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ST7FSCR14M1 View Datasheet(PDF) - STMicroelectronics

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ST7FSCR14M1 Datasheet PDF : 102 Pages
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ST7SCR
6 SUPPLY, RESET AND CLOCK MANAGEMENT
6.1 CLOCK SYSTEM
6.1.1 General Description
The MCU accepts either a 4MHz crystal or an ex-
ternal clock signal to drive the internal oscillator.
The internal clock (fCPU) is derived from the inter-
nal oscillator frequency (fOSC), which is 4Mhz.
After reset, the internal clock (fCPU) is provided by
the internal oscillator (4Mhz frequency).
To activate the 48-MHz clock for the USB inter-
face, the user must turn on the PLL by setting the
PLL_ON bit in the MISCR4 register. When the PLL
is locked, the LOCK bit is set by hardware.
The user can then select an internal frequency
(fCPU) of either 4 MHz or 8MHz by programming
the CLK_SEL bit in the MISCR4 register (refer to
MISCELLANEOUS REGISTERS section on page
37).
The PLL provides a signal with a duty cycle of 50
%.
The internal clock signal (fCPU) is also routed to
the on-chip peripherals. The CPU clock signal
consists of a square wave with a duty cycle of
50%.
Figure 10. Clock, Reset and Supply Block Diagram
MISCR4
-
PLL_ CLK_
ON SEL
-
-
-
- LOCK
-
4 MHz
(fOSC)
PLL
X 12
48 MHz
4 Mhz
DIV
8 Mhz
48 MHz
USB
INTERNAL
CLOCK (fCPU)
The internal oscillator is designed to operate with
an AT-cut parallel resonant quartz in the frequen-
cy range specified for fosc. The circuit shown in
Figure 12 is recommended when using a crystal,
and Table 4 lists the recommended capacitance.
The crystal and associated components should be
mounted as close as possible to the input pins in
order to minimize output distortion and start-up
stabilisation time. The LOCK bit in the MISCR4
register can also be used to generate the fCPU di-
rectly from fOSC if the PLL and the USB interface
are not active.
Table 4. Recommended Values for 4 MHz
Crystal Resonator
RSMAX
COSCIN
COSCOUT
20
56pF
56pF
25
47pF
47pF
70
22pF
22pF
Note: RSMAX is the equivalent serial resistor of the
crystal (see crystal specification).
20/102
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