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STM32WB55RCU6TR View Datasheet(PDF) - STMicroelectronics

Part Name
Description
Manufacturer
STM32WB55RCU6TR Datasheet PDF : 193 Pages
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STM32WB55xx STM32WB35xx
Functional overview
VDD
L1
C2
Figure 5. Power distribution
VDDSMPS
SMPS
VLXSMPS SMPS mode or
BYPASS mode
LPR
VDD
VDDSMPS
SMPS
VLXSMPS (not used)
LPR
VFBSMPS
RFR
MR
VFBSMPS
RFR
MR
3.7.2
SMPS configuration
LDO configuration
Table 6. Power supply typical components
Component
Description
C2
L1(2)
SMPS output capacitor(1)
SMPS inductance
For 8 MHz(3)
For 4 MHz(4)
1. e.g. GRM155R60J475KE19.
2. An extra 10 nH inductor in series with L1 is needed to improve the receiver performance, 
e.g Murata LQG15WZ10NJ02D
3. e.g. Wurth 74479774222.
4. e.g. Murata LQM21FN100M70L.
MS41409V4
Value
4.7 µF
2.2 µH
10 µH
The SMPS can also be switched on or set in bypass mode at any time by the application
software, for example when very accurate ADC measurement are needed.
Power supply schemes
The devices have different voltage supplies (see Figure 7 and Figure 8) and can operate
within the following voltage ranges:
ï‚· VDD = 1.71 to 3.6 V: external power supply for I/Os (VDDIO), the internal regulator and
system functions such as RF, SMPS, reset, power management and internal clocks. It
is provided externally through VDD pins. VDDRF and VDDSMPS must be always
connected to VDD pins.
ï‚· VDDA = 1.62 (ADC/COMPs) to 3.6 V: external analog power supply for ADC,
comparators and voltage reference buffer. The VDDA voltage level can be independent
from the VDD voltage. When not used VDDA must be connected to VDD.
ï‚· VDDUSB = 3.0 to 3.6 V: external independent power supply for USB transceivers. When
not used VDDUSB must be connected to VDD.
ï‚· VLCD = 2.5 to 3.6 V: the LCD controller can be powered either externally through the
VLCD pin, or internally from an internal voltage generated by the embedded step-up
converter. This converter can generate a VLCD voltage up to 3.6 V if VDD is higher than
2.0 V. Note that the LCD is available only on STM32WB55xx devices.
DS11929 Rev 10
27/193
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