Manufacturing Engineer Visa Sponsorship Jobs in Maine
Manufacturing engineer visa sponsorship jobs in Maine are concentrated around the state's aerospace, defense, and paper products industries. Key employers include Pratt & Whitney's North Berwick operations and Bath Iron Works in Bath. Portland and the Brunswick area also see steady demand for manufacturing engineers with specialized technical degrees.
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INTRODUCTION
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 person 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. Focus will be on developing device and process technologies addressing voltages of 7 – 100 V with either junction or deep trench isolation. 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.
ROLE AND RESPONSIBILITIES
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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. Device voltages will be over 7 volts and as high as 120 volts, and devices will be isolated either by junctions or deep trenches.
-
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.
-
Device Characterization: Plan and conduct electrical, thermal, and reliability characterization of fabricated devices. Understanding how to characterize device isolation, whether by junctions or deep trenches, is especially important. Analyze test data to validate models, extract key device parameters, and identify areas for improvement.
-
Technology Innovation: Research and implement new architectures, materials, and device structures (e.g., trench, RESURF, shielded gate) to push the boundaries of LNDMOS performance. Stay abreast of academic and industry advances, proposing innovative solutions for future products.
-
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.
-
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.
-
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.
BASIC QUALIFICATIONS
-
Education: Master’s or Doctoral degree in Electrical Engineering, Physics, Materials Science, or a related field with a focus on semiconductor devices or microelectronics.
-
Experience: 5-10 years of direct experience in power semiconductor device engineering, with a strong emphasis on high voltage LNDMOS or LDMOS design and fabrication. Must have worked directly designing devices with operating voltages above 30V and possibly as high as 120V. Must understand state of the art device isolation methods such as deep trench and junction guard rings. Experience with other power devices (IGBT, SiC/GaN MOSFETs) is a plus.
-
Technical Skills:
-
Proficiency in device and process simulation tools (e.g., Synopsys Sentaurus, Silvaco Atlas).
-
Strong understanding of semiconductor physics, high voltage breakdown mechanisms, device isolation, and reliability phenomena.
-
Hands-on experience with wafer fabrication, cleanroom protocols, and device characterization equipment.
-
Knowledge of industry standards for device reliability and ruggedness.
-
Experience with statistical analysis and data-driven problem solving.
-
Soft Skills:
-
Strong analytical thinking and attention to detail.
-
Excellent verbal and written communication skills for technical presentations and documentation.
-
Ability to work independently and as part of cross-functional teams.
-
Creative problem-solver with a passion for innovation.
-
Results-driven mindset with a commitment to quality and continuous improvement.
-
Publications or patents in power devices or LNDMOS technology preferred.
-
Proven track record of leading device development projects from concept to mass production.
-
Familiarity with automotive, industrial, or renewable energy power electronics applications.
-
Experience engaging with customers and stakeholders to translate application needs into device requirements.
COMPENSATION
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.

INTRODUCTION
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 person 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. Focus will be on developing device and process technologies addressing voltages of 7 – 100 V with either junction or deep trench isolation. 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.
ROLE AND RESPONSIBILITIES
-
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. Device voltages will be over 7 volts and as high as 120 volts, and devices will be isolated either by junctions or deep trenches.
-
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.
-
Device Characterization: Plan and conduct electrical, thermal, and reliability characterization of fabricated devices. Understanding how to characterize device isolation, whether by junctions or deep trenches, is especially important. Analyze test data to validate models, extract key device parameters, and identify areas for improvement.
-
Technology Innovation: Research and implement new architectures, materials, and device structures (e.g., trench, RESURF, shielded gate) to push the boundaries of LNDMOS performance. Stay abreast of academic and industry advances, proposing innovative solutions for future products.
-
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.
-
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.
-
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.
BASIC QUALIFICATIONS
-
Education: Master’s or Doctoral degree in Electrical Engineering, Physics, Materials Science, or a related field with a focus on semiconductor devices or microelectronics.
-
Experience: 5-10 years of direct experience in power semiconductor device engineering, with a strong emphasis on high voltage LNDMOS or LDMOS design and fabrication. Must have worked directly designing devices with operating voltages above 30V and possibly as high as 120V. Must understand state of the art device isolation methods such as deep trench and junction guard rings. Experience with other power devices (IGBT, SiC/GaN MOSFETs) is a plus.
-
Technical Skills:
-
Proficiency in device and process simulation tools (e.g., Synopsys Sentaurus, Silvaco Atlas).
-
Strong understanding of semiconductor physics, high voltage breakdown mechanisms, device isolation, and reliability phenomena.
-
Hands-on experience with wafer fabrication, cleanroom protocols, and device characterization equipment.
-
Knowledge of industry standards for device reliability and ruggedness.
-
Experience with statistical analysis and data-driven problem solving.
-
Soft Skills:
-
Strong analytical thinking and attention to detail.
-
Excellent verbal and written communication skills for technical presentations and documentation.
-
Ability to work independently and as part of cross-functional teams.
-
Creative problem-solver with a passion for innovation.
-
Results-driven mindset with a commitment to quality and continuous improvement.
-
Publications or patents in power devices or LNDMOS technology preferred.
-
Proven track record of leading device development projects from concept to mass production.
-
Familiarity with automotive, industrial, or renewable energy power electronics applications.
-
Experience engaging with customers and stakeholders to translate application needs into device requirements.
COMPENSATION
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.
Manufacturing Engineer Job Roles in Maine
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Search Manufacturing Engineer Jobs in MaineManufacturing Engineer Jobs in Maine: Frequently Asked Questions
Which companies sponsor visas for manufacturing engineers in Maine?
Bath Iron Works, a General Dynamics subsidiary in Bath, is one of Maine's most active employers of manufacturing engineers and has sponsored H-1B visas for technical roles. Pratt & Whitney's North Berwick facility, focused on aerospace components, is another consistent sponsor. Smaller precision manufacturers and defense contractors in the Portland and Lewiston-Auburn corridor also periodically sponsor qualified candidates.
Which visa types are most common for manufacturing engineer roles in Maine?
The H-1B is the most common visa category for manufacturing engineers in Maine, as these roles typically require a bachelor's degree in mechanical, industrial, or manufacturing engineering, satisfying the specialty occupation requirement. TN visas are an option for Canadian and Mexican nationals under USMCA. Engineers with extraordinary achievements may also qualify for O-1 consideration, though this is less common in manufacturing.
Which cities in Maine have the most manufacturing engineer sponsorship jobs?
Bath leads due to Bath Iron Works' large naval shipbuilding operations, which regularly require process and manufacturing engineers. North Berwick and Sanford see demand tied to aerospace manufacturing at Pratt & Whitney's facilities. Portland, as Maine's largest metro, hosts a broader mix of industrial employers. Brunswick, home to Brunswick Landing's growing advanced manufacturing tenants, is an emerging area for engineering roles.
How to find manufacturing engineer visa sponsorship jobs in Maine?
Migrate Mate is a job board built specifically for international candidates seeking visa sponsorship in the U.S. You can filter directly for manufacturing engineer roles in Maine to see employers actively open to sponsoring work visas. This is more efficient than searching general job boards, since Migrate Mate focuses on sponsorship-confirmed listings, saving you time screening out employers who won't support visa candidates.
Are there state-specific considerations for manufacturing engineers seeking sponsorship in Maine?
Maine's manufacturing sector is heavily tied to defense contracts, aerospace, and forest products, meaning engineering roles often require security clearance eligibility, which can complicate visa sponsorship timelines for non-citizens. The University of Maine's engineering programs in Orono create a regional talent pipeline, and some larger employers familiar with that pipeline are more accustomed to sponsoring international graduates. Prevailing wage requirements under H-1B rules apply statewide.
What is the prevailing wage for sponsored manufacturing engineer jobs in Maine?
U.S. employers sponsoring a visa must pay at least the prevailing wage, which is what workers in the same role, area, and experience level typically earn. The Department of Labor sets this rate to make sure companies aren't hiring foreign workers simply because they'd accept lower pay than a U.S. worker. It varies by job title, location, and experience. You can look up current prevailing wage rates for any occupation and location using the OFLC Wage Search page.
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