Operating Temperature Range ......................... -40°C to +125°C
Storage Temperature Range ............................ -65°C to +150°C
Lead Temperature (soldering, 10s) ................................. +300°C
Soldering Temperature (reflow) .......................................+260°C
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these
or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect
device reliability.
Electrical Characteristics
PARAMETER
Operating Voltage Range
V
CC
Supply Current
(V
CC
= full range, T
A
= -40°C to +125°C, unless otherwise specified. Typical values are at T
A
= +25°C.) (Note 1)
SYMBOL
V
CC
I
CC
CONDITIONS
V
CC
= 5.5V, no load
V
CC
= 2.5V, no load
V
CC
= 1.8V, no load
V
CC
Reset Threshold
(See Reset Thresholds table)
Reset Threshold Tempco
V
CC
to Reset Delay
V
TH
ΔV
TH
/°C
V
CC
falling at 10mV/µs from V
TH
+ 100mV
to V
TH
- 100mV
D1
D2
Reset Timeout Period
MAX6381–MAX6389
(See Reset Timeout table)
D3
t
RP
D5
D6
D4
D7
Reset Timeout Period
MAX6390
MR
timeout period
t
RP
V
CC
timeout period
D4
D7
D4
D7
1
20
140
280
560
1120
1200
140
150
1120
1200
T
A
= +25°C
T
A
= -40°C to +125°C
V
TH
-
1.5%
V
TH
-
2.5%
V
CC
= 3.6V, no load
MIN
1.0
7
6
4
3
V
TH
V
TH
60
35
2
40
280
560
1120
2240
2400
280
300
2240
2400
0.3 x
V
CC
0.7 x
V
CC
0.8
2.4
V
ms
ms
TYP
MAX
5.5
13
11
7
6
V
TH
+
1.5%
V
TH
+
2.5%
V
ppm/°C
µs
µA
UNITS
V
V
IL
MR
Input Voltage
V
IH
V
IH
V
IL
V
TH
< 4V
V
TH
> 4V
www.maximintegrated.com
Maxim Integrated │ 2
MAX6381–MAX6390
SC70/μDFN, Single/Dual Low-Voltage,
Low-Power μP Reset Circuits
Electrical Characteristics (continued)
PARAMETER
MR
Minimum Input Pulse Width
MR
Glitch Rejection
MR
to Reset Delay
MR
Internal Pullup Resistance
RESET IN Input Threshold
RESET IN to RESET Delay
RESET IN Input Leakage Current
Open-Drain
RESET
Output
Voltage
Open-Drain
RESET
Output
Leakage Current
I
RESET IN
V
OL
I
LKG
V
OL
Push-Pull
RESET
Output Voltage
V
OH
V
THRST
SYMBOL
(V
CC
= full range, T
A
= -40°C to +125°C, unless otherwise specified. Typical values are at T
A
= +25°C.) (Note 1)
CONDITIONS
MIN
1
100
200
MAX6381–MAX6389
MAX6390
T
A
= +25°C
T
A
= 0°C to +85°C
32
500
1.245
1.232
1.219
4.5
-50
V
CC
≥ 4.5V, I
SINK
= 3.2mA, reset asserted
V
CC
≥ 1.0V, I
SINK
= 80µA, reset asserted
V
CC
> V
TH
,
RESET
not asserted
V
CC
≥ 4.5V, I
SINK
= 3.2mA, reset asserted
V
CC
≥ 1.0V, I
SINK
= 80µA, reset asserted
V
CC
≥ 4.5V, I
SOURCE
= 800µA, reset not
asserted
V
CC
≥ 2.5V, I
SOURCE
= 500µA, reset not
asserted
V
CC
≥ 4.5V, I
SOURCE
= 800µA, reset
asserted
V
CC
≥ 2.5V, I
SOURCE
= 500µA, reset
asserted
V
CC
≥ 1.8V, I
SOURCE
= 150µA, reset
asserted
V
CC
≥ 1.0V, I
SOURCE
= 1µA, reset asserted
V
CC
≥ 4.5V, I
SINK
= 3.2mA, reset not
asserted
V
CC
≥ 2.5V, I
SINK
= 1.2mA, reset not
asserted
V
CC
≥ 2.5V, I
SINK
= 1.2mA, reset asserted
0.8 x
V
CC
0.8 x
V
CC
0.8 x
V
CC
0.8 x
V
CC
0.8 x
V
CC
0.8 x
V
CC
0.4
0.3
V
V
CC
≥ 2.5V, I
SINK
= 1.2mA, reset asserted
±1
+50
0.4
0.3
0.3
1.0
0.4
0.3
0.3
V
µA
V
63
1560
1.27
100
3000
1.295
1.308
1.321
µs
nA
V
TYP
MAX
UNITS
µs
ns
ns
kΩ
Ω
T
A
= -40°C to +125°C
V
RESETIN
falling at 4mV/µs from
V
THRST
+ 40mV to V
THRST
- 40mV
V
OH
Push-Pull RESET Output Voltage
V
OL
Note 1:
Specifications over temperature are guaranteed by design, not production tested.
www.maximintegrated.com
Maxim Integrated │ 3
MAX6381–MAX6390
SC70/μDFN, Single/Dual Low-Voltage,
Low-Power μP Reset Circuits
Typical Operating Characteristics
SUPPLY CURRENT vs. TEMPERATURE
(NO LOAD)
MAX6381/90 toc01
MAX6381/90 toc02
SUPPLY CURRENT (µA)
7
6
5
4
3
2
1
0
V
CC
= +2.5V
V
CC
= +5.5V
POWER-DOWN RESET DELAY (µs)
8
V
CC
= +3.6V
41
39
37
35
33
31
29
27
25
V
CC
= +3V
NORMALIZED RESET TIMEOUT PERIOD
1.06
1.04
1.02
1.00
0.98
0.96
0.94
V
CC
= +1.8V
V
CC
= +1.8V
-40 -25 -10 5 20 35 50 65 80 95 110 125
TEMPERATURE (°C)
-40 -25 -10 5 20 35 50 65 80 95 110 125
TEMPERATURE (°C)
-40 -25 -10 5 20 35 50 65 80 95 110 125
TEMPERATURE (°C)
NORMALIZED RESET THRESHOLD
vs. TEMPERATURE
MAX6381/90 toc04
OUTPUT-VOLTAGE LOW
vs. SINK CURRENT
MAX6381/90 toc05
OUTPUT-VOLTAGE HIGH
vs. SOURCE CURRENT
V
CC
= +2.5V
MAX6381/90 toc06
1.020
NORMALIZED RESET THRESHOLD
1.015
1.010
1.005
1.000
0.995
0.990
0.985
1.2
1.0
0.8
0.6
0.4
0.2
0
V
CC
= +4.5V
3.0
2.5
2.0
V
OH
(V)
1.5
1.0
0.5
0
V
CC
= +1.8V
V
OL
(V)
V
CC
= +3.0V
0.990
-40 -25 -10 5 20 35 50 65 80 95 110 125
TEMPERATURE (°C)
0
3
6
I
SINK
(mA)
9
12
0
250
500
750
1000
1250
1500
I
SOURCE
(µA)
MAXIMUM TRANSIENT DURATION (µs)
450
400
350
300
250
200
150
100
50
0
1
10
100
RESET ASSERTED
ABOVE THIS LINE
MAX6381/90 toc07
5.3
5.1
RESET IN DELAY (µs)
4.9
4.7
4.5
4.3
4.1
3.9
3.7
3.5
1000
-40 -25 -10 5 20 35 50 65 80 95 110 125
TEMPERATURE (°C)
RESET COMPARATOR OVERDRIVE, V
TH
- V
CC
(mV)
www.maximintegrated.com
Maxim Integrated │ 4
MAX6381/90 toc08
500
MAXIMUM TRANSIENT DURATION
vs. RESET COMPARATOR OVERDRIVE
5.5
RESET IN TO RESET DELAY
vs. TEMPERATURE
MAX6381/90 toc03
9
43
POWER-DOWN RESET DELAY
vs. TEMPERATURE
1.08
NORMALIZED POWER-UP RESET TIMEOUT
vs. TEMPERATURE
MAX6381–MAX6390
SC70/μDFN, Single/Dual Low-Voltage,
Low-Power μP Reset Circuits
Pin Description
PIN
3-PIN SC70
µDFN
MAX6384/
MAX6381/
MAX6382 MAX6386/
MAX6383
MAX6390
4-PIN SC70
MAX6387/
MAX6385
MAX6388
MAX689
NAME
FUNCTION
1
(MAX6382/
MAX6385/
MAX6388)
2
—
2
—
2
RESET
Active-High Push-Pull Reset Output. RESET
changes from low to high when any monitored
voltage (V
CC
or VRESETIN) drops below the
reset threshold or
MR
is pulled low. RESET
remains high for the reset timeout period
after monitored voltages exceed the reset
thresholds or
MR
is released.
Active-Low Open-Drain/Push-Pull Reset Output.
RESET
changes from high to low when any
monitored voltage (V
CC
or VRESETIN) drops
below the reset threshold or
MR
is pulled low.
RESET
remains low for the reset timeout
period after the monitored voltages exceed the
reset thresholds or
MR
is released. Open-drain
requires an external pullup resistor.
1
(MAX6381/
MAX6383/
MAX6384/
MAX6386/
MAX6387/
MAX6390)
2, 3, 5
(MAX6381/
MAX6382/
MAX6383)
2, 5
(MAX6384–
MAX6390)
3
(MAX6384/
MAX6385/
MAX6386/
MAX6390)
2
—
2
—
2
—
RESET
—
—
—
—
—
—
N.C.
No Connection. Not Internally connected.
—
—
3
3
—
—
MR
Active-Low Manual Reset Input. Drive low to
force a reset. Reset remains active as long as
MR
is low and for the reset timeout period after
MR
is released. Leave unconnected or connect
to V
CC
if unused.
MR
has an internal 63kΩ
(1.56kΩ for MAX6390) pullup resistor to V
CC
.
Auxiliary Reset Input. High-impedance input to
the auxiliary reset comparator. Connect RESET
IN to the center point of an external resistor
voltage-divider network to set the reset threshold
How can I import a sinusoidal signal output from a signal generator into the MIC interface as an input signal and display it on an android analog oscilloscope written on ARM6410? I would like to ask t...
Dear experts, please tell me the working principle of several transmission lines such as microstrip line, coplanar line and stripline. It would be better to be more detailed. Thank you in advance....
Good things don't come often~~:pleased: I just found an application guide for transimpedance amplifiers today, written by Mao Huaping, a high-speed application engineer at TI. TIA stands for trans-imp...
I need to design an online battery length measurement. Is there an optical sensor that can emit a line of light and have a receiving end at the other end? When the battery passes by, it will block par...
In many single-chip microcomputer systems that require A/D conversion and digital acquisition, in many cases, the analog signal output by the sensor is very weak and must be amplified by a certain mul...
I am making a switching power supply. I want to use the interrupt of AD12 to detect and sample at the same time. When the voltage sampled by AD12 is greater than a certain value, the P1.0 light of the...
The rapid development of the Internet has realized high-speed information transmission and resource sharing, greatly facilitating people's lives. Embedded systems are widely used in various electr...[Details]
Microchip's PIC18F46J50 is a low-power, high-performance 8-bit USB microcontroller (MCU) using nanoWatt XLP technology. The current in deep sleep mode can be as low as 13nA, the operating voltage i...[Details]
Analog engineers have traditionally struggled with complexity when designing power supplies that required multiple outputs, dynamic load sharing, hot-swap, or extensive fault-handling capabilities....[Details]
introduction
Solar cells and LED lighting are typical applications of new energy and energy-saving and efficient technologies. Solar LED lighting uses solar cells to convert solar energy...[Details]
The reason for the light decay of white LEDs: the decline of phosphor performance
So far, the rapid decline of the luminous performance of white light LEDs, especially low-power white light LE...[Details]
In recent years, lighting has become an important area that countries around the world are targeting to promote energy conservation and environmental protection. According to statistics, about 20% ...[Details]
Two simple circuits are implemented to drive two LEDs from a battery powered microprocessor.
This design is based on a circuit that uses three resistors and a microprocessor I/O pin as an input h...[Details]
Images in science fiction movies often break through the limits of reality, such as in the movie "Minority Report." Tom Cruise uses a multi-touch screen to browse information. Capacitive sensing te...[Details]
With the rapid development of urban economy, elevators are increasingly used as a vertical transportation tool. However, elevator fault detection and maintenance, especially the role of elevator remot...[Details]
Microcalorimetry
is used to determine energy relationships. Microcalorimetry techniques are often required when performing calorimetric experiments with small sample sizes or slow heating rat...[Details]
Vertical cavity surface emitting lasers (VCSELs) are gradually replacing traditional edge emitting lasers, especially in low bandwidth and short-distance communication systems where cost factors ar...[Details]
Xiaomi, a well-known Internet phone in mainland China, won a million-unit order contract from China Unicom on November 20 last year, which made Xiaomi famous in mainland China. In April this year...[Details]
LED is the abbreviation of light emitting diode, which is an electric light source made of semiconductor technology. The core part of LED is a chip composed of P-type semiconductor and N-type semi...[Details]
With the advocacy and implementation of the government's Safe City Plan, the security market has increasingly higher requirements for the clarity of surveillance images. Imagine that after a case o...[Details]
It is well known to automotive suppliers that automakers are demanding more from their supply base. For connector suppliers, this means stricter requirements for product performance, stability and ...[Details]