Allow heaters to stay full On when PWM=127
In previous version, even with PWM = 127, the system turns the FET off and then on in the next cycle. This bevavior may increase the FET heat dissipation. It was fixed keeping the FET always On when PWM=127.
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@ -1057,41 +1057,42 @@ ISR(TIMER0_COMPB_vect)
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#ifdef HEATERS_PARALLEL
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WRITE(HEATER_1_PIN,1);
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#endif
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}
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} else WRITE(HEATER_0_PIN,0);
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#if EXTRUDERS > 1
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soft_pwm_1 = soft_pwm[1];
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if(soft_pwm_1 > 0) WRITE(HEATER_1_PIN,1);
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if(soft_pwm_1 > 0) WRITE(HEATER_1_PIN,1); else WRITE(HEATER_1_PIN,0);
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#endif
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#if EXTRUDERS > 2
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soft_pwm_2 = soft_pwm[2];
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if(soft_pwm_2 > 0) WRITE(HEATER_2_PIN,1);
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if(soft_pwm_2 > 0) WRITE(HEATER_2_PIN,1); else WRITE(HEATER_2_PIN,0);
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#endif
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#if defined(HEATER_BED_PIN) && HEATER_BED_PIN > -1
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soft_pwm_b = soft_pwm_bed;
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if(soft_pwm_b > 0) WRITE(HEATER_BED_PIN,1);
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if(soft_pwm_b > 0) WRITE(HEATER_BED_PIN,1); else WRITE(HEATER_BED_PIN,0);
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#endif
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#ifdef FAN_SOFT_PWM
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soft_pwm_fan = fanSpeedSoftPwm / 2;
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if(soft_pwm_fan > 0) WRITE(FAN_PIN,1);
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if(soft_pwm_fan > 0) WRITE(FAN_PIN,1); else WRITE(FAN_PIN,0);
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#endif
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}
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if(soft_pwm_0 <= pwm_count) {
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if(soft_pwm_0 < pwm_count) {
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WRITE(HEATER_0_PIN,0);
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#ifdef HEATERS_PARALLEL
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WRITE(HEATER_1_PIN,0);
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#endif
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}
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#if EXTRUDERS > 1
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if(soft_pwm_1 <= pwm_count) WRITE(HEATER_1_PIN,0);
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if(soft_pwm_1 < pwm_count) WRITE(HEATER_1_PIN,0);
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#endif
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#if EXTRUDERS > 2
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if(soft_pwm_2 <= pwm_count) WRITE(HEATER_2_PIN,0);
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if(soft_pwm_2 < pwm_count) WRITE(HEATER_2_PIN,0);
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#endif
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#if defined(HEATER_BED_PIN) && HEATER_BED_PIN > -1
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if(soft_pwm_b <= pwm_count) WRITE(HEATER_BED_PIN,0);
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if(soft_pwm_b < pwm_count) WRITE(HEATER_BED_PIN,0);
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#endif
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#ifdef FAN_SOFT_PWM
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if(soft_pwm_fan <= pwm_count) WRITE(FAN_PIN,0);
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if(soft_pwm_fan < pwm_count) WRITE(FAN_PIN,0);
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#endif
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pwm_count += (1 << SOFT_PWM_SCALE);
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