Parallel connected network
Use the parallel
class to represent networks of linear RF
objects connected in parallel that are characterized by the components that make up the
network. The following figure shows a pair of networks in a parallel
configuration.
h = rfckt.parallel
returns a parallel connected
network object whose properties all have their default values.
h = rfckt.parallel('Ckts',value)
returns a cascaded
network with elements specified in the name-value pair property
Ckts
.
analyze | Analyze RFCKT object in frequency domain |
calculate | Calculate specified parameters for rfckt objects or rfdata objects |
circle | Draw circles on Smith Chart |
extract | Extract specified network parameters from rfckt object or data object |
listformat | List valid formats for specified circuit object parameter |
listparam | List valid parameters for specified circuit object |
loglog | Plot specified circuit object parameters using log-log scale |
plot | Plot specified circuit object parameters on X-Y plane |
plotyy | Plot specified parameters on X-Y plane with Y-axes on both left and right sides |
getop | Display operating conditions |
polar | Plot specified object parameters on polar coordinates |
semilogx | Plot specified circuit object parameters using log scale for x-axis |
semilogy | Plot specified circuit object parameters using log scale for y-axis |
smith | Plot specified circuit object parameters on Smith chart |
write | Write RF data from circuit or data object to file |
getz0 | Get characteristic impedance of transmission line object |
read | Read RF data from file to new or existing circuit or data object |
restore | Restore data to original frequencies |
getop | Display operating conditions |
groupdelay | Group delay of S-parameter object or RF filter object or RF Toolbox circuit object |
The analyze
method computes the S-parameters of the
AnalyzedResult
property using the data stored in the
Ckts
property as follows:
The analyze
method first calculates the admittance
matrix of the parallel connected network. It starts by converting each
component network's parameters to an admittance matrix. The following figure
shows a parallel connected network consisting of two 2-port networks, each
represented by its admittance matrix,
where
The analyze
method then calculates the admittance
matrix for the parallel network by calculating the sum of the individual
admittances. The following equation illustrates the calculations for two
2-port circuits.
Finally, analyze
converts the admittance matrix of the
parallel network to S-parameters at the frequencies specified in the
analyze
input argument
freq
.
[1] Ludwig, R. and P. Bretchko, RF Circuit Design: Theory and Applications, Prentice-Hall, 2000.
rfckt.amplifier
| rfckt.cascade
| rfckt.coaxial
| rfckt.cpw
| rfckt.datafile
| rfckt.delay
| rfckt.hybrid
| rfckt.hybridg
| rfckt.microstrip
| rfckt.mixer
| rfckt.parallelplate
| rfckt.passive
| rfckt.rlcgline
| rfckt.series
| rfckt.seriesrlc
| rfckt.shuntrlc
| rfckt.twowire
| rfckt.txline