STM8L152C8 STMicroelectronics, STM8L152C8 Datasheet - Page 18

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STM8L152C8

Manufacturer Part Number
STM8L152C8
Description
STM8L-Ultra Low Power-8 bits Microcontrollers
Manufacturer
STMicroelectronics
Datasheet

Specifications of STM8L152C8

Operating Power Supply
1.65 to 3.6 V (without BOR), 1.8 to 3.6 V (with BOR)
Temp. Range
−40 to 85, 105 or 125 °C
5 Low Power Modes
Wait, Low power run (5.9 μA), Low power wait (3 μA), Active-halt with full RTC (1.4 μA), Halt (400 nA)
Dynamic Power Consumption
200 μA/MHz+330 μA
Ultra Low Leakage Per I/0
50 nA
Max Freq
16 MHz, 16 CISC MIPS peak
Lcd
8x40 or 4x44 w/ step-up converter

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Functional overview
3.5
18/126
Figure 2.
Low power real-time clock
The real-time clock (RTC) is an independent binary coded decimal (BCD) timer/counter.
Six byte locations contain the second, minute, hour (12/24 hour), week day, date, month,
year, in BCD (binary coded decimal) format. Correction for 28, 29 (leap year), 30, and 31
day months are made automatically. The subsecond field can also be read in binary format.
The calendar can be corrected from 1 to 32767 RTC clock pulses. This allows to make a
synchronization to a master clock.
The RTC offers a digital calibration which allows an accuracy of +/-0.5ppm.
It provides a programmable alarm and programmable periodic interrupts with wakeup from
Halt capability.
A clock security system detects a failure on LSE, and can provide an interrupt with wakeup
capability. The RTC clock can automatically switch to LSI in case of LSE failure.
The RTC also provides 3 anti-tamper detection pins. This detection embeds a
programmable filter and can wakeup the MCU.
Periodic wakeup time using the 32.768 kHz LSE with the lowest resolution (of 61 µs) is
from min. 122 µs to max. 3.9 s. With a different resolution, the wakeup time can reach
36 hours
Periodic alarms based on the calendar can also be generated from LSE period to every
year
Clock tree diagram
Doc ID 17943 Rev 4
STM8L15xx8, STM8L15xR6

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