MAX9316

1:5 Differential LVPECL/LVECL/HSTL Clock and Data Driver

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This product is Not Recommended for New Designs. Some versions may be No Longer Available or being discontinued and subject to Last Time Buy, after which new orders can not be placed. See Ordering Information for details.

Description

The MAX9316 is a low-skew, 1-to-5 differential driver designed for clock and data distribution. This device allows selection between two inputs: one differential and one single ended. The selected input is reproduced at five differential outputs. The differential input can be adapted to accept a single-ended input by connecting the on-chip VBB supply to one input as a reference voltage.

The MAX9316 features low output-to-output skew (20ps), making it ideal for clock and data distribution across a backplane or board. For interfacing to differential HSTL and LVPECL signals, this device operates over a +3.0V to +3.8V supply range, allowing high-performance clock or data distribution in systems with a nominal +3.3V supply. For differential LVECL operation, this device operates with a -3.0V to -3.8V supply.

The MAX9316 is offered in a space-saving 20-pin TSSOP and wide-body SO package.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 0 (PDF, 220kB)
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Key Features

  • Guaranteed 400mV Differential Output at 1.5GHz
  • Selectable Single-Ended or Differential Input
  • 130ps (max) Part-to-Part Skew at +25°C
  • 20ps Output-to-Output Skew
  • 365ps Propagation Delay
  • Synchronous Output Enable/Disable
  • On-Chip Reference for Single-Ended Inputs
  • Input Biased to Low when Open
  • Pin Compatible with MC100LVEL14
 

Applications/Uses

  • Automated Test Equipment (ATE)
  • Central Office Backplane Clock Distribution
  • Data and Clock Driver and Buffer
  • DSLAM Backplane
  • Low-Jitter Data Repeater
  • Precision Clock Distribution
  • Wireless Base Stations
   

Diagram

MAX9316: Typical Application Circuit
Typical Application Circuit

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Information Index

Document Ref.: 19-2237 Rev 0; 2001-11-28
This page last modified: 2007-07-03




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