Line 2... |
Line 2... |
2 |
pedestal_height = 12.39; |
2 |
pedestal_height = 12.39; |
3 |
mount_hole = 3.2; |
3 |
mount_hole = 3.2; |
4 |
clear = 0.175; |
4 |
clear = 0.175; |
5 |
|
5 |
|
6 |
difference () { |
6 |
difference () { |
- |
|
7 |
translate ([-1,0,0]) |
7 |
cube([48,83,pedestal_height]); |
8 |
cube([50,83,pedestal_height]); |
8 |
|
9 |
|
9 |
//mount holes |
10 |
//mount holes |
10 |
translate ([3.5,3.5,5]) |
11 |
translate ([3.5,3.5,5]) |
11 |
cylinder (h = pedestal_height + clear,r= mount_hole/2, $fn=10); |
12 |
cylinder (h = pedestal_height + clear,r= mount_hole/2, $fn=10); |
12 |
translate ([3.5,3.5,0]) |
13 |
translate ([3.5,3.5,0]) |
Line 16... |
Line 17... |
16 |
cylinder (h = pedestal_height + clear,r= mount_hole/2, $fn=10); |
17 |
cylinder (h = pedestal_height + clear,r= mount_hole/2, $fn=10); |
17 |
translate ([3.5+41,3.5,0]) |
18 |
translate ([3.5+41,3.5,0]) |
18 |
cylinder (h = 5 + clear,r= 5.8/2, $fn=6); |
19 |
cylinder (h = 5 + clear,r= 5.8/2, $fn=6); |
19 |
|
20 |
|
20 |
|
21 |
|
21 |
translate ([3.5,3.5+76,0]) |
22 |
// translate ([3.5,3.5+76,0]) |
22 |
cylinder (h = pedestal_height + clear,r= mount_hole/2, $fn=10); |
23 |
// cylinder (h = pedestal_height + clear,r= mount_hole/2, $fn=10); |
23 |
translate ([3.5,3.5+76,0]) |
24 |
// translate ([3.5,3.5+76,0]) |
24 |
cylinder (h = 3 + clear,r= 5.8/2, $fn=6); |
25 |
// cylinder (h = 3 + clear,r= 5.8/2, $fn=6); |
- |
|
26 |
|
25 |
|
27 |
|
- |
|
28 |
// translate ([3.5+41,3.5+76,0]) |
- |
|
29 |
// cylinder (h = pedestal_height + clear,r= mount_hole/2, $fn=10); |
- |
|
30 |
// translate ([3.5+41,3.5+76,0]) |
- |
|
31 |
// cylinder (h = 3 + clear,r= 5.8/2, $fn=6); |
- |
|
32 |
|
- |
|
33 |
for (i = [0 : 7]) { |
- |
|
34 |
for (j = [0 : 7]) { |
- |
|
35 |
translate ([3.68 + j*10.16, 10.16-1.78 + i*10.16,0]) |
- |
|
36 |
cylinder (h = 2.5, r= 5.8/2, $fn=6); |
- |
|
37 |
translate ([3.68 + j*10.16, 10.16-1.78 + i*10.16, 2.7]) // one solid layer for slicer (the holes will be pierced on demand ) |
- |
|
38 |
cylinder (h = pedestal_height /3, r= mount_hole/2, $fn=10); |
- |
|
39 |
translate ([3.68 + j*10.16, 10.16-1.78 + i*10.16, 6]) |
- |
|
40 |
cylinder (h = 10, r= 5.8/2, $fn=6); |
- |
|
41 |
} |
- |
|
42 |
} |
26 |
|
43 |
|
27 |
translate ([3.5+41,3.5+76,0]) |
- |
|
28 |
cylinder (h = pedestal_height + clear,r= mount_hole/2, $fn=10); |
- |
|
29 |
translate ([3.5+41,3.5+76,0]) |
- |
|
30 |
cylinder (h = 3 + clear,r= 5.8/2, $fn=6); |
- |
|
31 |
|
44 |
|
32 |
|
45 |
|
33 |
// holes |
46 |
// mechanical holes for odroid componetns |
34 |
translate ([6,0, pedestal_height - 6]) // ODROID connectors |
47 |
translate ([6,0, pedestal_height - 6]) // ODROID connectors |
35 |
cube([35,6,6.5]); |
48 |
cube([35,6,6.5]); |
36 |
|
49 |
|
37 |
// translate ([0,0, pedestal_height - 8]) // Hole for PCB |
50 |
// translate ([0,0, pedestal_height - 8]) // Hole for PCB |
38 |
// cube([48,9.1,2]); |
51 |
// cube([48,9.1,2]); |
39 |
|
52 |
|
40 |
translate ([0,0, pedestal_height - 8]) // Hole for PCB |
53 |
translate ([-2,0, pedestal_height - 8]) // Hole for PCB |
41 |
cube([48,9.1,20]); |
54 |
cube([55,9.1,20]); |
42 |
|
55 |
|
43 |
translate ([1,9, pedestal_height - 3]) |
56 |
translate ([1,9, pedestal_height - 3]) |
44 |
cube([46,36,5]); |
57 |
cube([46,36,5]); |
45 |
|
58 |
|
46 |
translate ([30,9, pedestal_height - 4]) |
59 |
translate ([30,9, pedestal_height - 4]) |