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Labview Development Jobs in North Carolina (NOW HIRING)

Senior Staff Electrical Engineer

Raleigh, NC ยท On-site

$95K - $123K/yr

We are seeking an experienced Senior Staff Electrical Engineer to join our R&D Electrical ... LabVIEW. * Expertise with schematic capture and PCB layout tools; Altium Designer preferred.

New

Precision Machine Design Supervisor

Hickory, NC ยท On-site

$143K - $197K/yr

Oversee prototype development, supplier coordination, machine debugging, and equipment ... Exposure to instrumentation, sensors, data acquisition (DAQ) systems, or LabVIEW-based measurement ...

Strong computer skills including MS Office, Labview and Altium. * Familiarity with PLC Programing ... Commitment to development Compensation Pay Range Please click here to review Ontic's California ...

Precision Machine Design Supervisor

Hickory, NC ยท On-site

$143K - $197K/yr

Oversee prototype development, supplier coordination, machine debugging, and equipment ... Exposure to instrumentation, sensors, data acquisition (DAQ) systems, or LabVIEW-based measurement ...

Precision Machine Design Supervisor

Hickory, NC ยท On-site

$143K - $197K/yr

Oversee prototype development, supplier coordination, machine debugging, and equipment ... Exposure to instrumentation, sensors, data acquisition (DAQ) systems, or LabVIEW-based measurement ...

Strong computer skills including MS Office, Labview and Altium. * Familiarity with PLC Programing ... Commitment to development Compensation Pay Range Please click here to review Ontic's California ...

Showing results 41-60

Labview Development information

What is LabVIEW development?

LabVIEW development refers to the process of designing, creating, and maintaining applications using LabVIEW, which is a graphical programming environment developed by National Instruments. LabVIEW is widely used for data acquisition, instrument control, and industrial automation. Developers use LabVIEW's visual interface to create programs, or 'virtual instruments,' by connecting functional blocks instead of writing traditional code. This approach is especially popular in engineering, scientific research, and manufacturing settings where rapid prototyping and hardware integration are essential.

What are the key skills and qualifications needed to thrive as a LabVIEW developer?

To thrive as a LabVIEW Developer, you need strong expertise in graphical programming, experience with test automation, and a background in engineering or computer science. Familiarity with National Instruments LabVIEW software, DAQ hardware, and certifications like Certified LabVIEW Developer (CLD) are typically required. Problem-solving, attention to detail, and effective communication are crucial soft skills for collaborating on complex projects and troubleshooting issues. These skills ensure efficient system development, reliable test automation, and smooth team collaboration in high-tech environments.

What are some common challenges faced by LabVIEW developers and how can they be addressed?

LabVIEW Developers often face challenges such as integrating LabVIEW with legacy hardware, managing large and complex codebases, and ensuring efficient collaboration with multidisciplinary teams. To address these, developers should maintain clear documentation, utilize LabVIEW's modular programming features, and follow best practices for version control. Regular code reviews and open communication with hardware engineers and project managers also help streamline development and troubleshoot issues quickly.

What is the difference between Labview Development vs Test Automation Engineer?

AspectLabview DevelopmentTest Automation Engineer
Required CredentialsTypically requires a degree in engineering or computer science, with LabVIEW certification often preferred.Requires a degree in engineering, computer science, or related field; certifications in testing tools are common.
Work EnvironmentPrimarily lab and development settings, working on hardware integration and data acquisition.Mostly office and lab environments, focusing on designing and executing automated tests.
Industry UsageUsed in manufacturing, aerospace, and research for data acquisition and control systems.Common in electronics, automotive, and software industries for quality assurance and testing.

While both roles involve testing and data analysis, Labview Development focuses on creating software for hardware control and data acquisition, whereas Test Automation Engineers design and implement automated testing processes to ensure product quality.

What job categories do people searching Labview Development jobs in North Carolina look for?

The top searched job categories for Labview Development jobs in North Carolina are:

What cities in North Carolina are hiring for Labview Development jobs?

Cities in North Carolina with the most Labview Development job openings:

Infographic showing various Labview Development job openings in North Carolina as of August 2026, with employment types broken down into 83% Full Time, 6% Part Time, and 11% Contract. Highlights an 94% In-person, and 6% Remote job distribution.

Senior Staff Electrical Engineer

Cutera Inc.

Raleigh, NC โ€ข On-site

$95K - $123K/yr

Full-time

Posted 2 days ago

New


Job description

Position Summary:
We are seeking an experienced Senior Staff Electrical Engineer to join our R&D Electrical Engineering team and contribute to the development of next-generation medical devices and applications. Projects span a broad range of technologies, including complex laser and optical delivery systems, ultrasound, and radio-frequency (RF) devices. This position will play a key role in developing sophisticated electronic systems that power these products and supporting their successful transition from concept through commercialization.
The engineer will serve as a technical resource for power supply, sensor interface, analog, and digital circuit design, working closely with cross-functional teams including Mechanical, Optical, Software, Clinical, Manufacturing, Quality, and Regulatory.
Duties & Responsibilities:
  • Provide active mentorship and technical guidance to Staff-level engineers, including the review of schematics and PCB layouts to ensure the consistent application of best practices.
  • Lead cross-functional design reviews involving Mechanical, Optical, and Software teams to ensure the seamless integration of electrical subsystems into complex laser or RF systems.
  • Define project scope, priorities, and schedules with a high level of independence, ensuring all technical deliverables align with departmental and product development goals.
  • Own the risk management portion of the design process, providing technical input into design specifications to ensure all safety and regulatory hurdles are addressed prior to production.
  • Maintain an up-to-date understanding of industry technology trends to identify opportunities for innovation and serve as a thought leader for the electrical engineering team.
  • Assume responsibility for continued education and professional development to remain informed on evolving engineering best practices, technologies, and tools.
  • Design sensor interfaces and power supplies for high-power laser and RF applications while providing technical input into risk management and ensuring regulatory compliance for complex medical systems.
  • Collaborate with PCB, component, and tooling suppliers and vendors to optimize engineering designs for performance, reliability, and cost-efficiency throughout the product development lifecycle.
  • Develop schematics and PCB layouts using industry-standard design tools.
  • Design, integrate, and test analog and digital control circuits.
  • Lead the transfer of new products from development into production, working closely with Manufacturing and Quality teams.
  • Provide technical input into design specifications, risk management, and product development activities.
  • Ensure electrical safety, EMC, and regulatory compliance across product designs.
  • Develop and execute test plans to support design verification and validation of electronic systems.
  • Collaborate closely with systems, mechanical, UI/UX and software engineering to support system-level architecture and implementation.
  • Troubleshoot complex electronic systems and perform root-cause analysis of new and existing designs.
  • Support continuous improvement of existing products, processes, and engineering practices.
  • Other duties as needed or required.

Minimum Requirements & Qualifications:
  • Bachelor's degree in Electrical Engineering; Master's degree preferred.
  • 8+ years of relevant electrical engineering experience, preferably within medical devices, lasers, or other complex capital equipment.
  • Proven experience designing and developing electronics for commercial products from concept through production.
  • Strong background in systems-level electrical design, integration, debugging, and testing for complex products.
  • Experience designing and controlling diode-pumped solid-state and flashlamp-pumped laser systems.
  • Strong proficiency in analog and digital circuit design.
  • Extensive experience with board-level debugging, testing, documentation, and design troubleshooting.
  • Strong understanding of EMI/EMC principles, radiated emissions, and mitigation techniques.
  • Proficiency with engineering simulation, data analysis, and automation tools such as LTspice, MATLAB, and LabVIEW.
  • Expertise with schematic capture and PCB layout tools; Altium Designer preferred.
  • Experience working with high-voltage electronics and power electronics.
  • Familiarity with PID controllers, electromechanical systems, electro-optics, sensors, and instrumentation.
  • Experience with IEC 60601-1, EMC standards, ISO 14971, and related medical device regulatory requirements.
  • Proven ability to collaborate effectively with Electrical, Mechanical, Optical, Software, Clinical, Manufacturing, Quality, and Regulatory teams.
  • Strong analytical, troubleshooting, and problem-solving skills, with the ability to independently drive complex technical issues to resolution.
  • Excellent written and verbal communication skills, with the ability to clearly communicate technical concepts and make sound engineering recommendations.

Preferred Qualifications:
  • Advanced degree in Electrical Engineering or a related field.
  • Experience developing high-power laser, RF, ultrasound, or other energy-based medical devices.
  • Experience with electrical safety and EMC testing and certification processes.