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Op Amps for Everyone - The Repeater Builder's Technical ...

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A<br />

AC loads, DAC, 14-2<br />

AC parameters, DAC, 14-14 to 14-18<br />

ACG, See Automatic gain control<br />

Active filter, design techniques, 16-1 to 16-61<br />

Actuator, analog interface to DAC, 18-16 to 18-21<br />

Actuator interface<br />

from DAC current sink circuit, 18-19<br />

from DAC current source circuit, 18-17<br />

ADC<br />

analog interface from transducer, 18-13 to 18-14<br />

characterization, 12-15<br />

external ref circuits, 13-15 to 13-18<br />

external voltage reference circuit, 13-17<br />

input voltage, 12-15<br />

selection, 13-6 to 13-10<br />

single-ended input drive circuit, 13-20<br />

ADC interface, from transducer circuit, 18-15, 18-16<br />

Adder, 3-5<br />

circuit, 3-5<br />

Adjustable low-pass filter, circuit, 16-17<br />

AIA circuit, 12-17<br />

All-pass filter<br />

design, 16-41 to 16-47<br />

first order, 16-44<br />

first-order circuit, 16-44<br />

high order, 16-45 to 16-47<br />

second order, 16-44 to 16-46<br />

second-order circuit, 16-44<br />

seventh-order circuit, 16-46<br />

Amplifier<br />

photodiode, 12-8<br />

phototransistor, 12-9<br />

transistor, 2-10 to 2-13<br />

photovoltaic cell, 12-9<br />

Analog input drive circuits, high-speed, 13-18 to<br />

13-22<br />

Analog interface circuit, 12-21<br />

Analog plane placement, 17-8<br />

Antenna, loop and slot PCB layout, 17-15<br />

Anti-aliasing filter, 13-11 to 13-13<br />

Automatic gain control, Wien bridge oscillator circuit,<br />

15-13<br />

Avalanche noise, 10-9 to 10-11<br />

B<br />

Band-pass filter<br />

Butterworth gain response graph, 16-36<br />

design, 16-27 to 16-37<br />

gain response graph, 16-29<br />

low-pass filter transition, 16-28, 16-37<br />

Sallen-Key circuit, 16-30<br />

second order, 16-29 to 16-39<br />

Band-rejection filter, comparison graph active/passive,<br />

16-41<br />

Band-rejection filter<br />

active twin-T filter, 16-37 to 16-40<br />

active Wien-Robinson filter, 16-39 to 16-42<br />

design, 16-36 to 16-42<br />

Bandwidth<br />

current feedback amp, 9-3 to 9-7<br />

current feedback amp graph, 8-10<br />

voltage feedback amp, 9-3 to 9-7<br />

Bessel high-pass filter, circuit, 16-27<br />

Bessel low-pass filter, 16-7 to 16-10<br />

Bias circuit, 12-13<br />

Binary bits, versus significant bits, 12-2<br />

Black, Harry, Bell Labs, 1-1<br />

Block diagram<br />

CDMA cellular base station, 13-5<br />

cellular base station receiver, 13-2<br />

dual IF receiver, 13-4<br />

feedback system, 6-2<br />

GSM cellular base station, 13-2<br />

loop gain, 6-4<br />

oscillator with positive feedback, 15-8<br />

Block diagram math, 5-1 to 5-6<br />

control system terms, 5-3<br />

definition, 5-2<br />

feedback circuit, 5-3<br />

multiloop feedback system, 5-4<br />

summary points, 5-3<br />

trans<strong>for</strong>ms, 5-5<br />

Blocks, block diagram math, 5-2<br />

Bode analysis, feedback, 5-7 to 5-13<br />

Bode plot<br />

compensated attenuator, 7-18<br />

current feedback amp, 8-7<br />

dominant-pole compensation circuit, 7-11<br />

feedback capacitance, 8-13<br />

lead compensation, 7-14<br />

lead-lag compensation, 7-19<br />

Bode, H. W, 1-2<br />

Index-1

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