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  • Bodkins
    replied

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  • ren
    replied
    Jet, I didnt use an earth ground to start with at all. It worked still. Earth ground tested later didnt seem to change results for me.

    My tests have shown to me that some amp draw is needed, especially in the larger bulbs. Those 125 watters would need a decent squirt I imagine! Like you saw in my video when they begin to conduct amp draw shoots up! I have regularly seen it shoot past 5 amps on 12v on my setup. Best brightness however can only be had when one restricts the pulse width, almost like you need to choke it once current is flowing. I am not sure what makes a 20 watt bulb brighter than a 10 watt. Perhaps you are right and it is a different gas ratio or sheer volume/size etc.

    Just a small tip for those lighting multiple globes incase you havent figured it out yet. I have much better results when all globes are of the same make and rating. And the spirals seem to work the best for me....

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  • Jetijs
    replied
    Thanks ren
    I also did not see any difference in using one or up to five 2n3055 transistors in parallel. Did you use a normal earth ground?
    Also I bought some powerful CFL's that are rated equivalent to 125w of conventional light, could not get them to light up, but it works fine on weaker bulbs. Must be a different gas inside, different pressure or something else.
    Last edited by Jetijs; 12-04-2008, 08:23 PM.

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  • ren
    replied
    Originally posted by slayer007 View Post
    Very Nice Ren Thanks
    Can you pick up any BEMF from your coil?
    Diode off the collector causes lights to cease. Pretty much all BEMF is transfered inductively to the secondaries for lighting purposes. The toroidal is different to the ignition coil in that the windings are not coupled in anyway.

    @ Jet. I had EXACTLY the same results as you, including the KSP2222a. 100 ma @ 12v, low light. 500ma @ 24v, half decent light. Can draw less, but light drops. Clip or finger on the base starts it oscillating. I saw no difference in having one 2n3055 or having 3. I could get it to self oscillate when I put more lights on the back end.

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  • Jetijs
    replied
    stringguy, download one part, then wait for 30 minutes or so and you will be able to download again

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  • stringguy
    replied
    Originally posted by gotoluc View Post
    Hi everyone,

    for anyone who have not seen this yet. Below are links to download a video taken of a working model of a Tesla transformer which extracts energy from the ground. It was built by a guy from Georgia (ex USSR) about two years ago.

    The video is impressive.

    Please note that you need all 4 parts downloaded before you can extract the complete video.

    RapidShare: Easy Filehosting
    RapidShare: Easy Filehosting
    RapidShare: Easy Filehosting
    RapidShare: Easy Filehosting

    This was posted at Overunity Forum in The Tesla Project topic on April 24, 2008

    Luc
    heya Luc, thanks for posting these links. but, as the ip's are shared here in ireland, rapid share wont allow us to download these files. do you know if they are anywhere else? or could someone upload them to their web site so we can access them?
    thanks

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  • Jetijs
    replied
    Hi all.
    Today I bought a bunch of 2n3055 transistors and some 2n2222 transistors. When I got home, it turned out that instead of 2n2222 transistors they gave me KSP2222A transistors But I tried it anyway. I do not have a real earth ground yet, but I tried to use a large metal plate as ground instead:



    The circuit will not start to oscillate on it's own, I have to connect a capacitance to the base of the KSP2222 transistor, a small wire is enough to get it to self oscillate. When it runs, the circuit consumes about 100mA from 12V battery. A 18w cylinder type bulb lights up dimmly on its own without any metal plates attached. But when I attach the metal plate to the other end of the bulb, it gets brighter. The interesting thing is that if I connect the other end of the bulb to negative terminal of the ignition coil instead of the metal plate, the oscillations stop. The same happens if I connect the other end of the light bulb to the positive terminal of the light bulb. Another interesting thing is that if I attach a wire to the base of the KSP2222 transistor and slowly move it towards a small metal piece for example a screwdriver or a piece of aluminum foil, a spark jumps to it and the light goes up in brightness, but so does also the amp draw, it goes up to 2.5-3A. Another interesting thing is that if I take a long sheet of aluminum foil, some 10mm wide and connect the wire from the base of the KSP2222 transistor to it, I can pull the sheet of foil up a little. It sticks to the wire like iron to a magnet. Also if I put the wire so that it is not touching the foil directly, but just so far to create a spark (about 0.5mm), the foil lifts up towards the wire. This is like the experiments with longditudional waves in a video by Peter Lindemann and Eric Dollard that I saw. In the video they were experimenting with wireless electricity, and a light bulb that was light up with this radiant energy did attract a piece of thin copper foil to itself
    Not much else to report for now. I need to make a good earth ground wire.
    Thanks,
    Jetijs

    Leave a comment:


  • gotoluc
    replied
    Hi everyone,

    for anyone who have not seen this yet. Below are links to download a video taken of a working model of a Tesla transformer which extracts energy from the ground. It was built by a guy from Georgia (ex USSR) about two years ago.

    The video is impressive.

    Please note that you need all 4 parts downloaded before you can extract the complete video.

    RapidShare: Easy Filehosting
    RapidShare: Easy Filehosting
    RapidShare: Easy Filehosting
    RapidShare: Easy Filehosting

    This was posted at Overunity Forum in The Tesla Project topic on April 24, 2008

    Luc

    Leave a comment:


  • Hoppy
    replied
    Originally posted by Aromaz View Post
    @Hoppy - Thank you. On that particular digital meter it does not matter - only difference is a fuse in the 10A socket. But - I did test it in both sockets anyway.

    Refer to my poting above #1531 which your refer to as well: "For sake of interest and comparison, I used both the probe and 10A plug. At 10A plug that was the highest I could get the needle to move. You can see the lights on the background, now very well lit daylight in lab." Also refer to those photos with analog meter.

    On most of the other multimeters they give a related but not same scale.

    @BODKINS: I just got back from farm, set-up there not yet ready. I hammerd a series of 3m brass rods into the soil and also one steel rod of same size. The folowiong are those results

    Measures from pen down: measures with one probe (+) in my hand and other on rod.
    3-5 minutes - Brass rods - ave 32 m Vdc, mild steel steel = 17.8 Vdc
    30 minutes - Brass rods - ave 115 mV, steel 96 mV
    90 minutes - Brass rods - Ave 135 mV, steel 127 mV
    2 hours - Brass rods - Ave 151 mV, steel 164 mV.
    Tested brass to brass - at 2 hours - 221 mV
    Brass to steel - at 2 hours - 144 mVdc.

    I also errected an attennae 6m above soil total 95 meter copper wire; stretched over distance of 15 m from one end to other 6 lengths. Only measures once - 182 mV. Could not measure Antena to ground yet.

    So will give it a day to cure, then I will start conditioning the probes with frequency generator for two more days - after which I hope to see interesting things.
    After 30 minutes -
    Aromaz

    I am still very confused at the uA current readings you are getting and the video shots of your new analogue meter. On the other shot you show your meter pointer set at the 50V DC range. Did you intend to show us a voltage reading, as I thought these shots were to show the current comparison using both sockets? As far as I can see the 50uA range that you are set to with the positive probe in the 10A socket, the probe should be moved to the normal red positive probe socket for this range. I can't see how the 50uA range can work from the 10A socket. One check would be to place a 1M ohm resistor in series with a 12V battery and compare the current (12uA) using both normal and 10A probe sockets.

    Sorry to harp on about this but I've been experimenting a long time with CFL's with HV and have never seen them light with micro amps, so its important that if you have made a breakthrough, then the meter readings need to be verified by others using the same experimental setup.

    Hoppy
    Last edited by Hoppy; 12-04-2008, 02:13 PM.

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  • Bodkins
    replied
    @Inquorate
    Gots some ideas with the double diode waiting for delivery before i get going.
    I have no idea what you talking about in the rammbering but if it works for you I Aggree

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  • Bodkins
    replied
    Originally posted by Aromaz View Post
    @Hoppy - Thank you. On that particular digital meter it does not matter - only difference is a fuse in the 10A socket. But - I did test it in both sockets anyway.

    Refer to my poting above #1531 which your refer to as well: "For sake of interest and comparison, I used both the probe and 10A plug. At 10A plug that was the highest I could get the needle to move. You can see the lights on the background, now very well lit daylight in lab." Also refer to those photos with analog meter.

    On most of the other multimeters they give a related but not same scale.

    @BODKINS: I just got back from farm, set-up there not yet ready. I hammerd a series of 3m brass rods into the soil and also one steel rod of same size. The folowiong are those results

    Measures from pen down: measures with one probe (+) in my hand and other on rod.
    3-5 minutes - Brass rods - ave 32 m Vdc, mild steel steel = 17.8 Vdc
    30 minutes - Brass rods - ave 115 mV, steel 96 mV
    90 minutes - Brass rods - Ave 135 mV, steel 127 mV
    2 hours - Brass rods - Ave 151 mV, steel 164 mV.
    Tested brass to brass - at 2 hours - 221 mV
    Brass to steel - at 2 hours - 144 mVdc.

    I also errected an attennae 6m above soil total 95 meter copper wire; stretched over distance of 15 m from one end to other 6 lengths. Only measures once - 182 mV. Could not measure Antena to ground yet.

    So will give it a day to cure, then I will start conditioning the probes with frequency generator for two more days - after which I hope to see interesting things.
    After 30 minutes -
    LOL great you are giving proof to was i see happening. We so needed you at this thread I dont get the time you have, but will try and rep your finding to give credit, Its all in the potential difference and the pump(oscillatons).
    The feed back(disco lights) is the haromic coming back too,I think the way to get past this stage is to double up the setup maybe or up the frequence by just under half again. This will all help the stubblefield coil too is all the same stuff once we get the balance it will run itself forever.


    Tesla used tube because he did not have GERMANIUM
    Last edited by Bodkins; 12-04-2008, 10:11 PM.

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  • slayer007
    replied
    Originally posted by ren View Post
    Ok so I have finished the PWM toroidal build for now. Its stable, doesnt overheat and I managed to cut amp draw again somewhat. This does come at a slight cost of light production, it is up to the end user I guess as to how much they are willing to pay for what level of light. So the only thing I dont really like about it is the sound it makes.

    Please note that while it does push a decent amount of amperage, the light output is close to that of an unmodified unit running off mains. These globes are 23 watt, so thats 46 watts for both of them. Running @ 24v 500ma (12 watt) there is more than enough light to illiminate the entire room.

    Video here YouTube - PWM Toroidal Oscillator

    Schematic below. I wont post any further details regarding this construction as it appears everyone else in the thread is traveling a different path. Enjoy.

    Very Nice Ren Thanks
    Can you pick up any BEMF from your coil?

    Leave a comment:


  • Inquorate
    replied
    I hummed a tune...

    And the earth hummed back..

    'twas a merry tune.

    YouTube - Inquorate 13

    Leave a comment:


  • ren
    replied
    Ok so I have finished the PWM toroidal build for now. Its stable, doesnt overheat and I managed to cut amp draw again somewhat. This does come at a slight cost of light production, it is up to the end user I guess as to how much they are willing to pay for what level of light. So the only thing I dont really like about it is the sound it makes.

    Please note that while it does push a decent amount of amperage, the light output is close to that of an unmodified unit running off mains. These globes are 23 watt, so thats 46 watts for both of them. Running @ 24v 500ma (12 watt) there is more than enough light to illiminate the entire room.

    Video here YouTube - PWM Toroidal Oscillator

    Schematic below. I wont post any further details regarding this construction as it appears everyone else in the thread is traveling a different path. Enjoy.
    Last edited by ren; 06-13-2009, 12:40 AM.

    Leave a comment:


  • Aromaz
    replied
    Originally posted by Hoppy View Post
    Aromaz

    From the video shot, your pos analogue meter lead appears to be plugged into the 10Amp socket. Check your manual on this because I think this should be just for the 10Amp current range?

    Hoppy

    @Hoppy - Thank you. On that particular digital meter it does not matter - only difference is a fuse in the 10A socket. But - I did test it in both sockets anyway.

    Refer to my poting above #1531 which your refer to as well: "For sake of interest and comparison, I used both the probe and 10A plug. At 10A plug that was the highest I could get the needle to move. You can see the lights on the background, now very well lit daylight in lab." Also refer to those photos with analog meter.

    On most of the other multimeters they give a related but not same scale.

    @BODKINS: I just got back from farm, set-up there not yet ready. I hammerd a series of 3m brass rods into the soil and also one steel rod of same size. The folowiong are those results

    Measures from pen down: measures with one probe (+) in my hand and other on rod.
    3-5 minutes - Brass rods - ave 32 m Vdc, mild steel steel = 17.8 Vdc
    30 minutes - Brass rods - ave 115 mV, steel 96 mV
    90 minutes - Brass rods - Ave 135 mV, steel 127 mV
    2 hours - Brass rods - Ave 151 mV, steel 164 mV.
    Tested brass to brass - at 2 hours - 221 mV
    Brass to steel - at 2 hours - 144 mVdc.

    I also errected an attennae 6m above soil total 95 meter copper wire; stretched over distance of 15 m from one end to other 6 lengths. Only measures once - 182 mV. Could not measure Antena to ground yet.

    So will give it a day to cure, then I will start conditioning the probes with frequency generator for two more days - after which I hope to see interesting things.
    After 30 minutes -

    Leave a comment:

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