Image Quality Engineer

GE HealthCareSalt Lake City, UT
Onsite

About The Position

The Image Quality Engineer is responsible for R&D for new and existing imaging products for GE HealthCare Surgery. They prove a concept to be valid by the application of scientific and engineering methodologies. Their work typically has the objective of demonstrating through testing or analysis the performance and implementation potential of a concept. The role requires mastery of a body of theoretical knowledge, a strong foundation of function skills, and a knowledge of relevant technologies. At our Salt Lake City site, engineering, research, and manufacturing teams come together to design and build surgical imaging technologies — including advanced C-arm imaging systems that support image-guided procedures for clinicians across the globe. The work here contributes to the precision, and capability clinicians bring into the OR every day.

Requirements

  • BS in Electrical Engineering, Biomedical Engineering, Physics, Chemistry, Life Sciences, or closely related discipline
  • Proven ability to develop timely and effective solutions for challenging design problems
  • Demonstrated ability to pursue tasks to completion
  • Broad exposure to HW/SW/Systems design, and technical depth in one or more engineering disciplines (Electrical, Mechanical, Software, etc.)
  • Eligibility Requirement: GE will only employ those who are legally authorized to work in the United States for this opening.

Nice To Haves

  • MS in Physics, Biomedical Engineering, Electrical Engineering, or other closely related fields
  • Broad exposure to medical imaging physics
  • Ability to design and develop image processing algorithms
  • Proficient in the use of software tools for analysis and simulation (Python, C++, MATLAB, etc.)
  • Effective communication skills and boundaryless behavior

Responsibilities

  • Working with customers, marketing, and field personnel to define requirements which can be implemented by the engineering team
  • Developing methods to quantify subsystem interactions and their effects on image quality
  • Specification, Design, Verification, and Validation of system features and sub-systems relating to X-Ray Exposure Control, Image Processing, and Visualization.
  • Executing design to engineering standards
  • Documenting design with technical rigor
  • Collaborating in cross-functional teams with technical leadership to ensure that technical deliverables are consistent with the goals of larger programs, projects, or initiatives
  • Actively seeking mentoring to learn and solve problems.

Benefits

  • professional development
  • challenging careers
  • competitive compensation
  • Relocation Assistance Provided
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