spiralInductor
R2026bCreate spiral inductor in four different shapes
Description
Use the spiralInductor object to create a spiral inductor in one
of four different shapes: square, circle, hexagon, or octagon. The spiral inductor is a
two-port planar inductor with a single or multiple dielectric layers. A turn in a spiral
inductor is the length of a complete 360-degree revolution. Spiral inductor filaments have
uniform spacing and width throughout the structure. Spiral inductors are an integral part of
many radio-frequency and microwave circuits, acting as resonant elements or chokes. The
inductor feed can be configured in one of the following two ways:
Note
This PCB object supports behavioral modeling. For more information, see Behavioral Models. To analyze the behavioral
model for a spiral inductor, set the Behavioral property in the
sparameters
function to true or 1.
The input and output ports are punched through at the same layer.
The input port is routed out from the layer below the inductor by a via hole. The output port is extended to the end of the dielectric in the same layer.

Creation
Description
inductor = spiralInductor creates a square spiral planar
inductor with default properties for a resonant frequency of 600 MHz.
inductor = spiralInductor(
sets Properties using one or more
name-value arguments. For example,
PropertyName=Value)spiralInductor(SpiralShape="Octagon") creates an octagonal spiral
inductor. Properties not specified retain their default values.
Properties
Object Functions
charge | Calculate and plot charge distribution |
current | Calculate and plot current distribution |
feedCurrent | Calculate current at feed port |
getZ0 | Calculate characteristic impedance of transmission line |
inductance | Calculate inductance |
layout | Plot all metal layers and board shape |
mesh | Change and view mesh properties of metal or dielectric in PCB component |
shapes | Extract all metal layer shapes of PCB component |
show | Display PCB component structure or PCB shape |
sparameters | Calculate S-parameters for RF PCB objects |
Examples
More About
References
[1] Beeresha, R.S., A.M. Khan, and H.V. Manjunatha Reddy. “The Design and EM-Simulation of Square Spiral Inductor Using Simple Equations.” Materials Today: Proceedings 5, no. 4 (2018): 10875–82. https://doi.org/10.1016/j.matpr.2018.05.074.
[2] Mohan, S.S., M. del Mar Hershenson, S.P. Boyd, and T.H. Lee. “Simple Accurate Expressions for Planar Spiral Inductances.” IEEE Journal of Solid-State Circuits 34, no. 10 (October 1999): 1419–24. https://doi.org/10.1109/4.792620.
Version History
Introduced in R2021b




