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Finite element method was used for transducer design and evaluation.
The transducer design and synthetic array beamforming simulation are presented.
It uses a novel illumination geometry, novel transducer design, and thermally-conductive substrate to shield and manage the light and thermal exposures.
By implementing an optimised transducer design to protect the sample from thermal and photon damage, we further show the method to be compatible with live cell imaging.
A very strong dependence of sonochemical reactivity as a function of the transducer design is put into evidence.
An experimental project is presented to demonstrate the capability of embedded systems in transducer design.
Similar(5)
Experimental work was performed to characterize two different transducer designs.
Although researchers have had new transducer designs in mind for years, it has been impractical to construct them subtractively.
In particular, flex circuit transducer designs which can be used to obtain information about the surroundings.
Nominal capacity of the force transducer designed and developed is 25 kN.
Based on a transducer designed in a previous work, the melt-front-position is measured online.
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