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RF MODULE

RF MODULE

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5 Select Coarse solver from the tree view. Choose PARDISO from the Coarse solver list.<br />

All other settings can be left at their default values. For details on the default<br />

settings, see “Solving Large 3D Problems” in the <strong>RF</strong> Module User’s Guide.<br />

6 Click OK to close the Linear System Solver Settings dialog box.<br />

7 Click OK.<br />

8 Click the Solve button on the Main toolbar.<br />

The solving process takes some time, because this is a large problem, and the analysis<br />

includes a parameter sweep of eleven steps.<br />

POSTPROCESSING AND VISUALIZATION<br />

1 Select Plot Parameters from the Postprocessing menu.<br />

2 Make sure that the Boundary, Slice, and Geometry edges check boxes are selected on<br />

the General tab.<br />

3 Choose the solution 6.3e9 from the Parameter value list.<br />

4 Click the Slice tab, and enter normE_air in the Expression edit field.<br />

5 Click the Range button, clear the Auto check box, and type 500 in the Max edit field<br />

and 0 in the Min edit field. Click OK.<br />

6 Click the Boundary tab, and enter boundary_plot in the Expression edit field. From<br />

the Color table list, select Thermal.<br />

BALANCED PATCH ANTENNA FOR 6 GHZ | 201

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