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Chapter 30: Data Converter Modeling. |
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30.1 Sampling and Aliasing: A Modeling Approach. |
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30.1.2 The Sample and Hold. |
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30.2 SPICE Models for DACs and ADCs. |
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30.3.1 Viewing the Quantization Noise Spectrum Using Simulations. |
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30.3.2 Quantization Noise Voltage Spectral Density. |
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Chapter 31: Data Converter SNR. |
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31.1 Data Converter SNR: An Overview. |
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31.1.1 Effective Number of Bits. |
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31.1.3 A Tool: The Spectral Density. |
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31.2 Improving SNR Using Averaging. |
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31.2.1 Using Averaging to Improve SNR. |
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31.2.2 Decimating Filters for ADCs. |
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31.2.3 Interpolating Filters for DACs. |
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31.2.4 Bandpass and Highpass Sinc Filters. |
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31.3 Using Feedback to Improve SNR. |
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31.3.1 The Discrete Analog Integrator. |
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Chapter 32: Noise-Shaping Data Converters. |
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32.1 Noise-Shaping Fundamentals. |
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32.1.2 First-Order Noise-Shaping. |
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32.1.3 Second-Order Noise-Shaping. |
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32.2 Noise-Shaping Topologies. |
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32.2.1 Higher-Order Modulators. |
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32.2.2 Multibit Modulators. |
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32.2.3 Cascaded Modulators. |
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32.2.4 Bandpass Modulators. |
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Chapter 33: Submicron CMOS Circuit Design. |
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33.1 Submicron CMOS: Overview and Models. |
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33.1.1 CMOS Process Flow. |
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33.1.2 Capacitors and Resistors. |
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33.1.3 SPICE MOSFET Modeling. |
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33.2 Digital Circuit Design. |
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33.2.1 The MOSFET Switch. |
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33.3 Analog Circuit Design. |
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The Spectral Characteristics of Thermal Noise. |
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Noise Equivalent Bandwidth. |
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Noise Performance of the Source-Follower. |
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Noise Performance of a Cascade of Amplifiers. |
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Chapter 34: Implementing Data Converters. |
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34.1 R-2R Topologies for DACs. |
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34.1.1 The Current-Mode R-2R DAC. |
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34.1.2 The Voltage-Mode R-2R DAC. |
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34.1.3 A Wide-Swing Current-Mode R-2R DAC. |
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34.1.4 Topologies Without an Op-Amp. |
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34.2 Op-Amps in Data Converters. |
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34.2.2 Op-Amp Unity Gain Frequency. |
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34.3.1 Implementing the S/H. |
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Chapter 35: Integrator-Based CMOS Filters. |
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35.1 Integrator Building Blocks. |
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35.1.2 Active-RC Integrators. |
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35.1.3 MOSFET-C Integrators. |
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35.1.4 g[subscript m]-C (Transconductor-C) Integrators. |
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35.1.5 Discrete-Time Integrators. |
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35.2 Filtering Topologies. |
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35.2.1 The Bilinear Transfer Function. |
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35.2.2 The Biquadratic Transfer Function. |
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35.3 Filters using Noise-Shaping. |
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Chapter 36: At the Bench. |
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36.1 A Push-Pull Amplifier. |
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36.2 A First-Order Noise-Shaping Modulator. |
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36.3 Measuring 1/f Noise. |
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36.4 A Discrete Analog Integrator. |
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