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Electronic Devices and Amplifier Circuits

Electronic Devices and Amplifier Circuits - Orchard Publications

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IndexSymbols BiCMOS inverter 6-40 critical (cutoff) frequency 5-9% (percent) symbol in MATLAB A-2Bistable multivibrator 7-21 crossover distortion 3-35bode(sys) MATLAB crystal oscillators 10-8Numericsfunction 1-12, 1-21 current amplifier 1-17bode(sys,w) MATLAB current mirror 4-20function 1-13, 1-21 current source absorption F-43 dB point 5-10 bodemag(sys,w) MATLAB cutoff frequency 1-5, 5-93dB point 5-9 function 1-13, 1-21 cutoff region 3-76, 4-9, 4-23555 Timer 7-2 bound electrons 2-2box MATLAB comm<strong>and</strong> A-11A buffer 6-17, 6-35Dbuffer amplifier 5-15DAC (Digital-to AnalogA/D conversion 5-55 Butterworth configuration 9-26 Converter) 5-51, 5-55abs(z) MATLAB function A-22DAC with binary-weightedaccuracy 5-61 C resistors 5-52active filter 5-8DAC with buffered outputactive mode 3-3 Cascaded Tuned <strong>Amplifier</strong>s 9-13 <strong>and</strong> gain 5-55active pull-up 6-18 cathode. 2-5 Darlington connection. 3-58active Region 3-76 cesium oscillators 10-8 data bus 6-38ADC (analog- to-digital Class A <strong>Amplifier</strong> Operation 3-30 data points in MATLAB A-13converter) 5-55 Class AB <strong>Amplifier</strong> Operation 3-35 data sheets 6-20Advanced Low-power Schottky Class B <strong>Amplifier</strong> Operation 3-33 dB 1-3Transistor 6-40 Class C <strong>Amplifier</strong> Operation 3-37 decade 1-7alternating waveform 1-2 Class D amplifier 3-37 decibel 1-3, A-12amount of feedback 10-2 Class E amplifier 3-37 deconv(p,q) MATLAB function A-7amplifier defined 1-3 clc MATLAB comm<strong>and</strong> A-2 default color A-14amplitude-modulated signal 9-1 clear MATLAB comm<strong>and</strong> A-2 default line in MATLAB A-14analog-to-digital converter 5-55 closed loop transfer function 5-29 default marker in MATLAB A-14analog computers 5-62 closed-loop 5-24 default value in MATLAB A-11AND gate 6-1 closed-loop gain 5-26 degenerative feedback 5-24, 10-2angle(z) MATLAB function A-22 CMOS 4-20 demo in MATLAB A-2anode 2-5 CMOS Logic Gates 6-32 depletion region 2-4Armstrong oscillator 10-6 CMOS transmission gate 6-37 depletion-mode 4-7astable multivibrator 7-1 CMRR 5-40 diac 4-24attenuation factor 7-12 collector output resistance 3-10 differential circuit 6-24attenuator 1-3, 5-9 Colpitts oscillator 10-7 differential gain 5-40autoscale icon in Simulink B-12 column vector in MATLAB A-17 differential input 5-1avalanche region 2-7 combinational logic circuit 7-1, 10-1 differential input amplifier 5-1average value 1-1 comm<strong>and</strong> screen in MATLAB A-1 differential input integrator 5-78averaging op amp 5-37 comm<strong>and</strong> window in MATLAB A-1 differential input op amp 5-38axis MATLAB comm<strong>and</strong> A-15 comment line in MATLAB A-2 differentiator 5-34Bcommon mode gain 5-40 digital-to-analog converter 5-51, 5-55common mode rejection ratio 5-40 diode detector 2-36, 9-2common-base current gain 3-4 Display blocks in Simulink B-18backward diode 2-45 common-collector current gain 3-5 display formats in MATLAB A-29b<strong>and</strong>-elimination filter 5-10 common-emitter gain 3-4 doping 2-3b<strong>and</strong>pass amplifiers 9-4 comparator 5-24, 5-48, 5-55 dot multiplication operatorb<strong>and</strong>-pass filter 5-10 compensated attenuator E-2 in MATLAB A-19b<strong>and</strong>pass filter 9-1 Complementary Metal Oxide drain 4-1b<strong>and</strong>-rejection filter 5-10 Semiconductor (CMOS) 6-2 driver gate 6-18b<strong>and</strong>-stop filter 5-10 Complementary MOS 4-20 dual-slope ADC 5-59b<strong>and</strong>width 1-5 complex conjugate A-4Barkhausen criterion 10-4 complex numbers A-2 Ebarrier 2-5 conduction angle 4-26base spreading resistance 3-44 conv(a,b) MATLAB function A-6 Early Voltage 3-10basic differentiator circuit 5-34 coupling capacitor 8-20 Ebers-Moll Transistor Model 3-79beta cutoff frequency 3-56 covalent bonding 2-1 ECL 6-24BiCMOS 2-input NAND gate 6-41 Cramer’s rule 5-98 ECL circuit 6-26IN-1

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