We Are:
At Synopsys, we drive the innovations that shape the way we live and connect. Our technology is central to the Era of Pervasive Intelligence, from self-driving cars to learning machines. We lead in chip design, verification, and IP integration, empowering the creation of high-performance silicon chips and software content. Join us to transform the future through continuous technological innovation.
You Are:
You are a passionate and experienced Analog Design Engineer with a deep understanding of CMOS technologies and a strong background in analog and mixed-signal block design. You thrive in a collaborative environment and are eager to work on cutting-edge high-speed SerDes products. You possess excellent problem-solving skills and can communicate effectively in English. You are familiar with IC design packages and UNIX operating systems. Ideally, you have specialized in Electronics and have hands-on experience with high-speed SERDES such as Drivers, Receivers, Clocking, PLL, DLL, and CDR. You are motivated by the challenge of developing high-speed analog integrated circuits and are ready to contribute to a dynamic, multicultural, and cross-functional design team.
What You’ll Be Doing:
-
Developing and/or validating analog circuits considering electrical specifications and reliability constraints.
-
Documenting simulation results and analyzing performance.
-
Evaluating the impact of parasitic effects related to layout implementations and working with the layout team to minimize such effects, improving performance, power, and area.
-
Defining and planning analog design activities for high-speed SerDes products.
-
Collaborating with a global team of engineers to integrate and verify design solutions.
-
Continuously learning and applying the latest advancements in FinFET/GAA process nodes to enhance design efficiency.
The Impact You Will Have:
-
Contributing to the development of high-speed SerDes products that enable high-performance chip-to-chip communications.
-
Enhancing the performance, power efficiency, and reliability of analog integrated circuits in advanced CMOS technologies.
-
Supporting the integration of more capabilities into System-on-Chip (SoC) designs, accelerating time-to-market for innovative products.
-
Driving advancements in key markets such as Mobile, Automotive, Cloud Computing, HPC, AI, IoT, and 5G.
-
Collaborating with a diverse team to solve complex design challenges and deliver cutting-edge solutions.
-
Shaping the future of technology through continuous innovation and excellence in analog design.
What You’ll Need:
-
Good understanding of CMOS technologies and analog circuit design principles.
-
Strong analysis, problem-solving, and organizational skills.
-
Experience in analog and mixed-signal block design, with a focus on high-speed SERDES.
-
Proficiency in documenting and analyzing simulation results.
-
Familiarity with IC design packages and UNIX operating systems.
Who You Are:
-
A collaborative team player who thrives in a global, multicultural environment.
-
An effective communicator with strong written and verbal skills in English.
-
A proactive and self-motivated individual with a passion for innovation and continuous learning.
-
An analytical thinker with the ability to tackle complex design challenges and find creative solutions.
-
A detail-oriented engineer who values precision and accuracy in their work.
The Team You’ll Be A Part Of:
You will be a part of a fast-growing analog and mixed-signal R&D team, dedicated to developing high-speed analog integrated circuits in the most advanced FinFET/GAA process nodes. You’ll interact with a global, dynamic, multi-cultural, and cross-functional design team, collaborating with experts in various fields to create innovative solutions for high-speed communications.
Rewards and Benefits:
We offer a comprehensive range of health, wellness, and financial benefits to cater to your needs. Our total rewards include both monetary and non-monetary offerings. Your recruiter will provide more details about the salary range and benefits during the hiring process.