Close

Search

Search Menu
Photonics Media Photonics Marketplace Photonics Spectra BioPhotonics Vision Spectra Photonics Showcase Photonics ProdSpec Photonics Handbook

InP-based Modulator

OpenLight PhotonicsRequest Info
 
Facebook Twitter LinkedIn Email
MOUNTAIN VIEW, Calif., March 10, 2023 — OpenLight’s 224 G InP-based modulator is designed for use with Tower Semiconductor’s PH18DA platform. This new 224 G modulator is integrated on a demonstration PIC with a heterogeneous integrated laser and other required silicon photonics components to enable a full transmitter. Fabricating these components on a heterogeneous SiPh platform enables significant gains in yield, decrease of production complexity, and improved performance. Datacom customers can now extend their multilane DR- and FR-based datacom designs to 224 G per wavelength, doubling overall speed without increasing PIC cost.


Photonics.com
Mar 2023
REQUEST INFO ABOUT THIS PRODUCT

* Message:
(requirements, questions for supplier)
Your contact information
* First Name:
* Last Name:
* Email Address:
* Company:
Address:
Address 2:
City:
State/Province:
Postal Code:
* Country:
Phone #:
Fax #:

Register or login to auto-populate this form:
Login Register
* Required

When you click "Send Request", we will record and send your personal contact information to OpenLight Photonics by email so they may respond directly. You also agree that Photonics Media may contact you with information related to this inquiry, and that you have read and accept our Privacy Policy and Terms and Conditions of Use.
ProductsmodulatorPICphotonic integrated circuitInP224GOpenLightTower SemiconductorPH18DAAmericassilicon photonics

back to top
Facebook Twitter Instagram LinkedIn YouTube RSS
©2023 Photonics Media, 100 West St., Pittsfield, MA, 01201 USA, [email protected]

Photonics Media, Laurin Publishing
x We deliver – right to your inbox. Subscribe FREE to our newsletters.
We use cookies to improve user experience and analyze our website traffic as stated in our Privacy Policy. By using this website, you agree to the use of cookies unless you have disabled them.