Design And Standalone Characterisation Of A Capacitively Coupled Hv Cmos Sensor Chip For The Clic Vertex Detector

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Design And Standalone Characterisation Of A Capacitively Coupled Hv Cmos Sensor Chip For The Clic Vertex Detector
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Author :
language : en
Publisher:
Release Date : 2017
Design And Standalone Characterisation Of A Capacitively Coupled Hv Cmos Sensor Chip For The Clic Vertex Detector written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017 with categories.
Simulation And Evaluation Of Hv Cmos Pixel Sensors For The Clic Vertex Detector
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Author : M. D. Buckland
language : en
Publisher:
Release Date : 2018
Simulation And Evaluation Of Hv Cmos Pixel Sensors For The Clic Vertex Detector written by M. D. Buckland and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018 with categories.
Implementation And Characterisation Of Monolithic Cmos Pixel Sensors For The Clic Vertex And Tracking Detectors
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Author : Iraklis Kremastiotis
language : en
Publisher:
Release Date : 2020
Implementation And Characterisation Of Monolithic Cmos Pixel Sensors For The Clic Vertex And Tracking Detectors written by Iraklis Kremastiotis and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2020 with Detectors categories.
Smart Cmos Image Sensors And Applications
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Author : Jun Ohta
language : en
Publisher: CRC Press
Release Date : 2017-12-19
Smart Cmos Image Sensors And Applications written by Jun Ohta and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-12-19 with Science categories.
Because of their high noise immunity and low static power supply drain, complementary metal-oxide-semiconductor (CMOS) devices produce less heat than other forms of logic and allow a high density of logic functions on a chip. These beneficial characteristics have fueled the use of CMOS image sensors in consumer electronics, robot vision, biotechnology, and medicine. With the introduction of smart functions in CMOS image sensors, even more versatile applications are now possible. Exploring this popular technology, Smart CMOS Image Sensors and Applications focuses on the smart functions implemented in CMOS image sensors as well as the applications of these sensors. After discussing the history of smart CMOS image sensors, the book describes the fundamental elements of CMOS image sensors. It covers some optoelectronic device physics and introduces typical CMOS image sensor structures, such as an active pixel sensor (APS). Subsequent chapters elucidate the functions and materials of smart CMOS image sensors and present examples of smart imaging. The final chapter explores various applications of smart CMOS image sensors. Several appendices supply a range of information on constants, illuminance, MOSFET characteristics, and optical resolution. This book provides a firm foundation in existing smart CMOS image sensor technology and applications, preparing you for the next phase of smart CMOS image sensors.
Characterisation Of Cmos Sensors For The Belle Ii Vertex Detector Upgrade
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Author : Marike Schwickardi
language : en
Publisher:
Release Date : 2024
Characterisation Of Cmos Sensors For The Belle Ii Vertex Detector Upgrade written by Marike Schwickardi and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2024 with categories.
The Belle II experiment at KEK in Japan plans to upgrade the SuperKEKB accelerator by the end of the decade. This gives rise to the opportunity to upgrade the current vertex detector system to address the high background levels caused by the increased luminosity of the collider. One proposal for upgrading the vertex detector is to install a 5-layer all monolithic pixel vertex detector based on fully depleted CMOS DMAPS chips. The new system plans to use the OBELIX chips to improve background robustness and reduce occupancy levels through small and fast pixels. This causes better track findi...
Design And Characterisation Of High Voltage Cmos Hv Cmos Detectors For Particle Physics Experiments
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Author : Matthew Franks
language : en
Publisher:
Release Date : 2022
Design And Characterisation Of High Voltage Cmos Hv Cmos Detectors For Particle Physics Experiments written by Matthew Franks and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022 with categories.
Development Of A Cmos Pixel Sensor For The Outer Layers Of The Ilc Vertex Detector
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Author : Liang Zhang
language : en
Publisher:
Release Date : 2013
Development Of A Cmos Pixel Sensor For The Outer Layers Of The Ilc Vertex Detector written by Liang Zhang and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013 with categories.
This work deals with the design of a CMOS pixel sensor prototype (called MIMOSA 31) for the outer layers of the International Linear Collider (ILC) vertex detector. CMOS pixel sensors (CPS) also called monolithic active pixel sensors (MAPS) have demonstrated attractive performance towards the requirements of the vertex detector of the future linear collider. MIMOSA 31developed at IPHC-Strasbourg is the first pixel sensor integrated with 4-bit column-level ADC for the outer layers. It is composed of a matrix of 64 rows and 48 columns. The pixel concept combines in-pixel amplification with a correlated double sampling (CDS) operation in order to reduce the temporal and fixed pattern noise (FPN). At the bottom of the pixel array, each column is terminated with an analog to digital converter (ADC). The self-triggered ADC accommodating the pixel readout in a rolling shutter mode completes the conversion by performing a multi-bit/step approximation. The ADC design was optimized for power saving at sampling frequency. Accounting the fact that in the outer layers of the ILC vertex detector, the hit density is inthe order of a few per thousand, this ADC works in two modes: active mode and inactive mode. This thesis presents the details of the prototype chip and its laboratory test results.
Characterisation Of Hv Cmos Silicon Pixel Sensors With A Transient Current Technique Before And After Proton Irradiation
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Author : Armin Fehr
language : en
Publisher:
Release Date : 2018
Characterisation Of Hv Cmos Silicon Pixel Sensors With A Transient Current Technique Before And After Proton Irradiation written by Armin Fehr and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018 with categories.
High Performance Silicon Imaging
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Author : Daniel Durini
language : en
Publisher: Woodhead Publishing
Release Date : 2019-10-19
High Performance Silicon Imaging written by Daniel Durini and has been published by Woodhead Publishing this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-10-19 with Technology & Engineering categories.
High Performance Silicon Imaging: Fundamentals and Applications of CMOS and CCD Sensors, Second Edition, covers the fundamentals of silicon image sensors, addressing existing performance issues and current and emerging solutions. Silicon imaging is a fast growing area of the semiconductor industry. Its use in cell phone cameras is already well established, with emerging applications including web, security, automotive and digital cinema cameras. The book has been revised to reflect the latest state-of-the art developments in the field, including 3D imaging, advances in achieving lower signal noise, and new applications for consumer markets. The fundamentals section has also been expanded to include a chapter on the characterization and testing of CMOS and CCD sensors that is crucial to the success of new applications. This book is an excellent resource for both academics and engineers working in the optics, photonics, semiconductor and electronics industries. - Covers the fundamentals of silicon-based image sensors and technical advances, focusing on performance issues - Looks at image sensors in applications, such as mobile phones, scientific imaging, and TV broadcasting, and in automotive, consumer and biomedical applications - Addresses the theory behind 3D imaging and 3D sensor development, including challenges and opportunities
Cmos Capacitive Sensors For Lab On Chip Applications
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Author : Ebrahim Ghafar-Zadeh
language : en
Publisher: Springer
Release Date : 2012-05-05
Cmos Capacitive Sensors For Lab On Chip Applications written by Ebrahim Ghafar-Zadeh and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012-05-05 with Technology & Engineering categories.
1.1 Overview of Lab-on-Chip Laboratory-on-Chip (LoC) is a multidisciplinary approach used for the miniaturization, integration and automation of biological assays or procedures in analytical chemistry [1–3]. Biology and chemistry are experimental sciences that are continuing to evolve and develop new protocols. Each protocol offers step-by-step laboratory instructions, lists of the necessary equipments and required biological and/or chemical substances [4–7]. A biological or chemical laboratory contains various pieces of equipment used for performing such protocols and, as shown in Fig. 1.1, the engineering aspect of LoC design is aiming to embed all these components in a single chip for single-purpose applications. 1.1.1 Main Objectives of LoC Systems Several clear advantages of this technology over conventional approaches, including portability, full automation, ease of operation, low sample consumption and fast assays time, make LoC suitable for many applications including. 1.1.1.1 Highly Throughput Screening To conduct an experiment, a researcher fills a well with the required biological or chemical analytes and keeps the sample in an incubator for some time to allowing the sample to react properly. Afterwards, any changes can be observed using a microscope. In order to quickly conduct millions of biochemical or pharmacolo- cal tests, the researchers will require an automated highly throughput screening (HTS) [8], comprised of a large array of wells, liquid handling devices (e.g., mic- channel, micropump and microvalves [9–11]), a fully controllable incubator and an integrated sensor array, along with the appropriate readout system.