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Journal of Microcontroller Engineering and Applications

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The Journal of Microcontroller Engineering and Applications (JOMEA) provides authoritative insights for academicians, developers, robotics professionals, and hardware engineers working on embedded AI, wearable technology, automation systems, and next-generation controller architectures.

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Journal of Microcontroller Engineering and Applications

The Journal of Microcontroller Engineering and Applications (JOMEA) is a distinguished peer-reviewed publication dedicated to advancing scholarly research, engineering innovation, and practical applications across microcontrollers, embedded systems, IoT hardware, and intelligent automation. This authoritative journal brings together engineers, researchers, embedded developers, automation professionals, educators, and technology leaders to explore transformative insights shaping modern embedded electronics and smart system design.

What This Journal Covers: Key Focus Areas

The Journal of Microcontroller Engineering and Applications explores a wide range of essential and emerging themes in embedded design and controller-based engineering, including:

  • Microcontroller Architecture & Firmware Development: Processor architectures, low-level programming, firmware optimization, memory management, real-time execution, embedded C/C++, and low-power system design.
  • Embedded Systems & Real-Time Applications: RTOS-based development, hardware-software co-design, real-time control systems, timing analysis, edge computing, and embedded signal processing.
  • IoT Devices & Connected Technologies: IoT-enabled microcontrollers, wireless communication protocols (BLE, Wi-Fi, Zigbee, LoRa), sensor integration, smart devices, and cloud-connected embedded solutions.
  • Robotics & Automation Engineering: Robot control systems, motor drivers, actuator integration, autonomous robotics, PID control, embedded motion control algorithms, and industrial automation modules.
  • Embedded Hardware Design & Prototyping: PCB design, circuit integration, microcontroller peripherals, ADC/DAC systems, prototyping tools, power management, and hardware testing techniques.

Who Should Read the Journal

This journal serves a diverse and growing community of embedded and automation professionals:

  • Embedded system engineers and developers building real-time and controller-based solutions.

  • Electronics and hardware designers are creating microcontroller-driven prototypes and devices.

  • Academicians and researchers exploring embedded computing, IoT frameworks, and automation innovation.

  • Automation and robotics professionals are implementing intelligent control and industrial systems.

  • Technology consultants and engineering leaders advising organizations on embedded development, product design, and system integration.

Why It Matters

As embedded systems become the backbone of modern automation, IoT, and smart technologies, the Journal of Microcontroller Engineering and Applications plays a pivotal role by:

  • Publishing advanced research that strengthens embedded design and real-time system performance

  • Promoting innovation in microcontroller-based automation and smart devices

  • Encouraging sustainable, efficient, and secure embedded engineering practices

  • Supporting breakthroughs in IoT connectivity, robotics, and hardware–software integration

  • Fostering interdisciplinary collaboration among electronics engineers, automation experts, and computing researchers

With rigorous peer review, strong scholarly credibility, and global relevance, the journal contributes to the development of intelligent, reliable, and cutting-edge embedded solutions across industries worldwide.

Subscription & Access Options

The Journal of Microcontroller Engineering and Applications offers flexible access options suited for academic institutions, research labs, electronic design firms, and individual professionals.

  • Digital Access: A feature-rich online platform providing instant access to current issues, archived volumes, and a searchable database of peer-reviewed research.
  • Print Edition: Professionally printed copies available for universities, engineering institutes, laboratories, electronics libraries, and individual subscribers.

Subscription packages, institutional licenses, and bulk access options can be obtained through the STM Journals distribution system.

Why Choose STM Journals?

STM Journals ensures excellence in engineering and technological publishing through:

  • Rigorous peer review ensuring credible, high-quality research

  • Global reach, facilitating widespread access to embedded and microcontroller knowledge

  • Multiple access formats to support digital learning and traditional library collections

  • Strong focus on advancing embedded electronics, real-time computing, and automation engineering

For embedded engineers, researchers, educators, and innovators shaping the future of intelligent systems, the Journal of Microcontroller Engineering and Applications is a trusted and invaluable resource.

About Journal

Journal of Microcontroller Engineering and Applications Journal of Microcontroller Engineering and Applications [2455-197X(e)] is a peer-reviewed hybrid open-access journal launched in 2014 focused on the rapid publication of fundamental research papers on all areas of Microprocessor Engineering & Applications.

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Journal Information

Title: Journal of Microcontroller Engineering and Applications Abbreviation: JoMEA
Issues Per Year: 3 Issues Starting Year: 2014
E-ISSN: 2455-197X Publisher: STM Journals, An imprint of Consortium e-Learning Network Pvt. Ltd.
DOI: 10.37591/JoMEA Subject: Microcontroller Engineering and Applications
Language: English Publication Format: Hybrid Open Access
Copyright Policy: CC BY-NC-ND Type: Peer-reviewed Journal (Refereed Journal)

Indexing & Metrics

Indexing: Google Scholar, Advanced Science Index (ASI), Index Copernicus, Scientific Literature (SCILIT), SJIF

ICV Value: 2022: 56.07

Impact Factor (SJIF): 2024: 6 | 2023: 5.999 | 2022: 5.998 | 2021: 5.984 | 2020: 5.984

Focus & Scope

Advanced Computing Systems & Microarchitecture

An integrated engineering roadmap—bridging microelectronic device physics and radiation hardening with FPGA/ASIC design, GPU acceleration, and thread-level parallelism.

Microprocessor Systems

Developing cellular and Bluetooth host controllers. Focus on biometric classification (Gabor wavelets/SVM), datalogging for meteorological/soil sensors, and chaotic encryption schemes.

Devices & Circuits

Engineering subthreshold swing and low band gap materials. Addressing radiation effects (Single Event Upsets) in hardened ICs and advancing inkjet-printed electronics and micro-packaging.

Logic Design & ASICs

Implementing PLCs and FPGAs for industrial control. Focus on hardware security (PUFs), run-time reconfiguration, clock gating for low power, and spiking neural network (SNN) accelerators.

Parallel Acceleration

Utilizing CUDA and GPUs for molecular dynamics and N-body simulations. Applying DSP for DOA estimation, machine vision fruit quality inspection, and gas detection clustering.

SoC & NoC Architecture

Designing System-on-Chip (SoC) with custom hardware accelerators. Managing power-aware routing in Wireless Body Area Networks and NoC fault tolerance for high-confidence computing.

Instruction Level Parallelism

Optimizing thread-level parallelism and energy-delay products. Utilizing loop/data transformations in compilers and Bayesian optimization for process-structure-property exploration.

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