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MAX3070E, MAX3071E, MAX3072E, MAX3073E, MAX3074E, MAX3075E, MAX3076E, MAX3077E, MAX3078E, MAX3079E

+3.3V, ±15kV ESD-Protected, Fail-Safe, Hot-Swap, RS-485/RS-422 Transceivers

±15kV ESD-Protected, +3.3V, Fail-Safe, Hot-Swap, RS-485/RS-422 Transceivers

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Status Explanations for product status codes

Active: In Production.

Description

The MAX3070E–MAX3079E 3.3V, ±15kV ESD-protected, RS-485/RS-422 transceivers feature one driver and one receiver. These devices include fail-safe circuitry, guaranteeing a logic-high receiver output when receiver inputs are open or shorted. The receiver outputs a logic high if all transmitters on a terminated bus are disabled (high impedance). The MAX3070E–MAX3079E include a hot-swap capability to eliminate false transitions on the bus during power-up or hot insertion.

The MAX3070E/MAX3071E/MAX3072E feature reduced slew-rate drivers that minimize EMI and reduce reflections caused by improperly terminated cables, allowing error-free data transmission up to 250kbps. The MAX3073E/MAX3074E/MAX3075E also feature slew-rate-limited drivers but allow transmit speeds up to 500kbps. The MAX3076E/MAX3077E/MAX3078E driver slew rates are not limited, making transmit speeds up to 16Mbps possible. The MAX3079E slew rate is pin selectable for 250kbps, 500kbps, and 16Mbps.

The MAX3072E/MAX3075E/MAX3078E are intended for half-duplex communications, and the MAX3070E/MAX3071E/MAX3073E/MAX3074E/MAX3076E/MAX3077E are intended for full-duplex communications. The MAX3079E is selectable for half-duplex or full-duplex operation. It also features independently programmable receiver and transmitter output phase through separate pins.

The MAX3070E-MAX3079E transceivers draw 800µA of supply current when unloaded or when fully loaded with the drivers disabled. All devices have a 1/8-unit load receiver input impedance, allowing up to 256 transceivers on the bus.
 

Data Sheet

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Key Features

  • 3.3V Operation
  • Electrostatic Discharge (ESD) Protection for RS-485 I/O Pins
    • ±15kV Human Body Model
  • True Fail-Safe Receiver While Maintaining EIA/TIA-485 Compatibility
  • Hot-Swap Input Structure on DE and RE-bar
  • Enhanced Slew-Rate Limiting Facilitates Error-Free Data Transmission (MAX3070E–MAX3075E/MAX3079E)
  • Low-Current Shutdown Mode (Except MAX3071E/MAX3074E/MAX3077E)
  • Pin-Selectable Full-/Half-Duplex Operation (MAX3079E)
  • Phase Controls to Correct for Twisted-Pair Reversal (MAX3079E)
  • Allow Up to 256 Transceivers on the Bus
  • Available in Industry-Standard 8-Pin SO Package
 

Applications/Uses

  • Industrial Control
  • Instrumentation
  • Lighting Systems
  • Security Systems
  • Telecom
   

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
MAX3070E  1Tx + 1Rx Full 3.3 0.8 250 15 Yes Yes 0.05 256
PDIP(N)/14
SOIC(N)/14
$1.90 @1k
MAX3071E  Full 250 No No -
PDIP(N)/8
SOIC(N)/8
$1.90 @1k
MAX3072E  Half 250 Yes Yes 0.05
PDIP(N)/8
SOIC(N)/8
$1.90 @1k
MAX3073E  Full 500 Yes Yes 0.05
PDIP(N)/14
SOIC(N)/14
$1.90 @1k
MAX3074E  Full 500 No No -
PDIP(N)/8
SOIC(N)/8
$1.90 @1k
MAX3075E  Half 500 Yes Yes 0.05
PDIP(N)/8
SOIC(N)/8
$1.90 @1k
MAX3076E  Full 16000 Yes Yes 0.05
PDIP(N)/14
SOIC(N)/14
$1.90 @1k
MAX3077E  Full 16000 No No -
PDIP(N)/8
SOIC(N)/8
$1.90 @1k
MAX3078E  Half 16000 Yes Yes 0.05
PDIP(N)/8
SOIC(N)/8
$1.90 @1k
MAX3079E  Half/Full 16000 Yes Yes 0.05
PDIP(N)/14
SOIC(N)/14
$1.90 @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

MAX3070E, MAX3071E, MAX3072E, MAX3073E, MAX3074E, MAX3075E, MAX3076E, MAX3077E, MAX3078E, MAX3079E: Pin Configurations and Typical Operating Circuits
Pin Configurations and Typical Operating Circuits

More Information

New Product Press Release 2003-01-28 ]

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Information Index

Document Ref.: 19-2668 Rev 2; 2009-09-23
This page last modified: 2009-09-23




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