Crazy hands - Self-defense: electric shock circuit.

 ELECTRIC SHOCK           
                               
from internet                            
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 It is worth turning on the TV (no matter where -
even in Russia, even in Ukraine), as soon as
you are being bombarded with criminal but-
news, where they will show and tell in abundance
about maniacs, murderers and just stupid scum
roses that terrorize civilians
tel. However, it is prohibited to carry weapons.
but to ALL good citizens.  So what
to do "to the poor peasant?" Do it yourself
my means of protection! ELECTRIC SHOCK!!!      
  So, attached is a diagram of this -
th device in *.pxx format with very
excellent drawing quality. If desired
you can figure out the circuit, especially since
that it is very simple.              
  Good luck to you, gentlemen readers, and condolences
shouting to bandits on the street...             
                               
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 The high-voltage generator (HV) consists of
powerful two-stroke VT1, VT2 autogenerator -
tor converter (AC) 9-400V;     
 rectifier VDЗ-VD7;storage capacitor C;          
 discharge pulse former for one-
transition transistor VT3;              
 VS switch and high-voltage pulse
main transformers T2a, T2b.            
                               
 T1 is made on the M15OOНМЗ 28x16x9 ring.
Winding W2 is wound first (400 turns
D 0.01) and carefully isolated. Then on-
wind windings W1a, W1b (10 turns D each
0.5) and the base winding Wb (5 turns D
0.01).  T2a (T2b) is made on ferrite
rod 4OOHH 8-10 cm long, D 0.8 cm.
The rod is pre-insulated, on top
wind the winding W2a (W2b) containing
800-1000 turns D 0.01 and carefully insulated
rut.                                    
                               
 Windings W1a and W1b (10 turns each D 1.0)
wound in antiphase. To prevent
high-voltage electrical breakdown tests
transformers are filled with epoxy resin
loy.                                     
                               
 Parameter optimization: Charge power
capacitor C is limited to maximum
power developed (short-term)
power supply P=U1*I1 (U1=9V,I1=1A),
maximum permissible average current VDЗ-
VD7 I2=C*U2/2Tr and VT1-VT2 I1=N1*I2. Energy
energy accumulated at the output of the AP E=C*U2*
*U2/2, determined by capacitance C (1-1OmkF)
with acceptable dimensions and operating voltage
U2=N1*U1,N1=W2/W1. Pulse period
sov discharge Tr = RpCp should be greater
charge constant Тз=RC. R limits
AP pulse current I2i=U2/R, I1i=N1l*I2i.
The voltage of the high-voltage pulse is determined
is divided by the ratio of turns T2a (T2b)
Ubu=2n2*U2, n2=W2/W1.  Smallest number
turns W1 is limited by the maximum impulse
high current VS Iu=U2*(2С/L)^(1/2), L-in-
conductivity W1a (W1b), the highest - electrical
tric strength T2a, T2b (50V on vi-
current).                                    
                               
The peak discharge power depends on the fast
kinship VS.  Power Element Modes
close to critical. Therefore, working time
you VG should be limited. Allowed
turn on the VG without load (discharge in the air
heh) no more than 1-3 seconds. Work VS and VT3
first check with the AP turned off,
giving +9V to the VD7 anode. To check AP T2a and
T2b is replaced with a 20-100 Ohm resistor sufficient
precise power. In the absence of generation
it is necessary to swap the winding terminals
ki Wb. You can limit the current consumption of the AP
but by decreasing Wb, selecting R1, R2. Pra-
a properly assembled VG must
pierce the internal interelectrode gap
spacing 1.5-2.5 cm.                      
                               
When using VG, you must comply
adequate precautions. Impulse
high voltage discharge currentthrough
the myelin sheath of the nerve fibers of the skin
no tissue can be transferred to the muscles,
causing tonic convulsions and spasms.
Thanks to synapses, nervous excitation
covers other muscle groups, developing
reflex shock and functional para-
personal  According to U.S. Consumer-Product Sa-
fety Commission sad consequences -
flutter and ventricular fibrillation with
subsequent transition to asystole, completed
solving terminal states - observing
are given when discharged with an energy of 10 J. By
unverified information 5 second possibility
action of a high-voltage discharge with energy
0.5 J causes total immobility
tion.  Full muscle recovery
control occurs no earlier than after 15
minutes.                                   

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