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Added Quanum Trifecta stuff

Thomas Buck il y a 8 ans
Parent
révision
4ffe0fd565

+ 184
- 0
Quanum Trifecta/camera-mount.scad Voir le fichier

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+/*
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+ * Created by:
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+ * Thomas Buck <xythobuz@xythobuz.de> in May 2016
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+ *
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+ * Licensed under the
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+ * Creative Commons - Attribution - Share Alike license.
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+ */
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+
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+// -----------------------------------------------------------
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+
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+width_outer = 47.8;
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+height_outer = 31.5;
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+hole = 7;
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+depth = 1.8;
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+wall = 1.4;
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+inner_y_offset = -1;
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+diameter_big = 58;
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+offset_big = 23;
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+diameter_mid = 60;
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+offset_mid = 24.5;
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+diameter_small = 22;
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+offset_small = 8;
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+
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+fpv_width = 36.5;
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+fpv_depth = 11;
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+fpv_offset = 5;
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+fpv_hole = 2.5;
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+fpv_holder_width = 8;
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+fpv_holder_top = 2.5;
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+fpv_wall = 2;
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+
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+cam_depth = 15.5;
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+cam_base_height = 9;
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+cam_arm_height = 17;
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+cam_arm_hole_dist = 9.5;
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+cam_arm_hole = 5;
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+cam_arm_width = 3.1;
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+cam_arm_dist = 3.1;
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+cam_nut_outer = 12;
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+cam_nut_inner = 9.2;
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+cam_nut_height = 4;
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+cam_holder_offset = 13.8;
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+
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+$fn = 30;
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+
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+// -----------------------------------------------------------
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+
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+module half_cylinder(d, h) {
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+    rotate([0, 0, 180])
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+    difference() {
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+        cylinder(d = d, h = h);
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+        translate([-(d / 2), 0, -1])
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+            cube([d, d / 2, h + 2]);
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+    }
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+}
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+
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+module cam_arm() {
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+    difference() {
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+        union() {
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+            cube([cam_arm_width, cam_depth, cam_arm_hole_dist]);
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+            translate([0, cam_depth / 2, cam_arm_hole_dist])
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+                rotate([90, 0, 90])
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+                half_cylinder(cam_depth, cam_arm_width);
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+        }
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+        
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+        translate([-1, cam_depth / 2, cam_arm_hole_dist])
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+            rotate([0, 90, 0])
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+            cylinder(d = cam_arm_hole, h = cam_arm_width + 2);
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+    }
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+}
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+
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+module cam_arm_nut() {
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+    translate([-cam_nut_height, 0, 0])
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+    rotate([0, 90, 0])
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+    difference() {
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+        cylinder(d = cam_nut_outer, h = cam_nut_height);
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+        translate([0, 0, -1])
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+            cylinder(d = cam_nut_inner, h = cam_nut_height + 2, $fn = 6);
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+    }
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+}
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+
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+module cam_holder() {
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+    cube([(3 * cam_arm_width) + (2 * cam_arm_dist), cam_depth, cam_base_height]);
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+    
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+    translate([0, 0, cam_base_height])
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+        cam_arm();
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+    
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+    translate([0, cam_depth / 2, cam_base_height + cam_arm_hole_dist])
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+        cam_arm_nut();
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+    
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+    translate([cam_arm_width + cam_arm_dist, 0, cam_base_height])
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+        cam_arm();
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+    
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+    translate([2 * (cam_arm_width + cam_arm_dist), 0, cam_base_height])
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+        cam_arm();
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+}
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+
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+module base() {
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+    difference() {
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+        cube([width_outer, height_outer, depth]);
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+        
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+        translate([wall + (hole / 2), wall + (hole / 2), -1])
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+            cylinder(d = hole, h = depth + 2);
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+        
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+        translate([width_outer - wall - (hole / 2), wall + (hole / 2), -1])
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+            cylinder(d = hole, h = depth + 2);
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+        
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+        translate([wall + (hole / 2), height_outer - wall - (hole / 2), -1])
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+            cylinder(d = hole, h = depth + 2);
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+        
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+        translate([width_outer - wall - (hole / 2), height_outer - wall - (hole / 2), -1])
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+            cylinder(d = hole, h = depth + 2);
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+        
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+        translate([width_outer / 2, -offset_mid, -1])
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+            cylinder(d = diameter_mid, h = depth + 2);
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+        
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+        translate([width_outer / 2, height_outer + offset_big, -1])
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+            cylinder(d = diameter_big, h = depth + 2);
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+        
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+        translate([-offset_small, height_outer / 2, -1])
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+            cylinder(d = diameter_small, h = depth + 2);
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+            
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+        translate([width_outer + offset_small, height_outer / 2, -1])
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+            cylinder(d = diameter_small, h = depth + 2);
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+            
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+        translate([0, 0, -1])
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+            rotate([0, 0, 45])
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+            translate([-2.8, -2.8, 0])
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+            cube([5, 5, depth + 2]);
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+            
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+        translate([width_outer, 0, -1])
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+            rotate([0, 0, 45])
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+            translate([-2.8, -2.8, 0])
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+            cube([5, 5, depth + 2]);
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+            
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+        translate([0, height_outer, -1])
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+            rotate([0, 0, 45])
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+            translate([-2.8, -2.2, 0])
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+            cube([5, 5, depth + 2]);
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+        
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+        translate([width_outer, height_outer, -1])
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+            rotate([0, 0, 45])
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+            translate([-2.2, -2.2, 0])
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+            cube([5, 5, depth + 2]);
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+    }
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+}
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+
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+module arm() {
149
+    difference() {
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+        cube([fpv_wall, fpv_holder_width, fpv_offset + (fpv_width / 2) + (fpv_hole / 2) + fpv_holder_top]);
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+        
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+        translate([-1, fpv_holder_width / 2, fpv_offset + (fpv_width / 2)])
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+            rotate([0, 90, 0])
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+            cylinder(d = fpv_hole, h = fpv_wall + 2);
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+    }
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+}
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+
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+module fpv_holder() {
159
+    arm();
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+    
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+    translate([fpv_width + fpv_wall, 0, 0])
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+        arm();
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+}
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+
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+// -----------------------------------------------------------
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+
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+base();
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+
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+translate([(width_outer - fpv_width) / 2 - fpv_wall, (height_outer - fpv_holder_width) / 2, depth])
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+    fpv_holder();
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+
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+translate([cam_holder_offset, (height_outer + cam_depth) / 2, 0])
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+    rotate([180, 0, 0])
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+    cam_holder();
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+
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+// -----------------------------------------------------------
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+/*
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+%translate([(width_outer - fpv_width) / 2, (height_outer - fpv_depth) / 2, depth + fpv_offset])
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+    cube([fpv_width, fpv_depth, fpv_width]);
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+
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+%translate([width_outer / 2, (height_outer - fpv_depth) / 2 + 1, depth + fpv_offset + (fpv_width / 2)])
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+    rotate([90, 0, 0])
183
+    cylinder(d = fpv_width / 3, h = 8);
184
+*/

+ 12126
- 0
Quanum Trifecta/camera-mount.stl
Fichier diff supprimé car celui-ci est trop grand
Voir le fichier


BIN
Quanum Trifecta/foto1_big.jpg Voir le fichier


BIN
Quanum Trifecta/foto1_small.jpg Voir le fichier


BIN
Quanum Trifecta/foto2_big.jpg Voir le fichier


BIN
Quanum Trifecta/foto2_small.jpg Voir le fichier


BIN
Quanum Trifecta/foto3_big.jpg Voir le fichier


BIN
Quanum Trifecta/foto3_small.jpg Voir le fichier


+ 12
- 0
Quanum Trifecta/standoff.scad Voir le fichier

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+
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+height = 25;
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+outer_diameter = 5;
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+inner_diameter = 2;
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+
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+$fn = 6;
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+
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+difference() {
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+    cylinder(d = outer_diameter, h = height);
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+    translate([0, 0, -1])
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+        cylinder(d = inner_diameter, h = height + 2);
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+}

+ 338
- 0
Quanum Trifecta/standoff.stl Voir le fichier

@@ -0,0 +1,338 @@
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+ 159
- 0
Quanum Trifecta/xiaomi-yi.scad Voir le fichier

@@ -0,0 +1,159 @@
1
+/*
2
+ * Created by:
3
+ * Thomas Buck <xythobuz@xythobuz.de> in May 2016
4
+ *
5
+ * Licensed under the
6
+ * Creative Commons - Attribution - Share Alike license.
7
+ */
8
+
9
+// -----------------------------------------------------------
10
+
11
+cam_width = 61; // 60.5
12
+cam_depth = 22; // 21.3
13
+cam_height = 43; // 42.1
14
+
15
+button_size = 12;
16
+button_dist = 14;
17
+
18
+mic_hole = 2;
19
+mic_hole_dist = 17.8;
20
+
21
+bottom_hole = 8;
22
+bottom_hole_dist = 17.2;
23
+
24
+wifi_hole = 6.4;
25
+wifi_hole_dist = 18;
26
+
27
+mount_width = 3; // 3.1
28
+mount_gap = 3.2; // 3.1
29
+mount_depth = 16.4; // 16.4
30
+mount_height = 16.2; // 16.1
31
+mount_hole = 5.2; // 5
32
+mount_hole_dist = 7.8; // 7.7
33
+mount_offset = -7; // -7
34
+
35
+wall_size = 1.8;
36
+lip_height = 1;
37
+lip_width = 1.4;
38
+
39
+$fn = 20;
40
+
41
+// -----------------------------------------------------------
42
+
43
+module half_cylinder(d, h) {
44
+    rotate([0, 0, 180])
45
+    difference() {
46
+        cylinder(d = d, h = h);
47
+        translate([-(d / 2), 0, -1])
48
+            cube([d, d / 2, h + 2]);
49
+    }
50
+}
51
+
52
+module frame() {
53
+    // left wall
54
+    translate([0, wall_size, 0])
55
+        cube([wall_size, cam_height, cam_depth]);
56
+    
57
+    // right wall
58
+    translate([wall_size + cam_width, wall_size, 0])
59
+        cube([wall_size, cam_height, cam_depth]);
60
+    
61
+    // bottom wall
62
+    cube([cam_width + (2 * wall_size), wall_size, cam_depth]);
63
+    
64
+    // top wall
65
+    translate([0, wall_size + cam_height, 0])
66
+        cube([cam_width + (2 * wall_size), wall_size, cam_depth]);
67
+}
68
+
69
+module frameWithButton() {
70
+    difference() {
71
+        frame();
72
+        
73
+        // button
74
+        translate([wall_size + button_dist, (2 * wall_size) + cam_height + 1, cam_depth / 2])
75
+            rotate([90, 0, 0])
76
+            cylinder(d = button_size, h = wall_size + 2);
77
+        
78
+        // mic hole
79
+        translate([wall_size + cam_width - mic_hole_dist, (2 * wall_size) + cam_height + 1, cam_depth / 2])
80
+            rotate([90, 0, 0])
81
+            cylinder(d = mic_hole, h = wall_size + 2);
82
+        
83
+        // bottom hole
84
+        translate([wall_size + cam_width - bottom_hole_dist, wall_size + 1, cam_depth / 2])
85
+            rotate([90, 0, 0])
86
+            cylinder(d = bottom_hole, h = wall_size + 2);
87
+        
88
+        // wifi hole
89
+        translate([wall_size + cam_width - 1, wall_size + wifi_hole_dist, cam_depth / 2])
90
+            rotate([0, 90, 0])
91
+            cylinder(d = wifi_hole, h = wall_size + 2);
92
+    }
93
+}
94
+
95
+module lip() {
96
+    // left lip
97
+    translate([0, wall_size, 0])
98
+        cube([wall_size + lip_width, cam_height, lip_height]);
99
+    
100
+    // right lip
101
+    translate([wall_size + cam_width - lip_width, wall_size, 0])
102
+        cube([wall_size + lip_width, cam_height, lip_height]);
103
+    
104
+    // bottom lip
105
+    cube([cam_width + (2 * wall_size), wall_size + lip_width, lip_height]);
106
+    
107
+    // top lip
108
+    translate([0, wall_size + cam_height - lip_width, 0])
109
+        cube([cam_width + (2 * wall_size), wall_size + lip_width, lip_height]);
110
+}
111
+
112
+module frameLips() {
113
+    translate([0, 0, lip_height])
114
+        frameWithButton();
115
+    
116
+    lip();
117
+    
118
+    translate([0, 0, cam_depth + lip_height])
119
+        lip();
120
+}
121
+
122
+module mountArm() {
123
+    difference() {
124
+        union() {
125
+            translate([0, mount_height - (mount_depth / 2), 0])
126
+                rotate([0, 90, 0])
127
+                half_cylinder(mount_depth, mount_width);
128
+            
129
+            translate([0, -wall_size, -(mount_depth / 2)])
130
+                cube([mount_width, mount_height - (mount_depth / 2) + wall_size, mount_depth]);
131
+        }
132
+        
133
+        translate([-1, mount_height - mount_hole_dist, 0])
134
+            rotate([0, 90, 0])
135
+            cylinder(d = mount_hole, h = mount_width + 2);
136
+    }
137
+}
138
+
139
+module mount() {
140
+    mountArm();
141
+    
142
+    translate([mount_width + mount_gap, 0, 0])
143
+        mountArm();
144
+}
145
+
146
+module cover() {
147
+    difference() {
148
+        frameLips();
149
+        translate([wall_size + ((cam_width - (mount_gap + (2 * mount_width))) / 2) + mount_offset + mount_width, wall_size + cam_height - lip_width - 1, -1])
150
+            cube([mount_gap, wall_size + lip_width + 2, cam_depth + (2 * lip_height) + 2]);
151
+    }
152
+
153
+    translate([wall_size + ((cam_width - (mount_gap + (2 * mount_width))) / 2) + mount_offset, (2 * wall_size) + cam_height, lip_height + (cam_depth / 2)])
154
+        mount();
155
+}
156
+
157
+// -----------------------------------------------------------
158
+
159
+cover();

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