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STM32L071KB Datasheet(PDF) 55 Page - STMicroelectronics

Part # STM32L071KB
Description  Access line ultra-low-power 32-bit MCU ARM-based Cortex-M0, up to 192KB Flash, 20KB SRAM, 6KB EEPROM, ADC
PDF  136 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STM32L071KB Datasheet(HTML) 55 Page - STMicroelectronics

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STM32L071xx
Electrical characteristics
107
6.2
Absolute maximum ratings
Stresses above the absolute maximum ratings listed in Table 22: Voltage characteristics,
Table 23: Current characteristics, and Table 24: Thermal characteristics may cause
permanent damage to the device. These are stress ratings only and functional operation of
the device at these conditions is not implied. Exposure to maximum rating conditions for
extended periods may affect device reliability.
Table 22. Voltage characteristics
Symbol
Definition
Min
Max
Unit
VDD–VSS
External main supply voltage
(including VDDA, VDDIO2 VDD)(1)
1. All main power (VDD,, VDDA) and ground (VSS, VSSA) pins must always be connected to the external power
supply, in the permitted range.
–0.3
4.0
V
VIN(2)
2.
VIN maximum must always be respected. Refer to Table 23 for maximum allowed injected current values.
Input voltage on FT and FTf pins
VSS  0.3
VDD+4.0
Input voltage on TC pins
VSS  0.3
4.0
Input voltage on BOOT0
VSS
VDD 4.0
Input voltage on any other pin
VSS 0.3
4.0
|
VDD|
Variations between different VDDx power pins
-
50
mV
|VDDA-VDDx|
Variations between any VDDx and VDDA power
pins(3)
3. It is recommended to power VDD and VDDA from the same source. A maximum difference of 300 mV
between VDD and VDDA can be tolerated during power-up and device operation. VDDIO2 is independent
from VDD and VDDA: its value does not need to respect this rule.
-
300
|
VSS|
Variations between all different ground pins
including VREF- pin
-50
VREF+ –VDDA Allowed voltage difference for VREF+ > VDDA
-0.4
V
VESD(HBM)
Electrostatic discharge voltage
(human body model)
see Section 6.3.11



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