MPXM2010DT1 Equivalent & Substitute Parts

Part Overview

The MPXM2010DT1 is a differential pressure sensor manufactured by NXP USA Inc., designed for board mount applications with a 1.45 PSI (10 kPa) operating pressure range and Wheatstone Bridge output. The sensor delivers 0 mV to 25 mV output at 10V supply, with ±1% accuracy and temperature compensation across -40°C to 125°C operating range. This part is currently obsolete, making identification of equivalent substitute components essential for ongoing system support and new design implementations.

Substiute Parts

MPXM2010DT1
NXP USA Inc.In Stock: 987MPXM2010DT1 Datasheet
MPXM2010DT1
Current Part
MPXM2010GST1
NXP SemiconductorsIn Stock: 9533MPXM2010GST1 Datasheet
MPXM2010GST1
MFR Recommended

Key Parameters

Parameter Value
Manufacturer Part Number MPXM2010DT1
Manufacturer NXP USA Inc.
Series MPX2010
Product Status Obsolete
Pressure Type Differential
Operating Pressure 1.45 PSI (10 kPa)
Output Type Wheatstone Bridge
Output Range 0 mV ~ 25 mV (10V)
Accuracy ±1%
Supply Voltage 10V ~ 16V
Operating Temperature -40°C ~ 125°C
Maximum Pressure 10.88 PSI (75 kPa)
Package / Case 5-SMD Module
Mounting Type Surface Mount
Termination Style Gull Wing
RoHS Status ROHS3 Compliant

Substitute Part Grouping Explanation

Substitution eligibility for the MPXM2010DT1 is determined by strict alignment with the following critical parameters:

  • Operating pressure range: 1.45 PSI (10 kPa)
  • Output type: Wheatstone Bridge configuration
  • Output range: 0 mV ~ 25 mV at 10V supply
  • Accuracy specification: ±1%
  • Supply voltage range: 10V ~ 16V
  • Operating temperature range: -40°C ~ 125°C
  • Maximum pressure rating: 10.88 PSI (75 kPa)
  • Package type: 5-SMD Module
  • Mounting configuration: Surface Mount with Gull Wing termination
  • Regulatory compliance: ROHS3 Compliant

The MPXM2010GST1 qualifies as a manufacturer-recommended substitute. While this part maintains identical electrical specifications and pressure ratings, it differs in pressure type classification (vented gauge versus differential) and includes a male barbless port connection (0.12" / 2.97mm tube), which represents a mechanical interface variation rather than an electrical incompatibility.

Parameter Comparison

Parameter MPXM2010DT1 MPXM2010GST1
Manufacturer Part Number MPXM2010DT1 MPXM2010GST1
Manufacturer NXP USA Inc. NXP Semiconductors
Series MPX2010 MPX2010
Product Status Obsolete Active
Operating Pressure 1.45 PSI (10 kPa) 1.45 PSI (10 kPa)
Output Type Wheatstone Bridge Wheatstone Bridge
Output Range 0 mV ~ 25 mV (10V) 0 mV ~ 25 mV (10V)
Accuracy ±1% ±1%
Supply Voltage 10V ~ 16V 10V ~ 16V
Operating Temperature -40°C ~ 125°C -40°C ~ 125°C
Maximum Pressure 10.88 PSI (75 kPa) 10.88 PSI (75 kPa)
Package / Case 5-SMD Module 5-SMD Module, Top Port
Mounting Type Surface Mount Surface Mount
Termination Style Gull Wing Gull Wing
RoHS Status ROHS3 Compliant ROHS3 Compliant

Engineering Selection Recommendations

The MPXM2010GST1 is the manufacturer-recommended substitute for the obsolete MPXM2010DT1. Both components maintain identical electrical performance specifications, including output range, accuracy, supply voltage requirements, and operating temperature range. Both parts are ROHS3 compliant and REACH unaffected, ensuring regulatory alignment for current manufacturing standards.

The primary distinction between these parts is mechanical interface configuration. The MPXM2010DT1 provides no port connection (differential measurement configuration), while the MPXM2010GST1 includes a male barbless port for vented gauge measurement. This difference reflects the measurement methodology rather than electrical incompatibility. Selection between these variants depends on system pressure reference requirements: differential measurement for isolated pressure comparison, or vented gauge measurement for atmospheric pressure reference.

The MPXM2010GST1 is currently in active production status with substantial inventory availability (9,451 pieces), providing supply chain continuity for applications requiring the MPX2010 series pressure sensor.

Frequently Asked Questions (FAQ)

Q: Can the MPXM2010GST1 directly replace the MPXM2010DT1 in existing designs?

A: Electrical substitution is valid. Both parts deliver identical Wheatstone Bridge output (0 mV ~ 25 mV at 10V), operate across the same temperature range (-40°C ~ 125°C), and maintain ±1% accuracy. However, the mechanical interface differs: the MPXM2010DT1 is a differential sensor (no port), while the MPXM2010GST1 is a vented gauge sensor (0.12" male barbless port). System integration feasibility depends on whether your application requires differential or gauge pressure measurement.

Q: What is the difference between differential and vented gauge pressure measurement?

A: Differential pressure measurement compares two isolated pressure sources without atmospheric reference. Vented gauge measurement references one pressure input against atmospheric pressure through a vent port. The MPXM2010DT1 performs differential measurement; the MPXM2010GST1 performs vented gauge measurement with atmospheric reference through its male port connection.

Q: Are both parts compatible with the same PCB footprint?

A: Both parts use identical 5-SMD Module packaging with Gull Wing termination and surface mount configuration. PCB footprint compatibility is maintained. The MPXM2010GST1 includes a top port for atmospheric venting, which requires mechanical clearance consideration in board layout but does not affect electrical pad placement.

Q: What are the compliance and regulatory differences between these parts?

A: Both the MPXM2010DT1 and MPXM2010GST1 are ROHS3 compliant and REACH unaffected. Regulatory compliance is equivalent. The MPXM2010GST1 is currently in active production status, ensuring ongoing compliance with current manufacturing standards.

Q: Why is the MPXM2010DT1 obsolete?

A: The MPXM2010DT1 has been superseded by the MPXM2010GST1 within the MPX2010 series product line. NXP USA Inc. has transitioned production to the active MPXM2010GST1 variant, which maintains all electrical specifications while providing enhanced mechanical interface options through the vented gauge configuration.

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