Create an arduino_nano electronics mount
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@ -62,6 +62,41 @@ module l289N_nut_seats (r = 3/2 - .2, MOD_MOUNT = 0) {
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m3_nut_seat([0, DISTANCE, 0]);
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m3_nut_seat([0, DISTANCE, 0]);
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}
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}
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module arduino_nano_mount (pos = [0, 0, 0]) {
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X = 18.2;
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Y = 43.9;
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Z = 10.5;
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BOARD_Z = 1.5;
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translate(pos) {
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difference () {
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//outer
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cube([X + 6, Y + 6, Z], center = true);
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//inner void minus corners
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difference () {
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cube([X - 1, Y - 1, Z + 1], center = true);
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translate([(X / 2) - 1, (Y / 2) - 1, -BOARD_Z]) cylinder(r = (2 / 2), h = Z + 1, center = true, $fn = 20);
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translate([(-X / 2) + 1, (Y / 2) - 1, -BOARD_Z]) cylinder(r = (2 / 2), h = Z + 1, center = true, $fn = 20);
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translate([(X / 2) - 1, (-Y / 2) + 1, -BOARD_Z]) cylinder(r = (2 / 2), h = Z + 1, center = true, $fn = 20);
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translate([(-X / 2) + 1, (-Y / 2) + 1, -BOARD_Z]) cylinder(r = (2 / 2), h = Z + 1, center = true, $fn = 20);
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}
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//board void
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translate([0, 0, (Z / 2) - (BOARD_Z / 2)]) cube([X, Y, BOARD_Z], center = true);
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//usb void
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translate([0, Y / 2, (Z / 2) - (6 / 2) + 0.01]) cube([8, 10, 6], center = true);
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translate([0, -30, 0]) cube([30, 20, 20], center = true);
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}
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translate([0, -(Y/2)+4.5, -2]) cube([X+5, 5, 2], center = true);
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}
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}
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module usb_mini_void (pos = [0, 0, 0]) {
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translate(pos) {
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translate([0, 25, 2]) {
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cube([8, 10, 5], center = true);
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translate([0, 5, 0]) cube([12, 10, 8], center = true);
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}
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}
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}
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module intval_panel_printed () {
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module intval_panel_printed () {
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difference () {
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difference () {
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@ -951,7 +986,7 @@ module microswitch (position = [0, 0, 0], rotation = [0, 0, 0]) {
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}
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}
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}
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}
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}
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}
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module l289N_mount () {
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module l289N_mount (pos = [0, 0, 0]) {
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$fn = 60;
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$fn = 60;
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DISTANCE = 36.5;
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DISTANCE = 36.5;
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H = 4;
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H = 4;
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@ -959,20 +994,22 @@ module l289N_mount () {
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module stand () {
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module stand () {
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difference () {
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difference () {
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cylinder(r1 = 4, r2 = 3, h = H, center = true);
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cylinder(r1 = 4, r2 = 3, h = H, center = true);
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cylinder(r = 1.5, h = H, center = true);
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cylinder(r = 1.5, h = H + 1, center = true);
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}
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}
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}
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}
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translate([0, 0, 0]) stand();
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translate(pos) {
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translate([DISTANCE, 0, 0]) stand();
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translate([0, 0, 0]) stand();
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translate([DISTANCE, DISTANCE, 0]) stand();
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translate([DISTANCE, 0, 0]) stand();
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translate([0, DISTANCE, 0]) stand();
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translate([DISTANCE, DISTANCE, 0]) stand();
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difference () {
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translate([0, DISTANCE, 0]) stand();
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translate([DISTANCE/2, DISTANCE/2, -3]) rounded_cube([DISTANCE + 8, DISTANCE + 8, THICKNESS], 8, center = true); //base
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difference () {
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translate([DISTANCE/2, DISTANCE/2, -3]) rounded_cube([DISTANCE - 5, DISTANCE - 5, THICKNESS], 10, center = true); //base
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translate([DISTANCE/2, DISTANCE/2, -3]) rounded_cube([DISTANCE + 8, DISTANCE + 8, THICKNESS], 8, center = true); //base
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translate([0, 0, 0]) cylinder(r = 1.5, h = H * 5, center = true);
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translate([DISTANCE/2, DISTANCE/2, -3]) rounded_cube([DISTANCE - 5, DISTANCE - 5, THICKNESS + 1], 10, center = true); //base
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translate([DISTANCE, 0, 0]) cylinder(r = 1.5, h = H * 5, center = true);
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translate([0, 0, 0]) cylinder(r = 1.5, h = H * 5, center = true);
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translate([DISTANCE, DISTANCE, 0]) cylinder(r = 1.5, h = H * 5, center = true);
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translate([DISTANCE, 0, 0]) cylinder(r = 1.5, h = H * 5, center = true);
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translate([0, DISTANCE, 0]) cylinder(r = 1.5, h = H * 5, center = true);
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translate([DISTANCE, DISTANCE, 0]) cylinder(r = 1.5, h = H * 5, center = true);
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translate([0, DISTANCE, 0]) cylinder(r = 1.5, h = H * 5, center = true);
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}
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}
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}
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}
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}
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module pcb_mount () {
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module pcb_mount () {
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@ -1245,6 +1282,18 @@ module case_standoff_alt () {
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}
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}
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}
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}
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module arduino_nano_electronics_mount (pos = [0, 0, 0]) {
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RemoveBottom = 2;
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translate(pos) {
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l289N_mount();
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translate([19, -16, 0.75 - RemoveBottom]) rotate([0, 0, 90]) difference() {
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arduino_nano_mount();
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translate([0, 0, -(RemoveBottom / 2)-3.25]) cube([30, 60, RemoveBottom], center = true);
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translate([45-19, -15 + 16, -0.75 + RemoveBottom]) cube([20, 30, 20], center = true);
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}
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}
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}
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module stl_plate () {
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module stl_plate () {
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//translate([0, 0, -0.5]) cube([150, 150, 1], center = true);
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//translate([0, 0, -0.5]) cube([150, 150, 1], center = true);
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translate([-38, 41, 7.5]) rotate([0, 180, 0]) intval_laser_standoffs_plate();
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translate([-38, 41, 7.5]) rotate([0, 180, 0]) intval_laser_standoffs_plate();
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@ -1265,20 +1314,21 @@ module dxf_plate () {
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module exploded_view () {
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module exploded_view () {
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intval_panel_laser();
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intval_panel_laser();
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translate([0, 0, 5]) intval_electronics_mount();
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//translate([0, 0, 5]) intval_electronics_mount();
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translate([0, 0, 5]) motor_mount_bottom();
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translate([0, 0, 5]) motor_mount_bottom();
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translate([0, 0, 20]) motor_key();
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translate([0, 0, 20]) motor_key();
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translate([one_to_one_x, one_to_one_y, 50]) geared_motor_mount();
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translate([one_to_one_x, one_to_one_y, 50]) geared_motor_mount();
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translate([one_to_one_x, one_to_one_y, 50]) motor_cap(false);
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translate([one_to_one_x, one_to_one_y, 50]) motor_cap(false);
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translate([0, 0, 0]) intval_laser_panel_cover(false, ALL_RED=true);
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//translate([0, 0, 0]) intval_laser_panel_cover(false, ALL_RED=true);
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translate([one_to_one_x, one_to_one_y, 0]) rotate([180, 0, 0]) bearing_reinforcement();
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translate([one_to_one_x, one_to_one_y, 0]) rotate([180, 0, 0]) bearing_reinforcement();
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translate([-38, -1, 15]) rotate([0, 0, -13]) arduino_nano_electronics_mount();
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}
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}
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//exploded_view();
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//exploded_view();
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PART = "printed_panel_cover_buttons";
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PART = "arduino_nano_electronics_mount";
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//models
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//models
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@ -1330,6 +1380,11 @@ if (PART == "plate") {
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trinket_mount();
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trinket_mount();
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} else if (PART == "l289N_mount") {
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} else if (PART == "l289N_mount") {
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l289N_mount();
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l289N_mount();
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} else if (PART == "arduino_nano_electronics_mount") {
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//translate([-38, -1, 15]) rotate([0, 0, -13])
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arduino_nano_electronics_mount();
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//intval_panel_printed();
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//printed_panel_cover();
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} else if (PART == "printed_panel") {
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} else if (PART == "printed_panel") {
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intval_panel_printed();
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intval_panel_printed();
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} else if (PART == "printed_panel_cover") {
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} else if (PART == "printed_panel_cover") {
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