ASIC Design Engineer — Pixel IP

AppleSunnyvale, CA

About The Position

Do you love creating elegant solutions to highly complex challenges? As part of our Hardware Technologies group, you’ll help design our next-generation, high-performance, power-efficient system-on-chips (SoCs). You will ensure Apple products and services can seamlessly and efficiently handle the tasks that make them beloved by millions! Joining this group means you’ll be responsible for crafting and building the technology that fuels Apple’s devices. Together, we will enable our customers to do all the things they love with their devices! In this highly visible role, you will be at the center of the Pixel IP design effort to capture and display beautiful images and video. You will collaborate with all disciplines, making a critical impact getting functional products to millions of customers quickly.

Requirements

  • Bachelors Degree in EE/CE
  • 5+ years of relevant industry experience.

Nice To Haves

  • Experience in SoC front-end ASIC RTL digital logic design using Verilog or System Verilog.
  • Previous experience in media, video, pixel, or display designs.
  • Experience working cross-functionally with architecture, design, and verification teams to specify, design, and debug designs.
  • Good collaboration skills with strong written and verbal communication skills.
  • Familiarity with low-power design techniques such as clock- and power-gating is a plus.
  • Familiarity with common on-chip bus protocols such as AMBA (AXI, AHB, APB).
  • Experience in front-end implementation tasks such as synthesis, timing, area/power analysis, linting, CDC/RDC, logic equivalence checks.
  • Industry exposure to and knowledge of ASIC/FPGA design methodology including familiarity with relevant scripting languages (Python, Perl, TCL).

Responsibilities

  • Design digital hardware by writing high-quality RTL or using a high-level synthesis methodology, with embedded assertions and cover points.
  • Writing detailed micro-architectural specifications.
  • Collaborating with cross-functional teams to explore solutions that maximize performance while minimizing power and area.
  • Synthesizing your design and optimize for power, timing, and area.
  • Working closely with design verification and formal verification teams to debug and verify functionality and performance.
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