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Remote Mems Engineer Jobs (NOW HIRING)

$48K - $65K/yr

Approval of remote and hybrid work is not guaranteed regardless of work location.For additional ... D. in Materials Science and Engineering, Electrical Engineering, Physics, or a closely related ...

New

Our solutions combine MEMS (micro electrical mechanical systems) sensors, such as accelerometers ... remote controls for smart TVs. InvenSense is headquartered in San Jose, CA and has offices in ...

Support customers having Yield excursions, Electrical continuity issues, Contact problems (MEMS ... Onsite & Remote Support * Provide onsite support at customer fabs and OSATs when required * Conduct ...

Remote Mems Engineer information

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$12

$55

$80

How much do remote mems engineer jobs pay per hour?

As of Sep 2, 2026, the average hourly pay for remote mems engineer in the United States is $55.99, according to ZipRecruiter salary data. Most workers in this role earn between $40.14 and $74.52 per hour, depending on experience, location, and employer.

What is a remote MEMS engineer?

Remote MEMS Engineers are professionals who design, develop, and test micro-electromechanical systems (MEMS) while working from a location outside of a traditional office or laboratory. Their work involves creating tiny mechanical devices, such as sensors and actuators, that integrate with electronic systems. Remote MEMS Engineers use specialized software and simulation tools to collaborate with teams, analyze data, and solve design challenges. This role requires a strong background in engineering, physics, and materials science, as well as the ability to communicate and coordinate effectively in a remote environment.

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

To thrive as a Remote MEMS Engineer, you need a solid background in microelectromechanical systems (MEMS) design, fabrication, and testing, typically supported by a degree in electrical engineering, mechanical engineering, or a related field. Familiarity with CAD software, simulation tools (such as COMSOL or CoventorWare), and experience with semiconductor fabrication processes are commonly required, along with relevant certifications or training. Strong problem-solving abilities, effective communication, and self-motivation are standout soft skills for collaborating with distributed teams and managing remote projects. These qualifications ensure the engineer can drive innovation, maintain project timelines, and deliver reliable MEMS solutions from a remote setting.

What are some common challenges faced by remote MEMS engineers and how can they be addressed?

Remote MEMS Engineers often encounter challenges related to collaboration and access to specialized laboratory equipment required for microfabrication and testing. Communication with cross-functional teams, such as design, fabrication, and testing groups, can be more complex when working remotely. These challenges can be addressed by leveraging virtual collaboration tools, maintaining clear documentation, and scheduling regular video meetings to discuss progress and resolve technical issues. In addition, many companies provide remote access to simulation tools and facilitate occasional onsite visits for hands-on tasks, helping ensure successful project outcomes.

What is the difference between Remote Mems Engineer vs Remote Optical Engineer?

AspectRemote Mems EngineerRemote Optical Engineer
Required CredentialsBachelor's or Master's in Electrical, Mechanical, or Materials Engineering; experience with MEMS fabrication and testingBachelor's or Master's in Optical, Electrical, or Physics; experience with optical systems and laser technologies
Work EnvironmentDesign labs, cleanrooms, or remote collaboration on design and testingOptical labs, R&D centers, or remote system development
Industry UsageSemiconductor, consumer electronics, biomedical devicesTelecommunications, imaging, laser systems

The main difference between a Remote Mems Engineer and a Remote Optical Engineer lies in their focus areas. Mems Engineers specialize in micro-electromechanical systems design and fabrication, often working on sensors and actuators, while Optical Engineers focus on optical systems, lasers, and imaging technologies. Both roles require strong technical credentials and often operate in similar remote or lab environments, but their industry applications and technical expertise differ significantly.

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The top searched job categories for Remote Mems Engineer jobs are:

Infographic showing various Remote Mems Engineer job openings in the United States as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% Remote job distribution, with an average salary of $116,463 per year, or $56 per hour.

Postdoctoral Scholar - Ferroelectric Materials and MEMS

The Pennsylvania State University

On-site, Remote

$48K - $65K/yr

Full-time

Posted yesterday

New


Job description

APPLICATION INSTRUCTIONS:
  • CURRENT PENN STATE EMPLOYEE (faculty, staff, technical service, or student), please login to Workday to complete the internal application process. Please do not apply here, apply internally through Workday.
  • CURRENT PENN STATE STUDENT (not employed previously at the university) and seeking employment with Penn State, please login to Workday to complete the student application process. Please do not apply here, apply internally through Workday.
  • If you are NOT a current employee or student, please click "Apply" and complete the application process for external applicants.

Approval of remote and hybrid work is not guaranteed regardless of work location.For additional information on remote work at Penn State, seeNotice to Out of State Applicants.

This is a term position; length of the term will be discussed during the interview process. Continuation past the termlengthdiscussed willbebasedonuniversityneed,performance,and/oravailabilityoffunding.

POSITION SPECIFICS

The Materials Research Institute (MRI) at The Pennsylvania State University invites applications for a Postdoctoral Scholar to conduct interdisciplinary research on functional dielectric, piezoelectric, and ferroelectric materials for emerging memory and sensing applications.

ThePostdoctoral Scholar will work collaboratively with Prof. Betul Akkopru-Akgunand Prof. Susan Trolier-McKinstry, contributing approximately equally to research activities in both groups. Under the direction of Prof. Betul Akkopru-Akgun, thePostdoctoral Scholar will investigatefluorite-type and wurtzite ferroelectrics for next-generation memory applications, focusing on the relationships betweendefect chemistry, intermediate switching states, polarization switching, fatigue, and retention. In collaboration with Prof. Trolier-McKinstry, the scholar will work on on fabrication of thin film and bulk single crystal microelectromechanical systems for multimodal sensing systems. This will include design, fabrication, and testing of micro-electromechanical systems (MEMS) devices.

The successful candidate will have the opportunity to work at the intersection of functional materials, ferroelectrics, electrical characterization, microfabrication, and MEMS-based sensing, and will collaborate with researchers across multiple disciplines.

Required Qualifications

Ph.D. in Materials Science and Engineering, Electrical Engineering, Physics, or a closely related field.

Demonstrated experience with electrical characterization of dielectric, piezoelectric, or ferroelectric materials.

Experience with techniques such as polarization-electric field (P-E) measurements, dielectric spectroscopy, leakage-current measurements, impedance spectroscopy, or related electrical characterization methods.

Strong experimental skills and experience with data analysis and interpretation.

Ability to work independently and collaboratively in a multidisciplinary research environment.

Preferred Qualifications

Experience with thin-film deposition and characterization.

Experience with MEMS design, fabrication, or testing.

Experience with microfabrication techniques, including lithography, etching, metallization, or related processes.

Experience with piezoelectric or ferroelectric devices for sensing, actuation, or memory applications.

Familiarity with bulk single-crystal materials and/or single-crystal MEMS.

Experience with device modeling or simulation

To apply, applicants should upload a cover letter detailing their qualifications for and interest in the position, a copy of their CV, and names and contact details (e-mail addresses and telephone numbers) for three references.

BACKGROUND CHECKS/CLEARANCES

Employment with the University will require successful completion of background check(s) in accordance with University policies.

BENEFITS

Penn State provides a competitive benefits package for full-time employees designed to support both personal and professional well-being.

For more detailed information, please visit ourBenefits Page. (Note: For Postdoctoral benefits, please see our Postdoctoral Benefits page.)

CAMPUS SECURITY CRIME STATISTICS

Pursuant to the Jeanne Clery Disclosure of Campus Security Policy and Campus Crime Statistics Act and the Pennsylvania Act of 1988, Penn State publishes a combined Annual Security and Annual Fire Safety Report (ASR). The ASR includes crime statistics and institutional policies concerning campus security, such as those concerning alcohol and drug use, crime prevention, the reporting of crimes, sexual assault, and other matters. The ASR is available for review here.

EEO IS THE LAW

Penn State is an equal opportunity employer and is committed to providing employment opportunities to all qualified applicants without regard to race, color, religion, age, sex, sexual orientation, gender identity, national origin, disability or protected veteran status. If you are unable to use our online application process due to an impairment or disability, please contact 814-865-1473.

Penn State is committed to and accountable for advancing equity, respect, and belonging. We embrace individual uniqueness, as well as a culture of belonging that supports equity initiatives, leverages the educational and institutional benefits of inclusion in society, and provides opportunities for engagement intended to help all members of the community thrive. We value belonging as a core strength and an essential element of the university's teaching, research, and service mission.

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About Pennsylvania State University

Sourced by ZipRecruiter

Pennsylvania State University, often referred to as Penn State, is a major, public, research-intensive university located in University Park, PA, US. This esteemed institution serves as an important player within the education industry, offering a plethora of academic programs across various disciplines. The university was founded in 1855 with the mission to provide quality education, advanced research, and service to society. Penn State holds firmly to values of integrity, respect, and excellence, fostering a diverse and inclusive community. The university is renowned for its research productivity and its high-ranking programs in areas like engineering, business, and education. One notable achievement of the institution is its designation as a "R1: Doctoral Universities – Very high research activity," demonstrating its commitment to scholarship and discovery.

Industry

Education

Company size

11 - 50 Employees

Headquarters location

University Park, PA, US

Year founded

1855

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