HP 8719ET Reference Manual page 181

Network analyzers
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Hardkey/Softkey Reference
Analyzer Functions
SHORT (F)
SHORT (M)
SHORT
SHOW MENUS
SINGLE
SINGLE POINT
SINGLE SEG SWEEP
SLIDING
SLOPE
5-54
for cal kits with different models for male and female test
port standards, this selects the short model for a female
test port. Note that the sex of a calibration standard
always refers to the test port.
for cal kits with different models for male and female test
port standards, this selects the short model for a male test
port. Note that the sex of a calibration standard always
refers to the test port.
short calibration standard.
used to display a specific menu prior to a pause statement
in a sequence.
takes one sweep of data and returns to the hold mode.
sets the limits at a single stimulus point. If limit lines are
on, the upper limit value of a single point limit is
displayed as ∨ and the lower limit is displayed as ∧. A
limit test at a single point not terminating a flat or sloped
line tests the nearest actual measured data point. A single
point limit can be used as a termination for a flat line or
sloping line limit segment. When a single point terminates
a sloping line or when it terminates a flat line and has the
same limit values as the flat line, the single point is not
displayed as ∨ and ∧. The indication for a single point
segment in the displayed table of limits is SP.
enables a measurement of a single segment of the
frequency list, without loss of calibration. The segment to
be measured is selected using the entry block.
In single segment mode, selecting a measurement
calibration will force the full list sweep before prompting
for calibration standards. The calibration will then be
valid for any single segment.
If an instrument state is saved in memory with a
single-segment trace, a recall will re-display that segment
while also recalling the entire list.
defines the load as a sliding load. When such a load is
measured during calibration, the analyzer will prompt for
several load positions, and calculate the ideal load value
from it.
compensates for power loss versus the frequency sweep, by
sloping the output power upwards proportionally to
frequency. Use this softkey to enter the power slope in dB
per GHz of sweep.

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