
The SolidWorks Designer will be responsible for designing and developing precision machine components and assemblies for advanced manufacturing equipment, including CO2 and Fiber Laser Machines, CNC Routers, and Digital Printing systems. The role focuses on creating accurate 3D models and detailed drawings that support innovative, high-quality machine solutions for diverse industrial applications.
- Develop detailed 3D CAD models, assemblies, and 2D manufacturing drawings using SolidWorks for CO2 Laser Machines, Fiber Laser Machines, CNC Routers, and Digital Printing equipment.
- Design machine components such as frames, gantry systems, motion assemblies, laser cutting heads, enclosures, fixtures, CNC router beds, and integrated printing modules.
- Create accurate production-ready drawings with GD&T, dimensions, tolerances, and surface finish requirements.
- Design sheet metal parts, weldments, and structural frames, including flat patterns, bend allowances, and fabrication optimizations for laser cutting and CNC processes.
- Prepare and maintain Bills of Materials (BOMs), part lists, and technical documentation aligned with production and procurement needs.
- Export and optimize manufacturing files (DXF, DWG, etc.) for CNC laser cutting, routing, waterjet, or plasma operations with a focus on material efficiency.
- Integrate motion system components such as linear guides, ball screws, rack-and-pinion systems, and servo or stepper motor mounts.
- Design optomechanical housings and mounts for laser sources, lenses, mirrors, and cutting heads to ensure alignment, rigidity, and precision.
- Perform design analysis and simulations using SolidWorks Simulation, including stress, vibration, motion, and thermal studies.
- Apply Design for Manufacturability (DFM) and Design for Assembly (DFA) principles to reduce cost, improve reliability, and simplify assembly.
- Collaborate closely with R&D, production, electrical, service, and quality teams to ensure design feasibility and smooth transition from design to manufacturing.
- Support prototype development, testing, troubleshooting, and design validation by incorporating feedback from shop floor, field performance, and customers.
- Ensure designs comply with industry standards, laser safety norms, quality requirements, and company guidelines.
- Maintain CAD libraries, standard components, templates, and revision control using proper documentation and version management practices.
- Assist in creating exploded views, assembly layouts, and visuals for technical manuals, installation guides, and marketing materials.
- Continuously improve designs by staying updated with SolidWorks tools, manufacturing technologies, and advancements in laser and CNC machinery.
- Incorporate customer-specific requirements and customization requests while maintaining performance, precision, and customer satisfaction.
- Advanced proficiency in SolidWorks for 3D part modeling, large assemblies, configurations, sheet metal, weldments, and 2D drafting.
- Strong command of mechanical design principles, precision engineering, and GD&T for tight-tolerance manufacturing.
- Expertise in sheet metal design, including flat patterns, bend allowances, and optimization for CO2 and Fiber laser cutting and press brake forming.
- Proficiency in weldments and structural design for machine frames, gantries, chassis, and heavy-duty CNC machinery.
- Ability to create detailed production drawings, exploded views, and accurate Bills of Materials (BOMs).
- Experience preparing production-ready files such as DXF, DWG, STEP, IGES, and flat patterns for CNC and laser-based manufacturing.
- Sound understanding of CNC machining, laser cutting, laser engraving, laser marking, and fabrication processes.
- Knowledge of motion systems including linear guides, ball screws, rack-and-pinion mechanisms, and servo or stepper motor integration.
- Familiarity with SolidWorks Simulation for basic stress, vibration, motion, thermal analysis, and interference checks.
- Strong application of Design for Manufacturability (DFM) and Design for Assembly (DFA) to reduce cost and improve efficiency.
- Understanding of materials, tolerances, alignment, and kinematics for high-speed and high-precision machinery.
- Awareness of industry standards, quality systems, and machine and laser safety requirements.
- Ability to troubleshoot design issues and support prototyping, testing, and production challenges.
- Experience with CAD libraries, PDM or version control systems, and structured documentation practices.
- Effective collaboration and communication skills for working with R&D, production, procurement, service teams, and customers.
- Strong attention to detail with a focus on accuracy, quality, and consistency in design outputs.
- Time management and multitasking skills to handle multiple projects in a fast-paced manufacturing environment.
- Continuous learning mindset to stay updated with new SolidWorks features, manufacturing technologies, and industry trends.
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