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  • Ultra-High-Speed Magnetic Bearings
    No friction, no limits: Magnetic bearings do not only increase lifetime but also enable vacuum operation with highest rotational speeds. With our technology you can reach 500,000 rpm and more.
  • 500'000 rpm rotational speeds thanks to magnetic bearings
    Applications with high rotational speeds require outstanding bearing solutions. Air and magnetic bearings are increasingly used in place of ball bearings. When operated in vacuum, magnetic bearings offer the most advantages. A new concept for rotational speeds above 500,000 rpm will provide
  • Magnetic Field Sensors as Speed Monitors
    Magnetic field sensors are generally based on the magneto-resistive or Hall-principle. Compared to optical speed sensors, resolvers and precision potentiometers, magnetic field sensors do not contain movable parts, such as shafts, bearings, code disks or slip rings. An aspect allowing them
  • Ceramic Bearings in Machine Tools
    Ceramic hybrid bearings offer many performance advantages over their metallic counterparts. In addition to meeting the demands of high-speed machine tools-in which conventional metallic bearings suffer from rapid deterioration-ceramic hybrid bearings also are used in special applications
  • NASA Tech Briefs - High-Temperature, High-Load-Capacity Radial Magnetic Bearing
    A radial heteropolar magnetic bearing capable of operating at a temperature as high as 1,000 F ( 540 C) has been developed. This is a prototype of bearings for use in gas turbine engines operating at temperatures and speeds much higher than can be withstood by lubricated rolling-element bearings.
  • Magnetic Levitation Technology Demonstrator for Nanopositioning Applications
    Magnetic levitation, often referred to as maglev, is a frictionless motion technology that uses magnetic fields to levitate and propel objects. It is used in various applications, best known from high-speed trains and magnetic bearings, and has great benefits for precision motion control
  • Advantages of Linear Encoders Over Rotary Encoders
    ?. They adopt the magnetic sensing technology, so they work without contact and ensure virtually wear-free and maintenance-free operation. There are no moving parts and all the mechanical components found in rotary encoders (flange, shaft, bearings, etc.) are not need, which eliminates mechanical failures

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