Yankee Position sensor
SPECIFICATIONS
Yankee is programmable via software and hardware for dedicated applications.
Available also for assembly on rotary limit switches GF4C and SF12C.
Available with PWM outputs or with voltage (0÷10 Vdc) and/or current outputs (4÷20 mA).
Further information available on the technical documentation PRCA0EBF00.
TECHNICAL CHARACTERISTICS
Supply: 12V DC
Current consumption: 70mA
Resolution: 12 bit
Freewheel: 360°
Full scale error: <1%
Possible offset tuning and reset
Degree of protection: IP 65
Operational temperature: -25°C / +70°C
Mechanical life: >5.000.000 rotations
Conformity to Community Directives: 89/336/CEE 73/23/CEE and its modification 93/68/CEE
Conformity to Standards: EN 60204-1 EN 60529 EN 61326
Markings and homologations: CE
DESCRIPTION
Yankee is an electronic position sensor that is interfaced with rotation elements and will return a signal according to the angular position.
Every position of the shaft is univocally associated with a single analogue signal which can be in voltage or current. With 4096 counts per revolution, measuring accuracy is guaranteed.
Forty years of experience in the sector of rotary limit switches have given life to a project that combines state-of-the-art industrial electronics with precision mechanics.
Yankee is made with top-quality materials and with the best components available on the market to guarantee long service life, precision and repeat accuracy even in extreme conditions.
Yankee can be installed easily in 3 different ways: with joint, flange or radial anchoring elements. Mounting bores are standardized to market requirements to and with the most frequently used geometries. Based on customers’ requests it is possible to provide different anchoring systems to suit any special need.
Yankee can be used in a variety of industrial sectors, from hoisting to automation, to meet any need in terms of registration and identification of modern production machines, wherever controls are needed, regardless of the nature of the mechanic system and its complexity, to reduce and unify the system of angular positioning sensors
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