2

Design Engineer Remote Solidworks Jobs in Addison, TX

Senior Backend Engineer (Remote Opportunity)

Dallas, TX · On-site +1

  • Medical

  • Dental

  • Vision

  • Retirement

  • PTO

We are currently looking for a Senior Backend Engineer for a 100% remote position on a large ... This role will support the design, development, and modernization of enterprise backend services ...

Senior Backend Engineer (Remote Opportunity)

Dallas, TX · On-site +1

  • Medical

  • Dental

  • Vision

  • Retirement

  • PTO

We are currently looking for a Senior Backend Engineer for a 100% remote position on a large ... This role will support the design, development, and modernization of enterprise backend services ...

Senior MBIST Engineer Remote- Must be working as per PST time zone Rate- 70-75/hr on C2C Position Summary We are looking for a highly experienced Senior MBIST Contractor to join our SoC Design-for ...

Senior Data Engineer - INDIA

Prosper, TX · On-site +1

$97K - $131K/yr

Senior Data Engineer Remote Work: INDIA Location: Hyderabad / Noida, INDIA *Only Consultants local to INDIA are eligible. *No visa Sponsorship Primary Responsibilities: * Design, develop, and ...

... Lead ASIC DFT Engineer to architect, implement, verify, and debug advanced DFT solutions for ... Collaborate with RTL design, verification, physical design, STA, and silicon validation teams to ...

Showing results 41-60

Design Engineer Remote Solidworks information

See Addison, TX salary details

$39.2K

$85.3K

$153.4K

How much do design engineer remote solidworks jobs pay per year?

As of Aug 18, 2026, the average yearly pay for design engineer remote solidworks in Addison, TX is $85,334.00, according to ZipRecruiter salary data. Most workers in this role earn between $65,800.00 and $95,400.00 per year, depending on experience, location, and employer.

What does a remote design engineer using SolidWorks do?

A remote Design Engineer who uses SolidWorks is responsible for creating, modifying, and analyzing 3D models and engineering drawings for various products or components. They collaborate with teams virtually to design parts, assemblies, and systems, ensuring they meet technical specifications and industry standards. Using SolidWorks, they can simulate how a design will perform, identify potential issues, and help streamline the manufacturing process—all while working from a remote location. Their work is crucial in product development, prototyping, and improving existing designs.

What are the key skills and qualifications needed to thrive as a remote design engineer using SolidWorks?

To thrive as a Design Engineer working remotely with SolidWorks, you need a solid background in mechanical or product design, a relevant engineering degree, and proficiency in 3D CAD modeling. Expertise in SolidWorks software, familiarity with PLM/PDM systems, and, in some cases, certification such as CSWP (Certified SolidWorks Professional) are typically required. Strong problem-solving, time management, and clear communication skills set standout professionals apart, especially in remote roles. These abilities ensure precise, innovative designs, effective collaboration, and on-time project delivery in a virtual engineering environment.

How do remote design engineers using SolidWorks typically collaborate with team members on complex projects?

Remote Design Engineers using SolidWorks often collaborate through cloud-based platforms and specialized project management tools to share models and updates in real time. They frequently participate in virtual meetings, screen-sharing sessions, and use shared file repositories to review designs and provide feedback. Clear communication and version control are essential to ensure that all team members are aligned and that design iterations are tracked efficiently. This collaborative approach allows teams to work seamlessly across different locations while maintaining high productivity and design quality.

What is the difference between Design Engineer Remote Solidworks vs Mechanical Drafter?

AspectDesign Engineer Remote SolidworksMechanical Drafter
CredentialsBachelor's in Mechanical Engineering or related field, Solidworks certificationAssociate's or Bachelor's in Drafting/Design, proficiency in CAD software
Work EnvironmentRemote, collaborative with engineering teamsOffice or remote, focused on drafting and documentation
Industry UsageProduct design, engineering developmentManufacturing, construction, product documentation

Design Engineer Remote Solidworks professionals focus on designing and developing products using Solidworks, often requiring engineering credentials. Mechanical Drafters primarily create detailed drawings and documentation, with less emphasis on engineering analysis. Both roles may work remotely but serve different stages of the product development process.

What job categories do people searching Design Engineer Remote Solidworks jobs in Addison, TX look for?

The top searched job categories for Design Engineer Remote Solidworks jobs in Addison, TX are:

What cities near Addison, TX are hiring for Design Engineer Remote Solidworks jobs?

Cities near Addison, TX with the most Design Engineer Remote Solidworks job openings:

Senior Microsoft Software Engineer - Remote

Simple Solutions

Dallas, TX • On-site, Remote

$130K - $150K/yr

Other

Posted 19 days ago


Job description


Job Title: Senior Microsoft Software Engineer - Remote
About the Role
Build and evolve the client's software Bot, the core automation engine behind client's Windows endpoint management platform, while helping shape technical architecture and delivering secure, reliable software in C# and .NET. You will be working on the MicroSoft operating system code.
The person in this seat is a senior individual contributor who combines sound technical judgment with hands-on engineering. This engineer will participate in architectural decisions, translate product needs into maintainable solutions, and contribute directly to design, implementation, testing, troubleshooting, and release readiness.
What you will own:
• Designing, building, testing, and maintaining production software for AidenBot using C# and .NET, with a focus on reliability, security, performance, and maintainability.
• Technical design and architecture contributions, including evaluating tradeoffs, defining interfaces and patterns, documenting decisions, and helping the platform evolve without creating unnecessary complexity.
• End-to-end delivery of meaningful product capabilities, from refinement and estimation through implementation, code review, automated testing, deployment support, and post-release learning.
• Diagnosis and resolution of complex defects and production issues across application code, services, integrations, data flows, and Windows endpoint environments.
• Engineering quality through clear, testable code; thoughtful reviews; appropriate automated test coverage; observability; secure development practices; and disciplined source control.
• Technical collaboration and mentorship that raises the effectiveness of the engineering team, including sharing context, reviewing designs, pairing on difficult problems, and helping other engineers make sound implementation decisions.
• Practical use of AI-assisted engineering and agentic workflows to improve speed and leverage while protecting code quality, security, governance, and release reliability.
Required Qualifications:
Minimum of 8-10+ years of professional software development experience, including substantial hands-on experience building and supporting production applications in C# and .NET.
• Strong understanding of software architecture, object-oriented design, APIs, asynchronous processing, data access, integration patterns, and maintainable application design.
• Demonstrated ability to take complex features from ambiguous requirements through technical design, implementation, testing, release, and production support.
• Experience diagnosing difficult software problems using logs, metrics, traces, debuggers, profilers, and systematic root-cause analysis.
• A strong quality mindset, including experience with unit, integration, and automated testing; code review; source control; CI/CD; and reliable release practices.
• Working knowledge of relational databases and SQL, including data modeling, query performance, and application-level data access.
• Strong written and verbal communication skills, including the ability to explain technical decisions, risks, and tradeoffs to both engineering and non-engineering stakeholders.
• Experience working in Agile / Scrum teams and with Azure DevOps, GitHub, or similar planning, source control, build, and deployment systems.
• Comfort operating in a smaller, high-accountability growth company where senior engineers balance architecture, hands-on delivery, collaboration, and production ownership.
Preferred Background
• Experience with BIOS, partitioning, Windows Registry, drive partitioning, Windows PE, and other system-level architectures.
• Experience building enterprise SaaS, endpoint management, Windows-based systems, cybersecurity-related products, IT operations software, or automation platforms.
• Experience with Windows internals, PowerShell, Microsoft cloud technologies, endpoint administration, or software that executes work across distributed devices.
• Experience with cloud services, distributed systems, messaging, REST APIs, authentication and authorization, third-party integrations, or high-volume job orchestration.
• Experience using AI-assisted development tools, agentic workflows, or AI-enabled testing in a disciplined production engineering environment.
What Success Looks Like
• Developing the client's end point software platform including the Bot capabilities ship predictably and meet clear standards for correctness, security, performance, supportability, and rollback readiness.
• The AidenBot codebase becomes easier to understand, test, extend, troubleshoot, and operate as the product and customer base grow.
• Architectural decisions are pragmatic, well communicated, and aligned with both near-term delivery needs and the platform's long-term direction.
• Complex defects and production issues are resolved methodically, with root causes addressed and lessons translated into better code, tests, telemetry, and engineering practices.
• Engineering teammates benefit from thoughtful design collaboration, constructive code review, clear documentation, and practical technical mentorship.
• AI is used thoughtfully as a force multiplier for engineering speed and quality without weakening security, maintainability, or accountability.