ONE NEW MTS SYSTEM CORPORATION TEMPOSONICS® E SERIES MODEL EP EPS0030UD601V0 MAGNETO-STRICTIVE LINEAR POSITION SENSOR.
ANALOG STOP/START SENSOR WITH STYLE "S" CAPTIVE SLIDING MAGNET, WITH JOINT AT TOP.
5 3/8" STROKE LENGTH.
6 PIN MALE DIN CONNECTOR.
24VDC INPUT VOLTAGE (+20%, -15%).
ANALOG VOLTAGE 0 TO +10VDC, 10+ VDC TO 0.

  • Linear, absolute measurement
  • Non-contact sensing technology
  • Rugged industrial sensor, EMC shielded and CE certified
  • Non-linearity less than 0.02%
  • Repeatability within 0.001%
  • Direct position outputs:  - Analog (V/mA),   - Digital position output: Start/Stop pulse
  • Simple sensor parameter upload

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PRODUCT SELECTOR GUIDE                                                                                                                                                                                        
http://www.mtssensors.de/fileadmin/medien/download/Product_Selector/Product_Selector_Guide_Industrial_551814_EN.pdf



E-Series low profile-style position sensor


Temposonics® Model EP Sensors are highly repeatable, absolute position sensors for linear measurement. Absolute meas-
urement offers safety for machine and automation devices. With absolute output, position information is instantly
available; power-down situations do not require re-homing of the device.  Using the unique magnetostrictive principle, that
MTS pioneered, the sensor precisely senses the position of an external magnet through the housing wall, to measure position with a
high degree of resolution and accuracy. The Temposonics® EP Sensor’s innovative design is a result of MTS’s experience in
magnetostrictive technology combined with solid engineering, extremely rugged construction and modern electronics.
The Temposonics® EP is a precise, durable and cost effective alternative to linear potentiometers. It offers all of the advantages of a non-contact position sensor suitable for a wide range of machines and automation applications.

The Benefits of Magnetostrictive Sensing


Temposonics® Linear-Position Sensors use the time-based magnetostrictive position sensing principle developed by MTS.
Within the sensing element, a sonic strain pulse is induced in a specially designed magnetostrictive waveguide by the
momentary interaction of two magnetic fields. One field comes from a movable permanent magnet that passes along the
outside of the sensor.  The other field comes from an “interrogation” current pulse applied along the waveguide. The resulting
strain pulse travels at ultrasonic speed along the waveguide and is detected at the head of the sensing element. The position of
the magnet is determined with high precision and speed by accurately measuring the elapsed time between the application of
the interrogation pulse and the arrival of the resulting strain pulse with a high speed counter.  Using the elapsed time to
determine position of the permanent magnet provides an absolute position reading that never needs recalibration or
re-homing after a power loss.  Non-contact sensing eliminates wear, and guarantees the best durability and output repeatability.


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