MX584

Pin-Programmable Precision Voltage Reference

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Status Explanations for product status codes

Part Number Status Explanation
MX584 This product is No Longer Available.This product was manufactured for Maxim by an outside wafer foundry using a process that is no longer available. It is not recommended for new designs. For further information, contact us. The data sheet remains available for existing users.

To the best of our knowledge, a second-source replacement for this part is available from Analog Devices. 

Description

Maxim's MX584 is a temperature-compensated, bandgap voltage reference which provides pin-programmable output voltages of +10.00V, +7.50V, +5.00V, and +2.50V. External components are not required for these outputs, but if other voltages are desired, they can be programmed with external resistors.

Laser trimming minimizes output error as well as temperature drift, to as low as 10mV and 15ppm/°C with the MX584K.

The input voltage range of the MAX584 is 4.5V to 30V. The reference also includes a STROBE input which shuts down the reference output. Typical current drain when ON is 750µA. This drops to about 100µA when the reference is strobed OFF.

The MX584 is designed for use with 8- to 14-bit A/D and D/A converters as well as data acquisition systems. It is available in 8-lead TO-99 metal cans, plastic DIPS, CERDIPS, and SO packages.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 2 (PDF, 644kB)
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Key Features

  • +10.0V, +7.5V, +5.0V, +2.5V Programmable Outputs
  • ±10mV Tolerance at +10V (MX584K)
  • Low Tempco: 15ppm/°C, max (MAX584K)
  • No External Components or Trims
  • Short-Circuit Proof
  • Output Sources and Sinks Current
  • 10mA Output Current
 

Applications/Uses

  • A/D Converter Reference
  • CMOS DAC Reference
  • Data Logging
  • Measurement Instrumentation
  • Precision Analog Systems
  • Programmable Offset for PGAs
   

Diagram

Typical Operating Circuit

Pin Configuration

Notes and Comments

Low-drift programmable reference

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Document Ref.: 19-1115 Rev 2; 2005-01-10
This page last modified: 2009-03-13




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