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Warranty

Wake Industrial Warranty
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Product Description
The HS35120083110 serves as an advanced magnetic encoder from Danaher under the Dynapar Encoders series which offers dependable feedback operations in industrial environments. This device offers resolution selection between 64 and 2048 pulses per revolution (PPR) while allowing users to address diverse motion control and automation applications with precise control needs. The encoder shows exceptional performance at high-speed applications because it operates at shaft speeds reaching 3,600 RPM. The encoder accepts shafts ranging from 5/8 inch to 1-1/8 inches through its bore diameter which ensures easy integration with different types of machinery and control systems.
The HS35120083110 provides magnetic sensing technology as its main strength because it operates optimally within dusty or moist or vibration-prone environments. The use of magnetic technology in this model leads to more reliable signal accuracy and longer operational life in tough conditions because it remains insensitive to optical encoder vulnerabilities. This encoder works dependably when used in conveyor systems as well as motors and robotic arms. The HS35120083110 provides stable signal communication to control systems through its sealed 10-pin industrial latching connector which secures connection points even during high-vibration operations. The reinforced construction serves industrial operations most effectively because reliability and extended durability function as crucial requirements.
This encoder functions across temperatures between -20°C and +80°C which allows its usage in various climate conditions both indoors and outdoors. Its 0 to 120 kHz frequency response enables the device to service high-speed systems that depend on rapid feedback. The HS35120083110 magnetic encoder delivers reliable precise incremental feedback together with durability and flexible operation which makes it a suitable solution for demanding applications. The device maintains reliable operations across diverse conditions because of its broad functionality and resistant design structure