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Advantages of direct drives in positioning systems 1 Agenda 1. About us 2. Linear motor: Basics 3. Why choose a linear motor? 4. Applications 2 Mity napdy bezporednie TECNOTION About us Specialized in linear motors


  1. Advantages of direct drives in positioning systems 1

  2. Agenda 1. About us 2. Linear motor: Basics 3. Why choose a linear motor? 4. Applications 2

  3. Mity – napędy bezpośrednie TECNOTION

  4. About us • Specialized in linear motors • Former part of Philips • More than 25 years of experience • Worldwide 210 employees • Turnover approx. 45,000,000 Euro • Headquarters in Almelo/The Netherlands • Branches in Germany, Poland, USA & Korea • Production facilities in The Netherlands & China 4

  5. Linear motor: Basics 5

  6. Linear motor : Basics Quelle: Wikipedia 6

  7. Linear motor

  8. Linear motor : Basics Permanent magnets (secondary part) 8

  9. Linear motor : Basics Forcer (primary part) Permanent magnets (secondary part) 9

  10. Linear motor : Basics Forcer Coils (primary part) Permanent magnets (secondary part) 10

  11. Linear motor : Basics Magnetic flux (B) Current (I) Force (F)  F = I x B x L 11

  12. Products Iron core Ironless Vacuum Torque Motors linear motors linear motors linear motors 12

  13. Motor Technologies Iron core linear motors Ironless linear motor  High Forces / Masses  Dynamics  Velocity up to 12 m/s  Velocity up to 18 m/s  Costs  No cogging 13

  14. Vacuum Iron less Portfolio Iron core TECNOTION

  15. Torque motor Portfolio TECNOTION

  16. What is a torque motor? Torque motors

  17. Torque motors Foot print Foot print Labour time Labour time Mechanics Price Mechanics Encoder Encoder Coupling Gear box Torque motor Serwo

  18. Torque motor Portfolio TECNOTION

  19. Designation 92 Portfolio 60 Outer Diameter 34 Series Outer Winding Diameter type X 25 Motor QTR A 105 17 N height 133 S 160 Magnet Type Motor height TECNOTION

  20. Vacuum Iron less Portfolio Iron core TECNOTION

  21. Specials Customization guidelines Portfolio Level 4 Level 3 Level 2 Level 1 Degrees of customization: 1. Connector addition 2. Cable length / special winding 3. Custom tooling (different geometry / cable, cable exit) 4. Complete custom UXA TECNOTION

  22. Why choose a linear motor? 24

  23. Drive systems Belt Screw Rack & Pinion Linear motor Acc. 50 m/s 2 10 m/s 2 40 m/s 2 100 m/s 2 Precision ~50µm 5µm ~40µm < 1µm 25

  24. Why choose a linear motor • High dynamics (acceleration)/ Высокая динамика/ускорение • High velocity / высокая скорость • Position accuracy / точность позиционирования • Flexibility / modular system / гибкость  Acceleration up to 100 m/s 2 • Compact design / компактность • Simple procurement / простота заказа • Maintenance free / не требует обслуживания ( смазка, обслуживание) • Low-noise / низкий шум • Suitable for vacuum / решения для вакуума • Cleanroom / стерильное помещение на производстве 26

  25. Why choose a linear motor • High dynamics (acceleration) • High velocity • Position accuracy • Flexibility / modular system  Velocity up to 18 m/s • Compact design • Simple procurement • Maintenance free • Low-noise • Suitable for vacuum • Cleanroom 27

  26. Why choose a linear motor • High dynamics (acceleration) • High velocity  Possible accuracy < 1 μm • Position accuracy • Flexibility / modular system • Compact design • Simple procurement • Maintenance free • Low-noise • Suitable for vacuum 28 • Cleanroom Quelle: Wikipedia

  27. Why choose a linear motor • High dynamics (acceleration) • High velocity • Position accuracy • Flexibility / modular system • Compact design • Simple procurement • Maintenance free • Low-noise • Suitable for vacuum • Cleanroom 29

  28. Why choose a linear motor • High dynamics (acceleration) • High velocity • Position accuracy • Flexibility / modular system • Compact design • Simple procurement • Maintenance free • Low-noise • Suitable for vacuum • Cleanroom 30

  29. Why choose a linear motor • High dynamics (acceleration) • High velocity • Position accuracy •  No Gearboxes needed Flexibility / modular system •  No bearings (screw & belt) Compact design •  No couplings Simple procurement • Maintenance free • Low-noise • Suitable for vacuum • Cleanroom 31

  30. Why choose a linear motor • High dynamics (acceleration) • High velocity • Position accuracy • Flexibility / modular system •  Small number of parts Compact design • Simple procurement • Maintenance free • Low-noise • Suitable for vacuum • Cleanroom 32

  31. Why choose a linear motor • High dynamics (acceleration) • High velocity • Position accuracy • Flexibility / modular system  No wear and tear • Compact design  No lubrication • Simple procurement • Maintenance free • Low-noise • Suitable for vacuum • Cleanroom 33

  32. Why choose a linear motor • High dynamics (acceleration) • High velocity • Position accuracy • Flexibility / modular system • Compact design • Simple procurement • Maintenance free • Low-noise • Suitable for vacuum • Cleanroom 34

  33. Why choose a linear motor • High dynamics (acceleration) •  Rated outgassing values up to 10 -8 mBar High velocity • Position accuracy • Flexibility / modular system • Compact design • Simple procurement • Maintenance free • Low-noise • Suitable for vacuum • Cleanroom 35

  34. Why choose a linear motor • High dynamics (acceleration) • High velocity • Position accuracy • Flexibility / modular system  Up to ISO cleanroom class 1 • Compact design • Simple procurement • Maintenance free • Low-noise • Suitable for vacuum • Cleanroom 36

  35. Osie liniowe - zabudowa Stator Cable chain Carriage Encoder Forcer Guideway Ironcore motor Ironless Motor 37

  36. Markets Semiconductor Solar F.P.D. Electronics Digital Machine Vacuum Inspection Biomedical Printing Tooling 38

  37. QUALITY AND SERVICE DELIVERED WORLDWIDE 39

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