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MAX9115
Single LVDS Line Receiver in SC70


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 144kB)
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The MAX9115 is a single low-voltage differential signaling (LVDS) line receiver ideal for applications requiring high data rates, low power, and low noise. The device is guaranteed to receive data at speeds up to 200Mbps (100MHz).

The MAX9115 accepts an LVDS differential input and translates it to an LVTTL/LVCMOS output. The fail-safe feature sets the output high when the inputs are undriven and open, terminated, or shorted. The device supports a wide common-mode input range, allowing a ground potential difference and common-mode noise between the driver and the receiver. The MAX9115 conforms to the ANSI TIA/EIA-644 LVDS standard.

The MAX9115 operates from a single +3.3V supply, and is specified for operation from -40°C to +85°C. It is available in a space-saving 5-pin SC70 package. Refer to the MAX9110/MAX9112 data sheet for single/dual LVDS line drivers.

Key Features   Applications/Uses
  • Space-Saving SC70 Package (50% Smaller than SOT23)
  • Guaranteed 200Mbps Data Rate
  • Low 350ps (max) Pulse Skew
  • High-Impedance LVDS Inputs When Powered Off Allow Hot Swapping
  • Conforms to ANSI TIA/EIA-644 LVDS Standard
  • Single +3.3V Supply
  • Fail-Safe Circuit Sets Output High for Undriven Inputs (Open, Terminated, or Shorted)
  • Low 150µA (typ) Supply Current in Fail-Safe Mode

 
  • Cell Phone Base Stations
  • Clock/Data Distribution
  • Digital Cross-Connects
  • DSLAM
  • Laser Printers
  • Network Routers and Switches

    Key Specifications:  High-Speed Interconnect (Differential Signaling)
    Part Number Features Signal Type Signal Type Functions Rx Tx Data Rates
    (Mbps)
    tPD
    (ps)
    VSUPPLY
    (V)
    Rx Tx max
    MAX9115 
    Fail-Safe Inputs
    Rx Hi-Z at Power-Off
    LVDS
    CMOS
    LVTTL
    Level Translator 1 1 200 3000 3.3
    See All High-Speed Interconnect (Differential Signaling) (132)

    Diagram
    MAX9115: Typical Application Circuit
    Typical Application Circuit

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    Document Ref.: 19-1995; Rev 0; 2001-04-01
    This page last modified: 2007-06-19


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