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Overview

The device consists of a silicon micromachined pressure sensor die mounted on a 7.6 x 7.6 mm ceramic carrier protected by a plastic cap with a port to connect plastic tube. The MS5201-XD can be delivered in a highly sensitive version giving a  maximal  output  voltage  or  in  a  highly  linear  version  giving  a linear output voltage directly proportional to the applied pressure.

BENEFITS

  • 1 bar gage pressure range 
  • Uncompensated 
  • Piezoresistive silicon micromachined sensor  
  • Miniature surface mount 7.6 x 7.6 mm 
  • Low noise, high sensitivity, high linearity 
  • Low cost SMD ceramic package 
  • High reliability, low drift 
  • -40 °C to +125 °C operation range 
  • Gel protection
Features

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

Product Type Features

  • Sensor Type  mV Output Pressure Sensors

  • Type  Gage

Electrical Characteristics

  • Supply Voltage (V) 5

Dimensions

  • Dimensions 7.6 x 7.6 mm [ .3 x .3 in ]

Usage Conditions

  • Operating Temperature -40 – 125 °C [ -40 – 257 °F ]

Operation/Application

  • Pressure (mbar) 1000

  • Output/Span  150mV, 240mV

  • Accuracy  ±0.05/0.15% F.S. Non-Linearity

  • Overpressure  10 bar, 5 bar

Packaging Features

  • Package  Surface Mountable

Other

  • Options  High Linearity, High Sensitivity

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This information has been provided to you free of charge for your use but remains the sole property of Tyco Electronics 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.