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MAX3930, MAX3931, MAX3932
10.7Gbps Laser Diode Drivers

Ultra-Low Jitter from Low-Power 10.7Gbps Laser Driver


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Status
Part Number Status
MAX3930 This product is being discontinued and is subject to Last Time Buy, after which new orders can not be placed.
MAX3931 This product is No Longer Available.
MAX3932 This product is No Longer Available.

Description
FULL DATA SHEET (PDF, 852kB)
Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail
The MAX3930/MAX3931/MAX3932 are designed for direct modulation of laser diodes at data rates up to 10.7Gbps. They provide adjustable laser bias and modulation currents and are implemented using Maxim's second-generation in-house SiGe process.

The MAX3930 accepts differential CML clock and data input signals and includes 50Ω on-chip termination resistors. It delivers a 1mA to 100mA laser bias current and a 20mA to 100mA modulation current with a typical (20% to 80%) 25ps rise time. An input data retiming latch can be used to reject input pattern-dependent jitter if a clock signal is available.

The MAX3931/MAX3932 have an alternate pad out with respect to the MAX3930. The MAX3931 includes the series damping resistor RD on chip.

The MAX3930/MAX3931/MAX3932 also include an adjustable pulse-width control circuit to minimize laser pulse-width distortion.

An evaluation kit is available:  MAX3930EVKIT  

Key Features   Applications/Uses
  • Single +5V or -5.2V Power Supply
  • 108mA Supply Current
  • Operates to 10.7Gbps
  • 50Ω On-Chip Input Termination Resistors
  • Programmable Modulation Current to 100mA
  • Programmable Laser Bias Current to 100mA
  • 25ps Rise Time (MAX3930/MAX3932)
  • Adjustable Pulse-Width Control
  • Selectable Data Retiming Latch
  • ESD Protection
  • Internal Series Damping Resistor (MAX3931)

 
  • Computers: Desktop, Workstation, Server
  • Section Regenerators
  • SONET OC-192 and SDH STM-64
  • Transmission Systems
  • Up to 10.7Gbps Optical Transmitters

    Diagram
    MAX3930, MAX3931, MAX3932: Typical Application Circuit
    Typical Application Circuit

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    Document Ref.: 19-1856; Rev 3; 2002-08-30
    This page last modified: 2007-06-14


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