A Jacob’s ladder is driven by a voltage boosted microwave oven with a few steel wool sparkles thrown in for effect.
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Jacob’s Ladder with Water Electrodes
A Jacob’s Ladder with water electrodes is formed between two streams of salty water and gives a bright orange colour.
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100 kV DC (dental x-ray unit)
100 kV DC gives 5 inch sparks from a voltage multiplier driven from a dental x-ray transformer.
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Jacobs Ladder
A Jacobs ladder is an arc that forms between two upright electrodes that are wider at the top. The arc starts at the bottom and rises with the heat of the arc becoming progressively larger until it “breaks” at the top. It then reignites at the bottom to start over again.
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Measurement of High Voltage Pulses
I have now measured the high voltage pulses during can crushing (lower trace). The lower trace shows 2000 V peak with around 75% voltage reversal. Current in the upper trace is around 12,000 A.
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Circular Jacobs Ladder
A dual concentric magnetically driven circular Jacobs ladder. The sparks form in one spot but rotate due to the magnetic field.
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High Speed Spark Photography 1
Now this is interesting. This is taken through a rotating mirror.
I joined a first surface laser mirror to one of my motors. Running at 2250 RPM and with the spark 16 cm away the radial velocity of the spark is 37 m/s. With the image being only the negative 2 cm of a total 7 cm spark width, the vertical distance of the photo is 500 us. So you should see events in the region of 10 us easily enough. There doesn’t seem to be any structure at that level around the discontinuity.
The Tesla coil above is my junk coil running on half of a 12 kV 30 mA NST. It has a few ceramic caps and a 3 segment static gap. Primary is 15 turns and secondary is 260 turns in 11 inches. There is usually no toroid but I used one to intensify the sparks by putting an old tin on top. The gap is only about 2 cm to all fit in the mirror view. You can just see the spark in the mirror in this photo.
Of course, with each spark lasting microseconds or less it becomes harder to catch a spark in the mirror. Even with 2 second exposures and the spark firing at perhaps 20 Hz you only get a spark in view occasionally. It should be easy to increase the resolution by a factor of 10 – 20 to see events at microsecond level. It may take many minutes of exposure to get a spark though.
This would be of great interest to Tesla coiling to get sparks seen on that time frame.
Note that this is not a true high speed photograph. Vertical movement of the spark on the image may be due to irregularity of the spark or due to events happening in time. Multiple spark channels should show up well or stepped leaders perhaps.
The left photo shows a single spark and the centre photo shows multiple sparks captured with a longer exposure. Mirror to spark distance is 38 cm which means that the image moves at about 100 m/s. The picture represents about 2 cm width and 4 cm height i.e. vertical scale is 40 us. (just over 100 ns/pixel). The right photo shows a view of a LED being flashed at 100 kHz hence the distance between each LED is10 us.
So what do we see and how to interpret it?
There is a ladder of sparks with each spark being fairly discrete and without any obvious parallel sparks. All sparks seem complete and there are no discontinuities. Almost all sparks are bright at the ends but less bright in the centre third. This also corresponds with what you see when it is running. I am not sure what it means, however, if each spark is a single cycle then the negative one third may brighter each half cycle, leaving the centre dim.
The left photo shows a Royer ZVS circuit firing a rewound inverter MOT transformer to give perhaps 2 kV at 15 kHz. It wasn’t bright enough to show so I later added a diode, resistor and .06uF mica cap to give a brighter spark which was rather irregular due to the low firing voltage. The right photo is 100 vertical pixels = 10us showing 3 sparks of less then 1us duration, which appear to deviate from a vertical line. Going back to the setup photo, you can see that one of the electrodes is vibrating changing the spark position.
The 3 sparks suggest that there is a resonance at about 10 us period – 100 kHz due to the .06 uF cap and the effective series inductance of the cap itself plus the two 8 inch crocodile clip leads. As you can judge by the pixilation (automatically smoothed by the software) plus the noise, the camera is being pushed to the limit. Very small sparks still seem to be point events. Hopefully a 2 foot TC spark will have more structure.
To see speed of light events I would need to have 500 foot events which would be 1us. In fact it would not be too hard to bounce a laser over a path this length to show the speed of light. Hmmm… I have a corner cube prism and two eight inch parallel first surface mirrors. Add a beam splitter or two, line it all up and go. Ohh, and it needs to have picosecond switching. Did I mention that? Maybe my scanner Hex mirror assembly could rotate the laser beam to give fast enough effective switching. Head is starting to hurt here.
High Voltage Halo Effects
High voltage halo effects are done with a long exposure of a rotating spark with a colour filter.
Here are some of the effects that are produced by long exposures in a similar manner to the Eye of Sauron effect but not using a Tesla coil.
The photo above shows the “Sombrero” . Well it was meant to be a crown really. Note the reflection in the stainless steel ball which shows the sombrero as well as the flash and my wife and son operating the equipment.
Note that as in all my photos there is no “photoshopping”. The pictures are all single shots and effects are produced with long exposures. Here’s how this one is done:
The HV supply I wired to a rotating setup that holds the electrodes.
The electrodes which will rotate around the ball (or my head) and on a long exposure with appropriate orange filter which is removed before a flash to give “normal” lighting for my head.
The photo above shows the effect off a higher current changing the bright sparks into a flaming arc. I should add that the whole sensation is a bit strange. The ionic wind and charge accumulation on my hair means I can feel exactly where the electrode is.
The photo above shows an ‘electric kris’. The kris is an Indonesian curved dagger.
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Kris Of Lightning My Google plus post
Indonesian curved dagger
Photo Date: March 29, 2008
Coloured Sparks
This is a single 10 second photographic exposure of Tesla coil sparks where a rotating colour wheel gives different colours to the sparks. There is no photoshopping ever on this site.
My early attempts at colour effects were taken on my ignition coil setup.
These are simply done by taking a long exposure (6 seconds) and manually placing different coloured filters in front of the lens at different times during that exposure. The next step was to make a motorized system for some special effects coming up to simulate the “Red Alert” game Tesla coil.
I have now made a color wheel to allow rapid rotation of the colours or manual rotation. This simply gets placed in front of the camera.
The results with a Tesla coil are to give sparks that are different colours. I have green as well. Each quadrant is held by one screw and slides out.
Left photo with a 1 second exposure, shows the some shots at dusk. Right photo with a 2 second exposure shows the various colors seen when the sparks are firing.
Now the good ones.
Red sparks can be done as well and are dramatic. This effect is created by taking a normal white flash shot first to give the correct white background, then switching to the red filter and running the sparks for 10 seconds or so while the camera is recording. It is all one single exposure and is what the camera sees, not a photoshopped effect added later.
This shows coloured sparks. This effect is also created by taking a white flash shot first to give the correct white background then running the yellow filter or spinning the colour wheel to get different effects.
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Photo Date: Sept 2, 2007
Tesla Envy
Video: “Tesla Envy – getting VERY close to huge sparks”. The title is a play on words and … well you will just have to see for yourself.
The 1:44 min video includes sparks from my largest Tesla coil striking a Faraday cage only inches from my face (and me looking like a dork).
Video has 335,000 views now. On reviewing this video 5 years later I should not have pulled out the sparks quite so far onto the rod in my hand. You need to expect the spark can jump around an object up to 1/3 longer (or more rarely), which puts my arm just with in range.
For a big power arc it is less of a problem but if it “breaks” then there may be a problem.
I am a little older since then, perhaps not wiser, but still here…
Related pages
Faraday cage
Big Tesla coil sparks
External links
This list includes my videos and where they appeared such as Break, YouTube, Myspace etc
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Magnetic sensor array
Photo Date: June 6, 2007