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  • Guide for Selecting a Rotary Torque Sensor: Brush vs. Brushless Models
    The accurate measurement of torque applied to rotating drives and fastening applications is an important criterion for evaluating production efficiency and quality assurance in manufacturing and assembly. There are many process monitoring applications that require rotary style torque sensor be used
  • Textile Carding Machine Application Note (.pdf)
    Problem: Fibre material is combed off a Doffer cylinder, either by an oscillating comb or by a rotary brush. High static charges are enerated on the fibres. Static causes the fibres to cling onto the delivery transfer conveyor, resulting in a poor transfer of the product to the next process.
  • Enabling Technologies Armored Vehicle Slip Ring
    There are five key technologies that could be considered "enabling" for current, state-of-the-art armored vehicle turret rotary joints 1) the fiber brush contact system; 2) fluid rotary joint (FRU) technology; 3) broadband slip ring technology 4 fiber optic rotary joints (both on-axis and off-axis
  • How a Slip Rings Works
    A slip ring is a rotary coupling used to transfer electric current from a stationary unit to a rotating unit. This is accomplished by either (1) holding the center core stationary while the brushes and housing rotate around it, or (2) holding the brushes and housing stationary while the center core
  • Critical Parameters for High Speed Data on Slip Rings
    Many applications require rotary platforms and slip rings to carry electrical power and signals to and from the rotating system. Standard slip ring technology involves forming an electrical path with rotating rings contacted by a stationary sliding contact or brush. In the world of analog signals
  • High Speed Data and Commercial Slip Rings
    Many commercial applications require rotary platforms and slip rings to carry electrical power and signals to and from the rotating system. Standard slip ring technology involves forming an electrical path with rotating rings contacted by a stationary sliding contact or brush. In the world
  • Medical Device Link .
    motion control at low cost. For most such equipment, three technology alternatives for achieving electronic motion control are available: permanent-magnet brush dc motors, brushless dc motors, and step motors. Permanent-magnet brush dc motors are a viable choice, but they have to be fitted

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