Vollzeit
Villach, München
24.08.2026
Villach, München
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In your career, let’s prove what’s possible.
- Build production-grade Python packages.
- Follow and build project scaffolds (PowerShell), follow coding standards, and reproducible workflows.
- Transform analyses into standardized currently best-known methods (cBKM)
- Process data and automate data flows; manage and optimize data structure & data bases for big data sets.
- Interact with product and service teams to identify questions and issues for data analysis and experiments.
- Interpret and communicate data analysis results and experiments to product, service & business managers.
- Design, build and maintain dashboards.
- Process confidential data and information according to guidelines.
- Support to setup iterating reports, analysis and dashboards.
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In your career, let’s prove what’s possible.
- Develop inspection techniques and metrology recipes supporting the data generation andanalysis for the customer demo support.
- Independently design and conduct experiments, developing tailored analytical methodologies, supporting product development’s engineering testing.
- Plan, carry and oversee complex metrology related projects, documenting results and lessonslearned in BKM.
- Analyze the metrology equipment’s performance and partner with the suppliers on problemsolving and CIP.
- Schedule and organize the needed preventive maintenances and calibrations.
- Support the development of the site’s metrology roadmap, identifying current gaps through the cooperation with the engineering teams, align on the future technical requirements, and setup the implementation strategies.
- Engage with analytical laboratories and wafers suppliers to extend the available engineering testing offer.
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In your career, let’s prove what’s possible.
- Design and implement enterprise observability strategies across cloud, infrastructure, applications, and platforms.
- Build telemetry pipelines that ingest logs, metrics, traces, events, and topology information.
- Deploy and tune observability platforms to improve operational visibility and service reliability.
- Develop AIOps capabilities including anomaly detection, event correlation, noise reduction, and predictive insights.
- Partner with SRE, platform engineering, cybersecurity, and service operations teams to identify key operational signals.
- Create dashboards, service maps, operational scorecards, and SLO-driven reporting.
- Integrate observability data into AI agents, automation workflows, and operational platforms.
- Establish telemetry standards and observability engineering best practices.
- Drive continuous improvements in MTTD, MTTR, and service health monitoring.
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In your career, let’s prove what’s possible.
- Define the enterprise architecture and technology strategy for Agentic AI, AIOps, autonomous operations, and intelligent automation.
- Establish architectural standards, design patterns, and governance frameworks for AI agents and multi-agent systems.
- Design the integration architecture connecting agents to enterprise systems including ServiceNow, cloud platforms, observability platforms, CMDB, developer platforms, and security tooling.
- Develop reference architectures for AI-powered incident response, service management, platform operations, FinOps, cybersecurity, and disaster recovery.
- Partner with executives and technology leaders to align agentic capabilities with business and operational priorities.
- Evaluate emerging technologies, frameworks, and vendors in AI, automation, platform engineering, and cloud-native ecosystems.
- Define policies, controls, and approval models that enable safe autonomous operations.
- Drive architecture reviews and technical governance across multiple engineering and operations teams.
- Mentor engineers and architects while fostering innovation and best practices.
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In your career, let’s prove what’s possible.
- Responsible for performing professional process engineering research, development and evaluation in semiconductor environment
- Reviews processing techniques and methods applied in the manufacture, fabrication and evaluation of products including in-house lab demonstrations
- Conceives and plans projects involving definition and selection of new concepts and approaches
- Works with customer and senior engineers cross functionally to understand roadmaps, process flow, inflection points, requirements and business issues/ challenges.
- Acts as customer technology manager in the planning, data collection, analysis and reporting
- Acts as single point of contact accountable for process related customer requests
- Drives introduction and evaluation of new technologies at customer sites including new tool qualification
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Senior Research Engineer – Nitride Thin-Film Materials (Wide Band Gap) (all genders)
- Development of thin films for piezoelectric and wide-band-gap applications.
- Design and execute experiments to optimize nitride thin film materials, guided by device specifications and performance feedback.
- Structural and functional (e.g. dielectric, electrical, ferroelectric) characterization of the deposited thin films.
- Collaboration with design, fabrication, characterization, and process engineer teams to optimize full process flow and device performance.
- Definition of strategies for material optimization and pursuing scientifically relevant investigations.
- Development of strategies to address novel material properties and novel fields of application.
- Contributing to the standardization of procedures and workflows within the Unit.
- Filing IP disclosures whenever possible and appropriate.
- Contribution to scientific dissemination (publications in high-impact peer-reviewed journals, presentations at conferences).
- Contribution to Unit workflows, project acquisition and project management.
- Position is offered within the Chips JU Pilot Lines.
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In your career, let’s prove what’s possible.
- Lead the design and implementation of Lam's Agent Platform and Internal Developer Platform.
- Build and operate the cloud-native infrastructure supporting AI agents and automation services.
- Establish platform engineering standards, reusable templates, golden paths, and self-service capabilities.
- Implement GitOps, Infrastructure as Code, policy-as-code, and secure software delivery practices.
- Design deployment pipelines, observability standards, operational controls, and runtime governance.
- Partner with architects, SRE teams, and application teams to onboard services onto the platform.
- Define scalability, reliability, and resiliency requirements for enterprise automation workloads.
- Drive adoption of cloud-native engineering practices across the organization.
- Mentor engineers and build platform engineering excellence.
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In your career, let’s prove what’s possible.
- Responsible for performing professional process engineering research, development and evaluation in semiconductor environment
- Reviews processing techniques and methods applied in the manufacture, fabrication and evaluation of products including in-house lab demonstrations
- Conceives and plans projects involving definition and selection of new concepts and approaches
- Works with customer and senior engineers cross functionally to understand roadmaps, process flow, inflection points, requirements and business issues/ challenges.
- Acts as customer technology manager in the planning, data collection, analysis and reporting
- Acts as single point of contact accountable for process related customer requests
- Drives introduction and evaluation of new technologies at customer sites including new tool qualifications
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In your career, let’s prove what’s possible.
- Responsible for performing professional process engineering research, development and evaluation in semiconductor environment
- Reviews processing techniques and methods applied in the manufacture, fabrication and evaluation of products including in-house lab demonstrations
- Conceives and plans projects involving definition and selection of new concepts and approaches
- Works with customer and senior engineers cross functionally to understand roadmaps, process flow, inflection points, requirements and business issues/ challenges.
- Acts as customer technology manager in the planning, data collection, analysis and reporting
- Acts as single point of contact accountable for process related customer requests
- Drives introduction and evaluation of new technologies at customer sites including new tool qualification
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Semiconductor Equipment Engineer (all genders)
- Independently carrying out maintenance, troubleshooting, and servicing of high-end cleanroom equipment
- Planning and coordinating preventive and corrective maintenance activities on semiconductor tools
- Supporting the continuous improvement of maintenance processes and equipment reliability within the cleanroom environment
- Performing regular inspections of cleanroom facilities and infrastructure
- Assisting the cleanroom team with daily operational and technical tasks
- Preparing and maintaining technical documentation, maintenance records, and operating procedures
- Working closely with equipment suppliers and process engineers to improve tool performance and support advanced process development
- Coordinating service activities with external vendors as well as internal stakeholders
- Supporting organizational and administrative activities within the team to ensure smooth day-to-day operations
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R&D Process Engineer - Stepper-based Lithography (all genders)
- Develop, optimize, and maintain stepper-based lithography processes for a diverse multi-project R&D environment.
- Establish repeatable process baselines and maintain control through SPC and routine performance monitoring.
- Define and document process parameters, recipes, and SOPs to support repeatable user operation.
- Own stepper tool and periphery equipment, ensuring high uptime and consistent performance for multiple technologies and flows.
- Work closely with process engineers and users to ensure lithography compatibility across varied fabrication flows.
- Work closely with equipment maintenance engineers to ensure tool health.
- Lead hands-on troubleshooting, root cause analysis, and continuous improvement in a fast-changing R&D setting.
- Support tool upgrades, new installations, and capability expansion projects.
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R&D Process Engineer - Thin Film Deposition (all genders)
- Develop, monitor, and optimize thin film deposition processes (primarily sputtering) to support R&D and prototype fabrication.
- Maintain tool health and stability through performance tracking, SPC monitoring, and preventive maintenance coordination.
- Support researcher use of deposition tools, ensuring safe operation, consistent process quality, and compliance with FAB standards.
- Lead and assist in tool upgrades, process capability improvements, and new equipment evaluation or acquisition.
- Document process parameters, tool performance, and experiment outcomes to ensure traceability and knowledge sharing.
- Serve as the technical interface between the fabrication team and research groups to enable efficient process development and experimentation.
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Plasma R&D Process Engineering - Dry Etch / PECVD (all genders)
- Develop, optimize, and sustain plasma etch (dry etch) & deposition (PECVD) processes to support diverse R&D flows.
- Establish stable, repeatable process baselines and maintain tight control through SPC and regular performance monitoring.
- Own and maintain plasma tools, ensuring high uptime and process consistency.
- Define and document process parameters, recipes, and best practices to ensure reproducibility across experiments and flows.
- Collaborate with the process engineering team members to ensure process compatibility across the full fabrication flow.
- Lead troubleshooting, root cause analysis and continuous improvement activities to maintain high process quality and tool uptime.
- Support tool upgrades, new equipment acquisition, and capability expansion projects.
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Senior Research Engineer – Quantum Photonic Integrated Circuit Design and PDK development (all genders)
- Designing photonic integrated circuits (passive components and modulators) for quantum applications based on AlN.
- Contributing to the development and validation of PDK components, including layout, simulation, and documentation.
- Generating layout from design and performing design rule checks
- Characterizing fabricated devices in the lab (optical/electrical testing) and analyzing measurement data
- Designing improvements based on characterization results to enhance device performance and yield
- Collaborating closely with process and fabrication teams to ensure high design-to-fab fidelity
- Contributing to reporting, documentation, publication, IP generation, and patent application
- Supporting industry and academic collaborations within multidisciplinary projects
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Senior Research Engineer - Process Development for Integrated Photonics Fabrication (all genders)
- PIC Fabrication & Development:Designing, fabricating, and testing PICs.
- Platform Specialization: Focusing primarily on process development for either Aluminum Nitride (AlN) or Thin-Film Lithium Niobate (TFLN) Platform.
- Technology ownership: Owning a platform flow (AlN or TFLN) and acting as a go-to person for fabrication topics, including coordination with cleanroom/process engineering and alignment with design/test needs. This includes mentoring and knowledge transfer, proactive risk/bottleneck identification and mitigation, and contributing to roadmap/benchmarking and experimental strategy.
- DOE- Driven process development:
- Developing and integrating process modules for stable, repeatable fabrication, increasing
- Technology Readiness Level (TRL) and pilot-line readiness.
- Planning and executing Design of Experiments (DOE) to optimize processes.
- Driving process integration, stability, and performance improvements for scalable fabrication.
- Defining Process windows
- Performing data-driven root-cause analysis
- Fabrication: Hands-on work with key fabrication processes including lithography, deposition (PVD/ALD/PECVD), dry etch (ICP-RIE), metrology/SPC, and documentation/change control.
- Collaboration & Teamwork:
- Working closely with SAL’s process engineering team.
- Collaborating to ensure high fabrication fidelity.
- Supporting industry and academic collaborations within multidisciplinary projects.
- Documentation & IP:
- Reporting and thorough documentation of work.
- Contributing to IP generation and patent applications.
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In your career, let’s prove what’s possible.
- Responsible for performing professional process engineering research, development, and evaluation in support of the company’s complex semiconductor capital equipment and systems.
- Reviews processing techniques and methods applied in the manufacture, fabrication and evaluation of products. Involvement may begin at any step from pilot plant to full-scale manufacturing.
- Conceives and plans projects involving definition and selection of new concepts and approaches in the processing or development of new processes.
- Compiles and evaluates test data to determine appropriate limits and variables for process specifications.
- Supports customer technology managers in the planning, data collection, analysis, and reporting of customer demos to defend existing process applications.
- Drives the adoption of new technology at the customer site. Works closely with customer to demonstrate and introduce new technologies at customer sites through demos, on site evaluations, and new tool qualifications.
- Works with customer and senior engineers cross functionally to understand roadmaps, process flow, inflection points, requirements and business issues/ challenges.
- Works with suppliers to make sure required parts and supplies are available
- Contributes to product development and release activities.
- May act as CTM-single point of contact accountable for process related requests.
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Senior Scientist - Ion-trap chips (all genders)
- Establishment of infrastructure and set-ups for testing and operation of ion trap devices and development of ion trap systems for Quantum technology applications.
- Coordination and alignment of internal efforts and activities with industrial and academic partners in the pilot line.
- Contribution to design, simulation and characterization of new ion trap chips.
- Dissemination, communication and reporting of research findings to both scientific and non-scientific audiences.
- Supervision of students.
- Activities in relevant networks.
- Project management.
- Project and funding acquisition.
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Senior Research Engineer – Technology development and process integration for MEMS-based applications (all genders)
- Technology development for MEMS-based devices in various fields such as optics, acoustic, inertial sensors from concept to prototype.
- Development and implementation of DOE to improve device performance.
- Microfabrication and prototyping in cleanroom facility by using 200 mm wafer level technology.
- Advanced testing of developed MEMS devices (electrical, mechanical, acoustic, …).
- Scientific communication / reporting of research results.
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