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Kronemeijer, A.J. (author), Peeters, B. (author), de Haas, G. (author), Verbeek, R. (author), Bel, T. (author), van de Laar, R. (author), Ugalde Lopez, L.A. (author), Peters, L.C.J.M. (author), Gelinck, G.H. (author)A monolithic manufacturing process is presented for the realization of active-matrix meshed thin-film-transistor (TFT) arrays on foil with physical voids between pixels, realizing membrane-like electronic arrays. The process is scalable to large-area substrates and enables (improved performance of) biometrics-under-display applications. Moreover...article 2021
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Peters, L.C.J.M. (author), Ollearo, R. (author), Verbeek, R.G.F.A. (author), van der Steen, J.L.P.J. (author), Akkerman, H.B. (author), Volker, A.W.F. (author), van Neer, P.L.M.J. (author), Gelinck, G.H. (author)Large-area flexible ultrasound arrays can offer new ultrasound modalities in multiple fields. The production of these arrays when using CMOS-type fabrication techniques faces scalability challenges and costs increase dramatically when upscaled to large dimensions. We investigate the monolithic production of large-area PPT (Printed Polymer...conference paper 2019
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van der Steen, J.L.P.J. (author), Peters, L.C.J.M. (author), Smits, E.C.P. (author), Zalar, P. (author), Gelinck, G.H. (author)Thermal imagers conventionally consist of a suspended sensing element on support structure with patterned thermal detection layer to get good thermal isolation between sensor elements[1]. Large area and wearable thermal imaging applications require cost effective fabrication, robustness and a flexible form factor. We present a 16×16 active...conference paper 2019