MC34063A, MC33063A, SC34063A, SC33063A, NCV33063A
Calculation
Step ? Up
Step ? Down
Voltage ? Inverting
in(min)
* V
* V sat
in
t on /t off
V out ) V F
V
in(min)
* V sat
V
V out ) V F
in(min) * V sat * V out
|V out| ) V F
V
ton
) 1
off
ton
) 1
off
ton
) 1
off
(t on + t off )
t off
t on
1
f
t on ) t off
t
(t on + t off ) ? t off
1
f
t on ) t off
t
(t on + t off ) ? t off
1
f
t on ) t off
t
(t on + t off ) ? t off
C T
4.0 x
10 ? 5
t on
4.0 x
10 ? 5
t on
4.0 x 10 ? 5 t on
off
off
I pk(switch)
2I
out(max)
t on
t
) 1
2I
out(max)
2I
out(max)
t on
t
) 1
R sc
0.3/I pk(switch)
0.3/I pk(switch)
0.3/I pk(switch)
pk(switch)
pk(switch)
L (min)
(V
I
in(min) * V sat)
t
on(max)
(V
in(min)
I
* V sat * V out)
pk(switch)
t
on(max)
(V
I
in(min) * V sat)
t
on(max)
pk(switch) on
ripple(pp)
off
C O
9
V
I outt on
ripple(pp)
I
8V
(t ) t
)
9
V
I outt on
ripple(pp)
V out ? Desired output voltage, |V out | + 1.25 1 ) R2
I out ? Desired output current.
V sat = Saturation voltage of the output switch.
V F = Forward voltage drop of the output rectifier.
The following power supply characteristics must be chosen:
V in ? Nominal input voltage.
R1
f min ? Minimum desired output switching frequency at the selected values of V in and I O .
V ripple(pp) ? Desired peak ? to ? peak output ripple voltage. In practice, the calculated capacitor value will need to be increased due to its
equivalent series resistance and board layout. The ripple voltage should be kept to a low value since it will directly affect the
line and load regulation.
NOTE: For further information refer to Application Note AN920A/D and AN954/D.
Figure 17. Design Formula Table
http://onsemi.com
11
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MC34063LINVEVB EVAL BOARD FOR MC34063LINV
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