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Upgrades for every application

NanoOne printing platforms are delivered in a ready-to-use standard configuration but can be fully customized with a range of additional accessories to meet specific needs. Accessory upgrades can be easily retrofitted at any time, ensuring your printing system evolves with your changing demands.

Bio unit

The only 2PP printer with a genuine integrated incubation system.

The bio unit is an integrated stage-top incubation system that enables high precision bioprinting directly in the presence of living cells by maintaining a native, stress free environment throughout the printing process.

This accessory allows adjustments to match the
preferential conditions of the respective cell type, such as humidity, CO2 and temperature control. This facilitates the fabrication of complex biological structures, including tissue models and scaffolds.

Single bare optical fiber and fiber-optic ferrule

Engineered for micro-optics printing directly onto the tip of a single optical fiber or ferrule – ideal for applications like custom endoscopic components.

Lens assembly on fiber for disposable endoscopes

Fiber array holder

Designed for simultaneous printing on multiple fiber cores, this holder is ideal for fabricating micro-optics on
fiber array adapters used in telecom and photonics. Equipped with automated core detection of up to 8 fibers in a single print, significantly simplifying setup and boosting throughput for complex multi-part builds.

8-fiber array connector with printed collimation lenses

WD+ vat

The WD+ vat is designed to enable a greater vat working distance compared to standard vats. This makes it especially well-suited for specialized applications, such as printing within recessed areas, like optics on diodes, or fabricating taller structures within a single field of view (FOV).

Maximum working distance with WD+ vat
20x objective
508 µm
40x objective
288 µm

Heatable material vats

Print with resins that require elevated temperatures.

UpNano’s heatable vats maintain resin temperatures up to 70°C during printing – ideal for advanced research and industrial materials.

Model
Compatible substrates
Immersion type
Medium
Up to 10 ×10 mm, 20 × 20 mm or 1” round
Air immersion only
Large
Exclusively 40 × 40 mm
Air immersion only

Borderless vat

Print across the full substrate surface without physical boundaries. Designed to support custom and wafer-based substrates up to 50 × 50 mm. Available in air or oil immersion versions, these vats provide enhanced flexibility and are ideal for wafer printing and large area precision applications.

2 in wafer print supported by the borderless vat

Stage inserts for biological substrates

Optimized for precision and throughput in biological applications. Engineered for compatibility with standard and custom well-plate formats, the well plate stage insert ensures stable mounting – making it the perfect accessory for delicate bioprinting with the bio unit.

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Wafer chucks

Open 3D printing platform for novel material development and the production of micron and sub-micron scale structures.

Wafer chuck set (1”, 2”, 3”)

This vacuum-based chuck set supports standardized
wafers commonly used in the semiconductor industry.
Compatible with pre-coated wafers or liquid resin printing when used with the borderless vat, this set is ideal for advanced material development and high-volume production workflows for microelectronics and
photonics.

3" wafer chuck
2 in wafer

100 mm wafer chuck with integrated tilt correction

Tailored for 100 mm wafers, this chuck provides the same accuracy and functionality as our 1”, 2” and 3” wafer chucks but is integrated into its own custom tilt correction insert. This ensures orthogonality and uniform flatness across the entire 100 mm wafer – perfect for demanding high-volume or high-precision applications.

100 mm wafer chuck
100 mm wafer

Standard vats

UpNano’s vat printing mode leverages specially designed metal vats that securely hold your selected resin during the print process. Each vat features a precision glass window at the base, allowing the laser to focus through the resin onto the selected substrate. This setup enables high-resolution 2PP 3D printing with a wide range of benefits.

Efficient Resin Usage
Print up to 40 mm in height using only the resin needed, reducing waste and cost. Leftover resin can be stored in the vat with a lid for dust-free storage for future prints.

Convenient Handling
Easily swap resins, objectives, and substrates for quick setup. Supports stepwise multi-material and multi-objective printing for maximum flexibility.

Supports Advanced Materials
As the NanoOne is an open material platform, standard  vats are compatible with abrasive and composite resins, making it ideal for R&D and projects using rare or limited materials.

Protects Optics
Prevents resin contact with objectives, minimizing cleaning, reducing contamination risk, and extending the life of high-performance optics.

Vat type
Immersion type
Max capacity
Compatable substrate size
Compatable objectives
Notes
Small
Air
2.5 ml
Up to 10 x 10 mm
5x, 10x, 20x (air/water immersion)
20x objective use with air immersion vat type
Liquid
2.5 ml
Up to 10 x 10 mm
40x (oil immersion)
Adopted working distance, larger glass window to fit high resolution objective
Medium
Air
5.8 ml
Up to 20 × 20 mm or 1" round
5x, 10x, 20x (air/water immersion)
20x objective use recommended with air immersion vat type
Liquid
5.8 ml
Up to 20 × 20 mm or 1" round
40x (oil immersion)
Adopted working distance, larger glass window to fit high resolution objective
Large
Air
26 ml
Exclusively 40 × 40 mm
5x, 10x, 20x (air/water immersion)
Not compatible with smaller substrates; 20x objective use with air immersion vat type
Liquid
26 ml
Exclusively 40 × 40 mm
40x (liquid immersion)
Not compatible with smaller substrates

Variable tilt insert

Included with every NanoOne system, the universal stage insert enables compatibility with a wide range of commonly used substrates, supporting adaptable experimental workflows across research, product development and bioprinting applications.

Parabolic mirror for laser coupling on custom chip
Micro membrane printed in custom microfluidic chip

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