#hiring Reliability Engineer, San Diego, United States, fulltime #jobs #jobseekers #careers #SanDiegojobs #Californiajobs Apply: https://lnkd.in/drfVW24u Job ID: J-Introduction:As a Reliability Engineer you'll be responsible for performing statistical analysis and predictive modeling of laser and business performance using corporate databases. Evaluates, from a reliability standpoint, the materials, properties and techniques used in production. Advises design engineering on selection, application and test of electronic components and systems. Recommends design or test methods and statistical process control procedures for achieving required levels of product reliability. Determines reliability requirements of components and systems to achieve company, customer and any governmental agency reliability objectives. Develops new acceleration techniques and analytical tools to assure the early identification of potential problems with new products, packaging, processes, and product reliability. Makes recommendations for changes in the selection and application of components and systems.Roles and responsibilities:Participate in project planning meetings, develop compliance project support schedules and budgets.Support product development in design reviews, outsource supplier reviews, sample reviews, etc.Perform, coordinate, and document Hazard Analyses and Risk Assessment of modules, subsystems, and systems.Coordinate external evaluations and certifications of products, accessories, subassemblies, and components.Propose changes in design to improve system and / or process Reliability as a part of qualification process in program development.Assists with documenting and tracking corrective actions and participate in resolving safety & compliance issues.Perform and document electrical and mechanical measurements. Write and assemble Technical Files.Perform and document industrial hygiene sampling tests.Assisting writing, assembling, and maintaining files of product safety ®ulatory compliance reports.Review and edit compliance reports generated by NRTL's and third-party organizations.Contribute to product documentation through safety guidance, manuals reviews, and procedure reviews.Statistical analysis as necessary for all aspects of businessStatistical analysis as necessary for laser performancePredictive modeling of business and laser performanceDevelop and maintain stat server analyticsEvaluate the reliability of designs, processes, and materials using tools such as DFMEA, PFMEA, acceleration techniquesParticipate in project specification and requirements reviews and then determine relevant reliability test plansExecute and monitor progress of reliability and qualification tests.Analyze test data and produce formal reports for customersPerform reliability calculations
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#hiring Reliability Engineer, San Diego, United States, fulltime #jobs #jobseekers #careers #SanDiegojobs #Californiajobs Apply: https://lnkd.in/drfVW24u Job ID: J-Introduction:As a Reliability Engineer you'll be responsible for performing statistical analysis and predictive modeling of laser and business performance using corporate databases. Evaluates, from a reliability standpoint, the materials, properties and techniques used in production. Advises design engineering on selection, application and test of electronic components and systems. Recommends design or test methods and statistical process control procedures for achieving required levels of product reliability. Determines reliability requirements of components and systems to achieve company, customer and any governmental agency reliability objectives. Develops new acceleration techniques and analytical tools to assure the early identification of potential problems with new products, packaging, processes, and product reliability. Makes recommendations for changes in the selection and application of components and systems.Roles and responsibilities:Participate in project planning meetings, develop compliance project support schedules and budgets.Support product development in design reviews, outsource supplier reviews, sample reviews, etc.Perform, coordinate, and document Hazard Analyses and Risk Assessment of modules, subsystems, and systems.Coordinate external evaluations and certifications of products, accessories, subassemblies, and components.Propose changes in design to improve system and / or process Reliability as a part of qualification process in program development.Assists with documenting and tracking corrective actions and participate in resolving safety & compliance issues.Perform and document electrical and mechanical measurements. Write and assemble Technical Files.Perform and document industrial hygiene sampling tests.Assisting writing, assembling, and maintaining files of product safety ®ulatory compliance reports.Review and edit compliance reports generated by NRTL's and third-party organizations.Contribute to product documentation through safety guidance, manuals reviews, and procedure reviews.Statistical analysis as necessary for all aspects of businessStatistical analysis as necessary for laser performancePredictive modeling of business and laser performanceDevelop and maintain stat server analyticsEvaluate the reliability of designs, processes, and materials using tools such as DFMEA, PFMEA, acceleration techniquesParticipate in project specification and requirements reviews and then determine relevant reliability test plansExecute and monitor progress of reliability and qualification tests.Analyze test data and produce formal reports for customersPerform reliability calculations
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Hello Everyone, We are hiring Electrical, Failure Analysis Reliability Engineer in Wisconsin-onsite-Waukesha. If anyone is interested please send your updated resume on abdul.rehman@pentangletech.com #hiring #hiringalert #hiringimmediately Job Description: ESSENTIAL DUTIES & RESPONSIBILTIES: Conduct advanced component level failure analysis (FA) using methodologies such as X-Rays, Cross Sectioning, etc. Provide support in qualifying and validation of electronic and electromechanical components. Develop and execute failure analysis methodologies and lead root cause identification initiatives. Drive posttest component performance analysis and documentation. Assist engineering teams with system level test procedures, procuring resources and equipment, implementing tests, and trouble-shooting complex issues. Collaborate with manufacturing partners and other engineering stakeholders to optimize product designs for reliability and manufacturability. Collaborate with electronic component suppliers and distributors on component failure modes identification and evaluation. Component quality assessment and defect analysis. Coordinate with external FA labs to scope appropriate evaluation methodologies and interpret the results and recommend mitigation actions. Assist with and implementation of design changes that will improve robustness, manufacturability, reliability, serviceability and eliminate unnecessary cost and complexity. Implement and execute component level qualification matrices DFR and evaluation guidelines. Drives analytical troubleshooting, problem-solving, and team development to solve day-to-day operational issues and reach short- and long-term performance goals. Develop formal failure analysis report data and findings after analysis completion. KNOWLEDGE, SKILLS, & ABILITIES: Working knowledge of electrical engineering theory and principles Working knowledge of Physics based component failure modes and evaluation methodologies. Working knowledge of electronic and electromechanical components and its applications Experience with creating and implementing component qualification and validation plans. Knowledge of Printed Circuit Board layout best practices Deep familiarity and experience with high-volume manufacturing of electronics products, including mixed surface mount/through-hole PCBs and electromechanical assembly. Attention to detail. Comfort and desire to be challenged. Working with Ambiguity: Achieves forward progress in the face of poorly defined situations and/or unclear goals; able to work effectively with limited or partial information. Prioritizing and Organizing Work: Allocates time and attention based on what is the most important to achieve key goals and objectives; approaches work in an organized and systematic manner; effectively manages tasks, information, and requests.
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Optimize your operations with top professionals in manufacturing, mechanical engineering, and process engineering. TALENT Software Services ensures you have the right people to maintain and enhance your operational excellence. #Manufacturing #ProcessEngineering #OperationalExcellence
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9 Major job profiles in an OSAT fab: Responsibiliites and Skills In an OSAT (Outsourced Semiconductor Assembly and Test) fab, there are various job profiles covering engineering, operations, quality control, and support roles. 🚀 Process Engineer Responsibilities: Develop and optimize assembly and testing processes for semiconductor devices. Work on wire bonding, die attach, molding, and other assembly processes. Skills: Knowledge of semiconductor packaging, process optimization, and problem-solving. 🚀 Test Engineer Responsibilities: Design and implement testing procedures for semiconductor components. Ensure device functionality and reliability through rigorous testing protocols. Skills: Knowledge of automated test equipment (ATE), programming, and failure analysis. 🚀 Equipment Engineer Responsibilities: Maintain and optimize machinery used in the assembly and testing process. Troubleshoot and repair equipment to minimize downtime. Skills: Expertise in semiconductor packaging equipment, troubleshooting, and maintenance. 🚀 Quality Control Engineer Responsibilities: Ensure the quality and reliability of semiconductor packages through inspections, audits, and quality assurance measures. Skills: Knowledge of quality standards (ISO, Six Sigma), failure mode analysis, and statistical process control (SPC). 🚀 Packaging Engineer Responsibilities: Design and develop semiconductor package solutions, considering factors like thermal management, material selection, and form factor. Skills: Expertise in package design software, material science, and thermal management techniques. 🚀 Manufacturing Technician Responsibilities: Operate and monitor assembly machines, such as wire bonders, die attachers, and molding machines. Perform basic equipment troubleshooting and adjustments. Skills: Basic technical skills, equipment operation, and understanding of assembly processes. 🚀 Maintenance Technician Responsibilities: Conduct preventive maintenance, routine inspections, and repairs on production equipment to ensure smooth operations. Skills: Mechanical and electrical troubleshooting, equipment maintenance, and safety protocols. 🚀 Production Operator Responsibilities: Operate and monitor equipment on the production floor, load wafers, or substrates into machines, and ensure process consistency. Skills: Attention to detail, basic technical skills, and machine operation experience. 9. Supply Chain & Logistics Manager Responsibilities: Manage the procurement and delivery of materials required for production, coordinate shipments of finished goods, and optimize the supply chain. Skills: Inventory management, supplier relations, and logistics optimization. ----- If you Like writings like these, we are organizing our first masterclass to explain everything around semiconductors in 2 hours. Link in comments.
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Congratulations to Team Ecolab, Greensboro, NC! Tim Spruill, and Lenny Dean Assessment Protocol Administrator Certification using Scientific Management Techniques competency-based assessment program as well as Train The Trainer Certification using SMT Hands-On Training Program for SMT's Basic Electrical Volume 9. Scientific Management Techniques is the Global Leader in "Hands-On" Industrial Skills Assessment Programs and Skills Training Programs. World-Class manufacturing organizations rely on SMT's programs to identify and improve workforce skills to drive performance and profitability in their production facilities globally. These programs are unique, validated, and proven highly effective in nearly 50 countries and deliver a Return-On-Investment in excess of 100% the first year of implementation. Powerful Productivity Tools. These scientific-based, data-driven programs simplify the hiring process. The solution lowers the risk and cost of hiring and aligns the hiring process with industrial lean/TPM initiatives. With SMT's assessment program, our clients know the skill set/skill level of each candidate prior to hire. SMT's competency based assessment program can quantify troubleshooting ability in 5 disciplines: Mechanical Skills, Electrical Skills, PLC Skills, CNC Skills, and Process Control Skills. #Training #Manufacturing #Mechanical #Hiring #Electrical #Productivity #Investment #Handsontraining #Handsonassessment #Problemsolving #Factfinding #Faultfinding #Troubleshooting
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10 Major Job Profiles in Semiconductor Chip Fabrication 1. Process Engineer: Skills:Knowledge of semiconductor manufacturing processes, problem-solving skills, data analysis, and statistical methods. Majors:Chemical Engineering, Electrical Engineering, Materials Science. 2. Equipment Engineer: Skills: Understanding of semiconductor manufacturing equipment, troubleshooting skills, and equipment maintenance. Majors:Electrical Engineering, Mechanical Engineering. 3. Device Engineer: Skills: Expertise in semiconductor device physics, modeling, and simulation. Majors: Electrical Engineering, Physics, Materials Science. 4. Quality Assurance Engineer: Skills: Quality control, data analysis, statistical methods, attention to detail. Majors: Industrial Engineering, Quality Management. 5. Integration Engineer: Skills:System-level understanding, integration of different semiconductor components, project management. Majors: Electrical Engineering, Computer Engineering. 6. Metrology Engineer: Skills: Knowledge of measurement tools and techniques, data analysis. Majors: Electrical Engineering, Physics. 7. Research and Development (R&D) Scientist: Skills:Research skills, innovation, problem-solving, and understanding of emerging technologies. Majors:Physics, Electrical Engineering, Materials Science. 8. Process Integration Engineer: Skills:Integration of different processes, troubleshooting, optimization. Majors: Electrical Engineering, Chemical Engineering. 9. Manufacturing Engineer: Skills: Production process optimization, efficiency improvement, project management. Majors: Industrial Engineering, Manufacturing Engineering. 10. Facility Engineer: Skills: Knowledge of facility management, safety protocols, equipment installation. Majors: Civil Engineering, Facilities Management. Want to read what their day to day jobs are- a detailed post is in comments. Add more jobs in comments. A detailed post can be read here: TechoVedas ---------- P.S: If you like writings like these, we have compiled 100s of such questions in our book- The semiconductor Saga- a book that teaches you everything about semiconductors in simple words. Link in comments.
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I-DESIGN is a premier provider of engineering automotive testing and validation services. With a commitment to excellence and a passion for innovation, we specialize in ensuring the quality, reliability, and safety of automotive systems and components. I-DESIGN understands the critical importance of rigorous testing and validation processes in the automotive industry. Our team of experienced engineers and technicians utilizes state-of-the-art equipment and advanced methodologies to conduct comprehensive testing across various automotive domains, including: Electrical and Electronic Systems Testing Mechanical Component Testing Vehicle Performance and Durability Testing Environmental and Climate Testing Functional Safety and Compliance Testing Prototype Validation and Verification and many more.......... We take pride in our ability to deliver accurate, timely, and cost-effective solutions that meet the unique needs and challenges of our clients. Whether you are an automotive OEM, Tier 1 supplier, or aftermarket manufacturer, you can rely on [I-DESIGN to provide you with the expertise and support you need to succeed in today's competitive market. In addition to our testing and validation services, we are committed to fostering long-term partnerships with our clients by offering exceptional customer service, technical support, and ongoing collaboration. Your success is our priority, and we are dedicated to helping you achieve your goals every step of the way. To know more please click the below link: https://lnkd.in/dRFpMNHt #solutions #engineers #testing #validatiom #OEM #tier1 #supplier #technology #technician #function #vehicle #component #automotive #automotiveindustry #manufacturing #Support #equipment #electrical #environmental #mechanical #facility
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𝐀𝐫𝐞 𝐩𝐫𝐨𝐣𝐞𝐜𝐭 𝐜𝐨𝐬𝐭𝐬 𝐩𝐮𝐭𝐭𝐢𝐧𝐠 𝐚 𝐬𝐭𝐫𝐚𝐢𝐧 𝐨𝐧 𝐲𝐨𝐮𝐫 𝐛𝐮𝐝𝐠𝐞𝐭? Don't sacrifice quality for cost savings Turn to component engineering for expert assistance. Electronic components are the foundation of any electronic device, and their quality and reliability can significantly impact the product's performance and longevity. By working with component engineers experts, you can ensure that the components used in your project meet the highest standards of quality and reliability. Component engineering can also help you save money in the long run by identifying lower cost alternatives and managing part obsolescence. Finding critical components in the development stage can help prevent delays and reduce the overall time and cost of the project. Component engineers have specialized knowledge and expertise in the field of electronic components. They can help to identify and solve component-related issues that may arise during the project, and ensure that the components used meet the project's requirements. They also have access to databases and resources that can help to identify second source components. Finally, component engineering can ensure compliance with various standards and regulations, such as safety standards, environmental regulations, and electromagnetic compatibility (EMC) standards. This reduces the risk of regulatory issues or product recalls. Overall, component engineering is essential to the success of any project that involves electronic components. By working with component engineers expert, you can ensure that your project proceeds smoothly, efficiently, and effectively, without compromising quality or cost. #engineering #manufacturing #innovation #supplychain #ralfklaassen ------------------------------ If you found this post valuable, please like, comment, and repost to help others discover it as well. I support OEMs with Development, Manufacturing, and Supply Chain Solutions. Liked this post? 🔔 Ring Bell on my Profil Want to see more? Follow #ralfklaassen 🔝 Connect with me
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#hiring Systems Engineering Cost/Producibility Strategy Leader - New Growth Program, Cincinnati, United States, fulltime #jobs #jobseekers #careers #Cincinnatijobs #Ohiojobs #Engineering Apply: https://lnkd.in/gRDMTzcW Job Description Summary The Cost & Producibility Leader will drive the cost-out & producibility strategy across the entire propulsion system, including integrating efforts, where appropriate, with other advanced engine programs. This leader will drive integration between the design/manufacturing engineering/supply chain functions to ensure producibility is prioritized for the prototype engine, and to build a cost-out pipeline/strategy for a future potential product effort.Systems engineering is a cross-functional engineering discipline centered on an approach, mindset, and process. All activities that consider both the business and the technical needs of the customers with the goal of providing a quality product that meets the users needs. The discipline that executes a robust process of design, creation, and optimization of systems, consisting of identification and quantification of system requirements, creation of alternate system design concepts, performance of design trade studies, selection and implementation of the best designs and verification that the design is properly integrated and executed. Process that proceeds from concept to production to operation. Impacts the team's ability to achieve service, quality and timeliness of objectives. The role is subject to operating policy objectives. There is moderate autonomy within the role. High levels of operational judgment are required to achieve outcomes required. Job Description Roles and ResponsibilitiesConducts component and product integration.All activities that span multiple components and products and are concerned with how to integrate for maximum performance and operability.Manages product and systems requirements, specifications and flow down.Drives validation and verification activities for the overall product/system, including system level testing.Responsible for defining product requirements for the module / component / subcontractors and partners teams.Manages interface between components and execution organizations.Responsible for driving CTQ / Risk trades within the teams designing the components.Manages the overall product configuration and configuration control system.Requires specialized knowledge within the function. Influence the development of strategy for the area of responsibility, including control of resources and influences policy formulation.Interprets simple internal and external business challenges and recommends best practices to improve products, processes or services.Stays informed of industry trends that may inform work.Uses high level of judgment to make decisions and handle complex tasks or problems in areas of operational, prod
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