Chip Talk > Energizing the Semiconductor Industry with Faraday’s Latest 10G SerDes IP
Published June 24, 2025
In the fast-evolving world of semiconductor design and manufacturing, innovation is a driving force behind meeting the ever-growing demands of various industries. A recent development in this sector comes from Faraday Technology Corporation, a renowned ASIC design service and IP provider. They have announced the availability of their latest 10G SerDes IP on UMC’s 22nm process technology, promising to enhance high-speed data transmission for a multitude of applications.
Faraday's latest announcement details their 10G SerDes (Serializer/Deserializer) IP's compliance with a broad array of industry-standard protocols, including PCIe Gen1/2/3, USB 3.2 Gen1/2, and xPON standards. This wide-ranging compatibility ensures that the IP can be integrated seamlessly into various systems requiring reliable high-speed data communication. One significant aspect of this development is its optimization for industries such as industrial automation, AIoT (Artificial Intelligence of Things), telecommunications with 5G modems, fiber-to-the-home (FTTH), and advanced networking solutions.
An attractive feature of the 10G SerDes IP is its compatibility with several passive optical network (PON) technologies like 10G-EPON, EPON, XGPON, XGSPON, and GPON. This makes it particularly suitable for integration into optical network unit (ONU) designs, which are fundamental in modern optical communication systems. By supporting such a comprehensive range of protocols, Faraday allows businesses to create products that can adapt to evolving standards, providing both flexibility and future-proofing for long-term strategy.
Faraday's strategy incorporates two vital components: robust, high-performance designs and extensive customization services. Customers can benefit from Faraday’s comprehensive IP customization and design services, which include subsystem integration, hardcore implementation, and signal/power integrity analysis at both package and PCB levels. Such services not only enhance the robustness of the product but also mitigate integration risks, a critical benefit in the competitive technology sector.
Additionally, Faraday aims to expedite the design process and reduce time-to-market with their holistic IP management system. This system ensures high-quality standards are maintained through meticulous monitoring of each development step, starting from initial formulation to database packaging, releasing, and controlling versions. These careful measures contribute to managing early-stage risks, equipping products to meet market demands efficiently and effectively.
This latest IP release signifies more than just a technological advancement; it highlights a trend within the semiconductor industry towards more integrated and high-performance solutions designed to meet specific market needs. As we move further into an era dominated by AIoT and 5G technologies, such IP advancements provide the necessary tools and frameworks for developing technology that can handle the increased data demands these innovations will bring.
Flash Lin, COO of Faraday Technology, emphasizes the importance of these developments in meeting market expectations for performance, cost-efficiency, and rapid deployment. As industries continue to transition into more automated and connected systems, Faraday's offerings represent a crucial step in enabling these transitions smoothly.
For more details on this development, you can read the full press release from Faraday here.
In conclusion, Faraday Technology Corporation's delivery of the 10G SerDes IP on UMC’s 22nm platform is a significant stride in semiconductor technology. This breakthrough not only meets the current high-speed data transmission needs but also sets the stage for future innovations. As companies increasingly adopt this IP for various applications, the potential for groundbreaking developments in networking and communications technology grows, bringing us closer to realizing the full capabilities of the AIoT and 5G revolutions.
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