Datasheets
MPXM2010DT1 by:

DIFFERENTIAL, PEIZORESISTIVE PRESSURE SENSOR, 0-1.45Psi, 1%, 0-25mV, RECTANGULAR, SURFACE MOUNT

Part Details for MPXM2010DT1 by NXP Semiconductors

Results Overview of MPXM2010DT1 by NXP Semiconductors

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MPXM2010DT1 Information

MPXM2010DT1 by NXP Semiconductors is a Pressure Sensor.
Pressure Sensors are under the broader part category of Sensors/Transducers.

Sensors and transducers detect and measure physical quantities like temperature, pressure, and force, converting them into electrical signals for various applications. Read more about Sensors/Transducers on our Sensors/Transducers part category page.

Price & Stock for MPXM2010DT1

Part # Distributor Description Stock Price Buy
Rochester Electronics MPX2010 - Pressure Sensor, 10V, 0/10kPa, Sensor 5 RoHS: Compliant Status: Obsolete Min Qty: 1 7000
  • 25 $6.4100
  • 100 $6.0900
  • 500 $5.7700
  • 1,000 $5.4500
  • 10,000 $5.1300
$5.1300 / $6.4100 Buy Now
DISTI # MPXM2010DT1
EBV Elektronik Pressure Sensor 0kPa to 10kPa Differential 5Pin Case 1320A02 TR (Alt: MPXM2010DT1) RoHS: Compliant Min Qty: 1000 Package Multiple: 1000 EBV - 0
Buy Now

Part Details for MPXM2010DT1

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MPXM2010DT1 Part Data Attributes

MPXM2010DT1 NXP Semiconductors
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MPXM2010DT1 NXP Semiconductors DIFFERENTIAL, PEIZORESISTIVE PRESSURE SENSOR, 0-1.45Psi, 1%, 0-25mV, RECTANGULAR, SURFACE MOUNT
Rohs Code Yes
Part Life Cycle Code Obsolete
Ihs Manufacturer NXP SEMICONDUCTORS
Package Description MPAK-4/5
Reach Compliance Code compliant
ECCN Code EAR99
HTS Code 8542.39.00.01
Samacsys Manufacturer NXP
Accuracy-Max (%) 1%
Additional Feature TEMPERATURE COMPENSATED
Body Breadth 6.35 mm
Body Height 4.06 mm
Body Length or Diameter 8.38 mm
Linearity (%) 1 %
Mounting Feature SURFACE MOUNT
Offset-Nom 0MV
Operating Current-Max 6 mA
Operating Temperature-Max 125 °C
Operating Temperature-Min -40 °C
Output Range 0-25mV
Output Type ANALOG VOLTAGE
Package Shape/Style RECTANGULAR
Port Type HOLE
Pressure Range-Max 1.45 Psi
Pressure Range-Min
Pressure Sensing Mode DIFFERENTIAL
Response Time 1000 µs
Sensors/Transducers Type PRESSURE SENSOR,PIEZORESISTIVE
Supply Voltage-Max 16 V
Supply Voltage-Min 10 V
Surface Mount YES
Termination Type SOLDER

Alternate Parts for MPXM2010DT1

This table gives cross-reference parts and alternative options found for MPXM2010DT1. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of MPXM2010DT1, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

Part Number Manufacturer Composite Price Description Compare
MPXM2010DT1 Freescale Semiconductor Check for Price Pressure Sensor, 10V, 0/10kPa, Sensor 5, Reel MPXM2010DT1 vs MPXM2010DT1

MPXM2010DT1 Related Parts

MPXM2010DT1 Frequently Asked Questions (FAQ)

  • NXP provides a recommended PCB layout in the application note AN1694, which includes guidelines for pad layout, component placement, and routing to ensure optimal performance and minimize noise.

  • The MPXM2010DT1 is a ratiometric pressure sensor, which means it requires a two-point calibration to determine the offset and span. NXP provides a calibration procedure in the application note AN1694, which involves applying known pressures and measuring the output voltage.

  • The MPXM2010DT1 is specified to measure pressures up to 10 bar (145 psi), but it can be used to measure higher pressures with reduced accuracy. However, it's not recommended to exceed the maximum rated pressure to avoid damage to the sensor.

  • The MPXM2010DT1 has a built-in temperature sensor, and the output voltage is ratiometric to the supply voltage. To compensate for temperature effects, you can use the temperature sensor output to correct the pressure measurement. NXP provides a temperature compensation formula in the application note AN1694.

  • The response time of the MPXM2010DT1 is typically around 1 ms, but it can vary depending on the specific application and the filtering used. NXP recommends using a low-pass filter to reduce noise and improve the response time.

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