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 #  AuthorTitleAccn#YearItem Type Claims
1 Adhikari, Pitri Bhakta Lightning Discharges I12543 2022 Book  
2 Rencz, Marta Theory and Practice of Thermal Transient Testing of Electronic Components I12469 2022 Book  
3 Takada, Tatsuo Electric Charge Accumulation in Dielectrics: Measurement and Analysis I12456 2022 Book  
4 Bera, Subhash Chandra Microwave High Power High Efficiency GaN Amplifiers for Communication I12349 2022 Book  
5 Yoshitake, Michiko Work Function and Band Alignment of Electrode Materials I11698 2021 eBook  
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TitleLightning Discharges : Formation, Terminologies, Measurements and Theory
Author(s)Adhikari, Pitri Bhakta;Adhikari, Aashutosh
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionVIII, 97 p. 30 illus., 9 illus. in color : online resource
Abstract NoteThis book highlights the basic information about lightning. It is an unpredictable disaster, and it is an extremely complex electrical discharge phenomenon. A complete theory of lightning does not exist till now. This book elaborates on the basic formation of lightning, terminologies related to lightning, and the preliminary lightning theory. There are different types of lightning, such as cloud flashes, ground flashes (both positive and negative), and air discharges. This book explains some unusual events related to lightning and inspects innovation. This book also describes the measurement of electric and magnetic fields generated by lightning, which are the basic parameters for lightning fundamentals
ISBN,Price9789811919268
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Electric power production 4. Electrical Power Engineering 5. Financial risk management 6. NATURAL DISASTERS 7. NATURAL HAZARDS 8. Risk management
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I12543     On Shelf    

2.     
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TitleTheory and Practice of Thermal Transient Testing of Electronic Components
Author(s)Rencz, Marta;Farkas, G??bor;Poppe, Andr??s
PublicationCham, 1. Imprint: Springer 2. Springer International Publishing, 2022.
DescriptionIX, 385 p : online resource
Abstract NoteThis book discusses the major aspects of thermal transient testing, the most important method of thermal characterization of electronics available today. The book begins by presenting the theoretical background of creating structure functions from the measured results with mathematical details. It then moves on to show how the method can be used for thermal qualification, structure integrity testing, determining material parameters, and the calibration of simulation models. General practical questions about measurements are discussed to help beginners carry out thermal transient testing. The special problems and tricks of measuring with various electronic components, such as Si diodes, bipolar transistors, MOS transistors, IGBT devices, resistors, capacitors, wide band gap materials, and LEDs are covered in detail with the help of various use cases. This hands-on book will enable readers to accomplish thermal transient testing on any new type of electronics and provides the theoretical details needed to understand the opportunities and limitations offered by the methodology. The book will be an invaluable reference for practicing engineers, students, and researchers. The first book dedicated solely to thermal transient testing; Enables readers to accomplish thermal transient testing on any type of electronics; Provides valuable use cases and highlights the specialties of characterizing different devices
ISBN,Price9783030861742
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Electric power production 4. Electrical Power Engineering 5. ELECTRONIC CIRCUITS 6. Electronic Circuits and Systems 7. ELECTRONICS 8. Electronics and Microelectronics, Instrumentation 9. MATERIALS 10. Materials Engineering
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3.     
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TitleElectric Charge Accumulation in Dielectrics: Measurement and Analysis
Author(s)Takada, Tatsuo;Ren, Hanwen;Li, Jin;Wang, Weiwang;Chen, Xiangrong;Li, Qingmin
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXX, 363 p. 282 illus., 271 illus. in color : online resource
Abstract NoteThis book mainly introduces how to measure and analyze electric charge accumulation in Dielectrics. By using the PEA and Q(t) methods with the Quantum Chemical Calculation, the charge characteristics of solid dielectrics under different situations are analyzed, which are never discussed in detail by other books. The book contains a large number of experimental and simulation data as illustrations, and thus the reader can understand the theory in the book very easily. Meanwhile, the reader can learn how to use the two methods to measure charge behavior under different conditions and analyze the charge phenomena by Quantum Chemical Calculation
ISBN,Price9789811961564
Keyword(s)1. Catalysis 2. EBOOK 3. EBOOK - SPRINGER 4. Electric power production 5. Electrical Power Engineering 6. FORCE AND ENERGY 7. MATERIALS 8. Materials for Energy and Catalysis
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4.     
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TitleMicrowave High Power High Efficiency GaN Amplifiers for Communication
Author(s)Bera, Subhash Chandra
PublicationSingapore, 1. Imprint: Springer 2. Springer Nature Singapore, 2022.
DescriptionXVI, 260 p. 182 illus., 126 illus. in color : online resource
Abstract NoteThe textbook discusses design and analysis of microwave high power and high efficiency amplifiers for communications, appropriate for undergraduate, post-graduate students, practical circuit designers and researchers in the field of electronics and communication engineering. This book covers basics of III-V group semiconductor materials and GaAs and GaN based High Electron Mobility Transistors (HEMTs) most suitable for microwave and mm wave power amplifiers required for present wireless communication systems and upcoming 4G and 5G mobile base stations. The book describes design and analysis of classical class of amplifier operations such as Class-A, B, AB, C and F. The coverage extends to advanced classes of amplifier operation such as extended continuous Class-B/Class-J, and extended continuous Class-F operations for broadband, high power and high efficiency performance. Analytical expressions are derived for circuit elements and performance parameters for clear understanding and required for practical design of power amplifiers. Each topic is supplemented with suitable schematic diagrams, analytical expressions and plotted results for clear understanding
ISBN,Price9789811962660
Keyword(s)1. Communications Engineering, Networks 2. EBOOK 3. EBOOK - SPRINGER 4. Electric power production 5. Electrical Power Engineering 6. ELECTRONIC CIRCUITS 7. Electronic Circuits and Systems 8. TELECOMMUNICATION
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TitleWork Function and Band Alignment of Electrode Materials : The Art of Interface Potential for Electronic Devices, Solar Cells, and Batteries
Author(s)Yoshitake, Michiko
PublicationTokyo, Springer Japan, 2021.
DescriptionVIII, 136 p. 138 illus., 95 illus. in color : online resource
Abstract NoteThis book covers a wide range of topics on work function and band alignment, from the basics to practical examples. Work function and band alignment determine electric properties at the interface including surfaces, such as electron emission, the Schottky barrier height, and ohmic contact. Basic physics is used to systematically explain how to adjust and measure work function and how to modify the band alignment required for controlling work function in functional materials and electrodes. Methods introduced in the book help to improve device performance and to solve the problems of controlling the voltage and efficiency of devices in a great variety of applications, including electronic devices, optical devices such as displays, and energy devices such as solar cells and batteries. Understanding the technical methods necessary for controlling work function and band alignment can help to solve problems such as non-ohmic contact at source???electrode or drain???electrode interfaces in metal???oxide???silicon structures, which directly contributes to improving power saving and reducing heat generation in computers
ISBN,Price9784431568988
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Electric power production 4. Electrical Power Engineering 5. ELECTRONICS 6. Electronics and Microelectronics, Instrumentation 7. LASER 8. LASERS 9. Mechanical Power Engineering 10. Surface and Interface and Thin Film 11. Surfaces (Physics) 12. Surfaces (Technology) 13. Surfaces, Interfaces and Thin Film 14. THIN FILMS
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