1

Control Engineer Postdoc Jobs in College Park, MD

Bioinformatics Scientist

Bethesda, MD ยท On-site

$65K - $108K/yr

Provide scientific mentorship and guidance to students, postdoctoral fellows, technicians, and ... Provide programming and troubleshooting support to the Federal Government in the dissemination of ...

Bioinformatics Scientist

Bethesda, MD ยท On-site

$65K - $108K/yr

Provide scientific mentorship and guidance to students, postdoctoral fellows, technicians, and ... Provide programming and troubleshooting support to the Federal Government in the dissemination of ...

Control Systems and Sensing to support the analysis of existing capabilities and inform decision ... Microwave/RF Engineering related to circuit design and modeling, waveform synthesis synchronization ...

next page

Showing results 1-20

Control Engineer Postdoc information

See College Park, MD salary details

$35.6K

$80.1K

$125K

How much do control engineer postdoc jobs pay per year?

As of Aug 30, 2026, the average yearly pay for control engineer postdoc in College Park, MD is $80,070.00, according to ZipRecruiter salary data. Most workers in this role earn between $59,300.00 and $95,900.00 per year, depending on experience, location, and employer.

What is a control engineer postdoc?

Control Engineer Postdocs are researchers with a Ph.D. who specialize in the design, analysis, and implementation of control systems. They work in academic or industrial research settings, often focusing on advancing knowledge in areas like automation, robotics, or process control. Their responsibilities include conducting experiments, developing new algorithms or methods, publishing research findings, and sometimes mentoring students. This position is typically a temporary role intended to further develop expertise before pursuing a permanent academic or industry position.

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

To thrive as a Control Engineer Postdoc, you need an advanced degree (PhD) in control engineering or a related field, with strong expertise in systems modeling, control theory, and applied mathematics. Proficiency in simulation tools such as MATLAB/Simulink and experience with programming languages like Python or C++, as well as familiarity with hardware-in-the-loop and embedded systems, are typically required. Strong problem-solving skills, effective communication, and the ability to work independently and collaboratively make a candidate stand out. These skills and qualities are critical for conducting advanced research, developing innovative control solutions, and contributing to interdisciplinary projects.

What are some common challenges faced by control engineer postdocs when transitioning from academia to industry-focused projects?

One common challenge for Control Engineer Postdocs moving into industry-oriented projects is adapting to faster-paced development cycles and stricter project deadlines. Unlike academic research, industry projects often require practical, scalable solutions rather than theoretical proofs. Additionally, postdocs may need to collaborate closely with multidisciplinary teams, including software developers, product managers, and hardware engineers, making strong communication and teamwork skills essential. This transition also often involves working with proprietary tools and adhering to industry standards, which may require additional training.

What is the difference between Control Engineer Postdoc vs Control Engineer?

AspectControl Engineer PostdocControl Engineer
Required CredentialsPhD in Engineering or related field, research experienceBachelor's or Master's in Engineering, professional experience
Work EnvironmentAcademic research labs, universitiesIndustrial settings, manufacturing, automation companies
Employer & Industry UsageUniversities, research institutionsManufacturing firms, tech companies
Common Search & ComparisonResearch-focused roles, academic positionsIndustry-focused roles, engineering positions

The main difference between a Control Engineer Postdoc and a Control Engineer lies in their focus and work environment. A Control Engineer Postdoc is primarily involved in academic research, requiring a PhD and working in universities or research labs. In contrast, a Control Engineer typically works in industry, applying engineering principles in manufacturing or automation settings. Both roles require a strong background in control systems, but their career paths and work environments differ significantly.

NIST PREP Postdoc Associate in Precision Measurement of Thermophysical Quantities

Southeastern Universities Research Association

Gaithersburg, MD โ€ข On-site

$80K - $100K/yr

Full-time

Posted 6 days ago


Job description

This position is part of the National Institute of Standards (NIST) Professional Research Experience (PREP) program. NIST recognizes that its research staff may wish to collaborate with researchers at academic institutions on specific projects of mutual interest, thus requires that such institutions must be the recipient of a PREP award. The PREP program requires staff from a wide range of backgrounds to work on scientific research in many areas. Employees in this position will perform technical work that underpins the scientific research of the collaboration.
Research Title: Postdoctoral researcher / Precision measurement of thermophysical quantities
The work will entail: NIST seeks a postdoctoral researcher with an interest in the precision measurement of thermophysical quantities. Example quantities of interest include thermodynamic temperature, pressure, refractive index, thermal expansion, density virial coefficients, magnetic susceptibility. A unifying principle of the work is that all measurements are based on precision optical interferometry.
For example, one branch of interest is to develop a cryogenic gas thermometer. The working principle is refractive index gas thermometry, using a Fabry-Perot cavity resonator filled with helium gas; temperature is derived from the ideal gas law. The system targets a temperature range of 4 K to 303 K, with current art performance realizing the SI unit kelvin.
Another branch of interest is the development of an accurate, air-based dilatometer to measure the thermal expansion coefficient of materials important to dimensional metrology. The working principle is displacement interferometry with a linear slide translation stage. The system targets accuracy of about on the thermal expansion coefficient in the temperature range 283 K to 313 K.
A third branch of interest is to measure the magnetic susceptibility of gases important to thermodynamic metrology. The working principle is a "Faraday balance", which consists of balancing a suspended dumbbell in a magnetic field; as the volume around the dumbbell is filled with the test (diamagnetic) gas, the dumbbell will rotate, and the magnetic susceptibility is proportional to the rotation. The undertaking aims to resolve large disagreements between historic measurement and recent ab initio calculation of the magnetic susceptibility of helium, neon, argon, and nitrogen.
Key responsibilities will include but are not limited to:
  • Conduct research and development into precision interferometry, and its application to the measurement of thermophysical quantities
  • Instrumentation of apparatus, including optical, electrical, mechanical, and control automation
  • Instrument control, data acquisition and curation, and final analysis all performed in python
  • Publishing results of research to relevant journals and presentation at conferences

U.S. Citizen Preferred
Qualifications
  • PhD in Physics, Chemistry, or Chemical or Electrical Engineering
  • Experience with optics, laser control and feedback electronics, and temperature and pressure measurements
  • Experience with frequency metrology (optical and rf)
  • Familiarity with measurement uncertainty and error analysis
  • Ability to work with the python programming language.

Privacy Act StatementAuthority: 15 U.S.C. ยง 278g-1(e)(1) and (e)(3) and 15 U.S.C. ยง 272(b) and (c)
Purpose: The National Institute for Standards and Technology (NIST) hosts the Professional Research Experience Program (PREP) which is designed to provide valuable laboratory experience and financial assistance to undergraduates, post-bachelor's degree holders, graduate students, master's degree holders, postdocs, and faculty.
PREP is a 5-year cooperative agreement between NIST laboratories and participating PREP Universities to establish a collaborative research relationship between NIST and U.S. institutions of higher education in the following disciplines including (but may not be limited to) biochemistry, biological sciences, chemistry, computer science, engineering, electronics, materials science, mathematics, nanoscale science, neutron science, physical science, physics, and statistics. This collection of information is needed to facilitate administrative functions of the PREP Program.
Routine Uses: NIST will use the information collected to perform the requisite reviews of the applications to determine eligibility, and to meet programmatic requirements. Disclosure of this information is also subject to all the published routine uses as identified in the Privacy Act System of Records Notices: NIST-1: NIST Associates.
Disclosure: Furnishing this information is voluntary. When you submit the form, you are indicating your voluntary consent for NIST to use of the information you submit for the purpose stated.
SURA is an Equal Opportunity Employer. We believe that no one should be discriminated against because of their differences, such as age, disability, ethnicity, gender, gender identity and expression, religion, or sexual orientation. All employment decisions shall be made without regard to age, race, creed, color, religion, sex, national origin, ancestry, disability status, veteran status, sexual orientation, gender identity or expression, genetic information, marital status, citizenship status, or any other basis as protected by federal, state, or local law.
PREP0005214