![Agilent Technologies E5070B User Manual Download Page 709](http://html.mh-extra.com/html/agilent-technologies/e5070b/e5070b_user-manual_2868065709.webp)
Appendix D
703
Softkey Functions
Measurement Menu (Balance Measurement, SE-Bal)
D. Sof
tke
y
Fu
nctions
Measurement Menu (Balance Measurement, SE-Bal)
Key Operation
Function
SCPI Command
Displays softkeys for setting measurement parameters (
only for models with Option 313, 314, 413, or 414
). To
display these softkeys, the balanced/unbalanced conversion topology must be set to unbalanced-balanced
(
SE-Bal
), the balanced/unbalanced conversion function must be on (
BalUn ON
), and the fixture simulator function
must be on (
Fixture Simulator ON
) in the “Analysis Menu” on page 647.
Sss11
Selects parameter S
ss11
. S
ss11
defines the way an unbalanced
signal input to (unbalanced) port 1 on the DUT is reflected as an
unbalanced signal.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL SSS11
Sds21
Selects parameter S
ds21
. S
ds21
defines the way an unbalanced
signal input to (unbalanced) port 1 on the DUT is transmitted to
(balanced) port 2 on the DUT as a differential signal.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL
SDS21
Ssd12
Selects parameter S
sd12
. S
sd12
defines the way a differential
signal input to (balanced) port 2 on the DUT is transmitted to
(unbalanced) port 1 on the DUT as an unbalanced signal.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL
SSD12
Scs21
Selects parameter S
cs21
. S
cs21
defines the way an unbalanced
signal input to (unbalanced) port 1 on the DUT is transmitted to
(balanced) port 2 on the DUT as a common mode signal.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL
SCS21
Ssc12
Selects parameter S
sc12
. S
sc12
defines the way a common mode
signal input to (balanced) port 2 on the DUT is transmitted to
(unbalanced) port 1 on the DUT as an unbalanced signal.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL
SSC12
Sdd22
Selects parameter S
dd22
. S
dd22
defines the way a differential
signal input to (balanced) port 2 on the DUT is reflected as a
differential signal.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL
SDD22
Scd22
Selects parameter S
cd22
. S
cd22
defines the way a differential
signal input to (balanced) port 2 on the DUT is reflected as a
common mode signal.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL
SCD22
Sdc22
Selects parameter S
dc22
. S
dc22
defines the way a common mode
signal input to (balanced) port 2 on the DUT is reflected as a
differential signal.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL
SDC22
Scc22
Selects parameter S
cc22
. S
cc22
defines the way a common mode
signal input to (balanced) port 2 on the DUT is reflected as a
common mode signal.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL
SCC22
Imbalance
Selects parameter Imbalance.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL IMB
Sds21/Scs21
Selects parameter Sds21/Scs21.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL CMRR
Ssd12/Ssc12
Selects parameter Ssd12/Ssc12.
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SBAL
CMRR
2
Return
Returns to the “E5070B/E5071B Menu (Top Menu)” on page 646.
Summary of Contents for E5070B
Page 6: ......
Page 30: ...24 Contents ...
Page 34: ...28 Chapter1 Precautions Before contacting us ...
Page 286: ...280 Chapter6 Data Analysis Using the Equation Editor ...
Page 430: ...424 Chapter12 Optimizing Measurements Performing a Segment by Segment Sweep segment sweep ...
Page 538: ...532 Chapter15 Measurement Examples Executing Power Calibration ...
Page 634: ...628 AppendixB Troubleshooting Warning Message ...
Page 732: ...726 AppendixD Softkey Functions Trigger Menu ...
Page 740: ...734 AppendixE General Principles of Operation Data Processing ...
Page 760: ...754 AppendixF Replacing the 8753ES with the E5070B E5071B Comparing Functions ...