// // file: /home2/designs/boards/Hub_0/Work/Geometries/Design_Hub_0_PCB/hub_0_pcb_basic_structure.txt // // date: Original Rev. 17-Apr-2014 // Current Rev. 4-Apr-2016 // // // // Notes: // // The ATCA specification does not dimension things wrt // the lower left-hand corner of the card. Rather the // ATCA dimensions are wrt the center of a required hole // that is located in the lower left-hand corner of the // card. The center of this hole is at X = 3.57 Y = 5.55 // wrt the lower left-hand corner of the card. // // All dimensions in the Mentor design of the Hub-Module // will be wrt the lower left-hand corner of the card. // // 7-Feb-2015 Add the "bump out" at the rear of the // card in zone 3. This is to make the Hub-Module PCB // match the Rutherford Appleton drawing: // // 1-TE-0183-012-00-B from March-2015. // // Note that this does not exactly match the Zone 3 // bump out shown on page 2-10 of the ATCA specification // PICMG 3.0 Rev 3.0 // // 11-Jan-2016 Break up the Hub pcb geometry file into // separate source files for each logical pcb geom topic, // move these into their own sub-directory. // // 11-JAN-16 Add the cut-out for the ATCA Condo // RJ-45 connectors. // // $$lock_windows(@on); $$create_board("hub_0_pcb"); $$page(0.0, 0.0, 0.75, @mm, 0.0, 0.0, [0.0,0.0,'BO$hub_0_pcb'] ); $$point_mode(@vertex); $$attribute( "MILLING_ORIGIN", "MILLING 0 0.0 0 ", , @scale , , [0.0, 0.0]); $$attribute( "DRILL_ORIGIN", "0.0", , @scale , , [0.0, 0.0]); $$template_line_style( @Solid ); // // For the outlines given in the "Initial - Terminal" // format we will begin at 0,0 and proceed CCW. // // // Board Outline // $$initial([ 0.00, 0.00 ], , @nosnap ); $$terminal([ 280.00, 0.00 ]); $$terminal([ 280.00, 210.65 ]); $$terminal([ 315.00, 210.65 ]); $$terminal([ 315.00, 317.25 ]); $$terminal([ 280.00, 317.25 ]); $$terminal([ 280.00, 322.25 ]); $$terminal([ 0.00, 322.25 ]); $$terminal([ 0.00, 132.50 ]); $$terminal([ 7.00, 132.50 ]); $$terminal([ 7.00, 71.50 ]); $$terminal([ 0.00, 71.50 ]); $$terminal([ 0.00, 0.00 ]); $$path( "BOARD_OUTLINE", 0.20 ); // // Board Routing Outline // $$initial([ 0.00, 0.00 ], , @nosnap ); $$terminal([ 280.00, 0.00 ]); $$terminal([ 280.00, 210.65 ]); $$terminal([ 315.00, 210.65 ]); $$terminal([ 315.00, 317.25 ]); $$terminal([ 280.00, 317.25 ]); $$terminal([ 280.00, 322.25 ]); $$terminal([ 0.00, 322.25 ]); $$terminal([ 0.00, 132.50 ]); $$terminal([ 7.00, 132.50 ]); $$terminal([ 7.00, 71.50 ]); $$terminal([ 0.00, 71.50 ]); $$terminal([ 0.00, 0.00 ]); $$attribute( "BOARD_ROUTING_OUTLINE", "", @mark, @scale ); // // Board Placement Ooutline // $$initial([ 0.00, 0.00 ], , @nosnap ); $$terminal([ 280.00, 0.00 ]); $$terminal([ 280.00, 210.65 ]); $$terminal([ 315.00, 210.65 ]); $$terminal([ 315.00, 317.25 ]); $$terminal([ 280.00, 317.25 ]); $$terminal([ 280.00, 322.25 ]); $$terminal([ 0.00, 322.25 ]); $$terminal([ 0.00, 132.50 ]); $$terminal([ 7.00, 132.50 ]); $$terminal([ 7.00, 71.50 ]); $$terminal([ 0.00, 71.50 ]); $$terminal([ 0.00, 0.00 ]); $$attribute( "BOARD_PLACEMENT_OUTLINE", "", @mark, @scale ); $$attribute( "BOARD_DEFINITION_IDENTIFIER", ""); $$attribute( "BOARD_ROUTING_LAYERS", "", , , , [12, 0]); $$attribute( "POWER_NET_NAMES", "GROUND"); $$attribute( "DIAGONAL_ROUTING_ALLOWED", "yes"); $$attribute( "TJUNCTIONS_ALLOWED", "yes"); $$attribute( "BOARD_DEFAULT_PADSTACK", "TERM_60"); $$attribute( "BOARD_DEFAULT_VIA", "via_0mm65"); $$attribute( "DEFAULT_PAD_SIZE", "", , @scale , , [ 1.50, 0.0 ]); $$attribute( "BOARD_PLACEMENT_GRID", "", , @scale , , [ 0.10, 0.0 ]); $$attribute( "BOARD_PLACEMENT_CLEARANCE", "", , @scale , , [ 0.10, 0.0 ]); $$attribute( "BOARD_MATERIAL", ""); $$attribute( "BOARD_THICKNESS", "", , @scale , , [ 0.0, 0.0 ]); $$attribute( "BOARD_INTERNAL_COPPER", "", , @scale , , [ 0.0, 0.0 ]); $$attribute( "BOARD_EXTERNAL_COPPER", "", , @scale , , [ 0.0, 0.0 ]); // // file: hub_0_pcb_silkscreen.txt // // date: Original Rev. 17-Apr-2014 // Current Rev. 12-Jan-2017 // // // // Notes: // // This file holds the manually added Silkscreen text // for the Hub circuit board. // // The hub pcb design was broken up into various source // files on 11-Jan-2016. // // $$text( "SILKSCREEN_1", "Hub Module", 273.0, 310.0, 4.00, @BC, 0, 0.90, 0.20, "std", "None", 0.0, 0.0 ); $$text( "SILKSCREEN_1", "ATLAS L1Calo", 273.0, 282.3, 3.00, @BC, 0, 0.90, 0.20, "std", "None", 0.0, 0.0 ); $$text( "SILKSCREEN_1", "MSU Physics", 273.0, 276.3, 3.00, @BC, 0, 0.90, 0.20, "std", "None", 0.0, 0.0 ); $$text( "SILKSCREEN_1", "January-2017", 273.0, 270.3, 3.00, @BC, 0, 0.90, 0.20, "std", "None", 0.0, 0.0 ); $$text( "SILKSCREEN_1", "MGT Fanout 2x74", 228.0, 186.0, 2.50, @BC, 0, 0.90, 0.20, "std", "None", 0.0, 0.0 ); // // Label the Layers // $$text( "DRAWING_1", "MSU Physics January 2017", 50.0, -13.0, 3.0, @BC, 0, 0.90, 0.20, "std", "None", 0.0, 0.0 ); // $$text( "SIGNAL_1", "Trace Layer TOP Positive Data", 50.0, -7.5, 3.0, @BC, 0, 0.90, 0.20, "std", "None", 0.0, 0.0 ); // $$text( "POWER_1", "GROUND Plane BOTTOM Negative Data", 50.0, -7.5, 3.0, @BC, 0, 0.90, 0.20, "std", "None", 0.0, 0.0 ); //$$text( "SILKSCREEN_1", "Silkscreen on TOP", 50.0, -7.5, 3.0, @BC, 0, 0.90, 0.20, "std", "None", 0.0, 0.0 ); $$text( "SOLDER_MASK_1", "Solder Mask TOP", 50.0, -7.5, 3.0, @BC, 0, 0.90, 0.20, "std", "None", 0.0, 0.0 ); $$text( "SOLDER_MASK_2", "Solder Mask BOTTOM", 50.0, -7.5, 3.0, @BC, 0, 0.90, 0.20, "std", "None", 0.0, 0.0 ); // // End of the Layer Labels // // // Some general Silk to help understand the Hub pcb: // // // Add a 2nd Circle in Side 1 Silkscreen // to show the coil of slack Fiber Optic // Ribbon cable from the ROD to the MP0 // mid-board optical connector. The // center of this one turn coil is thought // to be at X = 266.7 mm Y = 257.0 mm. // The diameter of the coil is about 63.0 mm. // //$$circle( "SILKSCREEN_1", 266.7, 257.0, 63.0, 0.20 ); // //$$circle( "SILKSCREEN_1", 266.7, 257.0, 62.5, 0.20 ); // // file: hub_0_pcb_drill_holes.txt // // date: Original Rev. 17-Apr-2014 // Current Rev. 17-Jan-2017 // // // // // Notes: // // This source file in the overall Hub pcb design holds the // various drill holes that need to be added to the design. // Most of these are "mechanical" holes for things like the // front panel that do not include the required holes in // their own geometry. Both plated and not-plated mechanical // holes may appear in the overall Hub pcb design. // // 6-Dec-2016 add the mechanical holes to mount the front // panel support brackets. These are two holes near the top // (above the LEDs) and two holes near the bottom (under J2). // // // // // Notes about the ATCA Mechanical Drill Holes: // ------------------------------------------------ // // All of these holes are 2.70 mm diameter non-plated. // Some of these holes are for mounting the Face Plate. // Some of these holes are for mounting the Cover Plate(s). // // I don't yet understand the correct positions for the // middle hole along the front edge or for the hole // in about the center of the card. I just made up // rough locations for these 2 holes. // // Note that the bottom front panel mounting hole, in // the SW cornet of the PCB, is no longer in the PCB // geometry itself. This hole is now in the ESD Strip // geometry. This holes is at X = 3.57 mm Y = 5.55 mm. // // Recall that in the Hub PCB Mentor design that the // lower left-hand corner of the PCB, its SW corner // of the PCB, is the 0,0 coordinate of this layout. // // The mechanical hole in the card's South-West corner // is now included in the ESD Strip geometry where // this hole is the official connection to the front // panel from the card's Shelf Ground. // // NOTE: I have currently removed the mechanical drill hole // at 3.57, 161.1 which is presumably for front // panel mounting. The Hub needs this front panel // space for front panel components. It's clear // anyway that the Hub will need custom front panel // atachment hardware. // // NOTE: I'm now 6-July-2015 removing the side 2 cover // mounting holes at: 127.70, 161.10 (verify location) // and 251.80, 55.10 and 251.80, 196.10. These // are clearly right in the middle of where we need // to place big components and the Hub will need a // custom side 2 cover anyway. // // // // // Recall the Standard Size Screw Holes // -------------------------------------- // // - M2.5 Screw Dimensions: // // Diameter of Threaded Section: 2.45 mm // Diameter of the Screw Head: 4.5 mm // Thickness of the Screw Head: 1.5 mm // // - In the Hub PCB implement this as: // // Drill Hole Diameter: 2.7 mm // Pad Diameter: 4.9 mm // Solder Mask Opening Diameter: 5.1 mm // Plane Relief Diameter: 3.7 mm // Silkscreen circle Diameter: 5.1 mm // // // // - 4-40 Button Head Screw Dimensions: // // Diameter of Threaded Section: 2.8 mm // Diameter of the Screw Head: 5.3 mm // Thickness of the Screw Head: 1.5 mm // // - In the Hub PCB implement this as: // // Drill Hole Diameter: 3.0 mm // Pad Diameter: 6.0 mm // Solder Mask Opening Diameter: 6.2 mm // Plane Relief Diameter: 4.0 mm // Silkscreen circle Diameter: 9.0 mm // // // Add the hole for mounting the Top ATCA Handle in the // normal ATCA defined location. // // The hole for the bottom Handle is in the EDS strip Geometry // $$attribute( "DRILL_DEFINITION_UNPLATED", "2.70", , @scale , , [ 3.57, 316.70 ]); $$circle( "PAD_1", 3.57, 316.70, 4.90, 0.0 ); $$circle( "PAD_2", 3.57, 316.70, 4.90, 0.0 ); $$circle( "SOLDER_MASK_1", 3.57, 316.70, 5.10, 0.0 ); $$circle( "SOLDER_MASK_2", 3.57, 316.70, 5.10, 0.0 ); $$circle( "POWER", 3.57, 316.70, 3.70, 0.0 ); $$circle( "SILKSCREEN_1", 3.57, 316.70, 5.20, 0.20 ); $$circle( "SILKSCREEN_2", 3.57, 316.70, 5.20, 0.20 ); // // Add the Silkscreen and 2 holes for the Top Front Panel Bracket // ----- // $$path( "SILKSCREEN_1", 0.20, , [ 0.00, 312.50, 18.20, 312.50 ]); $$path( "SILKSCREEN_1", 0.20, , [ 0.00, 303.10, 18.20, 303.10 ]); $$path( "SILKSCREEN_1", 0.20, , [ 18.20, 303.10, 18.20, 312.50 ]); $$path( "SILKSCREEN_2", 0.20, , [ 0.00, 312.50, 18.20, 312.50 ]); $$path( "SILKSCREEN_2", 0.20, , [ 0.00, 303.10, 18.20, 303.10 ]); $$path( "SILKSCREEN_2", 0.20, , [ 18.20, 303.10, 18.20, 312.50 ]); $$attribute( "DRILL_DEFINITION_UNPLATED", "3.00", , @scale , , [ 5.00, 307.80 ]); $$circle( "PAD_1", 5.00, 307.80, 6.00, 0.0 ); $$circle( "PAD_2", 5.00, 307.80, 6.00, 0.0 ); $$circle( "SOLDER_MASK_1", 5.00, 307.80, 6.20, 0.0 ); $$circle( "SOLDER_MASK_2", 5.00, 307.80, 6.20, 0.0 ); $$circle( "POWER", 5.00, 307.80, 4.00, 0.0 ); $$circle( "SILKSCREEN_1", 5.00, 307.80, 7.20, 0.20 ); $$circle( "SILKSCREEN_2", 5.00, 307.80, 7.20, 0.20 ); $$attribute( "DRILL_DEFINITION_UNPLATED", "3.00", , @scale , , [ 13.80, 307.80 ]); $$circle( "PAD_1", 13.80, 307.80, 6.00, 0.0 ); $$circle( "PAD_2", 13.80, 307.80, 6.00, 0.0 ); $$circle( "SOLDER_MASK_1", 13.80, 307.80, 6.20, 0.0 ); $$circle( "SOLDER_MASK_2", 13.80, 307.80, 6.20, 0.0 ); $$circle( "POWER", 13.80, 307.80, 4.00, 0.0 ); $$circle( "SILKSCREEN_1", 13.80, 307.80, 7.20, 0.20 ); $$circle( "SILKSCREEN_2", 13.80, 307.80, 7.20, 0.20 ); // // Add the Silkscreen and 2 holes for the Bottom Front Panel Bracket // -------- // $$path( "SILKSCREEN_1", 0.20, , [ 0.00, 27.00, 12.80, 27.00 ]); $$path( "SILKSCREEN_1", 0.20, , [ 0.00, 9.80, 12.80, 9.80 ]); $$path( "SILKSCREEN_1", 0.20, , [ 12.80, 9.80, 12.80, 27.00 ]); $$path( "SILKSCREEN_2", 0.20, , [ 0.00, 27.00, 12.80, 27.00 ]); $$path( "SILKSCREEN_2", 0.20, , [ 0.00, 9.80, 12.80, 9.80 ]); $$path( "SILKSCREEN_2", 0.20, , [ 12.80, 9.80, 12.80, 27.00 ]); $$attribute( "DRILL_DEFINITION_UNPLATED", "3.00", , @scale , , [ 8.10, 22.30 ]); $$circle( "PAD_1", 8.10, 22.30, 6.00, 0.0 ); $$circle( "PAD_2", 8.10, 22.30, 6.00, 0.0 ); $$circle( "SOLDER_MASK_1", 8.10, 22.30, 6.20, 0.0 ); $$circle( "SOLDER_MASK_2", 8.10, 22.30, 6.20, 0.0 ); $$circle( "POWER", 8.10, 22.30, 4.00, 0.0 ); $$circle( "SILKSCREEN_1", 8.10, 22.30, 7.20, 0.20 ); $$circle( "SILKSCREEN_2", 8.10, 22.30, 7.20, 0.20 ); $$attribute( "DRILL_DEFINITION_UNPLATED", "3.00", , @scale , , [ 8.10, 14.50 ]); $$circle( "PAD_1", 8.10, 14.50, 6.00, 0.0 ); $$circle( "PAD_2", 8.10, 14.50, 6.00, 0.0 ); $$circle( "SOLDER_MASK_1", 8.10, 14.50, 6.20, 0.0 ); $$circle( "SOLDER_MASK_2", 8.10, 14.50, 6.20, 0.0 ); $$circle( "POWER", 8.10, 14.50, 4.00, 0.0 ); $$circle( "SILKSCREEN_1", 8.10, 14.50, 7.20, 0.20 ); $$circle( "SILKSCREEN_2", 8.10, 14.50, 7.20, 0.20 ); // // file: /home2/designs/boards/Hub_0/Work/Geometries/Design_Hub_0_PCB/hub_0_pcb_drill_holes.txt // // date: Original Rev. 17-Apr-2014 // Current Rev. 11-Jan-2016 // // // // // Notes: // // This source file in the overall Hub pcb design holds the // "reference view" of the Hub's Front Panel. Note that // this information does not appear in the real design of the // Hub pcb - rather this just lets one see what the front panel // will look like as one is working on the reast of the Hub // design. // // This Front Panel Reference View data is placed on the // "CONFORMAL_MASK_1" and "CONFORMAL_MASK_2" layers // where I hope it is out of the way. // // - CONFORMAL_MASK_1 reference for the Front Panel itself // - CONFORMAL_MASK_2 reference locations for LEDs // // // // // Front Panel Reference View // -------------------------------- // // The following are some optional lines on layer // CONFORMAL_MASK_1 that indicate the location // of the Front Panel. Recall that ATCA has a "U" // shaped front panel that wraps around and covers // part of the card. The "U" shap is for the // RF caskets. // // Front Panel Dimension References: // // Front edge of the PCB to the inner surface // of the front of the front panel: 2.54 mm pg 2-12 // // Recommended thickness of the front panel // material: 1.0 mm pg 2-22 // // Front edge of the PCB to the center of the // holes along the front edge of the PCB: 3.57 mm pg 2-8 // // Distace from the top to bottom mounting holes // along the front edge of the PCB: 311.15 mm pg 2-8 // // Width of the lip that covers part of the PCB, i.e. // from the inner surface of the front of the front // panel to the edge of the front panel lip that // covers part of PCB side 1: 9.98 mm pg 2-23 // But I measure this to be about: 11.0 mm // // From the inner surface of the front of the front // panel to the center of the mounting screw hole // along the front edge of the PCB: 6.11 mm pg 2-23 // // In the vertical dimension the distace from the // center of the holes along the front edge of the // PCB to the top edge or the bottom edge of the // front panel is: 19.89 mm pg 2-24 // // The above point together with the 4th point // implies that the total vertical heigth of the // front panel is: 350.93 mm and it is symmetric // above and below the top edges of the PCB. // // The vertical heigth of the front panel lip that // covers part of side 1 of the PCB is: 320.8 mm pg 2-24 // and is symmetric above and below the top and // bottom PCB edge. // // The vertical distance center to center of the // front panel jack screws holes and alignment pin // is: 336.30 mm pg 2-24 // // // // Lines to show the inner and outer surfaces of the front // surface of the front panel. In Mentor coordinates the Y // dimension of the front panel is from -14.34 mm to 336.59 mm. // This is a total front panel height of: 350.93 mm. // $$path( "CONFORMAL_MASK_1", 0.20, , [ -2.54, -14.34, -2.54, 336.59 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -3.54, -14.34, -3.54, 336.59 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -3.54, 336.59, -2.54, 336.59 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -3.54, -14.34, -2.54, -14.34 ]); // // Lines to show how much of the PCB is covered by // the wrap around "U" shap. In Mentor coordinates the Y // dimension of the front panel lip over the PCB side 1 // is from 0.73 mm to 321.52 mm. The total height // of the lip over the PCB is: 320.80 mm. // $$path( "CONFORMAL_MASK_1", 0.20, , [ 8.00, 1.73, 8.00, 320.52 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ 8.00, 1.73, 7.00, 0.73 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ 8.00, 320.53, 7.00, 321.52 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -2.54, 321.52, 7.00, 321.52 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -2.54, 0.73, 7.00, 0.73 ]); // // Lines to show the Jack Screws on the // front panel (drawn at Y 329.28 mm -7.03 mm): // $$path( "CONFORMAL_MASK_1", 0.20, , [ -7.54, 326.28, -3.54, 326.28 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -7.54, 332.28, -3.54, 332.28 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, 324.48, -7.54, 324.48 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, 334.08, -7.54, 334.08 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, 325.68, -7.54, 325.68 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, 326.88, -7.54, 326.88 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, 328.08, -7.54, 328.08 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, 329.28, -7.54, 329.28 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, 330.48, -7.54, 330.48 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, 331.68, -7.54, 331.68 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, 332.88, -7.54, 332.88 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, 324.48, -14.54, 334.08 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -7.54, 324.48, -7.54, 334.08 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -2.54, 327.78, 10.00, 327.78 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -2.54, 330.78, 10.00, 330.78 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ 10.00, 327.78, 12.40, 329.28 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ 10.00, 330.78, 12.40, 329.28 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -7.54, -4.03, -3.54, -4.03 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -7.54, -10.03, -3.54, -10.03 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, -2.23, -7.54, -2.23 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, -11.83, -7.54, -11.83 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, -3.43, -7.54, -3.43 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, -4.63, -7.54, -4.63 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, -5.83, -7.54, -5.83 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, -7.03, -7.54, -7.03 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, -8.23, -7.54, -8.23 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, -9.43, -7.54, -9.43 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, -10.63, -7.54, -10.63 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.54, -2.23, -14.54, -11.83 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -7.54, -2.23, -7.54, -11.83 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -2.54, -5.53, 10.00, -5.53 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -2.54, -8.53, 10.00, -8.53 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ 10.00, -5.53, 12.40, -7.03 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ 10.00, -8.53, 12.40, -7.03 ]); // // Lines to hint at the Handles at the top and // bottom of the card. Total handle length is // drawn at about 50 mm: // $$path( "CONFORMAL_MASK_1", 0.20, , [ -9.50, 324.48, -9.50, 300.00 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -4.50, 316.00, -4.50, 296.50 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -4.50, 316.00, -3.54, 317.00 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -9.50, 300.00, -15.00, 277.00 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -4.50, 296.50, -10.80, 275.60 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -15.00, 277.00, -14.70, 276.00 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.70, 276.00, -14.00, 275.20 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.00, 275.20, -12.70, 274.70 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -12.70, 274.70, -11.50, 275.00 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -11.50, 275.00, -10.80, 275.60 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -9.50, -2.23, -9.50, 22.25 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -4.50, 6.25, -4.50, 25.75 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -4.50, 6.25, -3.54, 5.25 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -9.50, 22.25, -15.00, 45.25 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -4.50, 25.75, -10.80, 46.65 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -15.00, 45.25, -14.70, 46.25 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.70, 46.25, -14.00, 47.05 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -14.00, 47.05, -12.70, 47.55 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -12.70, 47.55, -11.50, 47.25 ]); $$path( "CONFORMAL_MASK_1", 0.20, , [ -11.50, 47.25, -10.80, 46.65 ]); // // Now some temporary lines to mark out the // Locations of the Front Panel LEDs // // These marks will act as keep outs during // the rest of the PCB component layout work. // // // Y with 0 // @ Corner // ----------- // Mandatory LED_1 257.39 mm // // Optional LED_2 245.39 mm // // Optional LED_3 233.39 mm // // reserved for specific LEDs 223.39 mm // reserved for specific LEDs 74.86 // // Mandatory Blue 64.85 mm // // LED_1 Mandatory $$path( "CONFORMAL_MASK_2", 0.20, , [ 0.00, 260.39, 8.00, 260.39 ]); $$path( "CONFORMAL_MASK_2", 0.20, , [ 8.00, 260.39, 8.00, 254.39 ]); $$path( "CONFORMAL_MASK_2", 0.20, , [ 0.00, 254.39, 8.00, 254.39 ]); // LED_2 Optional $$path( "CONFORMAL_MASK_2", 0.20, , [ 0.00, 248.39, 8.00, 248.39 ]); $$path( "CONFORMAL_MASK_2", 0.20, , [ 8.00, 248.39, 8.00, 242.39 ]); $$path( "CONFORMAL_MASK_2", 0.20, , [ 0.00, 242.39, 8.00, 242.39 ]); // LED_3 Optional $$path( "CONFORMAL_MASK_2", 0.20, , [ 0.00, 236.39, 8.00, 236.39 ]); $$path( "CONFORMAL_MASK_2", 0.20, , [ 8.00, 236.39, 8.00, 230.39 ]); $$path( "CONFORMAL_MASK_2", 0.20, , [ 0.00, 230.39, 8.00, 230.39 ]); // LED_4 Mandatory $$path( "CONFORMAL_MASK_2", 0.20, , [ 0.00, 67.85, 8.00, 67.85 ]); $$path( "CONFORMAL_MASK_2", 0.20, , [ 8.00, 67.85, 8.00, 61.85 ]); $$path( "CONFORMAL_MASK_2", 0.20, , [ 0.00, 61.85, 8.00, 61.85 ]); // LEDs Specific Placement Range $$path( "CONFORMAL_MASK_2", 0.20, , [ 0.00, 223.39, 8.00, 223.39 ]); $$path( "CONFORMAL_MASK_2", 0.20, , [ 8.00, 223.39, 8.00, 74.86 ]); $$path( "CONFORMAL_MASK_2", 0.20, , [ 0.00, 74.86, 8.00, 74.86 ]); // // file: /home2/designs/boards/Hub_0/Work/Geometries/Design_Hub_0_PCB/hub_0_pcb_drawing_and_dimension.txt // // date: Original Rev. 17-Apr-2014 // Current Rev. 23-Jun-2016 // // // // Notes: // // The pcb geometry source file holds the manufacturing // drawing and dimensions information. // // $$template_line_style( @Solid ); // Show 0,0 at bottom left corner. $$path( "DRAWING_1", 0.20, , [ -5.0, -5.0, -23.0, -23.0 ] ); // comment line $$path( "DRAWING_1", 0.20, , [ -5.0, -5.0, -10.0, -7.5 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ -5.0, -5.0, -7.5, -10.0 ] ); // arrow $$text( "DRAWING_1", "X = 0", -40.0, -18.0, 4.0, @BC, 0, 1.00, 0.20, "std", "None", 0.0, 0.0 ); $$text( "DRAWING_1", "Y = 0", -40.0, -25.0, 4.0, @BC, 0, 1.00, 0.20, "std", "None", 0.0, 0.0 ); $$text( "DRAWING_1", "Corner", -40.0, -32.0, 4.0, @BC, 0, 1.00, 0.20, "std", "None", 0.0, 0.0 ); $$path( "DRAWING_1", 0.20, , [ -23.0, -13.5, -23.0, -32.5 ] ); // Brace Line Vert $$path( "DRAWING_1", 0.20, , [ -23.0, -13.5, -25.0, -12.5 ] ); // Brace Line Top $$path( "DRAWING_1", 0.20, , [ -25.0, -33.5, -23.0, -32.5 ] ); // Brace Line Bot // // Overall Horizontal Dimension Including the Bump-Out on the back // $$path( "DRAWING_1", 0.20, , [ 0.0, -6.0, 0.0, -59.0 ] ); // Left witness line $$path( "DRAWING_1", 0.20, , [ 0.0, -54.0, 200.0, -54.0 ] ); // dimension line $$path( "DRAWING_1", 0.20, , [ 0.0, -54.0, 7.5, -51.5 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 0.0, -54.0, 7.5, -56.5 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 315.0, -6.0, 315.0, -59.0 ] ); // Right witnes line $$path( "DRAWING_1", 0.20, , [ 260.0, -54.0, 315.0, -54.0 ] ); // dimension line $$path( "DRAWING_1", 0.20, , [ 307.5, -51.5, 315.0, -54.0 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 307.5, -56.5, 315.0, -54.0 ] ); // arrow $$text( "DRAWING_1", "315.00 mm", 230.0, -53.0, 4.0, @BC, 0, 1.00, 0.20, "std", "None", 0.0, 0.0 ); $$text( "DRAWING_1", "X Dimension", 230.0, -60.0, 4.0, @BC, 0, 1.00, 0.20, "std", "None", 0.0, 0.0 ); // Main Board Horizontal Dimension. $$path( "DRAWING_1", 0.20, , [ 0.0, -40.0, 135.0, -40.0 ] ); // Left dimension line $$path( "DRAWING_1", 0.20, , [ 0.0, -40.0, 7.5, -37.5 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 0.0, -40.0, 7.5, -42.5 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 280.0, -6.0, 280.0, -45.0 ] ); // Right witnes line $$path( "DRAWING_1", 0.20, , [ 185.0, -40.0, 280.0, -40.0 ] ); // dimension line $$path( "DRAWING_1", 0.20, , [ 272.5, -37.5, 280.0, -40.0 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 272.5, -42.5, 280.0, -40.0 ] ); // arrow $$text( "DRAWING_1", "280.00 mm", 160.0, -42.0, 4.0, @BC, 0, 1.00, 0.20, "std", "None", 0.0, 0.0 ); // Front Notch Horizontal Dimension. $$path( "DRAWING_1", 0.20, , [ -10.0, -26.0, 0.0, -26.0 ] ); // Left dimension line $$path( "DRAWING_1", 0.20, , [ -7.5, -23.5, 0.0, -26.0 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ -7.5, -28.5, 0.0, -26.0 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 7.0, -6.0, 7.0, -31.0 ] ); // Right witnes line $$path( "DRAWING_1", 0.20, , [ 7.0, -26.0, 24.0, -26.0 ] ); // dimension line $$path( "DRAWING_1", 0.20, , [ 7.0, -26.0, 14.5, -23.5 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 7.0, -26.0, 14.5, -28.5 ] ); // arrow $$text( "DRAWING_1", "7.00 mm", 44.0, -28.0, 4.0, @BC, 0, 1.00, 0.20, "std", "None", 0.0, 0.0 ); // // Overall Vertical Dimension // $$path( "DRAWING_1", 0.20, , [ 319.0, 322.25, 368.0, 322.25 ] ); // Upper witness line $$path( "DRAWING_1", 0.20, , [ 363.0, 322.25, 363.0, 102.0 ] ); // dimension line $$path( "DRAWING_1", 0.20, , [ 365.5, 314.75, 363.0, 322.25 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 360.5, 314.75, 363.0, 322.25 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 321.0, 0.0, 368.0, 0.0 ] ); // Lower witness line $$path( "DRAWING_1", 0.20, , [ 363.0, 48.0, 363.0, 0.0 ] ); // dimension line $$path( "DRAWING_1", 0.20, , [ 365.5, 7.5, 363.0, 0.0 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 360.5, 7.5, 363.0, 0.0 ] ); // arrow $$text( "DRAWING_1", "Y Dimension", 368.0, 75.0, 4.0, @BC, 90, 1.00, 0.20, "std", "None", 0.0, 0.0 ); $$text( "DRAWING_1", "322.25 mm", 362.0, 75.0, 4.0, @BC, 90, 1.00, 0.20, "std", "None", 0.0, 0.0 ); // Dimension to the Top of the Bump-Out $$path( "DRAWING_1", 0.20, , [ 321.0, 317.25, 353.0, 317.25 ] ); // Upper witness line $$path( "DRAWING_1", 0.20, , [ 348.0, 317.25, 348.0, 174.0 ] ); // dimension line $$path( "DRAWING_1", 0.20, , [ 350.5, 309.75, 348.0, 317.25 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 345.5, 309.75, 348.0, 317.25 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 348.0, 126.0, 348.0, 0.0 ] ); // Lower dimension line $$path( "DRAWING_1", 0.20, , [ 350.5, 7.5, 348.0, 0.0 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 345.5, 7.5, 348.0, 0.0 ] ); // arrow $$text( "DRAWING_1", "317.25 mm", 350.0, 150.0, 4.0, @BC, 90, 1.00, 0.20, "std", "None", 0.0, 0.0 ); // Dimension to the Bottom of the Bump-Out $$path( "DRAWING_1", 0.20, , [ 321.0, 210.65, 338.0, 210.65 ] ); // Upper witness line $$path( "DRAWING_1", 0.20, , [ 333.0, 210.65, 333.0, 100.0 ] ); // dimension line $$path( "DRAWING_1", 0.20, , [ 335.5, 203.15, 333.0, 210.65 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 330.5, 203.15, 333.0, 210.65 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 333.0, 50.0, 333.0, 0.0 ] ); // Lower dimension line $$path( "DRAWING_1", 0.20, , [ 335.5, 7.5, 333.0, 0.0 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ 330.5, 7.5, 333.0, 0.0 ] ); // arrow $$text( "DRAWING_1", "210.65 mm", 335.0, 75.0, 4.0, @BC, 90, 1.00, 0.20, "std", "None", 0.0, 0.0 ); // // Left-hand Vertical Dimension of RJ45 Notch Upper Edge // $$path( "DRAWING_1", 0.20, , [ -6.0, 132.50, -45.0, 132.50 ] ); // Upper witness line $$path( "DRAWING_1", 0.20, , [ -40.0, 132.50, -40.0, 117.00 ] ); // dimension line $$path( "DRAWING_1", 0.20, , [ -37.5, 125.00, -40.0, 132.50 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ -42.5, 125.00, -40.0, 132.50 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ -6.0, 0.0, -45.0, 0.0 ] ); // Lower witness line $$path( "DRAWING_1", 0.20, , [ -40.0, 73.5, -40.0, 0.0 ] ); // dimension line $$path( "DRAWING_1", 0.20, , [ -37.5, 7.5, -40.0, 0.0 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ -42.5, 7.5, -40.0, 0.0 ] ); // arrow $$text( "DRAWING_1", "132.50 mm", -38.0, 95.0, 4.0, @BC, 90, 1.00, 0.20, "std", "None", 0.0, 0.0 ); // Left-hand Vertical Dimension of RJ45 Notch Lower Edge $$path( "DRAWING_1", 0.20, , [ -6.0, 71.50, -30.0, 71.50 ] ); // Upper witness line $$path( "DRAWING_1", 0.20, , [ -25.0, 71.50, -25.0, 55.00 ] ); // dimension line $$path( "DRAWING_1", 0.20, , [ -22.5, 64.00, -25.0, 71.50 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ -27.5, 64.00, -25.0, 71.50 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ -25.0, 15.0, -25.0, 0.0 ] ); // Lower dimension line $$path( "DRAWING_1", 0.20, , [ -22.5, 7.5, -25.0, 0.0 ] ); // arrow $$path( "DRAWING_1", 0.20, , [ -27.5, 7.5, -25.0, 0.0 ] ); // arrow $$text( "DRAWING_1", "71.50 mm", -23.0, 35.0, 4.0, @BC, 90, 1.00, 0.20, "std", "None", 0.0, 0.0 ); // // End of the Drawing_1 overall board dimensions. // // // Fiducial Marks and Solder Masks Section of the // -===============================------------------ // // Hub Module PCB Geometry // ----------------------------- // // Rev. Date: 4-Jan-2017 // // // Global Fiducial Marks $$circle( "PAD_1", 290.0, 312.0, 1.0, 0.0); $$circle( "PAD_1", 10.0, 315.0, 1.0, 0.0); $$circle( "PAD_1", 15.0, 23.0, 1.0, 0.0); $$circle( "PAD_1", 274.0, 15.0, 1.0, 0.0); $$circle( "PAD_2", 290.0, 312.0, 1.0, 0.0); $$circle( "PAD_2", 10.0, 315.0, 1.0, 0.0); $$circle( "PAD_2", 15.0, 23.0, 1.0, 0.0); $$circle( "PAD_2", 274.0, 15.0, 1.0, 0.0); $$circle( "SOLDER_MASK_1", 290.0, 312.0, 1.5, 0.0); $$circle( "SOLDER_MASK_1", 10.0, 315.0, 1.5, 0.0); $$circle( "SOLDER_MASK_1", 15.0, 23.0, 1.5, 0.0); $$circle( "SOLDER_MASK_1", 274.0, 15.0, 1.5, 0.0); $$circle( "SOLDER_MASK_2", 290.0, 312.0, 1.5, 0.0); $$circle( "SOLDER_MASK_2", 10.0, 315.0, 1.5, 0.0); $$circle( "SOLDER_MASK_2", 15.0, 23.0, 1.5, 0.0); $$circle( "SOLDER_MASK_2", 274.0, 15.0, 1.5, 0.0); // // End of the Global Fiducial Marks. // // // Add openings in the Top Layer Solder Mask // for the bla // // // $$path( "SOLDER_MASK_1", 5.00, , [ 0.0, 36.5, 7.5, 36.5 ]); // // End of these openings in the Top Layer Solder Mask. // // // file: hub_0_pcb_ground_plane_exclusions.txt // // date: Original Rev. 6-Jan-2017 // Current Rev. 6-Jan-2017 // // // // // Notes: // // This source file in the overall Hub pcb design holds the // various cuts and exclusion areas in the ground planes // of the Hub Module pcb. // // There are 10 ground planes in the Hub PCB. // For plotting these 10 ground planes are in 3 groups: // // Upper Gnd Plane for L2, L4, L6 // Middle Gnd Plane for L8, L19, L13, L15 // Lower Gnd Plane for L17, L19, L21 // // // As the Gnd Planes are plotted as negative data we can put // cuts or exclusions in them by including graphic elements // in the Hub's pcb geometry. // // As the Hub's "artwork_order" file is setup: // // Elements on PREPREG 1 or 3 will remove copper from the Upper Gnd Pln // Elements on PREPREG 3 will remove copper from the Middle Gnd Pln // Elements on PREPREG 2 or 3 will remove copper from the Lower Gnd Pln // // // // Releive all of the Ground Planes from the Bottom edge // of the card where its thickness will be milled from the back // side in a strip 4.0 mm wide. // // Here I'm removing all Gnd Plane copper Below Y = 4.40 mm, // i.e. the copper is back 0.40 mm from the milled edge. // $$path( "PREPREG_3", 1.00, , [ 0.00, 3.90, 280.00, 3.90 ]); $$path( "PREPREG_3", 1.00, , [ 0.00, 3.00, 280.00, 3.00 ]); $$path( "PREPREG_3", 1.00, , [ 0.00, 2.10, 280.00, 2.10 ]); $$path( "PREPREG_3", 1.00, , [ 0.00, 1.20, 280.00, 1.20 ]); $$path( "PREPREG_3", 1.00, , [ 0.00, 0.30, 280.00, 0.30 ]); // // Releive all of the Ground Planes from the Top edge // of the card where its thickness will be milled from the back // side in a strip 4.0 mm wide. // // Here I'm removing all Gnd Plane copper Above Y = 317.85 mm, // i.e. the copper is back 0.40 mm from the milled edge. // // Recall that the Y dimention height of the ATCA card is 322.25 mm // $$path( "PREPREG_3", 1.00, , [ 0.00, 321.95, 280.00, 321.95 ]); $$path( "PREPREG_3", 1.00, , [ 0.00, 321.05, 280.00, 321.05 ]); $$path( "PREPREG_3", 1.00, , [ 0.00, 320.15, 280.00, 320.15 ]); $$path( "PREPREG_3", 1.00, , [ 0.00, 319.25, 280.00, 319.25 ]); $$path( "PREPREG_3", 1.00, , [ 0.00, 318.35, 280.00, 318.35 ]); // // Note that in addition to the above, that the ground plane // is relieved back 0.5mm from all of the actual edges of the pcb. // This is controlled by the board_edge_clearance attribute in // the Hub's "artwork_order" file. // // // // // Shape Edit Section of the // -==========----------------- // // Hub Module Printed Circuit Board Geometry File // -------------------------------------------------- // // // Area Fills on Signal Layer 11 <--- // ---------------------------==== // // // // Original Rev. 3-Feb-2016 // Current Rev. 12-Jan-2017 // // // Notes: // // - These are Area Fills because they are on a Signal layer // in the Mentor design. // // - The principal power nets that are distributed on Signal_11 // are: FPGA_CORE and MGT_AVCC. // // - These fills are kept back at least 4.5 mm from the // top and bottom edges so that the area fills will not be // exposed when the top and bottom edges are milled to // allow this card to fit into the crate card guides. // // - These fills are kept back at least 1mm from the front // and back edges to comply with normal decorum. // // - EVERYTHING in this Signal_11 fill file is repeated // on both the layers: SHAPE_EDIT and DIELECTRIC_1. // See the bottom section of this file. // // - As of 17-Oct-2016 there are 22 shapes defined in this file. // // - List of Fills in this file: // // FPGA_CORE: From the DCDC_1 Converter to FPGA Medium Res // Under the FPGA Hi Res // // MGT_AVCC: From the DCDC_2 Converter to FPGA Medium Res // Under the FPGA Hi Res // // FAN_1V8: // // ISO_12V: // // Individual Switch AVDDL: Under each Switch Chip, a fill for // that Switch's Filtered AVDDL supply // // Individual Phys DVDDL: Under each Phys Chip, a fill for // that Phys's Filtered DVDDL supply // // CLK_3V3: // // // - Currently many sections of the ISO_12V fills on Signal_11 and // Signal_12 have exactly the same Shape pattern. // // NOTE: For those sections of the overall ISO_12V fill that have // exactly the same Shape on Signal_11 and Signal_12, I'm // only generating this Shape in the Signal_11 Shape // source file. I'm not repeating it in the // Signal_12 Shape source file. That is, some of the // ISO_12V fills on both layers Sig_11 and Sig_12 will // be based on the Shapes that come from the Sig_11 Shape // source file. // // I do not want to risk confusion by having two copies // of exactly the same Shape in the Hub design. // // There is no point in needing to edit both the Sig_11 // and Sig_12 files to make a change in the ISO_12V fills. // // - The corners of the shapes in this file that sould not // be mitered are marked with the comment text, "NO_MITER". // // // // // Net: FPGA_CORE // // Fill Layer: Signal_11 // // Location: From Converter DCDC_1 to the FPGA // // Resolution: Medium // $$initial([ 78.5, 207.4 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 46.5, 207.4 ] ); // Go West across the Top $$terminal([ 45.5, 206.4 ] ); $$terminal([ 45.5, 134.3 ] ); // NO_MITER Go Down most of the West edge $$terminal([ 64.8, 115.0 ] ); // NO_MITER Go about 45 deg to the SE $$terminal([ 91.2, 115.0 ] ); // NO_MITER Go East Across the Bottom $$terminal([ 91.2, 194.7 ] ); // NO_MITER Go Up the East edge most of the way $$terminal([ 78.5, 207.4 ] ); // NO_MITER Go 45 deg to the NW and Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: FPGA_CORE // // Fill Layer: Signal_11 // // Location: FPGA_CORE Pins under the FPGA // // Resolution: Hi // $$initial([ 89.5, 176.1 ], , @nosnap ); // NO_MITER Start in the NW corner and go CCW $$terminal([ 89.5, 115.0 ] ); // NO_MITER Go Down the West edge $$terminal([ 101.8, 115.0 ] ); // Go a East coming out of the overlap $$terminal([ 102.8, 116.0 ] ); $$terminal([ 102.8, 126.6 ] ); // NO_MITER Go North into the pin array $$terminal([ 106.4, 130.2 ] ); // NO_MITER Go about 45 deg to the NE $$terminal([ 128.8, 130.2 ] ); // Go East Across the Bottom of the FPGA Core pins $$terminal([ 129.8, 131.2 ] ); $$terminal([ 129.8, 148.8 ] ); // Go Up the East edge of the FPGA Core pins $$terminal([ 128.8, 149.8 ] ); $$terminal([ 106.4, 149.8 ] ); // NO_MITER Go West across the Top of the FPGA Core pins $$terminal([ 102.8, 153.4 ] ); // NO_MITER Go about 45 deg to the NW $$terminal([ 102.8, 166.3 ] ); // NO_MITER Go North up through the pin array $$terminal([ 96.1, 173.0 ] ); // NO_MITER Go 45 deg North West $$terminal([ 92.6, 173.0 ] ); // NO_MITER Go West $$terminal([ 89.5, 176.1 ] ); // NO_MITER Go 45 deg North West and Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: MGT_AVCC // // Fill Layer: Signal_11 // // Location: DCDC_2 Output Filter Choke to FPGA // // Resolution: Medium // $$initial([ 126.0, 199.5], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 125.0, 200.5 ] ); $$terminal([ 105.0, 200.5 ] ); // Go West across the Top $$terminal([ 104.0, 199.5 ] ); $$terminal([ 104.0, 195.0 ] ); // NO_MITER Go Down a small West Edge $$terminal([ 91.8, 192.0 ] ); // NO_MITER Go about 45 deg to the SW $$terminal([ 91.8, 174.4 ] ); // Go South $$terminal([ 92.8, 173.4 ] ); $$terminal([ 96.3, 173.4 ] ); // NO_MITER Go West $$terminal([ 103.2, 166.5 ] ); // NO_MITER Go 45 deg SW $$terminal([ 141.5, 166.5 ] ); // NO_MITER Go East $$terminal([ 141.5, 113.5 ] ); // NO_MITER Go South $$terminal([ 91.8, 113.5 ] ); // NO_MITER Go West $$terminal([ 91.8, 101.0 ] ); // Go South $$terminal([ 92.8, 100.0 ] ); $$terminal([ 107.5, 100.0 ] ); // NO_MITER Run East over to just before C91 $$terminal([ 113.0, 94.5 ] ); // NO_MITER Run 45 deg SE to pick up C91 $$terminal([ 119.5, 94.5 ] ); // NO_MITER Run East under C91 $$terminal([ 125.0, 100.0 ] ); // NO_MITER Run 45 deg NE back up to normal Y $$terminal([ 155.5, 100.0 ] ); // Go Finish running East Across the Bottom $$terminal([ 156.5, 101.0 ] ); $$terminal([ 156.5, 186.0 ] ); // NO_MITER Go Up the East edge of the fill $$terminal([ 126.0, 195.0 ] ); // NO_MITER Go about 45 deg to the NW $$terminal([ 126.0, 199.5 ] ); // Go Up the East edge to Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: MGT_AVCC // // Fill Layer: Signal_11 // // Location: MGT_AVCC Pins under the FPGA // // Resolution: Hi // $$initial([ 142.0, 167.0 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 103.2, 167.0 ] ); // NO_MITER Go West across the Top $$terminal([ 103.2, 153.6 ] ); // NO_MITER Go South $$terminal([ 106.6, 150.2 ] ); // NO_MITER Go about 45 deg to the SE $$terminal([ 129.2, 150.2 ] ); // Go East under the FPGA AVCC pins $$terminal([ 130.2, 149.2 ] ); $$terminal([ 130.2, 130.8 ] ); // Go South just East of the Core supply finger $$terminal([ 129.2, 129.8 ] ); $$terminal([ 106.6, 129.8 ] ); // NO_MITER Go West above the FPGA AVCC pins $$terminal([ 103.2, 126.4 ] ); // NO_MITER Go about 45 Deg to the SW $$terminal([ 103.2, 115.6 ] ); // Go South $$terminal([ 102.2, 114.6 ] ); $$terminal([ 92.8, 114.6 ] ); // Go West $$terminal([ 91.8, 113.6 ] ); $$terminal([ 91.8, 113.0 ] ); // NO_MITER Go South $$terminal([ 142.0, 113.0 ] ); // NO_MITER Go East Across the Bottom $$terminal([ 142.0, 167.0 ] ); // NO_MITER Go Up the East edge and Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: FAN_1V8 // // Fill Layer: Signal_11 // // Location: DCDC_7 Output Filter and area under the FEX Data Fanout // // Resolution: Medium // $$initial([ 260.0, 203.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 259.0, 204.0 ] ); $$terminal([ 181.5, 204.0 ] ); // Go far West across all of the Top $$terminal([ 180.5, 203.0 ] ); $$terminal([ 180.5, 139.0 ] ); // Go Soouth along the West side until $$terminal([ 181.5, 138.0 ] ); // we need to start the jog part way East $$terminal([ 191.0, 138.0 ] ); // Go East to get inside of the Eq Enb Ctrl $$terminal([ 192.0, 137.0 ] ); $$terminal([ 192.0, 68.5 ] ); // Go South down the the rest of the West edge $$terminal([ 193.0, 67.5 ] ); $$terminal([ 234.0, 67.5 ] ); // NO_MITER Go East across Part of the Bottom // to pick up some bypass capacitors $$terminal([ 238.5, 72.0 ] ); // NO_MITER Go NE at 45 Deg to get above // the worst of the Ethernet stuff. $$terminal([ 258.0, 72.0 ] ); // Go East across the rest of the Bottom $$terminal([ 259.0, 73.0 ] ); $$terminal([ 259.0, 174.5 ] ); // NO_MITER Go North up the East edge $$terminal([ 262.0, 177.5 ] ); // NO_MITER Go NE at 45 degrees $$terminal([ 262.0, 193.0 ] ); // NO_MITER Go part way up the East edge $$terminal([ 260.0, 195.0 ] ); // NO_MITER Jog back NW at 45 deg to clear TRNS4 $$terminal([ 260.0, 203.0 ] ); // Go Up the East edge to Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: AVDDL_FLTR_A // // Fill Layer: Signal_11 // // Location: AVDDL Fill under Switch Chip "A" aka U31 // // Resolution: Medium or HI // $$initial([ 141.5, 81.0], , @nosnap ); // Start in the NE corner $$terminal([ 140.5, 82.0 ] ); $$terminal([ 111.0, 82.0 ] ); // Go West across the Top $$terminal([ 110.0, 81.0 ] ); $$terminal([ 110.0, 49.7 ] ); // Go Down the West edge $$terminal([ 111.0, 48.7 ] ); $$terminal([ 140.5, 48.7 ] ); // Go East Across the Bottom $$terminal([ 141.5, 49.7 ] ); $$terminal([ 141.5, 81.0 ] ); // Go Up the rest of the east edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: AVDDL_FLTR_B // // Fill Layer: Signal_11 // // Location: AVDDL Fill under Switch Chip "B" aka U32 // // Resolution: Medium or HI // $$initial([ 91.5, 81.0], , @nosnap ); // Start in the NE corner $$terminal([ 90.5, 82.0 ] ); $$terminal([ 61.0, 82.0 ] ); // Go West across the Top $$terminal([ 60.0, 81.0 ] ); $$terminal([ 60.0, 49.7 ] ); // Go Down the West edge $$terminal([ 61.0, 48.7 ] ); $$terminal([ 90.5, 48.7 ] ); // Go East Across the Bottom $$terminal([ 91.5, 49.7 ] ); $$terminal([ 91.5, 81.0 ] ); // Go Up the rest of the east edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: AVDDL_FLTR_C // // Fill Layer: Signal_11 // // Location: AVDDL Fill under Switch Chip "C" aka U33 // // Resolution: Medium or HI // $$initial([ 184.5, 81.0], , @nosnap ); // Start in the NE corner $$terminal([ 183.5, 82.0 ] ); $$terminal([ 154.0, 82.0 ] ); // Go West across the Top $$terminal([ 153.0, 81.0 ] ); $$terminal([ 153.0, 49.7 ] ); // Go Down the West edge $$terminal([ 154.0, 48.7 ] ); $$terminal([ 183.5, 48.7 ] ); // Go East Across the Bottom $$terminal([ 184.5, 49.7 ] ); $$terminal([ 184.5, 81.0 ] ); // Go Up the rest of the east edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: Phys_U21_DVDDL // // Fill Layer: Signal_11 // // Location: DVDDL Fill under Phys Chip U21 // // Resolution: HI // $$initial([ 60.0, 119.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 52.8, 119.0 ] ); // Go West across the Top $$terminal([ 51.8, 118.0 ] ); $$terminal([ 51.8, 106.2 ] ); // Go Down the West edge $$terminal([ 52.8, 105.2 ] ); $$terminal([ 60.0, 105.2 ] ); // Go East Across the Bottom $$terminal([ 61.0, 106.2 ] ); $$terminal([ 61.0, 118.0 ] ); // NO_MITER Go Up the East edge part way $$terminal([ 60.0, 119.0 ] ); // NO_MITER Go NW 45 deg and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: Phys_U22_DVDDL // // Fill Layer: Signal_11 // // Location: DVDDL Fill under Phys Chip U22 // // Resolution: HI // $$initial([ 61.0, 100.0], , @nosnap ); // Start in the NE corner $$terminal([ 60.0, 101.0 ] ); $$terminal([ 52.8, 101.0 ] ); // Go West across the Top $$terminal([ 51.8, 100.0 ] ); $$terminal([ 51.8, 88.2 ] ); // Go Down the West edge $$terminal([ 52.8, 87.2 ] ); $$terminal([ 60.0, 87.2 ] ); // Go East Across the Bottom $$terminal([ 61.0, 88.2 ] ); $$terminal([ 61.0, 100.0 ] ); // Go Up the East edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: CLK_3V3 // // Fill Layer: Signal_11 // // Location: CLK_3V3 Fill under Clock Generator PLLs U502 and U506 // // Resolution: Medium ? // $$initial([ 80.0, 99.0], , @nosnap ); // Start in the NW corner and go CCW $$terminal([ 79.0, 98.0 ] ); $$terminal([ 79.0, 84.0 ] ); // Go Down the West edge $$terminal([ 80.0, 83.0 ] ); $$terminal([ 163.0, 83.0 ] ); // Go East across the Bottom $$terminal([ 164.0, 84.0 ] ); $$terminal([ 164.0, 98.0 ] ); // Go Up the East edge $$terminal([ 163.0, 99.0 ] ); $$terminal([ 125.0, 99.0 ] ); // NO_MITER Run West over to just before C91 $$terminal([ 120.0, 94.0 ] ); // NO_MITER Run 45 deg SW to avoid C91 $$terminal([ 112.5, 94.0 ] ); // NO_MITER Run West under C91 $$terminal([ 107.5, 99.0 ] ); // NO_MITER Run 45 deg NW back up to normal Y $$terminal([ 80.0, 99.0 ] ); // Finish running West across the Top edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: CNST_5V0 // // Fill Layer: Signal_11 // // Location: North-West corner of the card // // Resolution: Medium // $$initial([ 112.0, 315.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 111.0, 316.0 ] ); $$terminal([ 24.0, 316.0 ] ); // Go West $$terminal([ 23.0, 315.0 ] ); $$terminal([ 23.0, 297.0 ] ); // Go South $$terminal([ 24.0, 296.0 ] ); $$terminal([ 98.0, 296.0 ] ); // NO_MITER Go part way back East $$terminal([ 112.0, 310.0 ] ); // NO_MITER Go 45 deg NE cutting the corner // to give more space for ISO_12V $$terminal([ 112.0, 315.0 ] ); // Go Up the East edge to home $$path( "SHAPE_EDIT", 0.0 ); // // Start the ISO_12V Shapes on Signal_11 // // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Isolated +12V from its ATCA Module // to the Input Filter Capacitors for the DCDC Converters // // NOTES: 8 of the following Shapes are used to generate the // ISO_12V Fills on both pcb layers Sig_11 and Sig_12. // // Resolution: Medium // $$initial([ 293.0, 315.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 292.0, 316.0 ] ); $$terminal([ 114.0, 316.0 ] ); // Go West across part of the Top $$terminal([ 113.0, 315.0 ] ); $$terminal([ 113.0, 309.3 ] ); // NO_MITER Go South to clear the CNST_5V0 fill $$terminal([ 98.7, 295.0 ] ); // NO_MITER Go 45 deg SW to clear the CNST_5V0 $$terminal([ 50.0, 295.0 ] ); // Go West across the rest of the Bulk Input Filter $$terminal([ 49.0, 294.0 ] ); $$terminal([ 49.0, 264.0 ] ); // Go South down past some of the Bulk Input Filter $$terminal([ 48.0, 263.0 ] ); $$terminal([ 2.0, 263.0 ] ); // Go East out to the Front Panel $$terminal([ 1.0, 262.0 ] ); $$terminal([ 1.0, 135.0 ] ); // Go South to the top of the RJ45 Cut Out $$terminal([ 2.0, 134.0 ] ); $$terminal([ 7.0, 134.0 ] ); // Go East to clear the Cut Out for the RJ45s $$terminal([ 8.0, 133.0 ] ); $$terminal([ 8.0, 71.0 ] ); // Go South past the RJ45 Cut Out $$terminal([ 7.0, 70.0 ] ); $$terminal([ 2.0, 70.0 ] ); // Go West back out to the Front Panel $$terminal([ 1.0, 69.0 ] ); $$terminal([ 1.0, 12.0 ] ); // Go South to the top of the lower Front Panel Mount $$terminal([ 2.0, 11.0 ] ); $$terminal([ 8.0, 11.0 ] ); // Go East to clear the lower Front Panel Mount $$terminal([ 9.0, 10.0 ] ); $$terminal([ 9.0, 5.5 ] ); // Go South to pick up the C964 connection $$terminal([ 10.0, 4.5 ] ); $$terminal([ 50.0, 4.5 ] ); // NO_MITER Go East so we can pickup all of the Iso 12V Caps $$terminal([ 50.0, 35.0 ] ); // NO_MITER Go North to pick up these Modules Output Caps $$terminal([ 45.5, 35.0 ] ); // Go West to setup the X for the run north $$terminal([ 44.5, 36.0 ] ); $$terminal([ 44.5, 219.0 ] ); // NO_MITER Go North up to the area of the Bulk Input Filter $$terminal([ 129.0, 219.0 ] ); // Go East along the lower border of the Bulk Input Caps $$terminal([ 130.0, 220.0 ] ); $$terminal([ 130.0, 284.5 ] ); // NO_MITER Go North between Bulk Input Caps and MegArray #1 $$terminal([ 255.0, 284.5 ] ); // Go East over to the smaller group of Bulk Input Caps $$terminal([ 256.0, 283.5 ] ); $$terminal([ 256.0, 215.5 ] ); // NO_MITER Go South past the west border of // this smaller grp of Caps $$terminal([ 292.0, 215.5 ] ); // Go East to pick up the starting X $$terminal([ 293.0, 216.5 ] ); $$terminal([ 293.0, 315.0 ] ); // Go Up the East edge of these Caps to Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Finger to pick up the DCDC_5 Converter and its Caps // // Resolution: Medium // $$initial([ 178.0, 4.5], , @nosnap ); // Start in the SE corner $$terminal([ 179.0, 5.5 ] ); $$terminal([ 179.0, 13.7 ] ); // Go Up the East edge of DCDC_5 $$terminal([ 178.0, 14.7 ] ); $$terminal([ 167.2, 14.7 ] ); // NO_MITER Go West part way across the top of DCDC_5 $$terminal([ 159.8, 22.1 ] ); // NO_MITER Go 45 deg NW $$terminal([ 156.5, 22.1 ] ); // Go West under the Input module pin $$terminal([ 155.5, 23.1 ] ); $$terminal([ 155.5, 26.2 ] ); // Go North to get more Cu on west side of pins. $$terminal([ 154.5, 27.2 ] ); $$terminal([ 146.0, 27.2 ] ); // Go West under Entry module and get more heigth $$terminal([ 143.5, 28.7 ] ); // Go North up past an input module pin $$terminal([ 115.0, 28.7 ] ); // Go West thru most of the Power Entry Module $$terminal([ 114.0, 29.7 ] ); $$terminal([ 114.0, 34.0 ] ); // Go North $$terminal([ 113.0, 35.0 ] ); $$terminal([ 49.0, 35.0 ] ); // NO_MITER Go West to make an overlap $$terminal([ 49.0, 4.5 ] ); // NO_MITER Go South past the Iso 12V connection $$terminal([ 178.0, 4.5 ] ); // Go East back to the DCDC5 Conv and Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_1 Converter and its Caps // // Resolution: Medium // $$initial([ 58.0, 220.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 43.5, 220.0 ] ); // NO_MITER Go West $$terminal([ 43.5, 208.5 ] ); // NO_MITER Go South $$terminal([ 57.0, 208.5 ] ); // Go East $$terminal([ 58.0, 209.5 ] ); $$terminal([ 58.0, 220.0 ] ); // NO_MITER Go Up the East edge to home $$path( "SHAPE_EDIT", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_2 Converter and its Caps // // Resolution: Medium // $$initial([ 92.5, 220.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 82.5, 220.0 ] ); // NO_MITER Go West $$terminal([ 82.5, 210.0 ] ); // Go South $$terminal([ 83.5, 209.0 ] ); $$terminal([ 91.5, 209.0 ] ); // Go East $$terminal([ 92.5, 210.0 ] ); $$terminal([ 92.5, 220.0 ] ); // NO_MITER Go Up the East edge to home $$path( "SHAPE_EDIT", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the Wire Terminal Feed WTERM24 // // Resolution: Medium // $$initial([ 116.5, 220.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 106.5, 220.0 ] ); // NO_MITER Go West $$terminal([ 106.5, 210.0 ] ); // Go South $$terminal([ 107.5, 209.0 ] ); $$terminal([ 115.5, 209.0 ] ); // Go East $$terminal([ 116.5, 210.0 ] ); $$terminal([ 116.5, 220.0 ] ); // NO_MITER Go Up the East edge $$path( "SHAPE_EDIT", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_3 Converter and its Caps // // Resolution: Medium // $$initial([ 127.0, 220.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 117.0, 220.0 ] ); // NO_MITER Go West $$terminal([ 117.0, 210.0 ] ); // Go South $$terminal([ 118.0, 209.0 ] ); $$terminal([ 126.0, 209.0 ] ); // Go East $$terminal([ 127.0, 210.0 ] ); $$terminal([ 127.0, 220.0 ] ); // NO_MITER Go Up the East edge $$path( "SHAPE_EDIT", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_6 Converter and its Caps // // Resolution: Medium // $$initial([ 257.0, 253.5 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 250.0, 253.5 ] ); // Go West $$terminal([ 249.0, 252.5 ] ); $$terminal([ 249.0, 244.5 ] ); // Go South $$terminal([ 250.0, 243.5 ] ); $$terminal([ 257.0, 243.5 ] ); // NO_MITER Go East $$terminal([ 257.0, 253.5 ] ); // NO_MITER Go Up the East edge to home $$path( "SHAPE_EDIT", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_7 Converter and its Caps // // Resolution: Medium // $$initial([ 257.0, 235.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 231.0, 235.0 ] ); // Go West $$terminal([ 230.0, 234.0 ] ); $$terminal([ 230.0, 229.0 ] ); // Go South $$terminal([ 229.0, 228.0 ] ); $$terminal([ 216.0, 228.0 ] ); // Go West $$terminal([ 215.0, 227.0 ] ); $$terminal([ 215.0, 211.5 ] ); // Go South $$terminal([ 216.0, 210.5 ] ); $$terminal([ 234.0, 210.5 ] ); // Go East $$terminal([ 235.0, 211.5 ] ); $$terminal([ 235.0, 214.5 ] ); // Go North a little $$terminal([ 236.0, 215.5 ] ); $$terminal([ 257.0, 215.5 ] ); // NO_MITER Go East $$terminal([ 257.0, 235.0 ] ); // NO_MITER Go Up the East edge to home $$path( "SHAPE_EDIT", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_8 Converter and its Caps // // Resolution: Medium // $$initial([ 257.0, 282.5 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 250.0, 282.5 ] ); // Go West $$terminal([ 249.0, 281.5 ] ); $$terminal([ 249.0, 273.5 ] ); // Go South $$terminal([ 250.0, 272.5 ] ); $$terminal([ 257.0, 272.5 ] ); // NO_MITER Go East $$terminal([ 257.0, 282.5 ] ); // NO_MITER Go Up the East edge to home $$path( "SHAPE_EDIT", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the MegArray #1 feed to the ROD // // Resolution: Hi // $$initial([ 134.2, 285.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 129.0, 285.0 ] ); // NO_MITER Go West $$terminal([ 129.0, 230.0 ] ); // NO_MITER Go South $$terminal([ 133.2, 230.0 ] ); // Go East $$terminal([ 134.2, 231.0 ] ); $$terminal([ 134.2, 285.0 ] ); // NO_MITER Go Up the East edge to home $$path( "SHAPE_EDIT", 0.0 ); // // End the ISO_12V Fills // // // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // // Repete the above on design layer $$path( "DIELECTRIC_1", 0.0 ); // // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // // // Net: FPGA_CORE // // Fill Layer: Signal_11 // // Location: From Converter DCDC_1 to the FPGA // // Resolution: Medium // $$initial([ 78.5, 207.4 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 46.5, 207.4 ] ); // Go West across the Top $$terminal([ 45.5, 206.4 ] ); $$terminal([ 45.5, 134.3 ] ); // NO_MITER Go Down most of the West edge $$terminal([ 64.8, 115.0 ] ); // NO_MITER Go about 45 deg to the SE $$terminal([ 91.2, 115.0 ] ); // NO_MITER Go East Across the Bottom $$terminal([ 91.2, 194.7 ] ); // NO_MITER Go Up the East edge most of the way $$terminal([ 78.5, 207.4 ] ); // NO_MITER Go 45 deg to the NW and Home $$path( "DIELECTRIC_1", 0.0 ); // // Net: FPGA_CORE // // Fill Layer: Signal_11 // // Location: FPGA_CORE Pins under the FPGA // // Resolution: Hi // $$initial([ 89.5, 176.1 ], , @nosnap ); // NO_MITER Start in the NW corner and go CCW $$terminal([ 89.5, 115.0 ] ); // NO_MITER Go Down the West edge $$terminal([ 101.8, 115.0 ] ); // Go a East coming out of the overlap $$terminal([ 102.8, 116.0 ] ); $$terminal([ 102.8, 126.6 ] ); // NO_MITER Go North into the pin array $$terminal([ 106.4, 130.2 ] ); // NO_MITER Go about 45 deg to the NE $$terminal([ 128.8, 130.2 ] ); // Go East Across the Bottom of the FPGA Core pins $$terminal([ 129.8, 131.2 ] ); $$terminal([ 129.8, 148.8 ] ); // Go Up the East edge of the FPGA Core pins $$terminal([ 128.8, 149.8 ] ); $$terminal([ 106.4, 149.8 ] ); // NO_MITER Go West across the Top of the FPGA Core pins $$terminal([ 102.8, 153.4 ] ); // NO_MITER Go about 45 deg to the NW $$terminal([ 102.8, 166.3 ] ); // NO_MITER Go North up through the pin array $$terminal([ 96.1, 173.0 ] ); // NO_MITER Go 45 deg North West $$terminal([ 92.6, 173.0 ] ); // NO_MITER Go West $$terminal([ 89.5, 176.1 ] ); // NO_MITER Go 45 deg North West and Home $$path( "DIELECTRIC_1", 0.0 ); // // Net: MGT_AVCC // // Fill Layer: Signal_11 // // Location: DCDC_2 Output Filter Choke to FPGA // // Resolution: Medium // $$initial([ 126.0, 199.5], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 125.0, 200.5 ] ); $$terminal([ 105.0, 200.5 ] ); // Go West across the Top $$terminal([ 104.0, 199.5 ] ); $$terminal([ 104.0, 195.0 ] ); // NO_MITER Go Down a small West Edge $$terminal([ 91.8, 192.0 ] ); // NO_MITER Go about 45 deg to the SW $$terminal([ 91.8, 174.4 ] ); // Go South $$terminal([ 92.8, 173.4 ] ); $$terminal([ 96.3, 173.4 ] ); // NO_MITER Go West $$terminal([ 103.2, 166.5 ] ); // NO_MITER Go 45 deg SW $$terminal([ 141.5, 166.5 ] ); // NO_MITER Go East $$terminal([ 141.5, 113.5 ] ); // NO_MITER Go South $$terminal([ 91.8, 113.5 ] ); // NO_MITER Go West $$terminal([ 91.8, 101.0 ] ); // Go South $$terminal([ 92.8, 100.0 ] ); $$terminal([ 107.5, 100.0 ] ); // NO_MITER Run East over to just before C91 $$terminal([ 113.0, 94.5 ] ); // NO_MITER Run 45 deg SE to pick up C91 $$terminal([ 119.5, 94.5 ] ); // NO_MITER Run East under C91 $$terminal([ 125.0, 100.0 ] ); // NO_MITER Run 45 deg NE back up to normal Y $$terminal([ 155.5, 100.0 ] ); // Go Finish running East Across the Bottom $$terminal([ 156.5, 101.0 ] ); $$terminal([ 156.5, 186.0 ] ); // NO_MITER Go Up the East edge of the fill $$terminal([ 126.0, 195.0 ] ); // NO_MITER Go about 45 deg to the NW $$terminal([ 126.0, 199.5 ] ); // Go Up the East edge to Home $$path( "DIELECTRIC_1", 0.0 ); // // Net: MGT_AVCC // // Fill Layer: Signal_11 // // Location: MGT_AVCC Pins under the FPGA // // Resolution: Hi // $$initial([ 142.0, 167.0 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 103.2, 167.0 ] ); // NO_MITER Go West across the Top $$terminal([ 103.2, 153.6 ] ); // NO_MITER Go South $$terminal([ 106.6, 150.2 ] ); // NO_MITER Go about 45 deg to the SE $$terminal([ 129.2, 150.2 ] ); // Go East under the FPGA AVCC pins $$terminal([ 130.2, 149.2 ] ); $$terminal([ 130.2, 130.8 ] ); // Go South just East of the Core supply finger $$terminal([ 129.2, 129.8 ] ); $$terminal([ 106.6, 129.8 ] ); // NO_MITER Go West above the FPGA AVCC pins $$terminal([ 103.2, 126.4 ] ); // NO_MITER Go about 45 Deg to the SW $$terminal([ 103.2, 115.6 ] ); // Go South $$terminal([ 102.2, 114.6 ] ); $$terminal([ 92.8, 114.6 ] ); // Go West $$terminal([ 91.8, 113.6 ] ); $$terminal([ 91.8, 113.0 ] ); // NO_MITER Go South $$terminal([ 142.0, 113.0 ] ); // NO_MITER Go East Across the Bottom $$terminal([ 142.0, 167.0 ] ); // NO_MITER Go Up the East edge and Home $$path( "DIELECTRIC_1", 0.0 ); // // Net: FAN_1V8 // // Fill Layer: Signal_11 // // Location: DCDC_7 Output Filter and area under the FEX Data Fanout // // Resolution: Medium // $$initial([ 260.0, 203.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 259.0, 204.0 ] ); $$terminal([ 181.5, 204.0 ] ); // Go far West across all of the Top $$terminal([ 180.5, 203.0 ] ); $$terminal([ 180.5, 139.0 ] ); // Go Soouth along the West side until $$terminal([ 181.5, 138.0 ] ); // we need to start the jog part way East $$terminal([ 191.0, 138.0 ] ); // Go East to get inside of the Eq Enb Ctrl $$terminal([ 192.0, 137.0 ] ); $$terminal([ 192.0, 68.5 ] ); // Go South down the the rest of the West edge $$terminal([ 193.0, 67.5 ] ); $$terminal([ 234.0, 67.5 ] ); // NO_MITER Go East across Part of the Bottom // to pick up some bypass capacitors $$terminal([ 238.5, 72.0 ] ); // NO_MITER Go NE at 45 Deg to get above // the worst of the Ethernet stuff. $$terminal([ 258.0, 72.0 ] ); // Go East across the rest of the Bottom $$terminal([ 259.0, 73.0 ] ); $$terminal([ 259.0, 174.5 ] ); // NO_MITER Go North up the East edge $$terminal([ 262.0, 177.5 ] ); // NO_MITER Go NE at 45 degrees $$terminal([ 262.0, 193.0 ] ); // NO_MITER Go part way up the East edge $$terminal([ 260.0, 195.0 ] ); // NO_MITER Jog back NW at 45 deg to clear TRNS4 $$terminal([ 260.0, 203.0 ] ); // Go Up the East edge to Home $$path( "DIELECTRIC_1", 0.0 ); // // Net: AVDDL_FLTR_A // // Fill Layer: Signal_11 // // Location: AVDDL Fill under Switch Chip "A" aka U31 // // Resolution: Medium or HI // $$initial([ 141.5, 81.0], , @nosnap ); // Start in the NE corner $$terminal([ 140.5, 82.0 ] ); $$terminal([ 111.0, 82.0 ] ); // Go West across the Top $$terminal([ 110.0, 81.0 ] ); $$terminal([ 110.0, 49.7 ] ); // Go Down the West edge $$terminal([ 111.0, 48.7 ] ); $$terminal([ 140.5, 48.7 ] ); // Go East Across the Bottom $$terminal([ 141.5, 49.7 ] ); $$terminal([ 141.5, 81.0 ] ); // Go Up the rest of the east edge and home $$path( "DIELECTRIC_1", 0.0 ); // // Net: AVDDL_FLTR_B // // Fill Layer: Signal_11 // // Location: AVDDL Fill under Switch Chip "B" aka U32 // // Resolution: Medium or HI // $$initial([ 91.5, 81.0], , @nosnap ); // Start in the NE corner $$terminal([ 90.5, 82.0 ] ); $$terminal([ 61.0, 82.0 ] ); // Go West across the Top $$terminal([ 60.0, 81.0 ] ); $$terminal([ 60.0, 49.7 ] ); // Go Down the West edge $$terminal([ 61.0, 48.7 ] ); $$terminal([ 90.5, 48.7 ] ); // Go East Across the Bottom $$terminal([ 91.5, 49.7 ] ); $$terminal([ 91.5, 81.0 ] ); // Go Up the rest of the east edge and home $$path( "DIELECTRIC_1", 0.0 ); // // Net: AVDDL_FLTR_C // // Fill Layer: Signal_11 // // Location: AVDDL Fill under Switch Chip "C" aka U33 // // Resolution: Medium or HI // $$initial([ 184.5, 81.0], , @nosnap ); // Start in the NE corner $$terminal([ 183.5, 82.0 ] ); $$terminal([ 154.0, 82.0 ] ); // Go West across the Top $$terminal([ 153.0, 81.0 ] ); $$terminal([ 153.0, 49.7 ] ); // Go Down the West edge $$terminal([ 154.0, 48.7 ] ); $$terminal([ 183.5, 48.7 ] ); // Go East Across the Bottom $$terminal([ 184.5, 49.7 ] ); $$terminal([ 184.5, 81.0 ] ); // Go Up the rest of the east edge and home $$path( "DIELECTRIC_1", 0.0 ); // // Net: Phys_U21_DVDDL // // Fill Layer: Signal_11 // // Location: DVDDL Fill under Phys Chip U21 // // Resolution: HI // $$initial([ 60.0, 119.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 52.8, 119.0 ] ); // Go West across the Top $$terminal([ 51.8, 118.0 ] ); $$terminal([ 51.8, 106.2 ] ); // Go Down the West edge $$terminal([ 52.8, 105.2 ] ); $$terminal([ 60.0, 105.2 ] ); // Go East Across the Bottom $$terminal([ 61.0, 106.2 ] ); $$terminal([ 61.0, 118.0 ] ); // NO_MITER Go Up the East edge part way $$terminal([ 60.0, 119.0 ] ); // NO_MITER Go NW 45 deg and home $$path( "DIELECTRIC_1", 0.0 ); // // Net: Phys_U22_DVDDL // // Fill Layer: Signal_11 // // Location: DVDDL Fill under Phys Chip U22 // // Resolution: HI // $$initial([ 61.0, 100.0], , @nosnap ); // Start in the NE corner $$terminal([ 60.0, 101.0 ] ); $$terminal([ 52.8, 101.0 ] ); // Go West across the Top $$terminal([ 51.8, 100.0 ] ); $$terminal([ 51.8, 88.2 ] ); // Go Down the West edge $$terminal([ 52.8, 87.2 ] ); $$terminal([ 60.0, 87.2 ] ); // Go East Across the Bottom $$terminal([ 61.0, 88.2 ] ); $$terminal([ 61.0, 100.0 ] ); // Go Up the East edge and home $$path( "DIELECTRIC_1", 0.0 ); // // Net: CLK_3V3 // // Fill Layer: Signal_11 // // Location: CLK_3V3 Fill under Clock Generator PLLs U502 and U506 // // Resolution: Medium ? // $$initial([ 80.0, 99.0], , @nosnap ); // Start in the NW corner and go CCW $$terminal([ 79.0, 98.0 ] ); $$terminal([ 79.0, 84.0 ] ); // Go Down the West edge $$terminal([ 80.0, 83.0 ] ); $$terminal([ 163.0, 83.0 ] ); // Go East across the Bottom $$terminal([ 164.0, 84.0 ] ); $$terminal([ 164.0, 98.0 ] ); // Go Up the East edge $$terminal([ 163.0, 99.0 ] ); $$terminal([ 125.0, 99.0 ] ); // NO_MITER Run West over to just before C91 $$terminal([ 120.0, 94.0 ] ); // NO_MITER Run 45 deg SW to avoid C91 $$terminal([ 112.5, 94.0 ] ); // NO_MITER Run West under C91 $$terminal([ 107.5, 99.0 ] ); // NO_MITER Run 45 deg NW back up to normal Y $$terminal([ 80.0, 99.0 ] ); // Finish running West across the Top edge and home $$path( "DIELECTRIC_1", 0.0 ); // // Net: CNST_5V0 // // Fill Layer: Signal_11 // // Location: North-West corner of the card // // Resolution: Medium // $$initial([ 112.0, 315.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 111.0, 316.0 ] ); $$terminal([ 24.0, 316.0 ] ); // Go West $$terminal([ 23.0, 315.0 ] ); $$terminal([ 23.0, 297.0 ] ); // Go South $$terminal([ 24.0, 296.0 ] ); $$terminal([ 98.0, 296.0 ] ); // NO_MITER Go part way back East $$terminal([ 112.0, 310.0 ] ); // NO_MITER Go 45 deg NE cutting the corner // to give more space for ISO_12V $$terminal([ 112.0, 315.0 ] ); // Go Up the East edge to home $$path( "DIELECTRIC_1", 0.0 ); // // Start the ISO_12V Shapes on Signal_11 // // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Isolated +12V from its ATCA Module // to the Input Filter Capacitors for the DCDC Converters // // NOTES: 8 of the following Shapes are used to generate the // ISO_12V Fills on both pcb layers Sig_11 and Sig_12. // // Resolution: Medium // $$initial([ 293.0, 315.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 292.0, 316.0 ] ); $$terminal([ 114.0, 316.0 ] ); // Go West across part of the Top $$terminal([ 113.0, 315.0 ] ); $$terminal([ 113.0, 309.3 ] ); // NO_MITER Go South to clear the CNST_5V0 fill $$terminal([ 98.7, 295.0 ] ); // NO_MITER Go 45 deg SW to clear the CNST_5V0 $$terminal([ 50.0, 295.0 ] ); // Go West across the rest of the Bulk Input Filter $$terminal([ 49.0, 294.0 ] ); $$terminal([ 49.0, 264.0 ] ); // Go South down past some of the Bulk Input Filter $$terminal([ 48.0, 263.0 ] ); $$terminal([ 2.0, 263.0 ] ); // Go East out to the Front Panel $$terminal([ 1.0, 262.0 ] ); $$terminal([ 1.0, 135.0 ] ); // Go South to the top of the RJ45 Cut Out $$terminal([ 2.0, 134.0 ] ); $$terminal([ 7.0, 134.0 ] ); // Go East to clear the Cut Out for the RJ45s $$terminal([ 8.0, 133.0 ] ); $$terminal([ 8.0, 71.0 ] ); // Go South past the RJ45 Cut Out $$terminal([ 7.0, 70.0 ] ); $$terminal([ 2.0, 70.0 ] ); // Go West back out to the Front Panel $$terminal([ 1.0, 69.0 ] ); $$terminal([ 1.0, 12.0 ] ); // Go South to the top of the lower Front Panel Mount $$terminal([ 2.0, 11.0 ] ); $$terminal([ 8.0, 11.0 ] ); // Go East to clear the lower Front Panel Mount $$terminal([ 9.0, 10.0 ] ); $$terminal([ 9.0, 5.5 ] ); // Go South to pick up the C964 connection $$terminal([ 10.0, 4.5 ] ); $$terminal([ 50.0, 4.5 ] ); // NO_MITER Go East so we can pickup all of the Iso 12V Caps $$terminal([ 50.0, 35.0 ] ); // NO_MITER Go North to pick up these Modules Output Caps $$terminal([ 45.5, 35.0 ] ); // Go West to setup the X for the run north $$terminal([ 44.5, 36.0 ] ); $$terminal([ 44.5, 219.0 ] ); // NO_MITER Go North up to the area of the Bulk Input Filter $$terminal([ 129.0, 219.0 ] ); // Go East along the lower border of the Bulk Input Caps $$terminal([ 130.0, 220.0 ] ); $$terminal([ 130.0, 284.5 ] ); // NO_MITER Go North between Bulk Input Caps and MegArray #1 $$terminal([ 255.0, 284.5 ] ); // Go East over to the smaller group of Bulk Input Caps $$terminal([ 256.0, 283.5 ] ); $$terminal([ 256.0, 215.5 ] ); // NO_MITER Go South past the west border of // this smaller grp of Caps $$terminal([ 292.0, 215.5 ] ); // Go East to pick up the starting X $$terminal([ 293.0, 216.5 ] ); $$terminal([ 293.0, 315.0 ] ); // Go Up the East edge of these Caps to Home $$path( "DIELECTRIC_1", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Finger to pick up the DCDC_5 Converter and its Caps // // Resolution: Medium // $$initial([ 178.0, 4.5], , @nosnap ); // Start in the SE corner $$terminal([ 179.0, 5.5 ] ); $$terminal([ 179.0, 13.7 ] ); // Go Up the East edge of DCDC_5 $$terminal([ 178.0, 14.7 ] ); $$terminal([ 167.2, 14.7 ] ); // NO_MITER Go West part way across the top of DCDC_5 $$terminal([ 159.8, 22.1 ] ); // NO_MITER Go 45 deg NW $$terminal([ 156.5, 22.1 ] ); // Go West under the Input module pin $$terminal([ 155.5, 23.1 ] ); $$terminal([ 155.5, 26.2 ] ); // Go North to get more Cu on west side of pins. $$terminal([ 154.5, 27.2 ] ); $$terminal([ 146.0, 27.2 ] ); // Go West under Entry module and get more heigth $$terminal([ 143.5, 28.7 ] ); // Go North up past an input module pin $$terminal([ 115.0, 28.7 ] ); // Go West thru most of the Power Entry Module $$terminal([ 114.0, 29.7 ] ); $$terminal([ 114.0, 34.0 ] ); // Go North $$terminal([ 113.0, 35.0 ] ); $$terminal([ 49.0, 35.0 ] ); // NO_MITER Go West to make an overlap $$terminal([ 49.0, 4.5 ] ); // NO_MITER Go South past the Iso 12V connection $$terminal([ 178.0, 4.5 ] ); // Go East back to the DCDC5 Conv and Home $$path( "DIELECTRIC_1", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_1 Converter and its Caps // // Resolution: Medium // $$initial([ 58.0, 220.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 43.5, 220.0 ] ); // NO_MITER Go West $$terminal([ 43.5, 208.5 ] ); // NO_MITER Go South $$terminal([ 57.0, 208.5 ] ); // Go East $$terminal([ 58.0, 209.5 ] ); $$terminal([ 58.0, 220.0 ] ); // NO_MITER Go Up the East edge to home $$path( "DIELECTRIC_1", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_2 Converter and its Caps // // Resolution: Medium // $$initial([ 92.5, 220.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 82.5, 220.0 ] ); // NO_MITER Go West $$terminal([ 82.5, 210.0 ] ); // Go South $$terminal([ 83.5, 209.0 ] ); $$terminal([ 91.5, 209.0 ] ); // Go East $$terminal([ 92.5, 210.0 ] ); $$terminal([ 92.5, 220.0 ] ); // NO_MITER Go Up the East edge to home $$path( "DIELECTRIC_1", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the Wire Terminal Feed WTERM24 // // Resolution: Medium // $$initial([ 116.5, 220.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 106.5, 220.0 ] ); // NO_MITER Go West $$terminal([ 106.5, 210.0 ] ); // Go South $$terminal([ 107.5, 209.0 ] ); $$terminal([ 115.5, 209.0 ] ); // Go East $$terminal([ 116.5, 210.0 ] ); $$terminal([ 116.5, 220.0 ] ); // NO_MITER Go Up the East edge $$path( "DIELECTRIC_1", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_3 Converter and its Caps // // Resolution: Medium // $$initial([ 127.0, 220.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 117.0, 220.0 ] ); // NO_MITER Go West $$terminal([ 117.0, 210.0 ] ); // Go South $$terminal([ 118.0, 209.0 ] ); $$terminal([ 126.0, 209.0 ] ); // Go East $$terminal([ 127.0, 210.0 ] ); $$terminal([ 127.0, 220.0 ] ); // NO_MITER Go Up the East edge $$path( "DIELECTRIC_1", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_6 Converter and its Caps // // Resolution: Medium // $$initial([ 257.0, 253.5 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 250.0, 253.5 ] ); // Go West $$terminal([ 249.0, 252.5 ] ); $$terminal([ 249.0, 244.5 ] ); // Go South $$terminal([ 250.0, 243.5 ] ); $$terminal([ 257.0, 243.5 ] ); // NO_MITER Go East $$terminal([ 257.0, 253.5 ] ); // NO_MITER Go Up the East edge to home $$path( "DIELECTRIC_1", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_7 Converter and its Caps // // Resolution: Medium // $$initial([ 257.0, 235.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 231.0, 235.0 ] ); // Go West $$terminal([ 230.0, 234.0 ] ); $$terminal([ 230.0, 229.0 ] ); // Go South $$terminal([ 229.0, 228.0 ] ); $$terminal([ 216.0, 228.0 ] ); // Go West $$terminal([ 215.0, 227.0 ] ); $$terminal([ 215.0, 211.5 ] ); // Go South $$terminal([ 216.0, 210.5 ] ); $$terminal([ 234.0, 210.5 ] ); // Go East $$terminal([ 235.0, 211.5 ] ); $$terminal([ 235.0, 214.5 ] ); // Go North a little $$terminal([ 236.0, 215.5 ] ); $$terminal([ 257.0, 215.5 ] ); // NO_MITER Go East $$terminal([ 257.0, 235.0 ] ); // NO_MITER Go Up the East edge to home $$path( "DIELECTRIC_1", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the DCDC_8 Converter and its Caps // // Resolution: Medium // $$initial([ 257.0, 282.5 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 250.0, 282.5 ] ); // Go West $$terminal([ 249.0, 281.5 ] ); $$terminal([ 249.0, 273.5 ] ); // Go South $$terminal([ 250.0, 272.5 ] ); $$terminal([ 257.0, 272.5 ] ); // NO_MITER Go East $$terminal([ 257.0, 282.5 ] ); // NO_MITER Go Up the East edge to home $$path( "DIELECTRIC_1", 0.0 ); // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Tab to to pick up the MegArray #1 feed to the ROD // // Resolution: Hi // $$initial([ 134.2, 285.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 129.0, 285.0 ] ); // NO_MITER Go West $$terminal([ 129.0, 230.0 ] ); // NO_MITER Go South $$terminal([ 133.2, 230.0 ] ); // Go East $$terminal([ 134.2, 231.0 ] ); $$terminal([ 134.2, 285.0 ] ); // NO_MITER Go Up the East edge to home $$path( "DIELECTRIC_1", 0.0 ); // // End the ISO_12V Fills // // // // // Shape Edit Section of the // -==========----------------- // // Hub Module Printed Circuit Board Geometry File // -------------------------------------------------- // // // Area Fills on Signal Layer 12 <--- // ---------------------------==== // // // // Original Rev. 3-Feb-2016 // Current Rev. 19-Nov-2016 // // // Notes: // // - These are Area Fills because they are on a Signal layer // in the Mentor design. // // - The principal power nets that are distributed on Signal_12 // are: FPGA_CORE and MGT_AVTT. // // - These fills are kept back at least 4.5 mm from the // top and bottom edges so that the area fills will not be // exposed when the top and bottom edges are milled to // allow this card to fit into the crate card guides. // // - These fills are kept back at least 1mm from the front // and back edges to comply with normal decorum. // // - EVERYTHING in this Signal_12 fill file is repeated // on both the layers: SHAPE_EDIT and DIELECTRIC_2. // See the bottom section of this file. // // - As of 17-Oct-2016 there are 9 shapes defined in this file. // // - List of Fills in this file: // // FPGA_CORE: Converter DCDC_1 to the FPGA Core pins // MGT_AVTT: Converter DCDC_3 to the FPGA AVTT pins // FAN_1V8: // SWCH_1V2: // ISO_12V: // CLK_2V5: // IPMC_3V3: // // // // - Currently many sections of the ISO_12V fills on Signal_11 and // Signal_12 have exactly the same Shape pattern. // // NOTE: For those sections of the overall ISO_12V fill that have // exactly the same Shape on Signal_11 and Signal_12, I'm // only generating this Shape in the Signal_11 Shape // source file. I'm not repeating it in the // Signal_12 Shape source file. That is, some of the // ISO_12V fills on both layers Sig_11 and Sig_12 will // be based on the Shapes that come from the Sig_11 Shape // source file. // // I do not want to risk confusion by having two copies // of exactly the same Shape in the Hub design. // // There is no point in needing to edit both the Sig_11 // and Sig_12 files to make a change in the ISO_12V fills. // // // // // Net: FPGA_CORE // // Fill Layer: Signal_12 // // Location: From Converter DCDC_1 to the FPGA // // Resolution: Medium // $$initial([ 78.5, 207.4 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 46.5, 207.4 ] ); // Go West across the Top $$terminal([ 45.5, 206.4 ] ); $$terminal([ 45.5, 134.3 ] ); // NO_MITER Go Down most of the West edge $$terminal([ 64.3, 115.5 ] ); // NO_MITER Go about 45 deg to the SE $$terminal([ 89.5, 115.5 ] ); // Go East Across the Bottom $$terminal([ 90.5, 116.5 ] ); $$terminal([ 90.5, 195.4 ] ); // NO_MITER Go Up the East edge most of the way $$terminal([ 78.5, 207.4 ] ); // NO_MITER Go 45 deg to the NW and Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: FPGA_CORE // // Fill Layer: Signal_12 // // Location: FPGA_CORE Pins under the FPGA // // Resolution: HI // $$initial([ 90.5, 153.3 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 89.5, 153.3 ] ); // NO_MITER Go West just a little for overlap $$terminal([ 89.5, 126.7 ] ); // NO_MITER Go South $$terminal([ 90.5, 126.7 ] ); // NO_MITER Go East to the start of the Core finger $$terminal([ 91.0, 127.2 ] ); // NO_MITER Go about 45 deg to the NE $$terminal([ 127.8, 127.2 ] ); // Go East Across the Bottom of the FPGA Core pins $$terminal([ 128.8, 128.2 ] ); $$terminal([ 128.8, 151.8 ] ); // Go Up the East edge of the FPGA Core pins $$terminal([ 127.8, 152.8 ] ); $$terminal([ 91.0, 152.8 ] ); // NO_MITER Go West across the Top of the FPGA Core pins $$terminal([ 90.5, 153.3 ] ); // NO_MITER Go about 45 deg to the NW and Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: MGT_AVTT // // Fill Layer: Signal_12 // // Location: DCDC_3 Output Filter Choke to FPGA // // Resolution: Medium // $$initial([ 158.0, 200.5 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 132.5, 200.5 ] ); // Go West across the Top $$terminal([ 131.5, 199.5 ] ); $$terminal([ 131.5, 193.5 ] ); // Go Down a small West Edge $$terminal([ 130.5, 192.5 ] ); $$terminal([ 121.5, 192.5 ] ); // NO_MITER Go East across part of the top of the fill $$terminal([ 117.0, 188.0 ] ); // NO_MITER Go 45 deg SW $$terminal([ 92.0, 188.0 ] ); // Go East across the rest of the top of the fill $$terminal([ 91.0, 187.0 ] ); $$terminal([ 91.0, 166.5 ] ); // NO_MITER Go Down the West Edge of this fill $$terminal([ 141.5, 166.5 ] ); // NO_MITER Go East $$terminal([ 141.5, 113.5 ] ); // NO_MITER Go South $$terminal([ 91.0, 113.5 ] ); // NO_MITER Go West $$terminal([ 91.0, 99.0 ] ); // Go South $$terminal([ 92.0, 98.0 ] ); $$terminal([ 104.0, 98.0 ] ); // Go East across part of the bottom $$terminal([ 105.0, 97.0 ] ); // to pickup some bypass capacitors $$terminal([ 105.0, 90.5 ] ); // Go South to get under these caps $$terminal([ 106.0, 89.5 ] ); $$terminal([ 127.5, 89.5 ] ); // Go East undet these caps $$terminal([ 128.5, 90.5 ] ); $$terminal([ 128.5, 98.5 ] ); // Go North back up to the norm line $$terminal([ 129.5, 99.5 ] ); $$terminal([ 154.5, 99.5 ] ); // Finish Going East Across the Bottom $$terminal([ 155.5, 100.5 ] ); $$terminal([ 155.5, 144.0 ] ); // NO_MITER Go North part way up the East edge $$terminal([ 162.0, 150.5 ] ); // NO_MITER Go 45 degrees to the NE $$terminal([ 162.0, 196.5 ] ); // NO_MITER Go North most of the rest of the way $$terminal([ 158.0, 200.5 ] ); // NO_MITER Go 45 deg NW to Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: MGT_AVTT // // Fill Layer: Signal_12 // // Location: MGT_AVTT pins under the FPGA // // Resolution: HI // $$initial([ 142.0, 167.0 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 91.0, 167.0 ] ); // NO_MITER Go West $$terminal([ 91.0, 153.7 ] ); // NO_MITER Go Down the West Edge of this fill $$terminal([ 91.5, 153.2 ] ); // NO_MITER Go about 45 deg to the SE $$terminal([ 128.2, 153.2 ] ); // Go East under the FPGA AVTT pins $$terminal([ 129.2, 152.2 ] ); $$terminal([ 129.2, 127.8 ] ); // Go South past the FPGA Core finger $$terminal([ 128.2, 126.8 ] ); $$terminal([ 91.5, 126.8 ] ); // NO_MITER Go West above the FPGA AVTT pins $$terminal([ 91.0, 126.3 ] ); // NO_MITER Go about 45 Deg to the SW $$terminal([ 91.0, 113.0 ] ); // NO_MITER Go South $$terminal([ 142.0, 113.0 ] ); // NO_MITER Go East Across the Bottom $$terminal([ 142.0, 167.0 ] ); // NO_MITER Go North to Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: FAN_1V8 // // Fill Layer: Signal_12 // // Location: DCDC_7 Output and area under the FEX Data Fanout Chips // // Resolution: Medium // $$initial([ 260.0, 203.0], , @nosnap ); // Start in the NE corner $$terminal([ 259.0, 204.0 ] ); $$terminal([ 181.5, 204.0 ] ); // Go far West across all of the Top $$terminal([ 180.5, 203.0 ] ); $$terminal([ 180.5, 103.5 ] ); // NO_MITER Go Soouth along the West side until // we need to start the jog part way East $$terminal([ 191.0, 93.0 ] ); // NO_MITER Go SE at about 45 degrees to jog back East $$terminal([ 191.0, 68.5 ] ); // Go South down the the rest of the West edge $$terminal([ 192.0, 67.5 ] ); $$terminal([ 234.0, 67.5 ] ); // NO_MITER Go East part way across the bottom // under the bypass caps: C256, C262, C278 $$terminal([ 238.5, 72.0 ] ); // NO_MITER Go 45 deg NE back to normal Y $$terminal([ 259.0, 72.0 ] ); // Go the rest of the way East across the bottom $$terminal([ 260.0, 73.0 ] ); $$terminal([ 260.0, 171.5 ] ); // NO_MITER Go Up the East edge most of the way $$terminal([ 262.5, 174.0 ] ); // NO_MITER Go 45 degress NE to jog East to get more // width in the pinch by the low Row of Fanouts $$terminal([ 262.5, 192.5 ] ); // NO_MITER Go North until we need to jog back West // to avoid the Ethernet Magnetics $$terminal([ 260.0, 195.0 ] ); // NO_MITER Go 45 degrees NW to jog West of the ENet Mag. $$terminal([ 260.0, 203.0 ] ); // Go Up the rest of the East edge to Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: SWCH_1V2 // // Fill Layer: Signal_12 // // Location: DCDC_5 Output to area under the 3 Switch chips and 2 Phys chips // // Resolution: Medium // $$initial([ 185.0, 15.7], , @nosnap ); // Start in the SE corner $$terminal([ 186.0, 16.7 ] ); $$terminal([ 186.0, 40.8 ] ); // Go North part way up to the Switch chips $$terminal([ 187.0, 41.8 ] ); $$terminal([ 188.6, 41.8 ] ); // Go East to pick up all of Switch chip "C" $$terminal([ 189.6, 42.8 ] ); $$terminal([ 189.6, 81.5 ] ); // Go North up the East side of the Switch chip "C" $$terminal([ 188.6, 82.5 ] ); $$terminal([ 128.5, 82.5 ] ); // NO_MITER Go part way West across the top of the Switch chips $$terminal([ 127.0, 84.0 ] ); // NO_MITER Go North a little to get more Cu above Switches $$terminal([ 73.0, 84.0 ] ); // Finish going West across the top of the Switch chips $$terminal([ 72.0, 85.0 ] ); $$terminal([ 72.0, 107.0 ] ); // NO_MITER Go North part way up the Phys chip's East side $$terminal([ 54.0, 125.0 ] ); // NO_MITER Go NW at 45 deg up to the top of the Phys chips $$terminal([ 47.0, 125.0 ] ); // Go West across the Top of the Phys chips $$terminal([ 46.0, 124.0 ] ); $$terminal([ 46.0, 38.0 ] ); // Go South down the West edge of the Phys chips $$terminal([ 47.0, 37.0 ] ); // and the Switch chips $$terminal([ 158.8, 37.0 ] ); // Go East under the bottom edge of the Switch chips $$terminal([ 159.8, 36.0 ] ); $$terminal([ 159.8, 23.4 ] ); // NO_MITER Go South part way down the West edge of DCDC_5 $$terminal([ 167.5, 15.7 ] ); // NO_MITER Go 45 deg SE down the rest of DCDC_5 West edge $$terminal([ 185.0, 15.7 ] ); // Go East under DCDC_5 to Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: CLK_2V5 // // Fill Layer: Signal_12 // // Location: Clock Fanout Area especially under: U503, U504, U507 // // Resolution: Medium ?? // $$initial([ 130.0, 99.0], , @nosnap ); // Start in the Lower NW corner and go CCW $$terminal([ 129.0, 98.0 ] ); $$terminal([ 129.0, 84.0 ] ); // Go Down the lower West edge $$terminal([ 130.0, 83.0 ] ); $$terminal([ 178.5, 83.0 ] ); // Go East across the Bottom $$terminal([ 179.5, 84.0 ] ); $$terminal([ 179.5, 143.5 ] ); // Go Up the East edge $$terminal([ 178.5, 144.5 ] ); $$terminal([ 157.0, 144.5 ] ); // Go West across part of the Top $$terminal([ 156.0, 143.5 ] ); $$terminal([ 156.0, 100.0 ] ); // Go Down the upper West edge $$terminal([ 155.0, 99.0 ] ); $$terminal([ 130.0, 99.0 ] ); // Go West across the rest of the Top and Home $$path( "SHAPE_EDIT", 0.0 ); // // Net: IPMC_3V3 // // Fill Layer: Signal_12 // // Location: IPMC_3V3 Fill Under Northern part of IPMC Socket and East of there // // Resolution: Midium // $$initial([ 50.5, 304.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 49.5, 305.0 ] ); $$terminal([ 24.0, 305.0 ] ); // Go West across the Top $$terminal([ 23.0, 304.0 ] ); $$terminal([ 23.0, 261.0 ] ); // Go Down the West edge $$terminal([ 24.0, 260.0 ] ); $$terminal([ 49.5, 260.0 ] ); // Go East Across the Bottom $$terminal([ 50.5, 261.0 ] ); $$terminal([ 50.5, 304.0 ] ); // Go Up the East edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Start the ISO_12V Shapes on Signal_12 // // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Isolated +12V from its ATCA Module to the // Bulk Input Filter Capacitors for the DCDC Converters // // NOTES: This ISO_12V Shape is different on Sig_11 and Sig_12 // // The approximately 8 other ISO_12V Fill Shapes are // exactly the same on Sig_11 and Sig_12. These Shapes // are in the Sig_11 file and are not repeated in this // Sig_12 Shape source file. // // Resolution: Medium // $$initial([ 293.0, 315.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 292.0, 316.0 ] ); $$terminal([ 52.0, 316.0 ] ); // Go West across part of the Top $$terminal([ 51.0, 315.0 ] ); $$terminal([ 51.0, 260.0 ] ); // Go South down past some of the Bulk Input Filter $$terminal([ 50.0, 259.0 ] ); $$terminal([ 2.0, 259.0 ] ); // Go East out to the Front Panel $$terminal([ 1.0, 258.0 ] ); $$terminal([ 1.0, 135.0 ] ); // Go South to the top of the RJ45 Cut Out $$terminal([ 2.0, 134.0 ] ); $$terminal([ 7.0, 134.0 ] ); // Go East to clear the Cut Out for the RJ45s $$terminal([ 8.0, 133.0 ] ); $$terminal([ 8.0, 71.0 ] ); // Go South past the RJ45 Cut Out $$terminal([ 7.0, 70.0 ] ); $$terminal([ 2.0, 70.0 ] ); // Go West back out to the Front Panel $$terminal([ 1.0, 69.0 ] ); $$terminal([ 1.0, 12.0 ] ); // Go South to the top of the lower Front Panel Mount $$terminal([ 2.0, 11.0 ] ); $$terminal([ 8.0, 11.0 ] ); // Go East to clear the lower Front Panel Mount $$terminal([ 9.0, 10.0 ] ); $$terminal([ 9.0, 5.5 ] ); // Go South to pick up the C964 connection $$terminal([ 10.0, 4.5 ] ); $$terminal([ 50.0, 4.5 ] ); // NO_MITER Go East so we can pickup all of the Iso 12V Caps $$terminal([ 50.0, 35.0 ] ); // NO_MITER Go North to pick up these Modules Output Caps $$terminal([ 45.5, 35.0 ] ); // Go West to setup the X for the run north $$terminal([ 44.5, 36.0 ] ); $$terminal([ 44.5, 219.0 ] ); // NO_MITER Go North up to the area of the Bulk Input Filter $$terminal([ 129.0, 219.0 ] ); // Go East along the lower border of the Bulk Input Caps $$terminal([ 130.0, 220.0 ] ); $$terminal([ 130.0, 284.5 ] ); // NO_MITER Go North between Bulk Input Caps and MegArray #1 $$terminal([ 255.0, 284.5 ] ); // Go East over to the smaller group of Bulk Input Caps $$terminal([ 256.0, 283.5 ] ); $$terminal([ 256.0, 220.0 ] ); // NO_MITER Go South past the west border of // this smaller grp of Caps $$terminal([ 292.0, 220.0 ] ); // Go East to pick up the starting X $$terminal([ 293.0, 221.0 ] ); $$terminal([ 293.0, 315.0 ] ); // Go Up the East edge of these Caps to Home $$path( "SHAPE_EDIT", 0.0 ); // // Do not repeat the fill shapes from the Signal_11 // fill file that are used for feeding ISO_12V to the // individual DCDC Converters on both Signal_11 and Signal_12. // // These shapes appear only in the Signal_11 fill shape file // but they are used when generating the fills for both Signal_11 // on for Signal_12. // // // End the ISO_12V Fills // // // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // // Repete the above on design layer $$path( "DIELECTRIC_2", 0.0 ); // // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // // // Net: FPGA_CORE // // Fill Layer: Signal_12 // // Location: From Converter DCDC_1 to the FPGA // // Resolution: Medium // $$initial([ 78.5, 207.4 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 46.5, 207.4 ] ); // Go West across the Top $$terminal([ 45.5, 206.4 ] ); $$terminal([ 45.5, 134.3 ] ); // NO_MITER Go Down most of the West edge $$terminal([ 64.3, 115.5 ] ); // NO_MITER Go about 45 deg to the SE $$terminal([ 89.5, 115.5 ] ); // Go East Across the Bottom $$terminal([ 90.5, 116.5 ] ); $$terminal([ 90.5, 195.4 ] ); // NO_MITER Go Up the East edge most of the way $$terminal([ 78.5, 207.4 ] ); // NO_MITER Go 45 deg to the NW and Home $$path( "DIELECTRIC_2", 0.0 ); // // Net: FPGA_CORE // // Fill Layer: Signal_12 // // Location: FPGA_CORE Pins under the FPGA // // Resolution: HI // $$initial([ 90.5, 153.3 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 89.5, 153.3 ] ); // NO_MITER Go West just a little for overlap $$terminal([ 89.5, 126.7 ] ); // NO_MITER Go South $$terminal([ 90.5, 126.7 ] ); // NO_MITER Go East to the start of the Core finger $$terminal([ 91.0, 127.2 ] ); // NO_MITER Go about 45 deg to the NE $$terminal([ 127.8, 127.2 ] ); // Go East Across the Bottom of the FPGA Core pins $$terminal([ 128.8, 128.2 ] ); $$terminal([ 128.8, 151.8 ] ); // Go Up the East edge of the FPGA Core pins $$terminal([ 127.8, 152.8 ] ); $$terminal([ 91.0, 152.8 ] ); // NO_MITER Go West across the Top of the FPGA Core pins $$terminal([ 90.5, 153.3 ] ); // NO_MITER Go about 45 deg to the NW and Home $$path( "DIELECTRIC_2", 0.0 ); // // Net: MGT_AVTT // // Fill Layer: Signal_12 // // Location: DCDC_3 Output Filter Choke to FPGA // // Resolution: Medium // $$initial([ 158.0, 200.5 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 132.5, 200.5 ] ); // Go West across the Top $$terminal([ 131.5, 199.5 ] ); $$terminal([ 131.5, 193.5 ] ); // Go Down a small West Edge $$terminal([ 130.5, 192.5 ] ); $$terminal([ 121.5, 192.5 ] ); // NO_MITER Go East across part of the top of the fill $$terminal([ 117.0, 188.0 ] ); // NO_MITER Go 45 deg SW $$terminal([ 92.0, 188.0 ] ); // Go East across the rest of the top of the fill $$terminal([ 91.0, 187.0 ] ); $$terminal([ 91.0, 166.5 ] ); // NO_MITER Go Down the West Edge of this fill $$terminal([ 141.5, 166.5 ] ); // NO_MITER Go East $$terminal([ 141.5, 113.5 ] ); // NO_MITER Go South $$terminal([ 91.0, 113.5 ] ); // NO_MITER Go West $$terminal([ 91.0, 99.0 ] ); // Go South $$terminal([ 92.0, 98.0 ] ); $$terminal([ 104.0, 98.0 ] ); // Go East across part of the bottom $$terminal([ 105.0, 97.0 ] ); // to pickup some bypass capacitors $$terminal([ 105.0, 90.5 ] ); // Go South to get under these caps $$terminal([ 106.0, 89.5 ] ); $$terminal([ 127.5, 89.5 ] ); // Go East undet these caps $$terminal([ 128.5, 90.5 ] ); $$terminal([ 128.5, 98.5 ] ); // Go North back up to the norm line $$terminal([ 129.5, 99.5 ] ); $$terminal([ 154.5, 99.5 ] ); // Finish Going East Across the Bottom $$terminal([ 155.5, 100.5 ] ); $$terminal([ 155.5, 144.0 ] ); // NO_MITER Go North part way up the East edge $$terminal([ 162.0, 150.5 ] ); // NO_MITER Go 45 degrees to the NE $$terminal([ 162.0, 196.5 ] ); // NO_MITER Go North most of the rest of the way $$terminal([ 158.0, 200.5 ] ); // NO_MITER Go 45 deg NW to Home $$path( "DIELECTRIC_2", 0.0 ); // // Net: MGT_AVTT // // Fill Layer: Signal_12 // // Location: MGT_AVTT pins under the FPGA // // Resolution: HI // $$initial([ 142.0, 167.0 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 91.0, 167.0 ] ); // NO_MITER Go West $$terminal([ 91.0, 153.7 ] ); // NO_MITER Go Down the West Edge of this fill $$terminal([ 91.5, 153.2 ] ); // NO_MITER Go about 45 deg to the SE $$terminal([ 128.2, 153.2 ] ); // Go East under the FPGA AVTT pins $$terminal([ 129.2, 152.2 ] ); $$terminal([ 129.2, 127.8 ] ); // Go South past the FPGA Core finger $$terminal([ 128.2, 126.8 ] ); $$terminal([ 91.5, 126.8 ] ); // NO_MITER Go West above the FPGA AVTT pins $$terminal([ 91.0, 126.3 ] ); // NO_MITER Go about 45 Deg to the SW $$terminal([ 91.0, 113.0 ] ); // NO_MITER Go South $$terminal([ 142.0, 113.0 ] ); // NO_MITER Go East Across the Bottom $$terminal([ 142.0, 167.0 ] ); // NO_MITER Go North to Home $$path( "DIELECTRIC_2", 0.0 ); // // Net: FAN_1V8 // // Fill Layer: Signal_12 // // Location: DCDC_7 Output and area under the FEX Data Fanout Chips // // Resolution: Medium // $$initial([ 260.0, 203.0], , @nosnap ); // Start in the NE corner $$terminal([ 259.0, 204.0 ] ); $$terminal([ 181.5, 204.0 ] ); // Go far West across all of the Top $$terminal([ 180.5, 203.0 ] ); $$terminal([ 180.5, 103.5 ] ); // NO_MITER Go Soouth along the West side until // we need to start the jog part way East $$terminal([ 191.0, 93.0 ] ); // NO_MITER Go SE at about 45 degrees to jog back East $$terminal([ 191.0, 68.5 ] ); // Go South down the the rest of the West edge $$terminal([ 192.0, 67.5 ] ); $$terminal([ 234.0, 67.5 ] ); // NO_MITER Go East part way across the bottom // under the bypass caps: C256, C262, C278 $$terminal([ 238.5, 72.0 ] ); // NO_MITER Go 45 deg NE back to normal Y $$terminal([ 259.0, 72.0 ] ); // Go the rest of the way East across the bottom $$terminal([ 260.0, 73.0 ] ); $$terminal([ 260.0, 171.5 ] ); // NO_MITER Go Up the East edge most of the way $$terminal([ 262.5, 174.0 ] ); // NO_MITER Go 45 degress NE to jog East to get more // width in the pinch by the low Row of Fanouts $$terminal([ 262.5, 192.5 ] ); // NO_MITER Go North until we need to jog back West // to avoid the Ethernet Magnetics $$terminal([ 260.0, 195.0 ] ); // NO_MITER Go 45 degrees NW to jog West of the ENet Mag. $$terminal([ 260.0, 203.0 ] ); // Go Up the rest of the East edge to Home $$path( "DIELECTRIC_2", 0.0 ); // // Net: SWCH_1V2 // // Fill Layer: Signal_12 // // Location: DCDC_5 Output to area under the 3 Switch chips and 2 Phys chips // // Resolution: Medium // $$initial([ 185.0, 15.7], , @nosnap ); // Start in the SE corner $$terminal([ 186.0, 16.7 ] ); $$terminal([ 186.0, 40.8 ] ); // Go North part way up to the Switch chips $$terminal([ 187.0, 41.8 ] ); $$terminal([ 188.6, 41.8 ] ); // Go East to pick up all of Switch chip "C" $$terminal([ 189.6, 42.8 ] ); $$terminal([ 189.6, 81.5 ] ); // Go North up the East side of the Switch chip "C" $$terminal([ 188.6, 82.5 ] ); $$terminal([ 128.5, 82.5 ] ); // NO_MITER Go part way West across the top of the Switch chips $$terminal([ 127.0, 84.0 ] ); // NO_MITER Go North a little to get more Cu above Switches $$terminal([ 73.0, 84.0 ] ); // Finish going West across the top of the Switch chips $$terminal([ 72.0, 85.0 ] ); $$terminal([ 72.0, 107.0 ] ); // NO_MITER Go North part way up the Phys chip's East side $$terminal([ 54.0, 125.0 ] ); // NO_MITER Go NW at 45 deg up to the top of the Phys chips $$terminal([ 47.0, 125.0 ] ); // Go West across the Top of the Phys chips $$terminal([ 46.0, 124.0 ] ); $$terminal([ 46.0, 38.0 ] ); // Go South down the West edge of the Phys chips $$terminal([ 47.0, 37.0 ] ); // and the Switch chips $$terminal([ 158.8, 37.0 ] ); // Go East under the bottom edge of the Switch chips $$terminal([ 159.8, 36.0 ] ); $$terminal([ 159.8, 23.4 ] ); // NO_MITER Go South part way down the West edge of DCDC_5 $$terminal([ 167.5, 15.7 ] ); // NO_MITER Go 45 deg SE down the rest of DCDC_5 West edge $$terminal([ 185.0, 15.7 ] ); // Go East under DCDC_5 to Home $$path( "DIELECTRIC_2", 0.0 ); // // Net: CLK_2V5 // // Fill Layer: Signal_12 // // Location: Clock Fanout Area especially under: U503, U504, U507 // // Resolution: Medium ?? // $$initial([ 130.0, 99.0], , @nosnap ); // Start in the Lower NW corner and go CCW $$terminal([ 129.0, 98.0 ] ); $$terminal([ 129.0, 84.0 ] ); // Go Down the lower West edge $$terminal([ 130.0, 83.0 ] ); $$terminal([ 178.5, 83.0 ] ); // Go East across the Bottom $$terminal([ 179.5, 84.0 ] ); $$terminal([ 179.5, 143.5 ] ); // Go Up the East edge $$terminal([ 178.5, 144.5 ] ); $$terminal([ 157.0, 144.5 ] ); // Go West across part of the Top $$terminal([ 156.0, 143.5 ] ); $$terminal([ 156.0, 100.0 ] ); // Go Down the upper West edge $$terminal([ 155.0, 99.0 ] ); $$terminal([ 130.0, 99.0 ] ); // Go West across the rest of the Top and Home $$path( "DIELECTRIC_2", 0.0 ); // // Net: IPMC_3V3 // // Fill Layer: Signal_12 // // Location: IPMC_3V3 Fill Under Northern part of IPMC Socket and East of there // // Resolution: Midium // $$initial([ 50.5, 304.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 49.5, 305.0 ] ); $$terminal([ 24.0, 305.0 ] ); // Go West across the Top $$terminal([ 23.0, 304.0 ] ); $$terminal([ 23.0, 261.0 ] ); // Go Down the West edge $$terminal([ 24.0, 260.0 ] ); $$terminal([ 49.5, 260.0 ] ); // Go East Across the Bottom $$terminal([ 50.5, 261.0 ] ); $$terminal([ 50.5, 304.0 ] ); // Go Up the East edge and home $$path( "DIELECTRIC_2", 0.0 ); // // Start the ISO_12V Shapes on Signal_12 // // // Net: ISO_12V // // Fill Layer: Signal_11 // // Location: Isolated +12V from its ATCA Module to the // Bulk Input Filter Capacitors for the DCDC Converters // // NOTES: This ISO_12V Shape is different on Sig_11 and Sig_12 // // The approximately 8 other ISO_12V Fill Shapes are // exactly the same on Sig_11 and Sig_12. These Shapes // are in the Sig_11 file and are not repeated in this // Sig_12 Shape source file. // // Resolution: Medium // $$initial([ 293.0, 315.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 292.0, 316.0 ] ); $$terminal([ 52.0, 316.0 ] ); // Go West across part of the Top $$terminal([ 51.0, 315.0 ] ); $$terminal([ 51.0, 260.0 ] ); // Go South down past some of the Bulk Input Filter $$terminal([ 50.0, 259.0 ] ); $$terminal([ 2.0, 259.0 ] ); // Go East out to the Front Panel $$terminal([ 1.0, 258.0 ] ); $$terminal([ 1.0, 135.0 ] ); // Go South to the top of the RJ45 Cut Out $$terminal([ 2.0, 134.0 ] ); $$terminal([ 7.0, 134.0 ] ); // Go East to clear the Cut Out for the RJ45s $$terminal([ 8.0, 133.0 ] ); $$terminal([ 8.0, 71.0 ] ); // Go South past the RJ45 Cut Out $$terminal([ 7.0, 70.0 ] ); $$terminal([ 2.0, 70.0 ] ); // Go West back out to the Front Panel $$terminal([ 1.0, 69.0 ] ); $$terminal([ 1.0, 12.0 ] ); // Go South to the top of the lower Front Panel Mount $$terminal([ 2.0, 11.0 ] ); $$terminal([ 8.0, 11.0 ] ); // Go East to clear the lower Front Panel Mount $$terminal([ 9.0, 10.0 ] ); $$terminal([ 9.0, 5.5 ] ); // Go South to pick up the C964 connection $$terminal([ 10.0, 4.5 ] ); $$terminal([ 50.0, 4.5 ] ); // NO_MITER Go East so we can pickup all of the Iso 12V Caps $$terminal([ 50.0, 35.0 ] ); // NO_MITER Go North to pick up these Modules Output Caps $$terminal([ 45.5, 35.0 ] ); // Go West to setup the X for the run north $$terminal([ 44.5, 36.0 ] ); $$terminal([ 44.5, 219.0 ] ); // NO_MITER Go North up to the area of the Bulk Input Filter $$terminal([ 129.0, 219.0 ] ); // Go East along the lower border of the Bulk Input Caps $$terminal([ 130.0, 220.0 ] ); $$terminal([ 130.0, 284.5 ] ); // NO_MITER Go North between Bulk Input Caps and MegArray #1 $$terminal([ 255.0, 284.5 ] ); // Go East over to the smaller group of Bulk Input Caps $$terminal([ 256.0, 283.5 ] ); $$terminal([ 256.0, 220.0 ] ); // NO_MITER Go South past the west border of // this smaller grp of Caps $$terminal([ 292.0, 220.0 ] ); // Go East to pick up the starting X $$terminal([ 293.0, 221.0 ] ); $$terminal([ 293.0, 315.0 ] ); // Go Up the East edge of these Caps to Home $$path( "DIELECTRIC_2", 0.0 ); // // Do not repeat the fill shapes from the Signal_11 // fill file that are used for feeding ISO_12V to the // individual DCDC Converters on both Signal_11 and Signal_12. // // These shapes appear only in the Signal_11 fill shape file // but they are used when generating the fills for both Signal_11 // on for Signal_12. // // // End the ISO_12V Fills // // // // // Shape Edit Section of the // -==========----------------- // // Hub Module Printed Circuit Board Geometry File // -------------------------------------------------- // // // Area Fills on Signal Layer 5 <--- // ---------------------------=== // // // // Original Rev. 3-Feb-2016 // Current Rev. 11-Jan-2017 // // // Notes: // // - These are Area Fills because they are on a Signal layer // in the Mentor design. // // - The principal power net that is distributed on Signal_5 // is: BULK_3V3. // // - These fills are kept back at least 4.5 mm from the // top and bottom edges so that the area fills will not be // exposed when the top and bottom edges are milled to // allow this card to fit into the crate card guides. // // - These fills are kept back at least 1mm from the front // and back edges to comply with normal decorum. // // - As of 13-Sept-2016 the section of the BULK_3V3 fill that // runs South of the MegArray connectors have been removed. // // - EVERYTHING in this Signal_5 fill file is repeated // on both the layers: SHAPE_EDIT and DIELECTRIC_3. // See the bottom section of this file. // // - As of 17-Oct-2016 there are 8 shapes defined in this file. // // BULK_3V3: Main BULK_3V3 fill over a large section of the card // Section of the BULK_3V3 fill that runs South of the MegArrays // Hi Resolution BULK_3V3 fill under the West edge of the FPGA // Hi Resolution BULK_3V3 fill under the 3 Switch Chips // // BULK_2V5: From output of the DCDC-9 supply to the MiniPOD Filter // inputs and to discrete wire terminal WTERM51 for the // BULK_2V5 run to the Clock Distribution. // // MiniPOD: Separate Filtered MP_2V5 and MP_3V3 for each MiniPOD. // // // // // // Net: BULK_3V3 // // Fill Layer: Signal_5 // // Location: Main BULK_3V3 fill over much of the Hub PCB. // // Resolution: Medium // $$initial([ 250.0, 316.5], , @nosnap ); // Start in the NE corner $$terminal([ 249.0, 317.5 ] ); $$terminal([ 20.0, 317.5 ] ); // Go most of the way West across the Top $$terminal([ 19.0, 316.5 ] ); $$terminal([ 19.0, 302.0 ] ); // Jog South just a little to clear the NW $$terminal([ 18.0, 301.0 ] ); // corner where we do not need the BULK_3V3 supply. $$terminal([ 3.5, 301.0 ] ); // Finish going West across the Top $$terminal([ 2.5, 300.0 ] ); // to get close to front edge $$terminal([ 2.5, 203.0 ] ); // Go Down the front edge - stop above the MiniPODS $$terminal([ 3.5, 202.0 ] ); $$terminal([ 29.5, 202.0 ] ); // Jog in East to clear the MiniPODS $$terminal([ 30.5, 201.0 ] ); $$terminal([ 30.5, 182.5 ] ); // Go South to the top of the finger that feeds MP1 $$terminal([ 29.5, 181.5 ] ); $$terminal([ 20.0, 181.5 ] ); // Go West across the top of the MP1 feed finger $$terminal([ 19.0, 180.5 ] ); $$terminal([ 19.0, 175.5 ] ); // Go South past the MP1 feed vias $$terminal([ 20.0, 174.5 ] ); $$terminal([ 29.5, 174.5 ] ); // Go East back to the main BULK_3V3 fill $$terminal([ 30.5, 173.5 ] ); $$terminal([ 30.5, 155.5 ] ); // Go South to the top of the DCDC-9 feed $$terminal([ 29.5, 154.5 ] ); $$terminal([ 16.0, 154.5 ] ); // Go West across the top of the finger that feeds DCDC-9 $$terminal([ 15.0, 153.5 ] ); $$terminal([ 15.0, 145.5 ] ); // Go South past the vias that feed DCDC-9 $$terminal([ 16.0, 144.5 ] ); $$terminal([ 31.5, 144.5 ] ); // Go East back to the main BULK_3V3 feed $$terminal([ 32.5, 143.5 ] ); $$terminal([ 32.5, 134.5 ] ); // Go South down past the DCDC-9 supply $$terminal([ 31.5, 133.5 ] ); $$terminal([ 10.5, 133.5 ] ); // Jog in West back out to pickup Condo RJ45 LEDs $$terminal([ 9.5, 132.5 ] ); $$terminal([ 9.5, 70.0 ] ); // Go Down past the 3 Condo RJ45 connectors $$terminal([ 8.5, 69.0 ] ); // Note must connect with trace the West most // Condo RJ45 LED Anode pins to BULK_3V3. // 6 of these trace connections are required. $$terminal([ 8.0, 69.0 ] ); // Jog back out West to pickup Fuse F7 etc. $$terminal([ 7.0, 68.0 ] ); $$terminal([ 7.0, 27.5 ] ); // Go Down past J2 Access, Fuse F7, etc. $$terminal([ 8.0, 26.5 ] ); $$terminal([ 24.0, 26.5 ] ); // Go East - stop before getting to close Iso_12V $$terminal([ 25.0, 27.5 ] ); $$terminal([ 25.0, 41.0 ] ); // Go North - up to top edge of Iso_12V module $$terminal([ 26.0, 42.0 ] ); // This is South of all Switch Chip 3V3 vias $$terminal([ 54.5, 42.0 ] ); // NO_MITER Go far enough East to pickup the Hi // Resolution BULK_3V3 Fill under the 3 Switch Chips $$terminal([ 54.5, 79.0 ] ); // NO_MITER Go North to the top side of the Switch chips. $$terminal([ 92.3, 79.0 ] ); // NO_MITER Go East arcoss part of the West most Switch // chip far enough East to pick up the feed to CLK_3V3. $$terminal([ 92.3, 91.3 ] ); // Go North to get good connection to main 3V3 fill $$terminal([ 91.3, 92.3 ] ); $$terminal([ 82.0, 92.3 ] ); // Go West past the West edge of Clk 3V3 Filter $$terminal([ 81.0, 93.3 ] ); $$terminal([ 81.0, 101.0 ] ); // Go North past the West edge of the Clocks $$terminal([ 82.0, 102.0 ] ); $$terminal([ 88.5, 102.0 ] ); // Go East to the West edge of the FPGA $$terminal([ 89.5, 103.0 ] ); $$terminal([ 89.5, 194.5 ] ); // NO_MITER Go North up the West edge of the FPGA // Note there is a separate high resolution // BULK_3V3 Fill Finger under the FPGA $$terminal([ 82.0, 202.0 ] ); // NO_MITER Jog a little West to keep out of the // DCDC1 Converter $$terminal([ 82.0, 215.0 ] ); // Finish going North $$terminal([ 83.0, 216.0 ] ); $$terminal([ 126.0, 216.0 ] ); // NO_MITER Go East past the S1 MegArray connector // to pickup the feed to the DCDC-4 supply. $$terminal([ 127.5, 214.5 ] ); // NO_MITER Jog 45 deg SE to get more Cu South of ROD Screw $$terminal([ 147.0, 214.5 ] ); // Go East the rest of the way for the DCDC-4 feed $$terminal([ 148.0, 213.5 ] ); $$terminal([ 148.0, 209.0 ] ); // Go South to feed the DCDC-4 input filter. $$terminal([ 149.0, 208.0 ] ); $$terminal([ 157.0, 208.0 ] ); // Go East past the DCDC-4 input. $$terminal([ 158.0, 209.0 ] ); $$terminal([ 158.0, 228.5 ] ); // Go North back up to the MegArray S1. $$terminal([ 157.0, 229.5 ] ); $$terminal([ 131.0, 229.5 ] ); // Go West back to the main BULK_3V3 fill. $$terminal([ 130.0, 230.5 ] ); $$terminal([ 130.0, 282.0 ] ); // Go North up the West edge of the S1 MegArray. $$terminal([ 131.0, 283.0 ] ); $$terminal([ 227.0, 283.0 ] ); // Go East Across the top of S1 and S2 MegArrays. $$terminal([ 228.0, 282.0 ] ); $$terminal([ 228.0, 268.0 ] ); // Go Down the East edge of the S2 MegArray $$terminal([ 229.0, 267.0 ] ); $$terminal([ 249.0, 267.0 ] ); // Go East Across the Bottom of the BULK_3V3 $$terminal([ 250.0, 268.0 ] ); // DCDC Converter $$terminal([ 250.0, 316.5 ] ); // Go North up the East edge of the BULK_3V3 // DCDC Converter back to home. $$path( "SHAPE_EDIT", 0.0 ); // // Net: BULK_3V3 // // Fill Layer: Signal_5 // // Location: BULK_3V3 fill under the FPGA's NW corner // // Resolution: Hi // $$initial([ 103.0, 159.8 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 92.2, 159.8 ] ); // NO_MITER Go West across part of the top of this fill $$terminal([ 89.0, 163.0 ] ); // NO_MITER Go NW at 45 deg $$terminal([ 89.0, 136.5 ] ); // NO_MITER Go South down to the center of the FPGA $$terminal([ 92.0, 139.5 ] ); // NO_MITER Go NE at 45 deg to make the SW corner of this fill $$terminal([ 105.7, 139.5 ] ); // Go East just far enough for all 3V3 pins $$terminal([ 106.7, 140.5 ] ); $$terminal([ 106.7, 153.2 ] ); // NO_MITER Go North past most of the FPGA's 3V3 pins $$terminal([ 103.8, 156.1 ] ); // NO_MITER Go NW at 45 deg back to main East edge of fill $$terminal([ 103.8, 159.0 ] ); // NO_MITER Go North up main East edge of this fill $$terminal([ 103.0, 159.8 ] ); // NO_MITER Go 45 deg NW back home $$path( "SHAPE_EDIT", 0.0 ); // // Net: BULK_3V3 // // Fill Layer: Signal_5 // // Location: BULK_3V3 fill under the 3 Switch Chips // // Resolution: Hi // $$initial([ 181.5, 79.5 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 54.0, 79.5 ] ); // NO_MITER Go West across the top of the Switch Chips $$terminal([ 54.0, 42.0 ] ); // NO_MITER Go South along the West edge of Switch Chips $$terminal([ 190.5, 42.0 ] ); // Go East under the Switch Chops $$terminal([ 191.5, 43.0 ] ); $$terminal([ 191.5, 69.5 ] ); // NO_MITER Go North up East edge of the Switches $$terminal([ 181.5, 79.5 ] ); // NO_MITER Go NW at 45 deg to home - cut for MGT traces $$path( "SHAPE_EDIT", 0.0 ); // // Net: MP1_3V3 // // Fill Layer: Signal_5 // // Location: MP1_3V3 fill MiniPOD #1 - the Transmitter // // Resolution: Medium // $$initial([ 29.5, 200.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 28.5, 201.0 ] ); $$terminal([ 22.0, 201.0 ] ); // Go West across the Top $$terminal([ 21.0, 200.0 ] ); $$terminal([ 21.0, 184.5 ] ); // Go Down the West edge $$terminal([ 22.0, 183.5 ] ); $$terminal([ 28.5, 183.5 ] ); // Go East Across the Bottom $$terminal([ 29.5, 184.5 ] ); $$terminal([ 29.5, 200.0 ] ); // Go Up the East edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: MP1_2V5 // // Fill Layer: Signal_5 // // Location: MP1_2V5 fill MiniPOD #1 - the Transmitter // // Resolution: Medium // $$initial([ 20.0, 199.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 19.0, 200.0 ] ); $$terminal([ 11.0, 200.0 ] ); // Go West across the Top $$terminal([ 10.0, 199.0 ] ); $$terminal([ 10.0, 183.5 ] ); // Go Down the West edge $$terminal([ 11.0, 182.5 ] ); $$terminal([ 19.0, 182.5 ] ); // Go East Across the Bottom $$terminal([ 20.0, 183.5 ] ); $$terminal([ 20.0, 199.0 ] ); // Go Up the East edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: MP2_3V3 // // Fill Layer: Signal_5 // // Location: MP2_3V3 fill MiniPOD #2 - the Receiver // // Resolution: Medium // $$initial([ 29.5, 172.5], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 28.5, 173.5 ] ); $$terminal([ 22.0, 173.5 ] ); // Go West across the Top $$terminal([ 21.0, 172.5 ] ); $$terminal([ 21.0, 156.5 ] ); // Go Down the West edge $$terminal([ 22.0, 155.5 ] ); $$terminal([ 28.5, 155.5 ] ); // Go East Across the Bottom $$terminal([ 29.5, 156.5 ] ); $$terminal([ 29.5, 172.5 ] ); // Go Up the East edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: MP2_2V5 // // Fill Layer: Signal_5 // // Location: MP2_2V5 fill MiniPOD #2 - the Receiver // // Resolution: Medium // $$initial([ 20.0, 172.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 19.0, 173.0 ] ); $$terminal([ 12.0, 173.0 ] ); // Go West across the Top $$terminal([ 11.0, 172.0 ] ); $$terminal([ 11.0, 156.5 ] ); // Go Down the West edge $$terminal([ 12.0, 155.5 ] ); $$terminal([ 19.0, 155.5 ] ); // Go East Across the Bottom $$terminal([ 20.0, 156.5 ] ); $$terminal([ 20.0, 172.0 ] ); // Go Up the East edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: BULK_2V5 // // Fill Layer: Signal_5 // // Location: BULK_2V5 fill by DCDC-9 and West of the MiniPODs // // Resolution: Medium // $$initial([ 18.0, 180.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 17.0, 181.0 ] ); $$terminal([ 2.5, 181.0 ] ); // Go West across the Top $$terminal([ 1.5, 180.0 ] ); $$terminal([ 1.5, 135.5 ] ); // Go Down the West edge $$terminal([ 2.5, 134.5 ] ); $$terminal([ 30.5, 134.5 ] ); // Go East Across the Bottom $$terminal([ 31.5, 135.5 ] ); $$terminal([ 31.5, 143.0 ] ); // Go North up under DCDC-9 $$terminal([ 30.5, 144.0 ] ); $$terminal([ 15.0, 144.0 ] ); // Go West to clear the input feed to DCDC-9 $$terminal([ 14.0, 145.0 ] ); $$terminal([ 14.0, 152.0 ] ); // Go North past the MP2 feed vias $$terminal([ 13.0, 153.0 ] ); $$terminal([ 11.0, 153.0 ] ); // Go West to clear the MP2_2V5 fill $$terminal([ 10.0, 154.0 ] ); $$terminal([ 10.0, 174.0 ] ); // Go North up to the MP1 feed vias $$terminal([ 11.0, 175.0 ] ); $$terminal([ 17.0, 175.0 ] ); // Go East to cover the MP1 feed vias $$terminal([ 18.0, 176.0 ] ); $$terminal([ 18.0, 180.0 ] ); // Go Up the East edge past MP1 vias and home. $$path( "SHAPE_EDIT", 0.0 ); // // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // // Repete the above on design layer $$path( "DIELECTRIC_3", 0.0 ); // // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // // // Net: BULK_3V3 // // Fill Layer: Signal_5 // // Location: Main BULK_3V3 fill over much of the Hub PCB. // // Resolution: Medium // $$initial([ 250.0, 316.5], , @nosnap ); // Start in the NE corner $$terminal([ 249.0, 317.5 ] ); $$terminal([ 20.0, 317.5 ] ); // Go most of the way West across the Top $$terminal([ 19.0, 316.5 ] ); $$terminal([ 19.0, 302.0 ] ); // Jog South just a little to clear the NW $$terminal([ 18.0, 301.0 ] ); // corner where we do not need the BULK_3V3 supply. $$terminal([ 3.5, 301.0 ] ); // Finish going West across the Top $$terminal([ 2.5, 300.0 ] ); // to get close to front edge $$terminal([ 2.5, 203.0 ] ); // Go Down the front edge - stop above the MiniPODS $$terminal([ 3.5, 202.0 ] ); $$terminal([ 29.5, 202.0 ] ); // Jog in East to clear the MiniPODS $$terminal([ 30.5, 201.0 ] ); $$terminal([ 30.5, 182.5 ] ); // Go South to the top of the finger that feeds MP1 $$terminal([ 29.5, 181.5 ] ); $$terminal([ 20.0, 181.5 ] ); // Go West across the top of the MP1 feed finger $$terminal([ 19.0, 180.5 ] ); $$terminal([ 19.0, 175.5 ] ); // Go South past the MP1 feed vias $$terminal([ 20.0, 174.5 ] ); $$terminal([ 29.5, 174.5 ] ); // Go East back to the main BULK_3V3 fill $$terminal([ 30.5, 173.5 ] ); $$terminal([ 30.5, 155.5 ] ); // Go South to the top of the DCDC-9 feed $$terminal([ 29.5, 154.5 ] ); $$terminal([ 16.0, 154.5 ] ); // Go West across the top of the finger that feeds DCDC-9 $$terminal([ 15.0, 153.5 ] ); $$terminal([ 15.0, 145.5 ] ); // Go South past the vias that feed DCDC-9 $$terminal([ 16.0, 144.5 ] ); $$terminal([ 31.5, 144.5 ] ); // Go East back to the main BULK_3V3 feed $$terminal([ 32.5, 143.5 ] ); $$terminal([ 32.5, 134.5 ] ); // Go South down past the DCDC-9 supply $$terminal([ 31.5, 133.5 ] ); $$terminal([ 10.5, 133.5 ] ); // Jog in West back out to pickup Condo RJ45 LEDs $$terminal([ 9.5, 132.5 ] ); $$terminal([ 9.5, 70.0 ] ); // Go Down past the 3 Condo RJ45 connectors $$terminal([ 8.5, 69.0 ] ); // Note must connect with trace the West most // Condo RJ45 LED Anode pins to BULK_3V3. // 6 of these trace connections are required. $$terminal([ 8.0, 69.0 ] ); // Jog back out West to pickup Fuse F7 etc. $$terminal([ 7.0, 68.0 ] ); $$terminal([ 7.0, 27.5 ] ); // Go Down past J2 Access, Fuse F7, etc. $$terminal([ 8.0, 26.5 ] ); $$terminal([ 24.0, 26.5 ] ); // Go East - stop before getting to close Iso_12V $$terminal([ 25.0, 27.5 ] ); $$terminal([ 25.0, 41.0 ] ); // Go North - up to top edge of Iso_12V module $$terminal([ 26.0, 42.0 ] ); // This is South of all Switch Chip 3V3 vias $$terminal([ 54.5, 42.0 ] ); // NO_MITER Go far enough East to pickup the Hi // Resolution BULK_3V3 Fill under the 3 Switch Chips $$terminal([ 54.5, 79.0 ] ); // NO_MITER Go North to the top side of the Switch chips. $$terminal([ 92.3, 79.0 ] ); // NO_MITER Go East arcoss part of the West most Switch // chip far enough East to pick up the feed to CLK_3V3. $$terminal([ 92.3, 91.3 ] ); // Go North to get good connection to main 3V3 fill $$terminal([ 91.3, 92.3 ] ); $$terminal([ 82.0, 92.3 ] ); // Go West past the West edge of Clk 3V3 Filter $$terminal([ 81.0, 93.3 ] ); $$terminal([ 81.0, 101.0 ] ); // Go North past the West edge of the Clocks $$terminal([ 82.0, 102.0 ] ); $$terminal([ 88.5, 102.0 ] ); // Go East to the West edge of the FPGA $$terminal([ 89.5, 103.0 ] ); $$terminal([ 89.5, 194.5 ] ); // NO_MITER Go North up the West edge of the FPGA // Note there is a separate high resolution // BULK_3V3 Fill Finger under the FPGA $$terminal([ 82.0, 202.0 ] ); // NO_MITER Jog a little West to keep out of the // DCDC1 Converter $$terminal([ 82.0, 215.0 ] ); // Finish going North $$terminal([ 83.0, 216.0 ] ); $$terminal([ 126.0, 216.0 ] ); // NO_MITER Go East past the S1 MegArray connector // to pickup the feed to the DCDC-4 supply. $$terminal([ 127.5, 214.5 ] ); // NO_MITER Jog 45 deg SE to get more Cu South of ROD Screw $$terminal([ 147.0, 214.5 ] ); // Go East the rest of the way for the DCDC-4 feed $$terminal([ 148.0, 213.5 ] ); $$terminal([ 148.0, 209.0 ] ); // Go South to feed the DCDC-4 input filter. $$terminal([ 149.0, 208.0 ] ); $$terminal([ 157.0, 208.0 ] ); // Go East past the DCDC-4 input. $$terminal([ 158.0, 209.0 ] ); $$terminal([ 158.0, 228.5 ] ); // Go North back up to the MegArray S1. $$terminal([ 157.0, 229.5 ] ); $$terminal([ 131.0, 229.5 ] ); // Go West back to the main BULK_3V3 fill. $$terminal([ 130.0, 230.5 ] ); $$terminal([ 130.0, 282.0 ] ); // Go North up the West edge of the S1 MegArray. $$terminal([ 131.0, 283.0 ] ); $$terminal([ 227.0, 283.0 ] ); // Go East Across the top of S1 and S2 MegArrays. $$terminal([ 228.0, 282.0 ] ); $$terminal([ 228.0, 268.0 ] ); // Go Down the East edge of the S2 MegArray $$terminal([ 229.0, 267.0 ] ); $$terminal([ 249.0, 267.0 ] ); // Go East Across the Bottom of the BULK_3V3 $$terminal([ 250.0, 268.0 ] ); // DCDC Converter $$terminal([ 250.0, 316.5 ] ); // Go North up the East edge of the BULK_3V3 // DCDC Converter back to home. $$path( "DIELECTRIC_3", 0.0 ); // // Net: BULK_3V3 // // Fill Layer: Signal_5 // // Location: BULK_3V3 fill under the FPGA's NW corner // // Resolution: Hi // $$initial([ 103.0, 159.8 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 92.2, 159.8 ] ); // NO_MITER Go West across part of the top of this fill $$terminal([ 89.0, 163.0 ] ); // NO_MITER Go NW at 45 deg $$terminal([ 89.0, 136.5 ] ); // NO_MITER Go South down to the center of the FPGA $$terminal([ 92.0, 139.5 ] ); // NO_MITER Go NE at 45 deg to make the SW corner of this fill $$terminal([ 105.7, 139.5 ] ); // Go East just far enough for all 3V3 pins $$terminal([ 106.7, 140.5 ] ); $$terminal([ 106.7, 153.2 ] ); // NO_MITER Go North past most of the FPGA's 3V3 pins $$terminal([ 103.8, 156.1 ] ); // NO_MITER Go NW at 45 deg back to main East edge of fill $$terminal([ 103.8, 159.0 ] ); // NO_MITER Go North up main East edge of this fill $$terminal([ 103.0, 159.8 ] ); // NO_MITER Go 45 deg NW back home $$path( "DIELECTRIC_3", 0.0 ); // // Net: BULK_3V3 // // Fill Layer: Signal_5 // // Location: BULK_3V3 fill under the 3 Switch Chips // // Resolution: Hi // $$initial([ 181.5, 79.5 ], , @nosnap ); // NO_MITER Start in the NE corner and go CCW $$terminal([ 54.0, 79.5 ] ); // NO_MITER Go West across the top of the Switch Chips $$terminal([ 54.0, 42.0 ] ); // NO_MITER Go South along the West edge of Switch Chips $$terminal([ 190.5, 42.0 ] ); // Go East under the Switch Chops $$terminal([ 191.5, 43.0 ] ); $$terminal([ 191.5, 69.5 ] ); // NO_MITER Go North up East edge of the Switches $$terminal([ 181.5, 79.5 ] ); // NO_MITER Go NW at 45 deg to home - cut for MGT traces $$path( "DIELECTRIC_3", 0.0 ); // // Net: MP1_3V3 // // Fill Layer: Signal_5 // // Location: MP1_3V3 fill MiniPOD #1 - the Transmitter // // Resolution: Medium // $$initial([ 29.5, 200.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 28.5, 201.0 ] ); $$terminal([ 22.0, 201.0 ] ); // Go West across the Top $$terminal([ 21.0, 200.0 ] ); $$terminal([ 21.0, 184.5 ] ); // Go Down the West edge $$terminal([ 22.0, 183.5 ] ); $$terminal([ 28.5, 183.5 ] ); // Go East Across the Bottom $$terminal([ 29.5, 184.5 ] ); $$terminal([ 29.5, 200.0 ] ); // Go Up the East edge and home $$path( "DIELECTRIC_3", 0.0 ); // // Net: MP1_2V5 // // Fill Layer: Signal_5 // // Location: MP1_2V5 fill MiniPOD #1 - the Transmitter // // Resolution: Medium // $$initial([ 20.0, 199.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 19.0, 200.0 ] ); $$terminal([ 11.0, 200.0 ] ); // Go West across the Top $$terminal([ 10.0, 199.0 ] ); $$terminal([ 10.0, 183.5 ] ); // Go Down the West edge $$terminal([ 11.0, 182.5 ] ); $$terminal([ 19.0, 182.5 ] ); // Go East Across the Bottom $$terminal([ 20.0, 183.5 ] ); $$terminal([ 20.0, 199.0 ] ); // Go Up the East edge and home $$path( "DIELECTRIC_3", 0.0 ); // // Net: MP2_3V3 // // Fill Layer: Signal_5 // // Location: MP2_3V3 fill MiniPOD #2 - the Receiver // // Resolution: Medium // $$initial([ 29.5, 172.5], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 28.5, 173.5 ] ); $$terminal([ 22.0, 173.5 ] ); // Go West across the Top $$terminal([ 21.0, 172.5 ] ); $$terminal([ 21.0, 156.5 ] ); // Go Down the West edge $$terminal([ 22.0, 155.5 ] ); $$terminal([ 28.5, 155.5 ] ); // Go East Across the Bottom $$terminal([ 29.5, 156.5 ] ); $$terminal([ 29.5, 172.5 ] ); // Go Up the East edge and home $$path( "DIELECTRIC_3", 0.0 ); // // Net: MP2_2V5 // // Fill Layer: Signal_5 // // Location: MP2_2V5 fill MiniPOD #2 - the Receiver // // Resolution: Medium // $$initial([ 20.0, 172.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 19.0, 173.0 ] ); $$terminal([ 12.0, 173.0 ] ); // Go West across the Top $$terminal([ 11.0, 172.0 ] ); $$terminal([ 11.0, 156.5 ] ); // Go Down the West edge $$terminal([ 12.0, 155.5 ] ); $$terminal([ 19.0, 155.5 ] ); // Go East Across the Bottom $$terminal([ 20.0, 156.5 ] ); $$terminal([ 20.0, 172.0 ] ); // Go Up the East edge and home $$path( "DIELECTRIC_3", 0.0 ); // // Net: BULK_2V5 // // Fill Layer: Signal_5 // // Location: BULK_2V5 fill by DCDC-9 and West of the MiniPODs // // Resolution: Medium // $$initial([ 18.0, 180.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 17.0, 181.0 ] ); $$terminal([ 2.5, 181.0 ] ); // Go West across the Top $$terminal([ 1.5, 180.0 ] ); $$terminal([ 1.5, 135.5 ] ); // Go Down the West edge $$terminal([ 2.5, 134.5 ] ); $$terminal([ 30.5, 134.5 ] ); // Go East Across the Bottom $$terminal([ 31.5, 135.5 ] ); $$terminal([ 31.5, 143.0 ] ); // Go North up under DCDC-9 $$terminal([ 30.5, 144.0 ] ); $$terminal([ 15.0, 144.0 ] ); // Go West to clear the input feed to DCDC-9 $$terminal([ 14.0, 145.0 ] ); $$terminal([ 14.0, 152.0 ] ); // Go North past the MP2 feed vias $$terminal([ 13.0, 153.0 ] ); $$terminal([ 11.0, 153.0 ] ); // Go West to clear the MP2_2V5 fill $$terminal([ 10.0, 154.0 ] ); $$terminal([ 10.0, 174.0 ] ); // Go North up to the MP1 feed vias $$terminal([ 11.0, 175.0 ] ); $$terminal([ 17.0, 175.0 ] ); // Go East to cover the MP1 feed vias $$terminal([ 18.0, 176.0 ] ); $$terminal([ 18.0, 180.0 ] ); // Go Up the East edge past MP1 vias and home. $$path( "DIELECTRIC_3", 0.0 ); // // // // Shape Edit Section of the // -==========----------------- // // Hub Module Printed Circuit Board Geometry File // -------------------------------------------------- // // // Area Fills on Signal Layer 6 <--- // ---------------------------=== // // // // Original Rev. 3-Feb-2016 // Current Rev. 9-Jan-2017 // // // Notes: // // - These are Area Fills because they are on a Signal layer // in the Mentor design. // // - The principal power net that is distributed on Signal_6 // is: BULK_1V8. // // - These fills are kept back at least 4.5 mm from the // top and bottom edges so that the area fills will not be // exposed when the top and bottom edges are milled to // allow this card to fit into the crate card guides. // // - These fills are kept back at least 1mm from the front // and back edges to comply with normal decorum. // // - EVERYTHING in this Signal_6 fill file is repeated // on both the layers: SHAPE_EDIT and DIELECTRIC_4. // See the bottom section of this file. // // - Note that a discrete trace run is required to connect // the BULK_1V8 rail to the JTAG level translators in the // SW corner of the card next to the J2 connector, i.e. // not all BULK_1V8 distribution is accomplished by fill. // // - As of 17-Oct-2016 there are 6 shapes defined in this file. // // - List of Fills in this file: // // BULK_1V8: Main BULK_1V8 fill over a large section of the card // Hi Resolution BULK_1V8 fill under the FPGA // Hi Resolution BULK_1V8 fill under the Config Flash Memory // // MGT_AVAUX: MGT_AVAUX fill from DCDC4 to under Eastern part of FPGA // A Midium Resolution yoke from DCDC-4 on the FPGA's East edge // A Hi Resolution MGT_AVAUX fill under the FPGA // // ECLK_3V3 Under the 25 MHz Ethernet Clock Oscillator and its Fanout // // // // // // Net: BULK_1V8 // // Fill Layer: Signal_6 // // Location: Main BULK_1V8 fill over a big section of the Hub PCB. // // Resolution: Medium // $$initial([ 250.0, 316.5], , @nosnap ); // Start in the NE corner $$terminal([ 249.0, 317.5 ] ); $$terminal([ 25.5, 317.5 ] ); // Go West across the Top $$terminal([ 24.5, 316.5 ] ); $$terminal([ 24.5, 210.0 ] ); // NO_MITER Go Down the West edge - stop // near the bottom of the IPMC connector. $$terminal([ 44.5, 190.0 ] ); // NO_MITER Go 45 deg to the SE to clear the MiniPODs $$terminal([ 44.5, 105.5 ] ); // NO_MITER Go 45 deg to the SE to clear the MiniPODs $$terminal([ 46.0, 104.0 ] ); // NO_MITER Go 45 deg to the SE to clear the MiniPODs $$terminal([ 46.0, 89.0 ] ); // Go the rest of the way Down to the bottom of the Phys Chips $$terminal([ 47.0, 88.0 ] ); $$terminal([ 73.0, 88.0 ] ); // Go East Across the Bottom of the Phys Chips $$terminal([ 74.0, 89.0 ] ); $$terminal([ 74.0, 100.0 ] ); // Go North to get just above the Clock chips $$terminal([ 75.0, 101.0 ] ); $$terminal([ 89.0, 101.0 ] ); // Go East to pick of the West edge of FPGA $$terminal([ 90.0, 102.0 ] ); $$terminal([ 90.0, 196.0 ] ); // NO_MITER Go North up the West edge of the FPGA // Note there is a separate high resolution // BULK_1V8 Fill Finger under the FPGA $$terminal([ 83.0, 203.0 ] ); // NO_MITER Jog at 45 deg to the NW to get a little West // to keep out of the DCDC2 Converter $$terminal([ 83.0, 221.0 ] ); // Finish going North $$terminal([ 84.0, 222.0 ] ); $$terminal([ 129.0, 222.0 ] ); // Go East over to the West edge $$terminal([ 130.0, 223.0 ] ); // of the S1 MegArray connector $$terminal([ 130.0, 282.0 ] ); // Go North up the West edge of the S1 MegArray. $$terminal([ 131.0, 283.0 ] ); $$terminal([ 227.0, 283.0 ] ); // Go East Across the top of S1 and S2 MegArrays. $$terminal([ 228.0, 282.0 ] ); $$terminal([ 228.0, 238.0 ] ); // Go Down the East edge of the S2 MegArray $$terminal([ 229.0, 237.0 ] ); $$terminal([ 249.0, 237.0 ] ); // Go East Across the Bottom of the BULK_1V8 $$terminal([ 250.0, 238.0 ] ); // DCDC Converter $$terminal([ 250.0, 316.5 ] ); // Go North up the East edge of the BULK_1V8 // DCDC Converter back to home. $$path( "SHAPE_EDIT", 0.0 ); // // Net: BULK_1V8 // // Fill Layer: Signal_6 // // Location: BULK_1V8 fill finger under the U1 FPGA // // Resolution: Hi // $$initial([ 89.0, 173.0 ], , @nosnap ); // NO_MITER Start in the NW corner $$terminal([ 89.0, 107.0 ] ); // NO_MITER Go South overlapping the main BULK_1V8 fill $$terminal([ 92.2, 107.0 ] ); // NO_MITER Go East a little to get into the Hi res area $$terminal([ 103.8, 118.6 ] ); // NO_MITER Go NE at 45 degrees $$terminal([ 103.8, 126.9 ] ); // NO_MITER Go North into the FPGA footprint $$terminal([ 106.1, 129.2 ] ); // NO_MITER Go North-East to get above MGT_AVAUX fill $$terminal([ 126.2, 129.2 ] ); // NO_MITER Go East above MGT_AVAUX fill $$terminal([ 127.2, 130.2 ] ); // NO_MITER Go 45 deg NE to get above 2 MGT_AVAUX pins $$terminal([ 138.0, 130.2 ] ); // Go East to to the East edge of the FPGA $$terminal([ 139.0, 131.2 ] ); // to get all of the FPGA's 1V8 pins. $$terminal([ 139.0, 148.8 ] ); // Go North up the East edge of the FPGA $$terminal([ 138.0, 149.8 ] ); // get just above the upper 1V8 pins $$terminal([ 125.2, 149.8 ] ); // NO_MITER Go West between 1V8 and AVAUX pins $$terminal([ 124.2, 150.8 ] ); // NO_MITER Go 45 deg NW to get above 2 MGT_AVAUX pins $$terminal([ 106.1, 150.8 ] ); // NO_MITER Go West across the top of the FPGA's 1V8 pins $$terminal([ 103.8, 153.1 ] ); // NO_MITER Go North-West between 1V8 and AVAUX pins $$terminal([ 103.8, 161.4 ] ); // NO_MITER Go North to get out of BGA field $$terminal([ 92.2, 173.0 ] ); // NO_MITER Go diagonally 45 deg NW $$terminal([ 89.0, 173.0 ] ); // NO_MITER Go West back to the Home corner. $$path( "SHAPE_EDIT", 0.0 ); // // Net: BULK_1V8 // // Fill Layer: Signal_6 // // Location: BULK_1V8 fill under the Config Flash Memory // // Resolution: Hi // $$initial([ 81.5, 148.5], , @nosnap ); // Start in the NE corner $$terminal([ 80.5, 149.5 ] ); $$terminal([ 69.5, 149.5 ] ); // Go West across the Top $$terminal([ 68.5, 148.5 ] ); $$terminal([ 68.5, 137.5 ] ); // Go Down the West edge $$terminal([ 69.5, 136.5 ] ); $$terminal([ 80.5, 136.5 ] ); // Go East Across the Bottom $$terminal([ 81.5, 137.5 ] ); $$terminal([ 81.5, 148.5 ] ); // Go Up the rest of the east edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: MGT_AVAUX // // Fill Layer: Signal_6 // // Location: from the DCDC_4 Converter to the Eastern part of FPGA // // Resolution: Medium // $$initial([ 163.5, 204.0], , @nosnap ); // Start in the NE corner $$terminal([ 162.5, 205.0 ] ); $$terminal([ 155.5, 205.0 ] ); // Go West across the Top of DCDC_4 $$terminal([ 154.5, 204.0 ] ); $$terminal([ 154.5, 192.0 ] ); // NO_MITER Go Down the West edge of DCDC_4 $$terminal([ 151.2, 188.7 ] ); // NO_MITER Go Diagonally Down and West to FPGA NE corner $$terminal([ 135.8, 188.7 ] ); // NO_MITER Go West further West across Top of the FPGA // until just before C161 an AVAUX cap $$terminal([ 135.5, 189.0 ] ); // NO_MITER Go NW just 0.3 mm to get above C161 $$terminal([ 125.3, 189.0 ] ); // NO_MITER Finish going West further West // across Top of the FPGA $$terminal([ 121.3, 185.0 ] ); // NO_MITER Go 45 deg SW to escape converters $$terminal([ 100.0, 185.0 ] ); // Go far West to pick up some bypass capacitors $$terminal([ 99.0, 184.0 ] ); $$terminal([ 99.0, 171.7 ] ); // NO_MITER Go Down the West edge of this AVAUX fill $$terminal([ 104.2, 166.5 ] ); // NO_MITER Go 45 deg SE to join Hi Res AVAUX fill $$terminal([ 141.5, 166.5 ] ); // NO_MITER Go East $$terminal([ 141.5, 113.5 ] ); // NO_MITER Go South $$terminal([ 104.2, 113.5 ] ); // NO_MITER Go West $$terminal([ 103.2, 112.5 ] ); // NO_MITER Go SW at 45 deg for just 1 mm $$terminal([ 99.0, 112.5 ] ); // NO_MITER Go West $$terminal([ 93.5, 107.0 ] ); // NO_MITER Go 45 deg SW to pick up the Tant Cap $$terminal([ 93.5, 99.0 ] ); // Go South $$terminal([ 94.5, 98.0 ] ); $$terminal([ 155.0, 98.0 ] ); // Go East Across the Bottom of FPGA $$terminal([ 156.0, 99.0 ] ); $$terminal([ 156.0, 145.0 ] ); // NO_MITER Go Up part way the east edge of FPGA $$terminal([ 163.0, 152.0 ] ); // NO_MITER Go Diagonally NE $$terminal([ 163.0, 182.0 ] ); // NO_MITER Go Up $$terminal([ 163.5, 182.5 ] ); // NO_MITER Go 45 deg NE for more Cu - close to FEX lines $$terminal([ 163.5, 204.0 ] ); // Go Up the rest of the east edge of DCDC_4 and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: MGT_AVAUX // // Fill Layer: Signal_6 // // Location: MGT_AVAUX pins under the FPGA // // Resolution: HI // $$initial([ 142.0, 167.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 104.2, 167.0 ] ); // NO_MITER Go West across the Top of FPGA $$terminal([ 104.2, 153.3 ] ); // NO_MITER Go Down the West edge just far enough // to pick up all of the AVAUX pins $$terminal([ 106.3, 151.2 ] ); // NO_MITER Go short SE diagonal $$terminal([ 124.4, 151.2 ] ); // NO_MITER Go short SE diagonal $$terminal([ 125.4, 150.2 ] ); // NO_MITER Go short SE diagonal $$terminal([ 139.0, 150.2 ] ); // Go East between 1V8 and AVAUX pins $$terminal([ 140.0, 149.2 ] ); $$terminal([ 140.0, 130.8 ] ); // Go South past the East edge of the 1V8 Finger $$terminal([ 139.0, 129.8 ] ); $$terminal([ 127.4, 129.8 ] ); // NO_MITER Go West between 1V8 and AVAUX pins $$terminal([ 126.4, 128.8 ] ); // NO_MITER Go 45 deg SW $$terminal([ 106.3, 128.8 ] ); // NO_MITER Go West between 1V8 and AVAUX pins $$terminal([ 104.2, 126.7 ] ); // NO_MITER Go short SW diagonal $$terminal([ 104.2, 113.0 ] ); // NO_MITER Go Down $$terminal([ 142.0, 113.0 ] ); // NO_MITER Go East Across the Bottom of FPGA $$terminal([ 142.0, 167.0 ] ); // NO_MITER Go North up the East edge // of Hi Res fill and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: ECLK_3V3 // // Fill Layer: Signal_6 // // Location: ECLK_3V3 Fill Under the 25 MHz Ethernet Clock and Fanout // // Resolution: Midium // $$initial([ 47.5, 68.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 46.5, 69.0 ] ); $$terminal([ 27.5, 69.0 ] ); // Go West across the Top $$terminal([ 26.5, 68.0 ] ); $$terminal([ 26.5, 56.0 ] ); // Go Down the West edge $$terminal([ 27.5, 55.0 ] ); $$terminal([ 46.5, 55.0 ] ); // Go East Across the Bottom $$terminal([ 47.5, 56.0 ] ); $$terminal([ 47.5, 68.0 ] ); // Go Up the East edge and home $$path( "SHAPE_EDIT", 0.0 ); // // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // // Repete the above on design layer $$path( "DIELECTRIC_4", 0.0 ); // // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // // // Net: BULK_1V8 // // Fill Layer: Signal_6 // // Location: Main BULK_1V8 fill over a big section of the Hub PCB. // // Resolution: Medium // $$initial([ 250.0, 316.5], , @nosnap ); // Start in the NE corner $$terminal([ 249.0, 317.5 ] ); $$terminal([ 25.5, 317.5 ] ); // Go West across the Top $$terminal([ 24.5, 316.5 ] ); $$terminal([ 24.5, 210.0 ] ); // NO_MITER Go Down the West edge - stop // near the bottom of the IPMC connector. $$terminal([ 44.5, 190.0 ] ); // NO_MITER Go 45 deg to the SE to clear the MiniPODs $$terminal([ 44.5, 105.5 ] ); // NO_MITER Go 45 deg to the SE to clear the MiniPODs $$terminal([ 46.0, 104.0 ] ); // NO_MITER Go 45 deg to the SE to clear the MiniPODs $$terminal([ 46.0, 89.0 ] ); // Go the rest of the way Down to the bottom of the Phys Chips $$terminal([ 47.0, 88.0 ] ); $$terminal([ 73.0, 88.0 ] ); // Go East Across the Bottom of the Phys Chips $$terminal([ 74.0, 89.0 ] ); $$terminal([ 74.0, 100.0 ] ); // Go North to get just above the Clock chips $$terminal([ 75.0, 101.0 ] ); $$terminal([ 89.0, 101.0 ] ); // Go East to pick of the West edge of FPGA $$terminal([ 90.0, 102.0 ] ); $$terminal([ 90.0, 196.0 ] ); // NO_MITER Go North up the West edge of the FPGA // Note there is a separate high resolution // BULK_1V8 Fill Finger under the FPGA $$terminal([ 83.0, 203.0 ] ); // NO_MITER Jog at 45 deg to the NW to get a little West // to keep out of the DCDC2 Converter $$terminal([ 83.0, 221.0 ] ); // Finish going North $$terminal([ 84.0, 222.0 ] ); $$terminal([ 129.0, 222.0 ] ); // Go East over to the West edge $$terminal([ 130.0, 223.0 ] ); // of the S1 MegArray connector $$terminal([ 130.0, 282.0 ] ); // Go North up the West edge of the S1 MegArray. $$terminal([ 131.0, 283.0 ] ); $$terminal([ 227.0, 283.0 ] ); // Go East Across the top of S1 and S2 MegArrays. $$terminal([ 228.0, 282.0 ] ); $$terminal([ 228.0, 238.0 ] ); // Go Down the East edge of the S2 MegArray $$terminal([ 229.0, 237.0 ] ); $$terminal([ 249.0, 237.0 ] ); // Go East Across the Bottom of the BULK_1V8 $$terminal([ 250.0, 238.0 ] ); // DCDC Converter $$terminal([ 250.0, 316.5 ] ); // Go North up the East edge of the BULK_1V8 // DCDC Converter back to home. $$path( "DIELECTRIC_4", 0.0 ); // // Net: BULK_1V8 // // Fill Layer: Signal_6 // // Location: BULK_1V8 fill finger under the U1 FPGA // // Resolution: Hi // $$initial([ 89.0, 173.0 ], , @nosnap ); // NO_MITER Start in the NW corner $$terminal([ 89.0, 107.0 ] ); // NO_MITER Go South overlapping the main BULK_1V8 fill $$terminal([ 92.2, 107.0 ] ); // NO_MITER Go East a little to get into the Hi res area $$terminal([ 103.8, 118.6 ] ); // NO_MITER Go NE at 45 degrees $$terminal([ 103.8, 126.9 ] ); // NO_MITER Go North into the FPGA footprint $$terminal([ 106.1, 129.2 ] ); // NO_MITER Go North-East to get above MGT_AVAUX fill $$terminal([ 126.2, 129.2 ] ); // NO_MITER Go East above MGT_AVAUX fill $$terminal([ 127.2, 130.2 ] ); // NO_MITER Go 45 deg NE to get above 2 MGT_AVAUX pins $$terminal([ 138.0, 130.2 ] ); // Go East to to the East edge of the FPGA $$terminal([ 139.0, 131.2 ] ); // to get all of the FPGA's 1V8 pins. $$terminal([ 139.0, 148.8 ] ); // Go North up the East edge of the FPGA $$terminal([ 138.0, 149.8 ] ); // get just above the upper 1V8 pins $$terminal([ 125.2, 149.8 ] ); // NO_MITER Go West between 1V8 and AVAUX pins $$terminal([ 124.2, 150.8 ] ); // NO_MITER Go 45 deg NW to get above 2 MGT_AVAUX pins $$terminal([ 106.1, 150.8 ] ); // NO_MITER Go West across the top of the FPGA's 1V8 pins $$terminal([ 103.8, 153.1 ] ); // NO_MITER Go North-West between 1V8 and AVAUX pins $$terminal([ 103.8, 161.4 ] ); // NO_MITER Go North to get out of BGA field $$terminal([ 92.2, 173.0 ] ); // NO_MITER Go diagonally 45 deg NW $$terminal([ 89.0, 173.0 ] ); // NO_MITER Go West back to the Home corner. $$path( "DIELECTRIC_4", 0.0 ); // // Net: BULK_1V8 // // Fill Layer: Signal_6 // // Location: BULK_1V8 fill under the Config Flash Memory // // Resolution: Hi // $$initial([ 81.5, 148.5], , @nosnap ); // Start in the NE corner $$terminal([ 80.5, 149.5 ] ); $$terminal([ 69.5, 149.5 ] ); // Go West across the Top $$terminal([ 68.5, 148.5 ] ); $$terminal([ 68.5, 137.5 ] ); // Go Down the West edge $$terminal([ 69.5, 136.5 ] ); $$terminal([ 80.5, 136.5 ] ); // Go East Across the Bottom $$terminal([ 81.5, 137.5 ] ); $$terminal([ 81.5, 148.5 ] ); // Go Up the rest of the east edge and home $$path( "DIELECTRIC_4", 0.0 ); // // Net: MGT_AVAUX // // Fill Layer: Signal_6 // // Location: from the DCDC_4 Converter to the Eastern part of FPGA // // Resolution: Medium // $$initial([ 163.5, 204.0], , @nosnap ); // Start in the NE corner $$terminal([ 162.5, 205.0 ] ); $$terminal([ 155.5, 205.0 ] ); // Go West across the Top of DCDC_4 $$terminal([ 154.5, 204.0 ] ); $$terminal([ 154.5, 192.0 ] ); // NO_MITER Go Down the West edge of DCDC_4 $$terminal([ 151.2, 188.7 ] ); // NO_MITER Go Diagonally Down and West to FPGA NE corner $$terminal([ 135.8, 188.7 ] ); // NO_MITER Go West further West across Top of the FPGA // until just before C161 an AVAUX cap $$terminal([ 135.5, 189.0 ] ); // NO_MITER Go NW just 0.3 mm to get above C161 $$terminal([ 125.3, 189.0 ] ); // NO_MITER Finish going West further West // across Top of the FPGA $$terminal([ 121.3, 185.0 ] ); // NO_MITER Go 45 deg SW to escape converters $$terminal([ 100.0, 185.0 ] ); // Go far West to pick up some bypass capacitors $$terminal([ 99.0, 184.0 ] ); $$terminal([ 99.0, 171.7 ] ); // NO_MITER Go Down the West edge of this AVAUX fill $$terminal([ 104.2, 166.5 ] ); // NO_MITER Go 45 deg SE to join Hi Res AVAUX fill $$terminal([ 141.5, 166.5 ] ); // NO_MITER Go East $$terminal([ 141.5, 113.5 ] ); // NO_MITER Go South $$terminal([ 104.2, 113.5 ] ); // NO_MITER Go West $$terminal([ 103.2, 112.5 ] ); // NO_MITER Go SW at 45 deg for just 1 mm $$terminal([ 99.0, 112.5 ] ); // NO_MITER Go West $$terminal([ 93.5, 107.0 ] ); // NO_MITER Go 45 deg SW to pick up the Tant Cap $$terminal([ 93.5, 99.0 ] ); // Go South $$terminal([ 94.5, 98.0 ] ); $$terminal([ 155.0, 98.0 ] ); // Go East Across the Bottom of FPGA $$terminal([ 156.0, 99.0 ] ); $$terminal([ 156.0, 145.0 ] ); // NO_MITER Go Up part way the east edge of FPGA $$terminal([ 163.0, 152.0 ] ); // NO_MITER Go Diagonally NE $$terminal([ 163.0, 182.0 ] ); // NO_MITER Go Up $$terminal([ 163.5, 182.5 ] ); // NO_MITER Go 45 deg NE for more Cu - close to FEX lines $$terminal([ 163.5, 204.0 ] ); // Go Up the rest of the east edge of DCDC_4 and home $$path( "DIELECTRIC_4", 0.0 ); // // Net: MGT_AVAUX // // Fill Layer: Signal_6 // // Location: MGT_AVAUX pins under the FPGA // // Resolution: HI // $$initial([ 142.0, 167.0 ], , @nosnap ); // NO_MITER Start in the NE corner $$terminal([ 104.2, 167.0 ] ); // NO_MITER Go West across the Top of FPGA $$terminal([ 104.2, 153.3 ] ); // NO_MITER Go Down the West edge just far enough // to pick up all of the AVAUX pins $$terminal([ 106.3, 151.2 ] ); // NO_MITER Go short SE diagonal $$terminal([ 124.4, 151.2 ] ); // NO_MITER Go short SE diagonal $$terminal([ 125.4, 150.2 ] ); // NO_MITER Go short SE diagonal $$terminal([ 139.0, 150.2 ] ); // Go East between 1V8 and AVAUX pins $$terminal([ 140.0, 149.2 ] ); $$terminal([ 140.0, 130.8 ] ); // Go South past the East edge of the 1V8 Finger $$terminal([ 139.0, 129.8 ] ); $$terminal([ 127.4, 129.8 ] ); // NO_MITER Go West between 1V8 and AVAUX pins $$terminal([ 126.4, 128.8 ] ); // NO_MITER Go 45 deg SW $$terminal([ 106.3, 128.8 ] ); // NO_MITER Go West between 1V8 and AVAUX pins $$terminal([ 104.2, 126.7 ] ); // NO_MITER Go short SW diagonal $$terminal([ 104.2, 113.0 ] ); // NO_MITER Go Down $$terminal([ 142.0, 113.0 ] ); // NO_MITER Go East Across the Bottom of FPGA $$terminal([ 142.0, 167.0 ] ); // NO_MITER Go North up the East edge // of Hi Res fill and home $$path( "DIELECTRIC_4", 0.0 ); // // Net: ECLK_3V3 // // Fill Layer: Signal_6 // // Location: ECLK_3V3 Fill Under the 25 MHz Ethernet Clock and Fanout // // Resolution: Midium // $$initial([ 47.5, 68.0], , @nosnap ); // Start in the NE corner and go CCW $$terminal([ 46.5, 69.0 ] ); $$terminal([ 27.5, 69.0 ] ); // Go West across the Top $$terminal([ 26.5, 68.0 ] ); $$terminal([ 26.5, 56.0 ] ); // Go Down the West edge $$terminal([ 27.5, 55.0 ] ); $$terminal([ 46.5, 55.0 ] ); // Go East Across the Bottom $$terminal([ 47.5, 56.0 ] ); $$terminal([ 47.5, 68.0 ] ); // Go Up the East edge and home $$path( "DIELECTRIC_4", 0.0 ); // // // // Shape Edit Section of the // -==========----------------- // // Hub Module Printed Circuit Board Geometry File // -------------------------------------------------- // // // Area Fills on OTHER Layers // ---------------=======-------- // // // // Original Rev. 3-Feb-2016 // Current Rev. 10-Jan-2017 // // // Notes: // // - These are Area Fills because they are on OTHER Signal layer // in the Mentor design. // // - These fills are kept back at least 5 mm from the // top and bottom edges so that the area fills will not be // exposed when the top and bottom edges are milled to // allow this card to fit into the crate card guides. // // - These fills are kept back at least 1mm from the front // and back edges to comply with normal decorum. // // - As of 10-Jan-2017 there are 3 shapes defined in this file. // // // Shield under the ATCA Power Entry Module // Shield under the ATCA Isolated +12V Module // Shield between Hub and Rod // // // // Net: Shield_ATCA_Entry_Module // // Fill Layer: Signal_1 <---- // // Location: Fill under the ATCA Power Entry Module // // Resolution: Medium // $$initial([ 161.2, 38.5], , @nosnap ); // Start in the NE corner $$terminal([ 160.2, 39.5 ] ); $$terminal([ 104.8, 39.5 ] ); // Go West across the Top $$terminal([ 103.8, 38.5 ] ); $$terminal([ 103.8, 6.0 ] ); // Go Down the West edge $$terminal([ 104.8, 5.0 ] ); $$terminal([ 160.2, 5.0 ] ); // Go East Across the Bottom $$terminal([ 161.2, 6.0 ] ); $$terminal([ 161.2, 38.5 ] ); // Go Up the rest of the east edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: Shield_ATCA_12V_Module // // Fill Layer: Signal_1 <---- // // Location: Fill under the ATCA Isolated +12V Module // // Resolution: Medium // $$initial([ 85.2, 39.0], , @nosnap ); // Start in the NE corner $$terminal([ 84.2, 40.0 ] ); $$terminal([ 28.8, 40.0 ] ); // Go West across the Top $$terminal([ 27.8, 39.0 ] ); $$terminal([ 27.8, 6.0 ] ); // Go Down the West edge $$terminal([ 28.8, 5.0 ] ); $$terminal([ 84.2, 5.0 ] ); // Go East Across the Bottom $$terminal([ 85.2, 6.0 ] ); $$terminal([ 85.2, 39.0 ] ); // Go Up the rest of the east edge and home $$path( "SHAPE_EDIT", 0.0 ); // // Net: Shield_Hub_ROD // // Fill Layer: Signal_1 <---- // // Location: Fill under the ROD // // Resolution: Medium // $$initial([ 235.5, 315.5], , @nosnap ); // Start in the NE corner $$terminal([ 234.5, 316.5 ] ); $$terminal([ 35.5, 316.5 ] ); // Go West across the Top $$terminal([ 34.5, 315.5 ] ); $$terminal([ 34.5, 216.5 ] ); // Go Down the West edge $$terminal([ 35.5, 215.5 ] ); $$terminal([ 130.0, 215.5 ] ); // Go East part way Across the Bottom $$terminal([ 131.0, 216.5 ] ); $$terminal([ 131.0, 221.3 ] ); // Go North above the Regulator Heat Sink Gnd $$terminal([ 132.0, 222.3 ] ); $$terminal([ 153.0, 222.3 ] ); // Go further East $$terminal([ 154.0, 223.3 ] ); $$terminal([ 154.0, 236.0 ] ); // Go further North $$terminal([ 155.0, 237.0 ] ); $$terminal([ 190.0, 237.0 ] ); // Go further East $$terminal([ 191.0, 236.0 ] ); $$terminal([ 191.0, 216.5 ] ); // Go back South $$terminal([ 192.0, 215.5 ] ); $$terminal([ 234.5, 215.5 ] ); // Go East the rest of the way Across the Bottom $$terminal([ 235.5, 216.5 ] ); $$terminal([ 235.5, 315.5 ] ); // Go Up the rest of the east edge and home $$path( "SHAPE_EDIT", 0.0 ); // // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // // Repete the above on design layer $$path( "DIELECTRIC", 0.0 ); // // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- // // // Net: Shield_ATCA_Entry_Module // // Fill Layer: Signal_1 <---- // // Location: Fill under the ATCA Power Entry Module // // Resolution: Medium // $$initial([ 161.2, 38.5], , @nosnap ); // Start in the NE corner $$terminal([ 160.2, 39.5 ] ); $$terminal([ 104.8, 39.5 ] ); // Go West across the Top $$terminal([ 103.8, 38.5 ] ); $$terminal([ 103.8, 6.0 ] ); // Go Down the West edge $$terminal([ 104.8, 5.0 ] ); $$terminal([ 160.2, 5.0 ] ); // Go East Across the Bottom $$terminal([ 161.2, 6.0 ] ); $$terminal([ 161.2, 38.5 ] ); // Go Up the rest of the east edge and home $$path( "DIELECTRIC", 0.0 ); // // Net: Shield_ATCA_12V_Module // // Fill Layer: Signal_1 <---- // // Location: Fill under the ATCA Isolated +12V Module // // Resolution: Medium // $$initial([ 85.2, 39.0], , @nosnap ); // Start in the NE corner $$terminal([ 84.2, 40.0 ] ); $$terminal([ 28.8, 40.0 ] ); // Go West across the Top $$terminal([ 27.8, 39.0 ] ); $$terminal([ 27.8, 6.0 ] ); // Go Down the West edge $$terminal([ 28.8, 5.0 ] ); $$terminal([ 84.2, 5.0 ] ); // Go East Across the Bottom $$terminal([ 85.2, 6.0 ] ); $$terminal([ 85.2, 39.0 ] ); // Go Up the rest of the east edge and home $$path( "DIELECTRIC", 0.0 ); // // Net: Shield_Hub_ROD // // Fill Layer: Signal_1 <---- // // Location: Fill under the ROD // // Resolution: Medium // $$initial([ 235.5, 315.5], , @nosnap ); // Start in the NE corner $$terminal([ 234.5, 316.5 ] ); $$terminal([ 35.5, 316.5 ] ); // Go West across the Top $$terminal([ 34.5, 315.5 ] ); $$terminal([ 34.5, 216.5 ] ); // Go Down the West edge $$terminal([ 35.5, 215.5 ] ); $$terminal([ 130.0, 215.5 ] ); // Go East part way Across the Bottom $$terminal([ 131.0, 216.5 ] ); $$terminal([ 131.0, 221.3 ] ); // Go North above the Regulator Heat Sink Gnd $$terminal([ 132.0, 222.3 ] ); $$terminal([ 153.0, 222.3 ] ); // Go further East $$terminal([ 154.0, 223.3 ] ); $$terminal([ 154.0, 236.0 ] ); // Go further North $$terminal([ 155.0, 237.0 ] ); $$terminal([ 190.0, 237.0 ] ); // Go further East $$terminal([ 191.0, 236.0 ] ); $$terminal([ 191.0, 216.5 ] ); // Go back South $$terminal([ 192.0, 215.5 ] ); $$terminal([ 234.5, 215.5 ] ); // Go East the rest of the way Across the Bottom $$terminal([ 235.5, 216.5 ] ); $$terminal([ 235.5, 315.5 ] ); // Go Up the rest of the east edge and home $$path( "DIELECTRIC", 0.0 ); $$circle( "SHEET_DIELECTRIC_7" , 211.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 211.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_7" , 212.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 212.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_11", 121.00, 115.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 121.00, 115.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_4" , 203.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 203.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_11", 121.00, 116.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 121.00, 116.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_4" , 202.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 202.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 143.81, 243.30, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 143.81, 243.30, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_7" , 202.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 202.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 143.81, 244.57, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 143.81, 244.57, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_7" , 203.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 203.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 218.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 218.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 217.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 217.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 119.00, 120.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 119.00, 120.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 208.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 208.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 119.00, 119.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 119.00, 119.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 209.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 209.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 140.00, 245.84, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 140.00, 245.84, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 209.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 209.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 140.00, 244.57, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 140.00, 244.57, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 208.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 208.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_6" , 223.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 223.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_6" , 224.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 224.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 119.00, 115.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 119.00, 115.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_5" , 215.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 215.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 119.00, 116.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 119.00, 116.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_5" , 214.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 214.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 143.81, 245.84, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 143.81, 245.84, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_6" , 214.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 214.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 143.81, 247.11, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 143.81, 247.11, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_6" , 215.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 215.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 230.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 230.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 229.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 229.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_11", 220.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 220.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_11", 117.00, 120.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 117.00, 120.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_11", 221.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 221.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_11", 117.00, 119.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 117.00, 119.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 140.00, 248.38, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 140.00, 248.38, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 221.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 221.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 140.00, 247.11, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 140.00, 247.11, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 220.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 220.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_7" , 235.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 235.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_7" , 236.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 236.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_11", 117.00, 115.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 117.00, 115.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_4" , 227.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 227.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_11", 117.00, 116.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 117.00, 116.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_4" , 226.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 226.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 143.81, 248.38, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 143.81, 248.38, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_7" , 226.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 226.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 143.81, 249.65, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 143.81, 249.65, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_7" , 227.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 227.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 242.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 242.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 241.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 241.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 114.00, 120.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 114.00, 120.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 232.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 232.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 114.00, 119.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 114.00, 119.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 233.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 233.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 140.00, 250.92, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 140.00, 250.92, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 233.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 233.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 140.00, 249.65, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 140.00, 249.65, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 232.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 232.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_6" , 246.40, 92.10, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 246.40, 92.10, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_6" , 246.40, 93.10, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 246.40, 93.10, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 112.00, 115.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 112.00, 115.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_5" , 239.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 239.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_10", 112.00, 116.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 112.00, 116.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_5" , 238.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 238.10, 89.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 143.81, 250.92, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 143.81, 250.92, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_6" , 238.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 238.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 143.81, 252.19, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 143.81, 252.19, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_6" , 239.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 239.10, 95.80, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 206.10, 102.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 206.10, 102.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_9" , 205.10, 102.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 205.10, 102.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_11", 129.00, 120.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 129.00, 120.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_11", 196.80, 104.20, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 196.80, 104.20, 0.4, 0 ); 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$$circle( "SHEET_DIELECTRIC_12", 129.00, 115.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_4" , 203.10, 102.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 203.10, 102.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_11", 129.00, 116.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 129.00, 116.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_4" , 202.10, 102.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 202.10, 102.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 143.81, 253.46, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 143.81, 253.46, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_7" , 202.10, 108.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 202.10, 108.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 143.81, 254.73, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 143.81, 254.73, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_7" , 203.10, 108.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 203.10, 108.40, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_8" , 218.10, 102.00, 0.4, 0 ); $$circle( "SHEET_DIELECTRIC_12", 218.10, 102.00, 0.4, 0 ); 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