Place of Origin: | China |
Brand Name: | Forsentek |
Certification: | CE |
Model Number: | FTM |
Minimum Order Quantity: | 1pc |
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Packaging Details: | Shockproof carton |
Delivery Time: | 4-5 weeks |
Payment Terms: | Western Union, MoneyGram, T/T,Paypal |
Supply Ability: | 1550pcs/month |
Capacity: | 20/30/50/100N*m | Type: | Reaction Torque Transducer |
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Principle: | Strain Gauge Torque Sensor | Connection: | Flange-to-Flange |
Material: | Aluminum | Customizable: | Yes |
Hollow Type Reaction Torque Sensor With Flange Mounting Torque Transducer
Hollow Type Flange Mounted Reaction Torque Transducer FTN is made of aluminum based on strain gauge technology intended for torque measurement in both clockwise and anticlockwise direction, it features a large bore located at the center of the transducer,through which a rotating shaft can pass,this enables torsion measurement regardless of the rotating speed. Flange-to-Flange Reaction Torque Sensor FTM offers 0-177lbf*in / 0-266lb*in / 0-443lbf*in / 0-885lb*in four rated measuring ranges to choose from. Through hole torque sensor FTM is a reaction type torque sensor,which can also be used for rotating torque measuring applications where inserting an extra part between the driving and driven elements is impracticable.Typical applications of hollow reaction torque meter FTM are for example servo motor torque measurement, pump testing, drilling torque monitoring, actuator test and so on. Static Torque Transducer FTM can also be modified or customized as per client's requirements.
Specifications
Rated capacity |
20N*m / 2kg*m / 177lb-in 30N*m / 3kgf*m / 266lbf-in 50N*m / 5kg*m / 443lb-in 100N*m / 10kgf*m / 885lbf-in (Customizable) |
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Rated output | 1.0 mV/V | Compensated temperature | -10...+40oC |
Excitation | 3-15V | Operating temperature | -20...+60oC |
Zero balance | ±0.05mV/V | Temperature shift zero | ±0.02% R.O./oC |
Nonlinearity | ±0.2% R.O. | Temperature shift span | ±0.02% R.O./oC |
Hysteresis | ±0.2% R.O. | Input resistance | 700±50 ohms |
Nonrepeatability | ±0.2% R.O. | Output resistance | 700±10 ohms |
Creep(5min) | ±0.1% R.O. | Insulation resistance | >2000Mohms |
Safe overload | 150% F.S. | Ingress protection | IP60 |
Ultimate overload | 200% F.S. | Material of element | Aluminum |
Cable | Ø5*3000mm 4-core shielded cable with mating connector | ||
Wiring code |
Clockwise@ Red--Power input+ Black--Power input- Green--Signal output+ White--Signal output- |
Load cell glossary:
Load Cell:A device which produces an output signal proportional to the applied weight or force.
Wheatstone Bridge:A Wheatstone bridge is a network of four resistive legs. One or more of these legs can be active sensing elements. The Wheatstone bridge is the electrical equivalent of two parallel voltage divider circuits. R1 and R2 compose one voltage divider circuit, and R4 and R3 compose the second voltage divider circuit. The output of a Wheatstone bridge is measured between the middle nodes of the two voltage dividers.
Excitation: The voltage applied to the input terminals of the load cell.
Rated Capacity: The maximum axial load the load cell is designed to measure within its specifications.
Non-linearity: The maximum deviation of the calibration curve from a straight line drawn between the no-load and rated outputs; expressed as a percentage of the rated output and measured on increasing load only.
Non-repeatability: The maximum difference between load cell output readings for repeated loadings under identical loading and environmental conditions.
Hysteresis: The maximum difference between load cell output readings for the same applied load; one reading obtained by increasing the load from zero and the other by decreasing the load from rated output; usually measured at half rated output and expressed in percent of rated output.
Creep: The change in load cell output occurring with specified period of time, while under load, and with all environmental conditions and other variables remaining constant; usually measured with rated load applied.
Safe Overload: The maximum load in percent of rated capacity which can be applied without producing a permanent shift in performance characteristics beyond those specified.
Ultimate Overload: The maximum load in percent of rated capacity which can be applied without producing a structural failure.
Operating Temperature: The extremes of temperature within which a load cell will operate without permanent adverse change to any of its performance characteristics.
Temperature Shift Span: The change in output due to a change in load cell temperature; usually expressed as a percentage of load per degree Celsius change in temperature.
Temperature Shift Zero: The change in zero balance due to a change in ambient temperature; usually expressed in percent of rated output per degree Celsius change in temperature.
Input Resistance: The resistance of the load cell bridge circuit measured at the positive and negative excitation terminals with no load applied and with the output terminals open-circuited.
Output Resistance: The resistance of the transducer bridge circuit measured at the positive and negative signal terminals with no load applied and with the input terminals open-circuited.
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