How to Make Stun Gun at Home
Injuries rank
seventh as a cause of death for most people and the most common
provider of such injuries are attackers or assailants. No wonder why
safety is the number one concern of most people whenever they are in
or outside their house.
Health care professionals believe that when every individual thinks
and values his or her family, their safety is always their top
priority. They would rather live longer for their family rather than
extend their life living alone.
For this reason, many manufacturers have ventured into the creation
of stun guns. These non-fatal electronic tools utilize electric
currents in extreme voltage charges. It aims to stop or immobilize
an assailant. It can make the person unconscious but not dead. So
even if this remarkable machine is fallible, it can still render
support where protection is due.
Basic Concept
The human body uses electrical impulses to send messages to the
brain. It is the only way the brain can act appropriately. Hence,
without any message in accordance to the situation, the brain cannot
readily act the way it should be. This is what the communication
system within the human body is all about.
This principle was applied in the stun gun concept. Hence, the
primary aim of stun guns is to disrupt or interrupt this
communication system. Once disrupted, the brain can no longer act in
accordance to the situation.
By concept, stun guns produce “high-voltage, low-amperage”
electrical currents, usually ranging from 85,000 to 625,000 volts.
This type of organization enables the user to deliver a highly
pressurized charge without so much strength.
Since it entails higher voltage charges, the body can instantly
react on its application. However, the intensity will still vary
depending on the amount of time the body is exposed to such
electrical charges. Hence, the damage may greatly depend on the
length of time the body was exposed to those electrical charges.
The main target of stun gun is the nervous system. It temporarily
paralyzes the nerves, thereby, creating confusion and perplexity.
The brain will have a hard time organizing the muscles to move and
act appropriately.
Today, with so much crime happening in the streets, stun guns had
become favorite items for protection. Various types of stun guns are
available in the market. However, prices may range from fairly
affordable items to steep ones.
Therefore, creating your own stun gun at home is inevitable. So, if
you want to know more on the stun gun concept and build your own
stun gun at home, read these tips:
1. Choose a particular schematic for your stun gun
Since stun guns generate electrical charges, the very important
aspect to look into when you are trying to build a stun gun is to
have a workable schematic. Here, you can illustrate the right
diagrammatic sketch that you will need for your stun gun project.
You can buy stun gun kits with electronic schematics. So, if you
know how to read electronic schematics, it will be easier for you to
make your own stun guns at home.
2. Create a circuit
The basic idea of stun gun is to utilize a miniature voltage supply
and adapt it into a much greater voltage. This is done by pounding a
high advantage transformer and stocking up the high voltage in a
capacitor.
To power the electric circuit, you would be needing batteries,
usually 9-volts. These batteries are the primary source of
electricity. You would also need multiple transformers, oscillator,
capacitor, and electrodes.
The basic concept of a stun gun’s electric circuit is: batteries
supplying different electrical components; multiple transformers
that increases the voltage charge coming from the batteries; passes
through the oscillator that alters the current to create a
particular pulse outline of electricity; current passes through a
capacitor that develops the charges and transmit it to the
electrodes. The process ends at the electrodes, where the electrical
impulses are released.
It is relatively simple. Once you have all the materials that you
need, creating a stun gun at home is not a problem after all. |
|
|