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STOD03B Datenblatt(PDF) 12 Page - STMicroelectronics

Teilenummer STOD03B
Bauteilbeschribung  Step-up with LDO and inverter converters
PDF  22 Pages
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Hersteller  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STOD03B Datenblatt(HTML) 12 Page - STMicroelectronics

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Application information
STOD03B
12/22
Doc ID 022613 Rev 1
7
Application information
7.1
External passive components
7.1.1
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 according to 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, fixed at 4.9 V;
VO2: inverting output voltage including sign (minimum value is the absolute maximum
value);
IO: output current for both DC-DC converters;
VIN: input voltage of STOD03B;
fs: switching frequency. Use the minimum value of 1.35 MHz 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 -5.4 V. Accordingly, the inductor peak
current, at the maximum load condition, increases. A proper inductor, with a saturation
current as a minimum of 1 A, is preferred.
STOD03B is capable of supplying a load current from 150 mA to 200 mA. Inductors with a
saturation current as a minimum of 1 A must be selected.
1
L
fs
V
2
)
VIN
V
(
VIN
VIN
1
I
V
I
MID
MIN
MID
MIN
MIN
OUT
MID
BOOST
PEAK
×
×
×
×
+
×
η
×
=
2
L
fs
)
VIN
2
VO
(
2
2
VO
VIN
VIN
2
xI
)
2
VO
VIN
(
I
MIN
MIN
MIN
MIN
MIN
OUT
MIN
MIN
INVERTING
PEAK
×
×
×
×
+
×
η
=



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