Network & Power domain HW architect

1天前

Shanghai, 中国 梅赛德斯-奔驰租赁有限公司 全职 ¥35,000 - ¥55,000/月
该职位来源于猎聘 Responsible for translating system requirements into scalable hardware platform architectures with a focus on networking, connectivity, power distribution, and platform infrastructure. Drive hardware architecture definition, technology roadmap planning, component ecosystem development, and supplier technical evaluations for future cockpit, ADAS, and centralized computing platforms. Act as a key technical representative of the hardware organization in platform-level discussions with system architects, software architects, suppliers, and global development teams, while actively participating in hardware solution definition and critical technology decisions. Qualification Education
• Bachelor's degree or above in Electrical Engineering, Electronics Engineering, Mechatronics, Automotive Engineering, Computer Engineering, or related disciplines
• Fluent Chinese and good English communication skills required Experience
• Minimum 12 years of experience in hardware development, hardware architecture, system design, or related technical leadership roles.
• Extensive experience in automotive networking, high-speed connectivity, power architecture, domain controllers, cockpit, ADAS, centralized compute, or related platforms.
• Proven track record of leading architecture discussions, technical reviews, and platform-level solution evaluations.
• Experience translating product and system requirements into scalable hardware platform architectures.
• Strong experience driving technical trade-offs involving compute, networking, power, thermal, reliability, cost, scalability, and vehicle integration constraints.
• Experience working directly with OEMs, Tier1 suppliers, semiconductor vendors, and global engineering organizations.
• Experience defining technology roadmaps, preferred component ecosystems, and reusable platform architectures.
• Experience participating in executive-level technical discussions and influencing key architecture decisions.
• Experience mentoring engineers and driving technical capability development across organizations.
• Hands-on experience throughout the full product lifecycle from concept development to mass production. Specific Knowledge Network & Connectivity Architecture
• Deep understanding of in-vehicle networking architectures and data communication frameworks, with the ability to define scalable connectivity solutions for current and future vehicle platforms.
• Ability to evaluate and define networking architectures covering Automotive Ethernet, network switches, gateways, PCIe, USB, SerDes, camera links, and vehicle communication infrastructures.
• Ability to perform architectural trade-offs involving bandwidth, latency, determinism, scalability, diagnostics, cost, reliability, and future upgradeability.
• Ability to challenge and evaluate supplier network architectures and connectivity strategies. Power Platform Architecture
• Strong understanding of automotive power architectures and power distribution strategies for cockpit, ADAS, and centralized compute platforms.
• Ability to define power concepts covering power trees, PMIC strategies, power sequencing, monitoring, protection mechanisms, and platform power budgeting.
• Ability to evaluate the impact of power architecture decisions on performance, reliability, thermal behavior, EMC robustness, cost, and future scalability.
• Experience supporting platform-level power decisions and supplier technical evaluations. Hardware Platform Understanding
• Strong understanding of modern compute platforms and their interactions with networking, power, storage, thermal, software, and vehicle architectures.
• Ability to assess how platform-level hardware decisions influence performance, system behavior, lifecycle management, integration complexity, and product evolution.
• Ability to represent hardware perspectives in cross-functional architecture discussions. Hardware Development & Technical Authority
• Strong hands-on experience in hardware design, component selection, debugging, validation, and technical issue resolution.
• Ability to guide development teams through complex networking and power related technical challenges.
• Deep understanding of the system-level consequences of implementation decisions and hardware trade-offs.
• Ability to establish technical guidelines, review methodologies, and engineering best practices. Architecture Leadership & Technology Strategy
• Ability to translate business needs, product requirements, and system constraints into long-term networking and power technology strategies.
• Ability to identify industry trends and define future platform directions.
• Experience building preferred component ecosystems and supplier technology strategies.
• Ability to drive technical alignment across hardware, software, system, supplier, and global engineering organizations.
• Strong influencing skills with the ability to align stakeholders without direct authority.