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Biomedical Electrical Engineering Jobs in Chicago, IL

Bachelor's degree in Electrical Engineering, Electrical & Computer Engineering, Software Engineering, Biomedical Engineering, or a related engineering discipline Work Experience * 4+ years of ...

Sr Engineer Design Electrical

Northfield, IL · On-site

$101K - $152K/yr

Bachelor's degree in Electrical Engineering, Electrical & Computer Engineering, Software Engineering, Biomedical Engineering, or a related engineering discipline Work Experience * 4+ years of ...

Sr Engineer Design Electrical

Northfield, IL · On-site

$101K - $152K/yr

Education Bachelor's degree in Electrical Engineering, Electrical & Computer Engineering, Software Engineering, Biomedical Engineering, or a related engineering discipline Work Experience 4+ years of ...

Bachelor's degree in Electrical Engineering, Electrical & Computer Engineering, Software Engineering, Biomedical Engineering, or a related engineering discipline Work Experience * 4+ years of ...

Perform performance assurance (PA) inspections, scheduled maintenance, electrical safety ... engineering environment preferred * Travel may be required based on customer or business needs

Biomedical Technician I

Chicago, IL · On-site

$23 - $27/hr

Perform performance assurance (PA) inspections, scheduled maintenance, electrical safety ... engineering environment preferred * Travel may be required based on customer or business needs

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Education in biomedical, mechanical, or electrical engineering is a plus, with biomedical engineering degrees given preferential consideration. Though the position is regional (Chicago area), the ...

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Showing results 1-20

Biomedical Electrical Engineering information

See Chicago, IL salary details

$42.2K

$97.7K

$144.2K

How much do biomedical electrical engineering jobs pay per year?

As of Aug 18, 2026, the average yearly pay for biomedical electrical engineering in Chicago, IL is $97,665.00, according to ZipRecruiter salary data. Most workers in this role earn between $76,700.00 and $119,500.00 per year, depending on experience, location, and employer.

What is biomedical electrical engineering?

Biomedical electrical engineering is a specialized field that combines principles of electrical engineering with biological and medical sciences to develop technologies and devices that improve healthcare. Professionals in this area design, test, and maintain medical equipment such as imaging machines, implantable devices, and diagnostic tools. They also work on developing new technologies for monitoring, diagnosing, and treating medical conditions. Their work helps bridge the gap between engineering and medicine, ensuring that complex medical devices are safe, effective, and reliable.

What are the key skills and qualifications needed to thrive as a biomedical electrical engineer, and why are they important?

To thrive as a Biomedical Electrical Engineer, you need a solid background in electrical engineering principles, biomedical sciences, and typically a relevant bachelor's or master's degree. Familiarity with medical device design software, circuit simulation tools, and regulatory standards such as FDA or ISO 13485 is essential. Strong problem-solving, teamwork, and communication skills help you collaborate across multidisciplinary teams and translate complex requirements into effective solutions. These competencies ensure the safe, innovative, and compliant development of medical technologies that directly impact patient care.

What are some common challenges faced by biomedical electrical engineers when integrating new medical devices into existing healthcare systems?

Biomedical electrical engineers often encounter challenges related to compatibility with legacy systems, ensuring compliance with strict regulatory standards, and maintaining patient safety during device integration. Collaborating closely with healthcare professionals, IT specialists, and manufacturers is essential to address these hurdles. Engineers must also stay updated on industry regulations and emerging technologies to implement solutions that are both innovative and reliable.

What is the difference between Biomedical Electrical Engineering vs Biomedical Equipment Technician?

AspectBiomedical Electrical EngineeringBiomedical Equipment Technician
Required CredentialsBachelor's degree in biomedical engineering or electrical engineeringAssociate's degree or certification in biomedical technology or electronics
Work EnvironmentDesign, develop, and test medical devices; research labs; hospitalsInstall, maintain, and repair medical equipment in healthcare settings
Employer & Industry UsageMedical device companies, research institutions, hospitalsHospitals, clinics, biomedical service companies

Biomedical Electrical Engineers focus on designing and developing medical devices and systems, while Biomedical Equipment Technicians primarily maintain and repair existing medical equipment. Both roles are essential in healthcare technology, but they differ in responsibilities, education, and work environment.

Infographic showing various Biomedical Electrical Engineering job openings in Chicago, IL as of August 2026, with employment types broken down into 100% Full Time. Highlights an 93% In-person, and 7% Hybrid job distribution, with an average salary of $97,665 per year, or $47 per hour.

Postdoctoral Appointee - AI for Biomedical Discovery

Argonne National Laboratory

Lemont, IL

$49K - $67K/yr

Full-time

Re-posted 16 days ago


Job description

The Argonne team is seeking two highly motivated postdoctoral researchers to help shape the next generation of secure, scalable, and continuously learning AI systems for biomedical discovery. This position will contribute to the Forge project, which is focused on developing advanced multimodal AI capabilities that can learn across distributed data environments without requiring sensitive data to be centralized.
The successful candidates will work at the intersection of federated learning, foundation models, multimodal biomedical AI, privacy-preserving machine learning, continuous learning, and agentic AI systems. This is an opportunity to conduct applied research that advances trustworthy AI for biomedical and national security-relevant use cases while working in a multidisciplinary environment that brings together computer scientists, AI researchers, domain scientists, software engineers, and high-performance computing experts.

You will help design and implement new methods for multimodal federated learning across heterogeneous data types such as clinical, imaging, omics, text, and experimental data. The work will include developing approaches for continual model improvement, adaptive federated training, model evaluation, workflow automation, and AI-assisted orchestration of distributed learning tasks. The position will also provide opportunities to contribute to open-source software, publish research findings, present at major conferences and workshops, and collaborate with partners across national laboratories, universities, government agencies, and biomedical research organizations.

The work will take place in a collaborative, mission-driven research environment that values technical creativity, rigorous engineering, scientific impact, and teamwork. The group works on practical AI systems that connect research prototypes to real-world deployment environments, including cloud, secure enclaves, trusted research environments, and leadership computing platforms. Candidates should be comfortable working in a fast-moving research setting where methods development, software implementation, experimentation, and scientific communication are all important parts of the role.

Core Responsibilities:

  • Conduct research and development in federated learning, privacy-preserving machine learning, multimodal AI, and foundation model adaptation for biomedical and related scientific applications.
  • Develop new methods for multimodal federated learning that can integrate information across distributed datasets, including imaging, omics, clinical, text, sensor, and other structured or unstructured data modalities.
  • Design and implement continuous learning approaches that allow models to improve over time as new data, validation results, or experimental feedback become available.
  • Explore agentic AI approaches for federated learning, including AI agents that can assist with task orchestration, experiment planning, model evaluation, workflow automation, and decision support across distributed environments.
  • Build and extend software capabilities in federated learning frameworks, with emphasis on scalable, reproducible, secure, and extensible research software.
  • Evaluate model performance, robustness, generalizability, fairness, privacy, and data readiness across heterogeneous sites and datasets.
  • Contribute to the design of secure AI workflows that may involve trusted research environments, secure enclaves, privacy-preserving computation, differential privacy, secure aggregation, or related techniques.
  • Collaborate with interdisciplinary teams, including AI researchers, biomedical scientists, software engineers, security experts, and high-performance computing specialists.
  • Prepare research results for publication in peer-reviewed conferences and journals, and communicate findings through presentations, technical reports, project meetings, and software documentation.
  • Support project milestones, demonstrations, and deliverables by developing working prototypes, experimental benchmarks, and reusable software components.

Position Requirements

Required Skills and Qualifications:

  • Ph.D. completed within the last 0-5 years in computer science, data science, biomedical informatics, computational biology, bioengineering, applied mathematics, electrical engineering, or a related field.
  • Strong programming skills in Python and experience developing research or production-quality machine learning software.
  • Experience with machine learning or deep learning frameworks such as PyTorch, TensorFlow, JAX, or similar tools.
  • Knowledge of federated learning, distributed machine learning, privacy-preserving AI, foundation models, multimodal learning, continual learning, or related areas.
  • Ability to design and conduct computational experiments, analyze model performance, and communicate results clearly.
  • Experience working with large-scale or complex datasets, including structured, unstructured, multimodal, biomedical, scientific, or high-dimensional data.
  • Ability to work independently while contributing effectively to a multidisciplinary research team.
  • Strong written and oral communication skills, including the ability to prepare manuscripts, technical reports, presentations, and documentation.
  • Ability to model Argonne's core values of impact, safety, respect, integrity, and teamwork.

Preferred Skills and Qualifications:

  • Experience developing or extending federated learning frameworks such as APPFL, Flower, FedML, NVIDIA FLARE, or similar systems.
  • Experience with multimodal biomedical data, including combinations of clinical records, medical imaging, pathology, genomics, transcriptomics, proteomics, wearable/sensor data, or scientific text.
  • Familiarity with foundation models, large language models, vision-language models, biomedical AI models, or model fine-tuning methods such as LoRA, adapters, instruction tuning, or retrieval-augmented generation.
  • Experience with continual learning, active learning, reinforcement learning, closed-loop learning, or human-in-the-loop AI workflows.
  • Experience with agentic AI frameworks, tool-using LLMs, workflow orchestration, AI planning systems, or multi-agent systems.
  • Familiarity with privacy and security techniques such as differential privacy, secure aggregation, secure multiparty computation, homomorphic encryption, trusted execution environments, or secure enclaves.
  • Experience with distributed computing, cloud computing, containers, Kubernetes, Docker, Apptainer/Singularity, or high-performance computing environments.
  • Experience with MLOps, reproducible workflows, experiment tracking, CI/CD, software testing, benchmarking, or open-source software development.
  • Familiarity with biomedical AI validation, data readiness assessment, model evaluation, regulatory-grade evidence generation, or independent verification and validation workflows.
  • Demonstrated ability to publish research, contribute to collaborative software projects, or present technical work to interdisciplinary audiences.

Job Family

Postdoctoral

Job Profile

Postdoctoral Appointee

Worker Type

Long-Term (Fixed Term)

Time Type

Full timeThe expected hiring range for this position is $72,879.00-$121,465.00.

Please note that the pay range information is a general guideline only. The pay offered to a selected candidate will be determined based on factors such as, but not limited to, the scope and responsibilities of the position, the qualifications of the selected candidate, business considerations, internal equity, and external market pay for comparable jobs. Additionally, comprehensive benefits are part of the total rewards package.

Click here to view Argonne employee benefits!

As an equal employment opportunity employer, and in accordance with our core values of impact, safety, respect, integrity and teamwork, Argonne National Laboratory is committed to a safe and welcoming workplace that fosters collaborative scientific discovery and innovation. Argonne encourages everyone to apply for employment. Argonne is committed to nondiscrimination and considers all qualified applicants for employment without regard to any characteristic protected by law.

Argonne employees, and certain guest researchers and contractors, are subject to particular restrictions related to participation in Foreign Government Sponsored or Affiliated Activities, as defined and detailed in United States Department of Energy Order 486.1A. You will be asked to disclose any such participation in the application phase for review by Argonne's Legal Department.

All Argonne offers of employment are contingent upon a background check that includes an assessment of criminal conviction history conducted on an individualized and case-by-case basis. Please be advised that Argonne positions require upon hire (or may require in the future) for the individual be to obtain a government access authorization that involves additional background check requirements. Failure to obtain or maintain such government access authorization could result in the withdrawal of a job offer or future termination of employment.