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MAX9060–MAX9064
Ultra-Small, nanoPower Single
Comparators in 4-Bump UCSP and 5 SOT23
General Description
The MAX9060–MAX9064 are small single comparators,
ideal for a wide variety of portable electronics applications
such as cell phones, media players, and notebooks that
have extremely tight board space and power constraints.
These comparators are offered in both, a miniature
4-bump UCSP™ package with a 1mm x 1mm footprint (as
small as two 0402 resistors), and a 5-pin SOT23 package.
The MAX9060–MAX9064 feature an input voltage range
of -0.3V to +5.5V independent of supply voltage. These
devices maintain high impedance at the inputs even when
powered down (VCC or VREF = 0V). They also feature
internal filtering to provide high RF immunity.
The MAX9060 and MAX9061 have open-drain outputs and
draw quiescent supply current from a user-supplied reference voltage, VREF, between 0.9V and 5.5V. These devices consume only 100nA (max) supply current and operate
over the extended -40°C to +85°C temperature range.
The MAX9062, MAX9063 and MAX9064 are single comparators with an internal 0.2V reference. These devices
feature either a push-pull or an open-drain output. They
consume only 700nA (max) supply current. The MAX9062,
MAX9063, and MAX9064 operate down to VCC = 1V over
the extended -40°C to +85°C temperature range.
Applications
●
●
●
●
●
Cell Phones
Portable Media Players
Electronic Toys
Notebook Computers
Portable Medical Devices
Selector Guide and Typical Operating Circuits appears at
end of data sheet.
Features
●
●
●
●
●
●
Tiny 1mm x 1mm x 0.6mm 4-Bump UCSP
Footprint = Two 0402 Resistors
Also Available in a 5-Pin SOT23 Package
Ultra-Low Operating Current (100nA max)
Input Voltage Range = -0.3V to +5.5V
External REF Range = 0.9V to 5.5V
(MAX9060/MAX9061)
● Internal REF Voltage = 0.2V
(MAX9062/MAX9063/MAX9064)
● 15μs Propagation Delay
● -40°C to +85°C Extended Temperature Range
Ordering Information
PART
PIN PACKAGE
MAX9060EBS+G45
4 UCSP
TOP MARK
AFX
MAX9060EUK+
5 SOT23
AFFG
MAX9061EBS+G45
4 UCSP
AFY
MAX9061EUK+
5 SOT23
AFFH
MAX9062EBS+G45
4 UCSP
AFZ
MAX9062EUK+
5 SOT23
AFFI
MAX9063EBS+G45
4 UCSP
AFA
MAX9063EUK+
5 SOT23
AFFJ
MAX9063EUK/V+T
5 SOT23
+AMGH
MAX9064EBS+G45
4 UCSP
AFB
MAX9064EUK+
5 SOT23
AFFK
Note: All devices are specified over the extended -40°C
to+85°C operating temperature range.
+Denotes a lead(Pb)-free/RoHS-compliant package.
/V denotes an automotive qualified device.
T = Tape and reel.
G45 = Protective die coating.
UCSP is a trademark of Maxim Integrated Products, Inc.
Pin Configurations
TOP VIEW (BUMPS ON BOTTOM)
OUT
A1
A2
IN
MAX9060–MAX9064
REF
(VCC)
B1
B2
GND
REF = MAX9060/MAX9061
(VCC) = MAX9062–MAX9064
UCSP
REF
(VCC)
1
GND
2
GND
3
+
5
OUT
4
IN
MAX9060–
MAX9064
SOT23
19-4105; Rev 9; 8/20
© 2021 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners.
One Analog Way, Wilmington, MA 01887 U.S.A.
|
Tel: 781.329.4700
|
© 2021 Analog Devices, Inc. All rights reserved.
MAX9060–MAX9064
Ultra-Small, nanoPower Single
Comparators in 4-Bump UCSP and 5 SOT23
Absolute Maximum Ratings
VCC, REF, IN to GND...............................................-0.3V to +6V
OUT to GND (MAX9060–MAX9063)........................-0.3V to +6V
OUT to GND (MAX9064 Only)............... -0.3V to + (VCC + 0.3V)
Output Short-Circuit Current Duration.................................... 10s
Input Current into Any Terminal.........................................±20mA
Continuous Power Dissipation
4-Bump UCSP (derate 3.0mW/°C above +70°C)......... 238mW
5-Pin SOT23 (derate 3.9mW/°C above +70°C)........... 312mW
Operating Temperature Range.............................-40°C to +85°C
Junction Temperature....................................................... +150°C
Storage Temperature Range..............................-65°C to +150°C
Lead Temperature (excluding UCSP, 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.
MAX9060/MAX9061 Electrical Characteristics
(VREF = 1.8V, RPULLUP = 10kΩ to VPULLUP = 3.3V, TA = -40°C to +85°C. Typical values are at TA = +25°C, unless otherwise noted.)
(Note 1)
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
1.3
6
UNITS
DC CHARACTERISTICS
Input Offset Voltage (Note 2)
VOS
Hysteresis
VHYS
Input Voltage Range
VIN
Input Bias Current
IIN
Input Shutdown Current
Output Voltage Low
Output Leakage Current
(OUT = High)
IIN_PD
VOL
TA = +25°C
9
(Note 3)
±12
-0.3
mV
+5.5
0V < VIN < VREF + 0.6V
40
VREF + 0.6V < VIN < 5.5V
10
100
VREF = 0V, VIN = 5.5V (Note 4)
0.2V
Output asserts low.
VIN < 0.2V
External pullup resistor pulls output high.
VIN > 0.2V
Output asserts high.
VIN < 0.2V
Output asserts low.
MAX9062
MAX9063
MAX9064
Applications Information
Bypassing REF/VCC
Place a 0.1μF capacitor between REF or VCC and GND
as close as possible to the device. During a switching
event, all comparators draw a current spike from their
power-supply rails. This current spike is minimized by the
use of an internal break-before-make design.
Hysteresis Operation
The MAX9060–MAX9064 feature internal hysteresis for
noise immunity and glitch-free operation. If additional hysteresis is needed, an external positive feedback network
can be easily implemented on the MAX9060, MAX9062,
and MAX9064 noninverting input devices. Additional
external hysteresis is not recommended for the MAX9061
due to possible crossover current-related noise problems.
Additional external hysteresis is not possible on the
MAX9063 because the noninverting input of the comparator is not externally accessible.
Adaptive Signal Level Detector
The MAX9060 and MAX9061 can be used as an adaptive signal-level detector. Feed a DAC output voltage
to REF and connect the input to a variable signal level.
As the DAC output voltage is varied from 0.9V to 5.5V,
a corresponding signal level threshold-detector circuit is
implemented. See Figure 1.
VDD
DAC
REF
INTERNAL
PULLUP
MAX9060
OUT
IN
I/O
MICROCONTROLLER
Figure 1. Adaptive Signal Level Detector
www.analog.com
Analog Devices │ 8
MAX9060–MAX9064
Ultra-Small, nanoPower Single
Comparators in 4-Bump UCSP and 5 SOT23
Typical Operating Circuits
VDD
0.9V
TO 5.5V
REF
VDD
INTERNAL
PULLUP
MAX9060
OUT I/O
IN
0.9V
TO 5.5V
MAX9061
OUT I/O
VDD
MICROCONTROLLER
VCC = 1.0V TO 5.5V
INTERNAL
PULLUP
MAX9062
0.2V REF
0.2V REF
VDD
INTERNAL
PULLUP
MAX9063
OUT I/O
IN
INTERNAL
PULLUP
IN
MICROCONTROLLER
VCC = 1.0V TO 5.5V
REF
OUT I/O
MICROCONTROLLER
IN
MICROCONTROLLER
VCC = 1.0V TO 5.5V
VDD
MAX9064
0.2V REF
OUT I/O
IN
MICROCONTROLLER
Package Information
Selector Guide
For the latest package outline information and land patterns
(footprints), go to www.maximintegrated.com/packages. Note
that a “+”, “#”, or “-” in the package code indicates RoHS status
only. Package drawings may show a different suffix character, but
the drawing pertains to the package regardless of RoHS status.
PART
REFERENCE
VOLTAGE
INPUT
OUTPUT
MAX9060
External
Noninverting
Open drain
MAX9061
External
Inverting
Open drain
MAX9062
0.2V
Noninverting
Open drain
MAX9063
0.2V
Inverting
Open drain
PACKAGE
TYPE
PACKAGE
CODE
OUTLINE
NO.
LAND
PATTERN NO.
MAX9064
0.2V
Noninverting
Push-pull
5 SOT23
U5+2
21-0057
90-0174
4 UCSP
B4+1
21-0789
—
Chip Information
PROCESS: BiCMOS
www.analog.com
Analog Devices │ 9
MAX9060–MAX9064
Ultra-Small, nanoPower Single
Comparators in 4-Bump UCSP and 5 SOT23
Package Information (continued)
For the latest package outline information and land patterns (footprints), go to www.maximintegrated.com/packages. Note that a “+”,
“#”, or “-” in the package code indicates RoHS status only. Package drawings may show a different suffix character, but the drawing
pertains to the package regardless of RoHS status.
maxim
integrated
www.analog.com
TM
Analog Devices │ 10
MAX9060–MAX9064
Ultra-Small, nanoPower Single
Comparators in 4-Bump UCSP and 5 SOT23
Package Information (continued)
For the latest package outline information and land patterns (footprints), go to www.maximintegrated.com/packages. Note that a “+”,
“#”, or “-” in the package code indicates RoHS status only. Package drawings may show a different suffix character, but the drawing
pertains to the package regardless of RoHS status.
Pin 1
Indicator
COMMON DIMENSIONS
Marking
E
1
A
AAAA
D
0.64 0.05
0.24 0.03
A2
0.40 REF
A3
0.04 BASIC
b
0.31 0.03
1.000
1.000
D
SIDE VIEW
TOP VIEW
A1
A
E
E1
0.50 BASIC
0.50 BASIC
e
0.50 BASIC
SD
0.25 BASIC
D1
A3
A
A1
A2
0.05
0.05
0.25 BASIC
DEPOPULATED BUMPS:
NONE
SE
0.05 S
FRONT VIEW
S
E1
e
NOTES:
1. Terminal pitch is defined by terminal center to center value.
2. Outer dimension is defined by center lines between scribe lines.
3. All dimensions in millimeter.
4. Marking shown is for package orientation reference only.
5. Tolerance is ± 0.02 unless specified otherwise.
6. All dimensions apply to PbFree (+) package codes only.
SE
SD
B
B
D1
A
1
2
A
BOTTOM VIEW
- DRAWING NOT TO SCALE -
www.analog.com
b
0.05 M
maxim
integrated
S AB
TITLE
TM
PACKAGE OUTLINE 4 BUMPS
WLP PKG. 0.5 mm PITCH, B4+1
APPROVAL
DOCUMENT CONTROL NO.
21-0789
REV.
B
1
1
Analog Devices │ 11
MAX9060–MAX9064
Ultra-Small, nanoPower Single
Comparators in 4-Bump UCSP and 5 SOT23
Revision History
REVISION
NUMBER
REVISION
DATE
PAGES
CHANGED
0
5/08
Initial release
—
1
1/09
Corrected ultra-low operating current value
1
2
10/10
Updated TOC 4 labels
4
3
12/10
Added G45 designation
1
DESCRIPTION
4
3/11
Updated Note 6
3
5
8/12
Added automotive package MAX9064EUK/V+T to Ordering Information
1
6
12/14
Added automotive package MAX9063EUK/V+T to Ordering Information and removed
MAX9064EUK/V+T
1
7
3/17
Updated title to include “nanoPower” and updated top marking in Ordering Information
table
1–10
8
8/18
Updated Package Information section
9
9/20
Added POD for 5 SOT 23 and 4 UCSP to Package Information section
9
10, 11
Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is
assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties that
may result from its use.Specifications subject to change without notice. No license is granted by implicationor
otherwise under any patent or patent rights of Analog Devices. Trademarks andregistered trademarks are the
property of their respective owners.
w w w . a n a l o g . c o m
Analog Devices │ 12