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Semiconductor Jobs in Colorado (NOW HIRING)

S. and Korean Semiconductor manufacturing operations for CoorsTek. Responsibilities: Semiconductor Planning Organization Leadership and People Development * Lead the Semiconductor planning ...

S. and Korean Semiconductor manufacturing operations for CoorsTek. Responsibilities: Semiconductor Planning Organization Leadership and People Development * Lead the Semiconductor planning ...

Semiconductor Manufacturing / Semiconductor Design Compensation: $ 22-$28/hr. (This position may be filled at different experience levels based on qualifications, responsibilities, independence, and ...

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Semiconductor information

What does a semiconductor professional do?

Semiconductors are materials that have electrical conductivity between that of conductors and insulators, commonly used to manufacture electronic components like microchips and transistors. Professionals in the semiconductor industry design, manufacture, test, and improve these components, which are essential for devices such as smartphones, computers, and automotive electronics. Their work involves specialized knowledge in physics, engineering, and technology to innovate and produce reliable, high-performance products.

What are the key skills and qualifications needed to thrive as a semiconductor engineer?

To thrive as a Semiconductor Engineer, you need a solid background in electrical engineering, physics, or materials science, often supported by a relevant bachelor's or master's degree. Familiarity with CAD tools, semiconductor fabrication processes, and industry-standard software like SPICE or MATLAB is typically required. Analytical thinking, attention to detail, and strong problem-solving skills are crucial soft skills for this role. These competencies enable engineers to design, optimize, and troubleshoot semiconductor devices that power modern electronics.

What are some common challenges faced by professionals working in the semiconductor industry?

Professionals in the semiconductor industry often face challenges such as keeping up with rapid technological advancements, managing tight production timelines, and maintaining high quality standards in a highly competitive global market. Collaboration across multidisciplinary teams—including design, fabrication, and testing—is essential to ensure product success. Additionally, adapting to evolving industry regulations and supply chain disruptions requires strong problem-solving skills and continuous learning.

What is the difference between Semiconductor vs Electronics Technician?

AspectSemiconductorElectronics Technician
Required CredentialsTypically an associate degree or technical certification in semiconductor manufacturing or engineeringAssociate degree or diploma in electronics or related field
Work EnvironmentCleanroom facilities, manufacturing plants, R&D labsElectronics repair shops, manufacturing floors, technical support environments
Industry UsageSemiconductor manufacturing, chip design, fabricationElectronics repair, testing, installation, and maintenance

Semiconductors focus on the design, fabrication, and testing of semiconductor devices and chips, often within specialized cleanroom environments. Electronics Technicians work on maintaining, repairing, and testing electronic systems and devices across various industries. While both roles require technical skills and certifications, semiconductors are more specialized in chip manufacturing, whereas electronics technicians have broader applications in electronic device support and maintenance.

Is a semiconductor a good career?

A career in semiconductors involves working with the design, manufacturing, and testing of electronic components like chips and integrated circuits. It offers opportunities in engineering, research, and production, often requiring technical skills and knowledge of tools such as CAD software and cleanroom environments. The industry is essential to technology development and tends to have steady demand for qualified professionals.

Is it hard to get a job in semiconductors?

Securing a job in the semiconductor industry can be competitive due to high demand for specialized skills such as electrical engineering, materials science, and cleanroom experience. Candidates often need relevant education, technical certifications, and familiarity with industry tools and processes to improve their chances.

What are the most commonly searched types of Semiconductor jobs in Colorado?

The most popular types of Semiconductor jobs in Colorado are:

What cities in Colorado are hiring for Semiconductor jobs?

Cities in Colorado with the most Semiconductor job openings:

Infographic showing various Semiconductor job openings in Colorado as of August 2026, with employment types broken down into 87% Full Time, 11% Part Time, 1% Contract, and 1% Nights. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution.

Quality Process Engineer - Semiconductor Manufacturing

Semtech

Colorado Springs, CO • On-site

Full-time

Re-posted 12 days ago


Job description

Location: Colorado Springs (Onsite)
Our Team:
Semtech Corporation (NASDAQ:SMTC; www.semtech.com) is a leading supplier of high-quality semiconductor products. Semtech's Analog Mixed Signal and Wireless (AMW) Business Unit develops a broad portfolio of high-performance semiconductor solutions that power, protect, and connect modern electronics. The group's products span circuit protection devices that shield sensitive systems from voltage spikes and electrical overstress, RF solutions serving industrial, medical, and communications applications, advanced power management ICs including switching regulators and wireless charging solutions, and specialized sensing technologies. AMW's innovations are embedded across some of the fastest-growing markets today - from mobile and consumer devices to industrial automation, medical equipment, and connected infrastructure - making it a critical driver of Semtech's mission to make the world safer, more productive, and more sustainable.
The Quality team at our Colorado Springs backend assembly site manages ISO 9001 certification and IATF 16949 transition, supporting chip-scale packaging operations including flip chip, wafer-level CSP, die attach, molding, and plating processes. We handle internal and external audits, process characterization, document control, and calibration - supporting two manufacturing sites and more than 1,000 controlled documents.
Job Summary:
We are seeking an experienced Quality Process Engineer with chip-scale packaging (CSP) expertise to drive corrective action closure and technical problem-solving across our Colorado Springs backend assembly operations. This role sits at the intersection of quality engineering and process engineering - combining deep technical knowledge of semiconductor packaging with structured problem-solving to eliminate chronic open corrective actions.
You will apply your CSP technical expertise to lead root cause investigations on flip chip, die attach, molding, and plating processes, partnering closely with process engineering, operations, maintenance, and systems engineering teams to diagnose recurring issues and deliver durable solutions. Your technical credibility in semiconductor packaging will enable you to influence cross-functional teams, facilitate collaborative problem-solving sessions, and ensure corrective actions address true root causes rather than symptoms.
Over time, this role may also contribute to quality system auditing as the team scales. If you thrive on applying deep technical knowledge to untangle complex manufacturing problems, influencing engineering teams through data-driven persuasion, and bringing order to ambiguity, this is your role.
Responsibilities:
Corrective Action Leadership (50%)
  • Own and drive closure of 70+ open corrective action reports (CARs) across engineering, operations, maintenance, and systems engineering through technical problem-solving and cross-functional collaboration
  • Lead cross-functional CAR review sessions, bringing together relevant stakeholders to solve problems comprehensively rather than superficially
  • Apply 8D methodology, 5-Why, fishbone, and fault tree analysis combined with CSP technical knowledge to identify true root causes in packaging processes
  • Design and execute Design of Experiments (DOE) to identify root causes of process variability and validate corrective actions
  • Track CAR closure progress and provide regular status reporting to Quality Director and site leadership
  • Verify effectiveness of implemented corrective actions through statistical analysis and follow-up validation
  • Identify systemic patterns across open CARs to prioritize high-impact interventions and prevent recurrence

Chip-Scale Packaging & Process Quality (40%)
  • Support qualification and validation of chip-scale packaging processes including flip chip, wafer-level CSP, die attach, molding, and plating operations
  • Investigate and resolve quality issues related to packaging processes including solder joint integrity, die cracking, underfill defects, warpage, and assembly yield
  • Apply Statistical Process Control (SPC) methodologies to monitor critical process parameters and process capability (Cpk/Ppk) for packaging operations
  • Perform Measurement System Analysis (MSA) and Gage R&R studies to validate inspection and test equipment capability
  • Support new product introduction (NPI) through process validation (IQ/OQ/PQ), first article inspection (FAI), and production readiness activities
  • Develop and maintain Process FMEAs (pFMEA), Control Plans, and process documentation for packaging operations
  • Conduct device characterization and reliability testing to support process optimization and validation

Quality Systems & Supplier Quality (10%)
  • Support maintenance of ISO 9001 quality management system; contribute to IATF 16949 automotive standards transition
  • Participate in internal and external audits as technical subject matter expert; audit ownership capability is a plus
  • Review and approve quality documentation including procedures, work instructions, and process specifications
  • Manage supplier non-conformances (SCARs) and corrective action follow-through as needed

Minimum Qualifications:
  • Bachelor's degree in Engineering, Materials Science, Physics, or related technical field
  • 5+ years of quality engineering experience in semiconductor backend assembly or microelectronics packaging
  • Direct hands-on experience with chip-scale packaging technologies including flip chip, wafer-level CSP, or advanced packaging processes
  • Demonstrated expertise in 8D methodology, root cause analysis (5-Why, fishbone, fault tree), and structured problem-solving
  • Strong statistical analysis skills including SPC, process capability (Cpk/Ppk), hypothesis testing, and Design of Experiments (DOE)
  • Working knowledge of AIAG Core Tools: PFMEA, Control Plans, MSA, PPAP, and APQP
  • Experience with ISO 9001 or equivalent quality management systems
  • Proficiency with statistical analysis software (Minitab, JMP, or equivalent) and Microsoft Office suite
  • Excellent written and verbal communication skills with ability to influence across organizational levels
  • Proven track record of building collaborative relationships with engineering, manufacturing, and supplier organizations

Desired Qualifications:
  • Master's degree in Materials Science, Engineering, or related technical field
  • Six Sigma Green Belt or Black Belt certification
  • Certified Quality Engineer (CQE) or Certified Quality Auditor (CQA) from ASQ
  • ISO 9001 or IATF 16949 Lead Auditor certification
  • Experience with wafer fabrication processes (etch, PVD, lithography, thin films) to support packaging integration
  • Direct experience with flip chip bumping, redistribution layer (RDL) processes, or advanced wafer-level packaging
  • Supplier quality experience with OSATs (Outsourced Semiconductor Assembly and Test) or foundries
  • Familiarity with automotive (IATF 16949), aerospace (AS9100), or medical device (ISO 13485) quality standards
  • Experience with reliability testing including temperature cycling, HAST, HTOL, and failure analysis techniques
  • Knowledge of semiconductor metrology and characterization techniques (SEM, X-ray, C-SAM, profilometry)
  • Advanced DOE expertise including fractional factorial, response surface methodology, and Taguchi methods
  • Experience with MES systems and quality data management platforms

The intent of this job description is to describe the major duties and responsibilities performed by incumbents of this job. Incumbents may be required to perform job-related tasks other than those specifically included in this description.
All duties and responsibilities are essential job functions and requirements and are subject to possible modification to reasonably accommodate individuals with disabilities.
We are proud to be an EEO employer M/F/D/V. We maintain a drug-free workplace.
A reasonable estimate of the pay range for this position is $ 75,000 to $115,000 USD. There are several factors taken into consideration in determining base salary, including but not limited to: job-related qualifications, skills, education and experience, as well as job location and the value of other elements of an employee's total compensation package.
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