About The Position

Imagine being part of a team that’s redefining the future of mobility—where your ideas don’t just sit in a lab but power next-generation technology. At indie, we are developing cutting-edge semiconductors, photonics, and radar sensors and systems for automotive, industrial, and adjacent markets. Our innovations are at the heart of advanced intelligent sensing and user experience applications, pushing the boundaries of what’s possible. If you're passionate about groundbreaking technology and want to make a real impact alongside a fast-paced team that thrives on creativity and collaboration, we’d love to have you on board! As a Digital IC Design Engineer you will be responsible for managing and executing activities associated with the design, integration, verification, and maintenance of digital IP integrated into ICs used in embedded microcontroller-based system solutions. In this role, you will help bring cutting-edge System-on-Chip solutions to the ADAS market. You will work closely with the development team to produce an MCU and Security IP strategy driven by the product roadmap, ensuring the development or acquisition of reusable IP blocks.

Requirements

  • Master’s degree in Electrical Engineering
  • 5+ years of relevant Digital IC Design experience
  • Experience developing system-level architecture and proposing RTL (Verilog) implementations with supporting documentation
  • Strong knowledge of Arm Cortex–based products
  • Knowledge of security concepts (key storage, secure elements, AES, product lifecycles)
  • Demonstrated experience with digital circuit simulation tools and front-end environments, particularly Cadence-based
  • Familiarity with version control systems, release management, continuous integration, and unit testing
  • Experience with scripting languages (e.g., Python) for design automation
  • Outstanding communication skills (English)

Nice To Haves

  • Knowledge of ISO 26262 functional safety framework (FTA, FMEDA, FMEA) and tools such as JAMA and Medini
  • Knowledge of cybersecurity standards, including ISO 21434

Responsibilities

  • Support system architecture definition related to security and functional safety, including core logic, memory subsystems, hardware security systems, peripheral interfaces, and power management.
  • Drive and/or support the implementation of innovative security features for large, complex designs across multiple platforms, with reuse and long-term scalability in mind.
  • Support the definition of security lifecycle management and assess potential vulnerabilities in ASIC design and the supply chain to prevent breaches of trust.
  • Scope and benchmark IP offerings from third-party vendors (microcontroller cores and peripherals).
  • Support development plan creation and associated deliverables (firmware, test plans, test code, validation boards, etc.).
  • Actively participate in the integration, pre-silicon verification, and validation of microcontroller subsystems.
  • Support product and test engineering teams to test and productize designs, including Design for Test (DFT) and Design for Manufacturing (DFM).
  • Provide support and develop firmware reference code for verification and validation stages.
  • Bridge hardware and software architecture with a focus on reusable toolchains and platform content.
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