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Friday, 22 September 2017
AWG Selector
Enter the cross section area to get appropriate AWG for the windings
PRIMARY WINDING :
square-mm
SECONDARY WINDING :
square-mm
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********************************************************************
INSULATED COPPER WIRE SELECTION & PROPERTIES
PRIMARY WINDING
AWG =
Diameter(in) =
Diameter(mm) =
Area(kcmil) =
Area(sqr-mm) =
R/length(mohm/m) =
R/length(mohm/ft) =
SECONDARY WINDING
AWG =
Diameter(in) =
Diameter(mm) =
Area(kcmil) =
Area(sqr-mm) =
R/length(mohm/m) =
R/length(mohm/ft) =
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DESIGN PARAMETERS
Center leg
l
:
mm
in
Stack thickness
k
:
mm
in
Window width
j
:
mm
in
Window hight
i
:
mm
in
Flux density
B
:
gauss
tesla
max/sqr-in
OTHER DESIGN PARAMETERS
Current density
S
:
sqr-mm/A
cmil/A
Frequency
f
:
Primary voltage
Vp
:
Secondary voltage
Vs
:
Voltage wave-form :
sine-wave
square-wave
modified sine-wave
Fill factor
K
:
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********************************************************************
DESIGN RESULT
Number of turns (primary)=
Cross section of primary wire (sqr-mm)=
Number of turns (secondary)=
Cross section of secondary wire (sqr-mm)=
Power (VA) =
Hint on wire selection:
In practice, some wire gauges are so thick and are almost impossible or very difficult to wind especially when the winding is being done manually. The best practice is to use multiple smaller wires that can be wound easily and with total cross section equals the calculated value. For instance, if calculated area of the winding wire gives 16.40625square-mm, the corresponding AWG is ‘5’ with diameter 4.621mm. Feel the wire with your hand, you will agree with me that it won’t be easy to wind. Instead, 5 strands of AWG ‘12’ with diameter 2.053mm and cross section 3.31square-mm that give total area of 16.55square-mm will make a good sense.
AWG selector
will help you select the right wire for yor calculated value above.
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