INDUCTOSYN PRINCIPLE PDF

We'd like to understand how you use our websites in order to improve them. Register your interest. The designs of a speed-control system and its control circuit are analyzed, and aspects of improving the measurement accuracy of noncontact sensors microtransducers that convert displacement into coded signals are examined. Current trends in the development of new generations of transducers and inductosyn microtransducers are discussed along with features of their design and fabrication.

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They feature options such as integral rotary transformers, slip ring assemblies, once-per-revolution marker signals, and special materials to meet harsh environments. Because of their unique design, operating principle and construction, rotary Inductosyn transducers tolerate mechanical misalignment and environmental extremes.

Outside diameters of rotary transducers measure from less than 2 inches to 42 inches. Pole counts vary from 2 angular pitch to 0. An almost endless variety is available as either standard or special order units.

Tape scales can also be "wrapped" on cylindrical mounting surfaces to provide angular position feedback on very large rotary axes. Typical applications include large telescopes and large machine tools. Can be directly mounted to the axis of rotation.

Can withstand conditions ranging from cryogenic temperatures and hard vacuum to high temperatures and pressures. Non-contacting elements have zero wear- No adjustment or lubrication ever required.

Accuracy, resolution, and repeatability are unaffected by temperature. Key Benefits. Rotary Application Data Form. Linear Application Data Form. Cassette Application Data Form.

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They feature options such as integral rotary transformers, slip ring assemblies, once-per-revolution marker signals, and special materials to meet harsh environments. Because of their unique design, operating principle and construction, rotary Inductosyn transducers tolerate mechanical misalignment and environmental extremes. Outside diameters of rotary transducers measure from less than 2 inches to 42 inches. Pole counts vary from 2 angular pitch to 0. An almost endless variety is available as either standard or special order units.

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Linear encoder

A linear encoder is a sensor, transducer or readhead paired with a scale that encodes position. The sensor reads the scale in order to convert the encoded position into an analog or digital signal , which can then be decoded into position by a digital readout DRO or motion controller. The encoder can be either incremental or absolute. Motion can be determined by change in position over time. Linear encoder technologies include optical, magnetic, inductive, capacitive and eddy current.

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Design of inductosyn microtransducers

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