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April 4, 2026JACOW0 citationsOpen Access

Designing a 3-axis delta robot capable of sub-nanometre stability for a synchrotron flagship beamline

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SBScott BeamishJKJon KellyCBClaudio Bovo

Key Points

  • This work aims to design a delta robot that achieves sub-nanometre stability for manipulating samples at a synchrotron beamline.
  • Developed initial design concepts for a three-axis delta robot
  • Applied mechatronics principles to create a manufacturable assembly
  • Simulated a closed-loop control system for performance prediction
  • Achieved sub-nanometre RMS stability at cryogenic temperatures
  • Demonstrated effective performance predictions using the mechatronics process
  • Enabled a right-first-time approach in the robot assembly design

Abstract

Understanding the structure of quantum materials is essential for unlocking the next generation of low-cost, energy-efficient devices. To achieve this, a state-of-the-art Coherent Soft X-ray Imaging and Diffraction (CSXID) beamline is currently under development at Diamond Light Source. At the heart of the end station will be a three-axis delta robot capable of manipulating samples with sub-nanometre RMS stability at cryogenic temperatures. This work presents the mechatronics process applied to design this delta robot, from initial concepts to a manufacturable assembly and a fully simulated closed-loop control system. The results demonstrate the power of the mechatronics process to accurately predict system performance and enable a right-first-time approach.

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Cite This Study

Beamish et al. (2026) studied this question.

synapsesocial.com/papers/69d0af68659487ece0fa555dhttps://doi.org/10.18429/jacow-medsi2025-thp18
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