Most MEMS piezoelectric vibration energy harvesters involve either cantilever-based topologies, doubly-clamped beams or membrane structures. While these traditional designs offer simplicity, their frequency response for broadband excitation are typically inadequate. This paper presents a new integrated cantilever-on-membrane design that attempts to both optimise the strain distribution on a piezoelectric membrane resonator and improve the power responsiveness of the harvester for broadband excitation. While a classic membrane-based resonator has the potential to theoretically offer wider operational frequency bandwidth than its cantilever counterpart, the addition of a centred proof mass neutralises its otherwise high strain energy regions....
334-337Piezoelectric energy harvesters are suitable for vibration energy harvesting due to simple de...
A resonant vibration energy harvester typically comprises of a clamped anchor and a vibrating shuttl...
The field of the energy harvesting experienced a constant growth in the last years, due to the possi...
The overwhelming majority of microelectromechanical piezoelectric vibration energy harvesting topolo...
Most MEMS piezoelectric vibration energy harvesters involve either cantilever-based topologies, doub...
While cantilever topologies offer high power responsiveness for MEMS vibration energy harvesting (VE...
This paper presents a demonstration of the feasibility of fabricating micro-cantilever harvesters wi...
In the realm of MEMS piezoelectric vibration energy harvesters, cantilever-based designs are by far ...
This paper presents a multi-order parametric resonant MEMS piezoelectric disk membrane, for the purp...
In the realm of MEMS piezoelectric vibration energy harvesters, cantilever-based designs are by far ...
International audienceVibration energy harvesters based on piezoelectric resonators are promising fo...
334-337Piezoelectric energy harvesters are suitable for vibration energy harvesting due to simple de...
A resonant vibration energy harvester typically comprises of a clamped anchor and a vibrating shuttl...
The field of the energy harvesting experienced a constant growth in the last years, due to the possi...
The overwhelming majority of microelectromechanical piezoelectric vibration energy harvesting topolo...
Most MEMS piezoelectric vibration energy harvesters involve either cantilever-based topologies, doub...
While cantilever topologies offer high power responsiveness for MEMS vibration energy harvesting (VE...
This paper presents a demonstration of the feasibility of fabricating micro-cantilever harvesters wi...
In the realm of MEMS piezoelectric vibration energy harvesters, cantilever-based designs are by far ...
This paper presents a multi-order parametric resonant MEMS piezoelectric disk membrane, for the purp...
In the realm of MEMS piezoelectric vibration energy harvesters, cantilever-based designs are by far ...
International audienceVibration energy harvesters based on piezoelectric resonators are promising fo...
334-337Piezoelectric energy harvesters are suitable for vibration energy harvesting due to simple de...
A resonant vibration energy harvester typically comprises of a clamped anchor and a vibrating shuttl...
The field of the energy harvesting experienced a constant growth in the last years, due to the possi...