10cm Electronic Music Tesla Coil Artificial Lightning Hand Touch Magne EngineDIY


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Step 3: Placing the Resistors. In the kit are 4 resistors: 2 x 2K with the colour bands RED-BLACK-BLACK-BROWN. 2 x 10K with the colour bands BROWN-BLACK-BLACK-RED. Place them at the right place according to the silkscreen (white text on PCB) or have a look at the picture. Ask Question.


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Power Bridge. This Tesla Coil uses a push pull power bridge in order to drive the Tesla Coil. When the circuit is first powered on, one of the gate drivers sends a short pulse (this happens when the enable pin of the gate driver goes high) and current flows through half of the primary winding, since the high voltage PCB Transformer has a center.


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High Voltage Pulse Capacitor. £ 36.99. Add to basket. How to make an SSTC. How to put the parts together to make a SSTC. If you choose to buy all the parts ready made then it is possible to get this Tesla Coil up and running in around five minutes! Only a few parts are required for this SSTC.


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Primary Coil. For the primary coil, this is made by simply winding a few turns of thick wire (>=14AWG) at the base of the secondary. For a normal SSTC, we generally want good coupling and many turns to reduce magnetizing current. Around 6 to 9 turns should do the trick, but turns up to 20 are also common.


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Traditional tesla coils use a spark gap so the pulses are very quickly turned on and off. Your transister is doing that part for you. The audio part of the circuit is frequency modulating the pulse stream so you can hear it. Then the mercury atoms in the tube vibrate with the pulses, giving off UV energy.


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Above, you can see the schematic for this Tesla coil. At its core, this design is very similar to Steve Ward's class-E SSTC, but there are a few key changes. For one, the slower UCC37322 has been swapped out for the newer and faster UCC27524, and the old interrupter has been changed out for my own custom circuit, which was derived from the classic musical flyback driver.


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oneTesla DIY Tesla coil kits shoot lightning and play music using electricity! Our DRSSTC kits come with plans/schematics. Questions? Email [email protected]. oneTesla DIY Tesla Coil Kits. Music Files .OMD .MIDI: 99 Red Balloons : Africa . Africa . Badinerie: Beat It . Beetlejuice .


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The Tesla coil was invented by Nikola Tesla (1856-1943) and is a resonant transformer circuit that generates high-voltage high-frequency AC electricity by resonating with stray capacitance. 1, 2 Nikola Tesla used the Tesla coil to build the foundations 1 of wireless communication and wireless power supply technology. 3, 4 Since then, Tesla coils have been used in various applications.


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For this circuit (and most IGBT-based Tesla coils), the resonant frequency shouldn't exceed 400kHz. Above 400kHz, the IGBTs may still function, but they will do so with increasing difficulty and may wear down quicker. Since this coil is self-tuning, the resonant frequency is determined by the secondary coil and its topload.


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A tesla coil is a resonant air core transformer system invented by inventor Nikola Tesla in the 1890's. Originally, tesla coils were designed to broadcast electricity and signals wirelessly, however, several engineering and monetary setbacks prevented the tesla coil from becoming the popular mode of energy transfer, and a power distribution method architecture relying on use of power grid.


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The LC tank is made with 2 colis (L1, L2)) and 2 capacitors (C23, C22). That's how we create the pules at the primary coil and get high voltage on the secondary. The switch SW1 can change from the 555 frequency or the music frequency. The music is received with the Bluetooth module and passed to pulses using the LM393 OPAMP.


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Tesla Coil circuit schematic. All ground connections are made at the same ground rail. R2 is a wire wound resistor with L4 wound around it, one for each tube. C4 is a decoupling capacitor mounted directly under the socket, one for each tube. R1 needs a high wattage rating, bigger is better, or supply sufficient cooling.


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We offer DIY plans for three different sized Tesla coils which are described below: Reference Design 1.0 - This Tesla coil is our most popular design. It stands about 3 feet tall and operates from a standard 115VAC outlet creating lightning arcs up to 6 feet in length. This design is very popular for science fairs, school projects and.


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This new interrupter circuit has probably the widest range of any Tesla coil interrupter: its duty can be varied from 0 - 100%, and the pulse frequency can range from as low as 35Hz up to 35kHz. That's right: this Tesla coil can be interrupted ULTRASONICALLY, so the sparks have the silence of a CW flame, but with less power consumption!


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We can calculate the output voltage of our circuit using the following formula: Ns/Np = Vs/Vp,where Ns is the number of turns on the secondary coil, Np is the number of turns on the primary coil, Vs is the voltage of the secondary coil, and Vp is the voltage in the primary coil. By inputting our known values, we get: 1,650/6 = Vs/18V =>18V.


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Above, you can see the schematic for this Tesla coil. At its core, this design is very similar to Steve Ward's class-E SSTC, but there are a few key changes. For one, the slower UCC37322 has been swapped out for the newer and faster UCC27524, and the old interrupter has been changed out for my own custom circuit, which was derived from the classic musical flyback driver.