52 lines
1.7 KiB
OpenSCAD
52 lines
1.7 KiB
OpenSCAD
$fn=50;
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include <BOSL/constants.scad>
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use <BOSL/math.scad>
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use <BOSL/transforms.scad>
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depth = 1;
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faceplate_angle = 20;
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keys = 4; // Number of key switches
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key_width = 20; // With of a square keycap
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key_gap = 2; // Expands the key cutout in each direction
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key_distance = 5; // Spacing between keys
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dial_diameter = 20; // Diameter of the dial, used for spacing
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dial_post_diameter = 7; // Diameter of the post passing through the faceplate
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dial_gap = 2; // Expands the dial cutout in each direction
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dial_distance = 20; // Space between the dial and the keypad
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faceplate_margin = 20;
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key_cutout_width = key_width + (key_gap * 2);
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keys_width = (key_cutout_width * keys) + (key_distance * (keys - 1));
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faceplate_width = sum([faceplate_margin,
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dial_diameter,
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dial_distance,
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keys_width,
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faceplate_margin]);
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faceplate_interfaceplate_height = max(key_width, dial_diameter);
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faceplate_height = faceplate_interfaceplate_height + (faceplate_margin * 2);
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module faceplate() {
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difference() {
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cube([faceplate_width, faceplate_height, depth]);
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translate([faceplate_margin, faceplate_margin, -1]) {
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translate([dial_diameter / 2,
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dial_diameter / 2,
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0]) {
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cylinder(d=dial_post_diameter + dial_gap, h=depth + 2);
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}
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translate([dial_diameter + dial_distance, 0]) {
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xspread(spacing=key_cutout_width + key_distance, n=keys, sp=[0,0,0]) {
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cube([key_cutout_width, key_cutout_width, depth + 2]);
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}
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}
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}
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}
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}
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rotate([90 - faceplate_angle,0,0])
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faceplate();
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