Tantalum and Niobium-Based Capacitors [electronic resource] : Science, Technology, and Applications / by Yuri Freeman.
Material type:
- text
- computer
- online resource
- 9783030895143
- QC589
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QC374 .H38 2017EBK Optics inspections and tests : | QC449.3 .S55 2023EBK Material characterization using electron holography / | QC481EBK Advanced X-ray Detector Technologies Design and Applications / | QC589EBK Tantalum and Niobium-Based Capacitors Science, Technology, and Applications / | QC595 .K78 2021EBK Vibrations of linear piezostructures / | QD115 .P38 2021EBK Electrochemistry for bioanalysis / | QD400.5.S95 G74 2021EBK v.1 Green synthetic approaches for biologically relevant heterocycles / |
Introduction -- 1: Major Degradation Mechanisms -- 2: Basic Technology -- 3: Applications -- 4: Conclusion.
This book provides a comprehensive analysis of the science, technology, and applications of Tantalum and Niobium-based capacitors. The author discusses fundamentals, focusing on thermodynamic stability, major degradation processes and conduction mechanisms in the basic structure of Me-Me2O5-cathode (Me: Ta, Nb). Technology-related coverage includes chapters on the major manufacturing steps from capacitor grade powder to the testing of finished capacitors. Applications include high reliability, high charge and energy efficiency, high working voltages, high temperatures, etc. The links between the scientific foundation, breakthrough technologies and outstanding performance and reliability of the capacitors are demonstrated. The theoretical models discussed include the thermodynamics of the amorphous dielectrics, conduction mechanisms in metal-insulator-semiconductor (MIS) structures, band diagrams of the organic semiconductors, etc. Provides a single-source reference to the science, technology, and applications of Tantalum and Niobium-based capacitors; Focuses on Polymer Tantalum capacitors, with rapidly growing applications in special and commercial electronics; Discusses in detail conduction and degradation mechanisms in amorphous dielectrics and multilayer capacitor structures with amorphous dielectrics, such as metal-insulator-semiconductor (MIS) structures with inorganic and organic semiconductors, as well as MOSFET transistors with high k dielectrics.
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