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ST10F271Z1 Datasheet(PDF) 154 Page - STMicroelectronics

Part # ST10F271Z1
Description  16-bit MCU with 128 Kbyte Flash memory and 12 Kbyte RAM
PDF  185 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

ST10F271Z1 Datasheet(HTML) 154 Page - STMicroelectronics

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Electrical characteristics
ST10F271Z1
154/185
an external clock failure occurs, then the watchdog counter overflows (after 16 PLL clock
cycles).
The CPU clock signal will be switched to the PLL free-running clock signal, and the oscillator
watchdog Interrupt Request is flagged. The CPU clock will not switch back to the external
clock even if a valid external clock exits on XTAL1 pin. Only a hardware reset (or
bidirectional Software / Watchdog reset) can switch the CPU clock source back to direct
clock input.
When the OWD is disabled, the CPU clock is always the external oscillator clock (in Direct
Drive or Prescaler Operation) and the PLL is switched off to decrease consumption supply
current.
25.8.7
Phase Locked Loop (PLL)
For all other combinations of pins P0.15-13 (P0H.7-5) during reset the on-chip phase locked
loop is enabled and it provides the CPU clock (see Table 69). The PLL multiplies the input
frequency by the factor F which is selected via the combination of pins P0.15-13 (fCPU =
fXTAL x F). With every F’th transition of fXTAL the PLL circuit synchronizes the CPU clock to
the input clock. This synchronization is done smoothly, so the CPU clock frequency does not
change abruptly.
Due to this adaptation to the input clock the frequency of fCPU is constantly adjusted so it is
locked to fXTAL. The slight variation causes a jitter of fCPU which also effects the duration of
individual TCLs.
The timings listed in the AC Characteristics that refer to TCLs therefore must be calculated
using the minimum TCL that is possible under the respective circumstances.
The real minimum value for TCL depends on the jitter of the PLL. The PLL tunes fCPU to
keep it locked on fXTAL. The relative deviation of TCL is the maximum when it is referred to
one TCL period.
This is especially important for bus cycles using wait states and e.g. for the operation of
timers, serial interfaces, etc. For all slower operations and longer periods (e.g. pulse train
generation or measurement, lower Baud rates, etc.) the deviation caused by the PLL jitter is
negligible. Refer to next Section 25.8.9: PLL Jitter for more details.
25.8.8
Voltage Controlled Oscillator
The ST10F271Z1 implements a PLL which combines different levels of frequency dividers
with a Voltage Controlled Oscillator (VCO) working as frequency multiplier. In the following
table, a detailed summary of the internal settings and VCO frequency is reported.
Table 70.
Internal PLL divider mechanism
P0.15-13
(P0H.7-5)
XTAL frequency
Input
prescaler
PLL
Output
prescaler
CPU frequency
fCPU = fXTAL x F
Multiply by
Divide by
111
4 to 8 MHz
FXTAL / 4
64
4
FXTAL x 4
1
1
0
5.3 to 8 MHz 1)
FXTAL / 4
48
4
FXTAL x 3
101
4 to 8 MHz
FXTAL / 4
64
2
FXTAL x 8
1
0
0
6.4 to 8 MHz 1)
FXTAL / 4
40
2
FXTAL x 5
0
1
1
1 to 64 MHz
PLL bypassed
FXTAL x 1



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