Design and Test of Integrated Inductors for RF Applications
Design and Test of Integrated Inductors for RF Applications
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In this review of Design and Test of Integrated Inductors for RF Applications, the authors present a focused, practical guide aimed at engineers who need a clear design flow and real measurement techniques. The book's single biggest reason to buy is its hands-on approach to both geometry selection and optimisation backed by empirical data, which makes it especially useful for those who want to improve inductor quality without relying on overly conservative rules. This review highlights the book's balance of introductory material and practical rules derived from measurement and characterisation.
Key Features
- Complete design flow: Describes the whole process from initial geometry selection to final characterisation so readers can follow a sequential approach to developing integrated inductors.
- Geometry guidance: Explains basic geometry selection and provides direction for redesigning layouts to optimise quality for specific RF needs.
- Measurement and de-embedding: Covers practical measurement techniques and de-embedding procedures that help translate lab results into usable design feedback.
- Empirical design rules: Presents data-driven rules showing where conservative practices can be relaxed to achieve higher Q and better performance.
- Useful for learners and practitioners: Written to support engineers starting out while also offering insights that experienced designers can apply immediately.
Who It's For
This book is best for RF circuit designers, IC layout engineers, and graduate students who need a focused, applied reference for designing integrated inductors and improving Q through measured redesign. It is particularly valuable for those who perform or interpret lab measurements and want practical de-embedding knowledge.
Those who should look elsewhere include readers seeking a broad textbook on RF theory or a comprehensive survey of passive components beyond inductors. The content is specialised; it assumes interest in inductor geometry, measurement, and optimisation rather than a wide-ranging introduction to RF systems.
Pros & Cons
Pros
- Provides a clear, end-to-end design flow that is practical for engineers new to integrated inductors.
- Includes empirical data and design rules that help experienced designers push beyond conservative limits.
- Explains measurement and de-embedding in a way that makes lab-to-design translation easier.
Cons
- Focused scope means it is not a general RF textbook; readers seeking broader RF system theory may need supplementary texts.
Specifications
| Title | Design and Test of Integrated Inductors for RF Applications |
| Authors | Jaime Aguilera, Roc Berenguer |
| Primary focus | Design flow, geometry selection, optimisation |
| Includes | Measurement, de-embedding, characterisation |
| Audience | Engineers starting out and experienced designers |
| Category hint | Books; Engineering; Electrical & Electronics; Design |
Our Verdict
Design and Test of Integrated Inductors for RF Applications is a practical, well-focused reference that delivers measurable benefit to both early-career engineers and seasoned designers looking to refine inductor Q. Its emphasis on empirical results and lab techniques makes it good value for anyone who needs a concise, actionable guide to inductor geometry, measurement, and optimisation.
Frequently Asked Questions
Does this book cover measurement techniques?
Yes. It includes practical measurement and de-embedding procedures to help interpret lab results for design improvements.
Is it suitable for beginners?
Yes. The book is intended for engineers starting out and walks through the whole design flow from geometry selection to characterisation.
Will experienced designers learn anything new?
Yes. Empirical data in the book challenges some conservative rules and shows how to redesign for higher quality.
Editor's Take
A practical, focused reference that helps both novice and experienced designers improve integrated inductor quality through clear design flow, measurement guidance, and empirical optimisation rules.

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