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Medical Device Embedded Software Engineer Jobs in Wichita, KS

Avionics Engineer

Wichita, KS ยท On-site

$120 - $160/hr

Knowledge of embedded real-time operating systems, critical real-time embedded software ... Sound engineering judgment, accountability, and a positive, solution-focused approach * Strong ...

Biomedical Engineering Tutor

Wichita, KS ยท Remote

$18 - $40/hr

Ability to explain signal processing for biosignals, finite element analysis, drug delivery systems, and medical device design principles while preparing students for biomedical engineering ...

It is a product-embedded engineering role that learns from real customer environments, accelerates ... Modern software delivery with AI/GenAI, LLMs, RAG, agentic workflows, AI evaluation, prompt ...

New

It is a product-embedded engineering role that learns from real customer environments, accelerates ... Modern software delivery with AI/GenAI, LLMs, RAG, agentic workflows, AI evaluation, prompt ...

New

It is a product-embedded engineering role that learns from real customer environments, accelerates ... Modern software delivery with AI/GenAI, LLMs, RAG, agentic workflows, AI evaluation, prompt ...

New

Showing results 21-40

Medical Device Embedded Software Engineer information

See Wichita, KS salary details

$62.6K

$137.2K

$155.7K

How much do medical device embedded software engineer jobs pay per year?

As of Sep 5, 2026, the average yearly pay for medical device embedded software engineer in Wichita, KS is $137,218.00, according to ZipRecruiter salary data. Most workers in this role earn between $117,600.00 and $154,800.00 per year, depending on experience, location, and employer.

What is a medical device embedded software engineer?

Medical Device Embedded Software Engineers are professionals who design, develop, and maintain the specialized software that runs on hardware inside medical devices, such as pacemakers, infusion pumps, and imaging machines. They ensure that the software meets strict regulatory standards for safety, reliability, and performance. Their work involves programming, testing, debugging, and documenting embedded code, as well as collaborating with hardware engineers and regulatory teams to bring safe and effective medical products to market.

What are the key skills and qualifications needed to thrive as a medical device embedded software engineer, and why are they important?

To thrive as a Medical Device Embedded Software Engineer, you need a strong background in embedded systems design, C/C++ programming, and a degree in electrical engineering, computer engineering, or a related field. Familiarity with real-time operating systems (RTOS), hardware-software integration, and industry standards like IEC 62304 or FDA regulations is typically required. Attention to detail, strong problem-solving abilities, and effective teamwork are vital soft skills for this role. These competencies are crucial for developing reliable, safe, and compliant software that meets stringent healthcare requirements.

What are some common challenges faced by medical device embedded software engineers when working on cross-functional teams?

Medical Device Embedded Software Engineers often collaborate closely with hardware engineers, regulatory specialists, and quality assurance teams. A common challenge is ensuring that software requirements align with hardware limitations and regulatory standards, which can necessitate frequent adjustments and clear documentation. Additionally, balancing the pace of software development with the rigorous testing and validation processes required for medical devices can be demanding. Effective communication and adaptability are essential to navigate these multidisciplinary interactions and deliver safe, compliant products.

What is the difference between Medical Device Embedded Software Engineer vs Firmware Engineer?

AspectMedical Device Embedded Software EngineerFirmware Engineer
CredentialsBachelor's in Electrical, Computer Engineering, or related; often certifications in medical device standardsBachelor's in Electrical, Computer Engineering, or related; certifications vary by industry
Work EnvironmentMedical device companies, regulated environments, quality assurance focusConsumer electronics, industrial, or embedded systems companies
Industry UsagePrimarily in healthcare, medical device manufacturingBroader tech sectors, including consumer electronics and industrial systems
Search & Comparison IntentHigh overlap in embedded systems, safety standards, and certification requirements

The Medical Device Embedded Software Engineer and Firmware Engineer roles share core skills in embedded systems development. However, the Medical Device Embedded Software Engineer focuses specifically on medical device safety, regulatory compliance, and working within healthcare environments. Firmware Engineers may work across various industries without the strict medical standards, making the Medical Device Embedded Software Engineer role more specialized in healthcare applications.

What are popular job titles related to Medical Device Embedded Software Engineer jobs in Wichita, KS?

For Medical Device Embedded Software Engineer jobs in Wichita, KS, the most frequently searched job titles are:

What job categories do people searching Medical Device Embedded Software Engineer jobs in Wichita, KS look for?

The top searched job categories for Medical Device Embedded Software Engineer jobs in Wichita, KS are:

What cities near Wichita, KS are hiring for Medical Device Embedded Software Engineer jobs?

Cities near Wichita, KS with the most Medical Device Embedded Software Engineer job openings:

Avionics Engineer

Axius Group

Wichita, KS โ€ข On-site

$120 - $160/hr

Other

Posted 28 days ago


Job description

Job Details

Job Location: Wichita, KS 67209

Position Type: Contractor

SUMMARY

The Professional, Engineering - Avionics / Integrated Modular Avionics is responsible for supporting the design, development, integration, validation, and certification of highly integrated avionics control systems and distributed integrated modular architectures. This position works within the Avionics Center of Excellence to evaluate current and emerging flight deck technologies, define architecture requirements, support IMA application development and testing, and provide technical recommendations that enable efficient aircraft systems integration.

ESSENTIAL FUNCTIONS
  • Develop knowledge and technical expertise related to Highly Integrated Control Systems and Distributed Integrated Modular Architectures
  • Support OEM requirement capture for IMA System Architecture, IMA Platforms, and Hosted Functions
  • Define roles and responsibilities associated with the IMA System Integrator, IMA Application Provider, and IMA Platform Provider
  • Apply DO-297 guidelines to support IMA development, safety, and certification plans in collaboration with internal stakeholders and suppliers
  • Use integrated tool chains provided by the platform provider to build and test IMA applications using virtual test benches and hardware-in-the-loop environments
  • Develop and implement methodologies and procedures to ensure architectures support safety, security, certification, and end-user requirements
  • Define standards for validation, verification, and functional testing
  • Collaborate with project leadership to communicate progress, design evolution, risks, issues, and roadblocks
  • Provide technical direction and recommendations during design reviews covering hardware, software, data network architecture, and development processes
  • Advise the organization on the impact of new regulations affecting avionics architecture
  • Interface with advanced design groups, discipline knowledge owners, fellows, suppliers, and engineering stakeholders to support technology alignment and knowledge sharing
  • Prepare technical documentation and reports capturing analyses, results, recommendations, and next steps
  • Operate to defined schedule and cost objectives
  • Provide technical leadership and guidance to junior engineers and interns
QualificationsKnowledge
  • Advanced knowledge of Integrated Modular Avionics, highly integrated control systems, distributed systems architectures, and aircraft-level avionics integration
  • Knowledge of DO-297, AC 20-170, TSO-C153, TSO-C214, safety, development, and certification guidelines applicable to IMA systems
  • Strong understanding of aerospace communication protocols, including AFDX, ARINC 429, ARINC 664 Part 7, and ARINC 661
  • Knowledge of requirements development, validation, flow down, traceability, verification, and functional testing standards
  • Familiarity with networking communication protocols and related software development, including UDP/IP and Ethernet
  • Knowledge of embedded real-time operating systems, critical real-time embedded software, distributed systems, and model-based development tools is preferred
COMPETENCIES
  • Strong systems thinking and technical problem-solving within complex aircraft and avionics environments
  • Ability to influence and collaborate effectively with limited formal authority
  • Sound engineering judgment, accountability, and a positive, solution-focused approach
  • Strong written communication, technical documentation, and oral presentation skills in English
  • Functional French communication skills preferred
  • Ability to positively interact, communicate, and coordinate activities with peers, management, collaborators, suppliers, and engineering stakeholders
EXPERIENCE AND EDUCATION
  • University degree in Computer Engineering, Software Engineering, Electrical Engineering, Aerospace Engineering, or a related technical field required
  • Minimum of eight years of experience with integrated systems architectures, including Integrated Modular Avionics required
  • Experience with complex aircraft systems development, integration, validation, verification, and certification required
  • Experience working with DO-297, AC 20-170, TSO-C153, and TSO-C214 guidelines requiredExperience with requirements development, validation, flow down, traceability, technical documentation, and design review support required
  • Experience with embedded real-time operating systems, such as VxWorks 653, critical real-time embedded systems, or distributed systems is an asset
  • Understanding of aircraft systems integration, ground and flight test activities, component qualification, reliability, safety requirements, and FAR Part 25 / CAR 525 certification processes is preferred
WORKING CONDITIONS
  • Hybrid work schedule requiring three mandatory days per week onsite at the Bombardier office in Montreal
  • Prolonged periods of sitting at a desk and working at a computer
  • Repetitive use of the hands, wrists, and arms due to computer usage
  • Work is primarily performed in an office or engineering environment with regular collaboration across technical teams and stakeholders
  • Reasonable accommodations may be made to enable qualified individuals with disabilities to perform the essential functions of the position
WORK AUTHORIZATION/SECURITY CLEARANCE
  • Must be legally authorized to work in the United States
  • If a security clearance is required: Candidate must be able to obtain and maintain applicable security clearance requirements
  • Successful candidates must be able to obtain required Program Access approval, if applicable
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