Customer Training Material. Segmented Return Path. ANSYS Q3D Extractor. ANSYS, Inc. Proprietary 2011 ANSYS, Inc. All rights reserved. WS1.

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1 Workshop 1.3 Segmented Return Path Introduction to ANSYS Q3D Extractor WS1.3-1

2 Example Segmented Return Path Segmented Return Path This example is intended to show you how to create, simulate, and analyze a trace over a slot in the ground plane using the Ansoft Q3D Extractor Design Environment. 5cm 6mm 34cm 3.4 1cm 8 mm 4 cm 1 cm 3mm 6 cm LAYER 1 (SIGNAL 1) 1.3mm LAYER 2 (BOTTOM SIDE) Nominal Design: Board: Thickness= 1.3mm ε r = 4.5 Trace: Length= 8.2cm WS1.3-2

3 Getting Started Design Review Before we jump into setting up this device lets review the design. Trace Width = 3mm Trace Length= 8.2cm Dielectric Height= 1.3mm Trace Thickness = 0.3mm Ground Thickness = 0.3mm Launching Ansoft Q3Dv10 To access Ansoft Q3D, click the Microsoft Start button, select Programs, and select the Ansoft Q3D Extractor 10 program group. Click Q3D Extractor 10 Setting Tool Options Note: In order to follow the steps outlined in this example, verify that the following tool options are set : Select the menu item Tools > Options > Modeler Options. Modeler Options Window: Click the Operation tab Automatically cover closed polylines: Checked Click the Drawing tab Edit property of new primitives: Checked Click the OK button WS1.3-3

4 Creating the 3D Model Opening a New Project In Ansoft Q3D Extractor Desktop, click the On the Standard toolbar, or select the menu item File > New. From the Project menu, select Insert Q3D Extractor Design. Set Model Units Select the menu item Modeler > Units Select Units: cm Click the OK button Set Default Material Ui Using the 3DMdl Modeler Mt Materials il toolbar, choose Select In the Select Definition Window: Type FR4 in the Search By Name box When the FR4_epoxy material is highlighted click the OK button WS1.3-4

5 Creating the 3D Model Create Board Select the menu item Draw > Box Using the coordinate entry fields, enter the box position X: 0.0, Y: 0.0, Z: 0.0, Press the Enter key Using the coordinate entry fields, enter the opposite corner of the base rectangle: dx: 6.0, dy: 10.0, dz: 0.13, Press the Enter key Select the Attribute tab from the Properties window. For the Value of Name type: Board Click the OK button To fit the view: Select the menu item View > Fit All > Active View. Or press the CTRL+D key Set Default Material Using the 3D Modeler Materials toolbar, from the list choose copper Create Ground Select the menu item Draw > Box Using the coordinate entry fields, enter the box position X: , Y: , Z: , Press the Enter key Using the coordinate entry fields, enter the opposite corner of the base rectangle: dx: 6.0, dy: 10.0, dz: -0.03, Press the Enter key Select the Attribute tab from the Properties window. For the Value of Name type: Ground Click the OK button Select the menu item View > Fit All > Active View WS1.3-5

6 Creating the 3D Model Create Offset Coordinate System Select the menu item Modeler > Coordinate System > Create > Relative CS > Offset Using the coordinate entry fields, enter the origin X: 0.0, Y: 5.0, Z: 0.0, Press the Enter key Create Ground Cut Out Select the menu item Draw > Box Using the coordinate entry fields, enter the box position X: 0.0, 0 Y: 0.0, 0 Z: 0.0, 0 Press the Enter key Using the coordinate entry fields, enter the opposite corner of the base rectangle: dx: 4.0, dy: 0.6, dz: -0.03, Press the Enter key Press OK to close the Properties window Select Ground & Box1: Select the menu item Edit > Select > By Name Select the objects named: Ground, Box1 Click the OK button To complete the ground object: Select the menu item Modeler > Boolean > Subtract t Blank Parts: Ground Tool Parts: Box1 Clone tool objects before subtract: Unchecked Click the OK button WS1.3-6

7 Creating the 3D Model Set Working Coordinate System Select the menu item Modeler > Coordinate System > Set Working CS From the list, select the CS: Global Click the Select button Create Offset Coordinate System Select the menu item Modeler > Coordinate System > Create > Relative CS > Offset Using the coordinate entry fields, enter the origin X: 1.0, Y: 0.8, Z: 0.13 Press the Enter key Create Trace Select the menu item Draw > Box Using the coordinate entry fields, enter the box position X: 0.0, Y: 0.0, Z: 0.0, Press the Enter key Using the coordinate entry fields, enter the opposite corner of the base rectangle: dx: 0.3, dy: 8.2, dz: 0.03, Press the Enter key Select the Attribute tab from the Properties window For the Value of Name type: Trace Click the OK button Set Working Coordinate System Select the menu item Modeler > Coordinate System > Set Working CS From the list, select the CS: Global Click the Select button WS1.3-7

8 Creating the 3D Model Create Source and Sink in Ground plane Select the menu item Draw > Rectangle Using the coordinate entry fields, enter the box position X: 1.0, Y: 0.7, Z: 0.0, Press the Enter key Using the coordinate entry fields, enter the opposite corner of the base rectangle: dx: 0.3, dy: 0.13, dz: 0.0, Press the Enter key Select the Attribute tab from the Properties window. For the Value of Name type: Source Click the OK button To Duplicate source along line Select the menu item Edit > Select By Name Highlight and Select Source from the list Click OK Select the menu item Edit > Duplicate > Along Line Using the coordinate entry fields, enter the box position X: 1.0, Y: 0.7, Z: 0.0, Press the Enter key Using the coordinate entry fields, enter the opposite corner of the base rectangle: dx: 0 dy: 8.2, dz: 0.0, Press the Enter key In the Duplicate Along line window, entertotal Number: 2 Click OK Click OK again Select the menu item Edit > Select > By Name Highlight and Select Source_1 from the list Select the menu item Edit > Properties For the Value of Name type: Sink Click the OK button WS1.3-8

9 Creating the 3D Model Setting up the Conductors Select the menu item Q3D Extractor > Nets > Auto Identify Nets Source 2 Setting up the Boundaries and Source Select the menu item Edit > Select > By Name Highlight and Select Source from the list. Click OK Select the menu item Q3D Extractor > Nets > Assign Excitation > Source Name: Source1 and click OK Select the menu item Edit > Select > By Name Highlight and Select Sink from the list Select the menu item Q3D Extractor > Nets > Assign Excitation > Sink Name: Sink1 and click OK Select the menu item Edit > Select > Faces Graphically select the edge face on the trace object at the Source end Select the menu item Q3D Extractor > Nets > Assign Excitation > Source Name: Source2 Graphically select the edge face on the trace object at the Sink end Select the menu item Q3D Extractor > Nets > Assign Excitation > Sink Name: Sink2 Select the menu item View > Fit All > Active View. Source 1 Sink 2 Sink 1 WS1.3-9

10 Analysis Setup Creating an Analysis Setup Select the menu item Q3D Extractor > Analysis Setup > Add Solution Setup Click the General tab: Capacitance/Conductance: Checked DC Resistance/Inductance Unchecked AC Resistance/Inductance: Checked Solution Frequency: 100 MHz Click CG tab: Maximum Number of Passes: 15 Percent Error: 1 Percent Refinement Per Pass: 30 Click AC RL tab: Maximum Number of Passes: 20 Percent Error: 1 Percent Refinement Per Pass: 30 Click OK WS1.3-10

11 Analyze Save Project In an Ansoft Q3D Extractor window, select the menu item File > Save As. From the Save As window, type the Filename: q3d_seg_gplane Click the Save button Model Validation Select the menu item Q3D Extractor > Validation Check Click the Close button Note: To view any errors or warning messages, use the Message Manager. Analyze Select the menu item Q3D Extractor > Analyze All Solution Data Select the menu item Q3D Extractor > Results > Solution Data To view the Profile: Click the Profile Tab. To view the Convergence: Click the Convergence Tab Note: The default view is for convergence is Table. Select the Plot radio button to view a graphical representations of the convergence data. To view the Matrix Data: Click the Matrix Data Tab Click the Close button WS1.3-11

12 Results Solutions Select the menu item Q3D Extractor > Results > Solution Data Click on Matrix Tab To view the Capacitance Solutions choose CG from the pull down menu To view the AC Inductance and AC Resistance Solutions choose AC RL from the pull down menu. When finished viewing, click the Close button. WS1.3-12

13 Fields Display of Solution Results - Fields Select the menu item Edit > Select > Objects Select the menu item Edit > Select > By Name Select Ground, Trace Press OK Select the menu item Q3D Extractor > Fields > CG Fields > Abs _Q Solution Type: Setup1: Last Adaptive Field Type: CG Fields Plot Quantity: Abs_ Q In Volume: AllObjects Click the Done button To modify a Magnitude field plot: Select the menu item Q3D Extractor > Fields > Modify Plot Attributes Select: Abs_Q Click the OK button Using the Abs_Q Plot dialog, select Click the Scale tab Scale: Log Click the Apply button Click Close WS1.3-13

14 Fields Display of Solution Results - Fields Select the menu item Edit > Select > By Name Select Ground Press OK Select the menu item Q3D Extractor > Fields > AC R/L Fields > Surface Jac Solution Type: Setup1: Last Adaptive Field Type: AC R/L Field Plot Quantity: Surface J ac In Volume: AllObjects Click the Done button To modify a Magnitude field plot: Select the menu item Q3D Extractor > Fields > Modify Plot Attributes Select: JAC Click the OK button Using the JAC Plot dialog, select Click on Marker/Arrow Tab Uncheck: Map Size Arrow Options: Type: Cylinder Size : second notch from the left Click the Apply button Click Close WS1.3-14

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