Intro; Preface; Contents; Chapter 1: Problems with Obtaining Materials for the Protection of Integrated Circuits from High-Velocity Streams of Micropart ... ; 1.1 Characteristics of Interactions of High-Velocity Streams of Microparticles with an Obstacle and Their Influence on the Str ... ; 1.2 Accelerators for Boosting Microparticles to Target Velocities; 1.2.1 Gun-type Particle Accelerators; 1.2.2 Explosive Particle Accelerators; 1.3 Analysis of Radar-Absorbing Materials for Protection Against Electromagnetic Radiation
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1.4 Influence of Interfaces in Multilayer Protective Materials on Penetrability of Microparticles1.5 Multilayer Materials for Protection of Integrated Circuits Against Effects of High-Velocity Streams of Microparticles and ... ; 1.6 Absorption and Reflection of Electromagnetic Radiation by Multilayer Materials; References; Chapter 2: Methods and Equipment for Studying the Processes of the Interaction of High-Velocity Streams of Microparticles with ... ; 2.1 Selection of Materials for Study; 2.1.1 Matrix Material; 2.1.2 Fillers; 2.2 Methods and Equipment for Acceleration of Microparticles
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2.3 Methods of Measuring the Electromagnetic Radiation That Occurs During the Interaction of Microparticles with the Barrier2.3.1 Application of the Hall Effect in the Study of Magnetodynamic Processes; 2.4 Methods of Measurement and Calculation Principle of Magnetic Field EMF; 2.5 Methods of Ionizing Radiation Registration; 2.6 Methods of Studying the Structure and Properties of Materials After Their Exposure to the High-Velocity Stream of Micropar ... ; 2.6.1 Metallographic Analysis; 2.6.2 Scanning Electron Microscopy and Electron Microprobe Analysis
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2.6.3 Method of Transmission Electron Microscopy and Technique for Preparation of Thin Foils2.6.4 X-ray Diffraction Analysis in the Study of Deformation Processes; 2.6.5 Methods of Measuring IC Physical Parameters of Integrated Circuits and Testing Multilayer Materials; References; Chapter 3: Effects of Exposure to High-Velocity Streams of Microparticles; 3.1 Effects of Exposure to High-Velocity Streams of Microparticles on Mechanical, Electrical, and Physical Properties of Multi ... ; 3.2 Analysis of Magnetodynamic Interaction of High-Speed Microparticle Streams with Metal Obstacles
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3.2.1 Study of Electromagnetic Radiation3.2.2 Study of the Ionizing Radiation Generated During Collision of High-Velocity Streams of Microparticles with the Metal Obs ... ; 3.3 Modeling Collision of High-Velocity Streams of Dust Microparticles with Spacecraft; 3.3.1 Accelerator and Treatment of Materials with a Stream of High-Velocity Particles; 3.3.2 Research Results; 3.4 Impact of Super-Deep Penetration on Reliability of Spacecraft Electronic Devices; References; Chapter 4: Changes in the Structure and Properties of Single- and Multilayer Materials Under the Influence of the High-Velocit ...
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SUMMARY OR ABSTRACT
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This book describes for readers the protection of electronic hardware in space vehicles from the negative effects of space dust and electromagnetic irradiation. The authors explain the mechanisms of "space dust" (high velocity particles in space), the effects on the on-board electronic hardware of space vehicles, and development of protection methods from these influences on humans, equipment and microcircuits. Coverage includes hard-to-find technical information on the design of special boosters for accelerating microparticles to space velocities, techniques for conducting experiments on Earth, data processing, and practical examples. The authors also discuss fabrication technologies and composition of special, radio absorbent materials for protecting space vehicles from the electromagnetic irradiation. Provides a single-source reference on the effects on space vehicles of "space dust" and electromagnetic irradiation; Discusses the design of special boosters for acceleration of micro-particles to space velocities, for experimentation and testing on Earth; Includes information about fabrication technologies and composition of special, radio absorbent materials for protecting space vehicles from the electromagnetic irradiation.