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ST7PLITE39F2U6TR View Datasheet(PDF) - STMicroelectronics

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ST7PLITE39F2U6TR Datasheet PDF : 173 Pages
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ST7LITE3xF2
7.5 RESET SEQUENCE MANAGER (RSM)
7.5.1 Introduction
The reset sequence manager includes three RE-
SET sources as shown in Figure 15:
External RESET source pulse
Internal LVD RESET (Low Voltage Detection)
Internal WATCHDOG RESET
Note: A reset can also be triggered following the
detection of an illegal opcode or prebyte code. Re-
fer to section 12.2.1 on page 128 for further de-
tails.
These sources act on the RESET pin and it is al-
ways kept low during the delay phase.
The RESET service routine vector is fixed at ad-
dresses FFFEh-FFFFh in the ST7 memory map.
The basic RESET sequence consists of 3 phases
as shown in Figure 14:
Active Phase depending on the RESET source
256 or 4096 CPU clock cycle delay (see table
below)
RESET vector fetch
Caution: When the ST7 is unprogrammed or fully
erased, the Flash is blank and the RESET vector
is not programmed. For this reason, it is recom-
mended to keep the RESET pin in low state until
programming mode is entered, in order to avoid
unwanted behavior.
The 256 or 4096 CPU clock cycle delay allows the
oscillator to stabilise and ensures that recovery
has taken place from the Reset state. The shorter
or longer clock cycle delay is automatically select-
ed depending on the clock source chosen by op-
tion byte:
The RESET vector fetch phase duration is 2 clock
cycles.
Clock Source
Internal RC Oscillator
External clock (connected to CLKIN pin)
External Crystal/Ceramic Oscillator
(connected to OSC1/OSC2 pins)
CPU clock
cycle delay
256
256
4096
If the PLL is enabled by option byte, it outputs the
clock after an additional delay of tSTARTUP (see
Figure 12).
Figure 14. RESET Sequence Phases
Active Phase
RESET
INTERNAL RESET
256 or 4096 CLOCK CYCLES
FETCH
VECTOR
7.5.2 Asynchronous External RESET pin
The RESET pin is both an input and an open-drain
output with integrated RON weak pull-up resistor.
This pull-up has no fixed value but varies in ac-
cordance with the input voltage. It can be pulled
low by external circuitry to reset the device. See
Electrical Characteristic section for more details.
A RESET signal originating from an external
source must have a duration of at least th(RSTL)in in
order to be recognized (see Figure 16). This de-
tection is asynchronous and therefore the MCU
can enter reset state even in HALT mode.
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