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RM0312 数据表(PDF) 87 Page - STMicroelectronics

部件名 RM0312
功能描述  STM8TL5xxx microcontroller family
PDF  275 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

RM0312 数据表(HTML) 87 Page - STMicroelectronics

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RM0312
Auto-wakeup (AWU)
92
Example 1
fLS = 38 kHz
Target time interval = 16 ms
The appropriate interval range is: 13.47 ms - 26.95 ms
so the AWUTB[3:0] value is 0x5.
The APRDIV value is:
16 ms = 24 x APRDIV / fLS => APRDIV = (16*10-3 x fLS ) / 24 = 38
so the APR[5:0] value is 38 (0x26)
Example 2
fLS = 38 kHz
Target time interval = 20 ms
The appropriate interval range is: 13.47 ms - 26.95 ms
So the AWUTB[3:0] value is 0x5.
The APRDIV value is:
20 ms = 24 x APRDIV / fLS => APRDIV = (20*10-3 x fLS) / 24 = 47.5
So the AWUTB[3:0] can be either 47 or 48 which gives a time base of 19.79 ms or 20.21 ms
respectively. This is not exactly 20 ms.
12.3.3
LSI clock frequency measurement
Due to the oscillator frequency dispersion, to obtain a precise AWU time interval or beeper
output, the exact LSI frequency has to be measured.
Use the following procedure:
1.
Set the MSR bit in the Control/status register (AWU_CSR) to connect the LSI clock
internally to a timer input capture.
2.
Measure the frequency of the LSI clock using the Timer input capture interrupt.
3.
Write the appropriate value in the APR [5:0] bits in the Asynchronous prescaler register
(AWU_APR) to adjust the AWU time interval to the desired length. The AWUTB[3:0]
bits can be modified to select different time intervals.
LSI clock frequency measurement can also be used to calibrate the beeper frequency (see
Section 13.2.2).



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