Maximilian Stiefel
7 years ago
commit
6591c88e42
18 changed files with 461901 additions and 0 deletions
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///////////////////////////////////////////////////////////////////////////////// |
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// File for all dimensions, so they can be changed globally. |
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// |
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// Author: Maximilian Stiefel |
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// Last modification: 17.06.2017 |
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///////////////////////////////////////////////////////////////////////////////// |
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|
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// Allowance |
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allowance05 = 0.5; |
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allowance1 = 1; |
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allowance2 = 2; |
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|
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// Dimesions holder |
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holder_height = 172; |
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holder_width = 18; |
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holder_depth = 8; |
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|
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// Dimensions notch |
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notch_height = 161; |
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// Calculations to construct a triangle which can take a PCB |
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biggest_pcb = 2; |
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c = biggest_pcb + allowance05; |
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x = c; |
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y = sqrt( pow(x,2) - pow(c/2,2) ); |
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|
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// Dimensions cuvette |
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glass_thickness = 6; |
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cuvette_width = 180 + 2*glass_thickness + allowance2; |
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cuvette_depth = 50 + 2*glass_thickness + allowance2; |
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|
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// Dimensions lid |
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lid_thickness = 4; |
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lid_width = 180 + 2*glass_thickness + 2*lid_thickness + allowance2; |
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lid_depth = 50 + 2*glass_thickness + 2*lid_thickness + allowance2; |
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lid_height = 20; |
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|
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// Dimensions holder heater |
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heater_diameter = 25 + allowance1; |
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heater_offset = 55; |
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heater_pos = -lid_width/2 + heater_diameter/2 + 2*lid_thickness + 3; |
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|
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// Dimensions slot for the PCB holder arms |
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slot_width = lid_width - heater_diameter - 2*lid_thickness - 20; |
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slot_depth = holder_depth + allowance05; |
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slot_height = 1.5 * lid_height; |
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slot_pos = heater_pos + heater_diameter/2 + lid_thickness + 3; |
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|
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// Dimensions service holes for temp. sensor and air tube |
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service_hole_width = 10; |
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service_hole_depth = 10; |
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service_hole_height = lid_height; |
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|
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// Dimensions crossbar |
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crossbar_height = 2.5 + allowance05; |
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crossbar_width = 8 + allowance05; |
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crossbar_depth = slot_width; |
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|
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// Dimensions lid |
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lid_thickness = 4; |
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lid_slot_width = 8; |
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|
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// Dimensions neck |
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neck_diameter = holder_depth; |
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neck_height = lid_thickness + allowance05; |
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|
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// Dimensions head |
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head_width = holder_width; |
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head_depth = holder_depth; |
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head_height = 5; |
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|
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// Suitable for M3 screw thread |
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hole_diameter = 2.5; |
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|
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// Air system diameter |
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air_system = 10; |
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|
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// Height difference between notch for PCB and the actual holder |
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height_diff_1 = holder_height - notch_height; |
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|
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// Width difference between crossbar and holder |
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width_diff_1 = holder_width - crossbar_width; |
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|
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// Dimensions bar that PCB does not fall down |
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bar_width = holder_width/2; |
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bar_depth = 6; |
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// The height of this thing should exactely use the space which is available |
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// between the notch for the PBC and the crossbar slot |
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bar_height = height_diff_1/4 - crossbar_height/2; |
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|
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// My color for everything |
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myColor = "FireBrick"; |
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///////////////////////////////////////////////////////////////////////////////// |
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// Adapter for drilling machine in the embedded lab. |
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// |
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// Author: Maximilian Stiefel |
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// Last modification: 17.06.2017 |
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///////////////////////////////////////////////////////////////////////////////// |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Includes |
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///////////////////////////////////////////////////////////////////////////////// |
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include <dimensions.scad> |
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use <dimensions.scad> |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Action |
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///////////////////////////////////////////////////////////////////////////////// |
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cube([crossbar_width - allowance05, crossbar_depth, crossbar_height - allowance05], center = true); |
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solid OpenSCAD_Model |
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facet normal -0 0 1 |
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outer loop |
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vertex -4 74 1.25 |
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vertex 4 -74 1.25 |
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vertex 4 74 1.25 |
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endloop |
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endfacet |
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facet normal 0 0 1 |
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outer loop |
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vertex 4 -74 1.25 |
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vertex -4 74 1.25 |
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vertex -4 -74 1.25 |
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endloop |
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endfacet |
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facet normal 0 0 -1 |
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outer loop |
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vertex -4 -74 -1.25 |
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vertex 4 74 -1.25 |
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vertex 4 -74 -1.25 |
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endloop |
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endfacet |
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facet normal -0 0 -1 |
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outer loop |
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vertex 4 74 -1.25 |
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vertex -4 -74 -1.25 |
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vertex -4 74 -1.25 |
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endloop |
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endfacet |
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facet normal 0 -1 0 |
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outer loop |
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vertex -4 -74 -1.25 |
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vertex 4 -74 1.25 |
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vertex -4 -74 1.25 |
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endloop |
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endfacet |
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facet normal 0 -1 -0 |
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outer loop |
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vertex 4 -74 1.25 |
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vertex -4 -74 -1.25 |
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vertex 4 -74 -1.25 |
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endloop |
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endfacet |
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facet normal 1 -0 0 |
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outer loop |
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vertex 4 -74 1.25 |
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vertex 4 74 -1.25 |
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vertex 4 74 1.25 |
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endloop |
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endfacet |
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facet normal 1 0 0 |
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outer loop |
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vertex 4 74 -1.25 |
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vertex 4 -74 1.25 |
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vertex 4 -74 -1.25 |
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endloop |
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endfacet |
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facet normal 0 1 -0 |
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outer loop |
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vertex 4 74 -1.25 |
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vertex -4 74 1.25 |
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vertex 4 74 1.25 |
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endloop |
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endfacet |
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facet normal 0 1 0 |
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outer loop |
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vertex -4 74 1.25 |
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vertex 4 74 -1.25 |
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vertex -4 74 -1.25 |
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endloop |
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endfacet |
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facet normal -1 0 0 |
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outer loop |
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vertex -4 -74 -1.25 |
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vertex -4 74 1.25 |
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vertex -4 74 -1.25 |
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endloop |
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endfacet |
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facet normal -1 -0 0 |
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outer loop |
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vertex -4 74 1.25 |
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vertex -4 -74 -1.25 |
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vertex -4 -74 1.25 |
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endloop |
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endfacet |
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endsolid OpenSCAD_Model |
After Width: | Height: | Size: 79 KiB |
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///////////////////////////////////////////////////////////////////////////////// |
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// Floor protection for cuvette. |
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// |
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// Author: Maximilian Stiefel |
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// Last modification: 12.06.2017 |
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///////////////////////////////////////////////////////////////////////////////// |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Includes |
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///////////////////////////////////////////////////////////////////////////////// |
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include <roundy.scad> |
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use <roundy.scad> |
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include <dimensions.scad> |
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use <dimensions.scad> |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Action |
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///////////////////////////////////////////////////////////////////////////////// |
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color(myColor) |
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difference() |
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{ |
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union() |
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{ |
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// Basic lid |
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translate([0, 0, lid_height/2]) |
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roundy(lid_width, lid_depth, lid_height, true); |
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translate([-lid_width/2 + 5, -lid_depth/2 + 2, lid_height/2]) |
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rotate([90, 0, 0]) |
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linear_extrude(height = 6, center = true, convexity = 10, twist = 0) |
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union() |
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{ |
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translate([0, 4, 0]) |
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text("Etching Machine of the Embedded Systems Master", size = 6, valign = "center"); |
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translate([0, -4, 0]) |
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text("Designed by Maximilian Stiefel 2017", size = 6, valign = "center"); |
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} |
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} |
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// Depening to put it over the cuvette |
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translate([0, 0, lid_height - lid_thickness]) |
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cube([cuvette_width, cuvette_depth, lid_height], center = true); |
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} |
File diff suppressed because it is too large
After Width: | Height: | Size: 131 KiB |
After Width: | Height: | Size: 89 KiB |
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///////////////////////////////////////////////////////////////////////////////// |
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// Left holder part to anchor PCB with in the etching bath. |
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// |
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// Author: Maximilian Stiefel |
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// Last modification: 17.06.2017 |
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///////////////////////////////////////////////////////////////////////////////// |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Includes |
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///////////////////////////////////////////////////////////////////////////////// |
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|
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include <dimensions.scad> |
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use <dimensions.scad> |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Vars |
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///////////////////////////////////////////////////////////////////////////////// |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Action |
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///////////////////////////////////////////////////////////////////////////////// |
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color(myColor) |
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difference() |
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{ |
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union() |
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{ |
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// Cube for the base holder |
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cube([holder_width, holder_depth, holder_height], center = false); |
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|
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// Head |
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translate([0, 0, holder_height + neck_height]) |
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cube([head_width, head_depth, head_height]); |
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|
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// Neck |
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translate([holder_width/2, holder_depth/2, holder_height]) |
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cylinder(h = neck_height, r = neck_diameter/2); |
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|
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// Bar, that PCB does not fall |
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translate([holder_width/2 - bar_width/2, -bar_depth, height_diff_1/2 - bar_height]) |
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cube([bar_width, bar_depth, bar_height]); |
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|
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// Text |
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translate([holder_width/2 + 4, holder_depth, 0.2*holder_height]) |
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rotate([90,0,180]) |
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linear_extrude(height = 3, center = true, convexity = 10, twist = 0) |
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text("L", size = 10, valign = "center"); |
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translate([0, holder_depth -1, (1/4)*height_diff_1 + 6]) |
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rotate([90, 0, 270]) |
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linear_extrude(height = 2, center = true, convexity = 10, twist = 0) |
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text("M3", size = 3, valign = "center"); |
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translate([0, holder_depth/2, holder_height/2]) |
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rotate([90, -90, 270]) |
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linear_extrude(height = 2, center = true, convexity = 10, twist = 0) |
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text("Maximilian Stiefel 2017", size = 3, valign = "center"); |
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|
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} |
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|
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union() |
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{ |
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// Cube for notch |
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//translate([holder_width/2 - notch_width/2, -notch_depth +2, height_diff_1/2]) |
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//cube([notch_width, notch_depth, notch_height], center = false); |
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|
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// Triangular notch |
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translate([-c/2 + holder_width/2, -0.01, height_diff_1/2]) |
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linear_extrude(height = notch_height, center = false) |
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polygon(points=[[0,0],[c/2,y], [c,0]], paths = [[0,1,2]]); |
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|
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// Slots for crossbars |
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translate([width_diff_1/2, -1, (1/4)*height_diff_1 - crossbar_height/2]) |
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cube([crossbar_width, holder_depth + 2, crossbar_height], center = false); |
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translate([width_diff_1/2, -1, (3/4)*height_diff_1 + notch_height - crossbar_height/2]) |
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cube([crossbar_width, holder_depth + 2, crossbar_height], center = false); |
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|
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// Drill holes for screws |
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translate([-1, holder_depth/2, (1/4)*height_diff_1]) |
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rotate([0, 90, 0]) |
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cylinder(h = 9, r = hole_diameter/2); |
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translate([0, holder_depth/2,(3/4)*height_diff_1 + notch_height]) |
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rotate([0, 90, 0]) |
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cylinder(h = 9, r = hole_diameter/2); |
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|
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// Holes for the air system |
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// translate([holder_width/2, holder_depth + 1, 0]) |
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// rotate([90, 0, 0]) |
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// cylinder(h = holder_depth + 2, r = air_system/2); |
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} |
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} |
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///////////////////////////////////////////////////////////////////////////////// |
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// Left holder part to anchor PCB with in the etching bath. |
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// |
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// Author: Maximilian Stiefel |
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// Last modification: 17.06.2017 |
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///////////////////////////////////////////////////////////////////////////////// |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Includes |
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///////////////////////////////////////////////////////////////////////////////// |
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|
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include <dimensions.scad> |
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use <dimensions.scad> |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Vars |
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///////////////////////////////////////////////////////////////////////////////// |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Action |
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///////////////////////////////////////////////////////////////////////////////// |
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color(myColor) |
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difference() |
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{ |
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union() |
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{ |
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// Cube for the base holder |
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cube([holder_width, holder_depth, holder_height], center = false); |
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|
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// Head |
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translate([0, 0, holder_height + neck_height]) |
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cube([head_width, head_depth, head_height]); |
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|
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// Neck |
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translate([holder_width/2, holder_depth/2, holder_height]) |
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cylinder(h = neck_height, r = neck_diameter/2); |
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|
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// Bar, that PCB does not fall |
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translate([holder_width/2 - bar_width/2, -bar_depth, height_diff_1/2 - bar_height]) |
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cube([bar_width, bar_depth, bar_height]); |
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|
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// Text |
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translate([holder_width/2 +5, holder_depth, 0.2*holder_height]) |
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rotate([90,0,180]) |
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linear_extrude(height = 3, center = true, convexity = 10, twist = 0) |
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text("R", size = 10, valign = "center"); |
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translate([holder_width, 1, (1/4)*height_diff_1 + 6]) |
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rotate([90, 0,90]) |
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linear_extrude(height = 2, center = true, convexity = 10, twist = 0) |
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text("M3", size = 3, valign = "center"); |
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translate([holder_width, holder_depth/2, holder_height/2]) |
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rotate([90, -90, 90]) |
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linear_extrude(height = 2, center = true, convexity = 10, twist = 0) |
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text("Maximilian Stiefel 2017", size = 3, valign = "center"); |
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|
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} |
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|
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union() |
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{ |
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// Cube for notch |
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//translate([holder_width/2 - notch_width/2, -notch_depth +2, height_diff_1/2]) |
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//cube([notch_width, notch_depth, notch_height], center = false); |
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|
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// Triangular notch |
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translate([-c/2 + holder_width/2, -0.01, height_diff_1/2]) |
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linear_extrude(height = notch_height, center = false) |
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polygon(points=[[0,0],[c/2,y], [c,0]], paths = [[0,1,2]]); |
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|
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// Slots for crossbars |
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translate([width_diff_1/2, -1, (1/4)*height_diff_1 - crossbar_height/2]) |
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cube([crossbar_width, holder_depth + 2, crossbar_height], center = false); |
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translate([width_diff_1/2, -1, (3/4)*height_diff_1 + notch_height - crossbar_height/2]) |
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cube([crossbar_width, holder_depth + 2, crossbar_height], center = false); |
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|
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// Drill holes for screws |
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translate([holder_width/2 + 1, holder_depth/2, (1/4)*height_diff_1]) |
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rotate([0, 90, 0]) |
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cylinder(h = 9, r = hole_diameter/2); |
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translate([holder_width/2 + 1, holder_depth/2,(3/4)*height_diff_1 + notch_height]) |
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rotate([0, 90, 0]) |
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cylinder(h = 9, r = hole_diameter/2); |
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|
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// Holes for the air system |
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// translate([holder_width/2, holder_depth + 1, 0]) |
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// rotate([90, 0, 0]) |
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// cylinder(h = holder_depth + 2, r = air_system/2); |
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} |
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} |
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///////////////////////////////////////////////////////////////////////////////// |
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// Lid for cuvette with pcb holder slots and a possibility to put a heater. |
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// |
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// Author: Maximilian Stiefel |
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// Last modification: 17.06.2017 |
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///////////////////////////////////////////////////////////////////////////////// |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Includes |
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///////////////////////////////////////////////////////////////////////////////// |
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include <roundy.scad> |
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use <roundy.scad> |
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include <dimensions.scad> |
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use <dimensions.scad> |
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|
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///////////////////////////////////////////////////////////////////////////////// |
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// Action |
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///////////////////////////////////////////////////////////////////////////////// |
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color(myColor) |
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difference() |
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{ |
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union() |
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{ |
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// Basic lid |
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translate([0, 0, lid_height/2]) |
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roundy(lid_width, lid_depth, lid_height, true); |
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//cube([lid_width, lid_depth, lid_height], center = true); |
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translate([heater_pos, 0, lid_height - 1]) |
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cylinder(h = heater_offset + 1, r = heater_diameter/2 + lid_thickness); |
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|
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// Uppsala University Logo |
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translate([0, 5, lid_height]) |
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linear_extrude(height = 1) |
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scale(0.08) |
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import("uppsla_university.dxf"); |
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|
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// Text |
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translate([-lid_width/2 + 5, -lid_depth/2 + 2, lid_height/2]) |
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rotate([90, 0, 0]) |
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linear_extrude(height = 6, center = true, convexity = 10, twist = 0) |
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union() |
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{ |
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translate([0, 4, 0]) |
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text("Embedded Etcher", size = 6, valign = "center"); |
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translate([0, -4, 0]) |
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text("Revision 1.0", size = 6, valign = "center"); |
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} |
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} |
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union() |
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{ |
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// Depening to put it over the cuvette |
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translate([0, 0, lid_height/2 - lid_thickness]) |
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cube([cuvette_width, cuvette_depth, lid_height], center = true); |
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|
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// Hole for heater |
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translate([heater_pos, 0, -1]) |
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cylinder(h = heater_offset + lid_height + 2, r = heater_diameter/2); |
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// Slot for the PCB holder arms |
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translate([slot_pos, -slot_depth/2, 0]) |
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cube([slot_width, slot_depth, slot_height], center = false); |
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|
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// Service holes |
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translate([-lid_width/2 + lid_thickness + 5, -lid_depth/2 + lid_thickness + 3, (1/2)*lid_height]) |
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cube([service_hole_width, service_hole_depth, service_hole_height]); |
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translate([lid_width/2 - lid_thickness - service_hole_width -5, -lid_depth/2 + lid_thickness + 3, (1/2)*lid_height]) |
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cube([service_hole_width, service_hole_depth, service_hole_height]); |
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|
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} |
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} |
File diff suppressed because it is too large
After Width: | Height: | Size: 88 KiB |
@ -0,0 +1,37 @@ |
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///////////////////////////////////////////////////////////////////////////////// |
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// Module for a open box with rounded edges. |
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// |
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// Author: Maximilian Stiefel |
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// Last modification: 26.04.2017 |
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///////////////////////////////////////////////////////////////////////////////// |
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|
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module roundy(width, depth, height, center) |
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{ |
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///////////////////////////////////////////////////////////////////////// |
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// Vars |
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///////////////////////////////////////////////////////////////////////// |
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edge_rounding = 8; |
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transx = -width/2; |
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transy = -depth/2; |
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transz = -height/2; |
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|
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///////////////////////////////////////////////////////////////////////// |
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// Action |
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///////////////////////////////////////////////////////////////////////// |
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// Hull 4 cylinders |
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translate([transx, transy, transz]) |
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hull(){ |
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// x=0, y=0 |
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translate([edge_rounding, edge_rounding, 0]) |
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cylinder(r = edge_rounding, h = height); |
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// x=width, y=0 |
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translate([width - edge_rounding, edge_rounding, 0]) |
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cylinder(r = edge_rounding, h = height); |
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// x=0, y=depth |
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translate([edge_rounding, depth - edge_rounding,0]) |
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cylinder(r = edge_rounding, h = height); |
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//x=width, y=length |
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translate([width - edge_rounding, depth - edge_rounding,0]) |
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cylinder(r = edge_rounding, h = height); |
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} |
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} |
@ -0,0 +1,37 @@ |
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ISO-10303-21; |
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HEADER; |
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FILE_DESCRIPTION(('FreeCAD Model'),'2;1'); |
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FILE_NAME('/home/maximilian/UppSense/cad/etching_machine/v2.0/test.step' |
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,'2017-06-17T18:55:45',('Author'),(''), |
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'Open CASCADE STEP processor 6.8','FreeCAD','Unknown'); |
|||
FILE_SCHEMA(('AUTOMOTIVE_DESIGN_CC2 { 1 2 10303 214 -1 1 5 4 }')); |
|||
ENDSEC; |
|||
DATA; |
|||
#1 = APPLICATION_PROTOCOL_DEFINITION('committee draft', |
|||
'automotive_design',1997,#2); |
|||
#2 = APPLICATION_CONTEXT( |
|||
'core data for automotive mechanical design processes'); |
|||
#3 = SHAPE_DEFINITION_REPRESENTATION(#4,#10); |
|||
#4 = PRODUCT_DEFINITION_SHAPE('','',#5); |
|||
#5 = PRODUCT_DEFINITION('design','',#6,#9); |
|||
#6 = PRODUCT_DEFINITION_FORMATION('','',#7); |
|||
#7 = PRODUCT('ASSEMBLY','ASSEMBLY','',(#8)); |
|||
#8 = MECHANICAL_CONTEXT('',#2,'mechanical'); |
|||
#9 = PRODUCT_DEFINITION_CONTEXT('part definition',#2,'design'); |
|||
#10 = SHAPE_REPRESENTATION('',(#11),#15); |
|||
#11 = AXIS2_PLACEMENT_3D('',#12,#13,#14); |
|||
#12 = CARTESIAN_POINT('',(0.,0.,0.)); |
|||
#13 = DIRECTION('',(0.,0.,1.)); |
|||
#14 = DIRECTION('',(1.,0.,-0.)); |
|||
#15 = ( GEOMETRIC_REPRESENTATION_CONTEXT(3) |
|||
GLOBAL_UNCERTAINTY_ASSIGNED_CONTEXT((#19)) GLOBAL_UNIT_ASSIGNED_CONTEXT( |
|||
(#16,#17,#18)) REPRESENTATION_CONTEXT('Context #1', |
|||
'3D Context with UNIT and UNCERTAINTY') ); |
|||
#16 = ( LENGTH_UNIT() NAMED_UNIT(*) SI_UNIT(.MILLI.,.METRE.) ); |
|||
#17 = ( NAMED_UNIT(*) PLANE_ANGLE_UNIT() SI_UNIT($,.RADIAN.) ); |
|||
#18 = ( NAMED_UNIT(*) SI_UNIT($,.STERADIAN.) SOLID_ANGLE_UNIT() ); |
|||
#19 = UNCERTAINTY_MEASURE_WITH_UNIT(LENGTH_MEASURE(1.E-07),#16, |
|||
'distance_accuracy_value','confusion accuracy'); |
|||
#20 = PRODUCT_TYPE('part',$,(#7)); |
|||
ENDSEC; |
|||
END-ISO-10303-21; |
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Reference in new issue