control systems
closed loop response 5-18
delay time 5-11
gain margin 5-16
measuring a step response 5-8
measuring Y/S 5-18
Nyquist diagram 5-17
open loop response 5-14
overshoot 5-11
performance parameters 5-11
phase margin 5-16
profiled chirp source signal 6-9
ramp source signal 6-6
rise time 5-11
settling time 5-11
step response 5-9
step source signal 6-4
T/(1-T) 5-20
transfer function 5-20
coordinate system 11-2
copying files 13-15
coupling, input 4-2
current directory 13-5
curve fit
bias errors 16-14
changing data register 16-43
copying to a synthesis table 15-34, 16-38
curve fit region 16-17
delay 16-24
errors 16-11
fixed poles and zeros 16-24
frequency scale 16-27
importance of coherence 16-22
noise and errors 16-15
obtaining good results 16-11
operating modes 16-5
overview of procedures 16-27
performing 16-33
recalling a table 16-42
saving a table 16-40
set up 16-30, 16-34
stimuli 16-11
storing a trace 16-41
synthesized results 16-39
systems with nonlinearities or
distortion 16-11
weighting function 16-23
D
data
recalling from disk 13-12
saving to disk 13-9
data registers
displaying 8-6
editing 18-2
for curve fit tables 16-43
for synthesis tables 15-35
modify a waveform 6-8, 18-14
modify weighting function 16-32
dBm units 11-8
dc coupling 4-2
default directory 13-5
default disk 13-3
delay
group 4-14
trigger Part I-14
delay time 5-11
deleting
directories 13-14
files 13-13
demodulation, using
Hilbert transform 18-10 - 18-11
directory
creating new 13-6
deleting 13-14
selecting current 13-5
disk
formatting 13-4
selecting default 13-3
setting up external 13-2
displacement units 11-7
display
plotting contents 14-5
printing contents 14-6
display format Part I-17, 9-2
distortion
harmonic 4-7
phase 4-14
driving point measurement
imaginary part 2-13
preview 2-14
real part 2-13
set-up 2-10
unwrapped phase 2-12
ii