PRINTING SERVICE

Accelerate R&D with circuit printing for novel electronics

Voltera's flexible circuit printing service is the ideal solution to fast-track your research and development and protect your intellectual property.

How it works

1

Submit

Fill out the form below and let us know all your project details.

2

Meet

Within two business days we will book a call to scope the project and provide a quote.

3

Print

We will print and inspect your project to ensure the best quality.

4

Ship

We'll ship the project to you and email the tracking details.

*Assembly not included

What we can print

Substrate

  • TPU
  • PET
  • Polyimide
  • Custom material*
  • Other*

*Please enquire

Ink

  • Flexible silver
  • Stretchable silver
  • Silver/silver chloride
  • Stretchable carbon
  • Other*

*Please enquire

Resolution

150 µm minimum trace width (dependent on materials)

Print size

A4 maximum print size

File format

  • Gerber
  • SVG

Key benefits

Money in circle

Cost effective

With no tooling or screens, we lower costs and print your electronic designs faster. You can stay on budget and allocate your funds where they matter most.

Material drop

Material selection

We have sourced and stocked a vast array of different materials for your print. You can also ship us your own custom materials.

Iterate

No MOQ

We don't have minimum order quantities, making it easier for you to push the boundaries of materials research and electronics. Need one print? It’s no problem.

Money in hand

Path to NOVA

Trial your print with our flexible circuit printing service and receive a credit of up to $2,300 towards a future purchase of NOVA, our direct-ink write dispensing system.

FAST FACTS

Frequently asked questions

  • Yes, you can. Our printing service supports custom materials, allowing you to send in your own flexible substrate, ink, or both. This is especially useful if you're working with specialty materials like polyethylene naphthalate (PEN) or researching new base material combinations. While using your own materials may influence characteristics like conductivity, stretchability, and thermal management, actual performance will depend on material compatibility and printing quality. Our team will help assess feasibility and offer guidance to optimize results.

  • We accept Gerber and SVG files, which are standard in PCB and flex circuit design. Please note that SVG support is currently in beta — contact our team if you have questions about compatibility. You'll want to ensure trace widths are within the service's resolution limit (150 µm minimum) and that your circuit paths are well-defined.

  • Trace accuracy depends on ink rheology, substrate properties, and environmental factors, but our system supports conductive layers with minimum trace widths around 150 µm. This suits many flexible printed circuit boards used in R&D, prototyping, and low-volume production. It provides enough resolution for single-conductor layer designs and single-sided circuits.

  • Yes. In fact, we have experience printing on a wide range of flexible films and non-standard substrates — including paper, glass, and even fabric. These types of surfaces are often used in prototyping medical devices, flexible displays, or other electronic devices where maximum flexibility and space savings are essential. Each project is reviewed individually to determine compatibility.

  • This service is ideal for early-stage flexible circuit prototyping, but we do not currently offer assembly, soldering, or multi-layer stacking beyond two layers. While it’s excellent for exploring flexible PCB designs or validating a final design, in-house setups like NOVA allow for greater iteration control and ongoing testing. If your project requires better thermal management or testing under extreme temperatures, speak with our team to evaluate your needs.

  • Yes, you can. Our printing service supports custom materials, allowing you to send in your own flexible substrate, ink, or both. This is especially useful if you're working with specialty materials like polyethylene naphthalate (PEN) or researching new base material combinations. While using your own materials may influence characteristics like conductivity, stretchability, and thermal management, actual performance will depend on material compatibility and printing quality. Our team will help assess feasibility and offer guidance to optimize results.

  • Trace accuracy depends on ink rheology, substrate properties, and environmental factors, but our system supports conductive layers with minimum trace widths around 150 µm. This suits many flexible printed circuit boards used in R&D, prototyping, and low-volume production. It provides enough resolution for single-conductor layer designs and single-sided circuits.

  • This service is ideal for early-stage flexible circuit prototyping, but we do not currently offer assembly, soldering, or multi-layer stacking beyond two layers. While it’s excellent for exploring flexible PCB designs or validating a final design, in-house setups like NOVA allow for greater iteration control and ongoing testing. If your project requires better thermal management or testing under extreme temperatures, speak with our team to evaluate your needs.

  • We accept Gerber and SVG files, which are standard in PCB and flex circuit design. Please note that SVG support is currently in beta — contact our team if you have questions about compatibility. You'll want to ensure trace widths are within the service's resolution limit (150 µm minimum) and that your circuit paths are well-defined.

  • Yes. In fact, we have experience printing on a wide range of flexible films and non-standard substrates — including paper, glass, and even fabric. These types of surfaces are often used in prototyping medical devices, flexible displays, or other electronic devices where maximum flexibility and space savings are essential. Each project is reviewed individually to determine compatibility.

FILL OUT THIS FORM

To get a quote for your print

This website uses cookies to improve user experience. By using our website you consent to all cookies in accordance with our cookie policy.