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A monolithic, wavelength-tunable pulsed laser with a 2D metafiber & a 3D-printed Fabry–Perot cavity on a fiber tip, enabled by Nanoscribe’s 3D printing.
Open-access publication:
tinyurl.com/ykk5ks3z
A monolithic, wavelength-tunable pulsed laser with a 2D metafiber & a 3D-printed Fabry–Perot cavity on a fiber tip, enabled by Nanoscribe’s 3D printing.
Open-access publication:
tinyurl.com/ykk5ks3z
Visitors explored how mechanical metamaterials can be 3D printed with our Quantum X systems for tailored mechanical properties. 👏
👉 tinyurl.com/2pxa998y
Visitors explored how mechanical metamaterials can be 3D printed with our Quantum X systems for tailored mechanical properties. 👏
👉 tinyurl.com/2pxa998y
Together as part of the LAB14 Group, we’re building a strong hub for nanoscale precision technologies in North America.
Talk to our US sales experts: tinyurl.com/5t4ktwdz
Together as part of the LAB14 Group, we’re building a strong hub for nanoscale precision technologies in North America.
Talk to our US sales experts: tinyurl.com/5t4ktwdz
Discover the Quantum X bio, the highest resolution 3D bioprinter:
tinyurl.com/3w74yuat
Discover the Quantum X bio, the highest resolution 3D bioprinter:
tinyurl.com/3w74yuat
A shining example of on-fiber printing with Quantum X align. ✨
👉 tinyurl.com/5856bhyh
#HappyHalloween #3DMicrofabrication
A shining example of on-fiber printing with Quantum X align. ✨
👉 tinyurl.com/5856bhyh
#HappyHalloween #3DMicrofabrication
The #SmartMaterialsSummit 2025 takes place at our headquarters, the ZEISS Innovation Hub @ KIT in Karlsruhe.
🎤 Join our CEO Martin Hermatschweiler on Nov 6, 12:40 and visit our demo at 14:30!
👉 tinyurl.com/2p9mpbck
The #SmartMaterialsSummit 2025 takes place at our headquarters, the ZEISS Innovation Hub @ KIT in Karlsruhe.
🎤 Join our CEO Martin Hermatschweiler on Nov 6, 12:40 and visit our demo at 14:30!
👉 tinyurl.com/2p9mpbck
Discover how Quantum X bio enables high-resolution 3D bioprinting for life sciences and microfluidic systems – from cell scaffolds to organ-on-a-chip research.
🔬 Find Nanoscribe at booth 15!
tinyurl.com/5ar3adpb
Discover how Quantum X bio enables high-resolution 3D bioprinting for life sciences and microfluidic systems – from cell scaffolds to organ-on-a-chip research.
🔬 Find Nanoscribe at booth 15!
tinyurl.com/5ar3adpb
3D printing by 2GL® is a game changer, redefining speed, precision, and optical quality.
Example: An endomicroscope, printed by Nanoscribe & designed by @Printoptix .
👉 Discover Quantum X align:
tinyurl.com/hjshyx2f
3D printing by 2GL® is a game changer, redefining speed, precision, and optical quality.
Example: An endomicroscope, printed by Nanoscribe & designed by @Printoptix .
👉 Discover Quantum X align:
tinyurl.com/hjshyx2f
This isn’t a regular lens, it’s a 3D-printed phase mask, just 7 mm wide, yet capable of reshaping light in extraordinary ways for future large telescopes.
Discover the technology that made it possible:
👉 tinyurl.com/426s72f9
This isn’t a regular lens, it’s a 3D-printed phase mask, just 7 mm wide, yet capable of reshaping light in extraordinary ways for future large telescopes.
Discover the technology that made it possible:
👉 tinyurl.com/426s72f9
Scientists from State Key Laboratory of Robotics and Intelligent Systems in Shenyang, China, develop a new material that can write, erase & encrypt data. Enabled by Nanoscribe’s #3Dprinting.
Read the full article 👇
tinyurl.com/mr4dhh2t
Scientists from State Key Laboratory of Robotics and Intelligent Systems in Shenyang, China, develop a new material that can write, erase & encrypt data. Enabled by Nanoscribe’s #3Dprinting.
Read the full article 👇
tinyurl.com/mr4dhh2t
Join Nanoscribe, @himt-lithography.bsky.social, GenISys and micro resist technology at DTU Nanolab in Denmark for two days of insights and exchange in nano- and microfabrication.
📅 January 27–28, 2026
Register now for free 👉 tinyurl.com/yzu3kdeb
Join Nanoscribe, @himt-lithography.bsky.social, GenISys and micro resist technology at DTU Nanolab in Denmark for two days of insights and exchange in nano- and microfabrication.
📅 January 27–28, 2026
Register now for free 👉 tinyurl.com/yzu3kdeb
Researchers created ultralight nanolattices with record strength-to-weight ratios combining AI-guided design with high-resolution 3D printing.
Explore this success story and 2,100+ publications based on Nanoscribe technology 👇
tinyurl.com/2j447t8d
Researchers created ultralight nanolattices with record strength-to-weight ratios combining AI-guided design with high-resolution 3D printing.
Explore this success story and 2,100+ publications based on Nanoscribe technology 👇
tinyurl.com/2j447t8d
Discover more 👇
tinyurl.com/ya28kmxc
Discover more 👇
tinyurl.com/ya28kmxc
📅 Quantum Effects 2025: oct 7–8, Stuttgart, booth 2A23, hall 2
📅 3DAM conference 2025: oct 6–10, San Sebastián, including a talk by Dr. Benjamin Richter on oct 8, 16:15
👉 See all our upcoming events here: tinyurl.com/49659xr6
📅 Quantum Effects 2025: oct 7–8, Stuttgart, booth 2A23, hall 2
📅 3DAM conference 2025: oct 6–10, San Sebastián, including a talk by Dr. Benjamin Richter on oct 8, 16:15
👉 See all our upcoming events here: tinyurl.com/49659xr6
Quantum X align powers low-loss, broadband optical coupling through aligned 3D printing.
📍Find us at booth C4138 and let’s talk scalable photonics!
👉 Explore Quantum X align tinyurl.com/2s46d7wd
Quantum X align powers low-loss, broadband optical coupling through aligned 3D printing.
📍Find us at booth C4138 and let’s talk scalable photonics!
👉 Explore Quantum X align tinyurl.com/2s46d7wd
🔍 Discover how nanoscale alignment precision in 3D printing enables efficient, scalable interconnects in photonics packaging in our on-demand webinar.
🎥 Watch now for free: tinyurl.com/vucjw78r
🔍 Discover how nanoscale alignment precision in 3D printing enables efficient, scalable interconnects in photonics packaging in our on-demand webinar.
🎥 Watch now for free: tinyurl.com/vucjw78r
With its high refractive index, IP-n162 enables smaller, more efficient 3D-printed optical low-loss couplers. Used by leading researchers like Prof. Qixiang Cheng (@cam.ac.uk).
👉 More about IP-n162: tinyurl.com/264jadjj
With its high refractive index, IP-n162 enables smaller, more efficient 3D-printed optical low-loss couplers. Used by leading researchers like Prof. Qixiang Cheng (@cam.ac.uk).
👉 More about IP-n162: tinyurl.com/264jadjj
With a Master’s in Marketing, he brings fresh ideas to our socials, website & newsletters.
Off work he’s into ⚽ & 🍳.
Check out his creative touch on our site! 🌐
tinyurl.com/tk52a4kj
#MeetOurTeam
With a Master’s in Marketing, he brings fresh ideas to our socials, website & newsletters.
Off work he’s into ⚽ & 🍳.
Check out his creative touch on our site! 🌐
tinyurl.com/tk52a4kj
#MeetOurTeam
Visit booth C4138 to talk about Quantum X align, nanometer-precision 3D printing and how it enables freeform microoptics on fibers and chips for next-gen photonic devices.
👉 tinyurl.com/yck8jbfw
Visit booth C4138 to talk about Quantum X align, nanometer-precision 3D printing and how it enables freeform microoptics on fibers and chips for next-gen photonic devices.
👉 tinyurl.com/yck8jbfw
The trusted hybrid photoresin from microresist technology further extends the material portfolio for reliable fabrication of high-precision microoptics.
👉 Learn more: tinyurl.com/mvek7d6b
The trusted hybrid photoresin from microresist technology further extends the material portfolio for reliable fabrication of high-precision microoptics.
👉 Learn more: tinyurl.com/mvek7d6b
With 2PP, microlenses are aligned and batch-fabricated directly on PICs.
👉 Print yours with Quantum X align: tinyurl.com/4rseke72
With 2PP, microlenses are aligned and batch-fabricated directly on PICs.
👉 Print yours with Quantum X align: tinyurl.com/4rseke72
Quantum X bio enables 3D bioprinting at the scale of cells and tissues — ideal for microfluidics, tissue models, and scaffolds with our resins or your custom bioinks.
👉 tinyurl.com/23ejd7t8
Quantum X bio enables 3D bioprinting at the scale of cells and tissues — ideal for microfluidics, tissue models, and scaffolds with our resins or your custom bioinks.
👉 tinyurl.com/23ejd7t8
3D-printed freeform hologram precisely aligned on a fiber tip creates structured illumination into the far field. Optical design and print by Printoptix.
👉 Explore the technology behind it: tinyurl.com/6ky4c67n
3D-printed freeform hologram precisely aligned on a fiber tip creates structured illumination into the far field. Optical design and print by Printoptix.
👉 Explore the technology behind it: tinyurl.com/6ky4c67n
Meet us at MNE 2025 in Southampton (Sep 15–18) and at Biofabrication 2025 in Warsaw (Sep 14–17).
Discover how our Quantum X systems advance your high-resolution additive manufacturing.
Find all our upcoming events
👉 tinyurl.com/39a289v5
Meet us at MNE 2025 in Southampton (Sep 15–18) and at Biofabrication 2025 in Warsaw (Sep 14–17).
Discover how our Quantum X systems advance your high-resolution additive manufacturing.
Find all our upcoming events
👉 tinyurl.com/39a289v5
Quantum X shape enables high-resolution 3D nano- and microfabrication for microoptics, micromechanics, metamaterials, and more — all in one configurable system.
👉 tinyurl.com/5263362x
Quantum X shape enables high-resolution 3D nano- and microfabrication for microoptics, micromechanics, metamaterials, and more — all in one configurable system.
👉 tinyurl.com/5263362x