Sheet Based Slot Die Coater, Model FOM vectorSC, made in Denmark by FOM Technologies

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  • Coating width: up to 200 mm (slot-die compatibility: S – XL)
  • Coating length: up to 300 mm
  • Coating speed range: up to 5.0 m min-1
  • Substrate heating: up to 150 °C
  • Microporous vacuum chuck
  • Integrated syringe pump
  • Laptop control unit
  • Coating automation software
  • Cloud-compatible protocol saving
  • Remote troubleshooting
  • Dimensions: 830 x 430 x 460 mm (L x W x H)
  • Weight: 50 kg


  • Slot-die head heating: up to 80 °C
  • Nitrogen/air knife module
  • Flexo/microgravure module

      The FOM vectorSC system was designed for fast and easy coating of functional materials in laboratories working to develop novel materials, test device structures and process devices for performance testing. It is intended for solution processed thin-film coatings of functional materials, for example related to solar (OPV, perovskites, CIGS), lighting, sensing and energy storage applications.

      The FOM vectorSC allows for easy control over coating on both rigid and flexible substrates. By integrating industry-grade components and user-friendly recipe features, the FOM vectorSC provides a seamless, accelerated user workflow and excellent control for coating a wide variety of active materials. It is an ideal solution for users aiming to bridge the gap between fundamental research and pilot-scale production, with an emphasis on versatility in compatible substrates and coating fluids.

      Slot-Die Coating Introduction and FAQ


      Vijayan, M. B. Johansson, S. Svanström, U. B. Cappel, H. Rensmo, and G. Boschloo Simple Method for Efficient Slot-Die Coating of MAPbI3 Perovskite Thin Films in Ambient Air Conditions ACS Applied Energy Materials2020 3(5), 4331-4337 DOI: 10.1021/acsaem.0c00039

      D. Burkitt, J. Searle, and T. Watson. Perovskite solar cells in N-I-P structure with four slot-die-coated layers. Royal Society Open Sciences 16 May 2018

      D. Burkitt, J. Searle, D. A. Worsley, and T. Watson. Sequential Slot-Die Deposition of Perovskite Solar Cells Using Dimethylsulfoxide Lead Iodide Ink Materials 2018, 11(11), 2106;