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Analog Design Intern - Master's Degree (Quarter Schools / Fall 2026 Start Dates)

External
Marvell logoMarvell · Westlake Village, CA
Full-timeOn-site3w ago
CADDocumentationFiberLessLinear
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Requirements

  • Candidate must be pursuing an MS or PhD in electrical engineering with an emphasis on analog/mixed signal IC design
  • Proven experience in high-performance receiver design including both chip tape-out and lab evaluation
  • Solid experience in: Using EDA CAD tools
  • Performing Analog Custom Layout
  • Experience in measuring IC performance and debug of design to correlate simulations to measurements
  • Deep understanding of fundamentals, including: Detailed transistor level design
  • Device physics
  • Control/Feedback loop stability analysis
  • Direct project experience in at least one of the following areas is a plus: Automatic gain-control loops
  • High precision analog circuits including linear regulators, current sensors, bandgaps, and DAC/ADC
  • Continuous-time linear equalizers
  • Experience in Package-System integration issues is desired
  • Project experience in using different technologies (SiGe BiCMOS and FinFET CMOS are pluses)
  • A team-player with strong communication, presentation, and documentation skills
  • Expected Base Pay Range (USD)
  • 39 - 76, $ per hour.
  • The successful candidate's starting base pay will be determined based on job-related skills, experience, qualifications, work location and market conditions. The expected base pay range for this role may be modified based on market conditions.
  • Additional Compensation and Benefit Elements
  • All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, national origin, sexual orientation, gender identity, disability or protected veteran status.
  • Any applicant who requires a reasonable accommodation during the selection process should contact Marvell HR Helpdesk at TAOps@marvell.com .
  • Interview Integrity
  • To support fair and authentic hiring practices, candidates are not permitted to use AI tools (such as transcription apps, real-time answer generators like ChatGPT or Copilot, or automated note-taking bots) during interviews.
  • These tools must not be used to record, assist with, or enhance responses in any way. Our interviews are designed to evaluate your individual experience, t

Benefits

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Additional Information

About Marvell Marvell's semiconductor solutions are the essential building blocks of the data infrastructure that connects our world. Across enterprise, cloud and AI, and carrier architectures, our innovative technology is enabling new possibilities. At Marvell, you can affect the arc of individual lives, lift the trajectory of entire industries, and fuel the transformative potential of tomorrow. For those looking to make their mark on purposeful and enduring innovation, above and beyond fleeting trends, Marvell is a place to thrive, learn, and lead. Your Team, Your Impact Marvell's Broadband Analog group designs physical layer ICs for high-speed optical fiber data communication, such as Transimpedance Amplifiers(TIAs), and drivers for Silicon Photonic (SiPho), Electro-absorption Modulators (EAMs), and Mach-Zehnder Interferometer Modulators (MZMs). This group is the market leader in delivering TIAs and Drivers for Data Center and Telecom markets. We address the bandwidth, capacity, and power issues faced by cloud computing and mega data center networks. Our world class group leverages our core competencies in advanced circuit design to solve the world's ever-increasing desire to transmit more data for less power with fewer errors. We are continually first to market in Data Center, Metro and Long-Haul applications. As a member of the design group, the candidate will be responsible for design and validation of FET and BiCMOS circuits for high-speed broadband ICs that serve these applications. What You Can Expect Active-circuit design Design of leading edge transimpedance amplifiers, using both SiGe BiCMOS and the most advanced CMOS FinFET technologies, where circuit performance will need to transcend beyond industry leading products Development of transmission line structures and other millimeter wave structures to enable higher performance than would normally be achievable Design of high-performance broadband analog circuits for optical front-end receivers Design of various other analog circuits including linear regulators, AGC loops, current/voltage sensors, bandgaps. etc. Work with other functional groups to facilitate post-silicon validation, qualification, transition to mass production, and customer support


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