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Mems Research Jobs in Rochester, NY (NOW HIRING)

Mems Research information

See Rochester, NY salary details

$17.3K

$81.1K

$152.4K

How much do mems research jobs pay per year?

As of Jul 26, 2026, the average yearly pay for mems research in Rochester, NY is $81,069.00, according to ZipRecruiter salary data. Most workers in this role earn between $55,700.00 and $110,500.00 per year, depending on experience, location, and employer.

What engineer makes $500,000 a year?

Senior engineers in specialized fields such as software engineering, petroleum engineering, or aerospace engineering can earn $500,000 or more annually, especially with experience, bonuses, and stock options. High-level roles often require advanced skills, certifications, and leadership responsibilities.

What are MEMS researchers?

MEMS researchers are professionals who study and develop Micro-Electro-Mechanical Systems (MEMS), which are tiny integrated devices or systems that combine electrical and mechanical components at the microscale. They work on designing, fabricating, and testing these miniaturized systems for use in various applications like sensors, actuators, medical devices, and consumer electronics. MEMS researchers often collaborate with engineers and scientists from multiple disciplines to innovate and improve the performance and reliability of MEMS technologies.

Can mechanical engineers work in R&D?

Yes, mechanical engineers often work in research and development (R&D) roles, where they apply their knowledge of mechanics, materials, and design to develop new products and technologies. R&D positions typically require strong problem-solving skills, proficiency with CAD software, and a background in engineering principles.

What does a mems engineer do?

A MEMS engineer designs, develops, and tests microelectromechanical systems (MEMS), which are tiny devices combining mechanical and electrical components. They work with tools like CAD software and cleanroom environments, focusing on sensor and actuator development for applications in industries such as healthcare, automotive, and consumer electronics.

What is the difference between Mems Research vs Mems Design?

AspectMems ResearchMems Design
CredentialsTypically requires a degree in electrical, mechanical, or materials engineering, often with research experienceRequires similar engineering degrees, with focus on design tools and CAD software
Work EnvironmentResearch labs, academic institutions, or R&D departmentsDesign studios, manufacturing facilities, or R&D teams
Industry UsageFocuses on exploring new materials, processes, and device conceptsFocuses on creating detailed device designs for fabrication
Common Search & ComparisonOften compared with Mems Design due to overlapping skills and goals

In summary, Mems Research involves exploring new materials and device concepts, often in academic or lab settings, while Mems Design focuses on creating detailed device layouts for manufacturing. Both roles require engineering backgrounds but differ in their primary focus and work environment.

What are some typical challenges faced by professionals working in MEMS research, and how can job seekers prepare to overcome them?

Professionals in MEMS (Micro-Electro-Mechanical Systems) research often encounter challenges such as interdisciplinary collaboration, rapid technological advancements, and the need for precise fabrication and testing. Researchers must frequently work with experts in electronics, materials science, and mechanical engineering, requiring strong communication and teamwork skills. Staying current with the latest fabrication techniques and simulation tools is essential, as is developing problem-solving abilities to address unexpected issues in device performance. Candidates can prepare by gaining hands-on laboratory experience, engaging in cross-disciplinary projects, and keeping up-to-date with recent publications in the field.

What are the key skills and qualifications needed to thrive as a MEMS Researcher, and why are they important?

To excel as a MEMS Researcher, you need a strong background in microfabrication, materials science, and physics, typically supported by an advanced degree in electrical engineering or a related field. Familiarity with CAD tools, cleanroom processes, and characterization instruments like SEM or AFM is essential, along with experience in simulation software such as COMSOL. Critical thinking, problem-solving, and effective collaboration skills help researchers innovate and navigate complex technical challenges. These competencies are vital for advancing MEMS technology and ensuring successful project outcomes in multidisciplinary research environments.

What is the highest paying medical research job?

In medical research, senior roles such as Principal Investigator or Director of Research typically have the highest salaries, often exceeding $150,000 annually. These positions require extensive experience, advanced degrees, and leadership skills, and they often involve managing large research projects and teams.
What job categories do people searching Mems Research jobs in Rochester, NY look for? The top searched job categories for Mems Research jobs in Rochester, NY are:
What cities near Rochester, NY are hiring for Mems Research jobs? Cities near Rochester, NY with the most Mems Research job openings:
Infographic showing various Mems Research job openings in Rochester, NY as of July 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $81,069 per year, or $39 per hour.
Assistant Professor, Electrical & Microelectronic Engineering

Assistant Professor, Electrical & Microelectronic Engineering

Rochester Institute of Technology

Rochester, NY

Full-time

Posted 19 days ago


Rochester Institute Of Technology rating

7.6

Company rating: 7.6 out of 10

Based on 32 frontline employees who took The Breakroom Quiz

285th of 611 rated colleges and universities


Job description

JOB SUMMARY:

RIT's Department of Electrical and Microelectronic Engineering Technology invites applications from candidates in the areas ofnanoelectronics, semiconductor devices or digital electronics. Applicants must have a Ph.D. in Electrical Engineering, Computer Engineering, and/or Microelectronic Engineering or a closely related field. The candidate's research must specialize in one or more of the following areas: thin films (deposition, etching, metrology), semiconductor materials & device physics, CMOS processing & fabrication, neuromorphic/AI semiconductor devices and circuits, memory devices/technologies, or III-V semiconductor epitaxy, devices, metrology with a record of refereed publications in the area. Candidates must have prior teaching experience; a potential for establishing and conducting sponsored research; excellent written and oral communication skills; and ability to collaborate within and beyond the department. Candidates with commensurate qualifications and experience may be considered for appointment at a higher rank (Associate Professor)

We are seeking an individual who has the ability and interest in contributing to a community committed to student-centeredness; professional development and scholarship; integrity and ethics; innovation and flexibility; and teamwork and collaboration. Prior engagement in innovative teaching methodologies is highly desired. Select to view links to RIT's core values and honor code.

To attract and retain an excellent and innovative faculty, RIT offers a number of programs and professional development opportunities to help faculty succeed from our onboarding and orientation on through to the tenure and promotion process.

https://www.rit.edu/aes/ofr

THE COLLEGE/ DEPARTMENT:

The Electrical and Microelectronic Department is one of six academic departments in the Kate Gleason College of Engineering. The Kate Gleason College of Engineering | RIT offers bachelor's and master's in biomedical engineering, chemical engineering, computer engineering, electrical engineering, industrial engineering, mechanical engineering, and microelectronics engineering as well as four Ph.D. degrees in biomedical and chemical engineering, electrical and computer engineering, mechanical and industrial Engineering, and microsystems engineering and additional master's programs in engineering management and leadership. Serving over 2600 undergraduates and 400 graduate students, the college is committed to growing its research profile while maintaining a strong commitment to undergraduate education. Major research themes include advanced manufacturing; biomedical and healthcare engineering; artificial intelligence and machine learning; cyber-physical systems; micro- and nanoscale systems devices and materials; energy and environment; and data analysis modeling and simulation. Hallmarks of the undergraduate experience include one full year of cooperative education, an innovative multidisciplinary senior design program, and an impressive variety of well-supported student teams and clubs.

The Electrical Engineering Department has 550 undergraduates and 145 graduate students. Faculty and staff include 26 tenured/tenure-track faculty members, six lecturers, four support staff, and three academic advisors. In addition to teaching within the department, faculty conduct research and advise doctoral students in Electrical and Computer Engineering, Microsystems Engineering, Imaging Science, Computer and Information Sciences, and Sustainability. Faculty research expertise includes digital and computer systems, robotics, artificial intelligence, machine learning, biomedical devices, communications, controls, integrated devices/circuits, MEMs, electromagnetic fields, semiconductor electronics, photonics/optoelectronics and signal/image/video processing. Researchers have access to exceptional laboratory resources for design and simulation of electronic/photonic circuits and systems, and a state of the art microfabrication clean room facility that supports materials and processes for micro/nano devices. Research expenditures average approximately $4 M annually. For more information, visit https://www.rit.edu/engineering/electrical-and-microelectronic-engineering and https://www.rit.edu/engineering/research.

THE UNIVERSITY:

Founded in 1829, Rochester Institute of Technology has a long-standing history of innovation that blends the arts, technology, and experiential learning. In addition to its main campus in Rochester, New York, RIT maintains a strong international presence with over 100 active global partnerships and international campuses in Croatia, Dubai, and Kosovo. As of Fall 2024, total student enrollment across all campuses exceeded 21,000. Nationally recognized for its co-op and internship programs, RIT is supported by more than 4,000 dedicated faculty and staff members committed to student success. Its 1,300-acre suburban campus features cutting-edge facilities that reflect RIT's strengths in applied research, design, and workforce development.

To attract and retain an excellent and innovative faculty, RIT offers a number of programs and professional development opportunities to help faculty succeed from our onboarding and orientation on through to the tenure and promotion process.

QUALIFICATIONS:

REQUIRED:

  • PhD. in Electrical, Microelectronic and/or Computer Engineering or a closely related field.
  • Refereed publications in one or more of the following areas:
    • Thin Films (Deposition, Etching, Metrology)
    • Semiconductor Materials & Device Physics
    • CMOSProcessing & Fabrication
    • Neuromorphic/AI Semiconductor Devices and Circuits
    • Memory devices/technologies
    • III-V semiconductor epitaxy, devices, metrology
  • Excellent written and oral communication skills.
  • Extensive fabrication experience in a cleanroom environment
  • Prior course or lab (Teaching Assistant) teaching experience in semiconductors & microelectronics related fields
  • Potential for establishing and conducting sponsored research.
  • Ability to collaborate within and beyond the Department of Electrical & Microelectronic Engineering

HOW TO APPLY:

Apply online at RIT Careers; go to Job Category, and select Faculty (Regular) to view current openings. Please submit your application, curriculum vitae, cover letter addressing the listed qualifications and upload the following attachments: Please submit your application, curriculum vitae, cover letter addressing the listed qualifications and upload the following attachments:

  • A brief teaching philosophy (2-page limit)
  • The names, addresses and phone numbers for three references
  • Research statement

You can contact the search committee with questions on the position at:

Prof. Stefan Preble, sfpeen@rit.edu (Search Committee Chair)

Prof. Ali Reza Vahid, arveme@rit.edu

Prof. Teju Das, tadeee@rit.edu

Prof. Dorin Patru, dxpeee@rit.edu

Prof. Parsian Mohseni, pkmeen@rit.edu

A review of applications will begin immediately and continue until an acceptable candidate is found.

Faculty Tenure, Rank, Discipline

JC_1450 - Associate Professor, Electrical & Microelectronic Engineering

Work Location

On Campus

Compensation

$105,000-$115,000

Application Materials

When you are ready to complete an application for this position please be prepared to submit the below requested information. This will be required to ensure your application is processed in a timely manner.

Cover Letter, Curriculum Vitae or Resume, Research Statement, Statement of Teaching Philosophy

Anticipated Start Date

December 14, 2026

Additional Details

In compliance with NYS's Pay Transparency Act, the salary range for this position is listed above. Rochester Institute of Technology considers factors such as (but not limited to) scope and responsibilities of the position, candidate's work experience, education/training, key skills, internal peer equity, as well as, market and organizational considerations when extending an offer. The hiring process for this position may require a criminal background check and/or motor vehicle records check. Any verbal or written offer made is contingent on satisfactory results, as determined by Human Resources. RIT provides equal opportunity to all qualified individuals and does not discriminate on the basis of race, color, creed, age, marital status, sex, gender, religion, sexual orientation, gender identity, gender expression, national origin, veteran status or disability in its hiring, admissions, educational programs and activities. RIT provides reasonable accommodations to applicants with disabilities under the Rehabilitation Act, the Americans with Disabilities Act, the New York Human Rights Law, or similar applicable law.

If you need reasonable accommodation for any part of the application and hiring process, please contact the Human Resources office at 585-475-2424 or email your request tohr@rit.edu. Determinations on requests for reasonable accommodation will be made on a case-by-case basis.


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About Rochester Institute of Technology

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Rochester Institute of Technology (RIT) is a preeminent institution in the education services industry, located in Rochester, NY, US. Renowned globally for its innovative and industry-aligned education, RIT was established in 1829 and has since then been committed to offering academic rigor in fields of study with an emphasis on applied learning. This is evidenced by their broad spectrum of undergraduate and graduate programs in areas such as engineering, science, business, and fine arts. RIT's mission centers on providing technology-based educational programs for career-minded students.

Industry

Colleges, universities, and professional schools

Company size

1,001 - 5,000 Employees

Headquarters location

Rochester, NY, US

Year founded

1829

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