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On-demand 3D printing for robotics and electronics components, including enclosures, fixtures, and automation parts

On-Demand 3D Printing for Robotics & Electronics

Precision-manufactured components for robotics hardware, electronics enclosures, and automation systems — supporting rapid iteration, functional validation, and production-ready performance.

Why Manufacturing Teams Use Tempus 3D

Industrial manufacturing and MRO teams need durable parts, fast turnaround, and predictable quality. Tempus 3D delivers production-ready components without long lead times or tooling delays.

HP MJF Nylon PA12S  - PNG - white 3_edit

Production-Ready Technologies & Materials

  • Engineering-grade polymers designed for strength, wear resistance, and repeat use

  • Suitable for functional robot components, electronics housings, fixtures, and tooling

  • Options including impact-resistant, flexible, and ESD-safe materials

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Consistent, On-Spec Production

  • Controlled in-house manufaturing ensures repeatability

  • Proven quality from prototype through production

  • Parts produced to specification with reliable build-to-build consistency

CAD-based 3D printing workflow for robotics and electronics prototyping and low-volume production

Fast Quoting & Flexible Ordering

  • Instant CAD-based pricing with automated printability checks

  • Flexible ordering from one-off parts to repeat production runs

  • Volume-based pricing and partner programs for ongoing production

In-house additive manufacturing for robotics and electronics with access to specialty materials through partners

In-House Manufacturing & Partner Network

  • Canadian-based in-house production as the default

  • Partner network used selectively for specialty materials or processes

  • Single point of accountability from prototype to production

Manufacturing & Maintenance Applications

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Replacement & Maintenance Parts

  • Emergency replacement components

  • Obsolete or hard-to-source parts

  • Functional equivalents for worn components

3D printed fixtures and jigs for robotic assembly, alignment, and production support

Tooling, Fixtures & Jigs

  • Assembly and alignment fixtures

  • Inspection and positioning tools

  • Custom jigs for repeatable workflows

3D printed electronics enclosures and ESD-safe housings for sensitive electronic components

Low-Volume Production Parts

  • End-use production parts

  • Short runs and variant SKUs

  • Bridge manufacturing before tooling

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Protective Housings & Industrial Components

  • Machine guards and covers

  • Enclosures and mounts

  • Impact- and wear-resistant components

3D Printing Technologies

Technologies for precision, durability, and application-specific requirements for robotics and electronic systems.

Multi Jet Fusion 3D printing for durable robotics and electronics production parts

Multi Jet Fusion (MJF)

Best for: Durable end-use parts, repeatable batch manufacturing, and tight tolerances. Allows cost-efficient scaling for low-to-mid volume production.

Build Volume:

380 × 284 × 380 mm

Layer Height:

80–100 microns

Tolerances:

±0.3 mm / ±0.3%

High-detail SLA 3D printing for precision electronics components and tooling

Stereolithography (SLA)

Best for: High-detail components, precision fit, tooling masters, and surface-critical applications.

Build Volume:

335 × 200 × 300 mm

Layer Height:

25–100 microns

Tolerances:

±0.2 mm / ±0.2%

Selective Laser Sintering for complex robotic components and mechanically durable assemblies

Selective Laser Sintering (SLS)

Best for: Complex geometries, mechanically durable parts, and assemblies requiring strength and design freedom.

Build Volume:

180 × 130 × 310 mm

Layer Height:

80–100 microns

Tolerances:

±0.3 mm / ±0.3%

FDM 3D printing for fixtures, jigs, and functional prototypes in robotics applications

Fused Deposition Modeling

Best for: Fixtures, jigs, and functional prototypes where speed and affordability matters.

Build Volume:

256 × 256 × 256 mm

Layer Height:

100–300 microns

Tolerances:

±0.5 mm

HP Multi Jet Fusion Logo - Multi Jet Fusion Production Professional
Proud to be a Certified HP MJF Production Professional

Materials

Engineering-grade polymers selected for durability, precision, and real-world functional performance in robotic and electronic systems.

3D printed structural robotics component for load-bearing and mechanically stressed applications

Functional Structural Components

Strong, lightweight polymers for load-bearing and mechanically stressed parts.

Designed for rigidity, durability, and repeatable performance in electronics and automation systems.

Common uses: electronic enclosures, fixtures, mounts, alignment parts

Flexible and impact-resistant 3D printed component for vibration control and protection

Flexible & Impact-Resistant Components

Elastomeric and tough materials for movement, protection, and vibration control.

Ideal for parts requiring controlled flexibility, shock absorption, or repeated motion.

Common uses: gaskets, cable guides, protective covers, damping elements

Precision 3D printed electronics enclosure with tight tolerances and clean surface finish

Precision & Enclosure Components

High-detail materials for accurate fit, alignment, and component protection.

Supports tight tolerances and clean surface quality for precision electronics and automation parts.

Common uses: electronic enclosures, fixtures, mounts, alignment parts

ESD-safe 3D printed electronics parts for sensitive components and electrical systems

Application-Specific & ESD-Safe Parts

Materials selected to meet functional, environmental, and electrical requirements.

Options include ESD-safe, high-temperature, chemical-resistant, and other application-specific materials 

Common uses: ESD housings, sensor mounts, tooling, specialty components

VIEW ALL MATERIALS

Compare properties, applications, and certifications across our entire material portfolio.

Key Benefits

Supporting production, operations, and equipment performance.

Custom Fit & Precision
  • Tight tolerances

  • Repeatable accuracy

  • Patient-specific components

Speed & Iteration
  • Rapid design validation

  • Faster development cycles

  • Reduced time to clinical use

Reliable Production Support
  • Low-to-mid volume production

  • Controlled in-house processes

  • Consistent quality batch to batch

Ready to Keep Production Moving?

Upload your CAD files for an instant quote or speak with our team about your specific requirements.

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