Explanation of Capacitor
Capacitor is an
electronic component that implements to store electrical charge or electrical
energy in electronic circuit. Capacitor was categorized in pasif component
because doesn’t need current for doing the function.The value of capacitor is
called the capacitance, the capacitance is expressed in unit of farad (F). The
value of capacitance in generally is very small, so it is often expressed in
the form of microfarad (10-6F), nanofarad (10-9F), and
picofarad (10-12F ).
Capacitor consists of
two conductors (metal plates) that are parallel to each other, and between the
two metals is present insulating material (dielectric material). Dielectric materials
can affect the value of capacitor, and the dielectric materials in capacitor
can made from ceramics, paper, air, and metal films.
In general capacitor
has many function in electronic circuit, such as capacitor has functions as a
filter in power supply circuit, passing alternating current (AC), blocking
direct current (DC), and can be used as a frequency generator in the oscillator
circuit.
v Types of capacitor
In general capacitor can be
classified into many types, then if we classify of capacitor based on the value
of capacitance, the capacitor can be divided into 2 types :
1. Fixed
Capacitor
Fixed capacitor has
constant value of capacitance. Fixed capacitor has function to store electrical
charge, Fix capacitor also has functions as a filter in power supply circuit,
passing alternating current (AC), blocking direct current (DC), and can be used
as a frequency generator in the oscillator circuit.
2. Variable
Capacitor
Variable capacitor has
value of capacitance can
be change. Variable capacitor can be used as tuning in the radio. There are two
kinds of variable capacitor, namely Varco (variable capacitor) and Trimmer. Variable capacitor made of metal
with a larger size. In general variable
capacitor used to select the radio frequency waves.
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Then if we classify
types of capacitors based on the polarity poles, the capacitor can be divided
into 2 types :
1. Polar
Capacitor
Polar capacitor is capacitor which
have positive and negative polarity poles. Polar capacitor usually made from
dielectric materials such as electrolyte capacitor. This capacitor has the
value of capacitance is greater than the other capacitor types. Polar capacitor
can found in electrolyte capacitor (Elco) and Tantalum capacitor.
2. Non
Polar Capacitor
Non Polar capacitor is capacitor
doesn’t has polarity poles, that mean the installation of capacitors in
electronic circuits can be used in reverse. This capacitor has a capacitance
value is small. Non polar capacitor can found in Ceramic capacitor, Polyester
capacitor, Paper capacitor, and Mica capacitor.
Then if we classify
types of capacitors based on the material used, the capacitor can be divided
into 5types :
1. Ceramic
Capacitor
Ceramic capacitor is
made from ceramic materials. This capacitor has a thin round shaped or rectangular.
Ceramic capacitor doesn’t haspolarity poles, so it can be installed in reverse
polarity. Ceramic capacitor values ranging from 1pF to 0.01μF.
2. Polyester Capacitor
Polyester capacitor is
made from polyester. These capacitors have a rectangular shape. In electronic
circuit, polyester capacitors can be installed in reverse polarity because doesn’t
has polarity poles.
3. Paper Capacitor
Paper capacitor is capacitor
dielectric materials made from paper. In general paper capacitor values ranging
between 300pF to 4μF. Paper capacitors doesn’t has polarity poles,so it can be
reverse installed in electronics circuit.
4. Mica Capacitor
Mica capacitor is
capacitor dielectric materials made from mica. Mica capacitor values generally
range between 50pF to 0.02μF. Mica capacitors doesn’t has polarity poles,so it
can be reverse installed in electronics circuit.
5. Electrolyte Capacitor
Electrolyte capacitor
is a capacitor made of dielectric materials from electrolyte. This capacitor
has shaped cylindrical.
Electrolyte capacitors or usually called “Elco” is often used in electronics
circuit that requires high capacitance. The electrolyte capacitors which have positive
pole (+) and negative pole (-). In general, the value of electrolyte capacitors
ranges from 0.1μF to thousands microfarad (μF). Usually in the body electrolyte
capacitors will be shown the value capacitance, voltage, and negative terminal.
6. Tantalum Capacitor
Tantalum capacitor is
capacitor dielectric materials made of tantalum metal. This capacitor which
have positive pole (+) and negative pole (-) as the electrolyte capacitor.
Tantalum capacitors can operate at higher temperatures than other capacitor
types, and also has a large capacitance but packaged in a smaller size.
v Reading the value of capacitor
The
value of capacitance can known by the text code on the body of capacitor. On
electrolyte capacitor we can know the value by read the text code. Usually in
the body electrolyte capacitors will be shown the value capacitance, voltage,
and negative terminal. For example, the electrolyte capacitor has text code 470μF
and 25 volts.So the value of capacitance is 470μF with maximum voltage that can
be passed is 25volts.
Then
on tantalum capacitor, mica capacitor, paper capacitor, and ceramic capacitor
we can know the value by convert the text code on capacitor body. For example,the
capacitor specified code is 222. Then the value of the capacitor can be
determined: the first number as the first digit, the second number as the
second digit, and the third number as a multiplier in units of picofarads (pF).
So
the value of capacitance is 22x102pF = 2200 pF= 2,2nF
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v Characteristic of capacitor
Series and parallel capacitors
circuit
a. Series
capacitors circuit
When capacitorsare
installed in series circuit, it was found that the current through the capacitor
will be same, while the voltage passing through it differently. Installation of
capacitors in series performed to obtain a capacitance value that is smaller
than the original value of the capacitor.
example :
The capacitors are
installed in series circuit, and the value of capacitors are :
C1 = 4 μF, C2
= 6 μF, C3 = 8 μF.
So, the value of
capacitance : Cs =
= 0,54
b. Parallel
capacitors circuit
When capacitors are
installed in parallel circuit, it was found that the current through the
capacitor has a different value, while the voltage on each capacitor will be
the same. Installation of capacitors in parallel performed to obtain a capacitance value that is
greater than the value of the original capacitor.
example :
The capacitors are
installed in parallel circuit, and the value of capacitors are :
C1 = 4 μF, C2
= 6 μF, C3 = 8 μF.
So, the value of
capacitance :Cp =
= 18
v The application of capacitor
Capacitor
has function to store electrical charge or electrical energy, capacitor also
has functions as a filter in power supply circuit, passing alternating current
(AC), blocking direct current (DC), and can be used as a frequency generator in
the oscillator circuit.
Power supply is
an electronic circuit that serves to convert alternating current into direct
current. Power supply has four main parts in order to produce a stable DC
current. The fourth part of them is Transformers, Rectifiers, Filters and
Voltage Regulator.In the power supply circuit, the filter is used to smooth out
the current signal from the rectifier or in other words filter serves to
flatten the DC voltage ripple. Filter capacitors used in power supply circuit
normally the type of electrolyte capacitors and ceramic capacitors.
nice article,how about to make new one? hehe
BalasHapusThank you, okay then I will post another article
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BalasHapusYaap Sekalian Juga Untuk Referensi elektronika,, Untuk Bersaing Dengan Negara Lain WKWK
HapusThe least complex sort of capacitor has two equal conductive plates isolated by a decent protecting material called the dielectric. high voltage ceramic capacitor
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