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Overview

The ELAF series load cell employs micro-machined piezo-resistive strain gages fused with high temperature glass to a high performance stainless steel force measuring flexure.  This technology eliminates age-sensitive organic epoxies used in traditional load cell designs providing excellent long term span and zero stability. Operating at very low strains, it utilizes strain gages providing gage factors greater than 100, essentially unlimited cycle life expectancy, superior resolution, exceedingly high over-range capabilities (without the need for stops) and an amplified ratiometric high level 0.5 to 4.5 V output or 20 mV/V bridge output. ELAF sensors are suitable for your test and measurement applications. From the ultra compact 0.5” diameter B0 and T1 design to the high range 1.25” diameter B2 package, the ELAF provides exceptional flexibility and superior performance. 

Benefits

  • Low Cost
  • Optional High Level Output
  • Small, Low Profile Design
  • Low Noise
  • Robust: High Over Range
  • High Reliability
  • Low Deflection
  • Low Off-Axis Response

Applications

  • Theatrical Rigging Loads
  • Assembly Forces
  • Weighing
  • Tool Forces
  • Thrust Measurements
  • Batch Weighing
  • Robotics End Effectors
  • Product Validation Testing
  • Material Test
  • Hoist and Winch Loads
Features

Please review product documents or contact us for the latest agency approval information.  

Product Type Features

  • Sensor Type  Miniature Load Cells

Electrical Characteristics

  • Full Scale Range (Newton) 50 – 10000

  • Full Scale Range (lbf) 10 – 2000

  • Supply Voltage (VDC) 5

Signal Characteristics

  • Output Signal  .5 – 4.5 V, ±20 mV/V

Usage Conditions

  • Operating Temperature -40 – 120 °C [ -40 – 248 °F ]

Other

  • Force Direction  Compression, Tension

  • Protection Index  IP65

  • Accuracy (% of FS) ±.25

Related Materials

Catalog Pages/Data Sheets

Terms and Conditions

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Disclaimer:
This information has been provided to you free of charge for your use but remains the sole property of TE Connectivity Corporation ("TE"). While TE has used reasonable efforts to ensure its accuracy, TE does not guarantee that it is error-free, nor makes any other representation, warranty, or guarantee that the information is completely accurate or up-to-date. In many cases, the CAD data has been simplified to remove proprietary detail while maintaining critical interface geometric detail for use by customers. TE expressly disclaims all implied warranties regarding this information, including but not limited to any implied warranties or merchantability or fitness for a particular purpose.