Analog IC Design with Low-Dropout Regulators (Hardcover)
暫譯: 低壓差穩壓器的類比集成電路設計 (精裝版)
Gabriel Rincon-Mora
- 出版商: McGraw-Hill Education
- 出版日期: 2009-08-09
- 售價: $3,470
- 貴賓價: 9.5 折 $3,297
- 語言: 英文
- 頁數: 400
- 裝訂: Hardcover
- ISBN: 0071608931
- ISBN-13: 9780071608930
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商品描述
Master Analog Integrated-Circuit Design
Design, analyze, and build linear low-dropout (LDO) regulator ICs in bipolar, CMOS, and biCMOS semiconductor process technologies. This authoritative guide offers a unique emphasis on embedded LDO design. Through intuitive explanations and detailed illustrations, the book shows how you can put these theories to work creating analog ICs for the latest portable, battery-powered devices.
Analog IC Design with Low-Dropout Regulators details the entire product development cycle-from defining objectives and selecting components to blueprinting, assembling, and fine-tuning performance. Work with semiconductors, employ negative feedback, handle fluctuating loads, and embed regulators in ICs. You will also learn how to build prototypes, perform tests, and integrate system-on-chip (SoC) functionality. Discover how to:
- Design, test, and assemble BJT-, MOSFET-, and JFET-based linear regulators
- Use current mirrors, buffers, amplifiers, and differential pairs
- Integrate feedback loops, negative feedback, and control limits
- Maintain an independent, stable, noise-free, and predictable output voltage
- Compensate for low input current and wide voltage swings
- Optimize accuracy, efficiency, battery life, and integrity
- Implement overcurrent protection and thermal-shutdown features
- Establish power and operating limits using characterization techniques
商品描述(中文翻譯)
掌握類比集成電路設計
設計、分析並構建在雙極性、CMOS 和 biCMOS 半導體製程技術中的線性低壓降 (LDO) 穩壓器 IC。本權威指南獨特地強調嵌入式 LDO 設計。透過直觀的解釋和詳細的插圖,本書展示了如何將這些理論應用於為最新的便攜式電池供電設備創建類比 IC。
低壓降穩壓器的類比 IC 設計 詳細說明了整個產品開發週期——從定義目標和選擇元件到藍圖設計、組裝和性能調整。與半導體合作,使用負反饋,處理波動負載,並將穩壓器嵌入 IC 中。您還將學習如何構建原型、執行測試並整合片上系統 (SoC) 功能。發現如何:
- 設計、測試和組裝基於 BJT、MOSFET 和 JFET 的線性穩壓器
- 使用電流鏡、緩衝器、放大器和差分對
- 整合反饋迴路、負反饋和控制限制
- 維持獨立、穩定、無噪音且可預測的輸出電壓
- 補償低輸入電流和寬電壓擺幅
- 優化準確性、效率、電池壽命和完整性
- 實施過電流保護和熱關閉功能
- 使用特性化技術建立功率和操作限制
