n30: adjusted enclosure
- decreased length, adjusted pos of LED hole - decreased ridge_height - increased power connection height - decreased size of cable hole
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@@ -1,7 +1,7 @@
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$fn = 50;
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$fn = 50;
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width = 45;
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width = 45;
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length = 65;
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length = 60;
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height = 20;
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height = 20;
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corner_radius = 2;
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corner_radius = 2;
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@@ -20,7 +20,7 @@ hook_slit_height = 2.5;
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airslit_height = 1.75;
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airslit_height = 1.75;
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ridge_height = 16;
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ridge_height = 15.5;
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ridge_width = 1;
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ridge_width = 1;
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ridge_depth = 2.5;
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ridge_depth = 2.5;
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@@ -30,7 +30,7 @@ netconn_height = 20;
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netconn_tolerance = .3;
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netconn_tolerance = .3;
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powerconn_width = 10;
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powerconn_width = 10;
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powerconn_height = 10;
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powerconn_height = 12;
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powerconn_length = 6;
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powerconn_length = 6;
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powerconn_tolerance = .3;
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powerconn_tolerance = .3;
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@@ -106,7 +106,7 @@ union() {
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// power connector hole
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// power connector hole
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translate([9.75 /*(powerconn_width+powerconn_tolerance)/2*/,
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translate([9.75 /*(powerconn_width+powerconn_tolerance)/2*/,
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-(length/2),
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-(length/2),
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wall_thickness+2+(powerconn_height/2)])
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wall_thickness+4+(powerconn_height/2)])
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cube([powerconn_width+powerconn_tolerance,
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cube([powerconn_width+powerconn_tolerance,
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powerconn_length,
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powerconn_length,
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powerconn_height+powerconn_tolerance*2],
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powerconn_height+powerconn_tolerance*2],
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@@ -115,7 +115,7 @@ union() {
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// cable hole
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// cable hole
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translate([(width/2)-3, -12, wall_thickness+10])
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translate([(width/2)-3, -12, wall_thickness+10])
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rotate([00, 90, 0])
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rotate([00, 90, 0])
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cylinder(r = 11/2, h = 6);
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cylinder(r = 10/2, h = 6);
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// holes for cable binders
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// holes for cable binders
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translate([(width/2)-3, length/4, wall_thickness+12])
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translate([(width/2)-3, length/4, wall_thickness+12])
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@@ -128,7 +128,7 @@ union() {
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// LED hole
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// LED hole
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translate([12, -12.5, -wall_thickness])
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translate([12, -15, -wall_thickness])
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cylinder(r = 5.5/2, h = 6);
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cylinder(r = 5.5/2, h = 6);
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}
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}
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