Analog Devices Tutorials
Walt Kester Series
- MT001—Taking_the_Mystery_out_of_the_Infamous_Formula,SNR=6.02N+1.76dB,_and_Why_You_Should_Care(揭开一个公式(SNR=6.02N+_1.76dB)的神秘面纱,以及为什么我们要予以关注)
- MT002—What_the_Nyquist_Criterion_Means_to_Your_Sampled_Data_System_Design(奈奎斯特准则对数据采样系统设计有何意义)
- MT003—Understand_SINAD,ENOB,_SNR,_THD,_THD+N,_and_SFDR_so_You_Don't_Get_Lost_in_the_Noise_Floor(了解SINAD、ENOB、SNR、THD、THD+_N、SFDR,不在噪底中迷失)
- MT004—The_Good,_the_Bad,_and_the_Ugly_Aspects_of_ADC_Input_Noise—Is_No_Noise_Good_Noise?(ADC输入噪声面面观—噪声是利还是弊?)
- MT005—Noise_Power_Ratio_(NPR)—A_65-Year_Old_Telephone_System_Specification_Finds_New_Life_in_Modern_Wireless_Applications(噪声功率比(NPR)—拥有65年历史的电话系统参数在现代无线应用中重获新生)
- MT006—ADC_Noise_Figure—An_Often_Misunderstood_and_Misinterpreted_Specification(ADC噪声系数—一个经常被误解的参数)
- MT007—Aperture_Time,_Aperture_Jitter,_Aperture_Delay_Time—Removing_the_Confusion(孔径时间、孔径抖动、孔径延迟时间—正本清源)
- MT008—Converting_Oscillator_Phase_Noise_to_Time_Jitter(将振荡器相位噪声转换为时间抖动)
- MT009—Data_Converter_Codes—Can_You_Decode_Them?(数据转换器代码—您能解译这些代码吗?)
- MT010—The_Importance_of_Data_Converter_Static_Specifications—Don't_Lose_Sight_of_the_Basics!(数据转换器静态特性的重要性—千万别忽视基本特性!)
- MT011—Find_Those_Elusive_ADC_Sparkle_Codes_and_Metastable_States(找出那些难以琢磨、稍纵即逝的ADC闪码和亚稳状态)
- MT012—Intermodulation_Distortion_Considerations_for_ADCs(ADC需要考虑的交调失真因素)
- MT013—Evaluating_High_Speed_DAC_Performance
- MT014—Basic_DAC_Architectures_I:String_DACs_and_Thermometer(Fully_Decoded)_DACs(DAC基本架构I:DAC串和温度计(完全解码)DAC)
- MT015—Basic_DAC_Architectures_II:_Binary_DACs(DAC基本架构II:二进制DAC)
- MT016—Basic_DAC_Architectures_III:_Segmented_DACs(基本DAC架构III:分段DAC)
- MT017—Oversampling_Interpolating_DACs(过采样插值DAC)
- MT018—Intentionally_Nonlinear_DACs(有意为之的非线性DAC)
- MT019—DAC_Interface_Fundamentals(DAC接口基本原理)
- MT020—ADC_Architectures_I:_The_Flash_Converter(ADC架构I:Flash转换器)
- MT021—ADC_Architectures_II:_Successive_Approximation_ADCs(ADC架构II:逐次逼近型ADC)
- MT022—ADC_Architectures_III:_Sigma-Delta_ADC_Basics(ADC架构III:Σ-Δ型ADC基础)
- MT023—ADC_Architectures_IV:_Sigma-Delta_ADC_Advanced_Concepts_and_Applications
- MT024—ADC_Architectures_V:_Pipelined_Subranging_ADCs(ADC架构V:流水线式分级ADC)
- MT025—ADC_Architectures_VI:_Folding_ADCs(ADC架构VI:折叠型ADC)
- MT026—ADC_Architectures_VII:_Counting_ADCs(ADC架构VII:计数ADC)
- MT027—ADC_Architectures_VIII:_Integrating_ADCs(ADC架构VIII:集成ADC)
- MT028—Voltage-to-Frequency_Converters(电压频率转换器)
- MT029—Optical_Encoders(光学编码器)
- MT030—Resolver-to-Digital_Converters
- MT031—Grounding_Data_Converters_and_Solving_the_Mystery_of_“AGND”and“DGND”(实现数据转换器的接地并解开“AGND”和“DGND”的谜团)
Opamp Series
- MT032—Ideal_Voltage_Feedback_(VFB)_Op_Amp(理想的电压反馈型(VFB)运算放大器)
- MT033—Voltage_Feedback_Op_Amp_Gain_and_Bandwidth(电压反馈型运算放大器的增益和带宽)
- MT034—Current_Feedback_(CFB)_Op_Amps(电流反馈(CFB)运算放大器)
- MT035—Op_Amp_Inputs,_Outputs,_Single-Supply,_and_Rail-to-Rail_Issues(运算放大器输入、输出、单电源和轨到轨问题)
- MT036—Op_Amp_Output_Phase-Reversal_and_Input_Over-Voltage_Protection(运算放大器输出相位反转和输入过压保护)
- MT037—Op_Amp_Input_Offset_Voltage(运算放大器输入失调电压)
- MT038—Op_Amp_Input_Bias_Current(运算放大器输入偏置电流)
- MT039—Op_Amp_Total_Output_Offset_Voltage_Calculations(运算放大器总输出失调电压计算)
- MT040—Op_Amp_Input_Impedance(运算放大器输入阻抗)
- MT041—Op_Amp_Input_and_Output_Common-Mode_and_Differential_Voltage_Range(运算放大器输入和输出共模与差分电压范围)
- MT042—Op_Amp_Common-Mode_Rejection_Ratio_(CMRR)(运算放大器共模抑制比(CMRR))
- MT043—Op_Amp_Power_Supply_Rejection_Ratio_(PSRR)_and_Supply_Voltages(运算放大器电源抑制比(PSRR)与电源电压)
- MT044—Op_Amp_Open-Loop_Gain_and_Open-_Loop_Gain_Nonlinearity(运算放大器开环增益与开环增益非线性)
- MT045—Op_Amp_Bandwidth_and_Bandwidth_Flatness(运算放大器带宽和带宽平坦度)
- MT046—Op_Amp_Settling_Time(运算放大器建立时间)
- MT047—Op_Amp_Noise(运算放大器噪声)
- MT048—Op_Amp_Noise_Relationships_1f_Noise,_RMS_Noise,_and_Equivalent_Noise_Bandwidth(运算放大器噪声关系:1/f噪声、均方根(RMS)噪声与等效噪声带宽)
- MT049—Op_Amp_Total_Output_Noise_Calculations_for_Single-Pole_System(单极点系统的运算放大器总输出噪声计算)
- MT050—Op_Amp_Total_Output_Noise_Calculations_for_Second-Order_System(二阶系统的运算放大器总输出噪声计算)
- MT051—Current_Feedback_Op_Amp_Noise_Considerations(电流反馈运算放大器噪声考虑因素)
- MT052—Op_Amp_Noise_Figure:_Don’t_Be_Mislead(运算放大器噪声指数:不要被误导)
- MT053—Op_Amp_Distortion:HD,_THD,_THD+N,_IMD,_SFDR,_MTPR(运算放大器失真:HD、THD、THD+_N、IMD、SFDR、MTPR)
- MT054—Precision_Op_Amps(精密运算放大器)
- MT055—Chopper_Stabilized_(Auto-Zero)_Precision_Op_Amps(斩波稳定(自稳零)精密运算放大器)
- MT056—High_Speed_Voltage_Feedback_Op_Amps(高速电压反馈运算放大器)
- MT057—High_Speed_Current_Feedback_Op_Amps(高速电流反馈运算放大器)
- MT058—Effects_of_Feedback_Capacitance_on_VFB_and_CFB_Op_Amps(反馈电容对VFB和CFB运算放大器的影响)
- MT059—Compensating_for_the_Effects_of_Input_Capacitance_on_VFB_and_CFB_Op_Amps_Used_in_Current-to-Voltage_Converters(补偿输入电容对电流电压转换器所用电压反馈和电流反馈型运算放大器的影响)
- MT060—Choosing_Between_Voltage_Feedback_(VFB)and_Current_Feedback(CFB)_Op_Amps(在电压反馈(VFB)和电流反馈(CFB运算放大器之间选择)
In-Amp Series
- MT061—Instrumentation_Amplifier_(In-Amp)_Basics
- MT062—Basic_Two_Op_Amp_In-Amp_Configuration
- MT063—Basic_Three_Op_Amp_In-Amp_Configuration
- MT064—In-Amp_DC_Error_Sources(仪表放大器直流误差源)
- MT065—In-Amp_Noise(仪表放大器噪声)
- MT066—In-Amp_Bridge_Circuit_Error_Budget_Analysis(仪表放大器桥接电路误差预算分析)
- MT067—Auto-Zero_In_Amps(自稳零仪表放大器)
- MT068—Difference_and_Current_Sense_Amplifiers(差动放大器和电流检测放大器)
- MT069—In-Amp_Input_Overvoltage_Protection(仪表放大器输入过压保护 )
- MT070—In-Amp_Input_RFI_Protection(仪表放大器输入RFI保护)
Other Stuff…
- MT071—Analog_Isolation_Amplifiers(模拟隔离放大器)
- MT072—Precision_Variable_Gain_Amplifiers(VGAs)(精密可变增益放大器(VGA))
- MT073—High_Speed_Variable_Gain_Amplifiers(VGAs)(高速可变增益放大器(VGA))
- MT074—Differential_Drivers_for_Precision_ADCs(精密ADC用差分驱动器)
- MT075—Differential_Drivers_for_High_Speed_ADCs_Overview
- MT076—Differential_Driver_Analysis(差分驱动器分析)
- MT077—Log_Amp_Basics(对数放大器基础知识)
- MT078—High_Frequency_Log_Amps(高频对数放大器)
- MT079—Analog_Multipliers(模拟乘法器)
- MT080—Mixers_and_Modulators(混频器和调制器)
- MT081—RMS-to-DC_Converters
- MT082—RF_RMS_Power_Detectors(TruPwrTM)
- MT083—Comparators(比较器)
- MT084—Using_Op_Amps_As_Comparators(将运算放大器用作比较器)
- MT085—Fundamentals_of_Direct_Digital_Synthesis(DDS)(直接数字频率合成(DDS)基本原理)
- MT086—Fundamentals_of_Phase_Locked_Loops(PLLs)(锁相环(PLL)基本原理)
- MT087—Voltage_References(基准电压源)
- MT088—Analog_Switches_and_Multiplexers_Basics(模拟开关和多路复用器基本知识)
- MT089—Video_Multiplexers_and_Crosspoint_Switches(视频多路复用器和交叉点开关)
- MT090—Sample-and-Hold_Amplifiers(采样保持放大器)
- MT091—Digital_Potentiometers(数字电位计)
- MT092—Electrostatic_Discharge(ESD)(静电放电(ESD))
- MT093—Thermal_Design_Basics(散热设计基础)
- MT094—Microstrip_and_Stripline_Design(微带线和带状线设计)
- MT095—EMI,_RFI,_and_Shielding_Concepts(EMI、RFI和屏蔽概念)
- MT096—RFI_Rectification_Concepts(RFI整流原理)
- MT097—Dealing_with_High-Speed_Logic
- MT098—Low_Voltage_Logic_Interfacing(低电压逻辑接口)
- MT099—Analog_Circuit_Simulation
- MT100—Breadboarding_and_Prototyping_Techniques
- MT101—Decoupling_Techniques(去耦技术)
- MT200—Minimizing_Jitter_in_ADC_Clock_Interfaces(降低ADC时钟接口抖动)
- MT201—Interfacing_FPGAs_to_an_ADC_Converter’s_Digital_Data_Output(FPGA与ADC数字数据输出的接口)
Filter Series
- MT202—Allpass_Filters(全通滤波器 )
- MT203—Bainter_Notch_Filters(Bainter陷波滤波器)
- MT204—The_Bessel_Response(贝塞尔响应)
- MT205—Biquadratic(Biquad)Filters
- MT206—The_Chebyshev_Response(切比雪夫响应 )
- MT207—Amplifier_Classes(放大器类型)
- MT208—Digitally_Programmed_State_Variable_Filter(数字编程状态变量滤波器)
- MT209—Dual_Amplifier_Band-Pass(DABP)Filter
- MT210—F0_and_Q_in_Filters(滤波器中的F0和Q)
- MT211—Full_Wave_Rectifier(全波整流器)
- MT212—Half_Wave_Rectifier(半波整流器)
- MT213—Inverting_Amplifier(反相放大器)
- MT214—Inverting_Summing_Amplifier(反相求和放大器)
- MT215—Low-Pass_to_Band-Pass_Filter_Transformation(从低通到带通滤波器的转换)
- MT216—Low-Pass_to_Band-Reject(Notch)Filter_Transformation(从低通到带阻(陷波)滤波器的转换)
- MT217—Low-Pass_to_High-Pass_Filter_Transformation(从低通到高通滤波器的转换)
- MT218—Multiple_Feedback_Band-Pass_Design_Example
- MT220—Multiple_Feedback_Filters(多反馈滤波器)
- MT222—Sallen-Key_Filters
- MT223—State_Variable_Filters(状态变量滤波器)
- MT224—The_Butterworth_Response(巴特沃兹响应)
- MT225—Twin_T_Notch_Filter(双T陷波滤波器)
- MT226—An_Engineering_Manager’s_First_Experience_with_Multisim(工程经理初次使用Multisim )
- MT227—Operating_a_Typical_High_Speed_ADC_Evaluation_Board_Setup(运行典型高速ADC评估板设置)
- MT228—High_Speed_ADC_Analog_Input_Interface_Considerations(高速ADC模拟输入接口考虑)
- MT229—Quantization_Noise_An_Expanded_Derivation_of_the_Equation,SNR=6.02_N+1.76_dB(量化噪声:公式SNR=6.02_N+_1.76_dB的扩展推导)
- MT230—Noise_Considerations_in_High_Speed_Converter_Signal_Chains