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@ -43,7 +43,7 @@ cutter_power_t SpindleLaser::menuPower, // Power s
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#if ENABLED(MARLIN_DEV_MODE)
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cutter_frequency_t SpindleLaser::frequency; // PWM frequency setting; range: 2K - 50K
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#endif
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#define SPINDLE_LASER_PWM_OFF ((SPINDLE_LASER_PWM_INVERT) ? 255 : 0)
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#define SPINDLE_LASER_PWM_OFF TERN(SPINDLE_LASER_PWM_INVERT, 255, 0)
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//
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// Init the cutter to a safe OFF state
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@ -71,16 +71,23 @@ void SpindleLaser::init() {
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/**
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* Set the cutter PWM directly to the given ocr value
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*/
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void SpindleLaser::set_ocr(const uint8_t ocr) {
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WRITE(SPINDLE_LASER_ENA_PIN, SPINDLE_LASER_ACTIVE_STATE); // Turn spindle on
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analogWrite(pin_t(SPINDLE_LASER_PWM_PIN), ocr ^ SPINDLE_LASER_PWM_OFF);
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void SpindleLaser::_set_ocr(const uint8_t ocr) {
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#if NEEDS_HARDWARE_PWM && SPINDLE_LASER_FREQUENCY
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set_pwm_frequency(pin_t(SPINDLE_LASER_PWM_PIN), TERN(MARLIN_DEV_MODE, frequency, SPINDLE_LASER_FREQUENCY));
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set_pwm_duty(pin_t(SPINDLE_LASER_PWM_PIN), ocr ^ SPINDLE_LASER_PWM_OFF);
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#else
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analogWrite(pin_t(SPINDLE_LASER_PWM_PIN), ocr ^ SPINDLE_LASER_PWM_OFF);
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#endif
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}
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void SpindleLaser::set_ocr(const uint8_t ocr) {
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WRITE(SPINDLE_LASER_ENA_PIN, SPINDLE_LASER_ACTIVE_STATE); // Cutter ON
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_set_ocr(ocr);
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}
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void SpindleLaser::ocr_off() {
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WRITE(SPINDLE_LASER_ENA_PIN, !SPINDLE_LASER_ACTIVE_STATE); // Turn spindle off
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analogWrite(pin_t(SPINDLE_LASER_PWM_PIN), SPINDLE_LASER_PWM_OFF); // Only write low byte
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WRITE(SPINDLE_LASER_ENA_PIN, !SPINDLE_LASER_ACTIVE_STATE); // Cutter OFF
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_set_ocr(0);
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}
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#endif
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@ -97,7 +104,7 @@ void SpindleLaser::apply_power(const uint8_t opwr) {
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ocr_off();
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isReady = false;
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}
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else if (enabled() || ENABLED(CUTTER_POWER_RELATIVE)) {
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else if (ENABLED(CUTTER_POWER_RELATIVE) || enabled()) {
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set_ocr(power);
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isReady = true;
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}
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