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Pritesh kumar Yadav
Pritesh kumar Yadav
Research Scholar, IIIT Allahabad
在 iiita.ac.in 的电子邮件经过验证
标题
引用次数
引用次数
年份
Tunable bandpass filter using double resistive feedback floating active inductor for 5 GHz wireless LAN Applications
PK Yadav, PK Misra
Analog Integrated Circuits and Signal Processing 108 (1), 205-213, 2021
82021
A 36.7 mW, 28 GHz receiver frontend using 40 nm RFCMOS technology with improved Figure of Merit
A Verma, PK Yadav, S Ambulker, M Goswami, PK Misra
Analog Integrated Circuits and Signal Processing 107, 135-144, 2021
72021
A Differential LNA Architecture with Improved Figure of Merit Using 40 nm UMC CMOS Technology for mmWave Band Receiver Applications
A Verma, PK Yadav, M Goswami, PK Misra
Wireless Personal Communications, 1-17, 2022
22022
A 60 GHz, 50 mW, 3dB Noise Figure Receiver Frontend Using UMC 40 nm CMOS technology
PK Yadav, P Kumar, A Verma, S Ambulker, PK Misra
2020 IEEE International Symposium on Smart Electronic Systems (iSES …, 2020
22020
Design of 32 bit Asynchronous RISC CPU Using Micropipeline
P Srivastva, PK Yadav, PK Misra
2018 Conference on Information and Communication Technology (CICT), 1-5, 2018
22018
A double-resistive feedback active inductor based receiver frontend in 40 nm cmos process for 28-GHz applications
PK Yadav, PK Misra
2022 IEEE 19th India Council International Conference (INDICON), 1-6, 2022
12022
A Proposed Technique to Improve the Performance of Receiver by Using Linear Gm-C Low-Pass Filter for mmwave Band Applications
PK Yadav, A Verma, PK Misra
Journal of Circuits, Systems and Computers 30 (16), 2150304, 2021
12021
Design of Transceiver at 865–867 MHz Band using UMC 180 nm CMOS Technology
JS Kumar, B Kumari, P Kumar, A Verma, PK Yadav, S Ambulker, ...
2020 24th International Symposium on VLSI Design and Test (VDAT), 1-5, 2020
2020
Power Aware Study of 32-bit 5-stage Pipeline RISC CPU using 180nm CMOS Technology
PK Yadav, PK Misra
2017 14th IEEE India Council International Conference (INDICON), 1-4, 2017
2017
Design of Receiver Frontend Architectures with Improved Performance for mmWave Band Applications
PK Yadav
Allahabad, 0
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