More mount work and start of endstop logic. Rebuilding the B&H projector unity.
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3a435933e3
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@ -145,15 +145,15 @@ int Servo_delay (int angleA, int angleB) {
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void Cap_off (boolean suppress, boolean force) {
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Endstop_on();
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current_angle = servo.read();
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if ((Read_endstop() || force) && (cap_state || current_angle != cap_off_angle)) {
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if ( (cap_state || current_angle != cap_off_angle)) {
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Servo_angle(cap_off_angle);
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cap_state = false;
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} else {
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log("Cap already off");
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}
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while (Read_endstop()) {
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/*while (Read_endstop()) {
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delay(1);
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}
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}*/
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Endstop_off();
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log("Cap_off()");
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if (!suppress) {
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@ -164,15 +164,15 @@ void Cap_off (boolean suppress, boolean force) {
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void Cap_on (boolean suppress, boolean force) {
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Endstop_on();
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current_angle = servo.read();
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if ((!Read_endstop() || force) && (!cap_state || current_angle != cap_on_angle)) {
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if ( (!cap_state || current_angle != cap_on_angle)) {
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Servo_angle(cap_on_angle);
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cap_state = true;
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} else {
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log("Cap already on");
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}
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while (!Read_endstop()) {
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/*while (!Read_endstop()) {
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delay(1);
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}
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}*/
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Endstop_off();
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log("Cap_on()");
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if (!suppress) {
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@ -1,13 +1,14 @@
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boolean debug_state = false;
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const int proj_fwd_pin = 12;
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const int proj_bwd_pin = 11;
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const int proj_pin = 10;
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const int proj_fwd_pin = 9;
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const int proj_bwd_pin = 10;
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const int proj_micro_pin = 4;
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const int proj_time = 1200;
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const int proj_delay = 42;
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boolean proj_dir = true;
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boolean proj_running = false;
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volatile int proj_micro_raw;
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const char cmd_projector = 'p';
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const char cmd_proj_forward = 'g';
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@ -25,6 +26,16 @@ void setup() {
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Serial.begin(57600);
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Serial.flush();
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Serial.setTimeout(serialDelay);
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pins_init();
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}
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void pins_init () {
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pinMode(proj_fwd_pin, OUTPUT);
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pinMode(proj_bwd_pin, OUTPUT);
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pinMode(proj_micro_pin, INPUT_PULLUP);
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analogWrite(proj_fwd_pin, 0);
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analogWrite(proj_bwd_pin, 0);
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}
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void loop() {
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@ -36,6 +47,9 @@ void loop() {
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cmd(cmd_char);
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cmd_char = 'z';
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}
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if (proj_running) {
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proj_reading();
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}
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}
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void cmd (char val) {
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@ -72,11 +86,11 @@ void identify () {
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void proj_start () {
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if (proj_dir) {
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digitalWrite(proj_fwd_pin, HIGH);
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digitalWrite(proj_bwd_pin, LOW);
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analogWrite(proj_fwd_pin, 255);
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analogWrite(proj_bwd_pin, 0);
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} else {
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digitalWrite(proj_bwd_pin, HIGH);
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digitalWrite(proj_fwd_pin, LOW);
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analogWrite(proj_bwd_pin, 255);
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analogWrite(proj_fwd_pin, 0);
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}
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proj_running = true;
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delay(500); // Let bump pass out of microswitch
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@ -95,8 +109,8 @@ void proj_reading () {
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}
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void proj_stop () {
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digitalWrite(proj_bwd_pin, LOW);
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digitalWrite(proj_fwd_pin, LOW);
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analogWrite(proj_bwd_pin, 0);
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analogWrite(proj_fwd_pin, 0);
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proj_running = false;
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@ -25,7 +25,7 @@ RailSlotsD = 6;
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MountBoltSpacingY=40;
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OptoEndstopAdjustZ=2;
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OptoEndstopAdjustZ=2-9;
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module OptoEndstop () {
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$fn=30;
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@ -44,6 +44,7 @@ module OptoEndstop () {
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translate([0,R(Y)+R(4.15),-R(1.75)-R(10.15)]) cube([6.1, 4.15, 10.15], center=true);
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translate([0,-R(Y)-R(4.15),-R(1.75)-R(10.15)]) cube([6.1, 4.15, 10.15], center=true);
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}
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translate([3,4, -R(1.75)-R(.75)]) cube([3.6, 15.7, .75], center=true);
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}
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module BoltVoid () {
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@ -85,9 +86,12 @@ module Mount () {
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translate([80, R(MountBoltSpacingY), 0]) RailSlots();
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translate([80, -R(MountBoltSpacingY), 0]) RailSlots();
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//endstop
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translate([0, -34, 25-2-2]) {
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translate([0, -34, 25-2-2-10]) {
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difference () {
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cube([14, 20, 50], center=true);
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translate([0, 11, -14]) cylinder(r=R(22), h=4, center=true);
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translate([0, R(LensVoidDiameter)+10+4.01, 0]) cylinder(r=R(LensVoidDiameter)+5, h=LensY + 29, center=true, $fn=200);
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}
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translate([0, 11, -14+9]) cylinder(r=R(22), h=4, center=true);
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}
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}
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}
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@ -179,28 +183,32 @@ module RailMount () {
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module OptoEndstopMount () {
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translate([-5,9.5,20]) {
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difference() {
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translate([0, 0, 4]) cube([14-0.3-0.3, 14, 32], center=true);
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translate([0, R(LensVoidDiameter)+15+4, 0]) cylinder(r=R(LensVoidDiameter)+15, h=LensY + 10, center=true, $fn=200);
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translate([0,-8.3, 12]) cube([9, 8, 5], center=true);
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//translate([0,-5,-9+OptoEndstopAdjustZ]) rotate([90, 0, 0]) cylinder(r=R(2.9),h=10,center=true, $fn=40);
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translate([-2,-5,15+OptoEndstopAdjustZ]) rotate([90, 0, 0]) cylinder(r=R(2.9),h=20,center=true, $fn=40);
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translate([0,1,-3+OptoEndstopAdjustZ]) cube([8,20,15],center=true);
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translate([0, 0, 1-7.25]) cube([14-0.3-0.3, 14, 32+4], center=true);
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//lens void
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translate([0, R(LensVoidDiameter)+5+4, 0]) cylinder(r=R(LensVoidDiameter)+5, h=LensY + 29, center=true, $fn=200);
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//connector void
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translate([0,-8.3, -14.5]) cube([9, 8, 5], center=true);
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//bolts
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translate([2,-5,-13.25+OptoEndstopAdjustZ]) rotate([90, 0, 0]) cylinder(r=R(2.9),h=20,center=true, $fn=40);
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translate([2,-5,15+OptoEndstopAdjustZ]) rotate([90, 0, 0]) cylinder(r=R(2.9),h=20,center=true, $fn=40);
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//main void
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translate([1,1,-3]) cube([8,20,15],center=true);
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//pathway void
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translate([0,6,-3 +OptoEndstopAdjustZ]) cylinder(r=R(22), h=4, center=true);
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translate([0,6,-2]) cylinder(r=R(22), h=4, center=true);
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//smd voids
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translate([-5, -6.5, -3]) cube([3.6, 1, 18], center=true);
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}
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}
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}
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module Debug () {
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Mount();
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translate([-CapOffsetX,-CapOffsetY,5.71]) rotate([0,0,currentAngle]) Cap();
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//translate([-CapOffsetX,-CapOffsetY,5.71]) rotate([0,0,currentAngle]) Cap();
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//color("green") RailMount();
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//translate([5, -38, -11.8+OptoEndstopAdjustZ]) rotate([0, -90, 0]) opto_endstop();
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//color("green") translate([5, -38, -11.8]) OptoEndstopMount();
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translate([-2, -38 + 2, -11.8 + 20 + OptoEndstopAdjustZ+.75]) rotate([90, 180, 0]) OptoEndstop();
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//translate([2, -38 + 2, -11.8 + 11 + 2 +.75]) rotate([90, 0, 0]) OptoEndstop();
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}
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Render="Debug";
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