The same transistor that quietly amplifies a weak sensor signal is also the switch computing at the heart of a digital chip. Many engineering students meet these devices, diodes, transistors, and logic gates, as separate topics scattered across different courses, learning to apply a formula without ever understanding the physical reason a semiconductor junction behaves the way it does.
That gap between recognizing a circuit and genuinely understanding it tends to surface at exactly the wrong moment, when a real circuit does not behave the way a textbook example did, or when a problem asks for something no memorized formula quite covers.
This textbook closes that gap with a single, coherent path from the physical behavior of semiconductor materials to the practical design of the analog and digital circuits built from them, carrying every derivation from stated assumptions to a complete result and every worked example through to a full, unit-checked numerical answer.
What this book helps you do:
Coverage runs across sixteen chapters organized into four progressive movements: semiconductor materials and the p-n junction; diode circuits and bipolar-transistor physics, biasing, and small-signal amplifiers; MOSFET physics, biasing, and small-signal amplifiers, together with frequency response, differential and multistage amplifiers, operational amplifiers, and power output stages; and finally CMOS digital logic, sequential circuits, and a conceptual treatment of integrated-circuit fabrication. Each chapter opens with stated learning objectives and closes with a summary, and the book includes a glossary, a master notation table, an appendix of physical constants and material parameters, extended derivation supplements, and a full index.
This book is written for upper-level undergraduate electrical and electronic engineering students who have completed an introductory circuits course and a first course in physics, with no prior exposure to semiconductor devices assumed. It equally suits students in laboratory, project-based, or capstone design courses who need a calculation-complete reference, and readers who have studied diodes or transistors informally and now want a rigorous, first-principles treatment they can return to across a full course sequence.
Add this comprehensive, reference-ready guide to your engineering library and begin building a physically grounded, calculation-complete understanding of the analog and digital circuits at the foundation of modern electronics.
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