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In your career, let’s prove what’s possible.
- Bachelor’s degree in Mechanical Engineering, Mechatronics Engineering, Applied Physics, or related field with 5+ years of experience; or Master’s degree with 3+ years of experience; or PhD in a related field
- Excellent communication, both written and verbal, and technical presentation skills
- Proficient in 3D CAD tools such as CREO, Siemens NX, ProE, SolidWorks, and others
- Hands-on experimental, prototype, and test background coupled with solid engineering skills
- Experience developing and executing engineering test plans, analyzing data, and communicating technical conclusions
- Strong engineering fundamentals with experience in mechanical and mechatronic systems, hardware troubleshooting, and structured problem solving
- Experience supporting the validation of precision mechanical assemblies, motion-related hardware, or substrate support and handling
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What can you expect?
- Support the team to monitor and analyze the actual Stock Development and Performance of the Showroom and Demonstrator Fleet
- Support in creating new Dashboards and Predictive Stock Analysis
- Support to test new system developments and processes.
- Regular exchange with relevant interfaces and market based sales functions
- Participation in setting up the Vehicle and Stock Operations team and all associated activities during the initial setup phase of the new BMW/MINI sales model.
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In your career, let’s prove what’s possible.
- Konstruktion mechanischer und mechatronischer Systeme
- Mitarbeit in allen Phasen der Automatisierungsentwicklung:
- Design, Test, Integration und Überleitung in die SerienfertigungZusammenarbeit mit funktionsübergreifenden Teams (Software, Steuerungstechnik und Produktion)
- Erstellung von Dokumentationen laut LAM-Standards und Unterstützung des Produkt-Lifecycle-Managements
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In your career, let’s prove what’s possible.
- Konstruktion (3D und Funktionsbeschreibung) und Analyse mechanischer und mechatronischer Systeme, einschließlich Bewegungssteuerung
- Mitarbeit in allen Phasen der Automatisierungsentwicklung: Anforderungsdefinition, Design/Analyse, Test, Integration und Überleitung in die Serienfertigung
- Zusammenarbeit mit funktionsübergreifenden Teams (Software, Steuerungstechnik, Lieferanten und Fertigung)
- Entwicklung von Steuerungssystemen in enger Zusammenarbeit mit Softwareteams
- Durchführung von Machbarkeitsstudien, Prototypenfertigung und Fehleranalysen unter Anwendung von Methoden wie 5-Why und 8D sowie Charakterisierung und Validierung der Designleistung
- Erstellung von Berichten und technischen Präsentationen zur klaren Kommunikation von Designabsicht, Bewertung und Validierung gegenüber einem vielfältigen Publikum im Rahmen von Design-Reviews
- Erstellung von Dokumentationen laut LAM-Standards und Unterstützung des Produkt-Lifecycle-Managements
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WAS DICH ERWARTET
- Entwickle und konstruiere wegweisende Systemlösungen und Kransysteme und integriere sie in unsere modernen, zukunftsorientierten Produktarchitekturen
- Erarbeite spannende Vorstudien, führe Machbarkeitsprüfungen durch und begleite den gesamten Weg bis zu Prototypen und Serienfertigung
- Übernimm die Leitung anspruchsvoller Entwicklungsprojekte in der mechanischen Vorentwicklung und setze deine Expertise und Kreativität wirkungsvoll ein
- Führe anspruchsvolle analytische sowie FEM-Berechnungen durch, erstelle Kosten-Nutzen-Analysen und gleiche Test- und Simulationsergebnisse präzise ab
- Arbeite bereichsübergreifend mit globalen Entwicklungsteams, externen Forschungs- und Technologiepartnern sowie Produktionsstandorten zusammen und stimme dich eng mit Produktmanagement, Produktion, Montage, Einkauf und Logistik ab
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In your career, let’s prove what’s possible.
- Conduct process engineering research, development, and evaluation in support of Lam’s cutting-edge semiconductor equipment and systems
- Review and enhance processing techniques and methods applied in the manufacture and fabrication of products
- Develop and sustain new processes and process improvements to reduce production costs and increase yields
- Compile and analyze test data to establish next steps in process development and determine appropriate limits and variables for process specifications
- Collaborate internally to plan, collect data, analyze results, and report on customer demos for existing process applications
- Contribute to next generation product development and release activities supporting the semiconductor roadmap
- Provide leadership, clear direction, and guidance to process technicians to support execution activities
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YOUR RESPONSIBILITIES
- Analyze customer requirements and business processes to design tailored ERP solutions using Infor LN and other standard/custom components
- Provide end-user support and incident management, including troubleshooting, help desk activities, and proactive issue resolution
- Collaborate cross-functionally with internal teams and external partners to test, implement, and document logistics processes and system enhancements
- Lead small projects or tasks independently, helping define new business needs and coordinating with stakeholders to ensure successful delivery
- Train clients and share knowledge internally, staying updated on software enhancements and continuously improving support processes and team capabilities
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In your career, let’s prove what’s possible.
- Support the full life cycle of mechanical and electro-mechanical systems from concept to productization including conceptualization, designing, development and validation
- Designs components using variety of metals, ceramics, plastics and advanced coatings
- Perform engineering analyses (structural, thermal, FEA, flow, vibration, manufacturability) to optimize designs
- Develop feasibility studies and test plans to validate product performance and reliability
- Generate technical documentation, FMEA and specifications to deliver safe, manufacturable and cost-effective solutions
- Collaborate with suppliers and cross-functional teams while providing technical guidance to junior engineers
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In your career, let’s prove what’s possible.
- Support in the manufacturing/assembly of systems
- Assembly of complex circuitry systems
- Cabling and writing of high-quality system components
- Execution of system tests, fault analysis and troubleshooting
- Quality of control of mechatronic systems
- Setup and parameterization of robotic systems
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In your career, let’s prove what’s possible.
- Operate in an R&D environment performing preventative and corrective maintenance, troubleshooting, upgrades, and calibrations on equipment
- Diagnose and repair mechanical, electromechanical, electronic, and vacuum equipment
- Ensure safe handling of hazardous gas and liquid materials using required Personal Protective Equipment
- Partner with cross-functional teams – including process development, hardware, and software engineering – on R&D activities, customer demos, and supporting equipment
- Install and provide support for prototype equipment, developing procedures and documentation
- Maintain alignment on priorities across tasks that vary from dynamic to consistent with clear and proactive communications
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In your career, let’s prove what’s possible.
- Provide technical support in assembly and final test of the production floor
- Work with Lam Product Group Engineering in correcting design errors and driving RCCA
- Drive the improvement of the manufacturing processes to ensure product quality, cost, and on-time-delivery
- Drive work instruction creation and deployment within Lam’s manufacturing execution system
- Estimate manufacturing cost, determines time standards and makes recommendations for fixturing and process requirements of new product lines
- Maintain records and reporting systems for coordination of manufacturing operations
- Review new designs for manufacturability and makes recommendations to design engineering on manufacturability (DFMA) improvements
- Analyze the build process via pFMEA, identifies risks and bottlenecks, and drives improvement
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In your career, let’s prove what’s possible.
- Participate in all phases of the automation development: requirements, design/analysis, assembly, testing, integration, and volume manufacturing.
- Design and analyze mechanical and mechatronic systems, including motion control and automation.
- Conduct detailed analysis including structural, finite element analysis (FEA), thermal, heat transfer, stress, vibrations, fluid and gas flow dynamics, and manufacturability to properly specify designs.
- Work with cross-functional teams (software, controls, suppliers, manufacturing).
- Developing control systems in close collaboration with software teams.
- Conduct feasibility studies, prototype fabrication, and failure analysis using methods like 5-Why and 8D, characterize and validate design performance.
- Develop control systems hardware, perform PID tuning, and design motion profiles.
- Prepare reports and technical presentations to clearly communicate design intent, evaluation, and validation to a diverse audience in design reviews.
- Create documentation and support lifecycle management of products.
- Ensure documentation aligns with SEMI, Lam standards, and industry best practices for geometric dimensioning and tolerancing (GD&T).
- Collaborate with suppliers and internal teams to ensure solutions can be manufactured with high-quality, cost-optimized, and to requirements.
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In your career, let’s prove what’s possible.
- Design and develop highly complex electrical systems, sub-systems, and/or solutions, applying engineering methods to design
- Contributes to research and development efforts for future products by collecting and analyzing data to improve electrical system designs
- Develops functional specifications for highly complex electrical/ electro-mechanical systems and power distribution components
- Collaborate with cross-functional engineering design teams to design and modify custom and OEM system components
- Perform hands-on test and validation utilizing lab equipment to characterization of the performance of the electrical/ electro-mechanical systems
- Prepare high-quality reports and technical presentations to clearly communicate design intent, analysis, and results to diverse audiences in design reviews
- Acts as a resource and mentor for more junior colleagues
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In your career, let’s prove what’s possible.
- Lead the development, documentation, and continuous improvement of standardized operational processes, policies, work instructions, and control methods across key business functions.
- Identify, prioritize, and execute high-impact continuous improvement initiatives using Lean, Six Sigma, Kaizen, DMAIC, and value stream mapping methodologies.
- Champion a culture of continuous improvement across the Salzburg site by driving measurable gains in quality, cycle time, productivity, and cost.
- Partner with engineering and operations teams to embed Design for Quality (DFQ), Design for Manufacturability and Assembly (DFMA), and process discipline into product development and new product introduction (NPI) activities.
- Drive the development and standardization of engineering and operational review practices, including stage-gate rigor, process controls, tolerance analysis, and verification approaches where applicable.
- Lead cross-functional problem-solving efforts to address systemic process issues, eliminate waste, and improve overall business performance.
- Establish and strengthen structured change management practices to ensure process and design changes are evaluated, communicated, and implemented effectively.
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In your career, let’s prove what’s possible.
- Design and develop substrate holders (chucks) for wet chemistry processes, including plating, cleaning, and etching applications
- Define sealing concepts, panel support strategies, clamping mechanisms, and chemical exposure interfaces
- Optimize designs for uniform process conditions, minimal particle generation, and high substrate integrity (e.g. low breakage, controlled deformation)
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