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Dr. Patthi Aruna

Assistant Professor (Level 10), Department of Electronics and Communication Engineering, School of Engineering, Bengaluru

Qualification: B. Tech., M.Tech., Ph.D
Research Interest: QCA, FPGA, Quantum Computing, VLSI System Design

Bio

Dr. Patthi Aruna is currently serving as an Assistant Professor (Level 10) at the Department of Electronics and Communication Engineering (ECE), Amrita Vishwa Vidyapeetham, Bengaluru Campus. She holds a Ph.D. in VLSI Design, with her research focusing on Quantum-dot Cellular Automata (QCA) and low-power digital circuit design.

During her doctoral journey, she gained a strong foundation in academic research, publishing in high-impact journals, and presenting at international conferences. She believes in fostering an interactive and inclusive classroom environment where students are encouraged to explore, question, and innovate.

Her goal is to integrate real-world applications into teaching and contribute to the institution’s academic and research objectives. She is proud to contribute to Amrita’s culture of values, innovation, and academic rigor, helping to shape future-ready electronics professionals.

Publications

Conference Proceedings

Year : 2024

A Cost Efficient Reversible QCA Multiplexer for Low Power Applications

Cite this Research Publication : Patthi Aruna, Gurumurthy Komanapalli, A Cost Efficient Reversible QCA Multiplexer for Low Power Applications, 2024 4th International Conference on Artificial Intelligence and Signal Processing (AISP), IEEE, 2024, https://doi.org/10.1109/aisp61711.2024.10870709

Publisher : IEEE

Year : 2023

A Quantum Cost Efficient Reversible Multiplexer for Low Power Applications

Cite this Research Publication : Patthi Aruna, Gurumurthy Komanapalli, A Quantum Cost Efficient Reversible Multiplexer for Low Power Applications, 2023 3rd International conference on Artificial Intelligence and Signal Processing (AISP), IEEE, 2023, https://doi.org/10.1109/aisp57993.2023.10134940

Publisher : IEEE

Journal Article

Year : 2024

An Efficient, Scalable, Regular 4/8/16-Bit Comparator in Quantum-Dot Cellular Automata (QCA) Technology Using XOR Gates

Cite this Research Publication : Patthi Aruna, Gurumurthy Komanapalli, An Efficient, Scalable, Regular 4/8/16-Bit Comparator in Quantum-Dot Cellular Automata (QCA) Technology Using XOR Gates, Journal of Circuits, Systems and Computers, World Scientific Pub Co Pte Ltd, 2024, https://doi.org/10.1142/s0218126625500689

Publisher : World Scientific Pub Co Pte Ltd

Year : 2024

High-performance binary to gray code converter: balancing energy use and thermal stability

Cite this Research Publication : Patthi Aruna, Komanapalli Gurumurthy, High-performance binary to gray code converter: balancing energy use and thermal stability, Engineering Research Express, IOP Publishing, 2024, https://doi.org/10.1088/2631-8695/ad6e55

Publisher : IOP Publishing

Year : 2024

Design of energy, cost-efficient binary to gray code converter with temperature and stability analysis

Cite this Research Publication : Patthi Aruna, Gurumurthy Komanapalli, Design of energy, cost-efficient binary to gray code converter with temperature and stability analysis, Results in Optics, Elsevier BV, 2024, https://doi.org/10.1016/j.rio.2024.100712

Publisher : Elsevier BV

Education
  • Ph.D. from VIT-AP University
  • M.Tech. from JNTU A.
  • B.Tech. from JNTU A.
Professional Appointments
Year Affiliation
20 June 2025- present Assistant Professor, School of Engineering, Amrita Vishwa Vidyapeetham, Bengaluru
16 Feb 2018- 22 Nov 2019 Associate Engineer at Wipro Bangalore.
Certificates, Awards & Recognitions
  • Recipient of Raman Research Award for three times.
  • SSC School First
  • Inter Class first for two times
  • Best Employee for two Quarters.
Courses Taught
  • Electronic System Level Design and Verification
  • VLSI Design
  • Microcontrollers and Interfacing
Student Guidance

Undergraduate students

Sl. No. Name of the Student(s) Topic Status Year of Completion
1 E. Gokul, E. Sandeep Reddy, K. Raghu Chandra Design and Evaluation of Hybrid Pseudorandom Number Generators for Hardware Security Completed 2026

Postgraduate students

Sl. No. Name of the Student(s) Topic Status Year of Completion
1 Prattipati Koundinya A high-throughput jpeg2000 encoder using Region-priority scheduling and dual context MQ coding Completed 2026
2 Dasari Yeshwanth Tile-Level Pipeline-Parallel CNN Accelerator with Efficient Feature Fusion on FPGA Completed 2026
Admissions Apply Now