MPXA4100A

Features: • 1.8% Maximum Error Over 0° to 85• Specifically Designed for Intake Manifold Absolute Pressure Sensing in Engine Control Systems• Temperature Compensated Over 40 to +125• Durable Epoxy Unibody Element or Thermoplastic (PPS) Surface Mount PackageApplication•...

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SeekIC No. : 004426462 Detail

MPXA4100A: Features: • 1.8% Maximum Error Over 0° to 85• Specifically Designed for Intake Manifold Absolute Pressure Sensing in Engine Control Systems• Temperature Compensated Over 40 to +125...

floor Price/Ceiling Price

Part Number:
MPXA4100A
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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268 Transactions

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Upload time: 2024/4/27

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Product Details

Description



Features:

• 1.8% Maximum Error Over 0° to 85
• Specifically Designed for Intake Manifold Absolute Pressure Sensing in Engine Control Systems
• Temperature Compensated Over 40 to +125
• Durable Epoxy Unibody Element or Thermoplastic (PPS) Surface Mount Package



Application

• Manifold Sensing for Automotive Systems
• Ideally suited for Microprocessor or Microcontroller Based Systems
• Also Ideal for NonAutomotive Applications



Specifications

Rating Symbol Value Unit
Maximum Pressure (P1 > P2)
Pmax 400
kPa
Storage Temperature Tstg 40° to +125°
Operating Temperature TA 40° to +125°
NOTE: Exposure beyond the specified limits may cause permanent damage or degradation to the device.


Description

The Motorola MPX4100A/MPXA4100A series Manifold Absolute Pressure (MAP) sensor for engine control is designed to sense absolute air pressure within the intake manifold. MPX4100A/MPXA4100A can be used to compute the amount of fuel required for each cylinder. The small form factor and high reliability of onchip integration makes the Motorola MAP sensor a logical and economical choice for automotive system designers.

The MPX4100A/MPXA4100A series piezoresistive transducer is a stateoftheart, monolithic, signal conditioned, silicon pressure sensor. MPX4100A/MPXA4100A combine advanced micromachining techniques, thin film metallization, and bipolar semiconductor processing to provide an accurate, high level analog output signal that is proportional to applied pressure.




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