NewPhotonics Unveils Advanced 1.6Tbps Optical Transmitter Chip
Innovative Optical Transmitter Technology for AI Data Centers
NewPhotonics Ltd., a pioneer in integrated photonics technologies, has recently announced the introduction of its groundbreaking NPG102 transmitter-on-chip (TOC). This advanced component is designed to support data rates of up to 1.6 Tbps, tailored specifically for digital signal processing (DSP)-based optical modules. With the increasing demands on data centers, particularly those driven by AI-related workloads, this innovative chip promotes low latency data transmission coupled with efficient power consumption.
Enhanced Performance with Integrated Components
The NPG102 transmitter incorporates a sophisticated design featuring an octal channel configuration, auto-tunable lasers, and a 224 Gbps PAM4 modulation scheme. This combination ensures that the overall bandwidth meets the stringent requirements of modern data processing, achieving enhanced electrical-to-optical signal transmission. Furthermore, the device includes an internal analog-to-digital converter and digital-to-analog converter, aiding channel control and monitoring, all while maintaining a low power usage of only 2.9 watts.
Streamlining Time to Market with Innovative Design
An essential aspect of the NPG102's design is its suitability for pluggable OSFP modules. The monolithically integrated lasers and modulators enhance system integration through advanced techniques like wafer-level laser alignment and integrated direct modulation. This results in significant improvements in OEM manufacturing processes, enabling quicker yield maturation and reducing time to market for transceiver module deployment.
Industry Vision on Future Data Center Infrastructure
Doron Tal, the senior vice president and general manager of Optical Connectivity at NewPhotonics, emphasized the urgency for data centers to enhance their infrastructure to accommodate AI-driven workloads. "As global data centers seek to upgrade their technology to improve AI workload performance, the entire industry landscape is searching for innovative solutions that provide quicker and more energy-efficient data processing capabilities," he stated. The introduction of the NPG102 represents a significant step toward achieving higher capacity and more sustainable optical connectivity within these facilities.
Availability of the NPG102 Transmitter Module
The new NPG102 PIC transmitter-on-chip is poised for sampling and will be available during the second quarter of 2025, allowing system designers and data center operators ample time to integrate this revolutionary technology into their infrastructures.
About NewPhotonics Ltd.
Operating as a fabless semiconductor company, NewPhotonics specializes in the design and development of photonic integrated circuit (PIC) solutions aimed at optimizing optical communications in data centers for the evolving AI era. The NPG102 family of transmitter-on-chip solutions showcases their commitment to providing low-latency and energy-efficient optical transceiver modules that significantly improve connectivity. With a focus on breaking down barriers in optical input/output technologies, NewPhotonics is operating from Tel Aviv.
Frequently Asked Questions
What is the primary feature of the NPG102 transmitter-on-chip?
The NPG102 is capable of transmitting data at rates up to 1.6 Tbps, designed specifically for high-efficiency optical modules.
How does the NPG102 contribute to AI data center infrastructure?
This transmitter enhances data communication with lower latency and reduced power consumption, addressing growing AI workload demands.
What kind of modules is the NPG102 designed for?
The NPG102 is designed for pluggable OSFP modules, promoting superior system integration and efficiency.
When will the NPG102 transmitter be available?
The NPG102 is expected to be available for sampling in the second quarter of 2025.
What is the mission of NewPhotonics Ltd.?
NewPhotonics aims to develop innovative solutions that optimize optical communications, enhancing speed and energy efficiency in the AI data center landscape.
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