On-chip High-Voltage Generator Design - Practical Circuit Techniques
On-chip High-Voltage Generator Design - Practical Circuit Techniques
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In this review of On-chip High-Voltage Generator Design the author presents a focused technical guide for engineers and designers working on integrated circuits that need on-chip high-voltage sources. The book's single biggest reason to buy is its practical treatment of switched-capacitor charge pump techniques and their application to system-level problems, which makes it useful for anyone designing Flash memory, LCD driver, or other semiconductor subsystems where area and power trade-offs matter. Readers should expect hands-on design guidance rather than broad theory.
Key Features
- Switched-capacitor charge pump circuits: Detailed descriptions help designers implement efficient on-chip charge pumps that save silicon area compared with discrete solutions.
- Regulator and level shifter techniques: Practical circuit methods allow safe and reliable voltage generation and shifting inside low-voltage processes.
- Reference and oscillator design: Coverage of on-chip references and oscillators supports stable high-voltage generation without large external components.
- System-oriented examples: Applied examples for Flash memories and LCD drivers show how component choices affect overall power and area.
- Optimization focus: Emphasis on minimizing cost and power under low supply voltage constraints aids real-world product engineering.
Who It's For
This book is best for analog and mixed-signal IC designers, circuit engineers, and graduate students who need pragmatic techniques for creating on-chip high-voltage supplies. It is especially relevant when the design goal is to optimize circuit area and power efficiency within a constrained low-voltage process.
It is less suited to readers seeking introductory electronics tutorials or high-level digital system design; novices without a background in analog circuits may find the material dense and focused on implementation details rather than basic principles.
Pros & Cons
Pros
- Provides concrete switched-capacitor and charge pump design techniques that are directly adoptable in IC design projects.
- Addresses regulators, level shifters, references, and oscillators together so system trade-offs are clear.
- Focus on minimizing area and power makes the book practical for commercial semiconductor design.
Cons
- Highly technical presentation assumes prior analog circuit knowledge, so it is not an introductory text for beginners.
Specifications
| Title | On-chip High-Voltage Generator Design |
| Subject area | Analog circuits and signal processing |
| Primary focus | Switched-capacitor charge pumps and regulators |
| Applications covered | Flash memories, LCD drivers, semiconductor devices |
| Design topics | Charge pumps, level shifters, references, oscillators |
| Design goals | Optimize circuit area and power efficiency with low-voltage supply |
Our Verdict
On-chip High-Voltage Generator Design is a concentrated, application-driven reference that pays off for practicing analog IC designers who must implement efficient on-chip high-voltage sources. Its value lies in practical circuit techniques and system examples that reduce area and power; those needing conceptual introductions or beginner-level material should look elsewhere.
Frequently Asked Questions
Does this book cover practical implementation examples?
Yes. It shows techniques applied to system design for Flash memories, LCD drivers, and similar devices.
Is this suitable for beginners?
No. The material assumes prior analog circuit knowledge and focuses on implementation-level techniques.
Does it address power and area optimization?
Yes. A recurring theme is optimizing the entire circuit area and power efficiency under low-voltage supply constraints.
Editor's Take
A focused, application-driven reference for analog IC designers that delivers practical switched-capacitor and regulator techniques to optimize on-chip high-voltage generation for area and power efficiency.

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