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AD8131

Analog Devices

Low-Cost / High-Speed Differential Driver


AD8131
AD8131

PDF File AD8131 PDF File


Description
FEATURES High speed 400 MHz, −3 dB full power bandwidth 2000 V/μs slew rate Fixed gain of 2 with no external components Internal common-mode feedback to improve gain and phase balance: −60 dB @ 10 MHz Separate input to set the common-mode output voltage Low distortion: 68 dB SFDR @ 5 MHz 200 Ω load Power supply range +2.
7 V to ±5 V APPLICATIONS Video line driver Digital line driver Low power differential ADC driver Differential in/out level shifting Single-ended input to differential output driver GENERAL DESCRIPTION The AD8131 is a differential or single-ended input to differential output driver requiring no external components for a fixed gain of 2.
The AD8131 is a major advancement over op amps for driving signals over long lines or for driving differential input ADCs.
The AD8131 has a unique internal feedback feature that provides output gain and phase matching that are balanced to −60 dB at 10 MHz, reducing radiated EMI and suppressing harmonics.
Manufactured on the Analog Devices, Inc.
next generation XFCB bipolar process, the AD8131 has a −3 dB bandwidth of 400 MHz and delivers a differential signal with very low harmonic distortion.
The AD8131 is a differential driver for the transmission of high-speed signals over low-cost twisted pair or coax cables.
The AD8131 can be used for either analog or digital video signals or for other high-speed data transmission.
The AD8131 driver is capable of driving either Cat3 or Cat5 twisted pair or coax with minimal line attenuation.
The AD8131 has considerable cost and performance improvements over discrete line driver solutions.
The AD8131 can replace transformers in a variety of applications, preserving low frequency and dc information.
The AD8131 does not have the susceptibility to magnetic interference and hysteresis of transformers.
It is smaller, easier to work with, and has the high reliability associated with ICs.
Rev.
B Information furnished by Analog Devices is believed to be accurate and reliable.
However, no r...



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