputing-nanocomputers, Functioning molecular
wires, Inorganic nanowires and nanocrystals, Molecular
electronic memory technology, Molecular computing-molecular
computers, Circuit paradigm in molecular electronics, Organic
semiconductor devices and materials, Electrical properties of
organic thin film and materials, DNA computing, Biophysics,
Biocomputing and biocomputers, User interfaces and
visualization, Bioelectronics and bioinformatics, Biomedical and
microfluidic applications, Biotechnologies in the design of
nanocircuits, Biomedical engineering and biomedical electronics,
Carrier transport in molecular and biological systems,
Algorithms and biochips for DNA, healthcare and proteins, Micro-nano
electromechanical devices for bio- and chemical applications,
High performance computing, numerical methods and algorithms,
including optimization, Computational methods and integrated
systems for biochemical and medical applications,
Optoelectronics: Optical Fibers, Optical Cables, Optical
Fiber Devices, Fabrication, installations, Fiber Bragg gratings,
Lightwave circuits, Optical Fiber amplifiers and lasers, Optical
Polymer fibers, Photonic crystal fibers and related topics,
Optical Active Devices and Modules, Semiconductor lasers,
detectors and their arrays, Light emitting devices,
Semiconductor laser amplifiers, Waveguide laser amplifiers,
Optoelectronic/photonic integrated circuits, Optical logics,
memories and other functional devices, Related materials, device
fabrication and device physics, Packaging and modules and
related topics, Optical Passive Devices and Modules, Optical
waveguide integrated devices/circuits; Planar, Optical isolators
and circulators, Optical modulators and switches, Optical
fiber-waveguide coupling, packaging and modules, Planar glass
and polymer materials and device fabrication, Photonic crystals,
Optical MEMS, Micro-optics and related topics, Optical
Transmission Systems and Technologies, High speed optical
transmissions, Wavelength division multiplexing, Ultra-long haul
transmissions, Trans-oceanic systems, FTTx systems, Optical
interconnection, Optical signal processing, Optical analog
systems and related topics, Optoelectronic Networks and
Applications, Optical networking, architectures, design and
planning,
Communications: Microwave Theory and techniques,
Applications of Microwaves in Biomedicine, Computational Methods
for Microwaves Engineering, CAD design for Microwave Systems,
Microwaves Circuits, Finite Differences, Finite Volumes, Finite
Elements for Microwaves, Boundary Elements Method (BEM) applied
in Microwaves problems, Antennas and Radars, Finite Differences,
Finite Volumes, Finite Elements for Antennas, Boundary Elements
Method (BEM) applied in Antennas problems, Lightwave technology,
Submillimeter-Wave techniques, Microwave High-Power techniques,
Microwave and millimeter-Wave Integrated Circuits, Microwave and
millimeter-Wave Integrated Solid State Devices, Microwave
Acoustics, Filter and Passive Components, Microwave and Antennas
Measurements, Microwave Superconductivity, RFIC's, Wave-guides,
Microwave propagation, Ferrites devices. Cavities. Microwave
Circuits, Periodic Structures and Filters, Tubes, Masers,
Amplifiers, HF-VHF-UHF Engineering, Antennas, Reflectors and
Lens Antennas, Arrays, Scattering, Propagation, Diffraction,
Electromagnetic Compatibility Problems, Applied Electromagnetics,
Electromagnetic Field, Numerical Methods for Electromagnetics,
Mathematical Methods and Computational techniques for
Microwaves, Mathematical Methods and Computational techniques
for Antennas and Radars, Radio Engineering applications in
Astronomy, Navigation, Aerospace Systems, Low noise techniques,
Optical Fiber Systems, Communication Electronics, Signal
Processing for Wireless Communication., Communications Switching
and Routing, Physical Layer, ISDN, Computer Networks,
Architectural Aspects, ATM Networks, Protocols, Network
Architecture, Network Reliability, Narrow band and Broad band
Networks, Modern Routing Problems, Privacy and Security
Problems, Queuing Theory and Communications, Traffic Problems,
Wireless and Mobile Computing, Communication Systems
Integration, Cryptology, Military Communications, Internet,
Programming Techniques in Communications Networks, Simulation
Techniques in Telecommunications, Software for Communications
Development and Simulation, Social Implications of Modern
Communications, Soft Computing and Communications, Smart
Interfaces, Computer/Communications Integration, Education.,
Others...