
2.
Select
the
type
of
polar
marker
you
want
from
the
following
choices:
Choose
NNNNNNNNNNNNNNNNNNNNNNN
LIN
MKR
if
you
want
to
view
the
magnitude
and
the
phase
of
the
active
marker
.
The
magnitude
values
appear
in
units
and
the
phase
values
appear
in
degrees
.
Choose
NNNNNNNNNNNNNNNNNNNNNNN
LOG
MKR
if
you
want
to
view
the
logarithmic
magnitude
and
the
phase
of
the
active
marker
.
The
magnitude
values
appear
in
dB
and
the
phase
values
appear
in
degrees
.
Choose
NNNNNNNNNNNNNNNNNNNNNNNNNNNNN
Re/Im
MKR
if
you
want
to
view
the
real
and
imaginary
pair
,
where
the
complex
data
is
separated
into
its
real
part
and
imaginary
part.
The
analyzer
shows
the
rst
marker
value
the
real
part
(M
cos
),
and
the
second
value
is
the
imaginary
part
(M
sin
,
where
M=magnitude).
Figure
2-11.
Example
of
a
Log
Marker
in
P
olar
F
ormat
T
o
Use
Smith
Chart
Markers
The
amount
of
power
reected
from
a
device
is
directly
related
to
the
impedance
of
the
device
and
the
measuring
system.
Each
value
of
the
reection
coecient
(0)
uniquely
denes
a
device
impedance;
0
=
0
only
occurs
when
the
device
and
analyzer
impedance
are
exactly
the
same
.
The
reection
coecient
for
a
short
circuit
is:
0
=
1
6
180
.
Every
other
value
for
0
also
corresponds
uniquely
to
a
complex
device
impedance
,
according
to
the
equation:
Z
L
=
[(
1
+
0)
/
(1
0
0)]2Z
0
where
Z
L
is
your
test
device
impedance
and
Z
0
is
the
measuring
system's
characteristic
impedance
.
Note
F
or
greater
accuracy
when
using
markers
in
the
Smith
chart
format,
it
is
recommended
to
activate
the
discrete
marker
mode
.
Press
4
MARKER
F
CTN
5
N
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
MKR
MODE
MENU
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
MARKERS:DISCRETE
.
1.
Press
4
F
ORMA
T
5
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
SMITH
CHART
.
2.
Press
4
MARKER
F
CTN
5
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
MARKER
MODE
MENU
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
SMITH
MKR
MENU
and
turn
the
front
panel
knob
or
enter
a
value
from
the
front
panel
keypad
to
read
the
resistive
and
reactive
components
of
the
complex
impedance
at
any
point
along
the
trace
.
This
is
the
default
Smith
chart
marker
.
Making
Measurements
2-15
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 ...
Страница 115: ...Figure 2 48 2nd Harmonic Power Level in dBc Making Measurements 2 67 ...
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 ...
Страница 156: ...Figure 3 23 Example Swept Power Conversion Compression Measurement j 3 32 Making Mixer Measurements ...
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