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SEMICONDUCTOR MANUFACTURING FOR THE AI ERA HANDBOOK: From Wafer Fabrication to Advanced Packaging for High-Performance Computing Systems - Tapa blanda

K. Sterling, Dr. Adrian

 
9798193441410: SEMICONDUCTOR MANUFACTURING FOR THE AI ERA HANDBOOK: From Wafer Fabrication to Advanced Packaging for High-Performance Computing Systems

Sinopsis

From Wafer Fabrication to Advanced Packaging for High-Performance Computing Systems

What happens between semiconductor design and the finished AI chip?

Behind every AI accelerator is a highly coordinated manufacturing system involving materials, nanometer-scale patterns, contamination control, process variation, defects, yield, packaging, testing, and production efficiency.

Semiconductor Manufacturing for the AI Era Handbook takes you inside this system and explains how modern semiconductor manufacturing works as one connected engineering process, where every decision can affect performance, yield, reliability, cost, and capacity.

What You'll Discover Inside
  • Semiconductor Materials & Wafer Engineering

Silicon crystal growth, wafer preparation, defects, resistivity, surface quality, contamination, engineered substrates, and wafer qualification.

  • Cleanrooms & Fab Infrastructure

Contamination control, ultrapure water, process gases, vacuum systems, environmental control, vibration, and facility reliability.

  • Thin-Film Engineering

Oxidation, CVD, PVD, ALD, epitaxy, interfaces, film stress, conformality, uniformity, and process control.

  • Photolithography & Advanced Patterning

Photoresist, optical imaging, critical dimensions, overlay, EUV, multiple patterning, computational lithography, and process-window control.

  • Plasma Etching & Pattern Transfer

Anisotropic etching, selectivity, aspect-ratio effects, loading, profile control, endpoint detection, plasma damage, and 3D structures.

  • Metrology, Process Control & Yield

Learn how manufacturers measure variation, detect defects and excursions, investigate failures, and improve manufacturing yield.

  • Memory, Chiplets, HBM & Advanced Packaging

Explore silicon interposers, redistribution layers, TSVs, wafer thinning, hybrid bonding, microbumps, heterogeneous integration, chiplets, and high-bandwidth memory.

  • AI-Enabled Smart Fabs

Discover how AI and machine learning support process monitoring, excursion detection, predictive maintenance, factory scheduling, and manufacturing optimization.

  • Manufacturing Economics & Capacity

Understand yield, throughput, cycle time, bottlenecks, capital investment, packaging capacity, and cost per good die.

Built for Engineers and Technology Professionals

Ideal for engineering students, semiconductor professionals, manufacturing engineers, technical managers, researchers, and technology professionals who want to understand the bigger picture.

Rather than presenting disconnected process recipes, this handbook focuses on physical mechanisms, process interactions, engineering trade-offs, variability, measurement, yield, reliability, and manufacturability.

You'll find worked examples, quantitative reasoning, figures, tables, practice problems, key equations, and engineering case studies to strengthen practical understanding.

Why This Handbook Matters

AI hardware is moving semiconductor manufacturing beyond transistor scaling. Greater performance now demands higher memory bandwidth, advanced interconnects, thermal management, sophisticated packaging, higher yield, and intelligent factories.

From crystal growth and wafer fabrication to lithography, etching, interconnects, HBM, chiplets, advanced packaging, and AI-assisted process control, this handbook gives you a clear framework for understanding the complete manufacturing chain.

Follow the wafer. Understand the process. Think like a semiconductor manufacturing engineer.

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