Automotive High-Speed Hardware Design Engineer
ExternalFull-timeOn-site1mo ago30+ days old, may be filled
ComplianceDocumentationJiraRails
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Responsibilities
- Lead hardware design and development for ADAS, Cockpit, and Connectivity ECUs, from concept to production
- Design high-speed digital boards with advanced SoCs, DDR4/DDR5, LPDDR interfaces, PCIe, Ethernet (RGMII/SGMII/RMII/10G), USB, MIPI CSI/DSI, and SerDes.
- Perform schematic design, component selection, and BOM optimization ensuring automotive-grade reliability and cost efficiency.
- Conduct Signal Integrity (SI) and Power Integrity (PI) analysis for critical high-speed signals and power rails.
- Support thermal design and validation, collaborating with mechanical and thermal engineers to ensure performance under harsh automotive conditions.
- Ensure ASIL-D compliance (ISO 26262) for safety-critical designs; participate in FMEA, FMEDA, and safety architecture reviews.
- Interface with camera, radar, LiDAR, and sensor fusion modules, ensuring signal quality, timing, and synchronization.
- Collaborate with PCB layout engineers for constraint-driven designs (impedance, stackup, crosstalk, EMI/EMC).
- Drive hardware validation and bring-up, including board-level testing, debugging, and root-cause analysis.
- Work with cross-functional teams (System, Software, Validation, Manufacturing, EMC) through design verification and PPAP stages.
- Support DFMEA, DFx (DFM, DFT, DFA) activities to ensure manufacturability and reliability.
- Create design documentation, validation reports, and participate in technical reviews and customer discussions.
- Required Skills and Experience:
- Bachelor's or Master's Degree in Electronics, Electrical, or related engineering field.
- 5-9 years of hands-on experience in automotive hardware design.
- Proven experience with SoC-based board design (e.g., NVIDIA, Qualcomm, Renesas, TI, NXP, Infineon AURIX).
- Strong understanding of ADAS, Cockpit, and IVI architecture including sensor and compute domains.
- Expertise in high-speed design (DDR4/5, PCIe, MIPI, Ethernet, USB 3.x, LVDS, SerDes).
- Experience with SI/PI analysis tools (e.g., HyperLynx, Sigrity, Ansys, Cadence). - Knowledge of Automotive Safety (ISO 26262 - ASIL B to D compliance).
- Familiarity with EMI/EMC standards (CISPR 25, ISO 11452) and compliance testing.
- Understanding of thermal design, power sequencing, and power distribution.
- Experience in camera/radar interface and sensor fusion hardware design.
- Proficiency in schematic tools (Altium, Cadence Allegro, Mentor DxDesigner, Zuken CR8000).
- Hands-on experience with hardware bring-up, debugging, and lab instruments (oscilloscope, logic analyzer, power analyzer, etc.).
- Excellent analytical, communication, and documentation skills.
- Preferred Qualifications: - Experience with ASIL-D compliant ECU development.
- Exposure to Ethernet TSN, CAN-FD, LIN, FlexRay and in-vehicle communication networks.
- Knowledge of thermal simulation and mechanical integration.
- Familiarity with AI/ML accelerator SoCs used in perception and fusion ECUs.
- Experience working with global OEMs and Tier-1s on production projects.
- Key Tools & Technologies: - Schematic/PCB: Zuken , Altium Designer, Cadence Allegro, Mentor Graphics
- Simulation: HyperLynx, Ansys SIwave, Sigrity, SPICE, ADS
- Compliance & Debug: Oscilloscope (≥20GHz), Vector CANoe, Power Analyzer, JTAG
- Documentation: PDM/PLM systems, Jira, Confluenc
- B.E, Electronics Engineering
- 5 to 10 years
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