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Hardware Systems Performance Engineer; Infotainment

Job in Palo Alto, Santa Clara County, California, 94306, USA
Listing for: Rivian
Full Time position
Listed on 2026-01-02
Job specializations:
  • Engineering
    Systems Engineer, Hardware Engineer
Salary/Wage Range or Industry Benchmark: 105000 - 139300 USD Yearly USD 105000.00 139300.00 YEAR
Job Description & How to Apply Below
Position: Hardware Systems Performance Engineer (Infotainment)

About Us

Rivian and Volkswagen Group Technologies is a joint venture between two industry leaders with a clear vision for automotive’s next chapter. From operating systems to zonal controllers to cloud and connectivity solutions, we’re addressing the challenges of electric vehicles through technology that will set the standards for software‑defined vehicles around the world.

The road to the future is uncharted. By combining our expertise across connectivity, AI, security and more, we’ll map a new way forward. Working together, we’ll create a future that’s more connected, more intelligent, more sustainable for everyone.

Role Summary

In this position, you will assist efforts within the Hardware Systems Architecture team to characterize performance of low‑voltage electrical (LVE) systems in Rivian vehicles, with the aim to influence hardware architecture decision‑making in early development stages, and to validate designs in later stages of the development cycle. This is a hardware architecture role that requires a familiarity with systems software necessary to identify, and quantify system‑level performance metrics, anticipate key design risks, and validate system architecture performance against requirements.

This role spans the characterization of computational, network, sensor, and power related performance dimensions of various LVE subsystems, including infotainment, telematics, wireless connectivity, networking, passive entry, camera monitoring systems, and more.

Responsibilities
  • Facilitate collaboration between hardware architecture, hardware design and software application teams to build out comprehensive plans that surface key performance metrics, provide insight into system bottlenecks and chokepoints, reveal over‑/under‑design scenarios, and validate system performance relative to system requirements.
  • Lead and support the design, integration and automation efforts related to characterization and validation activities on various hardware testing configurations, including early prototypes boards, bench‑top sub‑system mock‑ups, lab cars, mules, and other HIL infrastructure.
  • Produce the end‑to‑end implementation for systems performance characterization ranging from development of requirements to identification of solutions and their implementation with automation, including integration of h/w and s/w, establishment of control and data acquisition pipelines, and development of downstream data processing infrastructure.
  • Execute characterization plans, leverage analytical methods, and present clear validation metrics and reports that support data‑driven architectural decisions, and validate the resulting designs.
  • Contribute to mock‑ups or prototypes to study next‑gen technologies, establish proofs‑of‑concept, and/or serve as reference platforms for future bring up, system integration, system‑level validation, or future architecture inclusion.
Qualifications
  • Advanced degree in Computer Science, Electrical Engineering or a related field, and 3+ years of hands‑on experience in relevant practical settings, including internships.
  • Some experience designing and/or validating embedded systems optimized for distributed architecture settings, including automotive, aerospace, or other architecturally similar applications.
  • Understanding of embedded computing platforms, and the methods for quantifying performance of their processors, memory / storage systems, and peripheral interfaces.
  • Hands‑on coding experience related to some combination of embedded platform bring‑up, system software / applications development, or system‑level hardware performance instrumentation, and related test automation / scripting.
  • Good grasp of the power related aspects of distributed embedded architectures, with focus on efficient low‑power states, wake propagation and sequencing.
  • Familiarity with some high‑speed automotive peripheral interfaces and networks, such as PCIe, GMSL, Ethernet, A2B, CAN‑FD, and how to characterize their performance.
  • Conversant with software platforms for embedded computing architectures typical in automotive applications like infotainment, wireless connectivity, telematics, or ADAS, ranging from OS to RTOS to…
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