Notes
Slide Show
Outline
1
Chapter 31
  • Applications of Op-Amps
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Comparators
  • Op-amp as a Comparator
    • No negative feedback
    • Output saturates with very small + or – input
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Comparators
  • Comparator
    • Non-linear device
    • vout has two discrete values, ±VSAT
    • vout = +VSAT if + input is greater than – input
    • vout = –VSAT if – input is greater than + input
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Comparators
  • A comparator circuit: Sine wave in, square wave out
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Comparators
  • Input sine wave
  • Output square wave Vout = ±VSAT
  • +VSAT (determined by VCC) when sinusoid is +
  • –VSAT (determined by VEE) when sinusoid is –
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Comparators
  • Compare input waveform to reference
  • Reference can be ground or dc source
  • Can compare two waveforms
  • Specialized comparator IC’s also available
  • Detects when waveform reaches given level
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Comparators
  • Zero-Crossing Detector
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Voltage Summing Amplifier
  • Circuit
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Voltage Summing Amplifier
  • Inverse sum



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Voltage Summing Amplifier
  • Multiplies each input by
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Integrators and Differentiators
  • In general



  • Using resistors and capacitors
    • Integrators
    • Differentiators
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Integrators and Differentiators
  • Voltage across capacitor



  • Current through capacitor
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Integrators and Differentiators
  • Op-amp Integrator
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Integrators and Differentiators
  • Op-amp differentiator




  • Circuit inherently unstable
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Integrators and Differentiators
  • Stable op-amp differentiator
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Instrumentation Amplifiers
  • Op-amp in differential amplifier configuration
  • Noise suppression
  • High CMRR
  • Reasonable gain
  • IC instrumentation amps
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Instrumentation Amplifiers
  • An op-amp instrumentation amp circuit
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Instrumentation Amplifiers
  • Measurement of very small voltages
  • Transducer
    • Converts a physical change into an electrical change
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Instrumentation Amplifiers
  • Strain gage
    • Converts force into ∆R
    • ∆R is milliohms
    • Use bridge circuit
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Instrumentation Amplifiers
  • Strain gage example
    • Thin metal foil (resistor) on plastic backing
    • Glued to metal bar
    • Bar subjected to tension and compression
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Instrumentation Amplifiers
  • Strain gage example
    • Tension
      • Resistance of strain gage is R + ∆R
    • Compression
      • Resistance of strain gage is R – ∆R
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Active Filters
  • Basic filter types
    • Passive elements, gain < 1
    • Low-pass
    • High-pass
    • Bandpass
    • Band reject
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Active Filters
  • With op-amps/active filters
    • Gain can be ≥ 1
    • Filter response closer to ideal
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Active Filters
  • Low-pass (RF = R1)









  • Add resistor for gain > 1
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Active Filters
  • High-pass (RF = R1)






  • Add resistor for gain > 1
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Active Filters
  • dc gain
    • Easily achieved
    • Not used much due to gain-bandwidth product
  • Example
    • GBWP = 106, Gain = 10
    • Cutoff for filter (HP or LP) only 105
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Active Filters
  • Bandpass
  • Wideband
    • Cascade HP and LP active filters
    • LP must have higher cutoff frequency
    • HP and LP cutoff frequencies far apart
  • Narrowband
    • Can use single op-amp
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Active Filters
  • Narrowband BP circuit
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Active Filters
  • Active notch filter
    • Cascade narrowband BP filter
    • Adder circuit
    • Result is 1 – (frequency response of BP filter)
    • Frequency at resonant frequency of BP filter will be eliminated
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Voltage Regulation
  • Voltage regulator
    • Constant voltage to load
    • Specified current range
    • Specified input voltage range
    • Zener diode regulator
      • Inefficient
      • Dissipates power
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Voltage Regulation
  • Types of regulators
    • Fixed voltage regulator
    • Variable voltage regulator
    • Switching regulator
  • Specialized IC regulators
    • For different voltages, e.g. +5 V, –5 V, +12 V, –12 V, +15 V, –15 V, etc.
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Voltage Regulation
  • Line Regulation
    • Small output change with change in input
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Voltage Regulation
  • Load regulation
    • Small output voltage change with smaller RL





    • VNL = no-load voltage (open-circuit load)
    • VFL = full-load voltage (specified by manufacturer)
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Voltage Regulation
  • Circuit to increase efficiency of Zener regulator with an op-amp
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Voltage Regulation
  • Three-terminal IC regulators
    • 7800 series, positive voltage
    • 7900 series, negative voltage
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Voltage Regulation
  • 5 V output, 7805
  • 12 V output, 7812
  • –5 V output, 7905
  • –12 V output, 7912
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Voltage Regulation
  • Ripple
  • Greatly reduced by IC regulator



  • Vr(in) = input ripple voltage
  • Vr(out) = output ripple voltage