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Dr. Dipankar Biswas

Dr. Dipankar Biswas

  • Assistant Professor - Research
    Institute of Engineering & Technology
  • Department

    Department of Electronics & Communication
  • Contact Details:

    Email :

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  • Experience

    16.5 years Teaching/Research experience in the field.

  • Qualifications

    • Ph. D. in Engineering, 2022 from National Institute of Technology Manipur, Imphal Title of Thesis: Investigation of Structural, Electrical and Dielectric Properties of Transition Metal Oxide Doped Semiconducting Glass Nanocomposites
    • M. Tech. in Mobile Communication and Networking, 2010, WBUT.
    • B. E. in Electronics and Communication Engineering, 2004, University of Burdwan.
  • Ph.D

    Thesis Supervised

  • Awarded/ Completed-

    Working04

  • Postgraduate

    Thesis Supervised

  • Awarded/ Completed

    Working-

  • 01 Dhirendra Kumar, Rahul Anand, Sajai Vir Singh, Prasanna Kumar Misra, Ashok Srivastava, and Manish Goswami, “0.4 mW, 0.27 pJ/bit true random number generator using jitter, metastability and current starved topology,” IET Circuits, Devices & Systems, vol. 14, no. 7, pp.1001-1011, Aug. 2020. DOI: 10.1049/iet-cds.2019.0318.
  • 02 Dhirendra Kumar, Utkarsh Kumar Chaurasia, Shreyansh Mishra, Prafull Singh Patel, Prasanna Kumar Misra, and Manish Goswami, “Design of true random number generator using fingerprint as an entropy source and its implementation in S-box,” Journal of Circuits, Systems and Computers, vol. 30, no. 15, pp. 2150285: 01-19, Jun 2021. DOI: 10.1142/S0218126621502856.
  • 03 Dhirendra Kumar, Lakshmi Likhitha Mankali, Prasanna Kumar Misra, and Manish Goswami, “A 0.7 pJ/bit, 1.5 Gbps energy-efficient image-based true random number generator,” IETE Journal of Research, vol. 69, no. 03, pp.1260-1270, Oct 2023. DOI: 10.1080/03772063.2020.1859957.
  • 04 Dhirendra Kumar, Kasif Nabi, Prasanna Kumar Misra and Manish Goswami, “Modified Tent Map Based Design for True Random Number Generator,” 2018 IEEE International Symposium on Smart Electronic Systems (iSES), pp. 27-30, Dec. 2018. DOI: 10.1109/iSES.2018.00016. Presented at Hyderabad, India.
  • 05 Dhirendra Kumar, Rahul Anand and Manish Goswami, “A 138 Mbps Jitter Based Power Efficient True Random Number Generator,” 2020 International Conference on Electronics, Information and Communication (ICEIC), IEEE. pp. 01-05, Jan. 2020. DOI: 10.1109/ICEIC49074.2020.9152937. Presented at Barcelona, Spain.
  • 06 Dhirendra Kumar, Chaitanya Dnyaneshwar Jadhav, Prasanna Kumar Misra and Manish Goswami, “Opto-Radio Noise based True Random Number,” 2020 24th International Symposium on VLSI Design and Test (VDAT), IEEE. pp. 01-05, Jul. 2020. DOI: 10.1109/VDAT50263.2020.9190346. Presented at IIT Bhubaneswar, India.
  • 07 Dhirendra Kumar, Himanshu Kesarwani, Kavindra Kandpal, Prasanna Kumar Misra and Manish Goswami, “Design of Energy Efficient True Random Number Generator using MUX-Metastable Approach,” 2021 8th International Conference on Signal Processing and Integrated Networks (SPIN), IEEE. pp. 446-451, Aug 2021. DOI: 10.1109/SPIN52536.2021.9566149. Presented at Amity University, Noida, India.
  • 08 Krishan Mehra, Dhirendra Kumar, Kavindra Kandpal, Prasanna Kumar Misra and Manish Goswami, “Design of Hexagonal Oscillator for True Random Number Generation,” 2022 29th International Conference on Electronics Circuit and Systems (ICECS), IEEE. pp. 01-04, Oct 2022. DOI: 10.1109/ICECS202256217.2022.9971060. Presented at Glasgow, United Kingdom.
  • 09 Dhirendra Kumar, “Bernoulli Map Based Power Efficient True Random Number Generator Using Cascode Current Mirror Topology,” 2024 15th International Conference on Computing Communication and Networking Technologies (ICCCNT), IEEE. pp. 01-04, Jun 2024. DOI: 10.1109/ICCCNT61001.2024.10725603. Presented at IIT Mandi, Himachal Pradesh, India.

Patents

  • 01 Title: A system of synthesizing Se50−xTe30Sn20Sbx chalcogenide glass
    Registration of Utility Model No: 202022104505
    Date of Publication: 29/08/2022
    Status: Granted
    Patent Office: German Patent and Trade Mark Office
  • 02 Title: Glass composition (Ag2O–MoO3–P2O5) to determine the effects of silver sulfide on electrical conductivity and dielectric relaxation
    Registration of Utility Model No: 202022106386
    Date of Publication: 29/12/2022
    Status: Granted
    Patent Office: German Patent and Trade Mark Office
  • 03 Title: A method for studying the compositional dependency on physical and optical properties of multicomponent chalcogenide glassy systems
    Application No: 2022/13531
    Date of Grant: 29/03/2023
    Status: Granted
    Patent Office: Republic of South Africa
  • 04 Title: A method for synthesizing Bi-incorporated As30-Se70−x-Bix chalcogenide glasses by deploying the conventional melt quenching method
    Application No: 2023/02850
    Date of Grant: 26/07/2023
    Status: Granted
    Patent Office: Republic of South Africa
  • 05 Title: A System and Method for Synthesizing Glass and Analyzing the Effect of Metal Oxide on Glass
    Application No: 2023/07884
    Date of Grant: 28/02/2024
    Status: Granted
    Patent Office: Republic of South Africa
  • 06 Title: Transition-Metal Oxides-Doped Glass Nanocomposites Composition for A Non-Enzymatic Glucose Sensor and Its Preparation Process Thereof
    Application No: 202311065399
    Patent No: 547991
    Date of Grant: 19/08/2024
    Status: Granted
    Patent Office: The Patent Office, India

Published Books

  • 01 Title of Text Book: “Microprocessor & Microcontroller”
    Publisher: Scientific International Publishing House (SIPH)
    ISBN NO: 978-93-94002-13-5

Books Chapters

  • 01 S.B. Hota, Dipankar Biswas*, R. Mondal, D. Roy (2025), “Effect of Na2O on Ionic-Electronic Conduction and Dielectric Relaxation of P2O5–ZnO–V2O5 Glass System,” Advances in Materials, Manufacturing and Design: Select Proceedings of INCOM 2024, Springer Nature Singapore, pp. 3–17. (SCOPUS).
    DOI: 10.1007/978-981-97-6667-3_1
  • 02 A. Rakshit, A.S. Das, Dipankar Biswas, D. Roy (2025), “Study of Structural and DC Electrical Conductivity Mechanism of V2O5–Nd2O3–ZnO Glass System,” in: Sahoo, P., Barman, T.K. (eds), Advances in Materials, Manufacturing and Design, INCOM 2024, Lecture Notes in Mechanical Engineering, Springer, Singapore.
    DOI: 10.1007/978-981-97-6667-3_2
  • 03 D. Patra, Dipankar Biswas*, R. Mondal, B.K. Ghosh, N. Modak (2025), “Investigation of Topological Behavior and Glass Transition Temperature of Chalcogenide M5-Se60-Te20-Ge15 (M = Sn, Zn, Sb) Glassy Alloys,” in: Sahoo, P., Barman, T.K. (eds), Advances in Materials, Manufacturing and Design, INCOM 2024, Lecture Notes in Mechanical Engineering, Springer, Singapore.
    DOI: 10.1007/978-981-97-6667-3_3
  • 04 A. Mandal, Dipankar Biswas*, Rittwick Mondal, Bidyut Kumar Ghosh, Nipu Modak, “Effect of Mixed Modifiers on Electrical Mechanism of Zinc-Phosphate Amorphous Semiconducting Glass,” River Publishers Series in Proceedings, April 2023. (SCOPUS).
    DOI: 10.13052/rp-9788770040099
  • 05 S.B. Hota, A. Rakshit, D. Roy, D. Patra, Dipankar Biswas*, “Effect of Transition Metal Oxides on Optical and DC Conduction Mechanism of Zinc-Phosphate Amorphous Semiconducting Glass,” River Publishers Series in Proceedings, April 2023. (SCOPUS).
    DOI: 10.13052/rp-9788770040099
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