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DS90LV048ATMTCX
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DS90LV048ATMTCX

  • Category:Bus transceiver
  • Product Name:3V quad LVDS CMOS differential line receiver
  • Manufacturers:NSC
  • Production Batch Number:09+08+
  • Encapsulation:TSSOP-16P
  • Stock Status:There is stock
  • Stock Quantity:2850
  • Minimum order quantity: 1
  • Details:Click here to find PDF information on the DS90LV048ATMTCX
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  • Product introduction

peculiarity

  • "400 Mbps (200 MHz) switching rate
  • Streams through pins to simplify PCB layout
  • 150 ps channel-to-channel skew (typical)
  • 100 ps differential offset (typical)
  • Maximum propagation delay of 2.7 ns
  • 3.3V power supply design
  • High impedance power reduction LVDS input
  • Low Power Design (40mW@3.3V Static)
  • Interoperates with existing 5V LVDS drivers
  • Accepts a small swing (typical 350 mV) differential signal level
  • Supports open, short, and stop input fail-safe
  • Critical section from 0V to -100mV
  • For compliance with standard ANSI/TIA/EIA-644
  • Industrial temperature operating range (-40 °C to +85°C)
  • Available in SOIC and TSSOP packages

illustrate

The DS90LV048A is a quad CMOS flow-through differential line receiver designed for applications requiring ultra-low power consumption and high data rates. The device is designed to support excess data rates at 400 Mbps (200 MHz) utilizing Low Voltage Differential Signaling (LVDS) technology.

The DS90LV048A accepts low voltage (350 mV typical) differential input signals and converts them to a 3V CMOS output level. The receiver supports a tri-state ® function that can be used for multiple outputs. The receiver also supports open, short, and stop (100 Enter failsafe. The output of the receiver will be high in all fail-safe conditions. There is a flowing DS90LV048A through pinouts for easy PCB layout.

* The EN and EN inputs are phased together to control the three-state output. This concession is used for all four receivers. The DS90LV048A and accompanying LVDS line drivers such as the DS90LV047A provide a new alternative to high-power PECL electro/electrochemiluminescence high-speed point-to-point interface applications.

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