Introduction 9.1 Classification of output stages 9.2 Class A output stage 9.3 Class B output stage 9.4 Class AB output stage 9.5 Biasing the class AB circuit
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Introduction 8.1 The general feedback structure 8.2 Some properties of negative feedback 8.3 The four basic feedback topologies 8.4 The series-shunt feedback amplifier 8.5 The series-series feedback amplifier 8.6 The shunt-shunt and shunt-series feedback amplifier 8.10 Stability study using bode plot 8.11 Frequency compensation
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Introduction 7.1 s-Domain analysis: poles,zeros and bode plots 7.2 the amplifier transfer function 7.3 Low-frequency response of the common-source and common-emitter amplifier 7.4 High-frequency response of the CS and CE amplifiers 7.5 The CB, CG and cascode configurations
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12.1 Basic principles of sinusoidal oscillators 12.2 RC oscillator circuits 12.3 LC and crystal oscillators 12.4 Bistable Multivibrators 12.5 Generation of a standardized pulse-The monostable multivibrator
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6.1 The BJT differntial pair 6.2 Small-signal operation of the BJT differential amplifier 6.3 Other nonideal characteristics of the differential amplifier 6.4 MOS diffenrential amplifiers 6.5 Biasing in intergrated circuits 6.6 The BJT differential amplifier with active load 6.9 Multistage amplifiers
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5.0 Introduction 5.1 Device Structure and Physical Operation 5.2 Current-Voltage Characteristics 5.3 The BJT as an Amplifier and as a Switch 5.4 BJT Circuits at DC 5.5 Biasing in BJT Amplifier Circuits 5.6 Small-Signal Operation and Models 5.7 Single-Stage BJT Amplifiers 5.8 The BJT Internal Capacitances and High-Frequency Model 5.9 Frequency Response of the Common-Emitter Amplifier 5.10 The Basic BJT Digital Logic Inverter 5.11 The SPICE BJT Model and Simulation Examples
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4.0 Introduction 4.1 Device Structure and Physical Operation 4.2 Current-Voltage Characteristics 4.3 MOSFET Circuits at DC 4.4 The MOSFET as an Amplifier and as a Switch 4.5 Biasing in MOS Amplifier Circuits 4.6 Small-Signal Operation and Models 4.7 Single-Stage MOS Amplifiers 4.8 The MOSFET Internal Capacitances and High-Frequency Model 4.9 Frequency Response of the CS Amplifier 4.10 The CMOS Digital Logic Inverter 4.11 The Depletion-Type MOSFET 4.12 The SPICE MOSFET Model and Simulation Example
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3.1 The Ideal Diode 3.2 Terminal Characteristics of Junction Diodes 3.3 Modeling the Diode Forward Characteristic 3.4 Operation in the Reverse Breakdown Region—Zener Diodes 3.5 Rectifier Circuits (整流电路) 3.6 Limiting and Clamping Circuits (限幅与钳位电路) 3.7 Physical Operation of Diodes 3.8 Special Diode Types 3.9 The SPICE Diode Model and Simulation Examples
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1.1 Signals 1.2 Frequency Spectrum of Signals 1.3 Analog and Digital Signals 1.4 Amplifiers 1.5 Circuit Models for Amplifiers 1.6 Frequency Response of Amplifiers 1.7 Digital Logic Inverters 1.8 Circuit Simulation Using SPICE
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上海交通大学:《模拟电子技术》课程教学资源(PPT课件)Introduction Analog Electronic Technology
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