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455 lines
9.7 KiB
OpenSCAD
455 lines
9.7 KiB
OpenSCAD
//
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// NopSCADlib Copyright Chris Palmer 2018
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// nop.head@gmail.com
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// hydraraptor.blogspot.com
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//
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// This file is part of NopSCADlib.
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//
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// NopSCADlib is free software: you can redistribute it and/or modify it under the terms of the
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// GNU General Public License as published by the Free Software Foundation, either version 3 of
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// the License, or (at your option) any later version.
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//
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// NopSCADlib is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
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// without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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// See the GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License along with NopSCADlib.
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// If not, see <https://www.gnu.org/licenses/>.
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//
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//!# NopSCADlib
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//! An ever expanding library of parts modelled in OpenSCAD useful for 3D printers and enclosures for electronics, etc.
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//!
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//! It contains lots of vitamins (the RepRap term for non-printed parts), some general purpose printed parts and some utilities.
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//! There are also Python scripts to generate Bills of Materials (BOMs),
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//! STL files for all the printed parts, DXF files for CNC routed parts in a project and a manual containing assembly
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//! instructions and exploded views by scraping markdown embedded in OpenSCAD comments, [see scripts](scripts/readme.md).
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//!
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//! A simple example project can be found [here](examples/MainsBreakOutBox/readme.md).
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//!
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//! For more examples of what it can make see the [gallery](gallery/readme.md).
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//!
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//! The license is GNU General Public License v3.0, see [COPYING](COPYING).
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//!
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//! See [usage](docs/usage.md) for requirements, installation instructions and a usage guide.
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//!
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//! <img src="libtest.png" width="100%"/>
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//
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// This file shows all the parts in the library.
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//
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include <lib.scad>
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use <tests/ball_bearings.scad>
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use <tests/batteries.scad>
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use <tests/belts.scad>
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use <tests/blowers.scad>
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use <tests/bulldogs.scad>
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use <tests/buttons.scad>
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use <tests/cable_strips.scad>
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use <tests/cameras.scad>
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use <tests/camera_housing.scad>
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use <tests/circlips.scad>
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use <tests/components.scad>
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use <tests/d_connectors.scad>
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use <tests/displays.scad>
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use <tests/drag_chain.scad>
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use <tests/extrusions.scad>
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use <tests/extrusion_brackets.scad>
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use <tests/fans.scad>
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use <tests/fuseholder.scad>
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use <tests/geared_steppers.scad>
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use <tests/hot_ends.scad>
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use <tests/IECs.scad>
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use <tests/inserts.scad>
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use <tests/jack.scad>
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use <tests/KP_pillow_blocks.scad>
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use <tests/leadnuts.scad>
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use <tests/LDRs.scad>
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use <tests/LEDs.scad>
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use <tests/light_strips.scad>
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use <tests/linear_bearings.scad>
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use <tests/LED_meters.scad>
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use <tests/magnets.scad>
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use <tests/microswitches.scad>
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use <tests/modules.scad>
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use <tests/nuts.scad>
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use <tests/o_ring.scad>
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use <tests/opengrab.scad>
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use <tests/panel_meters.scad>
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use <tests/PCBs.scad>
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use <tests/pillars.scad>
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use <tests/press_fit.scad>
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use <tests/PSUs.scad>
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use <tests/pulleys.scad>
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use <tests/rails.scad>
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use <tests/ring_terminals.scad>
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use <tests/rockers.scad>
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use <tests/rod.scad>
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use <tests/screws.scad>
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use <tests/SCS_bearing_blocks.scad>
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use <tests/sealing_strip.scad>
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use <tests/shaft_couplings.scad>
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use <tests/sheets.scad>
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use <tests/SK_brackets.scad>
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use <tests/spades.scad>
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use <tests/springs.scad>
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use <tests/SSRs.scad>
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use <tests/stepper_motors.scad>
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use <tests/Swiss_clips.scad>
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use <tests/toggles.scad>
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use <tests/transformers.scad>
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use <tests/tubings.scad>
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use <tests/veroboard.scad>
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use <tests/washers.scad>
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use <tests/variacs.scad>
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use <tests/zipties.scad>
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use <tests/box.scad>
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use <tests/butt_box.scad>
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use <tests/cable_grommets.scad>
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use <tests/carriers.scad>
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use <tests/corner_block.scad>
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use <tests/door_hinge.scad>
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use <tests/door_latch.scad>
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use <tests/fan_guard.scad>
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use <tests/fixing_block.scad>
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use <tests/flat_hinge.scad>
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use <tests/foot.scad>
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use <tests/handle.scad>
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use <tests/PCB_mount.scad>
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use <tests/printed_box.scad>
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use <tests/ribbon_clamp.scad>
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use <tests/screw_knob.scad>
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use <tests/socket_box.scad>
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use <tests/strap_handle.scad>
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use <tests/SSR_shroud.scad>
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use <tests/PSU_shroud.scad>
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x0 = 0;
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x1 = x0 + 110;
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x2 = x1 + 90;
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x3 = x2 + 130;
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x4 = x3 + 200;
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x5 = 850;
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x6 = x5 + 150;
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cable_grommets_y = 0;
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translate([x5, cable_grommets_y])
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cable_grommets();
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translate([x5 + 50, cable_grommets_y])
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ribbon_clamps();
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translate([x5 + 95, cable_grommets_y])
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press_fits();
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translate([x5, cable_grommets_y + 60])
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fixing_blocks();
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translate([x5, cable_grommets_y + 90])
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corner_blocks();
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translate([x5, cable_grommets_y + 150])
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feet();
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translate([x5 + 70, cable_grommets_y + 150])
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screw_knobs();
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translate([x5, cable_grommets_y + 470]) {
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door_hinges()
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door_latches();
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translate([120, 0])
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flat_hinges();
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}
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translate([x5, cable_grommets_y + 370])
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no_explode() socket_boxes();
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translate([x5 + 60, cable_grommets_y + 200])
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strap_handles();
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translate([x5, cable_grommets_y + 250])
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handle();
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translate([950, 600])
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box_test();
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translate([890, 750])
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printed_boxes();
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translate([850, 1330])
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bbox_test();
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inserts_y = 0;
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nuts_y = inserts_y + 20;
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washers_y = nuts_y + 120;
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screws_y = washers_y + 120;
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circlips_y = screws_y + 160;
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springs_y = circlips_y + 20;
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o_rings_y = springs_y;
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sealing_strip_y = springs_y + 20;
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tubings_y = sealing_strip_y + 20;
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pillars_y = tubings_y + 20;
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ball_bearings_y = pillars_y + 40;
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pulleys_y = ball_bearings_y +40;
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hot_ends_y = pulleys_y + 60;
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linear_bearings_y = hot_ends_y + 50;
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sheets_y = linear_bearings_y + 100;
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pcbs_y = sheets_y + 40;
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displays_y = pcbs_y + 170;
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fans_y = displays_y + 80;
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transformers_y = fans_y + 120;
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psus_y = transformers_y + 190;
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translate([x0 + 35, inserts_y])
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inserts();
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translate([x0, inserts_y])
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ring_terminals();
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translate([x0, nuts_y])
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nuts();
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translate([x0, washers_y])
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washers();
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translate([x0, screws_y])
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screws();
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translate([x0, circlips_y])
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circlips();
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translate([x0, o_rings_y])
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o_rings();
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translate([x0 + 20, springs_y])
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springs();
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translate([x0 + 50, sealing_strip_y])
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sealing_strip_test();
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translate([x0, tubings_y])
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tubings();
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translate([x0, pillars_y])
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pillars();
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translate([x0, ball_bearings_y])
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ball_bearings();
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translate([x0, pulleys_y])
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pulleys();
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translate([x0, linear_bearings_y]) {
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linear_bearings();
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rods();
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}
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translate([x0 + 10, hot_ends_y])
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hot_ends();
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translate([x0, sheets_y])
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sheets();
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translate([x0, pcbs_y])
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pcbs();
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translate([x0, displays_y])
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displays();
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translate([x0, fans_y]) {
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fans();
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translate_z(3)
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fan_guards();
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}
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translate([x0, transformers_y])
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variacs();
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translate([x0, psus_y]) {
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psus();
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psu_shrouds();
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}
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zipties_y = 0;
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bulldogs_y = zipties_y + 30;
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swiss_clips_y = bulldogs_y + 35;
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leadnuts_y = swiss_clips_y + 50;
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translate([x1, zipties_y])
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zipties();
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translate([x1, bulldogs_y])
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bulldogs();
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translate([x1, swiss_clips_y])
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swiss_clips();
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translate([x1, leadnuts_y])
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leadnuts();
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leds_y = 0;
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carriers_y = leds_y + 40;
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magnets_y = carriers_y + 40;
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spades_y = magnets_y + 20;
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buttons_y = spades_y + 20;
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jacks_y = buttons_y + 40;
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microswitches_y = jacks_y + 40;
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rockers_y = microswitches_y + 40;
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toggles_y = rockers_y + 60;
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components_y = toggles_y + 40;
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translate([x2, leds_y])
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leds();
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translate([x2 + 35, leds_y])
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ldrs();
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translate([x2 + 8, carriers_y])
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carriers();
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translate([x2, magnets_y])
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magnets();
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translate([x2 + 20, carriers_y])
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led_meters();
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translate([x2 + 70, leds_y])
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fuseholders();
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translate([x2, spades_y])
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spades();
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translate([x2, buttons_y])
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buttons();
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translate([x2, jacks_y])
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jacks();
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translate([x2, microswitches_y])
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microswitches();
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translate([x2, rockers_y])
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rockers();
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translate([x2, toggles_y])
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toggles();
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translate([x2, components_y])
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components();
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veroboard_y = 0;
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d_connectors_y = veroboard_y + 110;
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iecs_y = d_connectors_y + 80;
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modules_y = iecs_y + 60;
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ssrs_y = modules_y + 80;
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blowers_y = ssrs_y + 60;
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batteries_y = blowers_y + 100;
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steppers_y = batteries_y + 55;
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panel_meters_y = steppers_y + 70;
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extrusions_y = panel_meters_y + 80;
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translate([x3, veroboard_y])
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veroboard_test();
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translate([x3 + 70, veroboard_y + 30])
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geared_steppers();
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translate([x3 + 140, veroboard_y + 20])
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pcb_mounts();
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translate([x3 + 170, veroboard_y + 16])
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cameras();
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translate([x3, d_connectors_y])
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d_connectors();
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translate([x3 + 170, d_connectors_y - 10])
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camera_housings();
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translate([x3, iecs_y])
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iecs();
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translate([x3 + 15, modules_y])
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microview();
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translate([x3 + 60, modules_y])
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hygrometer();
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translate([x3 + 90, modules_y])
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modules();
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translate([x3, ssrs_y]) {
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ssrs();
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ssr_shrouds();
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}
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translate([x3, blowers_y])
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blowers();
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translate([x3, batteries_y])
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batteries();
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translate([x2, steppers_y]) // interloper
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stepper_motors();
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translate([x2, panel_meters_y])
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panel_meters();
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translate([x2, extrusions_y])
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extrusions();
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translate([x3, transformers_y])
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transformers();
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belts_y = 0;
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rails_y = belts_y + 200;
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extrusion_brackets_y = rails_y + 250;
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sk_brackets_y = extrusion_brackets_y + 80;
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kp_pillow_blocks_y = sk_brackets_y + 50;
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scs_bearing_blocks_y = kp_pillow_blocks_y + 60;
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translate([x4 + 200, belts_y + 58]) {
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belt_test();
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translate([0, 60])
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opengrab_test();
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}
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translate([x4 + 175, belts_y, -20])
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drag_chains();
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translate([x4, rails_y + 130])
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rails();
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translate([770, fans_y + 50])
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cable_strips();
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translate([x4, kp_pillow_blocks_y])
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kp_pillow_blocks();
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translate([x4, sk_brackets_y])
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sk_brackets();
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translate([x4, extrusion_brackets_y])
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extrusion_brackets();
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translate([x4 + 120, extrusion_brackets_y])
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shaft_couplings();
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translate([x4, scs_bearing_blocks_y])
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scs_bearing_blocks();
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translate([x6, 125])
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light_strips();
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