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Microelectronics Engineer Jobs in Maryland (NOW HIRING)

Senior Staff AI Engineer

Columbia, MD · On-site

$101K - $139K/yr

... microelectronic, and sensor elements in novel combinations, including familiarity with design tools, 3D printing, and hands-on electrical and physical assembly. • Demonstrated experience leading ...

Showing results 41-60

Microelectronics Engineer information

See Maryland salary details

$29.9K

$102.6K

$161.5K

How much do microelectronics engineer jobs pay per year?

As of Aug 14, 2026, the average yearly pay for microelectronics engineer in Maryland is $102,625.00, according to ZipRecruiter salary data. Most workers in this role earn between $84,723.00 and $138,049.00 per year, depending on experience, location, and employer.

What are some common challenges faced by microelectronics engineers in their daily work?

Microelectronics Engineers often encounter challenges such as staying updated with rapidly evolving technologies, managing tight project deadlines, and troubleshooting complex circuitry issues. Additionally, balancing the trade-offs between performance, cost, and manufacturability requires keen analytical thinking and continuous learning. Engineers may also work closely with multidisciplinary teams—including product designers, test engineers, and manufacturing specialists—to ensure design integrity from concept through production. Being adaptable and receptive to feedback is vital, as solutions often require iterative improvements and cross-functional collaboration.

What is a microelectronics engineer?

A Microelectronics Engineer designs, develops, and tests small electronic components and systems, such as microchips, semiconductors, and circuit boards. They work in industries like consumer electronics, telecommunications, medical devices, and aerospace. Their responsibilities include circuit design, fabrication, troubleshooting, and optimizing electronic performance. They may also collaborate with teams to improve manufacturing processes and innovate new technologies.

What does a microelectronics engineer do?

A microelectronics engineer designs, develops, and tests small electronic components and circuits, such as integrated circuits and semiconductors. They often work with CAD tools, analyze electrical performance, and ensure manufacturing processes meet specifications in cleanroom environments.

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

To thrive as a Microelectronics Engineer, you need a solid background in electrical engineering, semiconductor device physics, and circuit design, often backed by a relevant bachelor's or master's degree. Familiarity with CAD tools like Cadence or Synopsys, PCB layout software, and industry certifications such as IPC standards is highly beneficial. Strong problem-solving abilities, attention to detail, and effective teamwork skills help distinguish top candidates in this field. These capabilities are crucial for successfully designing, testing, and optimizing complex microelectronic systems within collaborative, innovative environments.

What are the most commonly searched types of Microelectronics Engineer jobs in Maryland?

The most popular types of Microelectronics Engineer jobs in Maryland are:

What are popular job titles related to Microelectronics Engineer jobs in Maryland?

For Microelectronics Engineer jobs in Maryland, the most frequently searched job titles are:

What cities in Maryland are hiring for Microelectronics Engineer jobs?

Cities in Maryland with the most Microelectronics Engineer job openings:

Infographic showing various Microelectronics Engineer job openings in Maryland as of August 2026, with employment types broken down into 67% Full Time, and 33% Contract. Highlights an 100% In-person job distribution, with an average salary of $102,625 per year, or $49.3 per hour.

Hardware Engineer 1 with Security Clearance

Avid Technology Professionals

Annapolis Junction, MD • On-site

$126K - $166K/yr

Other

Posted 29 days ago


Job description

● RF Design and  Design, install, and test RF / SATCOM hardware (C‑, X‑, Ku‑, Ka‑, Q/V‑band) while accounting for atmospheric attenuation, ionospheric scintillation, rain‑fade, and polarization‑m ● Conduct site surveys, climb antennas, rack and align hardware, and operate earth‑terminal control consoles to establish and maintain wide‑band and satellite communication links. ● Perform preventive, scheduled, and corrective maintenance; troubleshoot on‑the‑spot malfunctions; apply anti‑jamming techniques and enforce safety/maintenance procedures. ● Use Keysight PNA‑X, FieldFox, Spec‑A, signal generators, oscilloscopes, and BER testers to measure S‑parameters, P1dB, TOI, NF, phase‑noise, group‑delay, and perform non‑linear analysis (IMD, spectral regrowth). ● Produce AutoCAD/Visio drawings, block diagrams, schematics, and technical design packages; ● Prepare engineering plans, as‑built documentation, test reports, and maintenance records; coordinate with cross‑functional teams (system architects, PMs, test sites). ● Travel up‑to 15 % worldwide to support installations, testing, and maintenance in remote or austere environments. ● Hands‑on proficiency with Keysight PNA‑X, FieldFox, Spec‑A, RF signal generators, spectrum/network analyzers, oscilloscopes, and BER testers. ● Experience developing preventive‑maintenance schedules, conducting equipment inspections, and authoring safety‑rule documentation. ● Excellent written and verbal communication; capable of producing technical reports, engineering plans, and briefing packages for multi‑service audiences. ● Proven problem‑solving record: troubleshooting complex RF hardware, analyzing data printouts, implementing corrective actions that improve performance and maintainability. ● Leadership/mentoring ability: lead inspection teams, supervise maintenance activities, and train site personnel. ● Ability to carry equipment, climb antennas, and rack hardware. ● Knowledgeable of RF design, installation, and test, with a focus on SATCOM systems.   Three (3) years experience as a HDE in integrated circuit or microelectronic component design or reverse engineering of the same is required.