DS26F31MQML-SP

ACTIVE

Quad High Speed Differential Line Drivers

DS26F31MQML-SP

ACTIVE

Product details

Number of receivers 0 Number of transmitters 4 Duplex Half Supply voltage (nom) (V) 5 Signaling rate (max) (Mbps) 10 IEC 61000-4-2 contact (±V) None Common-mode range (V) -6 to 6 Number of nodes 10 Isolated No Supply current (max) (µA) 40000 Rating Space Operating temperature range (°C) -55 to 125
Number of receivers 0 Number of transmitters 4 Duplex Half Supply voltage (nom) (V) 5 Signaling rate (max) (Mbps) 10 IEC 61000-4-2 contact (±V) None Common-mode range (V) -6 to 6 Number of nodes 10 Isolated No Supply current (max) (µA) 40000 Rating Space Operating temperature range (°C) -55 to 125
CFP (NAD) 16 62.9285 mm² 9.91 x 6.35
  • Operation from Single +5.0V Supply
  • Outputs Won't Load Line When VCC = 0V
  • Output Short Circuit Protection
  • Meets the Requirements of EIA Standard RS-422
  • High Output Drive Capability for 100Ω Terminated Transmission Lines

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  • Operation from Single +5.0V Supply
  • Outputs Won't Load Line When VCC = 0V
  • Output Short Circuit Protection
  • Meets the Requirements of EIA Standard RS-422
  • High Output Drive Capability for 100Ω Terminated Transmission Lines

All trademarks are the property of their respective owners.

The DS26F31M is a quad differential line driver designed for digital data transmission over balanced lines. The DS26F31M meets all the requirements of EIA Standard RS-422 and Federal Standard 1020. It is designed to provide unipolar differential drive to twisted-pair or parallel-wire transmission lines.

The DS26F31M offers improved performance due to the use of state-of-the-art L-FAST bipolar technology. The L-FAST technology allows for higher speeds and lower currents by utilizing extremely short gate delay times. Thus, the DS26F31M features lower power, extended temperature range, and improved specifications.

The circuit provides an enable and disable function common to all four drivers. The DS26F31M features TRI-STATE outputs and logical OR-ed complementary enable inputs. The inputs are all LS compatible and are all one unit load.

The DS26F31M offers optimum performance when used with the DS26F32 Quad Differential Line Receiver.

The DS26F31M is a quad differential line driver designed for digital data transmission over balanced lines. The DS26F31M meets all the requirements of EIA Standard RS-422 and Federal Standard 1020. It is designed to provide unipolar differential drive to twisted-pair or parallel-wire transmission lines.

The DS26F31M offers improved performance due to the use of state-of-the-art L-FAST bipolar technology. The L-FAST technology allows for higher speeds and lower currents by utilizing extremely short gate delay times. Thus, the DS26F31M features lower power, extended temperature range, and improved specifications.

The circuit provides an enable and disable function common to all four drivers. The DS26F31M features TRI-STATE outputs and logical OR-ed complementary enable inputs. The inputs are all LS compatible and are all one unit load.

The DS26F31M offers optimum performance when used with the DS26F32 Quad Differential Line Receiver.

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Technical documentation

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Type Title Date
* Data sheet DS26F31MQML Quad High Speed Differential Line Drivers datasheet (Rev. A) 15 Apr 2013
* SMD DS26F31MQML-SP SMD 5962F7802302VFA 21 Jun 2016
* Radiation & reliability report DS26F31MQML-SP Total Ionizing Dose (TID) Report 09 May 2012
Application brief DLA Approved Optimizations for QML Products (Rev. B) PDF | HTML 23 Oct 2024
Selection guide TI Space Products (Rev. J) 12 Feb 2024
More literature TI Engineering Evaluation Units vs. MIL-PRF-38535 QML Class V Processing (Rev. A) 31 Aug 2023
Application note Heavy Ion Orbital Environment Single-Event Effects Estimations (Rev. A) PDF | HTML 17 Nov 2022
Application note Single-Event Effects Confidence Interval Calculations (Rev. A) PDF | HTML 19 Oct 2022
Application brief Space-Grade, 100-krad, Isolated Serial Peripheral Interface (SPI) RS-422 Circuit PDF | HTML 30 Jun 2021
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E-book Radiation Handbook for Electronics (Rev. A) 21 May 2019

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