What you’ll do Own and evolve the Quality Management System (QMS) to support a regulated medical device development program, including design controls and DHF maintenance. Establish and enforce requirements traceability: user needs → design requirements → verification/validation artifacts and change control. Define and run the program-level V&V strategy (verification, validation, and test coverage), including test plans, protocols, reports, and acceptance criteria. Drive risk management activities (e.g., DFMEA / PFMEA, hazard analyses) and ensure mitigations are reflected in requirements and verification. Lead document control: reviews, approvals, training, retention, and audit readiness. Partner with engineering to make quality “native” to the dev workflow (automated testing, release gates, software configuration management). Prepare the program for audits and inspections, including hands-on audit leadership. What we’re looking for Senior experience leading quality for complex hardware + software products in a regulated environment. Deep familiarity with design controls, DHF, document control, risk management, and verification planning. Strong systems thinking and the ability to translate ambiguous product intent into testable requirements. Comfortable collaborating directly with multidisciplinary engineering (recon/ML, embedded, mechanical, EE, cloud). Useful experience Regulated product quality leadership (ISO 13485 / 21 CFR 820 or equivalent), including audit readiness and FDA-facing work. eQMS + document control fluency (e.g., Greenlight Guru) that integrates cleanly with modern engineering workflows.
Jobs in United States
Design Verification Lead in United States
2,261 active opportunities · Updated October 2026
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Explore current design verification lead jobs across United States. Filter by work mode, employment type, experience, department, date posted and distance.
About the Team OpenAI’s Forward Deployed Engineering team partners with leading semiconductor companies to deploy production-grade AI systems across the entire chip design lifecycle: design, verification, and physical design. We operate at the intersection of customer delivery and core platform development, embedding deeply with customers to translate frontier model capabilities into systems that materially improve engineering workflows and accelerate innovation. Our work turns early, high-touch deployments into repeatable solution patterns, reference architectures, and evaluation practices that scale across the semiconductor ecosystem. About the Role We are seeking a highly skilled Physical Design Engineer to join our semiconductor-focused Forward Deployed Engineering team. This is a senior IC role that will begin with a strong emphasis on physical design expertise, technical judgment, advisory leverage, and customer credibility, with the expectation that the person will grow into a broader Forward Deployed Engineering role over time. In the near term, you will serve as the team’s physical design SME across semiconductor deployments: helping FDEs, Product, and Research understand backend implementation workflows, pressure-test AI-assisted solution ideas against real physical design constraints, and raise the quality of our customer-facing technical work. You will help the broader team build fluency in implementation flows, EDA tooling, signoff methodology, and the trade-offs that shape physical design decisions in practice. Over time, we expect this role to expand beyond SME support into broader FDE ownership: partnering directly with customers, shaping deployment strategy, building and iterating production-grade AI systems, driving technical workstreams, and helping turn high-touch semiconductor deployments into repeatable solutions. This is a strong fit for someone who brings deep physical design expertise today and is excited to grow into a customer-facing, syst
About the Team Our Robotics team is focused on unlocking general-purpose robotics and pushing towards AGI-level intelligence in dynamic, real-world settings. Working across the entire model stack, we integrate cutting-edge hardware and software to explore a broad range of robotic form factors. We strive to seamlessly blend high-level AI capabilities with the constraints of physical systems to improve peoples’ lives. About the Role We are seeking a Lead Robotics Safety Engineer to define and lead the product safety strategy for our robotics program. You will work closely with leadership, engineering, research, legal, and policy teams to ensure safety is integrated into our products from the earliest stages of development through deployment. This role combines product safety, regulatory strategy, systems engineering, and risk management. You will help shape how we think about safety across robotic platforms, influence product architecture and development decisions, and ensure our systems are designed to meet both current and emerging regulatory expectations. You will serve as a subject matter expert on robotics safety standards, regulatory frameworks, and safety engineering practices while helping establish the long-term safety strategy for our products and organization. This role is based in San Francisco, CA. This role will be expected to be in office 4 days per week and offer relocation assistance to new employees. In this role, you will Define and lead the product safety strategy for robotic systems across the development lifecycle. Monitor and influence emerging regulatory frameworks, industry standards, and policy developments relevant to robotics and autonomous systems. Partner with engineering teams to translate safety requirements into product architecture, design decisions, and engineering requirements. Develop and maintain system-level hazard analyses, risk assessments, and safety cases for robotic products. Establish safety requirements, verification strat
Our vision is to transform how the world uses information to enrich life for all . Micron Technology is a world leader in innovating memory and storage solutions that accelerate the transformation of information into intelligence, inspiring the world to learn, communicate and advance faster than ever. At Micron, we are transforming how the world uses information to enrich life. The High Bandwidth Memory (HBM) Design team develops industry-leading memory solutions that enable advances in Artificial Intelligence, high-performance computing, graphics, and data-center applications. Our engineers collaborate across global teams to deliver innovative memory architectures and semiconductor technologies that power next-generation computing systems. As an HBM Design Engineer Intern, you will work alongside experienced memory engineers and gain hands-on experience in semiconductor design, simulation, verification, and analysis. This internship provides exposure to industry-standard design methodologies, EDA tools, and cross-functional collaboration throughout the product development lifecycle. You will also have opportunities to apply AI-Assisted and AI-Enabled workflows to improve engineering productivity, debug efficiency, and design quality. Responsibilities Assist with the design, simulation, analysis, and verification of HBM memory and logic circuits using industry-standard semiconductor design tools. Support RTL development, circuit implementation, timing analysis, power analysis, and functional validation activities. Develop scripts, automation solutions, and AI-Assisted workflows to improve design productivity, debug efficiency, and design-flow quality. Collaborate with Design, Verification, Physical Design, CAD, and Product Engineering teams on technical reviews, debug activities, and project deliv
Our vision is to transform how the world uses information to enrich life for all . Micron Technology is a world leader in innovating memory and storage solutions that accelerate the transformation of information into intelligence, inspiring the world to learn, communicate and advance faster than ever. At Micron, we are transforming how the world uses information to enrich life. The High Bandwidth Memory (HBM) Design team develops industry-leading memory solutions that enable advances in Artificial Intelligence, high-performance computing, graphics, and data-center applications. Our engineers collaborate across global teams to deliver innovative memory architectures and semiconductor technologies that power next-generation computing systems. As an HBM Design Engineer Intern, you will work alongside experienced memory engineers and gain hands-on experience in semiconductor design, simulation, verification, and analysis. This internship provides exposure to industry-standard design methodologies, EDA tools, and cross-functional collaboration throughout the product development lifecycle. You will also have opportunities to apply AI-Assisted and AI-Enabled workflows to improve engineering productivity, debug efficiency, and design quality. Responsibilities Assist with the design, simulation, analysis, and verification of HBM memory and logic circuits using industry-standard semiconductor design tools. Support RTL development, circuit implementation, timing analysis, power analysis, and functional validation activities. Develop scripts, automation solutions, and AI-Assisted workflows to improve design productivity, debug efficiency, and design-flow quality. Collaborate with Design, Verification, Physical Design, CAD, and Product Engineering teams on technical reviews, debug activities, and project deliv
About the Team OpenAI’s Forward Deployed Engineering (FDE) team turns research breakthroughs into production-grade systems. We embed deeply with customers to solve high-leverage problems and act as the delivery engine for our most complex large-scale engagements. We move quickly from prototype to production and surface reusable patterns that shape our platform. We operate at the intersection of deployment and development – working closely with OpenAI Research, Product and Partnerships. About the Role As a Technical Deployment Lead (TDL), you will define how OpenAI delivers complex systems to Semiconductor customers. You will own how solutions are scoped, built, shipped, and adopted across high-value engineering workflows such as RTL design, verification, and physical implementation. You’ll translate business outcomes into a technical plan, run day-to-day execution across FDEs, Researchers, and Customer Engineers, and partner with customer teams to ensure delivery supports their goals. You will focus on the semiconductor vertical to deploy next-generation AI capabilities. You will own delivery end-to-end: embedding with customers to map workflows and success criteria, ensuring components ship on time, and leading readiness and change management for adoption. You’ll track progress, manage dependencies, make sequencing decisions, and drive 0→1 prototypes through MVP and scale. You will also share field insights with Product and Research to guide roadmap and priorities. Success will be measured first and foremost by impact - deployments that deliver measurable value against customer goals, drive adoption, and become critical to their workflows. Additional measures of success include delivery reliability (milestones hit, low reopen/churn), operating leverage (patterns reused across deployments), judgment under pressure, and product impact (field signal that shifts roadmaps/architectures). This is a high-trust, high-autonomy role. Success requires deep technical project m
Our vision is to transform how the world uses information to enrich life for all . Micron Technology is a world leader in innovating memory and storage solutions that accelerate the transformation of information into intelligence, inspiring the world to learn, communicate and advance faster than ever. At Micron Technology, we transform how the world uses information to enrich life for all. The Heterogeneous Integration Group (HIG) HBM Architecture team develops next-generation High-Bandwidth Memory (HBM) solutions that power AI, high-performance computing, cloud infrastructure, and advanced networking systems. The team works across architecture, design, verification, packaging, product engineering, and technology development to evaluate innovative memory architectures and deliver scalable, high-performance semiconductor solutions. As an HBM Design Architect, New College Graduate, you will contribute to the evaluation and development of future HBM and DRAM architectures. Working with experienced architects and engineering teams, you will analyze system and block-level design tradeoffs related to performance, power, area, thermal behavior, reliability, and manufacturability. This role provides an opportunity to leverage AI, Large Language Models (LLMs), and data-driven engineering methodologies to accelerate architecture exploration and improve decision-making. Responsibilities Analyze HBM and DRAM architectures using analytic
Our vision is to transform how the world uses information to enrich life for all . Micron Technology is a world leader in innovating memory and storage solutions that accelerate the transformation of information into intelligence, inspiring the world to learn, communicate and advance faster than ever. The Staff Design Engineer is responsible for designing, simulating, and optimizing DRAM circuits while supporting the development of digital and analog circuitry used in advanced memory products. This role collaborates globally across design, verification, product engineering, test, probe, process integration, assembly, and marketing to ensure manufacturable, high‑quality, cost‑optimized solutions. The position drives innovation in future memory generations and contributes to silicon‑to‑system development in a dynamic engineering environment. Responsibilities Design digital, analog, and memory core circuits using CMOS logic and transistors, implementing device specifications from concept to solution. Utilize AI-Enabled tools to assist with schematic editing, data collection and layout floorplan. Create optimized floorplans for circuit placement, routing, power delivery, sense margins, array timing, and die size, including layout leadership. Conduct circuit simulations using FINESIM, HSPICE, and VERILOG; analyze power, performance, reliability, and parasitic impacts. Validate builds through reticle experiments, tape‑out revisions, and simulation‑to‑silicon correlation, identifying required schematic edits. Prepare and maintain design documentation while contributing to best‑known practices and departmental training. Collaborate with global build, verification, product engineering, test, probe, process integration, assembly, and marketing teams to ensure manufacturability and quality. <l
Our vision is to transform how the world uses information to enrich life for all . Micron Technology is a world leader in innovating memory and storage solutions that accelerate the transformation of information into intelligence, inspiring the world to learn, communicate and advance faster than ever. Micron Technology’s DRAM and Emerging Memory Group (DEG) is a distributed team of engineers and innovators focused on advancing next-generation memory technologies. For more than 43 years, Micron has been a leader in semiconductor innovation, delivering solutions that power applications ranging from artificial intelligence and high-performance computing to immersive digital experiences. The team is committed to innovation, integrity, sustainability, and meaningful community impact while driving the future of memory technology. As an HBM Memory Design Engineer, you will design, analyze, and optimize digital, analog, and memory circuits used in High Bandwidth Memory (HBM) products. You will collaborate with global design, verification, and product teams to develop high-performance DRAM solutions that meet manufacturability, reliability, and performance objectives. This role provides the opportunity to contribute to innovative memory technologies supporting AI, HPC, and data-centric applications. As part of Micron’s AI-Enabled workforce transformation, you will leverage AI-Assisted tools and data-driven methodologies to improve engineering productivity, accelerate design analysis, enhance decision-making, and drive innovation throughout the product development lifecycle. Responsibilities Design, analyze, and optimize memory, logic, and analog circuits for HBM products, including support for layout, validation, and tape-out activities. Perform circuit verification, parasitic modeling, and design simulations
Our vision is to transform how the world uses information to enrich life for all . Micron Technology is a world leader in innovating memory and storage solutions that accelerate the transformation of information into intelligence, inspiring the world to learn, communicate and advance faster than ever. As a SoC Design Engineer, you will be part of the Heterogeneous Integration Group (HIG), contributing to the design, development, and integration of next‑generation HBM SoC logic die. You will work closely with architecture, verification, physical design, firmware, and product teams to implement robust, high‑performance SoC solutions that meet ambitious power, performance, area, and schedule targets. You will also work to enable and integrate AI-driven tools and AI-enabled workflows into the team's methodologies. Key Responsibilities Design and implement RTL for SoC‑level blocks and subsystems used in HBM logic die. Integrate internal and third‑party IP (e.g., controllers, microcontrollers, NOC, RAS, MBIST, interfaces, adapters, buffers, PHY‑adjacent logic). Collaborate with SoC architects to translate architectural and micro‑architectural specifications into high‑quality RTL implementations. Participate in SoC‑level integration activities, including clocking, reset, power intent, and configuration infrastructure. Assist with pre‑silicon validation and post‑silicon bring‑up, including root‑cause analysis of silicon issues. Contribute to design documentation, block specifications, and design reviews. Collaborate multi-functionally with Product Engineering, Test, Probe, Process Integration, and Manufacturing to ensure robust and manufacturable builds. Minimum Qualifications Bachelor’s or master’s degree in electrical engineering, Computer Engin
Our vision is to transform how the world uses information to enrich life for all . Micron Technology is a world leader in innovating memory and storage solutions that accelerate the transformation of information into intelligence, inspiring the world to learn, communicate and advance faster than ever. Micron’s High‑Bandwidth Memory (HBM) Digital Design organization is seeking a Digital Physical Design Engineer to drive backend implementation of high‑performance, low‑power digital logic used in advanced memory products. This role spans backend implementation from Netlist to GDSII, with a strong focus on timing closure, power integrity, and manufacturability in advanced process technologies. The successful candidate will work closely with RTL, DFT, CAD, and verification teams to deliver high‑quality physical designs, contribute to methodology improvements, and help push performance, power, and area (PPA) targets in complex, multi‑hierarchy designs. Key Responsibilities: Own and execute physical design implementation from synthesized netlist through GDSII, including floorplanning, placement, clock tree synthesis, routing, and physical signoff Utilize AI-Enabled tools in the Netlist to GDS flow Perform and drive timing closure across multiple modes, corners, and scenarios using industry‑standard STA tools Analyze and resolve congestion, timing, IR drop, EM, and power integrity issues Develop and refine floorplans, power grids, and clocking strategies for high‑performance designs Work with placement and timing closure of custom analog hard IP macros in a digital-on-top design flow Collaborate closely with RTL designers to influence partitioning, constraints, and micro‑architecture decisions early in the design cycle Implement and va
Our vision is to transform how the world uses information to enrich life for all . Micron Technology is a world leader in innovating memory and storage solutions that accelerate the transformation of information into intelligence, inspiring the world to learn, communicate and advance faster than ever. Principal ASIC Design Engineer About the Role At Micron, we transform how the world uses information to enrich life for all. As a global leader in memory and storage innovation, we develop technologies that accelerate intelligence and enable the next era of AI, ML, and advanced computing. Micron’s Interface Pathfinding team drives performance-scaling innovation across circuits, signaling, packaging, and interconnects with a 3–5 year technology horizon. A core part of that work is silicon-based validation of novel PHY solutions, and we are growing the team to execute. As the Principal ASIC Design Engineer , you will be the primary digital contributor on a deliberately small, senior team — united around the goal of carrying high-speed interface technologies from architecture to tape-out. The team’s analog and chip-level architecture is anchored by a deeply experienced analog custom design engineer; your role is to be the authoritative digital voice — owning RTL design and micro-architecture of the digital blocks, defining timing constraints, supporting verification, and serving as the key interface between the digital design and the analog and layout specialists who will carry the implementation through to silicon. On a test ASIC of this scope, the front-end digital work is the critical path, with contractor and layout support engaged as bandwidth demands warrant. What You’ll Own Digital Block Architecture & RTL Design Own the micro-architecture and RTL implement
Our vision is to transform how the world uses information to enrich life for all . Micron Technology is a world leader in innovating memory and storage solutions that accelerate the transformation of information into intelligence, inspiring the world to learn, communicate and advance faster than ever. The Design Technology Co-Optimization (DTCO) team works at the intersection of process technology, standard cell architecture, and design implementation to optimize power, performance, and area (PPA) for advanced memory products. The team collaborates closely with standard cell library, RTL, and physical design engineers to evaluate design tradeoffs and develop methodologies that improve silicon outcomes. As a DTCO Intern, you will gain hands-on experience assessing and optimizing PPA at the standard cell and logic block level. You will use industry-standard place-and-route tools and AI-enabled automation techniques to implement, benchmark, and optimize logic blocks while developing practical skills in physical design, timing closure, and design analysis. Responsibilities Implement standard cell logic blocks using industry-standard physical design tools, including floorplanning, placement, clock tree synthesis (CTS), routing, and optimization activities focused on PPA assessment. Analyze and benchmark power, performance, and area across standard cell libraries and logic block configurations, identifying opportunities for improvement. Perform static timing analysis (STA), investigate setup and hold timing violations, and support timing closure activities. Execute physical verification checks, including DRC, LVS, and IR-drop analysis, and assist with resolving design issues. Leverage Generative AI, AI Assistants, and Agentic AI solutions to automate data collection, reporting, comparison, and w
Job Details: Job Description: The Role and Impact As a Physical Design Engineer, you will play a critical role in driving the development of cutting-edge technologies at Intel. You will work hands-on to deliver high-performance physical designs, ensuring the successful integration of advanced semiconductor technologies. Your work will directly impact Intel's product innovation, addressing complex challenges in power, performance, and area optimization to shape the future of computing architectures. From synthesis to sign-off, your contributions will enable Intel to meet ambitious design goals and deliver transformative solutions to the market. Business Group This role is part of Intel's Corporate Technology Office (CTO), a dynamic group dedicated to advancing the company's technological leadership and innovation. The group focuses on developing foundational technologies, architectures, and methodologies that drive Intel's product roadmap and enable breakthrough computing solutions. Collaborating with cross-disciplinary teams, the CTO plays a pivotal role in delivering impactful designs that support Intel's broader mission of creating world-changing technology. Key Responsibilities - Drive RTL-to-GDS design convergence using advanced synthesis and place-and-route tools targeting performance, power, and area (PPA) goals. - Deliver block-level physical design, including closure of backend flows, electrical requirements, and enhancing silicon yield. - Collaborate with CAD and physical design methodology teams to adopt industry-leading tools and optimizations for custom designs. - Execute physical implementation tasks such as floor planning, bus/pin placement, power/clock distribution, congestion analysis, timing closure, IR drop analysis, and physical verification. - Debug timing, EM/IR, LVS, and DRC violations, and driv
Our vision is to transform how the world uses information to enrich life for all . Micron Technology is a world leader in innovating memory and storage solutions that accelerate the transformation of information into intelligence, inspiring the world to learn, communicate and advance faster than ever. Our vision is to transform how the world uses information to enrich life for all. Join an inclusive team passionate about driving innovation for next-generation memory solutions powering AI/ML and high-performance computing systems. As a Director of HBM RTL Design and Integration, you will lead a team responsible for the design, integration, and delivery of next-generation HBM SoC logic die, with a strong focus on RTL development and IP integration. You will drive technical strategy and execution across multiple product generations, working closely with architecture, verification, physical design, firmware, and product engineering teams. Key Responsibilities Lead SoC RTL design and integration for HBM logic die, including subsystem partitioning, IP integration, and SoC-level design convergence. Drive translation of architectural and micro-architectural specifications into robust, high-quality RTL implementations across multiple teams. Oversee SoC integration aspects, including clocking, reset, power intent, configuration infrastructure, and system-level design correctness. Establish design methodologies and best practices to improve quality, reuse, and development efficiency across HBM programs. Partner with SoC Architecture, Verification, Physical Design, Firmware, and System teams to ensure successful end-to-end product execution. Work closely with Product Engineering, Test, Probe, Process Integration, Assembly, and Manufacturing to ensure robust, manufacturable HBM
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