LEADER 02694cam a2200577Ii 4500001 99125135692706421 005 20240501021133.0 006 m o d | 007 cr#-n--------- 008 180331t20162016flua ob 001 0 eng d 020 1-315-21433-4 020 1-351-83022-8 020 1-4987-0357-7 020 9781315214337 024 7 10.1201/b20096 |2doi 035 (CKB)3710000000654529 035 (EBL)4514298 035 (SSID)ssj0001662681 035 (PQKBManifestationID)16447070 035 (PQKBTitleCode)TC0001662681 035 (PQKBWorkID)14873894 035 (PQKB)10766044 035 (MiAaPQ)EBC4514298 035 (OCoLC)948286552 035 (BIP)63752562 035 (BIP)52016311 035 (FlBoTFG)9781315214337 035 (EXLCZ)993710000000654529 040 FlBoTFG |cFlBoTFG |erda 041 eng 050 4 TK9180 |b.A535 2016 082 539.7/7 245 00 Analog electronics for radiation detection / |cedited by Renato Turchetta, Science and Technology Facilities Council (STFC), United Kindom, Krzysztof Iniewski, managing editor, Emerging Technologies CMOS Servies Incorporated, Vancouver, British Columbia, 250 1st ed. 264 1 Boca Raton : |bCRC Press, |c[2016] 264 4 |c©2016 300 1 online resource (300 p.) 336 text |btxt 337 computer |bc 338 online resource |bcr 490 1 Devices, circuits, and systems 500 Description based upon print version of record. 504 Includes bibliographical references. 505 0 Front Cover; Contents; Preface; Editors; Contributors; 1: Integrated Analog Signal Processing Readout Front Ends for Particle Detectors; 2: Analog Electronics for HVCMOS Sensors; 3: Analog Electronics for Radiation Detection; 4: Low-Noise Detectors through Incremental Sigma-Delta ADCs; 5: Time-to-Digital Conversion; 6: Digital Pulse-Processing Techniques for X-Ray and Gamma-Ray Semiconductor Detectors; 7: Silicon Photomultipliers for High-Performance Scintillation Crystal Readout Applications 505 8 8: Designing Photon-Counting, Wide-Spectrum Optical Radiation Detectors in CMOS-Compatible Technologies9: Front-End Electronics for Silicon Photomultipliers; 10: CMOS Image Sensors for Radiation Detection; 11: Technology Needs for Modular Pixel Detectors; Back Cover 520 Analog Electronics for Radiation Detection showcases the latest advances in readout electronics for particle, or radiation, detectors. Featuring chapters written by international experts in their respective fields, this authoritative text: Defines the main design parameters of front-end circuitry developed in microelectronics technologies Explains the basis for the use of complementary metal-oxide semiconductor (CMOS) image sensors for the detection of charged particles and other non-consumer applications Delivers an in-depth review of analog-to-digital converters (ADCs), evaluating the pros and cons of ADCs integrated at the pixel, column, and per-chip levels Describes incremental sigma-delta ADCs, time-to-digital converter (TDC) architectures, and digital pulse-processing techniques complementary to analog processing Examines the fundamental parameters and front-end types associated with silicon photomultipliers used for single visible-light photon detection Discusses pixel sensors with per-pixel TDCs, channel density challenges, and emerging 3D technologies interconnecting detectors and electronics Thus, Analog Electronics for Radiation Detection provides a single source for state-of-the-art information on analog electronics for the readout of radiation detectors. 546 English 588 Description based on print version record. 650 0 Nuclear counters |xDesign and construction. 650 0 Analog electronic systems. 650 0 Analog integrated circutits. 650 0 Radioactivity |xMeasurement. 700 1 Turchetta, Renato, |eeditor. 700 1 Iniewski, Krzysztof, |eeditor. 776 08 |z1-4987-0356-9 830 0 Devices, circuits, and systems. 906 BOOK