MPXAZ4100A

Features: • Resistant to high humidity and common automotive media• 1.8% Maximum Error Over 0° to 85• Specifically Designed for Intake Manifold Absolute Pressure Sensing in Engine Control Systems• Ideally Suited for Microprocessor or Microcontroller Based Systems• Tem...

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SeekIC No. : 004426468 Detail

MPXAZ4100A: Features: • Resistant to high humidity and common automotive media• 1.8% Maximum Error Over 0° to 85• Specifically Designed for Intake Manifold Absolute Pressure Sensing in Engine ...

floor Price/Ceiling Price

Part Number:
MPXAZ4100A
Supply Ability:
5000

Price Break

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

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Upload time: 2024/11/26

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Product Details

Description



Features:

• Resistant to high humidity and common automotive media
• 1.8% Maximum Error Over 0° to 85
• Specifically Designed for Intake Manifold Absolute Pressure Sensing in Engine Control Systems
• Ideally Suited for Microprocessor or Microcontroller Based Systems
• Temperature Compensated Over 40 to +125
• Durable Thermoplastic (PPS) Surface Mount Package



Application

• Manifold Sensing for Automotive 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 MPXAZ4100A series Manifold Absolute Pressure (MAP) sensor for engine control is designed to sense absolute air pressure within the intake manifold.

MPXAZ4100A 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 MPXAZ4100A series piezoresistive transducer is a stateoftheart, monolithic, signal conditioned, silicon pressure sensor. This sensor combines 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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