MAX6332UR25D2-T Maxim Integrated, MAX6332UR25D2-T Datasheet - Page 4

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MAX6332UR25D2-T

Manufacturer Part Number
MAX6332UR25D2-T
Description
Supervisory Circuits
Manufacturer
Maxim Integrated
Series
MAX6332, MAX6333, MAX6334r
Datasheet

Specifications of MAX6332UR25D2-T

Number Of Voltages Monitored
1
Monitored Voltage
1.8 V, 2.5 V
Undervoltage Threshold
2.46 V
Overvoltage Threshold
2.55 V
Output Type
Active High, Push-Pull
Manual Reset
Not Resettable
Watchdog
No Watchdog
Battery Backup Switching
No Backup
Power-up Reset Delay (typ)
40 ms
Supply Voltage - Max
5.5 V
Maximum Operating Temperature
+ 125 C
Mounting Style
SMD/SMT
Package / Case
SOT-23
Chip Enable Signals
No
Maximum Power Dissipation
320 mW
Minimum Operating Temperature
- 40 C
Power Fail Detection
No
Supply Current (typ)
3.3 uA
Supply Voltage - Min
0.7 V
3-Pin, Ultra-Low-Voltage, Low-Power
µP Reset Circuits
______________Applications Information
Since the RESET output on the MAX6334 is open-drain,
this device interfaces easily with µPs that have bidirec-
tional reset pins, such as the Motorola 68HC11.
Connecting the µP supervisor’s RESET output directly
to the microcontroller’s (µC’s) RESET pin with a single
pull-up resistor allows either device to assert reset
(Figure 1).
In addition to issuing a reset to the µP during power-up,
power-down, and brownout conditions, these devices are
relatively immune to short-duration, negative-going V
transients (glitches). The Typical Operating Characteristics
show the Maximum Transient Duration vs. Reset
Comparator Overdrive graph. The graph shows the maxi-
mum pulse width that a negative-going V
typically have without issuing a reset signal. As the ampli-
tude of the transient increases, the maximum allowable
pulse width decreases.
When V
operating voltage of 0.7V, push/pull-structured reset
sinking (or sourcing) capabilities decrease drastically.
High-impedance CMOS-logic inputs connected to the
RESET pin can drift to indeterminate voltages. This
does not present a problem in most cases, since most
µPs and circuitry do not operate at V
the MAX6333, where RESET must be valid down to 0,
adding a pull-down resistor between RESET and GND
removes stray leakage currents, holding RESET low
(Figure 2a). The pull-down resistor value is not critical;
100kΩ is large enough not to load RESET and small
enough to pull it low. For the MAX6332, where RESET
must be valid to V
between RESET and V
V
Since the MAX6334 has an open-drain, active-low out-
put, it typically uses a pull-up resistor. With this device,
RESET will most likely not maintain an active condition,
but will drift to a non-active level due to the pull-up
resistor and the reduced sinking capability of the open-
drain device. Therefore, this device is not recommend-
ed for applications where the RESET pin is required to
be valid down to V
4
CC
falls below 0.7V (Figure 2b).
CC
Interfacing to µPs with Bidirectional
falls below 1V and approaches the minimum
Negative-Going V
Ensuring a Valid Reset Output
CC
CC
= 0.
CC
= 0, a 100kΩ pull-up resistor
will hold RESET high when
Down to V
CC
CC
CC
below 1V. For
Reset Pins
Transients
transient may
CC
= 0
CC
Table 1. Factory-Trimmed Reset
Thresholds*
* Factory-trimmed reset thresholds are available in approximately
100mV increments, with a ±1.8% room-temperature variance.
Figure 1. Interfacing to µPs with Bidirectional Reset Pins
Figure 2. Ensuring Reset Valid Down to V
MAX633_UR25D_
MAX633_UR24D_
MAX633_UR23D_
MAX633_UR22D_
MAX633_UR21D_
MAX633_UR20D_
MAX633_UR19D_
MAX633_UR18D_
MAX633_UR17D_
MAX633_UR16D_
(a)
THRESHOLD
RESET-
SUFFIX
MAX6333
V
CC
GND
V
CC
MAX6334
RESET
GND
V
*ASSUMES HIGH-Z RESET INPUT TO THE µP
CC
RESET
MIN TYP MAX
2.46 2.50
2.36 2.40
2.26 2.30
2.16 2.20
2.06 2.10
1.96 2.00 2.04
1.87 1.90
1.77 1.80 1.83
1.67 1.70 1.73
1.57 1.60 1.63
100k
T
A
= +25°C
2.55
2.44
2.34
2.24
2.14
1.93
(b)
RESET
INPUT
MAX6332
T
CC
MOTOROLA
GND
MIN
2.43
2.33
2.23
2.13
2.04
1.94
1.84
1.75
1.65
1.55
A
68HCXX
V
CC
GND
= -40°C to +125°C
V
= 0
µP
CC
RESET
MAX
100k*
2.58
2.47
2.37
2.27
2.16
2.06
1.96
1.85
1.75
1.65

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