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MAX971, MAX972, MAX973, MAX974, MAX981, MAX982, MAX983, MAX984
Ultra-Low-Power, Open-Drain, Single/Dual-Supply Comparators


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 336kB)
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The MAX971–MAX974 and MAX981–MAX984 single/dual/quad low-voltage comparators feature the lowest power consumption available. These micropower devices draw less than 4µA supply current over temperature (MAX971/MAX972/MAX981/MAX982), and include an internal 1.182V ±1% (MAX971/MAX973/ MAX974) or ±2% (MAX981–MAX984) voltage reference and programmable hysteresis.

Ideal for 3V or 5V single-supply applications, these devices operate from a single 2.5V to 11V supply (or ±1.25V to ±5.5V dual supplies), and each comparator's input voltage ranges from the negative supply rail to within 1.3V of the positive supply.

The single MAX971/MAX981 and the dual MAX973/ MAX982/MAX983 provide a unique, simple method for adding hysteresis without feedback or complicated equations, simply by using the HYST pin plus two resistors.

The MAX971–MAX974 and MAX981–MAX984's open-drain outputs permit wire-ORed configurations. Thanks to an 11V output range and separate GND pin for the output transistor (MAX971/MAX974, MAX981/MAX984), these devices are ideal for level translators and bipolar to single-ended converters. For similar devices with complementary output stages, see the MAX921-MAX924 (1% reference) and the MAX931–MAX934 (2% reference).

Key Features   Applications/Uses
  • Available in Ultra-Small Packages:
    • UCSP™ (MAX972)
    • µMAX® (MAX9_1/MAX9_2/MAX9_3)
  • Ultra-Low Quiescent Current (4µA, max) Over Extended Temp Range (MAX971/MAX981)
  • Power Supplies:
    • Single 2.5V to 11V
    • Dual ±1.25V to ±5.5V
  • Input Voltage Range Includes Negative Supply
  • Internal Bandgap Reference
    • 1.182V ±1% (MAX97_)
    • 1.182V ±2% (MAX98_)
  • 12µs Propagation Delay (10mV Overdrive)
  • Output Has Separate GND Pin (MAX9_1/MAX9_4)

 
  • Battery-Powered Systems
  • Level Translators
  • Oscillator Circuits
  • Threshold Detectors
  • Window Comparators

    Key Specifications:  Comparators
    Part Number Comp-
    arators
    tPD
    (ns)
    VCMVR VSUPPLY (Total)
    (V)
    VSUPPLY (Total)
    (V)
    ICC per Comp.
    (µA)
    VOS
    (mV)
    Logic Out Package/Pins Smallest Available Pckg.
    (mm2)
    Oper. Temp.
    (°C)
    Price
    typ to Neg. Rail min max max max max w/pins See Notes
    MAX972  2 12000 Yes 2.5 11 1.6 10 Open Drain
    µMAX/8
    CDIP(N)/8
    PDIP(N)/8
    SOIC(N)/8
    16
    -40 to +85
    0 to +70
    $0.98 @1k
    See All Comparators (83)

    Key Specifications:  Comparators + Reference
    Part Number Comp-
    arators
    Thresh.
    (V)
    Internal Ref. Accuracy
    (%)
    tPD
    (µs)
    VSUPPLY
    (V)
    VSUPPLY
    (V)
    ICC
    (µA)
    Prog. Hyst. VOS
    (mV)
    Logic Out Package/Pins Smallest Available Pckg.
    (mm2)
    Oper. Temp.
    (°C)
    Price
    typ min max max max max w/pins See Notes
    MAX971  1 1.182 1 12 2.5 11 3.2 Yes 10 Open Drain
    µMAX/8
    CDIP(N)/8
    PDIP(N)/8
    SOIC(N)/8
    16
    -55 to +125
    -40 to +85
    0 to +70
    $1.50 @1k
    MAX973  2 1 4.5 Yes
    µMAX/8
    CDIP(N)/8
    PDIP(N)/8
    SOIC(N)/8
    16
    -55 to +125
    -40 to +85
    0 to +70
    $1.95 @1k
    MAX974  4 1 6.6 No
    PDIP(N)/16
    SOIC(N)/16
    62
    -55 to +125
    -40 to +85
    0 to +70
    $2.25 @1k
    MAX981  1 2 3.2 Yes
    µMAX/8
    PDIP(N)/8
    SOIC(N)/8
    16
    -40 to +85
    0 to +70
    $0.98 @1k
    MAX982  2 2 4.5 Yes
    µMAX/8
    PDIP(N)/8
    SOIC(N)/8
    16
    -40 to +85
    0 to +70
    $1.26 @1k
    MAX983  2 2 4.5 Yes
    µMAX/8
    PDIP(N)/8
    SOIC(N)/8
    16
    -40 to +85
    0 to +70
    $1.26 @1k
    MAX984  4 2 6.6 No
    PDIP(N)/16
    SOIC(N)/16
    62
    -40 to +85
    0 to +70
    $1.31 @1k
    See All Comparators + Reference (43)

    Diagram
    MAX971, MAX972, MAX973, MAX974, MAX981, MAX982, MAX983, MAX984: Typical Operating Circuit
    Typical Operating Circuit

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    Document Ref.: 19-0450; Rev 3; 2003-03-10
    This page last modified: 2007-05-30


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