jk camera controller case
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module rounded_cube (c, d) {
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r = d / 2;
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scaled = [c[0] - d, c[1] - d, c[2] - d];
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minkowski() {
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sphere(r = r);
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cube(scaled, center = true);
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}
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}
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module case () {
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$fn = 100;
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X = 75+1;
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Y = 65+1;
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Z = 35+1;
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MOUNT_X = 44.5;
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MOUNT_Y = 33.5;
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MOUNT_Z1 = 4.5;
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MOUNT_Z2 = 3;
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MOUNT_D1 = 5;
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MOUNT_D2 = 2.5;
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MOUNT_OFFSET_X = 11;
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MOUNT_OFFSET_Y = 2;
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MOUNT_OFFSET_Z = 13.5;
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PLUG_D1 = 15.75;
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PLUG_D2 = 20;
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PLUG_Z = -2;
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PLUG_OFFSET_X = -23;
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M5 = 5.75;
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difference () {
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rounded_cube([X, Y, Z], d = 8);
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//inner void
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rounded_cube([X - 7, Y - 7, Z - 7], d = 5);
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//top
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translate([0, 0, -Z + 4]) cube([X + 1, Y + 1, Z], center = true);
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//
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translate([PLUG_OFFSET_X, 0, 10]) cylinder(r = PLUG_D1 / 2, h = 20, center = true);
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translate([PLUG_OFFSET_X, 0, 5 - PLUG_Z]) cylinder(r = PLUG_D2 / 2, h = 20, center = true);
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//m5
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translate([PLUG_OFFSET_X + 6, 20, 10]) cylinder(r = M5 / 2, h = 50, center = true);
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translate([PLUG_OFFSET_X + 6, -20, 10]) cylinder(r = M5 / 2, h = 50, center = true);
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}
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translate([MOUNT_OFFSET_X, MOUNT_OFFSET_Y, 0]) rotate([0, 0, 90]) {
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translate ([(MOUNT_X / 2), MOUNT_Y / 2, MOUNT_OFFSET_Z]) {
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cylinder(r = MOUNT_D1 / 2, h = MOUNT_Z1, center = true);
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translate([0, 0, -(MOUNT_Z1 / 2) - (MOUNT_Z2 / 2)]) cylinder(r = MOUNT_D2 / 2, h = MOUNT_Z2, center = true);
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}
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translate ([-(MOUNT_X / 2), MOUNT_Y / 2, MOUNT_OFFSET_Z]) {
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cylinder(r = MOUNT_D1 / 2, h = MOUNT_Z1, center = true);
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translate([0, 0, -(MOUNT_Z1 / 2) - (MOUNT_Z2 / 2)]) cylinder(r = MOUNT_D2 / 2, h = MOUNT_Z2, center = true);
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}
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translate ([(MOUNT_X / 2), -MOUNT_Y / 2, MOUNT_OFFSET_Z]) {
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cylinder(r = MOUNT_D1 / 2, h = MOUNT_Z1, center = true);
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translate([0, 0, -(MOUNT_Z1 / 2) - (MOUNT_Z2 / 2)]) cylinder(r = MOUNT_D2 / 2, h = MOUNT_Z2, center = true);
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}
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translate ([-(MOUNT_X / 2), -MOUNT_Y / 2, MOUNT_OFFSET_Z]) {
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cylinder(r = MOUNT_D1 / 2, h = MOUNT_Z1, center = true);
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translate([0, 0, -(MOUNT_Z1 / 2) - (MOUNT_Z2 / 2)]) cylinder(r = MOUNT_D2 / 2, h = MOUNT_Z2, center = true);
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}
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}
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//m5
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translate([PLUG_OFFSET_X + 6, 20, 2]) difference () {
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union () {
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cylinder(r = 9 / 2, h = Z - 5, center = true);
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translate([0, 0, Z / 2 - 6]) cylinder(r = 12 / 2, h = 6, center = true);
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}
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cylinder(r = M5 / 2, h = 50, center = true);
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}
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translate([PLUG_OFFSET_X + 6, -20, 2]) difference () {
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union () {
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cylinder(r = 9 / 2, h = Z - 5, center = true);
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translate([0, 0, Z / 2 - 6]) cylinder(r = 12 / 2, h = 6, center = true);
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}
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cylinder(r = M5 / 2, h = 50, center = true);
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}
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translate([-(X / 2) + 4, Y / 5 , (Z / 2) - 5]) {
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rotate([90, 0, 0]) cylinder(r = 3, h = 10, center = true);
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}
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translate([-(X / 2) + 4, -Y / 5 , (Z / 2) - 4]) {
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rotate([90, 0, 0]) cylinder(r = 3, h = 10, center = true);
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}
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/*translate ([(X / 2) + 5, 0, -9.5]) difference () {
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rounded_cube([15, 15, 5], d = 2);
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translate([0, 0, -4]) cube([15, 15, 5], center = true);
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translate([2, 0, 0]) cylinder(r = M5 / 2, h = 10, center = true);
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}
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translate ([-(X / 2) - 5, 0, -9.5]) difference () {
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rounded_cube([15, 15, 5], d = 2);
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translate([0, 0, -4]) cube([15, 15, 5], center = true);
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translate([-2, 0, 0]) cylinder(r = M5 / 2, h = 10, center = true);
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}*/
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}
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//intersection () {
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difference () {
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case();
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//translate([-23, 0, 0]) cube([100, 100, 100], center = true);
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}
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// translate([-14, 0, 12]) cube([10, 40, 10], center = true);
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//}
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