Dr. Prasanna Kumar Misra

Dr. Prasanna Kumar Misra

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Department:
Department of Electronics and Communication Engineering
Current Designation:
Assistant Professor
Educational Qualification:
Personal Website:
Mobile:
+91-5322922111
Email:
prasanna[at]iiita[dot]ac[dot]in
Office Address:

At present there is no content available for this section, once content will be available would be updated.

Analog/RF Integrated Circuits,VLSI Systems, Energy Efficient Circuits.

  • Priyanka Tiwari and Prasanna Kumar Misra, "Fast and Energy Efficient (0.01-2.78 aJ) Logic In Memory Module using SRAM Cells," IEEE CONECCT, 2024.
  • Apsana Khatoon and Prasanna Kumar Misra, "A 86 mW of Power, 1.57 dB of noise Figure, Low-IF CMOS Receiver Frontend for sub-6GHz Applications" IEEE INOCON, 2024.
  • Tej Prakash Sahu, Ritesh Kumar Tiwari, Prasanna Kumar Misra, Manish Goswami and Kavindra Kandpal, “Design and Analysis of Low-Voltage, MOS-Only Bandgap Reference Circuit”, ISES, 2023.
  • Pritesh Kumar Yadav and Prasanna Kumar Misra, "A Double-Resistive Feedback Active Inductor based Receiver Frontend using 40 nm CMOS Process for 28 GHz Applications", IEEE INDICON, 2022.
  • Krishan Mehra, Dhirendra Kumar, Kavindra Kandpal, Prasanna Kumar Misra, Manish Goswami, "Design of Hexagonal Oscillator for True Random Number Generation", IEEE ICECS, 2022.
  • Dhirendra Kumar, Himanshu Kesarwani, Kavindra Kandpal, Prasanna Kumar Misra, Manish Goswami, "Design of Energy Efficient True Random Number Generator using MUX-Metastable Approach”, IEEE SPIN, 2021.
  • Dipti, Chetna Kaushik, Kavindra Kandpal, Prasanna Kumar Misra , Manish Goswami, “Smart Switching Network based Asynchronous Binary Search ADC”, IEEE ICCICT, June 2021.
  • Jai Shankar Kumar, Babli Kumari, Prashant Kumar, Ankita Verma, Pritesh Kumar Yadav, Sunanda Ambulker, Manish Goswami, Prasanna Kumar Misra, "Design of Transceiver at 865-867 MHz Band using UMC 180 nm Technology,” VDAT, 2020.
  • Jitendra Kumar Mishra, Prasanna Kumar Misra, Manish Goswami, "Design of SRAM Cell using Voltage Lowering and Stacking Techniques for Low Power Applications," IEEE APCCAS, 2020.
  • Dhirendra Kumar, Chaitanya Dnyaneshwar Jadhav, Prasanna Kumar Misra, Manish Goswami, "Opto Radio Noise based True Random Number Generator,” VDAT, 2020.
  • Jitendra Kumar Mishra, Prasanna Kumar Misra, Manish Goswami, "A Low Power 7T SRAM Cell using Supply Feedback Technique at 28 nm CMOS Technology," IEEE SPIN, 2020.
  • Ankita Verma, Manish Goswami and Prasanna Kumar Misra, “Impact of Stages on the Performance of LNA Using RFCMOS and BiCMOS Technology for 5G Wireless Receiver Applications,” ICMCS, 2018.
  • Divyesh Sachan, Manish Goswami and Prasanna Kumar Misra, “A Comparative Study of 5G Wireless Receiver Frontend at 28GHz Frequency using RFCMOS and BiCMOS Technologies,” ICMCS, 2018.
  • Divyesh Sachan, Manish Goswami and Prasanna Kumar Misra, “Analysis of Modulation Schemes for Bluetooth-LE Module for Internet-of-Things (IoT) Applications,” IEEE ICCE, 2018.
  • Awdhesh Pandey, Ankita Verma, Prasanna Kumar Misra, "A 3.3 dB Noise Figure, 60 mW CMOS Receiver Front End for 865-867 MHz Band", CICT, 2018.
  • Pranjal Srivastava, Pritesh Kumar Yadav, Prasanna Kumar Misra, “Design of 32 bit Asynchrnous RISC CPU Using Micropipeline”, CICT, 2018.
  • Rajan Kumar, Sonu Singh Yadav, Ankit Kumar Sihara, Divyesh Sachan and Prasanna Kumar Misra, “Design of Active Inductor at 2.4 GHz frequency using 180 nm CMOS Technology”, UPCON, 2017, pp.477-481.
  • Pritesh Kumar Yadav and Prasanna Kumar Misra, “Power Aware Study of 32-bit 5-stage Pipeline RISC CPU using 180nm CMOS Technology” IEEE INDICON, 2017.
  • Prasanna Kumar Misra and S. Qureshi, “Analog/RF Performance of NPN SiGe HBT on Thin Film SOI Over -55 to +125 degC Temperature Range.” ISDRS, December 2013.
  • Prasanna Kumar Misra and S. Qureshi, “Process and Device Simulations to Study The Impact of Ge Profile of 65 nm NPN SOI HBT with Buried Layer,” IEEE INDICON, December 2013.
  • Prasanna Kumar Misra and S. Qureshi, “Speed Enhancement Of npn SiGe HBT On Thin Film SOI and Thin BOX Using Substrate Bias in (0V-3V) Range,” IEEE TENCON, November 2011, Indonesia, pp. 797-801.

At present there is no content available for this section, once content will be available would be updated.