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Rishikesh Pandey
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2020 – today
- 2023
- [j27]Nisha Yadav, Shireesh Kumar Rai, Rishikesh Pandey:
An Electronically Tunable Meminductor Emulator and Its Application in Chaotic Oscillator and Adaptive Learning Circuit. J. Circuits Syst. Comput. 32(2): 2350031:1-2350031:26 (2023) - [j26]Komal Duggal, Rishikesh Pandey, Vandana Niranjan:
A Comprehensive Study of Different Techniques for Voltage References. J. Circuits Syst. Comput. 32(15): 2330005:1-2330005:41 (2023) - 2022
- [j25]Arvind Thakur, Rishikesh Pandey, Shireesh Kumar Rai:
A Sub-1-V CMOS Voltage Reference with High PSRR and High Accuracy. J. Circuits Syst. Comput. 31(10): 2250176:1-2250176:34 (2022) - [j24]Caffey Jindal, Rishikesh Pandey:
High Slew-Rate and Very-Low Output Resistance Class-AB Flipped Voltage Follower Cell for Low-Voltage Low-Power Analog Circuits. Wirel. Pers. Commun. 123(1): 215-228 (2022) - [j23]Arvind Thakur, Rishikesh Pandey, Shireesh Kumar Rai:
A High-Order Temperature-Compensated Subthreshold Voltage Reference Using Channel Length Modulation Compensation Technique. Wirel. Pers. Commun. 126(1): 263-284 (2022) - 2021
- [j22]Xin Shu, Sameera Sansare, Di Jin, Xiangxiang Zeng, Kai-Yu Tong, Rishikesh Pandey, Renjie Zhou:
Artificial-Intelligence-Enabled Reagent-Free Imaging Hematology Analyzer. Adv. Intell. Syst. 3(8): 2000277 (2021) - [j21]Xin Shu, Sameera Sansare, Di Jin, Xiangxiang Zeng, Kai-Yu Tong, Rishikesh Pandey, Renjie Zhou:
Artificial-Intelligence-Enabled Reagent-Free Imaging Hematology Analyzer. Adv. Intell. Syst. 3(8): 2170060 (2021) - [j20]Shireesh Kumar Rai, Rishikesh Pandey, Bharat Garg, Sujit Kumar Patel:
A novel design of current differencing transconductance amplifier with high transconductance gain and enhanced bandwidth. Turkish J. Electr. Eng. Comput. Sci. 29(1): 454-469 (2021) - [j19]Caffey Jindal, Rishikesh Pandey:
A high output resistance, wide bandwidth, and low input resistance current mirror using flipped voltage follower cell. Int. J. Circuit Theory Appl. 49(10): 3286-3301 (2021) - [j18]Caffey Jindal, Rishikesh Pandey:
A very low output resistance and wide-swing class-AB level-shifted folded flipped voltage follower cell. Integr. 81: 84-98 (2021) - [j17]Arvind Thakur, Rishikesh Pandey, Shireesh Kumar Rai:
A Low Supply Voltage, Low Line Sensitivity and High PSRR Subthreshold CMOS Voltage Reference. J. Circuits Syst. Comput. 30(12): 2150227:1-2150227:28 (2021) - [j16]Nisha Yadav, Shireesh Kumar Rai, Rishikesh Pandey:
New Grounded and Floating Memristor-Less Meminductor Emulators Using VDTA and CDBA. J. Circuits Syst. Comput. 30(15): 2150283:1-2150283:31 (2021) - [j15]Caffey Jindal, Rishikesh Pandey:
Class-AB Flipped Voltage Follower Cell with High Current Driving Capability and Low Output Resistance for High Frequency Applications. Wirel. Pers. Commun. 118(1): 773-787 (2021) - [j14]Raviraj Kour, Rishikesh Pandey, Shireesh Kumar Rai:
High Transconductance Gain Current Differencing Transconductance Amplifiers Using a New Approach of gm Boosting. Wirel. Pers. Commun. 118(4): 3435-3455 (2021) - [j13]Nisha Yadav, Shireesh Kumar Rai, Rishikesh Pandey:
High Frequency Electronically Tunable Floating Memristor Emulators employing VDGA and Grounded Capacitor. Wirel. Pers. Commun. 121(4): 3185-3211 (2021) - 2020
- [j12]Piyush Tyagi, Rishikesh Pandey:
N-bit digital comparator High-speed and area-efficient scalable N-bit digital comparator. IET Circuits Devices Syst. 14(4): 450-458 (2020) - [j11]Caffey Jindal, Rishikesh Pandey:
A class-AB flipped voltage follower cell with high symmetrical slew rate and high current sourcing/sinking capability. Int. J. Circuit Theory Appl. 48(7): 1108-1123 (2020) - [j10]Nisha Yadav, Shireesh Kumar Rai, Rishikesh Pandey:
New grounded and floating memristor emulators using OTA and CDBA. Int. J. Circuit Theory Appl. 48(7): 1154-1179 (2020) - [j9]Arvind Thakur, Rishikesh Pandey, Shireesh Kumar Rai:
Low temperature coefficient and low line sensitivity subthreshold curvature-compensated voltage reference. Int. J. Circuit Theory Appl. 48(11): 1900-1921 (2020) - [j8]Shireesh Kumar Rai, Rishikesh Pandey, Bharat Garg:
Design of Current Differencing Transconductance Amplifier using a Novel Approach of Transconductance Boosting for High Frequency Applications. J. Circuits Syst. Comput. 29(4): 2050065:1-2050065:27 (2020) - [j7]Abhishek Shrivastava, Rishikesh Pandey, Caffey Jindal:
Low-Voltage Flipped Voltage Follower Cell Based Current Mirrors for High Frequency Applications. Wirel. Pers. Commun. 111(1): 143-161 (2020) - [j6]Rishikesh Pandey, Bhanu Kiran:
Analog Building Blocks Using QFGMOS Technique. Wirel. Pers. Commun. 111(2): 1019-1031 (2020)
2010 – 2019
- 2019
- [j5]Caffey Jindal, Rishikesh Pandey:
High Performance CMOS Current Mirror Using Class-AB Level Shifted Bulk Driven Flipped Voltage Follower Cell. J. Circuits Syst. Comput. 28(8): 1950140:1-1950140:21 (2019) - [j4]Rishikesh Pandey, Sahib Singh:
High Precision Low-Voltage WTA/LTA Circuit for Signal Processing Applications. Wirel. Pers. Commun. 107(2): 1251-1271 (2019) - 2018
- [j3]Caffey Jindal, Rishikesh Pandey:
Class-AB level shifted flipped voltage follower cell using bulk-driven technique. IET Circuits Devices Syst. 12(3): 286-294 (2018) - 2011
- [j2]Maneesha Gupta, Rishikesh Pandey:
Low-voltage FGMOS based analog building blocks. Microelectron. J. 42(6): 903-912 (2011) - 2010
- [j1]Maneesha Gupta, Rishikesh Pandey:
FGMOS based voltage-controlled resistor and its applications. Microelectron. J. 41(1): 25-32 (2010)
Coauthor Index
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