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High voltage vacuum insulation : basic concepts and technological practice /

The past decade has witnessed dramatic growth in the diversity and complexity of device applications where vacuum is required to support either high voltages or high electric fields. This is particularly true in thespace industry, specifically for the development of space-based pulse power systems....

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Latham, R. V.
Formato: Electrónico eBook
Idioma:Inglés
Publicado: London ; San Diego : Academic Press, �1995.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • R.V. Latham, Introduction. Part I-Basic Concepts: The Pure Vacuum Gap: R.V. Latham, The Operational Characteristics of Practical HV Gaps. R.V. Latham, Diagnostic Studies of Prebreakdown Electron Pin-Holes. N.S. Xu, The Physical Origin of Prebreakdown Electron Pin-Holes. N.S. Xu and R.V. Latham, Electron Emission Based Breakdown Mechanisms. R.V. Latham, The Point-Plane Field Emitting Diode. R.V. Latham, Microparticle Phenomena. The Bridged Vacuum Gap: H.C. Miller, High Voltage Performance Characteristics of Solid Insulators in Vacuum. G. Blaise and C. Le Gressus, Charge Trapping-Detrapping Processes and Related Breakdown Phenomena. Part II-TechnologicalPractice: A. Maitland, Pulsed Power. A.J. Durand and A.M. Schroff, High Voltage Breakdown in the Electron Gun of Linear Microwave Tubes. H. Padamsee, RF Superconducting Accelerating Cavities. M.F. Rose, HV Insulation in Space-based Device Applications. B. Mazurek, High Voltage Vacuum Insulation at Cryogenic Temperatures. B. GA. Juttner, Vacuum Arc Initiation and Applications. Subject Index.