166 lines
4.5 KiB
OpenSCAD
166 lines
4.5 KiB
OpenSCAD
include <BOSL2/std.scad>
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BASE_MODEL_SCALE = [1.1, 1, 1.1];
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BASE_MODEL_TRANSLATE = [-0.4, 0, 16.978];
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EPS = 0.01;
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$fn = 50;
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module pin_header(cols = 4, rows = 1, anchor = BOTTOM, spin = 0, orient = UP) {
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// Standard pin header dimensions (in mm)
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base_height = 2.54; // Height of the plastic base
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pin_width = 0.64; // Width/thickness of the square pin
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pin_length = 6.0; // Length of pin sticking up
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pitch = 2.54;
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// 1. The Plastic Base is the Parent
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// It directly receives your anchor, spin, and orient arguments.
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color("darkgrey")
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cuboid([cols * pitch, rows * pitch, base_height], anchor=anchor, spin=spin, orient=orient) {
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// 2. Metal Pins are the Children
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// Placed relative to the center of the plastic base
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color("silver")
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xcopies(spacing=pitch, n=cols) {
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ycopies(spacing=pitch, n=rows) {
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up(base_height / 2)
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cuboid([pin_width, pin_width, pin_length], anchor=BOTTOM);
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}
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}
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// Allows attaching other objects to this header if needed
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children();
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}
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}
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module main_display(pin_header = false) {
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// Outer dimensions
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width = 55.04;
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length = 89.35;
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height = 2.7;
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display_height = 3;
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display_length = 77.6;
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display_inset = 5.7;
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sd_width = 26.6;
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sd_height = 3;
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sd_length = 16.6;
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sd_inset = 29.4;
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hole_diameter = 3;
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hole_inset = 1.5;
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difference() {
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cuboid([length, width, height]) {
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position(TOP + RIGHT)
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left(display_inset)
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color("black")
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cuboid([display_length, width, display_height], anchor=BOTTOM + RIGHT);
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position(BOTTOM + RIGHT + FRONT)
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left(sd_inset)
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cuboid([sd_width, sd_length, sd_height], anchor=TOP + RIGHT + FRONT);
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position(TOP + LEFT)
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pin_header(14, spin=90, anchor=BOTTOM + BACK);
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// pin_header();
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}
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xcopies(length - (2 * hole_inset) - hole_diameter) {
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ycopies(width - (2 * hole_inset) - hole_diameter) {
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zcyl(d=hole_diameter, h=height + EPS);
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}
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}
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}
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}
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module pad() {
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// A button has 4.2 x 6 mm -> At least ~20x20 are required for the PCB
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cube([20, 20, 10]);
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}
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module secondary_display(pin_header = false) {
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// https://de.aliexpress.com/item/1005003753680706.html
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length = 45.8;
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width = 20;
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height = 3.7;
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hole_diameter = 2;
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hole_inset = 1.5;
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difference() {
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cuboid([length, width, height]) {
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if (pin_header)
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position(LEFT + TOP)
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pin_header(7, spin=90, anchor=BACK + BOTTOM);
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}
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right(length / 2 - hole_inset) {
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ycopies(width - (2 * hole_inset) - hole_diameter) {
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zcyl(d=hole_diameter, h=height + EPS, anchor=RIGHT);
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}
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}
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}
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}
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module tertiary_display() {
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// https://de.aliexpress.com/item/1005006034531826.html
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cube([80, 36, 10]);
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}
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module battery(anchor = BOTTOM) {
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// 18650
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rotate([0, 90, 0]) cylinder(d=18, h=65, anchor=anchor);
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}
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/// USB-C port and switch not 100% dimensionally accurate, take care!
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module micro_controller(battery_holder = false, battery = false) {
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pcb_length = 91.5;
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pcb_height = 6.5; // including components, highest point: jst connector, followed by uC
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pcb_height_no_components = 1.1;
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pcb_width = 28.8;
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hole_diameter = 2.5;
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hole_inset = 1;
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usb_protrusion = 1.7;
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usb_width = 9;
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usb_inset_from_pcb_end = 5;
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power_switch_protrusion = 2.1;
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power_switch_inset_from_pcb_end = 8.1;
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power_switch_width = 4;
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battery_holder_height = 15;
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battery_holder_width = 21;
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battery_holder_length = 77.3;
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battery_length = 65;
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battery_protrusion = 4.5;
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difference() {
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cuboid([pcb_length, pcb_width, pcb_height], rounding=2, edges="Z") {
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if (battery_holder)
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position(TOP)
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cube([battery_holder_length, battery_holder_width, battery_holder_height], anchor=BOTTOM + CENTER) {
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if (battery)
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position(TOP)
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up(battery_protrusion)
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battery(anchor=CENTER + LEFT);
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}
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position(RIGHT + BOTTOM) {
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position(FRONT)
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left(usb_inset_from_pcb_end)
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cube([usb_width, usb_protrusion, pcb_height - pcb_height_no_components], orient=FRONT, anchor=RIGHT + BOTTOM + FRONT);
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position(BACK)
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left(power_switch_inset_from_pcb_end)
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cube([power_switch_width, power_switch_protrusion, pcb_height - pcb_height_no_components], orient=FRONT, anchor=RIGHT + TOP + FRONT);
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}
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}
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xcopies(pcb_length - (2 * hole_inset) - hole_diameter) {
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ycopies(pcb_width - (2 * hole_inset) - hole_diameter) {
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cyl(d=hole_diameter, h=pcb_height + EPS, orient=UP);
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}
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}
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}
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}
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