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NB3N206S - 3.3 V Differential Multipoint Low Voltage M-LVDS Driver Receiver

This page provides the datasheet information for the NB3N206S, a member of the NB3N201S 3.3 V Differential Multipoint Low Voltage M-LVDS Driver Receiver family.

Datasheet Summary

Description

The NB3N20xS Series are pure 3.3 V supply differential Multipoint Low Voltage (M

LVDS) line Drivers and Receivers.

899 compliant.

NB3N201S offers the Type 1 receiver threshold at 0.0 V.

NB3N206S offers the Type 2 receiver threshold at 0.1 V.

Features

  • Low.
  • Voltage Differential 30 W to 55 W Line Drivers and Receivers for Signaling Rates Up to 200 Mbps.
  • Type.
  • 1 Receivers Incorporate 25 mV of Hysteresis.
  • Type.
  • 2 Receivers Provide an Offset (100 mV) Threshold to Detect Open.
  • Circuit and Idle.
  • Bus Conditions.
  • Meets or Exceeds the M.
  • LVDS Standard TIA/EIA.
  • 899 for Multipoint Data Interchange.
  • Controlled Driver Output Voltage Transition Times for Improved.

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Datasheet preview – NB3N206S

Datasheet Details

Part number NB3N206S
Manufacturer ON Semiconductor
File Size 293.01 KB
Description 3.3 V Differential Multipoint Low Voltage M-LVDS Driver Receiver
Datasheet download datasheet NB3N206S Datasheet
Additional preview pages of the NB3N206S datasheet.
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Full PDF Text Transcription

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NB3N201S, NB3N206S 3.3 V Differential Multipoint Low Voltage M-LVDS Driver Receiver Description The NB3N20xS Series are pure 3.3 V supply differential Multipoint Low Voltage (M−LVDS) line Drivers and Receivers. Devices NB3N201S and NB3N206S are TIA/EIA−899 compliant. NB3N201S offers the Type 1 receiver threshold at 0.0 V. NB3N206S offers the Type 2 receiver threshold at 0.1 V. These devices have Type−1 and Type−2 receivers that detect the bus state with as little as 50 mV of differential input voltage over a common−mode voltage range of −1 V to 3.4 V. The Type−1 receivers have near zero thresholds (±50 mV) and exhibit 25 mV of differential input voltage hysteresis to prevent output oscillations with slowly changing signals or loss of input.
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