3dMD · 5 hours ago
Software Engineer
3dMD is a leading global provider of dynamic 3D/4D dense-surface camera systems, supporting innovations in healthcare and technology. The Software Engineer role involves designing, developing, and maintaining software solutions for imaging systems, ensuring high performance and reliability.
Responsibilities
Develop and maintain software applications to support 3dMD’s capture systems and downstream analysis software
Collaborate cross functionally with software and hardware teams to identify improvements and develop new features
Clearly communicate design decisions and trade-offs to both technical and non-technical stakeholders
Assist in the creation of technical documentation and user guides to support the 3dMD software post-release
Assist QA and Customer Support Teams
Qualification
Required
Bachelor's degree in Computer Science, Software Engineering, or related field; or equivalent experience
Applicants must be prepared to provide examples of projects, code repositories, or certifications that demonstrate your skills
Proficiency in Programming and Object-Oriented Programming (OOP)
Strong knowledge of Computer Science fundamentals and best practices
Proficient problem-solving and analytical skills; ability to work independently with minimal guidance
Ability to evaluate customer requirements for feasibility, compatibility, impacts, risks, and time required to implement
Ability to prototype ideas and implement algorithms
Ability to work collaboratively in a hybrid team environment
Preferred
Knowledge of Electronic Medical Record (EMR) systems (Epic / Cerner) or healthcare data integration is a strong plus
Knowledge of Windows Presentation Foundation (WPF) framework is a strong plus
Familiarity with 3D imaging, AI/ML frameworks, or related technologies is a strong plus
Experience in developing graphics and geometry algorithms for 3D applications is a strong plus
Experience with software-hardware integration
Company
3dMD
3dMD is a software company that engages in the development of anatomically precise 3D and temporal-3D/4D surface imaging systems.