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Home > products > Flash Memory IC Chip > ADS42JB46IRGCR Data Converter IC ADC ADC Dual-CH 14-bit 160-MSPS ADC

ADS42JB46IRGCR Data Converter IC ADC ADC Dual-CH 14-bit 160-MSPS ADC

manufacturer:
Manufacturer
Description:
Bit Analog to Digital Converter Input 64-VQFN (9x9)
Category:
Flash Memory IC Chip
Price:
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Payment Method:
Paypal, Western Union, TT
Specifications
Packaging:
Reel
Unit Weight:
0.008021 Oz
Manufacturer:
Texas Instruments
Product Category:
Analog To Digital Converters - ADC
Mounting Style:
SMD/SMT
Package / Case:
VQFN-64
Highlight:

dac integrated circuit

,

da converter chip

Introduction

ADS42JB46IRGCR Data Converter IC ADC ADC Dual-CH 14-bit 160-MSPS ADC

 

1 Features

  • Dual-Channel ADCs
  • 14-Bit Resolution

  • Maximum Clock Rate: 160 MSPS

  • JESD204B Serial Interface

    • – Subclass 0, 1, 2 Compliant

    • – Up to 3.125 Gbps

    • – Two- and Four-Lane Support

  • Analog Input Buffer with High-Impedance Input

 

2 Applications

• Communication and Cable Infrastructure
• Multi-Carrier, Multimode Cellular Receivers • Radar and Smart Antenna Arrays
• Broadband Wireless
• Test and Measurement Systems
• Software-Defined and Diversity Radios
• Microwave and Dual-Channel I/Q Receivers

• Repeaters
• Power Amplifier Linearization

  • Flexible Input Clock Buffer: Divide-by-1, -2, and -4

  • Differential Full-Scale Input: 2 VPP and 2.5 VPP (Register Programmable)

  • Package: 9-mm × 9-mm QFN-64

  • Power Dissipation: 679 mW/Ch

  • Aperture Jitter: 85 fS rms

  • Internal Dither

  • Channel Isolation: 100 dB

  • Performance:

 

3 Description

The ADS42JB46 is a high-linearity, dual-channel, 14- bit, 160-MSPS, analog-to-digital converter (ADC). This device supports the JESD204B serial interface with data rates up to 3.125 Gbps. The buffered analog input provides uniform input impedance across a wide frequency range while minimizing sample-and-hold glitch energy, thus making driving analog inputs up to very high input frequencies easy. A sampling clock divider allows more flexibility for system clock architecture design. The device employs internal dither algorithms to provide excellent spurious-free dynamic range (SFDR) over a large input frequency range.

 

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