3SAE PFS

The world’s first benchtop fusion splicer that delivers capabilities overcoming the limitations of current splicing processes. The PFS is a semi-automatic splicing station providing a far greater range of position adjustment than conventional fusion splicers.

  • Precise fiber joining in R&D and production.
  • Patented PentaPod® alignment stages (compact, rigid, stable).
  • 6-axis motion control (X, Y, Z, Xϴ, Yϴ, Zϴ) per side.
  • Ring of Fire® (ROF) technology for thermal stability (125 μm to 2.5 mm).
  • Advanced machine vision for process evaluation.
The rapid development of fiber laser technology and the increased demand for producing components for these lasers have created a need for a dedicated and cost-effective high-performance splicing device. It must be capable of processes beyond those available in standard production fusion splicers and glass processing equipment. These new capabilities must be ideal for production and R&D environments, while being advanced enough to meet the rigorous requirements of fiber laser manufacturing.
PentaPod® – The full range of adjustment capabilities

3SAE Technologies PentaPod® Fusion Splicer (PFS) is the world’s first benchtop fusion splicer that delivers capabilities which overcome the limitations of current splicing processes at a critical angle to meet the most rigorous requirements for high-power fiber laser component manufacturing. The PFS is a semi-automatic splicing station that provides a far greater range of position adjustment than conventional fusion splicers. The PFS was specifically designed for series production, repeatability, precision, and user-friendly operation while maintaining unmatched splice quality.
Ring of Fire® – Highest quality splices
The PFS uses 3SAE’s patented PentaPod® stages, which offer 12 separate positioning axes enabling unprecedented control over the joined material, along with the latest third-generation Ring of Fire® heat source, which provides a highly controlled plasma field that completely surrounds the joined element and delivers uniform circumferential heat distribution facilitating a consistent and repeatable splicing process. Thanks to the combination of a precise mechanical design, high-contrast optics, absolute control of relative positioning and angular alignment, and a highly stable next-generation ROF® plasma source, the PFS stands out from other existing technologies. In addition, new splice scanning technology provides detailed splice quality analysis.
Key features:

  • – Specifically designed for accurate joining of endcaps to fibers in R&D and production environments.

  • – The PFS can also be used to make “bundle-to-fiber” connections of various diameters and different fiber sizes.

  • – The unique, patented PentaPod® alignment stages are compact, rigid, and stable.

  • – Both the fiber stages and the fiber-endcap stages provide individual alignment along the X, Y, and Z axes, as well as Pitch, Yaw, and Theta, delivering 6-axis motion control (X, Y, Z, Xϴ, Yϴ, Zϴ) per side.

  • ±6 mm of relative linear alignment (X, Y, Z axes) with positioning accuracy of <0.1 μm

  • ±6° of angular alignment (Xϴ, Yϴ, Zϴ axes) with positioning accuracy of <0.01°

  • – The new implementation of 3SAE Ring of Fire® (ROF) technology provides excellent thermal stability in applications with fiber diameters from 125 μm to 2.5 mm.

  • – Advanced machine vision ensures the highest alignment quality and facilitates detailed process evaluation. Two orthogonal (X and Y) live views of the splice during the splicing process.

  • – New splice scanning technology provides detailed splice quality analysis and facilitates 3SAE curvature-based thermal splice calibration.

  • – Fibers, bundles, and fiber endcaps are held in removable, interchangeable carriers that can be adapted to specific applications.

  • – Precise control of the vertical ROF alignment relative to the spliced elements ensures uniform circumferential thermal distribution during splicing.

  • – A highly flexible splicing process allows continuous control of the arc temperature and fiber positioning during splicing.

  • – Pre- and post-splice data export for convenient splice tracking and data analysis.
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