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LD701

Non-Contact Linear Displacement

Modèles en stock
  • Inductive Technology for Sensing Metal Targets
  • Insensitive to Dust, Dirt, and Oils Ideal for Industrial Applications
  • Compact Design
LD701
Depuis C$ 649.16
Modèles en stock
Non-Contact Linear Displacement LD701 LD701
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L'aperçu du produit
  • Additional Features 1 Non-Contact
  • Cable Length 1.8 m
  • Cable Type Pigtail
  • Compensated Temperature, Max 60 °C
  • Compensated Temperature, Min 0 °C
  • Correction Factors Mild steel 1.0;Stainless steel 0.75;Brass 0.50;Aluminum 0.40;Copper 0.35
  • Electrical Connection Pigtail Leads
  • Electrical Output 1 to 9 Vdc
  • Enclosure Ratings IP67
  • Housing Material Nickel-plated Brass
  • Process Connection Size 12 mm
  • Repeatability ±10 µm
  • Supply Current 20 mA
  • Supply Power Note 14 to 30 Vdc @20mA unregulated, reverse polarity and short circuit protected
  • Supply Voltage 14 to 30 Vdc
  • Thermal Effects 1μm/°C/mm
Non-contact linear sensors have an analog output that is proportional to the damping target distance. Their compact yet sturdy design makes them well-suited for industrial, robotics and laboratory use. These sensors utilize inductive technology, which means they are capable of sensing any metal target. The sensing distance, however, is influenced by the metal target. Ranges are calibrated using a standard square target. The target is mild steel (Fe 360), 1 mm (0.04') thick. The side lengths are the larger of either the sensor’s face diaphragm or three times the sensing distance.

SPECIFICATIONS
Excitation: 14-30 Vdc @ 20 mA; unregulated, reverse polarity and short circuit protected
Output: 1-9 Vdc
Output Load: 20 mA max
Repeatability: 0.01 mm (0.0004')
Compensated Temp.: 0 to 60°C (32 to 140°F)
Total Thermal Effects: 1µm/°C/mm
Housing: Nickel-plated brass
Electrical Conn.: 1.8 m (6 ft), 3-cond. 22 AWG pigtail leads (20 AWG for 30 mm)
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Hello, We looking to use LD701-2/5 for gap measurements in high rpm (up to 100,000 rpm) rotating machines. What is the excitation frequency of the sensor coil. Thank you Andrii

Asked by: Andrii
Thank you for your inquiry. There is no data available for these sensors being used at such high speeds.
Answered by: Applicatrions Engineer JK
Date published: 2020-07-13

Will this transducer be able to measure the changing gap of a ellipse-like surface as it rotates? the surface in question is presently being designed, so we can accommodate the appropriate width and height.

Asked by: mmongo
These sensors should work for measuring an ellipse rotating surface. Please note that the switching frequency of the sensor is 1000 Hz
Answered by: JK Applications Engineer
Date published: 2024-04-05
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