STEVAL-ISQ002V1 STMicroelectronics, STEVAL-ISQ002V1 Datasheet - Page 23

BOARD EVAL BASED ON ST72264G1

STEVAL-ISQ002V1

Manufacturer Part Number
STEVAL-ISQ002V1
Description
BOARD EVAL BASED ON ST72264G1
Manufacturer
STMicroelectronics
Datasheets

Specifications of STEVAL-ISQ002V1

Main Purpose
Interface, PMBus
Embedded
Yes, MCU, 8-Bit
Utilized Ic / Part
ST72F264
Primary Attributes
The PMBus™ Interface Using the ST7 I2C Peripheral
Secondary Attributes
Firmware in C Language
Product
Power Management Modules
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-6423

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RESET SEQUENCE MANAGER (Cont’d)
The RESET pin is an asynchronous signal which
plays a major role in EMS performance. In a noisy
environment, it is recommended to follow the
guidelines mentioned in the electrical characteris-
tics section.
6.3.3 External Power-On RESET
If the LVD is disabled by option byte, to start up the
microcontroller correctly, the user must ensure by
means of an external reset circuit that the reset
signal is held low until V
level specified for the selected f
A proper reset signal for a slow rising V
can generally be provided by an external RC net-
work connected to the RESET pin.
Figure 13. RESET Sequences
WATCHDOG
RESET
EXTERNAL
RESET
SOURCE
RESET PIN
V
V
IT+(LVD)
IT-(LVD)
V
RUN
DD
ACTIVE PHASE
DD
RESET
LVD
is over the minimum
OSC
frequency.
DD
RUN
t
h(RSTL)in
supply
WATCHDOG UNDERFLOW
PHASE
ACTIVE
EXTERNAL
RESET
6.3.4 Internal Low Voltage Detector (LVD)
RESET
Two different RESET sequences caused by the in-
ternal LVD circuitry can be distinguished:
The device RESET pin acts as an output that is
pulled low when V
V
The LVD filters spikes on V
avoid parasitic resets.
6.3.5 Internal Watchdog RESET
The RESET sequence generated by a internal
Watchdog counter overflow is shown in
Starting from the Watchdog counter underflow, the
device RESET pin acts as an output that is pulled
low during at least t
DD
Power-On RESET
Voltage Drop RESET
<V
ST72260Gx, ST72262Gx, ST72264Gx
IT-
INTERNAL RESET (4096 T
VECTOR FETCH
(falling edge) as shown in
RUN
ACTIVE
PHASE
WATCHDOG
RESET
t
w(RSTL)out
w(RSTL)out
DD
<V
DD
CPU
IT+
RUN
.
)
larger than t
(rising edge) or
Figure
Figure
g(VDD)
13.
23/172
13.
to

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