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STM32L071KB Datasheet(PDF) 77 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  148 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STM32L071KB Datasheet(HTML) 77 Page - STMicroelectronics

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DS10690 Rev 7
77/148
STM32L071xx
Electrical characteristics
112
6.3.5
Wakeup time from low-power mode
The wakeup times given in the following table are measured with the MSI or HSI16 RC
oscillator. The clock source used to wake up the device depends on the current operating
mode:
Sleep mode: the clock source is the clock that was set before entering Sleep mode
Stop mode: the clock source is either the MSI oscillator in the range configured before
entering Stop mode, the HSI16 or HSI16/4.
Standby mode: the clock source is the MSI oscillator running at 2.1 MHz
All timings are derived from tests performed under ambient temperature and VDD supply
voltage conditions summarized in Table 25.
Table 40. Peripheral current consumption in Stop and Standby mode(1)
Symbol
Peripheral
Typical consumption, TA = 25 °C
Unit
VDD=1.8 V
VDD=3.0 V
IDD(PVD / BOR)
-0.7
1.2
µA
IREFINT
--
1.7
-
LSE Low drive(2)
0.11
0,13
-
LSI
0.27
0.31
-IWDG
0.2
0.3
-
LPTIM1, Input 100 Hz
0.01
0,01
-
LPTIM1, Input 1 MHz
11
12
-
LPUART1
-
0,5
-
RTC
0.16
0,3
1. LPTIM, LPUART peripherals can operate in Stop mode but not in Standby mode.
2.
LSE Low drive consumption is the difference between an external clock on OSC32_IN and a quartz between OSC32_IN
and OSC32_OUT.-
Table 41. Low-power mode wakeup timings
Symbol
Parameter
Conditions
Typ
Max
Unit
tWUSLEEP Wakeup from Sleep mode
fHCLK = 32 MHz
7
8
Number
of clock
cycles
tWUSLEEP_
LP
Wakeup from Low-power sleep mode,
fHCLK = 262 kHz
fHCLK = 262 kHz
Flash memory enabled
78
fHCLK = 262 kHz
Flash memory switched OFF
910



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