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Op Amps for Everyone

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Op Amps for Everyone, Fifth Edition, will help you design circuits that are reliable, have low power consumption, and can be implemented in as small a size as possible at the lowest possible cost. It bridges the gap between the theoretical and practical by giving pragmatic solutions using components that are available in the real world from distributors. The book does not just give a design with a transfer function; instead, it provides design tools based on transfer function, getting you to a working circuit so you can make the right decision on which op amp is best for the job at hand. With this book you will learn: single op amp designs that get the most out of every amplifier; which specifications are of most importance to your design, enabling you to narrow down the list of amplifiers to those few that are most suitable; strategies for making simple tweaks to the design—changes that are often apparent once a prototype has been constructed; how to design for hostile environments—extreme temperatures, high levels of shock, vibration, and radiation—by knowing which circuit parameters are likely to degrade and how to counteract that degradation.

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  • Vægt1000 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Offset Military Space Speed Feedback Life Noise Stability Termination Drive Temperature Résolution Total harmonic distortion Transfer function Gain Signal-to-noise ratio Compensation Bandwidth Accuracy Voltage Regulator Dynamic Range Downhole Voltage Reference Op-Amp Oscillator Tschebyscheff Atténuation Linear voltage regulator Geothermal Slope Intercept Bessel Butterworth Simultaneous Equations High Pass Filter Bode-plot Active load AC coupled ADC characteristics Adder Circuit ?1dB compression point All-pass filter Amplifier characteristics Bode Plots Band-pass filter Band Reject Filter DC parameters Conducted susceptibility Difference amplifiers Dominant pole Cartesian coordinates Buffer amplifiers Conducted emissions Current booster Dc Offset Differential interface Common-mode voltage input Frequency shift Current-feedback amplifier Feedback theory Gain/bandwidth High-speed filters Fully differential op amp Gain compensation Incorrect termination Dc Gain Differential circuit Improper termination Differential nonlinearity Ideal Op Amp Inverting gain circuit Improper application Lead compensation ENOB Integral nonlinearity Enable requirements Lead-lag compensation Filter Coefficients Gain error Low-pass filter Notch Filter Noninverting gain circuit Offset Error Gain compression Power supply characteristics Improper gain Peaking Open-loop response Phase Linearity Pass transistor Rail to rail Power booster Power supply rejection ratio Reference gain Intermodulation distortion Power requirements Input common-mode range Input signal characteristics Instrumentation amplifiers Settling time Referencing to ?VOUT sinad System characteristics THD+N Incorrect decoupling Spurious-free dynamic range Stage gain Uncompensated amplifiers Undercompensated amplifiers Voltage-feedback amplifier Noise Figure Wrong common-mode point Wide band-pass filter Overvoltage protection Wrong DC operating point Radiated emissions Parasitic inductor Phase Margin Output voltage swing Parasitic winding Switching voltage regulator Voltage booster Wide band reject filter Single-supply Radiated susceptibility Virtual ground
    Machine Name: SAXO082