參數(shù)資料
型號(hào): MAX6722
廠商: Maxim Integrated Products, Inc.
英文描述: Dual/Triple Ultra-Low-Voltage SOT23 レP Supervisory Circuits
中文描述: 雙/三路、超低電壓、SOT23封裝、微處理器監(jiān)控電路
文件頁數(shù): 12/19頁
文件大?。?/td> 418K
代理商: MAX6722
M
Monitoring an Additional Power Supply
These μP supervisors can monitor either positive or
negative supplies using a resistor voltage-divider to
PFI.
PFO
can be used to generate an interrupt to the μP
or cause reset to assert (Figure 3).
Monitoring a Negative Voltage
The power-fail comparator can be used to monitor a
negative supply voltage using the circuit shown in
Figure 3. When the negative supply is valid,
PFO
is low.
When the negative supply voltage drops,
PFO
goes
high. The circuit
s accuracy is affected by the PFI
threshold tolerance, V
CC
, R1, and R2.
Negative-Going V
CC
Transients
The MAX6715
MAX6729 supervisors are relatively
immune to short-duration negative-going V
CC
transients
(glitches). It is usually undesirable to reset the μP when
V
CC
experiences only small glitches. The
Typical
Operating Characteristics
show Maximum Transient
Duration vs. Reset Threshold Overdrive, for which reset
pulses are not generated. The graph was produced
using negative-going V
CC
pulses, starting above V
TH
and ending below the reset threshold by the magnitude
indicated (reset threshold overdrive). The graph shows
the maximum pulse width that a negative-going V
CC
transient may typically have without causing a reset
pulse to be issued. As the amplitude of the transient
increases (i.e., goes farther below the reset threshold),
the maximum allowable pulse width decreases. A 0.1μF
bypass capacitor mounted close to the V
CC
pin pro-
vides additional transient immunity.
Watchdog Software Considerations
Setting and resetting the watchdog input at different
points in the program, rather than
pulsing
the watch-
dog input high-low-high or low-high-low, helps the
watchdog timer to closely monitor software execution.
This technique avoids a
stuck
loop where the watch-
dog timer continues to be reset within the loop, keeping
the watchdog from timing out. Figure 6 shows an exam-
ple flow diagram where the I/O driving the watchdog
input is set high at the beginning of the program, set low
at the beginning of every subroutine or loop, then set
high again when the program returns to the beginning. If
the program should
hang
in any subroutine, the I/O is
continually set low and the watchdog timer is allowed to
time out, causing a reset or interrupt to be issued.
Chip Information
TRANSISTOR COUNT: 1072
PROCESS: BiCMOS
Dual/Triple Ultra-Low-Voltage SOT23 μP
Supervisory Circuits
12
______________________________________________________________________________________
MAX6728/
MAX6729
V
EXT
R1
R3
R2
PFI
GND
PFO
A
V
GOOD
= DESIRED V
EXT
GOOD VOLTAGE THRESHOLD
V
FAIL
= DESIRED V
FAIL VOLTAGE THRESHOLD
V
= V
CC
1 (FOR PUSH-PULL PFO)
R2 = 200k
(FOR > 2.5
μ
A R2 CURRENT)
R1 = R2 ((V
GOOD
- V
PFI
) - (V
PFI
)(V
GOOD
- V
FAIL
) / V
OH
) / V
PFI
R3 = (R1 x V
OH
) / (V
GOOD
- V
FAIL
)
V
GOOD
V
FAIL
V
IN
PFO
Figure 5. Adding Hysteresis to Power-Fail for Push-Pull PFO
START
SET WDI
HIGH
PROGRAM
CODE
SUBROUTINE OR
PROGRAM LOOP
SET WDI LOW
RETURN
SUBROUTINE
COMPLETED
HANG IN
SUBROUTINE
Figure 6. Watchdog Flow Diagram
相關(guān)PDF資料
PDF描述
MAX6723 Replaced by TPL9201 : Microcontroller Power Supply and Low-Side Driver 20-PDIP -40 to 125
MAX6724 Replaced by TPL9201 : Microcontroller Power Supply and Low-Side Driver 20-PDIP -40 to 125
MAX6725 Replaced by TPL9201 : Microcontroller Power Supply and Low-Side Driver 20-HTSSOP -40 to 125
MAX6726 Replaced by TPL9201 : Microcontroller Power Supply and Low-Side Driver 20-HTSSOP -40 to 125
MAX6727 Replaced by TPL9202 : Microcontroller Power Supply and Low-Side Driver 20-HTSSOP -40 to 125
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