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MAX5195, MAX5195EGM

14-Bit, 260Msps High-Dynamic Performance DAC

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Description

The MAX5195 is an advanced, 14-bit, 260Msps digital-to-analog converter (DAC) designed to meet the demanding performance requirements of signal synthesis applications found in wireless base stations and other communication systems. Operating from a single 5V supply, this DAC offers exceptional dynamic performance such as 77dBc spurious-free dynamic range (SFDR) at fOUT = 19.4MHz, while supporting update rates beyond 260Msps.

The MAX5195 current-source array architecture supports a full-scale current range of 10mA to 20mA, which allows a differential output voltage swing between 0.5VP-P and 1VP-P.

The MAX5195 features an integrated 1.2V bandgap reference and control amplifier to ensure high accuracy and low-noise performance. Additionally, a separate reference input pin allows the user to apply an external reference source for optimum flexibility.

The digital and clock inputs of the MAX5195 are designed for differential LVPECL-compatible voltage levels.

The MAX5195 is available in a 48-lead QFN package with exposed paddle and is specified for the extended industrial temperature range (-40°C to +85°C).
 

Data Sheet

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Key Features

  • 260Msps Output Update Rate
  • Excellent SFDR Performance
    • To Nyquist (-12dBFS)
    • At 19.4MHz Output = 77dBc
    • At 51.6MHz Output = 76dBc
  • Industry-Leading IMD Performance For 4 Tones (-15dBFS)
    • At 18MHz Output = 86dBc
    • At 31MHz Output = 84dBc
  • Low Noise Performance SNR = 160dB/Hz at fOUT = 19.4MHz
  • On-Chip 1.2V Bandgap Reference
  • 20mA Full-Scale Current
  • Single 5V Supply
  • Differential LVPECL-Compatible Digital Inputs
  • 48-Lead QFN-EP Package
 

Applications/Uses

  • Automated Test Equipment (ATE)
  • Base Stations: Single-/Multicarrier UMTS, GSM
  • Broadband Cable Systems
  • Digital-Signal Synthesis
  • Direct IF Synthesis
  • Instrumentation
  • LMDS, MMDS, Point-to-Point Microwave
   

Diagram

MAX5195, MAX5195EGM: Pin Configuration
Pin Configuration

More Information

New Product Press Release 2002-08-27 ]

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Document Ref.: 19-2557 Rev 0; 2002-08-05
This page last modified: 2009-10-14




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