MC34063LBBEVB ON Semiconductor, MC34063LBBEVB Datasheet - Page 11

EVAL BOARD FOR MC34063LBB

MC34063LBBEVB

Manufacturer Part Number
MC34063LBBEVB
Description
EVAL BOARD FOR MC34063LBB
Manufacturer
ON Semiconductor
Datasheets

Specifications of MC34063LBBEVB

Design Resources
MC34063 Demo Brd Schematic MC34063LBBEVB Gerber Files MC34063 BOM
Main Purpose
DC/DC, Step Up or Down
Outputs And Type
1, Non-Isolated
Voltage - Output
3.3V
Current - Output
100mA
Voltage - Input
3 ~ 6 V
Regulator Topology
Buck-Boost
Frequency - Switching
100kHz
Board Type
Fully Populated
Utilized Ic / Part
MC34063
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For Use With/related Products
MC34063LBB
Other names
MC34063LBBEVBOS
V
V
The following power supply characteristics must be chosen:
V
V
I
f
V
NOTE: For further information refer to Application Note AN920A/D and AN954/D.
out
min
Calculation
out
ripple(pp)
sat
F
in
(t
I
= Forward voltage drop of the output rectifier.
pk(switch)
− Nominal input voltage.
− Desired output current.
on
− Minimum desired output switching frequency at the selected values of V
t
L
= Saturation voltage of the output switch.
− Desired output voltage,
on
R
C
C
(min)
t
t
off
on
+ t
/t
sc
O
T
off
off
− 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.
(V
V out ) V
2I
in(min)
out(max)
I
V
pk(switch)
(t
in(min)
4.0 x 10
9
0.3/I
on
t on ) t
|V
Step−Up
t on
t
V
off
+ t
ripple(pp)
* V sat )
out
I out t on
pk(switch)
F
off
1
f
) 1
| + 1.25 1 ) R2
* V
* V sat
t on
t
) − t
−5
off
off
t
on
off
) 1
in(min)
t
on(max)
Figure 17. Design Formula Table
R1
http://onsemi.com
(V
in(min)
V
I
in(min)
I
pk(switch)
11
pk(switch)
* V sat * V out )
(t
4.0 x 10
0.3/I
Step−Down
on
8V
2I
V out ) V
t on ) t
t on
t
off
+ t
out(max)
* V sat * V out
ripple(pp)
pk(switch)
1
off
f
(t on ) t
) 1
in
−5
) − t
and I
off
t
on
off
F
O
.
off
)
t
on(max)
(V
2I
in(min)
I
out(max)
pk(switch)
Voltage−Inverting
(t
|V out | ) V
4.0 x 10
9
0.3/I
V
on
t on ) t
in
V
t on
t
* V sat )
off
+ t
ripple(pp)
I out t on
pk(switch)
* V sat
1
off
f
) 1
t on
t
−5
) − t
off
off
t
on
off
) 1
F
t
on(max)

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