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Remote Cad Software Developer Jobs in Dallas, TX

Congruex provides digital infrastructure solutions through engineering and construction services ... Strong knowledge of fiber design tools, GIS systems, and CAD software. * Deep understanding of ...

Senior Software Developer

Coppell, TX · On-site +1

$50.25 - $66.50/hr

Analyze, design, develop, debug, and support high-quality, secure, and maintainable software ... One remote work day per week

Senior Virtual Designer

Irving, TX · On-site +1

$94K - $101K/yr

... (CAD/Revit) system standards, practices and techniques. We are looking for a self-starting ... Collaborate with the engineering department during model creation on design/build projects ...

Sr. Design Engineer

Irving, TX · On-site +1

$75K - $90K/yr

All positions at Astura report to the office daily and we do not have remote or hybrid ... Execute detailed mechanical component and assembly CAD models. * Generate detailed product drawings ...

iOS Engineer -Remote

Mckinney, TX · Remote

$61.63 - $88.47/hr

Own the entire software development process from timeline estimation to coding, testing and release ... For Toronto and Vancouver based applicants, the salary range is $166,675 - $191,397 CAD + equity ...

iOS Engineer -Remote

Arlington, TX · Remote

$61.63 - $88.47/hr

Own the entire software development process from timeline estimation to coding, testing and release ... For Toronto and Vancouver based applicants, the salary range is $166,675 - $191,397 CAD + equity ...

Showing results 21-40

Remote Cad Software Developer information

See Dallas, TX salary details

$16

$27

$50

How much do remote cad software developer jobs pay per hour?

As of Sep 6, 2026, the average hourly pay for remote cad software developer in Dallas, TX is $27.11, according to ZipRecruiter salary data. Most workers in this role earn between $17.84 and $41.63 per hour, depending on experience, location, and employer.

What is a remote CAD software developer?

A Remote CAD Software Developer is a professional who designs, develops, and maintains computer-aided design (CAD) software while working from a remote location. They collaborate with engineering teams, architects, and other stakeholders to create tools that facilitate the creation and modification of digital designs and blueprints. Their work often involves programming, debugging, and improving CAD applications to enhance functionality and user experience. Remote CAD Software Developers use communication and project management tools to stay connected with teams and ensure project goals are met efficiently.

What are the key skills and qualifications needed to thrive as a remote CAD software developer?

To thrive as a Remote CAD Software Developer, you need strong programming skills (such as C++, Python, or Java), expertise in computer-aided design (CAD) principles, and a relevant degree in computer science or engineering. Proficiency with industry-standard CAD platforms (like AutoCAD, SolidWorks, or CATIA), version control systems, and knowledge of APIs or plugin development is typically required. Excellent problem-solving abilities, self-motivation, and clear remote communication skills help individuals excel in collaborative and independent work environments. These competencies ensure high-quality software solutions, seamless teamwork, and effective remote project delivery in a specialized technical field.

What are some common challenges faced by remote CAD software developers, and how can they be addressed?

Remote CAD software developers often face challenges related to communication and collaboration, especially when working on complex design projects with distributed teams. To overcome these hurdles, it's important to leverage collaboration tools, maintain clear documentation, and schedule regular virtual meetings to align on project goals and feedback. Additionally, managing large CAD files remotely may require reliable cloud storage solutions and strong internet connectivity. Proactively addressing these challenges can help ensure smooth workflow and project success.

What is the difference between Remote Cad Software Developer vs Remote Mechanical Engineer?

AspectRemote Cad Software DeveloperRemote Mechanical Engineer
Required CredentialsBachelor's in Computer Science or related field, CAD software proficiencyBachelor's in Mechanical Engineering, CAD software proficiency
Work EnvironmentDesign and develop CAD software, collaborate with software teamsDesign mechanical components, analyze systems, collaborate with engineering teams
Employer & Industry UsageTech companies, CAD software firms, engineering software providersManufacturing, automotive, aerospace, product design firms

Remote Cad Software Developers focus on creating and improving CAD software tools, often working in tech or software companies. In contrast, Remote Mechanical Engineers apply CAD skills to design and analyze physical products across manufacturing and engineering industries. Both roles require CAD proficiency and collaborative work environments, but their core responsibilities differ—software development versus physical product design.

Infographic showing various Remote Cad Software Developer job openings in Dallas, TX as of August 2026, with employment types broken down into 60% Full Time, and 40% Contract. Highlights an 100% Remote job distribution, with an average salary of $56,386 per year, or $27.1 per hour.

Exciting Remote opportunity for Automotive Plastic Product Design Engineer

Noblesoft Technologies

Frisco, TX • Remote

$132K - $158K/yr

Contractor

Posted 24 days ago


Job description

Position: Automotive Plastic Product Design Engineer

Location: REMOTE

Mode: Contract 6+ Months

Job Summary: 

Customer is seeking a highly motivated Mechanical Design Engineer to join our Vehicle Packaging team in developing world-class designs for use in high volume automation equipment. You will serve as a highly technical contributor on the team responsible for design, optimization, prototyping and validation of new ways to deliver components safely and efficiently throughout our supply chain and manufacturing processes.

This is a very unique opportunity to engage with all facets of vehicle development from technology and design through component delivery and final manufacturing. The successful candidate must have the ability to work quickly and efficiently with a high level of precision, have strong interpersonal and communication skills, be detail oriented, and not afraid to re-define tradition.

What You’ll Do

•            Deliver technical designs of vehicle packaging and material handling that are optimized for weight, precision, manufacturing, durability and velocity

•            Perform CAD, FEA, and durability simulation of concept designs, recommend physical prototype candidates, and execute testing

•            Conduct technical design reviews and ensure compliance to standards (ASTM, ISTA, etc.)

•            Deliver finished designs, detailed drawings, and engineering specifications to be used for supplier bidding and compliance

•            Research and implement new techniques and technologies, including materials to continually improve vehicle packaging capability

•            Participate in supplier evaluations to ensure technical deliverables can be achieved

•            Partner with engineering teams in design, manufacturing, material flow, and packaging projects to develop design methodology, functional requirements, and execute concept through buy-off

What You’ll Bring

•            Degree in Mechanical Engineering, or equivalent in experience and evidence of exceptional ability

•            5+ years of experience designing mechanical components and systems from concept through production validation. Emphasis on Plastics design/manufacturing experience skillset.

•            Strong working capability with CAD and CAE simulation (CATIA, Pro-Engineer, ANSYS, etc.)

•            Able to deliver designs with datum structure, GD&T and accurate tolerance stack up analysis

•            Familiar with design for manufacturing (DFM) and different manufacturing processes including machining, welding, injection molding etc.

•            Working knowledge of a large variety of materials (aluminum, steel, composites, foam, etc.)

•            Experience with design for reliability and respective durability testing requirements as well as with automation equipment and fixtures required