Magnetic Kit Encoders offer 12-bit resolution.

Press Release Summary:



Based around AM256 chip, Magnet Kit Encoders operate at speeds to 60,000 rpm and continuous temperatures to 125°C with accuracy to ±0.3°. Immune to stray magnetic fields in motor, AM256 uses self-compensating array of Hall effect sensors. Non-contact, no-wear encoders are available with axial length of 1/8 in., in diameters down to ¾ in. They are offered with absolute, incremental, and analog outputs and are suited for end-of-shaft mounting and motor feedback.




Original Press Release:




Magnetic Kit Encoders Great Fit For Motor Feedback, Offering High-Speed, Accuracy And Reliability With Compact, End-Of-Shaft Mounting



Based around AM256 chip, kit encoders operate at speeds to 60,000 rpm, temperatures to 12S°C continuous, with accuracy to ±0.3°, and 12 bit/4096 counts/rev resolution

October 2005 - Major brushless DC motor manufacturers are taking advantage of the small size and high accuracy of new Renishaw magnetic encoder kits with an AM256 sensor chip. A great fit for end-of-shaft mounting and motor feedback, the magnetic kit encoders are available with axial length of only 1/8" (3 mm) in diameters down to 3/4" (19 mm). Ideal for demanding high-speed applications, the compact, low-mass, no-wear encoders enable rotational speeds to 60,000 rpm. The versatile magnetic encoders are available with absolute, incremental and analog outputs in a range of industry standard formats with resolutions from 6 to 12 bit (5.6° to 0.08°).

By simple addition of a magnet into the end of the motor shaft and the location of a small PCB module just clear of the shaft, high purity sine and cosine signals are produced at one cycle per turn. Absolute shaft position can then be determined to high resolution for feedback and commutation control.

Highly immune to stray magnetic fields in the motor, the AM256 sensor uses a self-compensating array of Hall effect sensors and analog processing techniques. The large array of Hall sensors, coupled with very accurate conditioning of the signal outputs, ensures high purity signals, accuracy to ±0.3°, and resolution to 12 bit (4096 counts per rev).

Robust industrial designs, the kit encoders handle motor stall and overload conditions, high shock and vibration conditions, and wide temperature range with continuous operation at up to 125°C. Equally smooth control is provided in both motor turn directions. Non-contact, no-wear design and high-reliability silicon processes yield industry-leading reliability figures even at elevated temperatures.

As with all Renishaw products, a worldwide application support network and local stocks bring added confidence to system designers.

For more information on Renishaw's encoders, contact Howard Salt, Business Manager, Encoder systems, Renishaw Inc., 5277 Trillium Boulevard, Hoffman Estates, IL 60192. Phone 847-286-9953; fax 847-286-9974. Email: howard.salt@renishaw.com.

For a detailed look at other productivity enhancements for metrology, linear and rotary position feedback, and machine tool calibration, visit Renishaw's web site at: http://www.renishaw.com/encoders.

Reader inquiries should be directed to:
Susan Wilm
Marketing Assistant
Renishaw Inc. 5277 Trillium Blvd. Hoffman Estates, IL 60192

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