
Scale
Reference
Menu
The
4
SCALE
REF
5
key
provides
access
to
the
scale
reference
menu.
Softkeys
within
this
menu
can
be
used
to
dene
the
scale
in
which
measured
data
is
to
be
displayed,
as
well
as
simulate
phase
oset
and
electrical
delay
.
The
following
softkeys
are
located
within
the
scale
reference
menu.
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
AUTO
SCALE
NNNNNNNNNNNNNNNNNNNNNNNNNNNNN
SCALE/DIV
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
REFERENCE
POSITION
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
REFERENCE
VALUE
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
MARKER
!
REFERENCE
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
ELECTRICAL
DELAY
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
PHASE
OFFSET
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
COAXIAL
DELAY
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
WAVEGUIDE
DELAY
Electrical
Delay
The
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
ELECTRICAL
DELAY
softkey
adjusts
the
electrical
delay
to
balance
the
phase
of
the
test
device
.
This
softkey
must
be
used
in
conjunction
with
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
COAXIAL
DELAY
or
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
WAVEGUIDE
DELAY
(with
cut-o
frequency)
in
order
to
identify
which
type
of
transmission
line
the
delay
is
being
added
to
.
Electrical
delay
simulates
a
variable
length
lossless
transmission
line
,
which
can
be
added
to
or
removed
from
a
receiver
input
to
compensate
for
interconnecting
cables
,
etc
.
This
function
is
similar
to
the
mechanical
or
analog
\line
stretchers"
of
other
network
analyzers
.
Delay
is
annotated
in
units
of
time
with
secondary
labeling
in
distance
for
the
current
velocity
factor
.
With
this
feature
,
and
with
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
MARKER
!
DELAY
(see
\Using
Markers"),
an
equivalent
length
of
air-lled,
lossless
transmission
line
is
added
or
subtracted
according
to
the
following
formula:
Leng th
(meter s)
=
(F
r eq
(M
H
z
)
2
1: 20083)
Once
the
linear
portion
of
the
test
device's
phase
has
been
removed,
the
equivalent
length
of
the
lossless
,
transmission
line
can
be
read
out
in
the
active
marker
area.
If
the
average
relative
permittivity
("
r
)
of
the
test
device
is
known
over
the
frequency
span,
the
length
calculation
can
be
adjusted
to
indicate
the
actual
length
of
the
test
device
more
closely
.
This
can
be
done
by
entering
the
relative
velocity
factor
for
the
test
device
using
the
calibrate
more
menu.
The
relative
velocity
factor
for
a
given
dielectric
can
be
calculated
by:
V
el ocity
F
actor
=
1
p
"
r
assuming
a
relative
permeability
of
1.
6-38
Application
and
Operation
Concepts
Содержание HP 8753D
Страница 10: ...x ...
Страница 26: ...The CITI le Keyword Reference A 7 Index Contents 16 ...
Страница 34: ......
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 ...
Страница 162: ......
Страница 206: ......
Страница 266: ......
Страница 324: ...Figure 6 39 Open Circuit Termination This completes the calibration procedure 6 58 Application and Operation Concepts ...
Страница 334: ...Figure 6 47 Typical Responses of Calibration Standards after Calibration 6 68 Application and Operation Concepts ...
Страница 433: ...Transmission Measurement Uncertainties Speci cations and Measurement Uncertainties 7 3 ...
Страница 434: ...Re ection Measurement Uncertainties 7 4 Speci cations and Measurement Uncertainties ...
Страница 436: ...Transmission Measurement Uncertainties 7 6 Speci cations and Measurement Uncertainties ...
Страница 437: ...Re ection Measurement Uncertainties Speci cations and Measurement Uncertainties 7 7 ...
Страница 439: ...Transmission Measurement Uncertainties Speci cations and Measurement Uncertainties 7 9 ...
Страница 440: ...Re ection Measurement Uncertainties 7 10 Speci cations and Measurement Uncertainties ...
Страница 442: ...Transmission Measurement Uncertainties 7 12 Speci cations and Measurement Uncertainties ...
Страница 443: ...Re ection Measurement Uncertainties Speci cations and Measurement Uncertainties 7 13 ...
Страница 445: ...Transmission Measurement Uncertainties Speci cations and Measurement Uncertainties 7 15 ...
Страница 446: ...Re ection Measurement Uncertainties 7 16 Speci cations and Measurement Uncertainties ...
Страница 448: ...Transmission Measurement Uncertainties 7 18 Speci cations and Measurement Uncertainties ...
Страница 449: ...Re ection Measurement Uncertainties Speci cations and Measurement Uncertainties 7 19 ...
Страница 451: ...Transmission Measurement Uncertainties Speci cations and Measurement Uncertainties 7 21 ...
Страница 452: ...Re ection Measurement Uncertainties 7 22 Speci cations and Measurement Uncertainties ...
Страница 454: ...Transmission Measurement Uncertainties 7 24 Speci cations and Measurement Uncertainties ...
Страница 455: ...Re ection Measurement Uncertainties Speci cations and Measurement Uncertainties 7 25 ...
Страница 468: ......
Страница 470: ...d a c b 8 2 Menu Maps ...
Страница 471: ......
Страница 472: ......
Страница 473: ...d a c b Menu Maps 8 5 ...
Страница 474: ...d a c b d a c b 8 6 Menu Maps ...
Страница 475: ...d a c b Menu Maps 8 7 ...
Страница 476: ...d a c b 8 8 Menu Maps ...
Страница 477: ...d a c b Menu Maps 8 9 ...
Страница 478: ...d a c b 8 10 Menu Maps ...
Страница 479: ...d a c b Menu Maps 8 11 ...
Страница 480: ...d a c b d a c b 8 12 Menu Maps ...
Страница 481: ......
Страница 482: ......
Страница 483: ...8 14 Menu Maps ...
Страница 484: ...d a c b Menu Maps 8 15 ...
Страница 485: ......
Страница 575: ......
Страница 607: ......
Страница 631: ......
Страница 643: ......