Extended Material Compatibility
Discover how NovoJet™ reliably jets fluids with viscosities up to 250 mPa⋅s at the point of ejection, including demanding materials such as UV-resins, adhesives, and conductive inks.
This year, we introduced a first look at the Quantica Print Engine. Now, we invite you to join us for an exclusive update on where the system is today.
Designed to replace slow, wasteful traditional methods like screen printing and single nozzle dispensing, the Print Engine is a modular, high-speed inkjet system capable of depositing challenging high-viscosity materials, from adhesives to conductive inks, with digital precision.
In this webinar, Founder Ben Hartkopp and Head of System Integration Andreas Müller will take you inside the Print Engine, demonstrating how this system adapts to diverse manufacturing needs and can be seamlessly integrated into existing production line.
/ 12 March 2026, 2:00PM CET
/ 30min presentation + Q&A

Discover how the Print Engine enables high-precision jetting of materials with viscosities up to 250 mPa·s at the point of ejection, handling even the most challenging materials, including coatings, adhesives, and conductive inks.

Experience complex, multi-layer geometries printed at speeds of 0.8–2.0 meters per second, with droplets precisely controlled between 200–600 pL, ensuring consistent quality and resolution.

Learn how the Print Engine adapts seamlessly to diverse industrial environments. Increase print width and throughput by stacking multiple print cells side by side, or add additional print bars along the print direction to meet any production requirement without compromising precision.

From adhesive deposition to functional coatings and conductive inks, the Print Engine opens the door to applications traditionally restricted to analog or semi-digital methods such as screen printing, single-nozzle dispensing, or spray coating.


Discover how NovoJet™ reliably jets fluids with viscosities up to 250 mPa⋅s at the point of ejection, including demanding materials such as UV-resins, adhesives, and conductive inks.
Learn about the unique tri-morph PZT piezo ceramic bender configuration that enables direct, large-scale volumetric fluid displacement, circumventing the limitations of Helmholtz resonance for high-viscosity materials.
Understand the innovative chamber design and fluid path optimization that ensures rapid refill and prevents material starvation and agglomeration, even with highly viscoelastic fluids and those containing significant particle loads.
Learn how NovoJetTM Printhead is overcoming the viscosity limitation of traditional inkjet, printing materials with superior properties up to 250mPas.
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This report presents a rheological analysis of two industrial adhesives successfully printed using our high-viscosity printhead – an industry first.


This technical whitepaper provides an overview of NovoJet™'s innovative architecture and operational principles, demonstrating its capability for precise, high-throughput deposition of highly functional materials onto diverse substrates and geometries.