Smart electronic devices for next generation applications

Authors

  • V G HAMSAVENI ECE, SITAMS, Chittoor, Andhra Pradesh, India
  • Bindu H M ECE, Dayananda Sagar College of Engineering, Bengaluru, Karnataka, India
  • Abhishek M B Electronics and Communication Engineering ,Dayananda Sagar College of Engineering ,Bengaluru ,Karnataka, India
  • Venkata Krishna Sairam Nujalla BMS Electrical/Hardware Design Engineer, Ford Motor Company

DOI:

https://doi.org/10.70917/ijcisim-2026-5408

Keywords:

Smart Electronic Devices, Internet of Things, Intelligent Systems, Flexible Electronics, Next-Generation Applications

Abstract

Smart electronic devices are emerging as a foundational component of next-generation technological systems, enabling intelligent sensing, communication, computation, automation, and real-time decision-making across diverse application environments. The rapid convergence of advanced semiconductor technologies, embedded systems, artificial intelligence, Internet of Things (IoT), flexible electronics, wireless communication, and energy-efficient circuit architectures has transformed conventional electronic devices into highly connected and adaptive platforms. This research paper examines the evolving landscape of smart electronic devices and their potential to support future applications in healthcare, smart homes, intelligent transportation, industrial automation, agriculture, environmental monitoring, wearable technology, and infrastructure management. Particular attention is given to devices equipped with integrated sensors, low-power processors, wireless connectivity, and intelligent data-processing capabilities that allow them to respond dynamically to changing operating conditions. The study explores how miniaturization, improved materials, edge computing, energy harvesting, flexible substrates, and advanced fabrication techniques contribute to enhanced device functionality, portability, reliability, and sustainability. Smart electronic devices can collect physical and environmental information, process data locally or through connected platforms, and generate actionable responses with reduced dependence on conventional computing infrastructure. Their integration with artificial intelligence and machine learning further enables predictive analysis, personalized services, anomaly detection, and autonomous operation. At the same time, the widespread deployment of such devices introduces challenges associated with power consumption, data security, privacy, interoperability, hardware reliability, scalability, electronic waste, and ethical use of intelligent technologies. The paper therefore considers both the technological opportunities and practical limitations associated with developing and deploying next-generation smart electronic systems. Emphasis is placed on the need for multidisciplinary design approaches that combine electronics engineering, computing, communication technologies, materials science, and application-specific requirements. The research highlights that future smart electronic devices will increasingly depend on seamless integration between sensing, processing, communication, and intelligent control while maintaining compact form factors and efficient resource utilization. By examining these developments collectively, the study provides a broad perspective on how smart electronics can contribute to more responsive, connected, sustainable, and human-centered technological ecosystems and identifies important directions for continued research and innovation in next-generation electronic applications.

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Published

2026-09-01

How to Cite

V G HAMSAVENI, Bindu H M, Abhishek M B, & Venkata Krishna Sairam Nujalla. (2026). Smart electronic devices for next generation applications. International Journal of Computer Information Systems and Industrial Management Applications, 18(21s), 1445–1456. https://doi.org/10.70917/ijcisim-2026-5408

Issue

Section

Original Articles