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Semiconductor Device Characterization Jobs (NOW HIRING)

R & D in semiconductor device engineering, especially in device characterization for both RF/analog & digital applications, analysis on device/interconnect variability and reliability, and ...

Principal Device Engineer

Carlsbad, CA ยท On-site

$142K - $191K/yr

R & D in semiconductor device engineering, especially in device characterization for both RF/analog & digital applications, analysis on device/interconnect variability and reliability, and ...

R & D in semiconductor device engineering, especially in device characterization for both RF/analog & digital applications, analysis on device/interconnect variability and reliability, and ...

R & D in semiconductor device engineering, especially in device characterization for both RF/analog & digital applications, analysis on device/interconnect variability and reliability, and ...

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Semiconductor Device Characterization information

What are some common challenges faced in semiconductor device characterization, and how can professionals overcome them?

Professionals in semiconductor device characterization often face challenges such as ensuring measurement accuracy, dealing with device variability, and interpreting complex data. Maintaining precise calibration of equipment and following rigorous testing protocols can help mitigate measurement errors. Collaborating closely with process engineers and designers also ensures that characterization results are accurately interpreted and can inform process improvements. Continual learning and staying updated with the latest characterization techniques are essential for overcoming these challenges and advancing in the field.

What is semiconductor device characterization?

Semiconductor device characterization is the process of measuring and analyzing the electrical, thermal, and physical properties of semiconductor devices such as transistors, diodes, and integrated circuits. This process helps engineers understand device performance, verify manufacturing quality, and optimize designs for specific applications. Characterization typically involves a range of tests, including current-voltage (I-V), capacitance-voltage (C-V), and reliability measurements, using specialized equipment. The data obtained guides improvements in device fabrication and ensures that products meet required specifications.

What is the difference between Semiconductor Device Characterization vs Semiconductor Test Engineer?

AspectSemiconductor Device CharacterizationSemiconductor Test Engineer
Primary FocusAnalyzing electrical and physical properties of semiconductor devicesDesigning and executing tests to ensure device functionality and performance
Work EnvironmentLaboratories, R&D facilitiesProduction lines, testing labs
Required SkillsElectrical testing, failure analysis, data analysisTest plan development, automation, troubleshooting
Industry UsageResearch, development, quality assuranceManufacturing, quality control

While both roles involve testing and analysis within the semiconductor industry, Semiconductor Device Characterization focuses on detailed analysis of device properties, often in R&D settings. In contrast, Semiconductor Test Engineers primarily develop and execute testing procedures to ensure devices meet production standards. Both roles require technical skills in electrical testing and data analysis but serve different stages of the product lifecycle.

What are the key skills and qualifications needed to thrive in Semiconductor Device Characterization, and why are they important?

To thrive in Semiconductor Device Characterization, you need a strong background in electrical engineering or physics, with expertise in semiconductor physics and device operation. Familiarity with test and measurement equipment (such as probe stations and semiconductor parameter analyzers), data analysis software (like MATLAB or Python), and relevant industry standards is crucial. Attention to detail, problem-solving ability, and effective communication are vital soft skills for interpreting results and collaborating with cross-functional teams. These competencies ensure accurate device evaluation, reliable performance data, and support innovation in semiconductor development.
Infographic showing various Semiconductor Device Characterization job openings in the United States as of May 2026, with employment types broken down into 29% Full Time, 55% Part Time, 1% Temporary, and 15% Contract. Highlights an 93% Physical, 3% Hybrid, and 4% Remote job distribution.
Sr Semiconductor Tech Development High Voltage Analog Device Engineer

Sr Semiconductor Tech Development High Voltage Analog Device Engineer

Diodes Incorporated

South Portland, ME โ€ข On-site

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 8 days ago


Job description

The Senior Level Semiconductor High Voltage LNDMOS (Laterally Diffused N-type Metal-Oxide-Semiconductor) Device Engineer at Diodes, Inc. plays a pivotal role in the design, development, and optimization of high voltage power semiconductor devices. This specialist is responsible for advancing LNDMOS technology to enable reliable, efficient, and high-performance solutions for applications ranging from automotive, industrial, and consumer electronics to renewable energy systems. Bridging the gap between theoretical device physics and practical manufacturing, the LNDMOS Device Engineer ensures the delivery of robust products that meet stringent industry standards. This device engineer will be part of the Diodes, Inc. worldwide technology development organization and will work with a team of industry experts designing and developing analog semiconductor process technologies for Diodes products for both internal and external production. Work location will either be the Diodes, Inc. fabrication site in South Portland, Maine (USA) or other offices situated throughout the world.

Principal Duties and Responsibilities:

ยท Device Design and Development: Lead and execute the design of high voltage LNDMOS devices, considering breakdown voltage, on-resistance, charge balance, and ruggedness. Utilize CAD and TCAD simulation tools to model electrical, thermal, and reliability characteristics, iterating designs to achieve optimal performance.

ยท Process Integration: Collaborate closely with process engineers to define and refine process flows for LNDMOS device fabrication. Evaluate and select suitable materials, doping profiles, and process steps to achieve desired device specifications, manufacturability, and yield.

ยท Device Characterization: Plan and conduct electrical, thermal, and reliability characterization of fabricated devices. Analyze test data to validate models, extract key device parameters, and identify areas for improvement.

ยท Technology Innovation: Research and implement new architectures, materials, and device structures (e.g., trench, superjunction, shielded gate) to push the boundaries of LNDMOS performance. Stay abreast of academic and industry advances, proposing innovative solutions for future products.

ยท Failure Analysis and Problem Solving: Investigate device failures using advanced diagnostic tools (SEM, TEM, FIB, EDX, etc.), root-cause analysis, and simulation. Recommend corrective actions and support continuous improvement efforts.

ยท Cross-functional Collaboration: Interface with teams across device design, process engineering, test and characterization, packaging, and product engineering to ensure seamless development and launch of LNDMOS-based products.

ยท Documentation and Reporting: Produce detailed technical documentation, including design specifications, simulation reports, process flows, and characterization results. Present findings to both technical and non-technical stakeholders.

ยท Product Qualification and Reliability: Support product qualification cycles by designing and executing reliability tests (e.g., HTRB, TDDB, ESD, UIS) and working with quality teams to meet international standards and customer requirements.

ยท Yield Enhancement and Cost Optimization: Analyze manufacturing data to identify yield detractors and cost drivers, working with manufacturing teams to implement solutions for device and process improvement.

ยท Technical Support: Provide guidance and expertise to application engineers, field teams, and customers for integrating LNDMOS devices into end applications, troubleshooting, and ensuring optimal performance.

Knowledge, Skills, and Abilities:

ยท Masterโ€™s or Doctoral degree in Electrical Engineering, Physics, Materials Science, or a related field with a focus on semiconductor devices or microelectronics

ยท Minimum 10 years of direct experience in power semiconductor device engineering, with a strong emphasis on high voltage LNDMOS or LDMOS design and fabrication. Experience with other power devices (IGBT, SiC/GaN MOSFETs) is a plus.

ยท Publications or patents power devices or LNDMOS technology.

ยท Proven track record of leading device development projects from concept to mass production.

ยท Familiarity with automotive, industrial, or renewable energy power electronics applications.

ยท Experience engaging with customers and stakeholders to translate application needs into device requirements.

ยท Familiarity with automotive, industrial, or renewable energy power electronics applications.

ยท Experience engaging with customers and stakeholders to translate application needs into device

ยท Technical Skills:

o Proficiency in device and process simulation tools (e.g., Synopsys Sentaurus, Silvaco Atlas).

o Strong understanding of semiconductor physics, high voltage breakdown mechanisms, and reliability phenomena.

o Hands-on experience with wafer fabrication, cleanroom protocols, and device characterization equipment.

o Familiarity with advanced failure analysis tools and methodologies.

o Knowledge of industry standards for device reliability and ruggedness.

o Experience with statistical analysis and data-driven problem solving.

ยท Soft Skills:

o Strong analytical thinking and attention to detail.

o Excellent verbal and written communication skills for technical presentations and documentation.

o Ability to work independently and as part of cross-functional teams.

o Creative problem-solver with a passion for innovation.

o Results-driven mindset with a commitment to quality and continuous improvement.

Diodes Incorporated (Nasdaq: DIOD), a Standard and Poorโ€™s SmallCap 600 and Russell 3000 Index company, is a leading global manufacturer and supplier of high-quality application specific standard products within the broad discrete, logic, and analog semiconductor markets. Diodes serves the consumer electronics, computing, communications, industrial, and automotive markets. Diodes, Inc. is committed to developing power electronics solutions that drive sustainability, safety, and performance. We foster a culture of creativity, integrity, and learning, empowering our teams to push boundaries and deliver excellence to our customers and partners worldwide.

We offer a competitive benefits package to include medical, dental, vision, FSA, 401k with company match, company paid Short Term and Long-Term disability and standard life insurance policy. We also provide paid time off and have an employee wellness program.

Company Description

Diodes Incorporated (Nasdaq: DIOD), a Standard and Poorโ€™sSmallCap 600 and Russell 3000 Index company, is a leading global manufacturer and supplier of high-quality application specific standard products within the broad discrete, logic, and analog semiconductor markets. Diodes serves the consumer electronics, computing, communications, industrial, and automotive markets.
We offer a competitive benefits package to include medical, dental, vision, FSA, 401k with company match, company paid Short Term and Long-Term disability and standard life insurance policy. We also provide paid time off and have an employee wellness program.