Housing: Move some stuff around
Next up, we need to do the mount for the power regulator.
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1 changed files with 45 additions and 23 deletions
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@ -6,22 +6,16 @@
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wall_thickness = 2;
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// The dimensions of the box on the inside
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box_inside = [
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110, // X
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135, // Y
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110 // Z
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];
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box_inside = [ 130, 140, 110 ];
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screw_diameter = 3;
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screw_length = 6.3;
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bb_mount_height = 5;
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battery = [19, 60, 70];
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// -------------------------------------------
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corner_piece_size = screw_diameter +
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(wall_thickness * 2);
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box_outside = [
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box_inside[0] + (wall_thickness * 2),
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box_inside[1] + (wall_thickness * 2),
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@ -30,6 +24,31 @@ box_outside = [
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// -------------------------------------------
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offset_arduino = [53.4+8, 40, wall_thickness];
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breadboard = [ 46, 35+24+13, 49 ];
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offset_breadboard = [70, 20, wall_thickness - 0.1];
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bb_mount_height = 5;
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battery = [ 60, 19, 70 ];
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offset_battery = [
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wall_thickness + corner_piece_size + 10,
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box_inside[1] - battery[1],
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0
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];
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power_reg = [ 54, 31, 12 ];
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power_reg_underneath = 9;
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offset_power_reg = [
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offset_arduino[0] + 10,
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85,
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wall_thickness + power_reg_underneath
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];
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// -------------------------------------------
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// Misc. Utility functions
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// -------------------------------------------
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@ -52,7 +71,6 @@ module screw_port() {
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}
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// Corner generation
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corner_piece_size = screw_diameter + (wall_thickness * 2);
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module corner_piece() {
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color("red") difference() {
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cube([
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@ -85,7 +103,7 @@ difference() {
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// Arduino
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// ----------------------
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translate([53.4+8, 60, wall_thickness]) rotate([0, 0, 90]) {
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translate(offset_arduino) rotate([0, 0, 90]) {
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screw_port(); // Top left
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translate([50.8, 15.2]) screw_port();
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translate([50.8, 43.1]) screw_port();
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@ -96,34 +114,38 @@ translate([53.4+8, 60, wall_thickness]) rotate([0, 0, 90]) {
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// Breadboard Mounting
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// ----------------------
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translate([70, 10, wall_thickness - 0.1]) difference() {
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% translate(offset_breadboard + [wall_thickness, -13, 0]) cube(breadboard);
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translate(offset_breadboard) difference() {
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union() {
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translate([wall_thickness*2, 0, 0]) cube([
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35 - (wall_thickness*2),
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46 + wall_thickness*2,
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46 - (wall_thickness*2),
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35 + wall_thickness*2,
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bb_mount_height
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]);
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translate([0, wall_thickness*2, 0]) cube([
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35 + wall_thickness*2,
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46 - (wall_thickness*2),
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46 + wall_thickness*2,
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35 - (wall_thickness*2),
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bb_mount_height
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]);
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}
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translate([wall_thickness, wall_thickness, -1]) cube([
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35,
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46,
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35,
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bb_mount_height + 2
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]);
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}
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// Battery box
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// ----------------------
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% translate([
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box_inside[0] - battery[0] + wall_thickness,
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box_inside[1] - battery[1] - corner_piece_size,
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0
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]) cube(battery);
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// NOTE: We'll be using velcro here to allow us to remove it easily. If we can't find any, then we'll probably have to make a 'proper' mount
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% translate(offset_battery) cube(battery);
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// Power Regulator
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// ----------------------
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% translate(offset_power_reg) cube(power_reg);
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// Corners
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// -------------------------------------------
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