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RF MODULE

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4 Click OK to generate the plot below.<br />

The port boundary condition generates two S-parameter variables, S11_rfw and<br />

S11dB_rf which is the S-parameters on a dB scale. To evaluate S11dB_rf, proceed as<br />

follows.<br />

1 Open the Point Evaluation dialog box from the Postprocessing menu.<br />

2 Select Point 1 from the Point selection list and S Parameter dB (S11) from the list of<br />

Predefined quantities.<br />

3 Click OK to display the value of S11dB_rf in log bar at the bottom of the graphical<br />

user interface. The value should be about −4 dB.<br />

PHYSICS SETTINGS<br />

Now it is time to set up and solve the transient heat transfer problem. Select General<br />

Heat Transfer (htgh) or Heat Transfer (ht) from the Multiphysics menu. What you select<br />

here depends if you have the Heat-Transfer Module or not. The multiphysics group<br />

Microwave heating uses the module version (htgh) if you have access to it. However,<br />

this model does not require that you have it.<br />

Subdomain Settings<br />

1 Open the Subdomain Settings dialog box.<br />

MICROWAVE OVEN | 165

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