ENGLISH 简体中文 日本語 한국어  

    Login | Register 


   
 
Enter keywords or part number    



MAX9039, MAX9040, MAX9041, MAX9042, MAX9042A, MAX9042B, MAX9043, MAX9043A, MAX9050, MAX9051, MAX9052, MAX9052A, MAX9052B, MAX9053, MAX9053A, MAX9053B
Micropower, Single-Supply, UCSP/SOT23 Comparator + Precision Reference ICs

Ideal for Precision Battery Monitoring Applications


  QuickView     Technical Documents     Ordering Info     More Information     User Comments (0)     All  
Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 404kB)
Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail
The MAX9039–MAX9043 and MAX9050–MAX9053 feature combinations of low-power comparators and precision 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 switching, even with slow-moving input signals. The output stage features a unique design that limits supply current 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 accuracy and 100ppm/°C tempco. The voltage references feature a proprietary curvature-correction circuit and laser-trimmed thin-film resistors. These series-mode references can sink or source up to 500µA of load current.

Key Features   Applications/Uses
  • Comparator + Precision Reference in UCSP/SOT23
  • 2.5V to 5.5V Single-Supply Operation (MAX9039–MAX9043)
  • Low Supply Current (MAX9039/MAX9040/MAX9041/MAX9050/MAX9051)
    • 40µA Quiescent
    • 50µA with 100kHz Switching
  • 400ns Propagation Delay
  • Rail-to-Rail Inputs
  • Rail-to-Rail Output Stage Sinks and Sources 8mA
  • Internal ±3mV Hysteresis
  • Voltage Reference Offers
    • ±0.4% (max) Initial Accuracy (A grade)
    • 6ppm/°C (typ) Temperature Coefficient (A grade)
    • Stable for 0 to 4.7nF Capacitive Loads

 
  • Digital-Line Receivers
  • IR Receivers
  • Level Translators
  • Precision Battery Management
  • Window Comparators

    Diagram
    MAX9039, MAX9040, MAX9041, MAX9042, MAX9042A, MAX9042B, MAX9043, MAX9043A, MAX9050, MAX9051, MAX9052, MAX9052A, MAX9052B, MAX9053, MAX9053A, MAX9053B: Typical Operating Circuit
    Typical Operating Circuit

    Didn't Find What You Need?
  • Next Day Product Selection Assistance from Applications Engineers
  • Parametric Search
  • Applications Help
  •  QuickView   Technical Documents   Ordering Info   More Information  
     Description 
     Key Features 
     Applications/Uses 
     Key Specifications 
     Diagram 

     Data Sheet 
     Application Notes 
     Design Guides 
     Engineering Journals 
     Reliability Reports 
     Software/Models 
     Evaluation Kits 

     Price and Availability 
     Samples 
     Buy Online 
     Package Information 
     Lead-Free Information 

     Related Products 
     Notes and Comments 
     Evaluation Kits 

    Document Ref.: 19-1569; Rev 6; 2009-03-26
    This page last modified: 2009-03-26


            •         •         •     Privacy Policy     •     Legal Notices

        Copyright © 2009 by Maxim Integrated Products