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Titlebook: Analog-Digital Converters for Industrial Applications Including an Introduction to Digital-Analog Co; Frank Ohnhäuser Book 2015 Springer-V

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期刊全称Analog-Digital Converters for Industrial Applications Including an Introduction to Digital-Analog Co
影响因子2023Frank Ohnhäuser
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发行地址Detailed explanations on the development of analog-to-digital converters.Introduction to test methods and quality control in mass production.Advantages and disadvantages of the various architectures.I
图书封面Titlebook: Analog-Digital Converters for Industrial Applications Including an Introduction to Digital-Analog Co;  Frank Ohnhäuser Book 2015 Springer-V
影响因子.This book offers students and those new to the topic of analog-to-digital converters (ADCs) a broad introduction, before going into details of the state-of-the-art design techniques for SAR and DS converters, including the latest research topics, which are valuable for IC design engineers as well as users of ADCs in applications. The book then addresses important topics, such as correct connectivity of ADCs in an application, the verification, characterization and testing of ADCs that ensure high-quality end products..Analog-to-digital converters are the central element in any data processing system and regulation loops such as modems or electrical motor drives. They significantly affect the performance and resolution of a system or end product. System development engineers need to be familiar with the performance parameters of the converters and understand the advantages and disadvantages of the various architectures. Integrated circuit development engineers have to overcome the problem of achieving high performance and resolution with the lowest possible power dissipation, while the digital circuitry generates distortion in supply, ground and substrate. This book explains the co
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DIGE-Based Phosphoproteomic Analysis SAR ADCs (Chaps. . and .) and delta-sigma ADCs are most commonly used. This chapter will therefore concentrate on the basics of delta-sigma converters and then on the discrete-time approach utilizing the switched-capacitor technique, which is most commonly used. The alternative continuous-time arch
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DIGE-Based Phosphoproteomic Analysis SAR ADCs (Chaps. . and .) and delta-sigma ADCs are most commonly used. This chapter will therefore concentrate on the basics of delta-sigma converters and then on the discrete-time approach utilizing the switched-capacitor technique, which is most commonly used. The alternative continuous-time architecture will be discussed in Chap. ..
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