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Corentin Pochet
ORCID
Publication Activity (10 Years)
Years Active: 2020-2024
Publications (10 Years): 9
Top Topics
Room Temperature
Back End
Semidefinite
Consequence Finding
Top Venues
IEEE J. Solid State Circuits
ISSCC
IEEE Trans. Biomed. Circuits Syst.
IEEE Trans. Circuits Syst. II Express Briefs
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Publications
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Aditi Jain
,
Eric Fogleman
,
Paul Botros
,
Ritwik Vatsyayan
,
Corentin Pochet
,
Andrew Bourhis
,
Zhaoyi Liu
,
Suhas Chethan
,
Hanh-Phuc Le
,
Ian Galton
,
Shadi A. Dayeh
,
Drew A. Hall
A 2.5-20kSps in-Pixel Direct Digitization Front-End for ECoG with In-Stimulation Recording.
CICC
(2024)
Corentin Pochet
,
Drew A. Hall
A Pseudo-Virtual Ground Feedforwarding Technique Enabling Linearization and Higher Order Noise Shaping in VCO-Based ΔΣ Modulators.
IEEE J. Solid State Circuits
57 (12) (2022)
Aditi Jain
,
Haowei Jiang
,
Corentin Pochet
,
Drew A. Hall
A 310 nW Temperature Sensor Achieving 9.8 mK Resolution Using a DFLL-Based Readout Circuit.
IEEE Trans. Circuits Syst. II Express Briefs
69 (3) (2022)
Corentin Pochet
,
Drew A. Hall
-Order VCO-Based ADC With Pseudo Virtual Ground Feedforward Linearization.
ISSCC
(2022)
Corentin Pochet
,
Haowei Jiang
,
Drew A. Hall
Ultra-Low Leakage ESD Protection Achieving 10.5 fA Leakage.
ISCAS
(2021)
Corentin Pochet
,
Jiannan Huang
,
Patrick P. Mercier
,
Drew A. Hall
-Order VCO-Based ExG-to-Digital Front-End Using a Multiphase Gated-Inverted Ring-Oscillator Quantizer.
ISSCC
(2021)
Xiahan Zhou
,
Enhan Mai
,
Michael Sveiven
,
Corentin Pochet
,
Haowei Jiang
,
Chih-Cheng Huang
,
Drew A. Hall
A 9.7-nTᵣₘₛ, 704-ms Magnetic Biosensor Front-End for Detecting Magneto-Relaxation.
IEEE J. Solid State Circuits
56 (7) (2021)
Corentin Pochet
,
Jiannan Huang
,
Patrick P. Mercier
,
Drew A. Hall
-Order VCO-Based ExG-to-Digital Front-End Using a Multi-Phase Gated-Inverted-Ring Oscillator Quantizer.
IEEE Trans. Biomed. Circuits Syst.
15 (6) (2021)
Haowei Jiang
,
Po-Han Peter Wang
,
Li Gao
,
Corentin Pochet
,
Gabriel M. Rebeiz
,
Drew A. Hall
,
Patrick P. Mercier
Temperature-Robust Wake-Up Receiver Achieving a Sensitivity of -69.5 dBm at 9 GHz.
IEEE J. Solid State Circuits
55 (6) (2020)