EASER Tests v1

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    EASER tests 05/09/12

    Henriques from Portugal

    Very thanks Hector

    The aim here is get an ordinary transformer operating in EASER mode.

    Extracting the magneto-atomic ambient energy the output will be more that

    the input and the core temperature will go down.

    The setup

    The setup is very simple, just an ordinary trafo connected to a battery switched with a 2n3055

    transistor controlled by compute interface. The secondary of the trafo is connected to a

    capacitor thought a diode 1n4007.

    The capacitor is discharged into a load using a SCR controlled with this circuit

    http://postimage.org/image/asizfh44f/.

    The reference voltage to control the previous circuit is delivered for the secondary of the trafo.

    http://postimage.org/image/asizfh44f/http://postimage.org/image/asizfh44f/http://postimage.org/image/asizfh44f/
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    Basically the system is like this http://postimage.org/image/zaa2jyi5d/ but I

    don't have the SCR (S2) that triggers with the CEMF peak, is it necessary? The

    diode is not enough?

    Experimental results

    First changing the frequency and register the current input and DC voltage on secondary more

    diode. All voltage are measured with a digital multimeter

    V in

    (V)

    duty-

    cycle

    freq.

    Hz

    I in (A) Vout

    voltimeter

    6 50 30 0,43 30

    6 50 35 0,48 33

    6 50 40 0,52 38

    6 50 45 0,57 41

    6 50 50 0,61 45

    6 50 55 0,65 50

    6 50 60 0,64 52

    6 50 65 0,6 53

    http://postimage.org/image/zaa2jyi5d/http://postimage.org/image/zaa2jyi5d/http://postimage.org/image/zaa2jyi5d/
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    6 50 70 0,57 54

    6 50 75 0,55 55

    6 50 85 0,52 57

    6 50 95 0,51 60

    6 50 100 0,51 61

    6 50 110 0,52 64

    6 50 120 0,55 68

    6 50 140 0,64 75

    6 50 150 0,68 77

    6 50 180 0,83 80

    6 50 230 1,05 84

    6 50 250 1,12 85

    6 50 300 1,3 88

    6 50 350 1,46 90

    6 50 400 1,6 92

    6 50 500 1,83 92

    6 50 700 2,23 89

    6 50 1200 2,8 74

    6 50 2000 3,28 50

    0

    20

    40

    60

    80

    100

    0 200 400 600 800 1000 1200 1400 1600 1800 2000

    Vout vs freq

    0

    0,5

    1

    1,5

    2

    2,5

    3

    3,5

    0 200 400 600 800 1000 1200 1400 1600 1800 2000

    Iin vs freq

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    Now I use always the half diode-plug by Hector Perez in the follows setups.

    Next I change the frequency and I register the DC voltage on the capacitor with the multimeter

    and with a shunt, so the load impedance equal to zero. The capacitor here is always 2.2uF.

    V in

    (V)

    freq. (Hz) duty

    cycle

    I in (A) Vcap voltimeter

    (V)

    load cap

    6 30 50 0,4 60 shunt 2.2 u

    6 40 50 0,51 35 shunt 2.2 u

    6 45 50 0,55 29 shunt 2.2 u

    6 50 50 0,6 20 shunt 2.2 u

    6 55 50 0,66 12 shunt 2.2 u

    6 60 50 0,73 8 shunt 2.2 u

    6 65 50 0,79 7 shunt 2.2 u

    6 70 50 0,85 6 shunt 2.2 u

    6 75 50 0,9 4 shunt 2.2 u

    6 80 50 0,95 3,5 shunt 2.2 u

    6 100 50 1,13 0,8 shunt 2.2 u

    6 110 50 1,2 0,2 shunt 2.2 u

    6 120 50 1,29 0,48 shunt 2.2 u

    6 150 50 1,47 1,1 shunt 2.2 u

    6 200 50 1,7 1,2 shunt 2.2 u

    6 270 50 1,9 0,2 shunt 2.2 u

    6 320 50 1,97 0,7 shunt 2.2 u

    6 380 50 2,05 1,3 shunt 2.2 u

    6 450 50 2,14 1,8 shunt 2.2 u

    6 530 50 2,21 2,4 shunt 2.2 u

    6 600 50 2,27 2,7 shunt 2.2 u

    6 650 50 2,33 2,85 shunt 2.2 u

    0

    20

    40

    60

    80

    100

    0 0,5 1 1,5 2 2,5 3 3,5

    Vout vs Iin

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    6 1000 50 2,57 3 shunt 2.2 u

    6 1100 50 2,64 2,6 shunt 2.2 u

    6 1200 50 2,76 4 shunt 2.2 u

    6 1400 50 2,8 3,5 shunt 2.2 u

    6 2000 50 3 4,9 shunt 2.2 u

    Next I fix the frequency and change the capacitance values of the capacitor. I think the best

    value is 222nF were the half resonance happens and the joules collected are maximum.

    V in freq. duty

    cycle

    load I in Vcap

    voltimeter

    cap

    6 150 50 shunt 1,85 0,2 10u6 150 50 shunt 1,54 1,2 2,2u

    6 150 50 shunt 1,24 1,9 1u

    6 150 50 shunt 1,03 18 500n

    6 150 50 shunt 1 24 330n

    6 150 50 shunt 0,92 42 220n

    6 150 50 shunt 0,87 45 100n

    6 150 50 shunt 0,86 45,5 68n

    6 150 50 shunt 0,85 46 39n

    0

    20

    40

    60

    80

    0 100 200 300 400 500 600 700 800 900 10001100120013001400150016001700180019002000

    Vcap vs freq

    0

    1

    2

    3

    4

    0 200 400 600 800 1000 1200 1400 1600 1800 2000

    I in vs freq

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    At last I put a 12V 21W car bulb instead the shunt and tried analyze the shine with my eyes.

    V in freq. duty

    cycle

    load I in Vcap

    voltimeter

    cap BRILHO

    6 150 50 12V bulb 21W 1,7 10 10u X

    6 150 50 12V bulb 21W 1,31 25 2,2u more6 150 50 12V bulb 21W 1,09 33 1u X (again)

    6 150 50 12V bulb 21W 0,99 40 500n less

    6 150 50 12V bulb 21W 0,96 40 330n nothing

    Conclusions

    I pretend get more power on the output that what I put in.

    I will be very grateful for yours answers, ideas and opinions