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MAX3266, MAX3267
1.25Gbps/2.5Gbps, +3V to +5.5V, Low-Noise Transimpedance Preamplifiers for LANs

Low 200nA (MAX3266) Input Referred Noise and 1mA Input Overload


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Status
Part Number Status Replacement Explanation
MAX3266 Active: In Production. But some versions of the family are Not Recommended for New Designs. See Ordering Information.
MAX3267 This product is Not Recommended for New Designs. See Ordering Information for recommended replacements. MAX3277 Improved 3.3V design for TO headers.

Description
FULL DATA SHEET (PDF, 912kB)
Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail
The MAX3266 is a transimpedance preamplifier for 1.25Gbps LAN fiber optic receivers. The circuit features 200nA input-referred noise, 920MHz bandwidth, and 1mA input overload.

The MAX3267 provides a pin-for-pin compatible solution for communications up to 2.5Gbps. It features 500nA input-referred noise, 1.9GHz bandwidth, and 1mA input overload.

Both devices operate from a single +3.0V to +5.5V supply and require no compensation capacitor. They also include a space-saving filter connection that provides positive bias for the photodiode through a 1.5kΩ resistor to VCC. These features allow easy assembly into a TO-46 or TO-56 header with a photodiode.

The 1.25Gbps MAX3266 has a typical optical dynamic range of -24dBm to 0dBm in a shortwave (850nm)configuration or -27dBm to -3dBm in a longwave (1300nm) configuration. The 2.5Gbps MAX3267 has a typical optical dynamic range of -21dBm to 0dBm in a shortwave configuration or -24dBm to -3dBm in a longwave configuration.

An evaluation kit is available:  MAX3266EVKIT, MAX3267EVKIT  

Key Features   Applications/Uses
  • 200nA Input-Referred Noise (MAX3266)
  • 500nA Input-Referred Noise (MAX3267)
  • 920MHz Bandwidth (MAX3266)
  • 1900MHz Bandwidth (MAX3267)
  • 1mA Input Overload
  • Single +3.0V to +5.5V Supply Voltage

 
  • 1Gbps to 2.5Gbps Optical Receivers
  • Fibre Channel
  • Gigabit Ethernet

Diagram
MAX3266, MAX3267: Typical Application Circuit
Typical Application Circuit

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    Document Ref.: 19-4796; Rev 1; 2000-06-01
    This page last modified: 2007-06-04


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