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Research And Development Mechanical Engineer Jobs in Raleigh, NC

The Mechanical Engineer IV understands the development and field implementation of documents through all project phases, sizes and levels of complexity. Within this role there are multiple positions ...

The Mechanical Engineer IV understands the development and field implementation of documents through all project phases, sizes and levels of complexity. Within this role there are multiple positions ...

The Mechanical Engineer IV understands the development and field implementation of documents through all project phases, sizes and levels of complexity. Within this role there are multiple positions ...

The Mechanical Engineer IV understands the development and field implementation of documents through all project phases, sizes and levels of complexity. Within this role there are multiple positions ...

The Mechanical Engineer IV understands the development and field implementation of documents through all project phases, sizes and levels of complexity. Within this role there are multiple positions ...

The Mechanical Engineer IV understands the development and field implementation of documents through all project phases, sizes and levels of complexity. Within this role there are multiple positions ...

The Mechanical Engineer IV understands the development and field implementation of documents through all project phases, sizes and levels of complexity. Within this role there are multiple positions ...

The Mechanical Engineer IV understands the development and field implementation of documents through all project phases, sizes and levels of complexity. Within this role there are multiple positions ...

Prepare project programming, schematic, design development, and construction document deliverables ... Mechanical Engineering Technology * Architectural Engineering (Mechanical engineering focus)

Showing results 21-40

Research And Development Mechanical Engineer information

See Raleigh, NC salary details

$70K

$109.1K

$137.1K

How much do research and development mechanical engineer jobs pay per year?

As of Aug 7, 2026, the average yearly pay for research and development mechanical engineer in Raleigh, NC is $109,067.00, according to ZipRecruiter salary data. Most workers in this role earn between $99,200.00 and $123,000.00 per year, depending on experience, location, and employer.

What is the difference between Research And Development Mechanical Engineer vs Mechanical Design Engineer?

AspectResearch And Development Mechanical EngineerMechanical Design Engineer
CredentialsBachelor's or Master's in Mechanical Engineering, relevant certificationsBachelor's or Master's in Mechanical Engineering, relevant certifications
Work EnvironmentLabs, R&D departments, innovation-focused settingsDesign offices, manufacturing facilities, product development teams
Industry UsageResearch institutions, product innovation, prototype developmentProduct design, manufacturing, engineering firms

Research And Development Mechanical Engineers focus on creating new products and improving existing ones through experimentation and innovation. Mechanical Design Engineers primarily work on designing and developing mechanical components and systems for manufacturing. While both roles require similar educational backgrounds and certifications, their work environments and objectives differ significantly, with R&D engineers emphasizing innovation and prototyping, and design engineers focusing on detailed product development.

What does a research and development mechanical engineer do?

A Research and Development (R&D) Mechanical Engineer is responsible for designing, developing, and testing new mechanical devices or systems. They use engineering principles to create prototypes, improve existing products, and solve technical challenges. Their work often involves collaborating with cross-functional teams, conducting experiments, and analyzing data to enhance product performance and efficiency. R&D Mechanical Engineers play a key role in driving innovation within industries such as manufacturing, automotive, aerospace, and consumer goods.

What are some common challenges faced by research and development mechanical engineers during the product development cycle?

Research and Development Mechanical Engineers often encounter challenges such as balancing innovative designs with manufacturability and cost constraints, meeting tight project deadlines, and ensuring compliance with industry standards. They may also need to iterate prototypes quickly based on feedback from cross-functional teams, including design, testing, and manufacturing. Collaboration and effective communication are essential for addressing unexpected technical issues and integrating new technologies into existing systems.

What are the key skills and qualifications needed to thrive as a research and development mechanical engineer, and why are they important?

To thrive as a Research and Development Mechanical Engineer, you need a strong background in mechanical engineering principles, problem-solving abilities, and typically a bachelor’s or master’s degree in mechanical engineering or a related field. Familiarity with CAD software (such as SolidWorks or AutoCAD), simulation tools (like ANSYS), and knowledge of prototyping and testing methodologies are essential. Creativity, effective communication, and teamwork are crucial soft skills for innovating and collaborating on complex projects. These skills and qualities enable engineers to develop innovative solutions, improve products, and maintain a competitive edge in technology-driven industries.
What job categories do people searching Research And Development Mechanical Engineer jobs in Raleigh, NC look for? The top searched job categories for Research And Development Mechanical Engineer jobs in Raleigh, NC are:
What cities near Raleigh, NC are hiring for Research And Development Mechanical Engineer jobs? Cities near Raleigh, NC with the most Research And Development Mechanical Engineer job openings:
Infographic showing various Research And Development Mechanical Engineer job openings in Raleigh, NC as of August 2026, with employment types broken down into 91% Full Time, and 9% Contract. Highlights an 100% In-person job distribution, with an average salary of $109,067 per year, or $52.4 per hour.

Senior Principal Mechanical Engineer

Targan Inc

Raleigh, NC • On-site

Full-time

Posted 2 days ago

New


Job description

Position Summary

TARGAN is seeking a highly accomplished Sr. Principal Mechanical Engineer to serve as a senior technical leader within our R&D and Engineering organization. This individual will play a critical role in the invention, architecture, design, optimization, and commercialization of advanced automated electromechanical systems used in animal health and bio-industrial environments.

This role requires a highly creative, hands-on engineering expert who can lead complex product development initiatives from concept through commercialization while mentoring engineers and strengthening engineering standards. The ideal candidate combines deep mechanical engineering expertise with strong leadership, cross-functional collaboration, strategic direction, technical mentorship, and a passion for solving complex problems through automation.

Key Job Responsibilities

Technical Leadership & Product Development

  • Lead the design, development, and optimization of complex automated electromechanical systems, machinery, and equipment from concept through production release.
  • Architect robust, scalable, and serviceable systems involving mechanical, pneumatic, fluidic, motion control, sensor, and automation technologies.
  • Translate business needs, customer workflows, and product concepts into practical engineering solutions.
  • Lead technical decision-making for major engineering programs, balancing innovation, speed, cost, manufacturability, and reliability.
  • Identify technical risks early and develop mitigation plans to maintain program timelines and performance goals.

Mechanical Design & Engineering Execution

  • Develop detailed 3D CAD models, assemblies, and manufacturing drawings using SolidWorks or similar CAD platforms.
  • Design components including machine parts, sheet metal, welded structures, molded plastics, conveyors, actuators, precision mechanisms, and automated assemblies.
  • Perform engineering calculations for sizing motors, pneumatics, actuators, structures, bearings, drives, and mechanical systems.
  • Apply engineering tools such as FEA, tolerance analysis, FMEA, root cause analysis, and Design for Six Sigma principles.
  • Create complete engineering documentation packages integrated with ERP, PLM, and release systems.

Automation & Industrial Machinery

  • Design and improve automated capital equipment and production systems involving robotics, motion control, sensors, cameras, pneumatics, and control interfaces.
  • Collaborate closely with controls, electrical, vision, software, bioscience, manufacturing, and production teams.
  • Improve equipment performance, uptime, safety, throughput, and maintainability.
  • Support factory automation, workflow optimization, and field deployment initiatives.

Commercialization & Manufacturing Support

  • Partner with Manufacturing Engineering, Supply Chain, and external manufacturers to execute Design for Manufacturability (DFM), Design for Testability (DFT), and cost optimization initiatives.
  • Support prototype builds, pilot systems, validation testing, and new product introduction.
  • Resolve production and field issues through structured engineering problem-solving.
  • Drive value engineering and continuous product cost reduction efforts.

Engineering Excellence & Governance

  • Lead formal and informal design reviews, ensuring high technical standards across programs.
  • Establish and improve engineering processes, standards, templates, and best practices.
  • Ensure compliance with applicable safety and machine regulations including CE, OSHA, NEC, NFPA, and related standards.
  • Support engineering change management and configuration control processes.

Leadership & Mentorship

  • Mentor junior and mid-level engineers in design methods, problem solving, professionalism, and technical growth.
  • Provide guidance across engineering disciplines as a trusted senior technical advisor.
  • May lead a team of mechanical engineers, including resource planning, workload allocation, coaching, and performance management.
  • Foster a collaborative, high-performance engineering culture focused on accountability, creativity, and execution.

Key Competencies & Skills

  • Deep expertise in mechanical design of industrial automation, machinery, or capital equipment.
  • Strong hands-on experience with CAD systems (SolidWorks preferred).
  • Extensive knowledge of motors, actuators, conveyors, pneumatics, bearings, mechanisms, and fabrication methods.
  • Proven ability to solve complex technical problems and execute under tight timelines.
  • Strong knowledge of manufacturing methods including machining, welding, sheet metal, molding, casting, additive manufacturing, and assembly processes.
  • Broad multidisciplinary understanding of controls, electrical systems, robotics, machine vision, and fluid systems.
  • Strong communication, presentation, and leadership skills.
  • Highly organized with strong project prioritization and multitasking ability.
  • Creative thinker who can challenge assumptions and develop innovative solutions.
  • Results-oriented leader with strong ownership mindset.

Education and Experience Requirements

  • Bachelor’s degree in Mechanical Engineering required; Master’s degree preferred.
  • 20+ years of progressive engineering experience in mechanical design, automation equipment, industrial machinery, or related fields.
  • Minimum 8+ years leading complex engineering programs or senior-level technical teams.
  • Proven experience taking products from concept through commercialization.
  • Experience in agricultural equipment, biotech equipment, medical devices, packaging automation, or industrial systems strongly preferred.
  • Experience in regulated, high-reliability, or harsh operating environments is a plus.


Working Conditions:

Work is performed inside a flex space building consisting of offices, open desk space, laboratory, machine shop, and a manufacturing floor. Level of noise is usually quiet in the office environment and temperature controlled. Noise levels are elevated in the warehouse space where temperatures can vary depending on the outside elements and weather. Travel may be required, including up to 2-8 trips per year to visit suppliers, attend conferences, meetings (customer, investor, and business) and customer sites (hatcheries).


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About TARGAN

Sourced by ZipRecruiter

Industry

Biotechnology research and development

Company size

11 - 50 Employees

Headquarters location

Morrisville, NC, US

Year founded

2015