Technical Book: Basics and Applications of PLL *Available for preview.
<Author> Masanori Kunida, Chief Researcher, Aroka Corporation Research Institute <Publication Date> July 11, 2002 <Format> B5 size, 250 pages <Price> 62,790 yen (including tax) The first half of this book is structured with a slight emphasis on theory. The first reason is that in order to quantitatively understand PLL, it is necessary to analyze it using equations from both the time domain and the frequency domain. The second reason is that if PLL is designed according to established principles based on quantitative analysis, the characteristics will invariably match the design specifications. The content explained over nine chapters covers the minimum necessary information to understand PLL. This information should be useful in practical applications such as total system design including PLL, PLL design, interpreting catalog information during device selection, evaluating prototype PLLs, and troubleshooting.
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Chapter 1: Concepts and Applications of PLL 1. Concept of PLL 2. History of PLL 3. Applications of PLL Chapter 2: Mathematical Preparation 1. Concept and Definition of Fourier Transform 2. Fourier Transform of Basic Functions 3. Transfer Function Chapter 3: Basic Characteristics of PLL 1. Transfer Function and Error Response of PLL 2. Second-Order System Loop 3. Stability of PLL 4. Noise Characteristics and Bandwidth Chapter 4: Tracking Characteristics of PLL 1. Concept of Tracking 2. Tracking Error in Steady State 3. Step Response and Ramp Response 4. Phase Step Response 5. Frequency Step Response 6. Frequency Ramp Response 7. Loop Pull-In Range 8. Expansion of Loop Pull-In Range Chapter 5: Components of PLL 1. Phase Detector (PD) 2. Loop Filter (LPF) 3. Voltage Controlled Oscillator (VCO) 4. Counter, Mixer
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Chapter 6 Measurement Methods for PLL Characteristics 1 Measurement of PLL Components 2 Measurement of Frequency Characteristics 3 Measurement of Step Response (Initial Response) Chapter 7 Digital PLL Chapter 8 Applications of PLL 1 Application to Synchronization Systems in Communication Systems 2 PLL Demodulator 3 Synchronous Frequency Oscillation Method 4 PLL Synthesizer References Afterword Index
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