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  • How to Verify Proper Operation of Tachometers and Sensors
    When a Tachometer/Sensor has a visible light output and has passed the fluorescent light calibration check, THERE IS NOTHING WRONG WITH THE TACHOMETER OR SENSOR. We suggest trying a new piece of Reflective Tape or contrasting color, hold steady and aim from the correct distance to obtain actual RPM.
  • Procedure to Verify Proper Operation of Tachometers and Optical Sensors
    When a Tachometer/Sensor has a visible light output and has passed the fluorescent light calibration check, THERE IS NOTHING WRONG WITH THE TACHOMETER ORSENSOR. We suggest trying a new piece of Reflective Tape or contrasting color, holdsteady and aim from the correct distance to obtain actual RPM.
  • Torque Sensor Application - Rotating Torque Monitoring System
    sure to specify required RPM for proper sensor and related instrument selection. FUTEK's line of rotary torque sensors are strain gage type and are available with booth Slip ring type (300 series) with mV/V output or non-contact ones (600 series) with +/- 5VDC output. Both versions are also available
  • Application Note - Setting up a stock MD10P for Pizza Ovens
    Setting up the MD10P control for your oven requires two pieces of information: 1. The number of pulses / revolution generated by the motor speed sensor. 2. The desired display at a known motor RPM
  • Recording Road Surfacing Data to Prove Process Efficiency
    . This data would have to be collected from sensors recording several different parameters including the temperature of the bitumen, the surrounding air, engine RPM, road speed, and more.
  • Machining - Smart Machining: A New Development in High-Speed Machining to Consider - 03/06
    Maximum RPM Machining: Necessities of High-Speed Moldmaking Mold shops will thrive if they practice an 'all-aspects ' process to HSM, which includes the machine, cutting tool, toolholder, proper balance and application support. High-speed machining has been around for a few years now
  • TECH TIPS on Implementing the IIOT via IO-Link
    , inductive proximity sensors work in tight spaces to detect metallic objects for motion control tasks like tool selection,. robotic position-sensing, and control of micro-mechanisms. The most up-to-date version of IO-Link lets inductive proximity sensors. double as RPM detectors as they provide an output
  • Using the dsPIC30F & dsPIC33F DSCs for Sensorless BLDC Control
    , this limitation allows very common 4-pole motors to run at up to 4500 RPM. INTRODUCTION The output frequency can be extended up to approximately 250 Hz (7500 RPM for a 4-pole This application note describes a fully working and motor) if phase advance is used. Higher speeds highly flexible software

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