參數(shù)資料
型號: MAX836-MAX837
廠商: Maxim Integrated Products, Inc.
英文描述: 4-Pin Micropower Voltage Monitors
中文描述: 4引腳微功耗電壓監(jiān)視器
文件頁數(shù): 4/6頁
文件大?。?/td> 61K
代理商: MAX836-MAX837
_______________Detailed Desc ription
The MAX836/MAX837 micropower voltage monitors
contain a 1.204V precision bandgap reference and a
comparator (see the Typical Operating Circuit. The
only difference between the two parts is the structure of
the comparator output driver. The MAX836 has an
open-drain N-channel output driver that can be pulled
up to a voltage higher than V
CC
, but under 11V. The
MAX837’s output is push-pull, and can both source
and sink current.
Programming the T rip V oltage
Two external resistors set the trip voltage, V
TRIP
(Figure 1).
V
TRIP
is the point at which the applied voltage (typically
V
CC
) toggles OUT. The MAX836/MAX837’s high input
impedance allows large-value resistors without compro-
mising trip-voltage accuracy. To minimize current con-
sumption, select a value for R2 between 500k
and
1M
, then calculate R1 as follows:
where V
TRIP
= desired trip voltage (in volts), V
TH
=
threshold trip voltage (1.204V).
__________Applic ations Information
Adding Hysteresis
Hysteresis adds noise immunity to the MAX836/MAX837
and prevents repeated triggering when V
IN
is near the
threshold trip voltage. Figure 2 shows how to add hys-
teresis to the comparator. The technique is similar for
R1 = R2
V
V
-1
TRIP
TH
M
4-Pin Mic ropower Voltage Monitors
4
_______________________________________________________________________________________
____________________________Typic al Operating Charac teristic s (c ontinued)
(V
CC
= +5V, R
LOAD
= 1M
, R
PULL-UP
= 10k
(MAX836 only), T
A
= +25°C, unless otherwise noted.)
_____________________Pin Desc ription
NAME
FUNCTION
1
GND
System Ground
2
V
CC
System Supply Input
PIN
3
IN
Noninverting Input to the Comparator.
The inverting input connects to the
internal 1.204V bandgap reference.
4
OUT
Open-Drain (MAX836) or
Push-Pull (MAX837) Output
GND
R
PULL-UP
OUT
IN
MAX836
V
CC
V
CC
0.1
μ
F
V
CC
R2
R1
R1 + R2
R2
V
TRIP
= (1.204)
NOTE: UNITS ARE OHMS AND VOLTS
Figure 1. Programming the Trip Voltage, V
TRIP
0
200
400
600
800
1000
1200
1400
1600
1800
2
4
8
OUT RISE/FALL TIME vs.
SUPPLY VOLTAGE
M
V
CC
(V)
T
6
10
3
5
9
7
11 12
FALL TIME
RISE TIME
MAX837 ONLY
40
160
140
120
100
80
60
-60
-20
60
V
CC
FALLING PROPAGATION DELAY
vs. TEMPERATURE
M
TEMPERATURE (°C)
P
μ
s
20
-40
0
80
40
100
1mV/
μ
s
10mV/
μ
s
V
TRIP
= 3.0V
V
TRIP
= 3.0V
V
TRIP
= 4.63V
V
TRIP
= 4.63V
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