Job Details: Job Description: Join Intel as a Module Development Engineer, where you will play a critical role in driving technology development and enabling advanced manufacturing solutions. In this position, you will lead the design and optimization of complex manufacturing processes, including material selection and equipment development, to enable innovative product designs and high-volume production. Your work will directly impact Intel's ability to maintain its leadership in cutting-edge semiconductor technologies. Business group As part of Intel Foundry, you will join a dynamic team focused on advancing semiconductor manufacturing technologies and capabilities. The group's mission includes enabling high-volume production through innovative process integration, equipment solutions, and technology advancements. Collaborating across Intel's global network, you will contribute to driving Intel's success in delivering transformative technologies to its customers. Key Responsibilities Lead the development of manufacturing processes that include MHS equipment development, parameter optimization, and equipment metrology. Perform pathfinding activities to enable emerging device architectures and support process and hardware development. Develop roadmaps for future technologies that align with Intel's leadership in semiconductor innovation. Collaborate with equipment and materials suppliers to implement solutions that meet manufacturing and technology needs. Recommend and execute modifications to equipment and processes to improve efficiency and optimize production output. Stay informed about industry trends in materials and manufacturing processes, identifying opportunities for innovation. Behavioral Traits Strong p
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Module Development Engineer in United States
15 active opportunities · Updated September 2026
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Job Details: Job Description: The Role and Impact: Join Intel's Module Development Engineering team as a manager, where you will lead a group of talented engineers in crafting innovative solutions for next-generation technology development in wafer processing, assembly/test, and module repair factories. As a key driver of Intel's technological advancement, you will play a pivotal role in ensuring the successful development, transfer, and implementation of cutting-edge technologies that enable Intel's leadership in power performance, structural efficiency, and cost optimization. With a focus on driving results and fostering collaboration across multiple organizational boundaries, this role offers an opportunity to make a significant impact on Intel's global manufacturing capabilities and future technological roadmap. Key Responsibilities: - Lead a team of module development engineers to develop, implement, and transfer advanced technology solutions. - Define and oversee technology roadmaps for the module, ensuring alignment with Intel's strategic goals. - Manage resources, set priorities, and foster collaboration across teams to meet project schedules and maximize operational outcomes. - Partner with integration, device, and yield engineering teams to develop robust process solutions that deliver power performance and area leadership. - Build and maintain partnerships with supplier executive management to nurture unique industry ideas and research innovations. - Coach and mentor engineering teams in pathfinding and technology road mapping for advanced technology development. - Develop long-term strategies for module engineering capabilities to support emerging technological requirements. - Ensure accountability and drive team results by setting clear goals, performance benchmarks,
Job Details: Job Description: Embark with us on a journey of growth and transformation as we create exceptionally engineered technology and bring AI everywhere. As a valued team member, your adaptability and attention to detail will contribute to our drive for results and relentless pursuit of quality, ensuring we meet our customers' needs with precision. Join us and build on our legacy of innovation and collaboration as we deliver world‑changing technology that improves the life of every person on the planet. Life at Intel: https://jobs.intel.com/en/life-at-intel This position is in the Intel Mask Operations within the Logic Technology Development team working in one of the most advanced semiconductor process technologies in the world. In this position the engineer will be an integral contributor to the ongoing production of photolithography masks for Intel's leading-edge silicon manufacturing solutions. In this position, you will work on-site, in a dynamic and collaborative environment solving complex and challenging technical problems on sophisticated manufacturing processes and equipment. As an IMO Module Development Engineer, the responsibilities may include but not limited to: Process equipment installation and development. Equipment maintenance, management of troubleshooting activities, regular monitoring of process performance, defect analysis and reduction. Drives improvements on quality, reliability, cost, yield, process stability/capability, productivity, and safety/ergonomics. Working with cross functional teams to solve technical process and defect issues. Plans and conducts experiments to fully characterize the process throughout the development cycle. Establishes control systems to optimize and sustain production performance. D
Job Details: Job Description: This position is in the Intel Mask Operations within the Logic Technology Development team working in one of the most advanced semiconductor process technologies in the world. In this position the engineer will be an integral contributor to the ongoing production of photolithography masks for Intel's leading-edge silicon manufacturing solutions. In this position, you will work on-site, in a dynamic and collaborative environment solving complex and challenging technical problems on sophisticated manufacturing processes and equipment. As IMO module Engineer the responsibilities may include but not limited to: Process equipment installation and development. Equipment maintenance, management of troubleshooting activities, regular monitoring of process performance, defect analysis and reduction. Drives improvements on quality, reliability, cost, yield, process stability/capability, productivity, and safety/ergonomics. Working with cross functional teams to solve technical process and defect issues. Plans and conducts experiments to fully characterize the process throughout the development cycle. Establishes control systems to optimize and sustain production performance. Develops strategies to resolve difficult problems and establishes systems to manage these problems in the future. An ideal candidate should exhibit the below behavioral traits: Experience with rapid analysis of complex process issues and identification of a solution path Willing to work Independently with minimal direction, to be self-directing and show initiative Communication skills and demonstrated ability to summarize complex d
Job Details: Job Description: As a Packaging Module Development Engineer, you will play a pivotal role in the development and optimization of Intel's assembly media and collaterals. Your daily work will involve designing innovative solutions to improve media and collateral reliability, manufacturability, and cost efficiency. Your contributions will directly support Intel's cutting-edge assembly packaging technology roadmap, driving advancements in semiconductor manufacturing processes. Business Group You will be part of Intel Corporation's Media Development organization, a team dedicated to advancing packaging technologies and manufacturing processes. This group operates at the forefront of innovation, enabling high-performance products and driving Intel's leadership in the semiconductor industry. By joining this collaborative environment, you will contribute to Intel's broader goals of delivering transformative technology solutions. Key Responsibilities Develop and optimize media and collaterals to meet quality, reliability, cost, yield, and productivity targets. Design and implement new media and collateral solutions, leveraging statistical methods like Design of Experiments (DOE) and Statistical Process Control (SPC). Conduct evaluations of media and collaterals under simulated field conditions, including tests for heat, humidity, temperature cycling, and dynamic forces. Lead initiatives to identify and mitigate media and collateral quality and reliability risks, utilizing innovative tools and methods. Provide technical consultation on media and collateral challenges and deliver solutions that align with operational and technology milestones. Document technical improvements and innovations through research papers and presentations. <p styl
About the Team Frontier Systems Foundations, part of Compute Foundations at OpenAI, builds the systems software foundation that turns new compute infrastructure into reliable, usable capacity for frontier model training. Our mission is to make some of the world's largest GPU clusters work reliably for frontier training. We bring new platforms and clusters online, safely maintain installed fleets, and partner with hardware, infrastructure, and research teams to resolve the system-level issues that keep jobs from running. That means building and maintaining the software closest to the machine: Linux and Ubuntu operating-system images, kernels and modules, drivers, packages and repositories, disks and boot configuration, firmware integration, provisioning, and system-level validation. We make these components reproducible, compatible, and safe to operate across heterogeneous fleets. About the Role We are looking for systems software engineers with deep Linux and host-systems experience to build, qualify, and maintain the operating-system foundation for OpenAI's frontier compute fleet. Relevant backgrounds include kernel and module development, Linux distribution or image engineering, package management, firmware and driver integration, disks and boot, and bare-metal provisioning. You'll work closely with hardware engineers, vendors, and infrastructure teams to bring up new platforms, integrate system components, and debug failures across firmware, disks, boot, operating systems, kernels, drivers, and workload interactions. Your work will directly influence how quickly new capacity becomes usable and how reliably large GPU fleets operate. You should be comfortable writing and maintaining production-quality systems software and automation, but we do not expect expertise across every layer. This is an opportunity to go deep on challenging systems problems while building the image, package, qualification, and recovery paths that power the next generation of frontier models
Job Details: Job Description: Contributes to module process development, process integration flows, and equipment configuration for manufacturing modules. Supports yield improvement initiatives by analyzing defect data, conducting experiments, and assisting in risk assessments. Electrcial characterization of transistors and analysis of data to help yield or improved process conditions. Collaborates with engineering teams to optimize metrology strategies and troubleshoot process flow issues. Contributes to continuous improvement efforts in high volume manufacturing environments. As an intern, learns and applies knowledge, builds skills, and explores future career opportunities through hands on experience and projects that support Intel business goals in a collaborative environment Qualifications: You must possess the below minimum qualifications to be initially considered for this position. Preferred qualifications are in addition to the minimum qualifications and are considered a plus factor in identifying top candidates. Experience listed below would be obtained through a combination of your schoolwork, classes, research, relevant previous job, and/or internship experiences. Minimum qualifications: Must be pursuing a PhD degree in a hard science discipline such as Electrical Engineering, Physics, Materials Science.
About the team: OpenAI’s Hardware organization develops AI-native silicon and system-level solutions for the unique demands of advanced AI workloads. Building on efforts like Jalapeño, the team is developing future generations of AI-native silicon and tightly integrated systems to power the next generation of frontier models. By co-designing chips, systems, tools, and methodologies, the team helps deliver faster, more efficient, and production-ready hardware for OpenAI’s supercomputing platform. About the role: We are seeking an experienced Optical Network Engineer to lead Laser related work within our optical interconnect efforts for large-scale compute systems. The role also requires broad, hands-on optical validation experience across IM/DD-based interconnects, working from lab characterization through production readiness and scaled deployment. In this role you will: Drive laser-focused requirements and technical direction within the broader optical interconnect roadmap. Lead evaluation and validation of optical components and subsystems, including laser-based elements, in lab and production-representative environments. Support end-to-end optical testing for IM/DD interconnects (e.g., module/system bring-up, characterization, debug, and readiness for scale). Work with external partners to align on development milestones, performance targets, and quality expectations. Own technical issue triage and resolution across performance, reliability, and manufacturability topics. Collaborate across internal teams to support integration, rollout, and operational success at scale. You might thrive in this role if you have: Strong experience in laser-focused optical engineering (development, validation, manufacturing readiness, or field support). Broad hands-on background with IM/DD optical technologies and optical test/debug workflows. Experience working with external suppliers/manufacturing partners and production-oriented execution. Demonstrated ability to debug complex t
Job Details: Job Description: Note: This role requires regular onsite presence to perform essential job responsibilities. This position drives technology development and enablement for both high-volume manufacturing and future process technologies. Responsibilities include providing process integration and equipment solutions, conducting feasibility studies to meet device performance requirements, and leading the design and development of advanced manufacturing processes. The role involves material selection, parameter optimization, metrology, equipment engineering, and system design to enable new product architectures and functional requirements. The successful candidate will lead pathfinding activities that support process and hardware development for next-generation manufacturing technologies and will contribute to technology roadmaps that enable future product innovation. The role also includes identifying and implementing equipment and process improvements to enhance manufacturing efficiency, optimize production output, and improve operational performance. Qualifications: Minimum Qualifications Master's degree in Electrical Engineering, Mechanical Engineering, Chemical Engineering, Materials Science, or a related STEM field, with 6+ years of semiconductor industry experience , primarily in dry etch process development. Bachelor's degree in Electrical Engineering, Mechanical Engineering, Chemical Engineering, Materials Science, or a related STEM field, with 9+ years of semiconductor industry experience , primarily in dry etch process development. 3+ years of experience collaborating with equipment suppliers (e.g., Lam Research, TEL, Applied Materials, Hit
Job Details: Job Description: The Thin Films Senior Process Engineer will support PVD, CVD, and ALD technologies for dielectric and metal thin-film deposition in a high-volume manufacturing environment. Key Responsibilities Apply advanced expertise in thin-film deposition processes to drive continuous improvement in process performance, sustainment, and technology development. Collaborate with upstream and downstream partners to deliver manufacturing improvements through strong cross-functional engagement and stakeholder management. Own manufacturing processes and/or equipment, ensuring achievement of key performance indicators (KPIs) including safety, quality, cost, productivity, defect reduction, and yield improvement. Develop and execute strategic plans for complex projects, coordinating timelines and dependencies across multiple teams and initiatives. Support manufacturing capacity expansion and technology transfer activities to enable successful ramp-to-volume production. Partner with equipment vendors and cross-functional stakeholders to troubleshoot technical challenges, improve tool performance, and enhance operational efficiency. Lead process development initiatives that support current and next-generation high-volume manufacturing technologies. Design and optimize excursion prevention and detection systems to strengthen process control and minimize manufacturing risk. Lead equipment installation, conversion, qualification, and readiness activities during factory ramps, ensuring all tools are deployed safely, on schedule, and in compliance with quality and manufacturing standards. Drive root cause analysis and implement corrective actions to resolve process and equipment-related issues while improving overall manufacturing stability and performance. <p st
Hyliion is committed to creating innovative solutions that enable clean, flexible and affordable electricity production. The Company’s primary focus is to develop distributed power generators that can operate on various fuel sources to future-proof against an ever-changing energy economy. Job Purpose The Senior Manufacturing Engineer serves as the senior technical authority for assembly process and equipment design within the Industrialization team. This position designs the assembly lines, fixtures, and material flow systems that convert KARNO prototype and development builds into repeatable, scalable production operations — and then systematically removes waste, labor content, and variation from those operations. Working closely with industrialization leadership, design engineering, production, quality, and supply chain, the Senior Manufacturing Engineer owns the most complex assembly value streams end to end: line and station design, fixture and tooling design, material presentation and handling, process qualification, and continuous waste reduction. This position sets the technical standard for how assembly processes are designed and documented at Hyliion, provides mentorship and design review for other manufacturing engineers, and is accountable for measurable improvement in cycle time, first-pass yield, labor content, and ergonomics across the assembly areas. AI at Hyliion At Hyliion, AI is core to how we work. We equip every team member with leading AI tools and count on you to use them — to move faster, solve harder problems, and help us realize the full potential of KARNO technology for the world. Duties and Responsibilities Assembly Line and Cell Design : Design assembly lines, cells, and workstations for KARNO core, module, and subassembly operations. Establish work sequencing, balance work content to takt, define station layouts and footprints, and design lines that accommodate planned rate increases rather t
Hyliion is committed to creating innovative solutions that enable clean, flexible and affordable electricity production. The Company’s primary focus is to develop distributed power generators that can operate on various fuel sources to future-proof against an ever-changing energy economy. Job Purpose The Advanced Engineer, Power System Controls plays a key role in the design, development, and implementation of control software for Hyliion’s Karno Power Module. This position focuses on systems involving combustion, thermal management, pressure regulation, high-voltage, and power management. The engineer will be responsible for developing and validating control algorithms, tuning system parameters, and analyzing data to ensure performance meets engineering specifications. Additional responsibilities include preparing technical documentation, supporting root cause analysis, and ensuring timely, high-quality software delivery. The role requires cross-functional collaboration and occasional travel to support system testing and troubleshooting. Duties and Responsibilities Design, develop, and implement high-quality control software for Hyliion’s Karno Power Module, which includes combustion, thermal, pressure, high-voltage and power management systems. Define and conduct tests to verify software and tune control parameters to meet key performance indicators. Prepare reports and technical documentation related to system performance, control strategies, and compliance. Process and analyze data to verify software against engineering specifications, support root cause analysis and for optimizing performance. Ensure on time delivery with quality. Assist product team in defining customer requirements and generate corresponding engineering specifications. Qualifications Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions. Qualifications include: Education, Experience and Cert
Hyliion is committed to creating innovative solutions that enable clean, flexible and affordable electricity production. The Company’s primary focus is to develop distributed power generators that can operate on various fuel sources to future-proof against an ever-changing energy economy. Job Purpose The Senior Manager, Manufacturing Engineering owns the manufacturing engineering function across Hyliion's Cedar Park, TX headquarters and primary production site and its Milford, OH R&D operations. The role is the bridge between the engineering design of the KARNO Power Module and the scalable, repeatable production system required for commercial ramp, defining and driving the processes, tooling, documentation, and infrastructure that transform KARNO from a highly engineered prototype into a manufacturable product. This is a player-coach role: the incumbent builds and leads a team of manufacturing engineers while remaining personally hands-on in the most challenging production problems. AI at Hyliion At Hyliion, AI is core to how we work. We equip every team member with leading AI tools and count on you to use them — to move faster, solve harder problems, and help us realize the full potential of KARNO technology for the world. Duties and Responsibilities Productionization: translate engineering designs into manufacturable, repeatable, and scalable production configurations across both sites, aligned to the commercial ramp roadmap. Tooling and process development: design, develop, and qualify manufacturing tooling, fixtures, and processes that support quality, efficiency, and volume scalability. Manufacturing documentation: own PFMEAs, control plans, work instructions, SOPs, and MBOMs, keeping them accurate, current, and accessible to the production floor. Lean and material flow: define and implement standard work, material flow, and handling strategies that increase throughput, reduce waste, and prepare the factory for
Job Details: Job Description: As a Module Equipment Technician, you will play a vital role in ensuring the smooth operation of advanced manufacturing equipment used in semiconductor production. You will perform hands-on troubleshooting, maintenance, and calibration of electromechanical systems while supporting experiments and equipment modifications that drive cutting-edge advancements. Your work will directly contribute to enhancing equipment reliability and optimizing production efficiency, making an essential impact on Intel's manufacturing operations. Business Group Join Intel's Advanced Packaging Technology Development - Substrate and Wafer Assembly (ATPD: SWA) organization, a leader in delivering innovative and cost-effective substrate packaging solutions. This business group is focused on advancing Intel's capabilities in manufacturing technology to maintain competitive excellence across global markets. As part of this dynamic team, you will support critical equipment and collaborate on continuous improvement initiatives that align with Intel's broader mission of innovation and growth. Key Responsibilities Perform electrical and mechanical troubleshooting to diagnose issues with manufacturing equipment. Execute setup, calibration, corrective and preventative maintenance on production equipment, including wet chemistry, plating, and dry high-vacuum toolsets. Monitor tool performance and analyze data to identify and address equipment-related issues. Collaborate with engineering and support teams to improve equipment reliability and reduce downtime. Document maintenance activities, repair findings, and parts usage using established systems and procedures. Lead or contribute to continuous improvement projects, focusing on equipment optimization and yie
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 Advanced Packaging Technology Development (APTD) team at Micron is shaping the future of memory and storage technologies that fuel the AI era. We collaborate with global R&D groups, suppliers, and manufacturing teams to turn bold ideas into production-ready solutions. We innovate fast, learn continuously, and work as one team! This position is intended to be part of Micron's Technical Leadership Program (TLP). This is a career path for individuals seeking to advance as technical leaders and industry innovators. TLP members are expected to influence, lead, and mentor others. Position Overview: We are seeking an experienced organizational leader who will l ead and influence methodology improvements, including best practices in process development, data-driven decision-making, and application of AI/advanced analytics to drive innovation. In this role, you will drive strategic process development for Micron’s most advanced memory products, including HBM, 3DS DRAM, and emerging 3D architectures. You will guide end‑to‑end technology execution, partner across organizations, and influence both internal roadmaps and the external ecosystem. This is a high-impact role for someone who thrives at the intersection of innovation, complexity, and collaboration. Responsibilities: Own advanced packaging process technologies across wafer‑level and die‑level modules from pathfinding through manufacturing readiness Develop
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