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STOD13CMTPUR Datasheet(PDF) 13 Page - STMicroelectronics

Part # STOD13CMTPUR
Description  250 mA dual DC-DC converter
PDF  25 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STOD13CMTPUR Datasheet(HTML) 13 Page - STMicroelectronics

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STOD13CM
Application information
024087 Rev 1
13/25
6
Application information
6.1
External passive components
6.1.1
Inductor selection
Magnetic shielded low ESR power inductors must be chosen as the key passive
components for switching converters.
For the step-up converter, an inductance between 4.7 µH and 6.8 µH is recommended.
For the inverting stage the suggested inductance ranges from 3.3 µH to 4.7 µH.
It is very important to select the right inductor based on the maximum current the inductor
can handle to avoid saturation. The step-up and the inverting peak current can be calculated
as follows:
Equation 1
Equation 2
where
VMID: step-up output voltage
VO2: inverting output voltage including sign (minimum value is the absolute maximum value)
IO: output current for both DC-DC converters
VIN: input voltage
fs: switching frequency. Use the minimum value for the worst case
η1: efficiency of step-up converter. Typical value is 0.70
η2: efficiency of inverting converter. Typical value is 0.60
The negative output voltage can be set via SWIRE at -4.4 V. Accordingly, the inductor peak
current, at the maximum load condition, increases. A proper inductor, with a saturation
current at a minimum of 1.5 A, is preferred.
6.1.2
Input and output capacitor selection
It is recommended to use X5R or X7R low ESR ceramic capacitors as input and output
capacitors in order to filter any disturbances present in the input line and to obtain stable
operation for the two switching converters. A minimum real capacitance value of 6 µF must
be guaranteed for CMID and CO2 in all conditions. Considering tolerance, temperature
variation and DC polarization, a 10 µF, 10 V ±10% capacitor as CMID and 2 x 10 µF, 10 V
±10% as CO2, can be used to achieve the required 6 µF.
1
L
fs
V
2
)
VIN
V
(
VIN
VIN
1
I
V
I
MID
MIN
MID
MIN
MIN
OUT
MID
BOOST
PEAK
×
×
×
×
+
×
η
×
=
2
)
2
(
2
2
2
)
2
(
L
fs
VIN
VO
VO
VIN
VIN
I
VO
VIN
I
MIN
MIN
MIN
MIN
MIN
OUT
MIN
MIN
INVERTING
PEAK
x
x
-
x
x
+
x
x
-
=
-
η
2
)
2
(
2
2
2
)
2
(
L
fs
VIN
VO
VO
VIN
VIN
I
VO
VIN
I
MIN
MIN
MIN
MIN
MIN
OUT
MIN
MIN
INVERTING
PEAK
x
x
-
x
x
+
x
x
-
=
-
η



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