Keysight Technologies Unveils a Game-Changing Optical Transmitter
Keysight Technologies, Inc. (NYSE: KEYS), a leader in design and testing solutions, has introduced its impressive N7718C Optical Reference Transmitter. This groundbreaking device is crafted specifically for high-speed optical testing, representing a substantial advancement in the assessment of sophisticated optical receivers. Its focus is on achieving data rates of up to 200G-per-lane transmission, which addresses the increasing demands of contemporary high-speed data communications.
Addressing the Evolving Needs of Data Centers
As technology progresses—especially in areas like artificial intelligence and machine learning—data centers require improved throughput capabilities. The N7718C Optical Reference Transmitter is perfectly timed for manufacturers looking to adapt. It guarantees their optical transceivers and interconnect solutions can meet new industry standards, including IEEE 802.3dj. This advanced transmitter facilitates thorough compliance validation and interoperability testing for data rates that exceed 200Gbit/s per lane, paving the way for the future of data communications.
Cutting-Edge Features for Comprehensive Testing
The N7718C is powered by the well-respected M8050 series Bit Error Ratio Tester (BERT). This dynamic duo allows it to generate both clean and stressed signals essential for rigorous optical receiver testing. The device supports transmission rates of up to 120 GBd per lane and demonstrates versatility by creating various signal waveforms, such as NRZ, PAM4, PAM6, and PAM8. When combined with the Keysight M8199B Arbitrary Waveform Generator, it can even handle testing for 400Gbit/s per lane transmission.
User-Friendly Operation with Versatile Options
The design of the device prioritizes user efficiency, featuring a modulator with automated bias control alongside compatibility for standard drive signals. This setup maintains consistent performance amid different testing environments. Additionally, the Optical Reference Transmitter includes flexible optical input options, such as a built-in DFB laser and support for tunable lasers. This adaptability ensures it can meet a wide range of testing requirements and wavelength specifications.
Advancing Optical Receiver Testing
As a vital part of Keysight's N4917DJCA Optical Receiver Stress Test solution, the Optical Reference Transmitter collaborates with the M8050A Bit Error Ratio Tester. This teamwork imitates a 120 GBd optical transmitter, enabling customers to validate their optical receivers under varying conditions. Such scenarios include assessing optical extinction ratios and stress factors like noise and jitter.
Breakthroughs in Optical Testing Technology
Armin Loeffler, the Director of Broadband & Photonics Business Segment at Keysight, shared insights on how the new Optical Reference Transmitter represents a major advancement in testing technology. He highlighted its low Vpi, which effectively reduces the need for RF amplifiers, thereby cutting down on jitter and noise during testing. The automated bias control is a significant improvement, as it prevents unnecessary variations at the quadrature point, helping to maintain a clean signal spectrum.
Availability and Future Innovations
The Optical Reference Transmitter, which operates within the O-band and features a 1310 nm DFB laser, is now available for customers, with additional configurations expected to be launched soon. This introduction highlights Keysight's steadfast commitment to fostering innovation in high-speed optical communications.
Financial Performance and Looking Ahead
In recent financial updates, Keysight Technologies announced impressive Q3 results, with revenues hitting $1.2 billion and an earnings per share (EPS) of $1.57, both exceeding expectations. Furthermore, the company has rolled out the InfiniiVision HD3 Series oscilloscope to address signal challenges across various applications. Keysight is also poised to broaden its market presence through potential mergers and acquisitions to fortify its position.
Analyst Confidence and Future Price Targets
Prominent analysts from Deutsche Bank, Baird, and Goldman Sachs are showing strong confidence in Keysight's future. Deutsche Bank has raised its price target from $163 to $175 while maintaining a Buy rating. Baird has adjusted its target from $160 to $163, and Goldman Sachs continues to support a Buy rating with a steady price target of $181. These perspectives underline analysts' trust in Keysight’s growth potential.
Showcasing Innovations at Industry Events
Keysight Technologies is prepared to display cutting-edge solutions for advancing AI infrastructure at the upcoming European Conference on Optical Communication (ECOC). During this event, the company will unveil innovative optical test solutions, including progress in testing photonic integrated circuits and validating 800G linear optics via the AresOne platform. These initiatives illustrate Keysight's strategic positioning in the competitive technology landscape, showcasing its unwavering dedication to delivering valuable solutions and maintaining investors' confidence.
Frequently Asked Questions
What is the purpose of the N7718C Optical Reference Transmitter?
The N7718C is specifically designed for high-speed optical testing, especially for standards involving 200G-per-lane transmission.
How does the N7718C accommodate advanced data rates?
It supports data rates that exceed 200Gbit/s per lane, ensuring compliance with new emerging standards like IEEE 802.3dj.
What are the testing capabilities offered by the N7718C?
This device can create various signal waveforms and produce both clean and stressed signals for comprehensive optical receiver testing.
What has been Keysight Technologies’ recent financial performance?
Keysight's recent reports show revenues of $1.2 billion and an EPS of $1.57, both surpassing expectations in the latest quarterly analysis.
Which upcoming events will Keysight attend?
Keysight is set to present its solutions at the European Conference on Optical Communication (ECOC), featuring innovations in optical communications.