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Remote Faro 3D Scanning Jobs in Georgia (NOW HIRING)

Develop fully parametric 3D CAD models of mechanical parts and assemblies using Autodesk Inventor ... Reverse engineering (Scan-to-CAD, Point Cloud-to-Model). * Manufacturing process knowledge ...

Create fully parametric 3D CAD models of mechanical parts and assemblies using SolidWorks based on ... Reverse engineering (Scan-to-CAD). * Manufacturability analysis. * Python, iLogic, and VBA ...

Remote Faro 3D Scanning information

What is the difference between Remote Faro 3D Scanning vs Remote Laser Scanning Technician?

AspectRemote Faro 3D ScanningRemote Laser Scanning Technician
CredentialsFaro certification, CAD knowledgeLaser scanning certification, CAD skills
Work EnvironmentOn-site with Faro equipment, remote data processingOn-site or remote, using laser scanners and software
Industry UsageConstruction, architecture, engineeringConstruction, surveying, infrastructure
Job FocusCapturing 3D data with Faro devicesCollecting and analyzing laser scan data

Both roles involve 3D data collection using laser technology, but Remote Faro 3D Scanning emphasizes using Faro-specific equipment and software, often with remote data processing. Remote Laser Scanning Technicians may work with various laser scanners and focus more on data analysis and interpretation. Understanding these differences helps job seekers identify the right role based on their skills and industry needs.

What cities in Georgia are hiring for Remote Faro 3D Scanning jobs?

Cities in Georgia with the most Remote Faro 3D Scanning job openings:

Autodesk Inventor Expert - Remote

YO AI Labs

Atlanta, GA • On-site, Remote

$30 - $120/hr

Full-time

Posted 5 days ago


Job description

Job Title: Autodesk Inventor Specialist

Job Type: Contractor
Location: Remote

Job Overview

We are seeking experienced Autodesk Inventor Specialists to contribute their expertise to an innovative project at the intersection of mechanical engineering and emerging AI technology. In this role, you will help improve next-generation AI systems by creating, reviewing, and refining mechanical CAD models and technical documentation. No prior AI experience is required—your engineering and CAD expertise are what matter most.

Key Responsibilities
  • Develop fully parametric 3D CAD models of mechanical parts and assemblies using Autodesk Inventor (or comparable CAD platforms) based on detailed design requirements.

  • Modify and update existing CAD models while maintaining parametric integrity and industry best practices.

  • Review and audit CAD models for dimensional accuracy, GD&T compliance, manufacturability, and design quality.

  • Create, interpret, and validate detailed engineering drawings in accordance with ASME Y14.5 (or equivalent) GD&T standards.

  • Apply Design for Manufacturability (DFM) principles across manufacturing processes including injection molding, sheet metal fabrication, CNC machining, and casting.

  • Support AI model development by documenting design decisions, engineering rationale, model revisions, and audit findings.

  • Collaborate remotely with cross-functional teams and provide clear, technical feedback to improve engineering datasets and AI-generated outputs.

Required Skills
  • Autodesk Inventor.

  • Parametric 3D CAD modeling.

  • GD&T (ASME Y14.5).

  • Design for Manufacturability (DFM).

  • Technical drawing interpretation.

  • Assembly-level mechanical design.

  • Reverse engineering (Scan-to-CAD, Point Cloud-to-Model).

  • Manufacturing process knowledge (Injection Molding, Sheet Metal, CNC Machining, Casting).

  • CAD model auditing.

  • CAD automation and scripting (Python, iLogic, VBA, NX Open).

  • Technical documentation.

  • Strong written and verbal communication.

  • Excellent problem-solving skills.

  • High attention to detail.

Preferred Qualifications
  • Minimum 4 years of hands-on experience in parametric CAD modeling for edit-level tasks; 10+ years preferred for complex design and model creation.

  • Expert-level proficiency in Autodesk Inventor, with experience in comparable CAD platforms such as FreeCAD, SolidWorks, or Fusion 360 considered highly valuable.

  • Practical experience applying GD&T (ASME Y14.5 or equivalent) in production environments.

  • Proven Design for Manufacturability (DFM) experience across multiple manufacturing processes, including injection molding, sheet metal, CNC machining, and casting.

  • Experience with reverse engineering workflows such as Scan-to-CAD and Point Cloud-to-Model reconstruction.

  • Ability to design and manage complex assemblies and mechanical systems.

  • Experience with CAD automation, scripting, or API development using Python, iLogic, VBA, NX Open, or similar technologies.