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AccumetricsModel AT-5000 EasyApp -Battery Powered Telemetry System

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The Accumetrics` Battery Powered Telemetry System Model AT-5000 EasyApp provides easy, dependable wireless measurements, including torque measurements, strain measurements, and more, from a rotating shaft. Measure torque live in real-time with this battery-powered, digital telemetry system. Featuring a low mounting profile and low power consumption, the system requires no shaft modifications and is fastened to the shaft using a single, sturdy aramid fiber strap. AT-5000 EasyApp is an ideal non-contact data transmission solution for applications requiring easy installation and dependable data retrieval, even in high RPM applications.

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Directly Measure Torque on Rotating ShaftsTransmit True Torque Data

The Battery Powered Telemetry System Model AT-5000 EasyApp utilizes a small battery powered transmitter mounted using an aramid fiber strap to directly measure, digitize, and transmit true torque data from rotating half-shafts, driveshafts, and rotors of all sizes and speeds. The system is also used for temperature, voltage, and acceleration sensing.

The AT-5000 EasyApp uses a long-life lithium battery to excite a strain gage and to power the AT-5000 telemetry electronics on the rotating shaft. The small signal resulting from torque applied to the shaft is amplified, anti-alias filtered, and digitized (typically at 11,718 samples per second). The digital data is reliably RF transmitted off the rotating shaft to a nearby pickup coil, which is connected to a receiver. The receiver converts the digital data to an analog voltage output (adjustable from 0 ± 1.0 to ± 10 volts). This DC to 1 kHz (or optionally higher) bandwidth voltage output can be fed directly to a data acquisition system, FFT analyzer, or an oscilloscope.

  • Battery powered telemetry
  • Easily and safely secures to shaft with reusable aramid fiber strap
  • Small size, typically requires 3 in (76.2 mm) radial envelope
  • High data integrity and noise immunity
  • Low power transmitter provides longer battery life
  • Two systems (Channel A and B) can be used side-by-side for multi-channel requirements
  • Manual shunt calibration invoked at transmitter
  • Torque testing for half-shafts / propshafts and driveshafts
  • Replacement of slip rings and in-line torque transducers
  • Torsional strain testing
  • RTD temperature measurement
  • Voltage measurement
  • Measuring data on high RPM shafts