Propeller and Rotor Blade Strain Measurement Systems

ATi telemetry  systems are typically used to transmit data from rotating shafts or machinery to a stationary telemetry receiver. The 2040BC Miniature Strain Gage Transmitter can be connected to strain gages adhered to propellers or rotors in order to transmit blade strain or shaft torque in flight.


ATi telemetry systems can be used to measure propeller stress on everything from HVAC systems to aircraft to wind power turbines.


Other telemetry transmitters are available for any type of sensor or input. Click Here For More


Power can be supplied to the transmitters by batteries or inductively for continuous, non-interrupted measurements. Click Here For More


Single piece and split collars are available in most any size, which will clamp or bolt to any shaft size. Click Here For More


Telemetry receivers feature a digital backlit LCD display and analog outputs. The unit can be powered from 12 VDC or 120 VAC. Click Here For More


Multi-channel and multiplexing telemetry systems are available. Click Here For More


Each system comes complete with all required accessories. This includes antennas, AC power adapter or DC power cord for Receiver, and all required cables.


Propeller and Rotor Blade Strain Measurement Systems Attachment BattTelem_08.pdf


Propeller and Rotor Blade Strain Measurement Systems image

Propeller and Rotor Blade Strain Measurement Systems image

Other Applications for this Product

ATi Telemetry Systems are used to measure everything from tire pressure and temperature to engine output torque to propeller and rotor blade stresses.
Aviation / Aerospace
Have a difficult or unusual measurement problem? ATi will manufacture a custom system for your application.
Custom
ATi Telemetry Systems are used on both manned and unmanned aircraft, land vehicles as well as ships and submarines. (Photo courtesy of General Dynamics Land Systems)
Military
ATi Telemetry Systems are used for a variety of applications in the power generation industry ranging from measuring shaft torque to monitoring wind turbine vibration as well as monitoring vital internal parameters on 4.5 MegaWatt generators.
Power Generation



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