MAX16041/MAX16042/MAX16043
Dual-/Triple-/Quad-Voltage, Capacitor-
Adjustable, Sequencing/Supervisory Circuits
_______________________________________________________________________________________ 7
Pin Description (continued)
PIN
MAX16041 MAX16042 MAX16043
NAME FUNCTION
11 14 17 OUT1
Output 1. When the voltage at IN1 is below its threshold or EN1 goes low,
OUT1 goes low.
12 15 18 RESET
Active-Low Reset Output. RESET asserts low when any of the monitored
voltages (IN_) falls below its respective threshold, any EN_ goes low, or MR is
asserted. RESET remains asserted for the reset timeout period after all of the
monitored voltages exceed their respective threshold, all EN_ are high, all
OUT_ are high, and MR is deasserted.
13 16 19 MR
Active-Low Manual Reset Input. Pull MR low to assert RESET low. RESET
remains low for the reset timeout period after MR is deasserted (as long as all
OUT_ are high).
14 17 20 CRESET
Capacitor-Adjustable Reset Delay Input. Connect an external capacitor from
CRESET to GND to set the reset timeout period or connect to V
CC
for the
default 140ms minimum reset timeout period. Leave CRESET open for internal
propagation delay.
21 CDLY4
Capacitor-Adjustable Delay Input 4. Connect an external capacitor from
CDLY4 to GND to set the IN4 to OUT4 (and EN4 to OUT4) delay period.
Leave CDLY4 open for internal propagation delay.
18 22 CDLY3
Capacitor-Adjustable Delay Input 3. Connect an external capacitor from
CDLY3 to GND to set the IN3 to OUT3 (and EN3 to OUT3) delay period.
Leave CDLY3 open for internal propagation delay.
15 19 23 CDLY2
Capacitor-Adjustable Delay Input 2. Connect an external capacitor from
CDLY2 to GND to set the IN2 to OUT2 (and EN2 to OUT2) delay period.
Leave CDLY2 open for internal propagation delay.
16 20 24 CDLY1
Capacitor-Adjustable Delay Input 1. Connect an external capacitor from
CDLY1 to GND to set the IN1 to OUT1 (and EN1 to OUT1) delay period.
Leave CDLY1 open for internal propagation delay.
——EP
Exposed Pad. EP is internally connected to GND. Connect EP to the
ground plane.
Detailed Description
The MAX16041/MAX16042/MAX16043 are low-voltage,
accurate, dual-/triple-/quad-voltage microprocessor
(µP) supervisors in a small TQFN package. These
devices provide supervisory and sequencing functions
for complex multivoltage systems. The MAX16041 mon-
itors two voltages, the MAX16042 monitors three volt-
ages, and the MAX16043 monitors four voltages.
The MAX16041/MAX16042/MAX16043 offer indepen-
dent outputs and enable functions for each monitored
voltage. This configuration allows the device to operate as
four separate supervisory circuits or be daisy-chained
together to allow controlled sequencing of power supplies
during power-up initialization. When all of the monitored
voltages exceed their respective thresholds, an inde-
pendent reset output deasserts to allow the system
processor to operate.
These devices offer enormous flexibility as there are
nine threshold options that are selected through two
threshold-select logic inputs. Each monitor circuit also
offers an independent enable input to allow both digital
and analog control of each monitor output. A tolerance
select input allows these devices to be used in systems
requiring 5% or 10% power-supply tolerances. In addi-
tion, the time delays and reset timeout can be adjusted
using small capacitors. There is also a fixed 140ms
minimum reset timeout feature.
MAX16041/MAX16042/MAX16043
Dual-/Triple-/Quad-Voltage, Capacitor-
Adjustable, Sequencing/Supervisory Circuits
8 _______________________________________________________________________________________
LOGIC
1V
250nA
OUT1
OUT2
OUT3
OUT4
RESET
EN1EN2EN3EN4TH1TH0
IN1
IN2
IN3
IN4
GND
TOL
DRIVER
DRIVER
DRIVER
DRIVER
DELAY
DELAY
DELAY
DELAY
V
CC
CDLY1 CDLY2 CDLY3 CDLY4
CRESET MR
REFERENCE
THRESHOLD
SELECT
LOGIC
RESET
DELAY
LOGIC
DRIVER
MAX16043
Figure 1. MAX16043 Simplified Functional Diagram
MAX16041/MAX16042/MAX16043
Dual-/Triple-/Quad-Voltage, Capacitor-
Adjustable, Sequencing/Supervisory Circuits
_______________________________________________________________________________________ 9
Applications Information
Tolerance
The MAX16041/MAX16042/MAX16043 feature a pin-
selectable threshold tolerance. Connect TOL to GND to
select the thresholds 5% below the nominal value.
Connect TOL to V
CC
to select the threshold tolerance
10% below the nominal voltage. Do not leave TOL uncon-
nected.
Adjustable Input
These devices offer several monitoring options with both
fixed and/or adjustable reset thresholds (see Table 2).
For the adjustable threshold inputs, the threshold voltage
(V
TH
) at each adjustable IN_ input is typically 0.5V (TOL
= GND) or 0.472V (TOL = V
CC
). To monitor a voltage
V
INTH
, connect a resistive divider network to the circuit as
shown in Figure 3 and use the following equation to cal-
culate the threshold voltage:
Choosing the proper external resistors is a balance
between accuracy and power use. The input to the volt-
age monitor is a high-impedance input with a small
100nA leakage current. This leakage current contributes
to the overall error of the threshold voltage where the out-
put is asserted. This induced error is proportional to the
value of the resistors used to set the threshold. With lower
value resistors, this error is reduced, but the amount of
power consumed in the resistors increases.
VV
R
R
INTH TH
+
1
1
2
Figure 2. Timing Diagram (CDLY_ Open)
V
CC
V
TH
V
TH
t
< t
ON
V
UVLO
t
ON
t
RP
t
DELAY-
t
DELAY+
t
RST_DELAY
t
OFF
t
RP
t
RP
t
ON
IN_
EN_
OUT_
RESET

MAX16042TP+

Mfr. #:
Manufacturer:
Maxim Integrated
Description:
Supervisory Circuits Dual/Triple/Quad Sequencng/Suprvisory
Lifecycle:
New from this manufacturer.
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