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MAX13172E
+5V Multiprotocol, Software-Selectable Clock Transceiver

The MAX13172E Offers Extended ESD Protection and is a Pin-for-Pin Upgrade to the MXL1544


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Description
FULL DATA SHEET (PDF, 284kB)
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The MAX13172E is a four-driver/four-receiver multiprotocol transceiver that operates from a single +5V supply in conjunction with the MAX13170E and MAX13174E. The MAX13172E, along with the MAX13170E and the MAX13174E, form a complete software-selectable data terminal equipment (DTE) or data communication equipment (DCE) interface port that supports the V.28 (RS-232), V.10/V.11 (RS-449/V.36, EIA-530, EIA-530A, X.21, RS-423), and V.35 protocols. The MAX13172E transceiver carries serial-interface control signaling, while the MAX13170E carries the high-speed clock and data signals. Typically, the MAX13170E is terminated using the MAX13174E.

The MAX13172E is available in a 5.3mm x 10.2mm, 28-pin SSOP package and operates over the 0°C to +70°C commercial temperature range.

Key Features   Applications/Uses
  • The MAX13170E/MAX13172E/MAX13174E Chipset is a Pin-for-Pin Upgrade to the MXL1544/MAX3175/MXL1543/MXL1543B Chipset
  • Chipset Operates from a Single +5V Supply
  • Software-Selectable DCE/DTE Configurations
  • Supports V.28 (RS-232), V.10/V.11 (RS-449/V.36, EIA-530, EIA-530A, X.21, RS-423) Protocols
  • Flowthrough Pin Configuration
  • Fail-Safe Receivers While Maintaining V.11 and V.35 Compatibility
  • Extremely Low Maximum Shutdown Current (No-Cable Mode)
  • TUV-Certified NET1/NET2 and TBR1/TBR2 Compliant (Pending)
  • Extended ESD Protection for All Transmitter Outputs and Receivers Inputs to GND
    • ±10kV Using the Human Body Model
    • ±3kV Using the Contact Method Specified in IEC 61000-4-2
    • ±3kV Using the Air Gap Discharge Method Specified in IEC 61000-4-2

 
  • CSU and DSU
  • Data Networking
  • Data Routers
  • PCI Cards
  • Switches
  • Telecommunication Equipment

    Diagram
    MAX13172E: Typical Operating Circuit
    Typical Operating Circuit

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    Document Ref.: 19-3900; Rev 0; 2008-05-28
    This page last modified: 2008-11-10



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