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MAX3483E, MAX3485E, MAX3486E, MAX3488E, MAX3490E, MAX3491E

3.3V Powered, ±15kV ESD-Protected, 12Mbps, Slew-Rate-Limited True RS-485/RS-422 Transceivers

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Active: In Production.

Description

Devices in the MAX3483E family (MAX3483E/MAX3485E/MAX3486E/MAX3488E/MAX3490E/MAX3491E) are ±15kV ESD-protected, +3.3V, low-power transceivers for RS-485 and RS-422 communications. Each device contains one driver and one receiver. The MAX3483E and MAX3488E feature slew-rate-limited drivers that minimize EMI and reduce reflections caused by improperly terminated cables, allowing error-free data transmission at data rates up to 250kbps. The partially slew-rate-limited MAX3486E transmits up to 2.5Mbps. The MAX3485E, MAX3490E, and MAX3491E transmit at up to 12Mbps.

All devices feature enhanced electrostatic discharge (ESD) protection. All transmitter outputs and receiver inputs are protected to ±15kV using IEC 1000-4-2 Air-Gap Discharge, ±8kV using IEC 1000-4-2 Contact Discharge, and ±15kV using the Human Body Model.

Drivers are short-circuit current limited and are protected against excessive power dissipation by thermal shutdown circuitry that places the driver outputs into a high-impedance state. The receiver input has a fail-safe feature that guarantees a logic-high output if both inputs are open circuit.

The MAX3488E, MAX3490E, and MAX3491E feature full-duplex communication, while the MAX3483E, MAX3485E, and MAX3486E are designed for half-duplex communication.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 0 (PDF, 240kB)
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Key Features

  • ESD Protection for RS-485 I/O Pins
    • ±15kV-Human Body Model
    • ±8kV-IEC 1000-4-2, Contact Discharge
    • ±15kV-IEC 1000-4-2, Air-Gap Discharge
  • Operate from a Single +3.3V Supply-No Charge Pump Required
  • Interoperable with +5V Logic
  • Guaranteed 12Mbps Data Rate (MAX3485E/MAX3490E/MAX3491E)
  • Slew-Rate Limited for Errorless Data Transmission (MAX3483E/MAX3488E)
  • 2nA Low-Current Shutdown Mode (MAX3483E/MAX3485E/MAX3486E/MAX3491E)
  • -7V to +12V Common-Mode Input Voltage Range
  • Full-Duplex and Half-Duplex Versions Available
  • Industry-Standard 75176 Pinout (MAX3483E/MAX3485E/MAX3486E)
  • Current-Limiting and Thermal Shutdown for Driver Overload Protection
 

Applications/Uses

  • Industrial Control Local Area Networks
  • Integrated Services Digital Networks
  • Packet Switching
  • Telecommunications
  • Transceivers for EMI-Sensitive Applications
   

Key Specifications:

RS-422/485 Line Driver/Receivers
Part Number Tx/Rx Duplex VSUPPLY
(V)
ICC
(mA)
Data Rate
(kbps)
ESD Protect.
(±kV)
Tx EN Rx EN ICC (Shutdn.)
(µA)
Rx/Tx on Bus Package/Pins Budgetary Price
typ min typ See Notes
MAX3483E  1Tx + 1Rx Half 3.3 1 250 15 Yes Yes 0.002 32
PDIP(N)/8
SOIC(N)/8
$1.91 @1k
MAX3485E  Half 12000 Yes Yes 0.002
PDIP(N)/8
SOIC(N)/8
$1.91 @1k
MAX3486E  Half 2500 Yes Yes 0.002
PDIP(N)/8
SOIC(N)/8
$1.91 @1k
MAX3488E  Full 250 No No -
PDIP(N)/8
SOIC(N)/8
$1.91 @1k
MAX3490E  Full 12000 No No -
PDIP(N)/8
SOIC(N)/8
$1.91 @1k
MAX3491E  Full 12000 Yes Yes 0.002
PDIP(N)/14
SOIC(N)/14
$1.91 @1k
See All RS-422/485 Line Driver/Receivers (165)
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

MAX3483E, MAX3485E, MAX3486E, MAX3488E, MAX3490E, MAX3491E: Pin Configurations and Typical Operating Circuits
Pin Configurations and Typical Operating Circuits

Notes and Comments

Slew-rate limiting reduces EMI and reflections (MAX3483E)
Guaranteed 12Mbps data rate (MAX3485E)
Guaranteed 2.5Mbps data rate (MAX3486E)
Slew-rate limiting reduces EMI and reflections (MAX3488E)
Guaranteed 12Mbps data rate (MAX3490E)
MAX3490 plus driver/receiver enable (MAX3491E)

More Information

New Product Press Release 1999-05-21 ]
RS-485 Resources

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Information Index

Document Ref.: 19-1474 Rev 0; 1999-04-01
This page last modified: 2009-09-07




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