MAX3799

1Gbps to 14Gbps, SFP+ Multirate Limiting Amplifier and VCSEL Driver

Industry's First Combination VCSEL Driver and Limiting Amp Optimized for 1G and 10G SFP+ Ethernet

 Overview   Technical Documents   Ordering Info   Related Products   User Comments (0)   All   


Status Explanations for product status codes

Active: In Production.

Description

The MAX3799 is a highly integrated limiting amplifier and VCSEL driver that operates up to 14Gbps, making it suitable for Ethernet and Fibre Channel applications. By providing a selectable data path with a noise-shaping filter, the MAX3799 enables a module with 10G optics to be fully compliant with both 1000BASE-SR and 10GBASE-SR specifications. Operating from a single +3.3V supply, this low-power integrated limiting amplifier and VCSEL driver IC enables a platform design for SFP MSA as well as for SFP+ MSA-based optical transceivers. The high-sensitivity limiting amplifier limits the differential input signal generated by a transimpedance amplifier into a CML-level differential output signal. The compact VCSEL driver provides a modulation and a bias current for a VCSEL diode. The optical average power is controlled by an average power control (APC) loop implemented by a controller that interfaces to the VCSEL driver through a 3-wire digital interface. All differential I/Os are optimally back-terminated for a 50Ω transmission line PCB design.

The use of a 3-wire digital interface reduces the pin count while enabling advanced Rx (rate selection, LOS threshold, LOS squelch, LOS polarity, CML output level, signal path polarity, deemphasis, and fast mode-select change time) and Tx settings (modulation current, bias current, polarity, and eye safety control) without the need for external components. The MAX3799 provides multiple current and voltage DACs to allow the use of low-cost controller ICs.

The MAX3799 is packaged in a lead-free, 5mm x 5mm, 32-pin TQFN package.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 1 (PDF, 1.2MB)
Send this datasheet to any email addressE-Mail
An evaluation kit is available: MAX3799EVKIT

Key Features

  • Enables Single-Module Design Compliance with 1000BASE-SR and 10GBASE-SR Specifications
  • -21.5dBm Optical Sensitivity at 1.25Gbps Using a 10.32Gbps ROSA (-19.7dBm OMA)
  • Low Power Dissipation of 320mW at 3.3V Power Supply
  • Typical Electrical Performance of 14.025Gbps on Rx/Tx (Non-Retimed 16x Fibre Channel Solution)
  • 3mVP-P Receiver Sensitivity at 10.32Gbps
  • 4psP-P DJ at Receiver Output at 8.5Gbps 8B/10B
  • 4psP-P DJ at Receiver Output at 10.32Gbps 231 - 1 PRBS
  • 26ps Rise and Fall Time at Rx/Tx Output
  • Rate Select for 1Gbps Mode or 10Gbps Mode
  • CML Output Squelch
  • Polarity Select for Rx and Tx
  • LOS Assert Level Adjustment
  • LOS Polarity Select
  • Modulation Current Up to 12mA Into 100Ω Differential Load
  • Bias Current Up to 15mA
  • Integrated Eye Safety Features
  • 3-Wire Digital Interface
  • Programmable Deemphasis at Tx Output
 

Applications/Uses

  • 1000BASE-SR/10GBASE-SR Multirate SFP+ Optical Transceiver
  • 1x/2x/4x/8x/16x SFF/SFP/SFP+ MSA Fibre Channel (FC) Optical Transceiver
   

Key Specifications:

Laser Drivers
Part Number Target Oper. Range
(Gbps)
Data Rate
(Mbps)
Data Rate
(Mbps)
VSUPPLY
(V)
ICC
(mA)
I/O Type IMOD
(mA)
IBIAS
(mA)
EV Kit Package/Pins Budgetary Price
min max typ max max See Notes
MAX3799 
1 to 1.25
2 to 14
1000 14000 3.3 97 CML 12 15 Yes
TQFN/32
$3.09 @1k
See All Laser Drivers (24)
Pricing Notes:
This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific prices and delivery, please see the price and availability page or contact an authorized distributor.


Diagram

MAX3799: Typical Application Circuit
Typical Application Circuit

More Information

New Product Press Release 2009-11-11 ]

Didn't Find What You Need?

Information Index

Document Ref.: 19-4695 Rev 1; 2010-06-28
This page last modified: 2010-11-30




Contact Us     |     Privacy Policy     |     Legal Notices
Copyright © 2012 by Maxim Integrated Products