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Mems Engineer Jobs in Ohio (NOW HIRING)

Communications systems engineer

Dayton, OH ยท On-site

$150K - $200K/yr

Communications Systems Engineer Location: Dayton, Ohio Type: Full-time Clearance: Optional - e.g ... SWIR/MWIR optics, MEMS beam steering, or Risley prisms. * Secure communications and encryption.

Communications systems engineer

Dayton, OH ยท On-site

$150K - $200K/yr

Communications Systems Engineer Location: Dayton, Ohio Type: Full-time Clearance: Optional e.g., U ... SWIR/MWIR optics, MEMS beam steering, or Risley prisms. * Secure communications and encryption.

Manager, Electrical Engineering

Cincinnati, OH ยท On-site

$117K - $151K/yr

... Engineer. L3Harris Engineering Managers possess the skills of a top-notch influencer, motivator ... Experience with temperature sensors, MEMS accelerometers, differential pressure sensors, and gyros

Showing results 21-36

Mems Engineer information

See Ohio salary details

$34.7K

$102K

$130.7K

How much do mems engineer jobs pay per year?

As of Sep 12, 2026, the average yearly pay for mems engineer in Ohio is $101,992.00, according to ZipRecruiter salary data. Most workers in this role earn between $84,100.00 and $129,300.00 per year, depending on experience, location, and employer.

What does a MEMS engineer do?

A MEMS Engineer designs, develops, and tests micro-electromechanical systems (MEMS) devices, which integrate mechanical and electrical components at a microscopic scale. They work on sensors, actuators, and other miniature technologies used in industries such as automotive, medical, and consumer electronics. Their role involves simulation, fabrication, testing, and optimization of MEMS devices to improve performance and reliability. Collaboration with multidisciplinary teams, including material scientists and electrical engineers, is also a key aspect of their work.

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

To thrive as a MEMS Engineer, you need a solid background in microfabrication, materials science, physics, and mechanical or electrical engineering, typically supported by a relevant bachelor's or master's degree. Familiarity with CAD tools, semiconductor processing equipment, cleanroom protocols, and software such as COMSOL Multiphysics or ANSYS is important, and industry credentials like Six Sigma certification can be beneficial. Strong problem-solving skills, attention to detail, and effective teamwork and communication abilities set successful candidates apart. These skills are vital to ensure precision in design, troubleshoot complex devices, and effectively collaborate across multidisciplinary teams in fast-paced environments.

What does a typical workweek look like for a MEMS engineer?

A typical workweek for a MEMS Engineer involves a mix of hands-on fabrication in cleanroom facilities, simulation and modeling of device behavior, and working with cross-functional teams such as electrical, mechanical, and process engineers. You may spend time prototyping, characterizing MEMS devices using analysis equipment, and troubleshooting design or process issues. Regular meetings and collaboration with product development and quality assurance teams are common to ensure projects meet performance and reliability benchmarks. This dynamic environment offers continuous learning and the opportunity to see your work move from concept to production.

What cities in Ohio are hiring for Mems Engineer jobs?

Cities in Ohio with the most Mems Engineer job openings:

Infographic showing various Mems Engineer job openings in Ohio as of September 2026, with employment types broken down into 1% Internship, 90% Full Time, 7% Part Time, and 2% Contract. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $101,992 per year, or $49 per hour.

Communications systems engineer

Dayton, OH โ€ข On-site

Other

Posted 7 days ago


Job description

Communications Systems Engineer

Location: Dayton, Ohio
Type: Full-time
Clearance: Optional - e.g., U.S. Citizen/Eligible for Clearance

Communications Systems Engineer - Free-Space Optical (FSO) / Laser Communications

Levels considered: Experienced through Senior/Principal.

Position Overview

We are looking for a strong communications systems engineer to help design, build, and test next-generation free-space optical (FSO) communication terminals for terrestrial, airborne, and space-based platforms.

You do not need a background in laser communications to apply. Much of what makes an FSO link work is the same engineering practiced across the communications field: link budgets and margin allocation, modulation and coding, acquisition and synchronization, fade and outage statistics, closed-loop pointing and tracking, and end-to-end system validation against SWaP-C constraints. If you have done this work in RF, microwave, SATCOM, fiber-optic transport, wireless, radar, or EO/IR sensing, you have most of what we can build on to teach you the optical layer.

Prior experience in optical communications, free space optical comm, directed energy, and laser systems is a plus.

What You'll Do
  • Contribute to (and, with experience, lead) the architecture and design of laser communication components and their subsystems - transceiver, modem, interfaces, data conditioning.
  • Build and defend link budgets, model end-to-end communication performance, and trade the design against size, weight, power, and cost constraints.
  • Analyze link impairments - atmospheric turbulence, scintillation, fading, pointing jitter, platform dynamics - and shape acquisition, tracking, and mitigation strategies around them.
  • Drive component selection, integration, and system-level validation across lasers, modulators, detectors, beam expanders, and fiber-optic assemblies.
  • Work alongside optical, mechanical, and software specialists to integrate optical communication systems into airborne and space-qualified platforms.
  • Support alignment, calibration, and test campaigns - including pointing, acquisition, and tracking - in the lab and in the field.
  • Participate in customer briefings, requirements definition, and roadmap planning.
  • Author technical documentation, system specifications, and support proposal and IP development.
What We're Looking For
  • B.S., M.S., or Ph.D. in Electrical Engineering, Physics, Optical Engineering, or a related technical field.
  • 5+ years designing, analyzing, or testing communication systems in any medium - RF/microwave, satellite, fiber-optic, wireless, or optical. (Senior/Principal consideration typically starts around 8+ years.)
  • Demonstrated ownership of link budgets and system performance analysis: margin allocation, SNR/BER modeling, availability and outage estimation.
  • Working fluency in MATLAB and/or Python for modeling, simulation, and data reduction.
  • Hands-on laboratory experience bringing up and characterizing hardware - test equipment, instrumentation, measurement campaigns, and debugging a system that isn't behaving as modeled.
  • Comfort operating across disciplines and with the ambiguity of early-stage development work.
  • Clear technical communication, in writing and in front of customers.
Helpful, But Not Required

We expect strong candidates to bring some of these, not all. Depth in one adjacent area matters more to us than shallow exposure to many.

  • Free-space optical or laser communication systems; directed energy systems.
  • Laser sources, optical alignment, and fiber-coupled optical systems.
  • Optical design and simulation tools (Zemax, Code V, FRED) or comparable RF/system modeling tools (STK, Ansys HFSS, GNU Radio, Simulink).
  • Closed-loop pointing, acquisition, and tracking - from any domain, including antenna pointing, gimbal control, radar tracking, or EO/IR sensor stabilization.
  • Communication protocols, waveform design, DSP, forward error correction, or coherent detection.
  • Standards such as CCSDS or optical inter-satellite link (OISL) protocols.
  • Turbulence and propagation modeling in any medium.
  • Space-qualified systems or flight hardware; environmental and qualification testing.
  • SWIR/MWIR optics, MEMS beam steering, or Risley prisms.
  • Secure communications and encryption.
  • Ability to obtain a security clearance.

What We Offer:

  • Competitive compensation and equity packages
  • Technical leadership in a rapidly advancing application space
  • A collaborative, multidisciplinary team working on next-gen optical communications
  • Opportunities for technical growth, system-level ownership, and leadership
  • Flexible work environment with strong emphasis on innovation and impact

About Ravee Optics:

The next space race is not about rockets. It's about data in orbit. Thousands of satellites, on-orbit compute nodes, and autonomous space systems will soon require high-speed, secure, and scalable connectivity in space. RF links cannot keep up with the data demands of this new orbital infrastructure. Ravee Optics is building next-generation optical communications terminals to power the future of inter-satellite connectivity and on-orbit data transport.

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