
8.
Press
4
SCALE
REF
5
N
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
ELECTRICAL
DELAY
and
turn
the
front
panel
knob
to
increase
the
electrical
length
until
you
achieve
the
best
at
line
,
as
shown
in
Figure
2-30.
The
measurement
value
that
the
analyzer
displays
represents
the
electrical
length
of
your
device
relative
to
the
speed
of
light
in
free
space
.
The
physical
length
of
your
device
is
related
to
this
value
by
the
propagation
velocity
of
its
medium.
Note
V
elocity
factor
is
the
ratio
of
the
velocity
of
wave
propagation
in
a
coaxial
cable
to
the
velocity
of
wave
propagation
in
free
space
.
Most
cables
have
a
relative
velocity
of
about
0.66
the
speed
in
free
space
.
This
velocity
depends
on
the
relative
permittivity
of
the
cable
dielectric
(
r
)
as
V
el ocity F
actor
=
1
p
"
r
where
r
is
the
relative
permittivity
of
the
cable
dielectric
Y
ou
could
change
the
velocity
factor
to
compensate
for
propagation
velocity
by
pressing
4
CAL
5
NNNNNNNNNNNNNN
MORE
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
VELOCITY
FACTOR
(enter
the
value)
4
x1
5 .
This
will
help
the
analyzer
to
accurately
calculate
the
equivalent
distance
that
corresponds
to
the
entered
electrical
delay
.
Figure
2-30.
Example
Best
Flat
Line
with
A
dded
Electrical
Delay
9.
T
o
display
the
electrical
length,
press:
4
SCALE
REF
5
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
ELECTRICAL
DELAY
In
this
example
,
there
is
a
large
amount
of
electrical
delay
due
to
the
long
electrical
length
of
the
SA
W
lter
under
test.
Measuring
Phase
Distortion
This
portion
of
the
example
shows
you
how
to
measure
the
linearity
of
the
phase
shift
over
a
range
of
frequencies
.
The
analyzer
allows
you
to
measure
this
linearity
and
read
it
in
two
dierent
ways:
deviation
from
linear
phase
,
or
group
delay
.
Deviation
From
Linear
Phase
By
adding
electrical
length
to
\atten
out"
the
phase
response
,
you
have
removed
the
linear
phase
shift
through
your
device
.
The
deviation
from
linear
phase
shift
through
your
device
is
all
that
remains
.
2-32
Making
Measurements
Содержание HP 8753D
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Страница 26: ...The CITI le Keyword Reference A 7 Index Contents 16 ...
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Страница 96: ...Figure 2 43 Gain Compression Using Power Sweep 2 48 Making Measurements ...
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Страница 120: ...Figure 2 53 Gating E ects in a Frequency Domain Example Measurement 2 72 Making Measurements ...
Страница 139: ...Figure 3 12 Connections for a High Dynamic Range Swept IF Conversion Loss Measurement Making Mixer Measurements 3 15 ...
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