Crystal Oscillators for Optical Transceiver Modules: Compliant with SFP-type Optical Module Requirements

2021-08-19
●Diodes Incorporated’s crystal oscillators are being used at the forefront of the optical module industry in the most advanced optical transceivers in production.
●The UFxxF620xZ family of ultra-low jitter crystal oscillators support the latest SFP-type optical modules. Having jitter specifications of < 60fs typical and 90fs max, they enable faster synchronization and error-free performance.
●Diodes Incorporated combines decades of proprietary design and manufacturing expertise with vertical supply chain integration to provide performance, reliability, and delivery value not available from any other manufacturer.
●This product line is an ideal clock solution for the industry’s growing demand for optical communications in data centers, servers, storage, and network applications.
●THE DIODES ADVANTAGE
■Optical Transceiver Compliant Crystal Oscillator Family
▲Frequency range: 125MHz~170MHz
◆Supports various system design requirements and data rates
▲Power supply voltages: 2.5V to 3.3V
◆Provides flexible support for system supply design
▲Low RMS jitter: < 60fs typical, 90fs max
◆Enables faster synchronization and error-free performance
▲Various packages: 3.2mm x 2.5mm, 2.5mm x 2.0mm
◆Supports PCB layout flexibility and miniaturization
▲Low power consumption: 50mA for LVPECL, 25mA for LVDS
◆Meets different chipset interface requirements with minimum current

DIODES

UFx3F620xZUFx2F620xZUF33F6202ZUF23F6203ZUF32F6204ZUF22F6201ZUF33F6201ZUFxxF620xZ

More

Part#

Crystal Oscillators

More

data centers ]servers ]storage ]network applications ]Optical transceiver modules ]Fiber optic networking equipment ]Silicon photonics ]112G serial applications ]

More

Datasheet

More

More

Please see the document for details

More

More

English Chinese Chinese and English Japanese

August 2021

571 KB

- The full preview is over,the data is 2 pages -
  • +1 Like
  • Add to Favorites

Recommend

All reproduced articles on this site are for the purpose of conveying more information and clearly indicate the source. If media or individuals who do not want to be reproduced can contact us, which will be deleted.

Contact Us

Email: