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Overunity Machines Forum



Kapanadze Cousin - DALLY FREE ENERGY

Started by 27Bubba, September 18, 2012, 02:17:22 PM

Previous topic - Next topic

0 Members and 121 Guests are viewing this topic.

plaxius

Quote from: Jeg on December 14, 2017, 04:54:46 PM
Hi plaxius ;) That is really a great job. Thanks. The link unfortunately doesn't work. Can you try again?


///// This is the code ////


//Pgm Timing vars
long previousMillis = 0; // will store last time valuse measured
long interval = 100; // interval at which to Measure values (milliseconds)
unsigned long currentMillis = 0;


//pwm vars
unsigned pwm1; // Value read from A0 to give PWM duty cycle output in terms of 0-5V
unsigned pwm2;// Value read from A0 to give PWM duty cycle output in terms of 0-5V
unsigned pwmSpan;


void setup(){


//Set up PWM
pinMode(9, OUTPUT);
pinMode(10, OUTPUT);


//phase/frequency correct mode. SELECT THIS FOR INVERTED OUTPUTS.
TCCR1A = _BV(COM1A1) | _BV(COM1B1) | _BV(COM1B0) ;
// Select mode 8 and select divide by 8 on main clock.
TCCR1B = _BV(WGM13) | _BV(CS11);


Serial.begin(9600);
}


void loop(){
unsigned long currentMillis = millis();
if (currentMillis - previousMillis >= interval) {
previousMillis = currentMillis;


ICR1 = pwmSpan = map(analogRead(A3),0,1023,100,10);




pwm1 = analogRead(A0); // read duty from A0 for PWM 1
pwm2 = analogRead(A2); // read duty from A2 for PWM 2


pwm1 = map(pwm1,0,1023,0,pwmSpan); // map the duty cycle to the available steps
pwm2 = map(pwm2,0,1023,0,pwmSpan); //map the duty cycle to the available steps


OCR1A = pwm1; // set PWM pin 9
OCR1B = pwm2; // set PWM Pin 10




}
}


//////// en code ///////






Use pot in A3 for frequency
User Pot A0 & A2 for DutyCycle
Pin 9 & Pin10 is the output channels









AlienGrey

Yes that vid reminds me !

Quote from: NickZ on December 14, 2017, 05:29:07 PM
   Pepper10:
   Nelson's circuit is not a Slayer Exciter, nor was his first self running device, an exciter. As far as I can remember. We did discuss his earlier designs on this forum thread. But, he still would not disclose all the detail, even then.
   If you can find and show how an Exciter circuit can self run, that would be appreciated, as that is the idea, not just to toss out HV into the air.
   But, as far a I know, he Slayer circuit as never produced or has been shown by itself to be a self runner. Many guys tried it, and all failed at it. I was one of them.
   The Slayer Exciter circuit is a similar circuit to the Dr. Stiffler exciter. Which did light some leds, using just a ground line. But, then any further development of that circuit, just stopped. Maybe Stiffler just got tired of only lighting a few leds.

Ok then! have a look at the circuit Nelson published then have a look at this on, but dont try to tell me they are not similar in the way they work.

http://www.tuks.nl/Mirror/Dr_Stiffler/ecat2004.htm.html



peper10


Quote from: AlienGrey on December 14, 2017, 07:10:23 PM
Yes that vid reminds me !
Ok then! have a look at the circuit Nelson published then have a look at this on, but dont try to tell me they are not similar in the way they work.

http://www.tuks.nl/Mirror/Dr_Stiffler/ecat2004.htm.html


I know that circuit and familiarities with exiter circuit...  Did you ever wonder if something can be added at the end of the circuit in either case??
Only try to think resonance and capacitive discharge???

peper10

Not that I want to INSIST OR INCITE that none of you guys has not played with this circuit but what would happen if someone has put a toroid transfo before the lamp and a capacitor to match the impendence of the lamp on the L6 winding????

AlienGrey

Quote from: peper10 on December 14, 2017, 07:40:45 PM
Not that I want to INSIST OR INCITE that none of you guys has not played with this circuit but what would happen if someone has put a toroid transfo before the lamp and a capacitor to match the impendence of the lamp on the L6 winding????
D o you know what the values of the components are ?

If you feed that transformer with a SG and look at the output with a scope you get a pinch effect like 2 magnets repelling each other a shock wave effect or vortex