Openscad progress, made carriage, set up plates
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@ -53,5 +53,5 @@ module camera_mount () {
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}
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}
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bellows_camera_board();
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//bellows_camera_board();
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//translate([0, 0, 9]) color("red") camera_mount();
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@ -0,0 +1,118 @@
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include <./common.scad>;
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ROD_D = 25.4 * 0.75;
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THREAD_D = 12;
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ROD_SPACING = 150;
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THREAD_SPACING = 60;
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module carriage_rod () {
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cylinder(r = ROD_D / 2, h = 25.4 * 18, center = true, $fn = 120);
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}
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module carriage_threaded () {
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cylinder(r = THREAD_D / 2, h = 25.4 * 12, center = true, $fn = 120);
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}
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module carriage_nut () {
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rotate([0, 0, 360 / 6]) cylinder(r = 10.8, h = 12, center = true, $fn = 6);
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//color("red") cube([18.5, 18.5, 11], center = true);
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}
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module carriage_end () {
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difference () {
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union () {
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rotate([0, 90, 0]) rounded_cube([30, 185, 50], d = 20, center = true);
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translate([0, 0, -5]) cube([50, 185, 20], center = true);
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}
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//rods
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translate([0, ROD_SPACING / 2, 0]) rotate([0, 90, 0]) carriage_rod();
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translate([0, -ROD_SPACING / 2, 0]) rotate([0, 90, 0]) carriage_rod();
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//threaded rods
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translate([0, THREAD_SPACING / 2, 0]) rotate([0, 90, 0]) cylinder(r = (THREAD_D + 1) / 2, h = 25.4 * 12, center = true, $fn = 120);
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translate([0, -THREAD_SPACING / 2, 0]) rotate([0, 90, 0]) cylinder(r = (THREAD_D + 1) / 2, h = 25.4 * 12, center = true, $fn = 120);
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}
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//feet
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translate([10, (185 / 2) - (80 / 2), - 40]) {
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difference () {
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cube([70, 80, 60], center = true);
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translate([-67, 0, 0]) rotate([0, -10, 0]) color("red") cube([70, 80 + 1, 160], center = true);
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translate([55, 0, 0]) rotate([0, -8, 0]) color("red") cube([70, 80 + 1, 160], center = true);
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translate([0, -55, 0]) rotate([25, 0, 0]) color("red") cube([70, 80 + 1, 160], center = true);
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}
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translate([0, (185 / 2) - 40, -28]) {
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difference () {
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//rounded_cube([40, 30, 4], d = 10, center = true, $fn = 60);
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//cylinder(r = 5, h = 5, center = true, $fn = 60);
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}
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}
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}
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translate([10, -(185 / 2) + (80 / 2), - 40]) {
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difference () {
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cube([70, 80, 60], center = true);
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translate([-67, 0, 0]) rotate([0, -10, 0]) color("red") cube([70, 80 + 1, 160], center = true);
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translate([55, 0, 0]) rotate([0, -8, 0]) color("red") cube([70, 80 + 1, 160], center = true);
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translate([0, 55, 0]) rotate([-25, 0, 0]) color("red") cube([70, 80 + 1, 160], center = true);
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}
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translate([0, -(185 / 2) + 40, -28]) {
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difference () {
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//rounded_cube([40, 30, 4], d = 10, center = true, $fn = 60);
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//cylinder(r = 5, h = 5, center = true, $fn = 60);
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}
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}
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}
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}
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module carriage_sled () {}
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module carriage_sled_b () {
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difference () {
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rotate([0, 90, 0]) rounded_cube([30, 185, 40], d = 20, center = true);
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//rod
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translate([0, ROD_SPACING / 2, 0]) rotate([0, 90, 0]) cylinder(r = (ROD_D + 1) / 2, h = 25.4 * 18, center = true, $fn = 120);
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translate([0, -ROD_SPACING / 2, 0]) rotate([0, 90, 0]) cylinder(r = (ROD_D + 1) / 2, h = 25.4 * 18, center = true, $fn = 120);
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//threading
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translate([0, THREAD_SPACING / 2, 0]) rotate([0, 90, 0]) cylinder(r = (THREAD_D + 1) / 2, h = 25.4 * 18, center = true, $fn = 120);
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translate([0, -THREAD_SPACING / 2, 0]) rotate([0, 90, 0]) cylinder(r = (THREAD_D + 1) / 2, h = 25.4 * 18, center = true, $fn = 120);
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//nuts
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translate([15, THREAD_SPACING / 2, 0]) rotate([0, 90, 0]) carriage_nut();
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translate([-15, THREAD_SPACING / 2, 0]) rotate([0, 90, 0]) carriage_nut();
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}
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}
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module carriage_handle () {
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translate([0, 0, ((25.4 / 2) / 2) + ((25.4 / 3) / 2)]) cylinder(r = 25, h = 25.4 / 3, center = true, $fn = 200);
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difference () {
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cylinder(r = 18 / 2, h = 25.4 / 2, center = true, $fn = 60);
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cylinder(r = 12 / 2, h = (25.4 / 2) + 1, center = true, $fn = 60);
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}
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translate([20, 0, 20 - 4]) cylinder(r2 = 4, r1 = 3, h = 8, center = true, $fn = 100);
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translate([20, 0, 20]) sphere(r = 4, center = true, $fn = 100);
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}
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module carriage_assembled () {
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color("blue") translate([0, ROD_SPACING / 2, 0]) rotate([0, 90, 0]) carriage_rod();
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color("blue") translate([0, -ROD_SPACING / 2, 0]) rotate([0, 90, 0]) carriage_rod();
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color("green") translate([3.5 * 25.4, THREAD_SPACING / 2, 0]) rotate([0, 90, 0]) carriage_threaded();
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color("green") translate([3.5 * 25.4, -THREAD_SPACING / 2, 0]) rotate([0, 90, 0]) carriage_threaded();
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translate([9 * 25.4 - 26, 0, 0 ]) carriage_end();
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//carriage_sled_b();
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translate([9 * 25.4 + 7, THREAD_SPACING / 2, 0 ]) rotate([0, 90, 0]) carriage_handle();
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translate([9 * 25.4 + 7, -THREAD_SPACING / 2, 0 ]) rotate([0, 90, 0]) carriage_handle();
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}
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carriage_assembled();
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difference () {
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//carriage_sled_b();
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//translate([0, -85, 0]) cube([200, 200, 200], center = true);
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//translate([100, 0, 0]) cube([200, 200, 200], center = true);
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//translate([0, 145, 0]) cube([200, 200, 200], center = true);
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}
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@ -13,3 +13,20 @@ module rounded_cube (cube_arr = [1, 1, 1], d = 0, center = false) {
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translate ([-1 * (cube_arr[0] / 2) + r, 1 * (cube_arr[1] / 2)- r, 0]) cylinder(r = r, h = cube_arr[2], center = center);
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}
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}
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echo("common.scad - trap_cube()");
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module trap_cube(height = 19, top_x = 30, top_y = 34, bottom_x = 45, bottom_y = 65, wall_thickness = 2) {
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difference(){
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hull(){
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translate([0,0,height])
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cube([top_x, top_y, 0.1], center=true);
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cube([bottom_x, bottom_y, 0.1], center=true);
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}
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hull(){
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translate([0,0,height])
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cube([top_x - wall_thickness, top_y - wall_thickness, 0.1], center=true);
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cube([bottom_x - wall_thickness, bottom_y - wall_thickness, 0.1], center=true);
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}
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}
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}
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@ -6,7 +6,7 @@ PIN_B = [(18 / 2) - (3.5 / 2) - 3 - 1.5, 2 + (3.5 / 2)];
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PIN_C = [(18 / 2) - (3.5 / 2) - 3 - 1.5, - 2 - (3.5 / 2)];
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PIN_D = [-(18 / 2) + (1 / 2) + 4.5, - 2 - (3.5 / 2)];
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module pin (ROTATE = false, PAD = 0, HEIGHT = 10) {
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module jk_pin (ROTATE = false, PAD = 0, HEIGHT = 10) {
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if (ROTATE == false) {
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cube([1 + PAD, 3.5 + PAD, HEIGHT], center = true);
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} else {
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@ -14,13 +14,13 @@ module pin (ROTATE = false, PAD = 0, HEIGHT = 10) {
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}
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}
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module pins (PAD = 0, HEIGHT = 10) {
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module jk_pins (PAD = 0, HEIGHT = 10) {
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Z = 24 / 2 + 10 / 2;
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translate([PIN_A[0], PIN_A[1], Z]) pin(false, PAD, HEIGHT);
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translate([PIN_D[0], PIN_D[1], Z]) pin(false, PAD, HEIGHT);
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translate([PIN_A[0], PIN_A[1], Z]) jk_pin(false, PAD, HEIGHT);
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translate([PIN_D[0], PIN_D[1], Z]) jk_pin(false, PAD, HEIGHT);
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translate([PIN_B[0], PIN_B[1], Z]) pin(true, PAD, HEIGHT);
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translate([PIN_C[0], PIN_C[1], Z]) pin(true, PAD, HEIGHT);
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translate([PIN_B[0], PIN_B[1], Z]) jk_pin(true, PAD, HEIGHT);
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translate([PIN_C[0], PIN_C[1], Z]) jk_pin(true, PAD, HEIGHT);
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}
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module body () {
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@ -48,7 +48,7 @@ module male_jk103_neg () {
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module male_jk103 () {
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difference () {
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body();
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translate([0, 0, -10]) pins(0, 20);
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translate([0, 0, -10]) jk_pins(0, 20);
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translate([0, 0, -3]) male_jk103_neg();
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//bolt
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translate([15, 0, 5]) rotate([0,90,0]) cylinder(r = 1, h = 20, center = true, $fn = 40);
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@ -72,17 +72,13 @@ module male_jk103_back (){
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}
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module pin_inserts () {
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color("red") pins(0, 24);
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color("red") jk_pins(0, 24);
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}
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module female_jk103 () {
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difference () {
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body();
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translate([0, 0, 25]) rotate([0, 180, 0]) pins(0.5, 20);
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translate([0, 0, 25]) rotate([0, 180, 0]) jk_pins(0.5, 25);
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}
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}
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//translate([20, 0, 0]) male_jk103();
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translate([40, 0, 0]) male_jk103_back();
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//translate([20, 0, -7]) pin_inserts();
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//female_jk103();
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@ -0,0 +1,41 @@
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include <./bellows.scad>;
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include <./connectors.scad>;
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include <./light.scad>;
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include <./motor.scad>;
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module bellows_plate () {
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translate([0, 0, 3]) bellows_camera_board();
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translate([0, 55, 12.5]) color("red") camera_mount();
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}
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module connectors_plate () {
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translate([20, 0, 12]) rotate([180, 0, 0]) male_jk103();
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translate([20, 20, 20]) male_jk103_back();
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translate([0, 0, 12]) female_jk103();
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}
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module light_plate () {}
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module motor_plate () {}
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//bellows.scad
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//bellows_camera_board();
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//camera_mount();
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//bellows_plate();
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//connectors.scad
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//rotate([180, 0, 0]) male_jk103();
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//male_jk103_back();
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//female_jk103();
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//connectors_plate();
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//light.scad
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//light_plate();
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//motor.scad
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//motor_plate();
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