CDCL6010EVM evaluation module for CDCL6010 which is a 1:11 high-performance, low phase noise clock synthesizer

Texas Instruments の部品 CDCL6010 を使用したリファレンス デザイン

メーカー

Texas Instruments
  • アプリケーションカテゴリ
    時計とタイミング
  • 製品タイプ
    PLLクロックジェネレータ

最終製品向け

  • Clock and Timing Devices

説明

  • CDCL6010EVM, is an evaluation module designed to aid in evaluating the performance of the CDCL6010, which is a 1:11 high-performance, low phase noise clock synthesizer that synchronizes its on-chip voltage controlled oscillator (VCO) frequency to an external reference clock, generates low phase noise (jitter) clock. The PLL loop bandwidth and damping factor can be modified by changing the on-board passive loop filter components to meet different system requirements. The input divider, feedback divider and output dividers are done through the programming interface. As the system requires external components like a microcontroller to aid in programming the device and a very clean power supply for the device, this EVM provides an excellent way to evaluate and modify the performance and parameters of the clock system in conjunction with the specific customer application

主な特徴

  • Output Frequency
    30 to 325 MHz

We've updated our privacy policy. Please take a moment to review these changes. By clicking I Agree to Arrow Electronics Terms Of Use  and have read and understand the Privacy Policy and Cookie Policy.

Our website places cookies on your device to improve your experience and to improve our site. Read more about the cookies we use and how to disable them here. Cookies and tracking technologies may be used for marketing purposes.
By clicking “Accept”, you are consenting to placement of cookies on your device and to our use of tracking technologies. Click “Read More” below for more information and instructions on how to disable cookies and tracking technologies. While acceptance of cookies and tracking technologies is voluntary, disabling them may result in the website not working properly, and certain advertisements may be less relevant to you.
We respect your privacy. Read our privacy policy here