封面
版权信息
前言
Session 1 Introduction to Semiconductor
1.1 What is Semiconductor
1.2 Classification of Semiconductor
Reading Materials
Session 2 Crystal Structure
2.1 Primitive Cell and Crystal Plane
2.2 Atomic Bonding
Reading Materials
Session 3 Band Model
3.1 Introduction to Quantum Mechanics
3.2 Band
3.3 Effective Mass Theory
Reading Materials
Session 4 The Semiconductor in Equilibrium
4.1 Charge Carriers in Semiconductor
4.2 Intrinsic Semiconductor
4.3 Extrinsic Semiconductor
Reading Materials
Session 5 Carrier Transport
5.1 Overview of Carrier Transport
5.2 Low Field Transport
5.3 High Field Transport
5.4 Diffusion Current
Session 6 Nonequilibrium Excess Carriers in Semiconductor
6.1 Recombination
6.2 Minority Carrier Lifetime
6.3 Ambipolar Transport
Reading Materials
Session 7 The pn Junction(Ⅰ)
7.1 Introduction
7.2 Basic Structure of the pn Junction
7.3 Energy Bands for a pn Junction
7.4 Ideal Current-Voltage Relationship
7.5 Characteristics of a Practical Diode
Reading Materials
Session 8 The pn Junction(Ⅱ)
8.1 Breakdown in pn Junction
8.2 Small-Signal Diffusion Resistance of the pn Junction
8.3 Junction Capacitance
8.4 Diffusion or Storage Capacitance
8.5 Diode Transients
8.6 Circuit Models for Junction Diodes
Reading Materials
Session 9 Metal-Semiconductor Contacts
9.1 Schottky Contacts
9.2 Ohmic Contacts
Reading Materials
Session 10 Heterojunctions
10.1 Strain and Stress at Heterointerfaces
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10.2 Heterojunction Materials
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10.3 Energy-Band Diagrams
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Reading Materials
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Session 11 The Bipolar Junction Transistor(Ⅰ)
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11.1 The Bipolar Junction Transistor Construction
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11.2 Transistor Action
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11.3 Nonideal Effects
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11.4 Base Resistance
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Reading Materials
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Session 12 The Bipolar Junction Transistor(Ⅱ)
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12.1 Breakdown Voltage
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12.2 Frequency Limits of BJT
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12.3 The Schottky-Clamped Transistor
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12.4 Small-signal Transistor Model
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Reading Materials
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Session 13 Basics of MOSFETs
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13.1 Introduction
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13.2 General Characteristics of a MOSFET
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13.3 MOS System
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13.4 Work Function Differences
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13.5 Flat-Band Voltage
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13.6 Threshold Voltage
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Reading Materials
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Session 14 Nonideal Effects of MOSFETs
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14.1 Introduction
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14.2 Effective Mobility
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14.3 Velocity Saturation
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14.4 Channel-length Modulation
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14.5 DIBL
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14.6 Hot-carrier Effect
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14.7 GIDL
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Reading Materials
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Session 15 Advanced MOSFET Devices
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15.1 Introduction
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15.2 Channer Doping Profile
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15.3 Gate Stack
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15.4 Source/Drain Design
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15.5 Schottky-Barrier Source/Drain
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15.6 Raised Source/Drain
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15.7 SOI
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15.8 Three Dimensional Structure
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Reading Materials
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Session 16 Introduction to Integrated Circuits
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16.1 Introduction
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16.2 Size and Complexity of Integrated Circuits
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16.3 Semiconductor Device for Integrated Circuits
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16.4 IC Design Process
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Reading Materials
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Session 17 Analog Integrated Circuits Design
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17.1 Introduction
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17.2 Analog Signal Processing
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17.3 CMOS Technology
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17.4 Amplifiers
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17.5 Differential Amplifiers
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17.6 Operational Amplifiers
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17.7 Characterization of Op Amps
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Reading Materials
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Session 18 Digital Integrated Circuits Design
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18.1 Introduction
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18.2 The Static CMOS Inverter
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18.3 Designing Combinational Logic Gates in CMOS
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Reading Materials
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Session 19 Radio Frequency Integrated Circuits Design
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19.1 Introduction
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19.2 RF System Performance Metrics
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19.3 RF Transceiver Architectures
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19.4 RF Passive Component
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19.5 Receiver
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19.6 Frequency Synthesizer
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19.7 Transmitter
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Reading Materials
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Session 20 Simulation and Verification
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20.1 Introduction
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20.2 SPICE Circuit Simulator
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20.3 Circuit Design Automation with Verilog
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20.4 Verification
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Reading Materials
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Session 21 Introduction to the Semiconductor Technology(Ⅰ)
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21.1 The Development of Semiconductor Technology
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21.2 Wafer Fabrication
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Reading Materials
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Session 22 Introduction to the Semiconductor Technology(Ⅱ)
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22.1 Assembly
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22.2 Metrology
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Reading Materials
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Session 23 Bipolar Technology and GaAs Digital Logic Process
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23.1 Bipolar Technology
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23.2 GaAs Digital Logic Process
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Reading Materials
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Session 24 CMOS Technology
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24.1 CMOS Fabrication Sequence
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24.2 Twin Well and Retrograde Well
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24.3 Isolation
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24.4 Structures that Reduce the Drain Field
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24.5 Gate Engineering
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Reading Materials
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Session 25 Reliability
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25.1 Introduction
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25.2 Failure Modes
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Reading Materials
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参考译文
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第1讲 半导体概述
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第2讲 晶体结构
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第3讲 能带模型
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第4讲 平衡半导体
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第5讲 载流子输运
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第6讲 半导体中的非平衡过剩载流子
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第7讲 pn结(Ⅰ)
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第8讲 pn结(II)
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第9讲 金属—半导体接触
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第10讲 异质结
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第11讲 双极晶体管(I)
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第12讲 双极晶体管(II)
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第13讲 MOSFET基础
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第14讲 MOSFET的非理想效应
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第15讲 先进的MOSFET器件
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第16讲 集成电路简介
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第17讲 模拟集成电路设计
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第18讲 数字集成电路
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第19讲 射频集成电路设计
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第20讲 仿真与验证
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第21讲 半导体技术简介(Ⅰ)
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第22讲 半导体技术简介(Ⅱ)
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第23讲 双极技术和砷化镓数字逻辑工艺
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第24讲 CMOS工艺
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第25讲 可靠性
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参考文献
更新时间:2018-12-28 18:39:51