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Design Development Jobs in Maryland (NOW HIRING)

Conduct research, design, development, and testing of information processing hardware. * Analyze hardware configuration and processing solutions. * Test hardware conformance to specifications.

Hardware Design Engineer

College Park, MD ยท On-site

$160K - $200K/yr

Conduct research, design, development, and testing of information processing hardware. * Analyze hardware configuration and processing solutions. * Test hardware conformance to specifications.

Hardware Design Engineer

College Park, MD ยท On-site

$160K - $200K/yr

Conduct research, design, development, and testing of information processing hardware. * Analyze hardware configuration and processing solutions. * Test hardware conformance to specifications.

Direct the design, development, testing, and continuous improvement of advanced integrated circuits, hardware components, embedded firmware, and signal processing technologies. * Lead complex ...

Development Engineer

Westminster, MD ยท On-site

$85K - $95K/yr

This Development Engineer will lead the design, development, testing, and qualification of advanced battery products from concept through production while collaborating with cross-functional ...

Mechanical Design Engineer

Frederick, MD

$75K - $102K/yr

Design/Development and Product Management: * Research and analyze data such as customer design proposal, specifications, and manuals to determine feasibility of design or application. * Mechanical ...

Mechanical Design Engineer

Frederick, MD ยท On-site

$75K - $102K/yr

Design/Development and Product Management: * Research and analyze data such as customer design proposal, specifications, and manuals to determine feasibility of design or application. * Mechanical ...

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Design Development information

What is design development?

Design development is a phase in the architectural and design process where initial concepts are refined into detailed plans and specifications. During this stage, designers work out the specifics of materials, dimensions, systems, and aesthetics, often collaborating with engineers and consultants. The goal is to translate ideas from the schematic design phase into precise documentation that can be used for construction. This stage helps ensure that the project is feasible, meets client needs, and complies with regulations.

What are the key skills and qualifications needed to thrive in design development?

To thrive in Design Development, you need a solid background in design principles, project management, and a relevant degree such as architecture, industrial design, or engineering. Familiarity with CAD software, 3D modeling tools, and design documentation systems is typically expected. Strong collaboration, problem-solving, and communication skills help you effectively translate concepts into practical solutions and work within multidisciplinary teams. These skills are crucial for delivering innovative, functional designs that meet client needs and project requirements.

What are some common challenges faced in a design development role and how can they be addressed?

Professionals in Design Development often encounter challenges such as balancing creative vision with practical constraints like budget, timeline, and client requirements. Navigating feedback from multiple stakeholders and ensuring that design intent is maintained throughout the development process can also be demanding. These challenges can be addressed by fostering strong communication within cross-functional teams, maintaining detailed documentation, and using iterative design reviews to ensure alignment. By staying adaptable and solution-oriented, design development specialists can help bridge the gap between concept and execution.

What is the difference between Design Development vs Design Engineer?

AspectDesign DevelopmentDesign Engineer
CredentialsBachelor's degree in design, architecture, or related fieldBachelor's or master's in engineering, design, or related discipline
Work EnvironmentCollaborative teams, design studios, project sitesEngineering offices, manufacturing plants, project sites
Industry UsageArchitecture, product design, industrial designMechanical, civil, electrical engineering projects

Design Development focuses on refining and evolving design concepts, often involving creative and aesthetic decisions. Design Engineers apply engineering principles to develop functional, safe, and manufacturable products or systems. While both roles require technical knowledge, Design Development emphasizes creative design progression, whereas Design Engineers focus on technical feasibility and engineering solutions.

What are the most commonly searched types of Design Development jobs in Maryland?

The most popular types of Design Development jobs in Maryland are:

What are popular job titles related to Design Development jobs in Maryland?

For Design Development jobs in Maryland, the most frequently searched job titles are:

What cities in Maryland are hiring for Design Development jobs?

Cities in Maryland with the most Design Development job openings:

Infographic showing various Design Development job openings in Maryland as of August 2026, with employment types broken down into 1% As Needed, 82% Full Time, 15% Part Time, and 2% Contract. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution.

Mechanical Design Engineer - In-Vessel Shielding

CSG

Rockville, MD โ€ข On-site

$77K - $105K/yr

Contractor

Posted 14 days ago


Job description

Mechanical Design Engineer - Reactor Internals (In-Vessel Shielding) Location: Rockville, MD Employment Type: Full-Time Position Overview We are seeking a Mechanical Design Engineer to support the design, analysis, and development of reactor vessel internals, with a particular focus on in-vessel shielding components for advanced nuclear reactor systems. This role will support the full product lifecycle, including concept development, detailed design, analysis, manufacturing support, testing, qualification, and commissioning. The successful candidate will work closely with multidisciplinary engineering teams to develop solutions that meet performance, safety, regulatory, and manufacturability requirements. The ideal candidate will have a strong foundation in mechanical engineering design, component development, and engineering analysis, along with an interest in complex, safety-critical systems. Key Responsibilities: Design & Development: Develop mechanical concepts and component designs for reactor vessel internals and related nuclear systems. Support the design and development of structures, systems, and components (SSCs) used in advanced nuclear facilities. Produce and maintain 3D CAD models, engineering drawings, and associated design documentation. Perform design studies and trade-off evaluations to optimize performance, safety, reliability, and manufacturability. Contribute to the design and integration of complex assemblies within the reactor system. Engineering Analysis: Perform engineering calculations and analyses to support design decisions, including structural, thermal, hydraulic, and mechanical assessments. Evaluate component performance against design requirements, technical specifications, and applicable codes and standards. Support sizing, qualification, and verification of components through analytical methods and engineering judgement. Assist in the development and validation of engineering methodologies and analytical tools. Requirements & Integration: Work with systems engineers and key stakeholders to define and maintain design requirements, interfaces, and design bases. Coordinate design activities with internal engineering teams, suppliers, manufacturing partners, and other stakeholders. Support cross-functional integration across structural, thermal-hydraulic, reactor, and systems engineering disciplines. Manufacturing & Testing: Support manufacturing readiness reviews and assess designs for manufacturability, assembly, and installation. Provide engineering support during fabrication, testing, inspection, and commissioning activities. Participate in component qualification and verification activities. Documentation & Quality: Prepare technical reports, calculations, design basis documents, specifications, and engineering packages. Ensure all work is performed in accordance with applicable quality assurance and configuration management processes. Participate in design reviews, peer reviews, and independent technical assessments. Required Qualifications: Bachelor's degree in Mechanical Engineering or a related engineering discipline from an accredited institution. Approximately 5+ years of engineering experience in design, development, or analysis roles. Strong understanding of mechanical engineering fundamentals and engineering calculations. Experience developing mechanical systems, assemblies, or components. Experience using CAD and Product Lifecycle Management (PLM) software such as: Siemens NX SolidWorks Creo/Pro-Engineer Teamcenter Windchill Hands-on experience supporting hardware development, manufacturing, testing, or production activities. Ability to create clear technical documentation, calculations, and engineering reports. Equivalent Experience: A Master's degree may substitute for up to two years of relevant experience. A PhD may substitute for up to three years of relevant experience. Preferred Qualifications: Experience within the commercial nuclear, naval nuclear, energy, aerospace, or other highly regulated industries. Experience designing reactor internals, shielding systems, in-core structures, or other complex mechanical assemblies. Familiarity with high-temperature materials and operating environments. Experience designing components subjected to combined thermal, structural, seismic, and irradiation loading. Knowledge of materials commonly used in nuclear applications, including: Stainless steels Graphite Neutron shielding materials High-temperature alloys Familiarity with ASME codes, nuclear quality assurance requirements, and regulatory design frameworks. Experience supporting component qualification, verification, manufacturing, and testing programmes. Ability to collaborate effectively within multidisciplinary engineering teams.