Aims
The Journal of Intelligent Analog & Mixed-Signal Systems for Emerging Applications (JIAMSA) is an international, peer-reviewed, open-access journal dedicated to advancing high-quality research at the intersection of intelligent analog and mixed-signal integrated circuit design with emerging real-world applications. The journal seeks to bridge the gap between circuit-level innovation and application-driven technologies, fostering interdisciplinary scholarship that translates engineering discoveries into deployable and societally impactful solutions.
The primary aims of the journal are to:
- Publish original, rigorous, and innovative research in analog and mixed-signal circuit design and its integration with emerging application domains.
- Promote interdisciplinary collaboration across semiconductor engineering, biomedical electronics, artificial intelligence, and intelligent embedded systems.
- Accelerate the translation of circuit-level innovations into industrially deployable and scalable technologies.
- Advance scientific developments in healthcare electronics, secure infrastructure, sustainable IoT, and AI-enabled semiconductor systems.
- Foster international collaboration among researchers, engineers, clinicians, and industry leaders across diverse geographical regions.
- Uphold the highest standards of scientific integrity, publication ethics, transparency, and reproducibility in accordance with international best practices.
- Provide a structured pathway toward global visibility through indexing in major bibliographic databases, including DOAJ, Scopus, and Web of Science.
Scope
JIAMSA welcomes original research articles, systematic reviews, review articles, comparative studies, case reports, and short communications in, but not limited to, the following areas:
Low-Power Analog & Mixed-Signal Circuit Design
- CMOS analog and mixed-signal integrated circuits
- Operational amplifiers, comparators, and precision circuits
- Analog-to-digital and digital-to-analog converters (ADCs/DACs)
- Phase-locked loops (PLLs) and voltage references
- Ultra-low-power and advanced-node semiconductor design
Biomedical Electronics & Wearable Health Systems
- Biosensors and medical instrumentation
- ECG, EEG, EMG, and physiological signal acquisition systems
- Implantable and ingestible medical devices
- Smart prosthetics and neuromodulation systems
- Remote patient monitoring technologies
Smart Sensors, Internet of Things (IoT) & Industry 5.0
- Intelligent sensor interfaces and edge computing
- Wireless sensor networks and connected infrastructure
- Industrial IoT and cyber-physical systems
- Smart agriculture and environmental monitoring
- Edge AI for pervasive sensing applications
Energy Harvesting & Sustainable Microelectronics
- Self-powered electronic systems
- Solar, thermal, piezoelectric, and RF energy harvesting
- Power management integrated circuits (PMICs)
- Battery-less and ultra-low-power systems
- Green electronics aligned with sustainable development goals
Hardware Security & Quantum-Resistant Circuits
- Physical unclonable functions (PUFs)
- True random number generators (TRNGs)
- Hardware cryptographic accelerators
- Post-quantum cryptographic hardware
- Secure hardware architectures and anti-counterfeiting technologies
Artificial Intelligence for Circuit Design
- AI-assisted analog circuit synthesis and optimization
- Intelligent electronic design automation (EDA)
- Machine learning for yield prediction and fault diagnosis
- Neuromorphic computing and brain-inspired hardware
- AI-hardware co-design frameworks
Data Science, Signal Processing & Embedded Intelligence
- Embedded machine learning systems
- Signal processing algorithms and architectures
- Sensor fusion and real-time analytics
- Data-driven circuit modeling and reliability analysis
- Edge intelligence and low-power AI inference
Emerging Applications
- Healthcare technologies and biomedical systems
- Aerospace and defence electronics
- Smart grids and sustainable infrastructure
- Electric vehicle electronics and power systems
- Quantum sensing, terahertz electronics, and flexible electronics
The journal particularly encourages interdisciplinary research that demonstrates clear scientific novelty, methodological rigor, reproducibility, and measurable real-world impact. Manuscripts that integrate multiple domains of engineering and applied sciences to address contemporary technological challenges are especially welcomed.