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Ashis Maity
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2020 – today
- 2024
- [j8]Aditi Chakraborty, Ashish Kumar Jha, Anupama Deo, Ashis Maity, Amit Patra:
A Scalable Single-Inductor Multiple-Output DC-DC Converter With Constant Charge-Transfer and Power-Up Sequencing for IoT Applications. IEEE Trans. Circuits Syst. I Regul. Pap. 71(6): 2964-2975 (2024) - [j7]Aditi Chakraborty, Ashis Maity:
A Time-to-Voltage Converter-Based MPPT With 440 μs Online Tracking Time, 99.7% Tracking Efficiency for a Battery-Less Harvesting Front-End With Cold-Startup and Over-Voltage Protection. IEEE Trans. Circuits Syst. I Regul. Pap. 71(10): 4499-4511 (2024) - [c14]Madhukar Gosula, Ashis Maity:
CMOS Implementation of Low-Frequency Pattern Generator for Electrochemical Sensing. ISCAS 2024: 1-5 - 2023
- [j6]Anupama Deo, Supratik Patra, Ashis Maity, Amit Patra:
On-chip bias-generating architecture for an automotive application with a wide input dynamic range. Int. J. Circuit Theory Appl. 51(10): 4503-4520 (2023) - [c13]Aditi Chakraborty, Ashis Maity:
Minimizing Quiescent Power in a Dynamically Biased Comparator and its Application in Relaxation Oscillator. PRIME 2023: 33-36 - 2022
- [j5]Anupama Deo, Ashis Maity, Amit Patra:
A voltage-emulated peak current controlled buck converter for automotive applications with in-built over-current protection. Microelectron. J. 123: 105423 (2022) - [j4]Shuvoshree Bhattacharya, Ashis Maity, Amit Patra:
A valley-sensed emulated peak current controlled buck converter for automotive applications. Microelectron. J. 125: 105469 (2022) - [c12]Anupama Deo, Ashis Maity, Amit Patra:
A High Voltage Level Shifter for Automotive Buck Converter with a Fast Transient Response. VLSID 2022: 257-262 - 2021
- [c11]Anirban Barman, Ashis Maity:
DC-DC Converter for Powering Micro-system Load in Energy Harvesting Front-ends. VLSID 2021: 105-110
2010 – 2019
- 2019
- [j3]Bumkil Lee, Min Kyu Song, Ashis Maity, Dongsheng Brian Ma:
A 25-MHz Four-Phase SAW Hysteretic Control DC-DC Converter With 1-Cycle Active Phase Count. IEEE J. Solid State Circuits 54(6): 1755-1763 (2019) - [c10]Rohit Chaudhari, Ashis Maity:
Auto-Tuned Transition Scheme in Bias-Flip Rectifier for Piezoelectric Energy Harvesting. MWSCAS 2019: 382-385 - [c9]Siddharth Agarwal, Ashis Maity:
A 10-MHz Current-Mode Fixed-Frequency Hysteretic Controlled DC-DC Converter With Fast Transient Response. MWSCAS 2019: 945-948 - [c8]Shubham Negi, Ashis Maity, Amit Patra, Mrigank Sharad:
Adaptive Fractional Open Circuit Voltage Method for Maximum Power Point Tracking in a Photovoltaic Panel. VLSID 2019: 482-487 - 2018
- [c7]Tapabrata Sen, Ashis Maity, Siddhartha Sen:
On-Chip Implementation of Analog Linearization Schemes for Giant-Magnetoresistance Sensors. ICST 2018: 419-423 - 2017
- [c6]Bumkil Lee, Min Kyu Song, Ashis Maity, Dongsheng Brian Ma:
10.7 A 25MHz 4-phase SAW hysteretic DC-DC converter with 1-cycle APC achieving 190ns tsettle to 4A load transient and above 80% efficiency in 96.7% of the power range. ISSCC 2017: 190-191 - 2016
- [j2]Ashis Maity, Amit Patra:
A Single-Stage Low-Dropout Regulator With a Wide Dynamic Range for Generic Applications. IEEE Trans. Very Large Scale Integr. Syst. 24(6): 2117-2127 (2016) - 2015
- [j1]Ashis Maity, Amit Patra:
Dynamic Slew Enhancement Technique for Improving Transient Response in an Adaptively Biased Low-Dropout Regulator. IEEE Trans. Circuits Syst. II Express Briefs 62-II(7): 626-630 (2015) - 2014
- [c5]Narla John Metilda Sagaya Mary, Ashis Maity, Amit Patra:
Light Load Efficiency Improvement in High Frequency DC-DC Buck Converter Using Dynamic Width Segmentation of Power MOSFET. VLSID 2014: 563-568 - 2013
- [c4]Cheekala Lovaraju, Ashis Maity, Amit Patra:
A Capacitor-less Low Drop-out (LDO) Regulator with Improved Transient Response for System-on-Chip Applications. VLSI Design 2013: 130-135 - [c3]Debajit Bhattacharya, Ashis Maity, Amit Patra:
Design and Implementation of a High-Speed, Power-Efficient, Modified Hybrid-Mode Sense Amplifier for SRAM Applications. VLSI Design 2013: 209-214 - 2011
- [c2]Ashis Maity, Amit Patra, Norihisa Yamamura, Jonathan Knight:
Design of a 20 MHz DC-DC Buck Converter with 84 Percent Efficiency for Portable Applications. VLSI Design 2011: 316-321
2000 – 2009
- 2005
- [c1]Ashis Maity, R. G. Raghavendra, Pradip Mandal:
On-Chip Voltage Regulator with Improved Transient Response. VLSI Design 2005: 522-527
Coauthor Index
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