Electronics Maker
  • Home
  • Electronics News
  • Articles
  • Magazine
  • Events
  • Interview
  • Electronics Projects
No Result
View All Result
  • Home
  • Electronics News
  • Articles
  • Magazine
  • Events
  • Interview
  • Electronics Projects
No Result
View All Result
Electronics Maker
No Result
View All Result
Home Electronics News

Analog Devices Clock Jitter Attenuator Optimizes JESD204B Serial Interface Functionality in Base Station Designs

Electronics Maker by Electronics Maker
October 6, 2015
in Electronics News
0
0
SHARES
24
VIEWS
Share on FacebookShare on Twitter

Bangalore, September 29, 2015 – Analog Devices, Inc. introduced a high-performance clock jitter attenuator designed to support the JESD204B serial interface standard for connecting high-speed data converters and field-programmable gate arrays (FPGAs) operating in base station designs. The JESD204B interface was specifically developed to address high-data rate system design needs, and the 3.2-GHz HMC7044 clock jitter attenuator contains functions that support and enhance the unique capabilities of that interface standard. The HMC7044 delivers 50-fs jitter performance, which improves the signal-to-noise ratio and dynamic range of high-speed data converters, and the device provides 14 low-noise and configurable outputs that provide flexibility in interfacing with many different components. The HMC7044 also offers a wide range of clock management and distribution features that make it possible for designers of base stations to build an entire clock design with a single device.

ADI HMC7044In base stations applications there are many serial JESD204B data converter channels that require their data frames to be aligned with an FPGA. The HMC7044 clock jitter attenuator simplifies JESD204B system design by generating source-synchronous and adjustable sample and frame alignment (SYSREF) clocks in a data converter system. The device features two phase-locked loops (PLLs) and overlapping, on-chip, voltage-controlled oscillators (VCOs). The first PLL locks a low-noise, local voltage-controlled clock oscillator (VCXO) to a relative noisy reference, while the second PLL multiplies the VCXO signal up to the VCO frequency with exceptionally little added noise. For cellular infrastructure JESD204B clock generation, wireless infrastructure, data converter clocking, microwave baseband cards and other high-speed communications applications, the architecture of the HMC7044 offers excellent frequency generation performance with low phase noise and integrated jitter.

HMC7044 Clock Jitter Attenuator Key Features

  • JEDEC JESD204B support
  • Ultra-low RMS jitter: 50 fs (12 KHz to 20 MHz, typical)
  • Noise floor: -162 dBc/Hz at 245.76 MHz
  • Low phase noise: < -142 dBc/Hz at 800 kHz to 983.04 MHz output frequency
  • Up to 14 device differential device clocks from PLL2
  • External VCO input supports up to 5 GHz
  • On-board regulators for excellent PSRR
Tags: Semiconductor & IC
Electronics Maker

Electronics Maker

Subscribe Newsletter

Subscribe to our mailing list to receives daily updates direct to your inbox!

*we hate spam as much as you do

Electronics Maker

It is a professionally managed electronics print media with highly skilled staff having experience of this respective field.

Subscribe Newsletter

Subscribe to our mailing list to receives daily updates direct to your inbox!

*we hate spam as much as you do

Quick Links

  • »   Electronics News
  • »   Articles
  • »   Magazine
  • »   Events
  • »   Interview
  • »   About Us
  • »   Contact Us

Contact Us

EM Media LLP
  210, II nd Floor, Sager Plaza – 1, Road No-44,, Plot No-16, Pitampura, New Delhi - 110034
  01145629941
  info@electronicsmaker.com
  www.electronicsmaker.com

  • Advertise with Us
  • Careers
  • Terms Of Use
  • Privacy Policy
  • Disclaimer
  • Cookie Policy

© 2020 Electronics Maker. All rights reserved.

No Result
View All Result
  • Home
  • Electronics News
  • Articles
  • Magazine
  • Events
  • Interview
  • Electronics Projects

© 2020 Electronics Maker. All rights reserved.