MAX9052 Maxim, MAX9052 Datasheet

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MAX9052

Manufacturer Part Number
MAX9052
Description
The MAX9039–MAX9043 and MAX9050–MAX9053 feature combinations of low-power comparators and precision voltage references
Manufacturer
Maxim
Datasheet

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19-1569; Rev 6; 3/09
The MAX9039–MAX9043 and MAX9050–MAX9053 fea-
ture combinations of low-power comparators and preci-
sion voltage references. Their operating voltage range
makes them ideal for both 3V and 5V systems. The
MAX9039/MAX9040/MAX9041/MAX9050/MAX9051
have a single comparator and reference consuming
only 40µA of supply current. The MAX9042/MAX9043/
MAX9052/MAX9053 have dual comparators and one
reference, and consume only 55µA of supply current.
Low-voltage operation and low supply current make
these devices ideal for battery-operated systems.
The comparators feature rail-to-rail inputs and outputs,
with a common-mode input voltage range that extends
250mV beyond the supply rails. Input bias current is
typically 1.0pA, and input offset voltage is typically
0.5mV. Internal hysteresis ensures clean output switch-
ing, even with slow-moving input signals. The output
stage features a unique design that limits supply cur-
rent surges while switching, virtually eliminating supply
glitches typical of many other comparators. This design
also minimizes overall power consumption under
dynamic conditions. The comparator outputs have rail-
to-rail, push-pull output stages that sink and source up
to 8mA. The propagation delay is 400ns, even with the
low-operating supply current.
The reference output voltage is set to 1.23V in the
MAX9039, to 2.048V in the MAX9040–MAX9043, and to
2.500V in the MAX9050–MAX9053. The MAX9040–
MAX9043 and the MAX9050–MAX9053 are offered in
two grades: an A grade with 0.4% initial accuracy and
6ppm/°C tempco, and a B grade with 1% initial accura-
cy and 100ppm/°C tempco. The voltage references
feature a proprietary curvature-correction circuit and
laser-trimmed thin-film resistors. These series-mode ref-
erences can sink or source up to 500µA of load current.
Typical Operating Circuit and Functional Diagrams appear
at end of data sheet.
UCSP is a trademark of Maxim Integrated Products, Inc.
For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642,
or visit Maxim's website at www.maxim-ic.com.
Precision Battery
Management
Window Comparators
IR Receivers
________________________________________________________________ Maxim Integrated Products
Micropower, Single-Supply, UCSP/SOT23
Comparator + Precision Reference ICs
General Description
Level Translators
Digital Line Receivers
Applications
♦ Comparator + Precision Reference in UCSP/SOT23
♦ 2.5V to 5.5V Single-Supply Operation
♦ Low Supply Current (MAX9039/MAX9040/
♦ 400ns Propagation Delay
♦ Rail-to-Rail Inputs
♦ Rail-to-Rail Output Stage Sinks and Sources 8mA
♦ Internal ±3mV Hysteresis
♦ Voltage Reference Offers
*UCSP reliability is integrally linked to the user’s assembly
methods, circuit board material, and environment. Refer to the
UCSP Reliability section of this data sheet for more information.
Ordering Information continued at end of data sheet.
Selector Guide appears at end of data sheet.
Pin Configurations continued at end of data sheet.
MAX9039BEBT-T*
MAX9040AEUK-T
MAX9040BEUK-T
MAX9041AEUT-T
MAX9041BEUT-T
MAX9041AESA
MAX9041BESA
(MAX9039–MAX9043)
MAX9041/MAX9050/MAX9051)
REF
IN+
40µA Quiescent
50µA with 100kHz Switching
±0.4% (max) Initial Accuracy (A grade)
6ppm/°C (typ) Temperature Coefficient (A grade)
Stable for 0 to 4.7nF Capacitive Loads
IN-
PART
TOP VIEW (BUMPS ON BOTTOM)
B1
B2
B3
MAX9039
UCSP
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
TEMP RANGE
A1
A2
A3
Ordering Information
Pin Configurations
V
V
OUT
CC
EE
OUT
V
IN+
EE
1
2
3
PIN-
PACKAGE
6 UCSP
5 SOT23
5 SOT23
6 SOT23
6 SOT23
8 SO
8 SO
TOP VIEW
MAX9040
MAX9050
SOT23
Features
5
4
MARK
ADNW
ADNX
AAHF
AAHH
TOP
AAZ
V
REF
CC
1

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MAX9052 Summary of contents

Page 1

... The MAX9039/MAX9040/MAX9041/MAX9050/MAX9051 have a single comparator and reference consuming only 40µA of supply current. The MAX9042/MAX9043/ MAX9052/MAX9053 have dual comparators and one reference, and consume only 55µA of supply current. Low-voltage operation and low supply current make these devices ideal for battery-operated systems. ...

Page 2

... REF A MIN MAX CONDITIONS MAX9040–MAX9043 CC MAX9050–MAX9053 V MAX9040/MAX9041/ CC MAX9050/MAX9051 MAX9042/MAX9043/ CC MAX9052/MAX9053 V CC Over entire T = +25°C A common-mode -40°C to +85°C range A I Specified common-mode range B Specified common-mode range +25° -40°C to +85°C ...

Page 3

... Typical values are at T REF A MIN MAX CONDITIONS MAX9039–MAX9043 V CC MAX9050–MAX5053 MAX9039/MAX9040 MAX9041/MAX9050 MAX9051 MAX9042/MAX9043/ CC MAX9052/MAX5053 unless otherwise noted. Typical values are at MAX MIN TYP 4.45 4.85 2.3 2. 450 400 20 2.040 2.048 2.490 2.500 6 ...

Page 4

Micropower, Single-Supply, UCSP/SOT23 Comparator + Precision Reference ICs ELECTRICAL CHARACTERISTICS—B Grade (1% Initial Accuracy) (continued OUT (Note 2) PARAMETER SYMBOL COMPARATOR Input Offset Voltage ...

Page 5

... REF ( REF = +25°C. Limits over the extended temperature range are guaranteed +25°C before and after cycling the device from T REF Typical Operating Characteristics = 0A +25°C, unless otherwise noted.) REF A MAX9042/MAX9043/MAX9052/MAX9053 SUPPLY CURRENT vs. TEMPERATURE 60 V > V IN 2.7V CC ...

Page 6

... Micropower, Single-Supply, UCSP/SOT23 Comparator + Precision Reference ICs ( OUT MAX9042/MAX9043/MAX9052/MAX9053 SUPPLY CURRENT vs. SWITCHING FREQUENCY 250 200 150 100 0.01 0 100 1000 SWITCHING FREQUENCY (kHz) OUTPUT SHORT-CIRCUIT CURRENT vs. TEMPERATURE 120 V > V IN+ IN- OUT SHORTED TO V ...

Page 7

Micropower, Single-Supply, UCSP/SOT23 Comparator + Precision Reference ICs ( OUT PROPAGATION DELAY ( 100ns/div A = IN+, 50mV/div B = OUT, ...

Page 8

... Typical Operating Characteristics (continued +25°C, unless otherwise noted.) REF A 2000 1500 1000 -500 -1000 -1500 5.0 5.5 MAX9043 MAX9042 NAME MAX9052 MAX9053 SO SO/µMAX µMAX 6 — — OUT — — IN REF 7 ...

Page 9

... The single comparators with reference, (MAX9039/MAX9040/MAX9041/MAX9050/ MAX9051 consume only 40µA of supply current, while the dual comparators with reference (MAX9042/ MAX9043/MAX9052/MAX9053) consume only 55µA of supply current. Their common-mode input range extends 0.25V beyond each rail. Internal hysteresis ensures clean output switching, even with slow-moving input signals ...

Page 10

... Solder joint contact integrity must be considered. Information on Maxim’s qualification plan, test data, and recommendations are detailed in the UCSP appli- cation note, which can be found on Maxim’s website at www.maxim-ic.com. PROCESS: BiPOLAR Biasing for Data Recovery 1 > ...

Page 11

... REF IN- 2 (B2 REF (V) 1.230 Uncommitted 2.048 REF 2.048 Uncommitted 2.500 REF 2.500 Uncommitted 2.048 REF/Uncommitted 2.048 Uncommitted/Uncommitted 2.500 REF/Uncommitted 2.500 Uncommitted/Uncommitted Functional Diagrams MAX9042 MAX9052 OUTB 7 INB- 6 INB MAX9043 MAX9053 OUTB 8 INB- 7 INB+ 6 Selector Guide IN- CONNECTIONS 11 ...

Page 12

... MAX9052BESA -40°C to +85°C MAX9053AEUB -40°C to +85°C MAX9053BEUB -40°C to +85°C 12 ______________________________________________________________________________________ Pin Configurations (continued) 8 N.C. OUTA REF 2 CC MAX9041 MAX9042 MAX9051 MAX9052 6 OUT INA N. μMAX/SO SO TOP MARK V 8 µMAX — µMAX — — ...

Page 13

... Micropower, Single-Supply, UCSP/SOT23 Comparator + Precision Reference ICs For the latest package outline information and land patterns www.maxim-ic.com/packages. PACKAGE TYPE 6 UCSP 5 SOT23 6 SOT23 µMAX 10 µMAX ______________________________________________________________________________________ Package Information PACKAGE CODE B6-3 — — — — — PACKAGE OUTLINE, 3x2 UCSP DOCUMENT NO ...

Page 14

... Micropower, Single-Supply, UCSP/SOT23 Comparator + Precision Reference ICs For the latest package outline information and land patterns www.maxim-ic.com/packages. 14 ______________________________________________________________________________________ Package Information (continued) ...

Page 15

... Micropower, Single-Supply, UCSP/SOT23 Comparator + Precision Reference ICs For the latest package outline information and land patterns www.maxim-ic.com/packages TOP VIEW FRONT VIEW ______________________________________________________________________________________ Package Information (continued 0∞-8∞ L SIDE VIEW INCHES MILLIMETERS DIM MIN MAX ...

Page 16

... Micropower, Single-Supply, UCSP/SOT23 Comparator + Precision Reference ICs For the latest package outline information and land patterns www.maxim-ic.com/packages. 16 ______________________________________________________________________________________ Package Information (continued) PACKAGE OUTLINE, SOT 6L BODY 21-0058 ...

Page 17

... Micropower, Single-Supply, UCSP/SOT23 Comparator + Precision Reference ICs For the latest package outline information and land patterns www.maxim-ic.com/packages. ______________________________________________________________________________________ Package Information (continued) PACKAGE OUTLINE, SOT 6L BODY 21-0058 ...

Page 18

... Micropower, Single-Supply, UCSP/SOT23 Comparator + Precision Reference ICs For the latest package outline information and land patterns www.maxim-ic.com/packages. 18 ______________________________________________________________________________________ Package Information (continued) α α ...

Page 19

... Micropower, Single-Supply, UCSP/SOT23 Comparator + Precision Reference ICs For the latest package outline information and land patterns www.maxim-ic.com/packages. ______________________________________________________________________________________ Package Information (continued) α α 19 ...

Page 20

... Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. 20 ____________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 408-737-7600 © ...

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