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U-blox enhances GNSS timing validation with nanosecond-accurate METAS time service

A high-tech Swiss precision engineering laboratory interior, sleek and minimalist, featuring advanced GNSS testing equipment and satellite timing receivers arranged on clean metal workbenches. Illuminated fiber-optic cables glow with soft blue-white light, symbolizing nanosecond-precise data transmission, weaving between server racks and atomic clock instrumentation. A large abstract holographic display shows synchronized clock waveforms and precise timing signals in glowing cyan and white. In the background, subtle hints of the Swiss Alps are visible through large glass windows, blending nature with cutting-edge technology. The overall atmosphere is clean, futuristic, and scientific, with cool tones of silver, blue, and white conveying precision, trust, and innovation. Ultra-detailed editorial photography style, sharp focus, soft ambient lighting, high-tech corporate aesthetic.

U-blox, official Swiss timekeeper the Federal Institute of MetrologyMETAS, and Switch, operator of Switzerland’s national research and education network, have integrated Switzerland’s UTC-traceable timing infrastructure into the u-blox GNSS test laboratory in Thalwil.

Through this collaboration, u-blox gains continuous access to a UTC-traceable reference via an unbroken and documented chain of calibrations, ensuring full measurement traceability. METAS realizes, maintains, and disseminates UTC(CH), Switzerland’s contribution to the Coordinated Universal Time (UTC), while Switch provides the fiber-optic network over which the timing signal is disseminated using White Rabbit technology.

The service delivers nanosecond-level time synchronization directly within the u-blox laboratory, accelerating the validation of GNSS timing receivers and strengthening the development of next-generation timing products. 

For GNSS timing technologies, performance fundamentally depends on precise synchronization, timing stability, and validation against trusted UTC references. By integrating the METAS time dissemination service directly into its laboratory infrastructure, u-blox can rapidly validate new hardware and software releases for GNSS timing receivers in-house, without requiring repeated access to external metrology facilities.

The infrastructure also enables long-term timing stability measurements over extended periods ranging from weeks to months against a stable UTC-traceable reference source, strengthening the development and validation workflow for next-generation GNSS timing products.

“High-performance GNSS timing products depend on rigorous and traceable timing validation throughout the development cycle,” said Samuli Pietilä, director of Product Line Management, Timing and Infrastructure at u-blox. “This infrastructure allows us to validate and continuously improve GNSS timing receiver performance directly in our own laboratory against a UTC-traceable reference.”

White Rabbit is an Ethernet-based synchronization technology originally developed at CERN for large-scale scientific infrastructure requiring ultra-precise timing accuracy. The technology enables sub-nanosecond synchronization over fiber-optic networks and is increasingly being adopted in advanced industrial and scientific environments.

METAS operates Switzerland’s national time standards and provides traceable time dissemination services supporting research, infrastructure, and industrial innovation.

“We are pleased to support u-blox with our time dissemination service,” said Jacques Morel, Head of the Laboratory Photonics, Time and Frequency at METAS. “This collaboration demonstrates how national metrology infrastructure can support advanced industrial applications requiring highly accurate synchronization, timing precision, and traceable validation against UTC references.”

The collaboration also highlights the strength of Switzerland’s precision technology ecosystem, bringing together national metrology expertise, optical timing infrastructure, and advanced GNSS timing technologies.

The timing infrastructure is now operational in the u-blox GNSS laboratory and will support ongoing development and validation activities for GNSS timing products.