Fiber Optic Position Sensor offers 14-bit single-turn resolution.

Press Release Summary:




Featuring all-optical design immune to any EMI and other harsh environment conditions, MR330 series offers inherently safe operation and interference-free sensor transmission over distances exceeding 300 m. Absolute rotary encoder measures absolute angular position from 0° to 360° via programmable 13-bit (8,192 count) or 14-bit (13,950 count) resolution at speeds exceeding 2,500 rpm. Firmware also tracks turns up to 12 bits (4,096 revolutions).



Original Press Release:



Enhanced Fiber Optic Position Sensor Now Offers 14-Bit Resolution



Higher resolution for measuring angular position in MRI applications, harsh environments and hazardous locations



Newbury Park, CA  USA



The Micronor MR330 series Fiber Optic Absolute Position Sensor System now features 14-bit single-turn resolution.  The enhanced performance is accomplished via improved electronics and new firmware-based algorithm update to the MR330-1 SSI Controller Module which is backwards compatible with earlier units.  Rotary sensors are offered in two models - Standard MR332 and MRI Safe MR338.



The absolute rotary encoder measures absolute angular position from 0° to 360° via programmable  13-bit (8,192 count) or 14-bit  (13,950 count) resolution at speeds exceeding 2500 rpm.   System firmware also  tracks turns up to 12-bits (4096 revolutions).  The controller features multiple built-in interfaces for maximum system compatibility and utility: SSI, USB, RS485 Serial, Modbus RTU, two analog outputs (4-20mA and ±10V) and two digital set points.



The MR330 series position sensor is an innovative all-optical design immune to any electro-magnetic interference such as lightening, radiation, magnetic fields and other harsh environmental conditions. The fiber optic aspect of the sensor also makes it perfectly suited for long distance position sensing over hundreds of meters without being affected by ground loop problems.  The system outperforms resolvers and conventional electronics-based encoders by providing inherently safe operation and interference-free sensor transmission over distances exceeding 300 meters.



The sensor  uses a novel optical technique embedded in a passive sensor and active controller connected by a duplex fiber optic link. The controller transmits a burst of light to the code disk in the sensor which accurately modulates the spectral components of the light based on angular position. The position information is imprinted in the optical spectrum of the light and guided back to the controller for a precise position readout. The sensor requires no electrical power and houses no electronic components whatsoever.



The MR330's accuracy and EMI immunity make it an ideal sensor for applications that require precise motion control and position measurement in challenging environments: oil rigs, satellite antennas, solar panel arrays, actuator systems, transportation systems, steel mills and medical instrumentation. The sensor is also classified as a “inherently safe, simple apparatus” and meets ATEX requirements for use in mines, gaseous and dust-based explosive environments. The sensor's immunity to lightning and high voltage arcing also make it especially suited for outdoor applications such as wind turbines and antenna towers as well as robotic welding systems.



About Micronor



Since 1968, Micronor has been a leading global supplier of automation and motion control products for industrial applications as well as military, aerospace, medical and other harsh/hazardous environments. Products include fiber optic sensors, encoders, resolvers, rotary limit switches, motorized potentiometers, pulse generator, and custom engineered feedback and control units. Micronor has facilities in California-USA and Switzerland.



CONTACT INFORMATION:

Dennis Horwitz

Vice President, Sales & Marketing

Micronor Inc.

750 Mitchell Road

Newbury Park, CA  91320 USA

USA

TEL +1-805-499-0114

FAX +1-805-499-6585

EMAIL   dennis@micronor.com

http://www.micronor.com

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