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Texas Instruments-86010012A Inverters and Schmitt Triggers Inverter 6-Element CMOS 20-Pin CLLCC Tube
Integrated Circuits (ICs)

AM26LS31MFKB

Active
Texas Instruments

QUAD TRANSMITTER RS-422 20-PIN CLLCC TUBE

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Texas Instruments-86010012A Inverters and Schmitt Triggers Inverter 6-Element CMOS 20-Pin CLLCC Tube
Integrated Circuits (ICs)

AM26LS31MFKB

Active
Texas Instruments

QUAD TRANSMITTER RS-422 20-PIN CLLCC TUBE

Technical Specifications

Parameters and characteristics for this part

SpecificationAM26LS31MFKB
Mounting TypeSurface Mount
Number of Drivers/Receivers [custom]4
Number of Drivers/Receivers [custom]0
Operating Temperature [Max]125 °C
Operating Temperature [Min]-55 °C
Package / Case20-CLCC
ProtocolRS422, RS485
Supplier Device Package20-LCCC (8.89x8.89)
TypeDriver
Voltage - Supply [Max]5.5 V
Voltage - Supply [Min]4.5 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
Texas InstrumentsTUBE 1$ 74.28
100$ 66.02
250$ 54.27
1000$ 48.55

Description

General part information

AM26LS31M Series

The AM26LS31CN-E family of devices is a quadruple complementary-output line driver designed to meet the requirements of ANSI TIA/EIA-422-B and ITU (formerly CCITT) Recommendation V.11. The 3-state outputs have high-current capability for driving balanced lines such as twisted-pair or parallel-wire transmission lines, and are in the high-impedance state in the power-off condition. The enable function is common to all four drivers and offers the choice of an active-high or active-low enable (G, G) input. Low-power Schottky circuitry reduces power consumption without sacrificing speed.

The AM26LS31CN-E family of devices is a quadruple complementary-output line driver designed to meet the requirements of ANSI TIA/EIA-422-B and ITU (formerly CCITT) Recommendation V.11. The 3-state outputs have high-current capability for driving balanced lines such as twisted-pair or parallel-wire transmission lines, and are in the high-impedance state in the power-off condition. The enable function is common to all four drivers and offers the choice of an active-high or active-low enable (G, G) input. Low-power Schottky circuitry reduces power consumption without sacrificing speed.