Zivid Will Demonstrate Robotics Software at VISION 2026
The company plans to showcase AI-driven 3D path planning for adaptive robotic systems in Stuttgart this October.
Updated on Sept. 29, 2026 in Robotics

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Zivid will debut its Zivid Motion software at the VISION 2026 trade fair in Stuttgart, Germany, from October 6-8, 2026. This announcement follows the release of the Zivid Motion Sandbox, a virtual environment allowing developers to test path-planning capabilities.
Why it matters
The software addresses inefficiencies in industrial automation by enabling robots to adapt to environmental changes in real time, reducing the need for manual motion tuning. This capability aims to decrease cycle times for robotic manipulation tasks.
The system utilizes continuous 3D vision from a Zivid 2+ MR130 camera to compute paths close to physical obstacles. Unlike traditional pre-programmed sequences, the software enables robots to adjust trajectories dynamically without human intervention.
The players
Zivid
An Oslo-based industrial vision company focused on high-speed 3D cameras and spatial perception software for robotic manipulation.
The details
Zivid Motion functions by integrating persistent 3D sensor data into the robotic control stack to allow for reactive path planning. The Zivid Motion Sandbox is a parallel tool that enables developers to simulate and validate these spatial navigation strategies on a standard laptop before deployment to physical hardware. This approach intends to bypass the time-consuming process of manual motion tuning in changing warehouse or manufacturing environments.
Timeline
September 24, 2026: Zivid announced the upcoming demonstration of Zivid Motion.
October 6-8, 2026: Zivid will demonstrate its robotic software at VISION 2026 in Stuttgart.
The Tech Race
This software signals a move toward autonomous robotic perception that competes with legacy pre-programmed automation standards. It follows a broader industry trajectory aiming to replace rigid, teaching-based motion profiles with adaptive 3D-guided navigation.
Developers and system integrators can begin testing the software immediately using the Zivid Motion Sandbox on their own laptops. The physical hardware demonstration will be accessible to attendees at VISION 2026, Hall 10, Booth 10E53.
The takeaway
The transition to adaptive robotic movement reduces long-term maintenance by automating complex path adjustments. Interested parties should monitor the October 6-8 demonstration in Stuttgart to evaluate the software's performance on a UR robot platform.
Further reading
For more developments in industrial autonomy, explore the latest updates in Robotics.
Source note: This article includes information reported by Vision Systems Design.
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