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22-GHz Bandwidth InGaAs/InP PIN Photodiodes
Topical Meeting on Picosecond Electronics and Optoelectronics, 1985Fast GaAs Schottky photodetectors for visible and near-infrared applications have been demonstrated [1], and high-speed PIN structures using InGaAs/InP for the emerging lightwave communications wavelengths (1.3–1.6 μm) have been reported [2,3]. We describe here the fabrication and characterization of an improved InGaAs/InP PIN photodiode with a ...
J. E. Bowers, C. A. Burrus, R. S. Tucker
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Feedforward Effect in Standard CMOS Pinned Photodiodes
IEEE Transactions on Electron Devices, 2013The charge handling capacity or the full well of the photodiodes used in CMOS image sensors is a very important characteristic because it affects the saturation level and the dynamic range of the image sensor. The scaling of the pixel size to increase the spatial resolution is also reducing the barrier separating the photon detection and the collection
Mukul Sarkar +2 more
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An efficient microwave characterisation of PIN photodiodes
26th European Microwave Conference, 1996, 1996This paper investigates for the first time the transmission line behaviour of a PIN photodiode at microwaves frequencies. Original theoretical models are developed for the complex propagation constant of this structure and compared with measurements carried out at U.C.L.
Z Zhu, I Huynen, A Vander Vorst
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Pinned Buried PIN Photodiode Type Solar Cell
2021 International Conference on Electrical, Computer and Energy Technologies (ICECET), 2021openaire +1 more source
Frequency response of PIN avalanching photodiodes
IEEE Transactions on Electron Devices, 1967The frequency response of a PIN avalanching photodiode has been analyzed without the usual assumption that the electrons and the holes have equal ionization rates ( \alpha_{n} = \alpha_{p} ) and equal scattering-limited velocities ( v_{n} = v_{p} ).
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Thin-film image sensors with a pinned photodiode structure
Nature Electronics, 2023Jiwon Lee +2 more
exaly
Review of z-pinned laminates and sandwich composites
Composites Part A: Applied Science and Manufacturing, 2020Adrian Mouritz
exaly
Improved Ultraviolet Response of a PIN Photodiode
Applied Optics, 1968E E, Whiting, C N, Burrous, H, Sorensen
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