About the Journal
Journal of Electronic Design Technology
Journal of Electronic Design Technology [2229-6980(e)]Â is a peer-reviewed hybrid open-access journal launched in 2010 focused on the rapid publication of fundamental research papers on all areas of Electronic Design Technologies.
Focus & Scope
- Electronic Circuit Design: Analog, digital, mixed-signal, discrete and integrated electronic circuits; circuit modelling; simulation; analysis; optimization; prototyping; and performance evaluation.
- Analog Electronics: Amplifiers, operational amplifiers, oscillators, filters, comparators, voltage and current references, signal-conditioning circuits, analog interfaces, and low-noise electronic systems.
- Digital Electronics: Logic circuits, combinational and sequential systems, finite-state machines, digital logic families, arithmetic circuits, timing circuits, digital interfaces, and high-speed digital design.
- Mixed-Signal Electronics: Analog-to-digital converters, digital-to-analog converters, phase-locked loops, clock and data recovery, mixed-signal interfaces, signal-conditioning systems, and mixed-domain verification.
- Semiconductor Devices and Electronics: Diodes, BJTs, MOSFETs, CMOS devices, FinFETs, power semiconductor devices, optoelectronic devices, nanoscale devices, device modelling, and emerging semiconductor technologies.
- Semiconductor Fabrication and Processing: Wafer fabrication, oxidation, diffusion, ion implantation, lithography, etching, deposition, surface passivation, isolation techniques, front-end-of-line processing, back-end-of-line processing, and packaging.
- Integrated Circuit Design: Analog ICs, digital ICs, mixed-signal ICs, application-specific integrated circuits, system-on-chip architectures, low-power ICs, interface circuits, and integrated electronic systems.
- VLSI and CMOS Design: CMOS circuit design, VLSI architectures, RTL design, logic synthesis, physical design, low-power VLSI, timing analysis, layout design, and circuit verification.
- Electronic Design Automation: Circuit simulation, schematic capture, PCB design automation, logic synthesis, placement and routing, physical verification, timing analysis, power analysis, design-rule checking, and automated electronic design.
- PCB and Electronic Hardware Design: Printed-circuit-board design, multilayer PCBs, signal integrity, power integrity, grounding, electromagnetic compatibility, thermal design, component placement, routing, and hardware prototyping.
- Embedded Systems: Microcontrollers, microprocessors, embedded processors, firmware-hardware integration, real-time systems, embedded interfaces, embedded sensing, and application-specific electronic systems.
- Digital Signal Processing: Digital filters, Fourier and wavelet techniques, audio processing, speech processing, image processing, radar and sonar signal processing, biomedical signals, and real-time DSP implementations.
- Sensors and Electronic Interfaces: Analog and digital sensors, transducers, sensor interfaces, smart sensors, signal-conditioning circuits, data acquisition, MEMS sensors, biosensors, and sensor fusion.
- Power Electronics and Power Management: Power supplies, regulators, DC-DC converters, inverters, battery-management interfaces, power-management ICs, energy harvesting, and efficient electronic power systems.
- RF and Microwave Electronics: RF amplifiers, mixers, oscillators, antennas, wireless front ends, microwave circuits, RF integrated circuits, high-frequency design, and wireless electronic systems.
- Communication Electronics: Modulation and demodulation circuits, transmitters, receivers, communication interfaces, wireless systems, optical communication electronics, and digital communication hardware.
- Optoelectronics and Photonics: LEDs, lasers, photodetectors, optical sensors, optical receivers, integrated photonics, optoelectronic interfaces, and electronic-photonic integration.
- MEMS and Microsystems: Microelectromechanical devices, microsensors, microactuators, integrated microsystems, CMOS-MEMS integration, and miniaturized electronic systems.
- Electronic Instrumentation and Measurement: Measurement circuits, data-acquisition systems, oscilloscopes, electronic test systems, calibration, instrumentation amplifiers, and intelligent measurement technologies.
- Signal Integrity and Electromagnetic Compatibility: Crosstalk, impedance matching, transmission-line effects, electromagnetic interference, shielding, grounding, filtering, and EMC-aware design.
- Hardware Testing and Reliability: Circuit testing, design for testability, fault diagnosis, reliability analysis, thermal effects, component aging, failure mechanisms, and electronic-system robustness.
- Low-Power and Energy-Efficient Electronics: Low-voltage electronics, low-power circuits, energy-efficient architectures, sleep modes, leakage reduction, energy harvesting, and battery-operated electronic systems.
- Artificial Intelligence in Electronic Design: Machine-learning-assisted circuit optimization, AI-based fault diagnosis, automated design-space exploration, predictive modelling, intelligent EDA, and AI-supported hardware development.
- IoT and Smart Electronic Systems: IoT nodes, connected sensors, smart devices, edge electronics, wireless embedded platforms, smart-home electronics, industrial IoT hardware, and remote electronic monitoring.
- Flexible and Wearable Electronics: Flexible circuits, printed electronics, wearable sensors, electronic textiles, stretchable electronics, biomedical wearables, and low-power wearable systems.
- Emerging Electronic Technologies: Neuromorphic electronics, memristive circuits, chiplets, 3D integration, digital twins for electronics, advanced packaging, quantum electronic devices, and next-generation electronic design technologies.
Keywords
Electronic Circuit Design, Analog Electronics, Digital Electronics, Semiconductor Devices, Embedded Systems, Electronic Design Automation, Digital Signal Processing, VLSI Design, PCB Design, IoT Electronics