Electronics And Robotics Additive Manufacturing
Protect The Electronics. Simplify The System.
Put Robots To Work Faster.
Purpose-built components for intelligent products and automated systems.
Smarter Integration
Faster Iteration
Production-Ready Hardware
Electronics and robotics teams move fast. Packaging changes, sensors evolve, cable routes shift, and automation hardware has to fit the machine, the product, and the job. Additive gives you a practical way to make tailored parts without waiting on tooling or settling for an off-the-shelf compromise.
We work with product developers, controls engineers, integrators, and manufacturers on enclosures, sensor housings, cable management, robot components, end-of-arm tooling (EOAT), and low-volume production hardware. We bring application review, design support, process selection, inspection, and repeat manufacturing together, so you can prototype faster, integrate more cleanly, and deploy solutions you can count on.
A Better Way To Package And Automate
From Early Prototype to Deployed System
The best additive solutions often start with a small, annoying integration problem: a sensor needs a precise line of sight, a circuit board needs a compact protective enclosure, a cable keeps snagging during robot motion, or a gripper is too heavy for the cycle time you want. We turn those constraints into hardware designed around your whole system.
We run selective laser sintering and polymer powder bed fusion (SLS/PBF), vat photopolymerization (SLA/VPP), and material extrusion (MEX), so we can match the process and material to your part’s geometry, loading, heat, electrical environment, accuracy, surface, lead time, and production quantity, instead of forcing every project onto one technology.
Where We Can Help
Enclosures and electronics packaging
Custom cases, board mounts, access panels, battery housings, display bezels, ventilation features, and serviceable assemblies.
Sensor housings and mounts
Camera, lidar, proximity, force, vision, temperature, and environmental sensor packaging with application-specific alignment.
Cable and pneumatic management
Routing clips, strain relief, drag-chain interfaces, protective guides, connector brackets, air passages, and organized robot dress packs.
Robot components
Lightweight brackets, covers, adapters, links, guards, sensor interfaces, cable supports, and custom hardware for collaborative and industrial robots.
End-of-arm tooling
Grippers, fingers, vacuum manifolds, soft-contact surfaces, quick-change features, part nests, and integrated sensing or pneumatic routing.
Automation support
Machine-vision aids, feeder components, poka-yoke devices, inspection fixtures, test stands, operator interfaces, and low-volume spares.
The Right Process For The Application
Multiple Polymer Technologies
Not sure which process fits? That’s our job.
SLS/PBF
makes tough engineering-polymer parts and complex shapes without support structures, a strong fit for enclosures, robot components, cable-management hardware, and production EOAT.
SLA/VPP
is great for fine features, smooth surfaces, transparent parts, lens and light-pipe prototypes, soft-contact tooling, and highly detailed sensor packaging.
MEX
is quick to iterate, offers reinforced and high-temperature materials, handles large parts, and works well for fixtures, housings, guards, and automation hardware.
We’ll weigh loads, heat, chemicals, electrical needs, wear, accuracy, geometry, quantity, and service expectations, then walk you through the tradeoffs.
Design Around The Entire System
Integration Without Unnecessary Compromise
With additive, housings, mounting features, cable routing, airflow, fastener locations, labels, ergonomic surfaces, and service access can all be designed together. Instead of stacking up brackets and off-the-shelf boxes, you can combine functions into cleaner, lighter parts that fit the space you actually have.
Think compact vision-system mounts with built-in lighting features, grippers with internal vacuum channels, fingers that conform to irregular products, lightweight robot tooling that frees up usable payload, and electronics enclosures tailored to your board, connectors, cooling, and installation.
Useful Integration Opportunities
- Board standoffs, connector openings, ventilation, and mounting features in one enclosure.
- Repeatable sensor alignment using keyed interfaces and protected optical paths.
- Integrated cable routing, strain relief, labels, and service loops.
Accelerate Development And Testing
Move from CAD to Hardware Faster
Robotics and electronics projects get better with every test. Bring us a sketch, CAD file, board model, sensor spec, robot interface, or physical sample, and we’ll turn it into working hardware fast, so you can check fit, reach, visibility, airflow, cable motion, gripping, and operator interaction early.
You can try multiple concepts without committing to hard tooling. Compare sensor angles, enclosure layouts, finger geometries, vacuum patterns, cable routes, and mounting strategies right on your actual system. When a design wins, it can move straight into bridge or repeat production from the same controlled digital file.
Applications That Make Automation Better
Proven Ways Additive Manufacturing Creates Value
Additive can replace machined robot grippers with lighter, consolidated designs; create soft or conformal fingers for food, consumer goods, and delicate parts; mount cameras and sensors where standard brackets can’t reach; and build custom interfaces that connect legacy equipment to modern automation.
It’s also a great fit for short-run electronics, test equipment, research platforms, mobile robots, drones, machine retrofits, and one-off automation cells. Approved parts can live as digital inventory, so you can make identical replacements or job-specific variants on demand instead of storing shelves of low-volume hardware.
Engineering And Manufacturing Support
More Than a Print Service
Good electronics and robotics hardware takes more than picking a material and hitting print. We look at the whole application: loads, robot acceleration, vibration, heat, chemicals, static control, cable motion, airflow, dimensions and tolerances, wear, installation environment, inspection, quantity, and expected service conditions.
Application and manufacturability reviews
Design for additive manufacturing
Process and material selection
Prototype production, inspection, testing, and repeat manufacturing
Quality Matched To Your Application
Quality and Qualification
A concept enclosure, a sensor bracket, a collaborative-robot gripper, and a part used near energized equipment or safety-related motion all come with very different requirements. We’ll work with you to sort out the documentation, material control, traceability, inspection, testing, and qualification your part actually needs.
Material data alone does not qualify a finished component for every electronics or robotics application. Final validation should consider foreseeable loading, temperature, flammability, electrical insulation or conductivity, electrostatic discharge, electromagnetic needs, vibration, impact, wear, cleaning, attachment, safeguarding, and the consequences of failure.
Critical applications require customer approval and an application-specific validation plan before production use.
