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“…This method is confined to driving PMUT transducers with three electrodes, as it relies on PMUT's structural strength to return the electrodes to their original position. Recently, the energy replenishing technique was proposed [23] to reuse the electrical charge usage dur-ing transmission with the help of an off-chip inductor. This method successfully reduces energy consumption with adiabatic switching [27], but it is limited to driving single-ended bulk piezoelectric transducers similar to the multi-level driving scheme.…”
Section: B Energy-efficient Tx Requirementmentioning
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rupbmjkragerfmgwileyiopcupepmcmbcthiemesagefrontiersapsiucrarxivemeralduhksmucshluniversity-of-gavle
“…This method is confined to driving PMUT transducers with three electrodes, as it relies on PMUT's structural strength to return the electrodes to their original position. Recently, the energy replenishing technique was proposed [23] to reuse the electrical charge usage dur-ing transmission with the help of an off-chip inductor. This method successfully reduces energy consumption with adiabatic switching [27], but it is limited to driving single-ended bulk piezoelectric transducers similar to the multi-level driving scheme.…”
Section: B Energy-efficient Tx Requirementmentioning
“…In [39] and [40], a capacitive supply-multiplication scheme was proposed that substantially reduces power consumption, albeit at the cost of very large capacitors. Finally, the energy stored on the transducer capacitance can also be recycled using an inductor, for which power savings up to 75% have been reported [41]. However, the need for an off-chip inductor for each pulser makes this approach unsuitable for use with transducer arrays.…”
Section: B Multi-level Pulsersmentioning