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Semiconductor Quality Engineer Jobs in Indiana (NOW HIRING)

Quality Technician

Jeffersonville, IN · On-site

$17.25 - $23.25/hr

Reporting to the QC Supervisor or Quality Engineer, this role executes inspections, conducts tests ... semiconductor, or renewable energy industries. * Familiarity with the specific focus area (e.g ...

Quality Technician

Jeffersonville, IN

$17.25 - $23.25/hr

Reporting to the QC Supervisor or Quality Engineer, this role executes inspections, conducts tests ... semiconductor, or renewable energy industries. * Familiarity with the specific focus area (e.g ...

Met Lab / Quality Opportunities

Indianapolis, IN · On-site

$19 - $24/hr

You will communicate clearly with other internal customers in quality engineering or operations ... semiconductor manufacturing, providing life-saving medical oxygen and enabling clean hydrogen ...

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Showing results 1-20

Semiconductor Quality Engineer information

What are some common challenges Semiconductor Quality Engineers face in ensuring product reliability?

Semiconductor Quality Engineers often encounter challenges related to rapidly evolving manufacturing processes, stringent industry standards, and the need to detect minute defects that can impact chip performance. They must work closely with cross-functional teams, including design, process, and production engineers, to implement robust quality controls and root cause analyses. Staying updated on new technologies and maintaining clear communication are essential for managing quality issues efficiently and ensuring that products meet both customer and regulatory expectations.

What does a Semiconductor Quality Engineer do?

A Semiconductor Quality Engineer is responsible for ensuring that semiconductor products meet established quality standards and specifications. They develop and implement quality control processes, perform failure analysis, and collaborate with engineering and manufacturing teams to resolve quality issues. Their work includes analyzing data, conducting audits, and driving continuous improvement in production processes to minimize defects and ensure product reliability. Ultimately, they play a crucial role in guaranteeing that semiconductor devices are safe and perform as intended for end users.

How much do semiconductor engineers get paid?

Semiconductor quality engineers typically earn between $70,000 and $120,000 annually, depending on experience, location, and certifications. Entry-level positions may start around $60,000, while experienced engineers with specialized skills can earn over $130,000.

What engineers make $300,000 a year?

Senior semiconductor quality engineers with extensive experience, specialized skills, and advanced certifications can earn $300,000 or more annually, especially in high-demand regions or companies. These roles often require expertise in quality management systems, industry standards, and advanced testing tools, and may include bonuses or stock options that contribute to total compensation.

What are the key skills and qualifications needed to thrive as a Semiconductor Quality Engineer, and why are they important?

To thrive as a Semiconductor Quality Engineer, you need expertise in quality assurance, semiconductor manufacturing processes, and statistical analysis, usually supported by a degree in engineering or a related field. Familiarity with tools such as Statistical Process Control (SPC), Failure Mode and Effects Analysis (FMEA), and quality management systems like ISO 9001 is typically required. Strong problem-solving abilities, attention to detail, and effective communication skills set outstanding candidates apart. These competencies are essential to ensure product reliability, maintain industry standards, and drive continuous improvement in semiconductor manufacturing.

What is the difference between Semiconductor Quality Engineer vs Semiconductor Process Engineer?

AspectSemiconductor Quality EngineerSemiconductor Process Engineer
Primary FocusEnsuring product quality, defect prevention, and compliance with standardsDesigning, developing, and optimizing manufacturing processes
Skills & CertificationsQuality management, testing, inspection, certifications (e.g., ISO)Process engineering, manufacturing techniques, statistical analysis
Work EnvironmentQuality labs, manufacturing floors, supplier auditsCleanrooms, fabrication facilities, process development labs
Industry UsageUsed across semiconductor manufacturing companies focusing on product qualityUsed in process development and manufacturing optimization

The Semiconductor Quality Engineer primarily focuses on maintaining and improving product quality, ensuring standards are met, and preventing defects. In contrast, the Semiconductor Process Engineer concentrates on developing and refining manufacturing processes to enhance efficiency and yield. Both roles are essential in semiconductor manufacturing but serve different aspects of the production cycle.

Are semiconductor engineers in demand?

Semiconductor engineers are in high demand due to the ongoing growth of the electronics and technology industries. They are needed for designing, testing, and improving semiconductor devices, with skills in process control, quality assurance, and familiarity with industry standards being valuable. The demand is expected to continue as advancements in consumer electronics, automotive, and AI technologies drive industry growth.

What engineers make $500,000 a year?

Highly experienced semiconductor quality engineers, especially those in senior or managerial roles with specialized skills and certifications, can reach or exceed a $500,000 annual salary. Such compensation often includes bonuses, stock options, or other incentives, particularly in large companies or competitive markets. Salary levels depend on experience, location, and company size.
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What job categories do people searching Semiconductor Quality Engineer jobs in Indiana look for? The top searched job categories for Semiconductor Quality Engineer jobs in Indiana are:
What cities in Indiana are hiring for Semiconductor Quality Engineer jobs? Cities in Indiana with the most Semiconductor Quality Engineer job openings:
Application Engineer - Semiconductor Systems

Application Engineer - Semiconductor Systems

Crane Company

Brazil, IN

Full-time

Posted 15 days ago


Job description

Crane Cryogenics is seeking an experienced Application Engineer to support our growing semiconductor business from our Brazil, Indiana facility. This highly visible role combines technical sales support, system design, and manufacturing leadership for custom vacuum-jacketed piping (VJP) systems and cryogenic fluid distribution equipment used by semiconductor OEM customers.

The successful candidate will work directly with customers and the sales team to develop engineered solutions while also serving as the engineering lead during first-article manufacturing. This individual will be responsible for ensuring new designs transition successfully from concept to production by providing hands-on support to manufacturing, validating product performance, and driving continuous design improvements.

A licensed Professional Engineer (PE) is preferred. Cryogenic experience is preferred but not required. Candidates with backgrounds in process piping, semiconductor equipment, industrial gases, chemical processing, mechanical systems, or related industries are encouraged to apply.

Key Responsibilities

Technical Sales Support

  • Partner with regional sales managers and business development teams to evaluate customer opportunities and develop technical solutions.
  • Serve as the primary engineering contact during the quotation and proposal process.
  • Review customer specifications, process requirements, and project documents to determine system scope and technical requirements.
  • Provide technical presentations and support customer design reviews.

System Design & Engineering

  • Design vacuum-jacketed piping (VJP) systems and related cryogenic fluid distribution equipment for semiconductor OEM and end-user applications.
  • Develop system layouts, equipment specifications, pipe routing concepts, and design calculations.
  • Evaluate thermal, mechanical, and operational requirements for proposed systems.
  • Ensure designs comply with applicable codes, industry standards, and customer specifications.
  • Support detailed engineering reviews and design optimization efforts.

Manufacturing Support & Product Validation

  • Serve as the engineering lead during fabrication and assembly of first-article systems and new product designs.
  • Provide hands-on support to manufacturing teams to ensure designs are built in accordance with engineering requirements and customer specifications.
  • Monitor first-article builds, identify design or manufacturability issues, and drive corrective actions.
  • Review fabrication drawings, bills of material, weldments, and assembly processes to ensure successful execution.
  • Collaborate with production, quality, and supply chain teams to resolve technical issues and minimize production delays.
  • Lead design reviews and lessons-learned activities following first builds, incorporating improvements into future designs and standards.
  • Support factory acceptance testing (FAT), pressure testing, and system validation activities as required.
  • Develop and maintain design standards that improve manufacturability, quality, and scalability of semiconductor product offerings.
  • Act as the engineering authority for design changes, deviations, and disposition of non-conforming materials related to assigned projects.

Customer & Cross-Functional Collaboration

  • Interface directly with semiconductor OEM customers, EPC firms, and end users.
  • Coordinate with manufacturing, project management, sourcing, and quality teams to ensure design feasibility and successful project execution.
  • Provide engineering support during fabrication, testing, installation, and commissioning when required.
  • Travel to customer locations as needed for site visits and technical meetings.

Continuous Improvement

  • Support standardization and harmonization initiatives for semiconductor product offerings.
  • Assist in developing engineering standards, design practices, and product documentation.
  • Contribute to process improvement efforts focused on quote speed, accuracy, and execution efficiency.

Required Qualifications

  • Bachelor's degree in Mechanical Engineering or related engineering discipline.
  • Professional Engineer (PE) license preferred.
  • Minimum 5 years of engineering experience in industrial systems, process piping, rotating equipment, industrial gases, chemical processing, semiconductor, or related industries.
  • Experience performing engineering calculations and developing technical designs.
  • Ability to interpret engineering drawings, specifications, and customer requirements.
  • Strong written and verbal communication skills.
  • Proficiency with CAD software and Microsoft Office applications.
  • Ability to manage multiple projects and priorities in a fast-paced environment.

Preferred Qualifications

  • Experience supporting technical sales or application engineering activities.
  • Experience with semiconductor manufacturing facilities, OEM equipment, or ultra-high purity systems.
  • Background in process piping design, fluid systems, pressure vessels, industrial gas systems, or thermal systems.
  • Familiarity with ASME B31.3, pressure equipment design, and relevant engineering standards.
  • Understanding of project cost estimating and proposal development.
  • Experience working directly with OEM customers.
  • Experience supporting manufacturing environments and new product introductions (NPI).
  • Experience supervising first-article builds, prototype development, or engineered-to-order products.
  • Strong understanding of Design for Manufacturability (DFM) principles.
  • Experience resolving fabrication, assembly, and quality issues in a production environment.

Key Competencies

  • Customer-focused problem solving
  • Technical leadership
  • Engineering judgment
  • Project prioritization and execution
  • Cross-functional collaboration
  • Commercial awareness
  • Attention to detail
  • Strong analytical skills
  • Design for Manufacturability (DFM)
  • New Product Introduction (NPI)
  • Root Cause Analysis and Problem Solving
  • Manufacturing Process Improvement
  • Technical Leadership on the Shop Floor

#LI-VD1

#CPE

This description has been designed to indicate the general nature and level of work being performed by employees within this classification. It is not designed to contain or be interpreted as a comprehensive inventory of all duties, responsibilities, and qualifications required of employees assigned to this job.

Crane Company. is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment and will not be discriminated against on the basis of race, color, religion, gender, sexual orientation, general identity, national origin, disability or veteran status.


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About Crane AI

Sourced by ZipRecruiter

Industry

Software development

Company size

11 - 50 Employees

Headquarters location

New York, NY, US

Year founded

2017