Measurement Menu (Balanced Measurement, Se-Se-Bal) - Agilent Technologies ENA Series User Manual

Rf network analyzers
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Softkey Functions

Measurement Menu (Balanced Measurement, SE-SE-Bal)

Measurement Menu (Balanced Measurement, SE-SE-Bal)
Key Operation
Displays softkeys for setting measurement parameters (only for models with Option 413 or 414). To display
these softkeys, the balanced/unbalanced conversion topology must be set to unbalanced-unbalanced-balanced
SE-SE-Bal
function must be on (
Selects parameter S
Sss11
input to (unbalanced) port 1 on the DUT is reflected as an
unbalanced signal.
Selects parameter S
Sss21
input to (unbalanced) port 1 on the DUT is transmitted to
(unbalanced) port 2 on the DUT as an unbalanced signal.
Selects parameter S
Sss12
input to (unbalanced) port 2 on the DUT is transmitted to
(unbalanced) port 1 on the DUT as an unbalanced signal.
Selects parameter S
Sss22
input to (unbalanced) port 2 on the DUT is reflected as an
unbalanced signal.
Selects parameter S
Sds31
signal input to (unbalanced) port 1 on the DUT is transmitted to
(balanced) port 3 on the DUT as a differential signal.
Selects parameter S
Sds32
signal input to (unbalanced) port 2 on the DUT is transmitted to
(balanced) port 3 on the DUT as a differential signal.
Selects parameter S
Ssd13
input to (balanced) port 3 on the DUT is transmitted to
(unbalanced) port 1 on the DUT as an unbalanced signal.
Selects parameter S
Ssd23
input to (balanced) port 3 on the DUT is transmitted to
(unbalanced) port 2 on the DUT as an unbalanced signal.
Selects parameter S
Scs31
signal input to (unbalanced) port 1 on the DUT is transmitted to
(balanced) port 3 on the DUT as a common mode signal.
Selects parameter S
Scs32
signal input to (unbalanced) port 2 on the DUT is transmitted to
(balanced) port 3 on the DUT as a common mode signal.
Selects parameter S
Ssc13
signal input to (balanced) port 3 on the DUT is transmitted to
(unbalanced) port 1 on the DUT as an unbalanced signal.
Selects parameter S
Ssc23
signal input to (balanced) port 3 on the DUT is transmitted to
(unbalanced) port 2 on the DUT as an unbalanced signal.
Selects parameter S
Sdd33
input to (balanced) port 3 on the DUT is reflected as a differential
signal.
Selects parameter S
Scd33
input to (balanced) port 3 on the DUT is reflected as a common
mode signal.
Selects parameter S
Sdc33
signal input to (balanced) port 3 on the DUT is reflected as a
differential signal.
706
Function
), the balanced/unbalanced conversion function must be on (
) in the "Analysis Menu" on page 647.
Fixture Simulator ON
. S
defines the way an unbalanced signal
ss11
ss11
. S
defines the way an unbalanced signal
ss21
ss21
. S
defines the way an unbalanced signal
ss12
ss12
. S
defines the way an unbalanced signal
ss22
ss22
. S
defines the way an unbalanced
ds31
ds31
. S
defines the way an unbalanced
ds32
ds32
. S
defines the way a differential signal
sd13
sd13
. S
defines the way a differential signal
sd23
sd23
. S
defines the way an unbalanced
cs31
cs31
. S
defines the way an unbalanced
cs32
cs32
. S
defines the way a common mode
sc13
sc13
. S
defines the way a common mode
sc23
sc23
. S
defines the way a differential signal
dd33
dd33
. S
defines the way a differential signal
cd33
cd33
. S
defines the way a common mode
dc33
dc33
SCPI Command
), and the fixture simulator
BalUn ON
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SSS11
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SSS21
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SSS12
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SSS22
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SDS31
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SDS32
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SSD13
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SSD23
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SCS31
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SCS32
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SSC13
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SSC23
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SDD33
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SCD33
:CALC{1-16}:FSIM:BAL:PAR{1-16}:SSB
SDC33
Appendix D

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