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Recently posted jobs
Hardware • Semiconductor • Industrial • Manufacturing
Electrical Engineering Interns design and build PCBAs and electrical systems for semiconductor fabrication equipment. Responsibilities include schematic capture, layout, bringup, testing, integration, documentation, requirements definition, design analysis, simulation, component selection, prototyping, troubleshooting, and productionizing solutions. Interns collaborate with software, mechanical, and process engineering teams on lithography, deposition, vacuum, motion control, and plasma etching systems.
Hardware • Semiconductor • Industrial • Manufacturing
Infrastructure and Site Reliability Engineering Intern responsible for building and managing on-premises backend infrastructure for a semiconductor fab. Duties include infrastructure-as-code, server fleet management, monitoring, alerting, automation, secret management, performance optimization, and production debugging. The role emphasizes Linux, systems programming, reliability, observability, and close collaboration with engineering teams. A portfolio demonstrating software engineering projects is required.
Hardware • Semiconductor • Industrial • Manufacturing
Develop real-time Linux and Rust applications for semiconductor fabrication equipment. Design algorithms and simulations for robotic control systems, improve robot efficiency, and contribute to interdisciplinary projects involving motor controllers, path planning, and trajectory control. Interns receive significant ownership of mission-critical hardware and software initiatives and must provide a portfolio demonstrating software engineering work and projects built.
Hardware • Semiconductor • Industrial • Manufacturing
Build full-stack chip design tools in Rust, owning major features from design through shipping. Work across interactive editing, collaborative document models, synchronization, GPU rendering, simulation, WebAssembly, and integrations. Optimize for low latency, correctness, performance, and usability across native and browser environments. The role requires strong systems fundamentals and a portfolio demonstrating substantial software built from scratch.
Hardware • Semiconductor • Industrial • Manufacturing
Develop real-time Linux applications and Rust microcontroller firmware for semiconductor fabrication equipment. Build backend systems to capture and analyze semiconductor process data, contribute to end-to-end system bring-up, and work across hardware and software in a fast-paced engineering environment. Applicants must provide a portfolio demonstrating software engineering ability and projects they have built.
Hardware • Semiconductor • Industrial • Manufacturing
Software Engineering Interns will build full-stack applications, tools, and infrastructure for a software-defined semiconductor fab. Responsibilities include developing frontend and backend data-driven applications, sequencing and controlling fabrication operations, and analyzing semiconductor process data. Candidates will work hands-on across multiple technical domains and are expected to build and test complex software rapidly.
Hardware • Semiconductor • Industrial • Manufacturing
Build the AI platform for fab2, including infrastructure spanning cloud and on-premises compute, AI agents, MCP servers, sandboxes, evaluation systems, and shared engineering tools. Develop AI systems for automated experimentation, defect detection, engineering analysis, and fab operations. The role offers broad ownership across the AI stack and requires strong software engineering, product judgment, technical communication, and the ability to turn ambiguous problems into production systems.
Hardware • Semiconductor • Industrial • Manufacturing
Build full-stack frontend and backend applications, tools, and infrastructure for a software-defined semiconductor fab. Develop systems for sequencing and controlling fabrication operations, analyze semiconductor process data, and create software from scratch. Interns work hands-on across databases, visualization, data pipelines, distributed systems, and fab equipment control.
Hardware • Semiconductor • Industrial • Manufacturing
Build, deploy, and manage on-premises backend infrastructure for a semiconductor fabrication facility. Responsibilities include infrastructure-as-code, server fleet management, monitoring, alerting, automation, secure secret management, performance optimization, and production debugging. The intern will collaborate with engineering teams to deliver reliable infrastructure and services.
Hardware • Semiconductor • Industrial • Manufacturing
Develop real-time Linux and Rust applications for semiconductor fabrication equipment. Design robotic control algorithms and simulations to improve equipment and robot efficiency. Interns work autonomously on interdisciplinary projects involving motor controllers, path planning, trajectory control, and software testing. A portfolio demonstrating software engineering work is required.
Hardware • Semiconductor • Industrial • Manufacturing
Develop real-time Linux applications and Rust microcontroller firmware for semiconductor fabrication equipment. Build backend systems to capture and analyze semiconductor process data, contribute to end-to-end system bring-up, and test high-performance tools involving structures, optics, liquids, heat transfer, physics, and chemistry. Applicants must provide a portfolio demonstrating software engineering ability and hands-on projects.
Hardware • Semiconductor • Industrial • Manufacturing
Build full-stack chip design software in Rust, owning major features from design through shipping. Work across interactive editing tools, collaborative document models, synchronization engines, GPU rendering, simulation, WebAssembly, and integrations. The role requires strong systems fundamentals, performance optimization, concurrency knowledge, and a portfolio demonstrating substantial software built from scratch. Experience with game engines, graphics, distributed systems, algorithms, geometry, or electrical engineering is beneficial.
Hardware • Semiconductor • Industrial • Manufacturing
Electrical Engineering Interns will design, prototype, test, integrate, and document PCBAs and electrical systems for semiconductor manufacturing equipment. Responsibilities include schematic capture, layout, system bring-up, simulations, troubleshooting, requirements definition, and cross-functional collaboration with software, mechanical, and process teams. Interns will work on lithography, deposition, vacuum, motion-control, and plasma-etching systems while rapidly developing and productionizing hardware solutions.
Hardware • Semiconductor • Industrial • Manufacturing
Seeking hands-on engineers across mechanical, electrical, software, and nanofabrication to design and build full-stack chip-making hardware and software, iterate quickly, and develop fabs, tools, and components in a San Francisco lab.
Hardware • Semiconductor • Industrial • Manufacturing
Design, prototype, and build robotic automation and electromechanical systems for semiconductor packaging. Create mechanical assemblies, integrate microcontrollers/PLCs, sensors, actuators, and firmware, validate control systems, source components, and collaborate cross-functionally. Applicants must provide a portfolio of hands-on projects.
Hardware • Semiconductor • Industrial • Manufacturing
Lead and own end-to-end accounting for a hardware-intensive startup. Build close processes, inventory/WIP and cost accounting, controls, ERP/MES/PLM integrations, audit readiness, and hire/manage an accounting team while partnering cross-functionally.
Hardware • Semiconductor • Industrial • Manufacturing
Design, build, deploy, and operate on-prem, bare-metal backend infrastructure for a semiconductor fab. Own servers, networking, observability, backups, OS image automation, secrets management, and infrastructure-as-code to deliver reliable, high-performance systems that support fab operations.
Hardware • Semiconductor • Industrial • Manufacturing
Design, prototype, and build nanometer-scale mechanical systems for semiconductor fabrication. Lead system integration, tolerance and error budgeting, select precision components, and rapidly iterate designs through hands-on prototyping and metrology.
