rfckt.parallelplate
Parallel-plate transmission line
Description
Use the rfckt.parallelplate object to create a
            parallel-plate transmission line that is characterized by line dimensions and optional
            stub properties.
A parallel-plate transmission line is shown in cross-section in the following figure. Its physical characteristics include the plate width w and the plate separation d.

Note
txlineParallelPlate is recommended over
                        rfckt.parallelplate because it enables you to:
- Create a parallel-plate transmission line. 
- Build a - circuitobject with a parallel-plate transmission line.
- Model a parallel-plate transmission line element in an RF chain created using an - rfbudgetobject or the RF Budget Analyzer app, and then export this element to RF Blockset™ or to- rfsystemSystem object™ for circuit envelope analysis.
(since R2023b)
Creation
Description
h = rfckt.parallelplate returns a parallel-plate
                        transmission line object whose properties are set to their default
                        values.
h = rfckt.parallelplate(Name,Value) sets properties
                        using one or more name-value pairs. For example,
                            rfckt.parallelplate('LineLength',0.045) creates a
                        parallel-plate transmission line object with a physical length of 0.045
                        meters. You can specify multiple name-value pairs. Enclose each property
                        name in a quote. Properties not specified retain their default
                        values.
Properties
Object Functions
| 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 circuit object parameters on X-Y plane | 
| plotyy | Plot parameters of RF circuit or RF data on xy-plane with two Y-axes | 
| getop | Display operating conditions | 
| polar | Plot specified object parameters on polar coordinates | 
| semilogx | Plot RF circuit object parameters using log scale for x-axis | 
| semilogy | Plot RF circuit object parameters using log scale for y-axis | 
| smith | Plot circuit object parameters on Smith Chart | 
| write | Write RF data from circuit or data object to file | 
| getz0 | Calculate characteristic impedance of RFCKT 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 | 
Examples
Algorithms
The analyze method treats the parallel-plate line as a 2-port
            linear network and models the line as a transmission line with optional stubs. The
                analyze method computes the AnalyzedResult
            property of the line using the data stored in the rfckt.parallelplate
            object properties as follows:
- If you model the transmission line as a stub less line, the - analyzemethod first calculates the ABCD-parameters at each frequency contained in the modeling frequencies vector. It then uses the- abcd2sfunction to convert the ABCD-parameters to S-parameters.- The - analyzemethod calculates the ABCD-parameters using the physical length of the transmission line, d, and the complex propagation constant, k, using the following equations:- Z0 and k are vectors whose elements correspond to the elements of f, the vector of frequencies specified in the - analyzeinput argument- freq. Both can be expressed in terms of the resistance (R), inductance (L), conductance (G), and capacitance (C) per unit length (meters) as follows:- where - In these equations: - w is the plate width. 
- d is the plate separation. 
- σcond is the conductivity in the conductor. 
- μ is the permeability of the dielectric. 
- ε is the permittivity of the dielectric. 
- ε″ is the imaginary part of ε, ε″ = ε0εrtan δ, where: - ε0 is the permittivity of free space. 
- εr is the - EpsilonRproperty value.
- tan δ is the - LossTangentproperty value.
 
- δcond is the skin depth of the conductor, which the block calculates as . 
- f is a vector of modeling frequencies determined by the Outport (RF Blockset) block. 
 
- If you model the transmission line as a shunt or series stub, the - analyzemethod first calculates the ABCD-parameters at the specified frequencies. It then uses the- abcd2sfunction to convert the ABCD-parameters to S-parameters.- When you set the - StubModeproperty to- 'Shunt', the 2-port network consists of a stub transmission line that you can terminate with either a short circuit or an open circuit as shown in the following figure. - Zin is the input impedance of the shunt circuit. The ABCD-parameters for the shunt stub are calculated as: - When you set the - StubModeproperty to- 'Series', the 2-port network consists of a series transmission line that you can terminate with either a short circuit or an open circuit as shown in the following figure. - Zin is the input impedance of the series circuit. The ABCD-parameters for the series stub are calculated as: 
References
[1] Pozar, David M. Microwave Engineering, John Wiley & Sons, Inc., 2005.
Version History
Introduced in R2009a
See Also
rfckt.amplifier | rfckt.cascade | rfckt.coaxial | rfckt.cpw | rfckt.datafile | rfckt.delay | rfckt.hybrid | rfckt.hybridg | rfckt.mixer | rfckt.microstrip | rfckt.passive | rfckt.parallel | rfckt.rlcgline | rfckt.series | rfckt.seriesrlc | rfckt.shuntrlc | rfckt.twowire | rfckt.txline