3DRM Tech helps robotics companies, automation integrators, cobot users, machine builders and R&D teams design and manufacture custom components —from end-of-arm tooling and grippers to sensor mounts, housings, jigs, fixtures and low-volume robot parts.
Robotics and automation projects change quickly. Payload limits matter, sensor positions move, gripper geometry evolves and production tooling often needs to fit a specific machine or workpiece. Custom manufacturing allows engineering teams to move from a design change to a physical test without waiting for mass-production tooling.
3DRM Tech can combine FDM, SLS and SLA 3D printing, CAD design, 3D scanning and reverse engineering, CNC machining, carbon fiber composites, rapid prototyping and low-volume production.
Robotics components are often low-volume, highly customized and designed around existing hardware. That makes process selection, material choice and manufacturability especially important.
Tool plates, adapters, vacuum-cup mounts and custom interfaces designed around your robot, cobot and application.
Robot fingers, contact surfaces, nests and geometry-specific tooling for handling unique products and workpieces.
Brackets for cameras, sensors, vision systems and inspection hardware requiring application-specific positioning.
Assembly fixtures, locating tools, production nests and aids for automated and semi-automated production cells.
Custom enclosures and guards for electronics, sensors, connectors and automation components.
Guides, clips, brackets and strain-relief components designed around robot movement and maintenance access.
Custom hardware connecting robots, tooling, sensors, frames and existing machinery.
Carbon fiber and composite components when stiffness-to-weight and reduced moving mass matter.
Recreate difficult-to-source automation components using scanning, measurement, CAD and an appropriate manufacturing process.
Yes, when the material, geometry, environment and load requirements are suitable. These are some of the questions robotics buyers and engineering teams commonly ask before requesting a quote.
FDM and SLS can be practical for suitable EOAT components, gripper features, adapters and mounts, particularly for low-volume or frequently changing tooling.
Read: 3D Printing for Robotics →FDM is practical for many functional components, SLS works well for complex durable nylon parts, while SLA is useful when fine detail or smooth surfaces are more important.
Explore FDM, SLS & SLA →Projects can begin from robot CAD, workpiece geometry, dimensions, sketches, measurements or physical components. CAD design can fill in the missing manufacturing geometry.
Explore CAD Design →Existing components can often be measured or scanned, reconstructed in CAD and reproduced using 3D printing, CNC machining or another suitable process.
Read About Reverse Engineering →You do not need a perfect manufacturing file to start. Send the robot model, CAD, workpiece, existing part, sketch or simply describe what the tooling needs to do.
Robot model, mounting interface, workpiece, quantity, loads and functional requirements.
Review geometry, fit, weight, interfaces, materials and manufacturing requirements.
Test reach, fit, gripper geometry, sensor position and function on the actual automation system.
Update the design and move validated components into repeat or low-volume production.
The more application information available, the easier it is to evaluate 3D printing, CNC machining, composites and other options. You can still contact us with incomplete information.
For printed parts, see our CAD file preparation guide .
How additive manufacturing fits grippers, mounts, fixtures and functional robotics parts.
Read Article → Process SelectionCompare geometry, materials, tolerance and quantity before choosing a manufacturing process.
Compare Processes → MaterialsUnderstand material choices for prototypes, tooling and functional components.
Read Materials Guide → CAD · DfAMClearances, wall thickness, geometry and other design considerations for functional parts.
Read CAD Guide → Reverse EngineeringTurn an existing physical component into manufacturable CAD geometry.
Read Guide → Manufacturing WorkflowHow a design moves through preparation, manufacturing and physical testing.
Read Workflow →Yes. 3DRM Tech supports robotics and automation projects with 3D printing, CAD, scanning, CNC machining, composites, rapid prototyping and low-volume production.
Applications can include gripper fingers, EOAT components, sensor mounts, camera brackets, cable guides, covers, fixtures, adapters and suitable functional parts.
Yes. Projects can start from robot CAD, workpiece geometry, dimensions, sketches, measurements or existing physical components.
It depends on material, geometry, loads and quantity. FDM is practical for many engineering components while SLS can suit durable nylon parts and more complex geometry.
Carbon fiber can provide high stiffness-to-weight for suitable components where reducing moving mass is important.
Often, yes. A physical component can be measured or scanned, reconstructed in CAD and evaluated for reproduction.
Yes. A project can begin with one prototype and later move into repeat or low-volume production after the design is validated.
Send the robot model, CAD file, physical component, sketch or description through the contact page together with quantity and critical requirements where available.
Send us the CAD, physical part, robot model or simply describe what the tooling needs to do. We can help determine the right manufacturing route.
Request a Robotics Manufacturing Quote →