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Wednesday, March 4, 2026

3YOURMIND Founder’s Opdo rolls out new AI co-pilot for optical system design


Software program firm opdo has launched a synthetic intelligence (AI)-driven platform that goals to simplify the complicated job of optical system design. 

With a concentrate on making optical engineering extra accessible, the platform makes use of AI to generate detailed, manufacturable designs from a easy immediate, dealing with the method from begin to end in simply minutes.

Opdo was based by 3YOURMIND Founder and Berlin-based 3D printer producer xolo’s Chief Business Officer (CCO) Stephan Kuehr alongside Berlin producer’s former AI engineer and optics specialist Yousef Arzhangnia. Their shared purpose is to assist engineers shortly transfer from an concept to a production-ready optical system with out getting slowed down within the conventional, time-consuming improvement cycle.

“opdo makes optical design as accessible and built-in as electrical or mechanical CAD,” says Kuehr. “We’re bridging design and manufacturing by means of clever brokers—so {hardware} groups can transfer quicker from concept to bodily product.”

For 3D printing, a part of opdo’s strategy lies in its help for the volumetric 3D printing technique xolography, serving to produce optical parts straight inside liquid resin utilizing managed gentle publicity. 

The method can obtain floor tolerances of 5 µm and excessive optical transparency, working with supplies resembling xoloClear and xoloOne, in addition to experimental elastomers and hydrogels. With plans to attach opdo’s AI-driven designs on to xolography-based fabrication, the workflow for speedy prototyping and customized optics is ready to turn out to be much more streamlined.

opdo AI copilot for optical system design. Image via opdo.3YOURMIND Founder’s Opdo rolls out new AI co-pilot for optical system design
opdo AI copilot for optical system design. AI Picture by way of opdo.

Streamlining optical design by means of AI

One of many core strengths of opdo’s platform is its potential to grasp pure language. Engineers can describe what they want in plain phrases, and the platform’s AI brokers handle the whole lot from producing the preliminary design to simulating and optimizing it. 

The platform then prepares outputs that may go straight to manufacturing, all whereas integrating straight with CAD instruments. This stage of integration permits optics, mechanics, and electronics to be developed collectively, supporting a extra cohesive engineering course of.

opdo’s suite of instruments is intensive, together with the power to generate total methods based mostly on prompts, raytracing in classical, polarization, and multi-sequential modes, and wave optical propagation. 

It additionally helps aspheres and freeform optics, gives entry to catalog lenses and modular assemblies, and affords instruments for tolerance and sensitivity evaluation. Manufacturability validation and enterprise case estimation are additionally a part of the platform, making it simpler for engineers to stability efficiency, practicality, and price earlier than shifting ahead with manufacturing.

On the functions entrance, the platform is designed to help the whole lot from imaging and show methods in client and industrial cameras, AR/VR and XR headsets, and medical imaging units, to head-up shows in automotive and aerospace settings. In laser and photonic methods, it may be used for optical communication, laser-based materials processing, medical lasers, and generative manufacturing. 

The platform’s capabilities additionally prolong to precision measurement and sensing, resembling 3D sensing, spectroscopy, interferometry, and environmental or course of sensors. Past these makes use of, opdo is how its platform can help extra specialised functions, together with LiDAR, area optics, quantum and built-in photonics, and biophotonics.

As a part of its rollout, opdo is providing early entry and welcoming choose engineering groups to hitch and see how the platform can match into their very own workflows.

opdo company logo. Image via opdo.opdo company logo. Image via opdo.
opdo firm emblem. Picture by way of opdo.

3D printing optics in follow

Away from opdo, researchers are making use of 3D printing strategies to develop new varieties of optical methods.

Researchers from the 4th Physics Institute on the College of Stuttgart demonstrated the profitable use of 3D printed micro-optics in high-power laser methods. Having leveraged two-photon polymerization 2(PP) 3D printing, they fabricated microscale lenses straight onto optical fibers, enabling the compact integration of fibers and laser crystals inside a single oscillator. 

The ensuing hybrid fiber-crystal laser produced secure output exceeding 20 mW at 1063.4 nm, peaking at 37 mW, whereas the printed optics confirmed no harm or deterioration throughout prolonged operation. For this research, the crew relied on a Nanoscribe 3D printer and was exploring bigger fibers and superior lens designs to reinforce efficiency on the time of reporting.

In 2021, King Abdullah College of Science and Expertise (KAUST) researchers developed a novel SLA-based 3D printing technique for photonic crystal fibers (PCFs), a specialised optical fiber that includes inside channels that improve gentle steerage. Utilizing a customized 3D printer, the crew fabricated PCFs with complicated cross-sectional geometries beforehand unattainable with typical strategies. 

Co-authored by Andrea Bertoncini and Carlo Liberale, the method concerned printing straight onto the fiber layers themselves, bypassing the necessity for scaled-up variations and overcoming conventional limitations attributable to gravity and floor rigidity. This strategy additionally allowed for a number of cross-sectional areas alongside a single fiber, enabling features resembling polarization management and beam focusing.

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Featured picture exhibits opdo AI copilot for optical system design. Picture by way of opdo.



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