activity
20182021
most citedCompact gate-based read-out of multiplexed quantum devices with a cryogenic CMOS active inductor

3 citations · 3 across the 1 of their papers we have counts for

collaborators

6 papers

quant-ph20213 cited

Compact gate-based read-out of multiplexed quantum devices with a cryogenic CMOS active inductor

L. Le Guevel, G. Billiot, S. De Franceschi +4

In the strive for scalable quantum processors, significant effort is being devoted to the development of cryogenic classical hardware for the control and readout of a growing numbe…

physics.app-ph2019

Modelling and design of highly coupled piezoelectric energy harvesters for broadband applications

D Gibus, P. Gasnier, A. Morel +2

This paper reports a method to design highly coupled piezoelectric energy harvesters with frequency tuning capabilities using nonlinear electrical techniques. A cantilever beam wit…

physics.app-ph2018

A Shock-Optimized SECE Integrated Circuit

Adrien Morel, Anthony Quelen, Pierre Gasnier +4

This paper presents a fully integrated, self-starting shock-optimized Synchronous Electric Charge Extraction (SECE) interface for piezoelectric harvesters (PEHs). After introducing…

physics.app-ph2018

A unified N-SECE strategy for highly coupled piezoelectric energy scavengers

Adrien Morel, A. Badel, Y Wanderoild +1

This paper proposes a novel vibration energy harvesting strategy based on an extension of the Synchronous Electric Charge Extraction (SECE) approach, enabling both the maximization…

physics.app-ph2018

Short Circuit Synchronized Electric Charge Extraction (SC-SECE): a tunable interface for wideband vibration energy harvesting

Adrien Morel, Adrien Badel, Pierre Gasnier +2

In this paper, we present a new harvesting interface, called Short Circuit Synchronous Electric Charge Extraction (SC-SECE). The SC-SECE strategy includes a tunable short-circuit t…

physics.app-ph2018

A 30nA Quiescent 80nW to 14mW Power Range Shock-Optimized SECE-based Piezoelectric Harvesting Interface with 420% Harvested Energy Improvement

Anthony Quelen, Adrien Morel, Pierre Gasnier +3

Piezoelectric Energy Harvesters (PEH) are usually used to convert mechanical energy (vibration, shocks) into electrical energy, in order to supply energy-autonomous sensor nodes in…