System-on-Chip (SoC) Hardware Engineer
The job description
Tech stack. SoC evaluation and integration, reference design adaptation, power delivery for SoCs, high-speed memory interfaces, board support packages, JTAG debug, power sequencing, clock architectures
About the role
You will design the hardware platforms built around complex SoCs: application processors, wireless combo chips, and AI accelerators that define modern products. SoC hardware engineers own everything the silicon vendor does not: power trees, memory subsystems, clocking, and the board-level integration that determines whether the chip performs to its datasheet or disappoints. You will work from reference designs but never blindly, validating every assumption with simulation and measurement because vendors optimize for their demo board, not your product. Deep datasheet literacy and healthy skepticism are your most valuable skills.
What you will achieve
- Design SoC carrier boards and system hardware with correct power sequencing, clock distribution, and memory interfaces validated by measurement
- Deliver successful first-silicon or new-SoC bring-up: power validation, boot debugging, and interface functional testing completed on schedule
- Adapt vendor reference designs intelligently, understanding which elements are critical to preserve and which can be optimized for cost or form factor
- Characterize SoC power consumption across operating modes, driving accurate battery life or thermal models the product team can plan against
- Debug complex SoC-level issues spanning power, signal integrity, and firmware interaction with systematic cross-domain analysis
What you will bring
Must-haves
- 2 to 5 years designing hardware around complex SoCs or application processors with products that shipped to customers
- Understanding of SoC power architectures: core rails, sequencing requirements, DVFS behavior, and power state transitions
- Experience with high-speed memory interfaces including LPDDR4/5 and DDR4, covering layout constraints and training validation
- Familiarity with reading SoC datasheets and hardware design guides critically, identifying gaps, errors, and hidden risks
- Lab skills for SoC debug: JTAG boundary scan, power rail measurement under dynamic load, and boot failure analysis
- Knowledge of clock architectures: crystal selection, PLL configuration, and jitter requirements for high-speed interfaces
- BS in Electrical Engineering or Computer Engineering
Nice-to-haves
- Experience with AI accelerator or NPU integration: power delivery for high transient loads and thermal solution design
- Familiarity with secure boot hardware requirements: fuse programming, tamper detection, and secure element integration
- Knowledge of MIPI interfaces including CSI and DSI and their board-level implementation challenges
- Experience with module-based designs using systems-on-module and custom carrier board development
Google
Apple
NVIDIA
Tesla
Intel
AMD