Motorola Pressure Sensors 9

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Part RoHS Manufacturer Sensors or Transducers Type Mounting Feature Output Type Package Shape or Style Output Range Package Body Material Maximum Supply Voltage Pressure Sensing Mode Port Type No. of Bits Sensitivity (mV/V) Body Length/Diameter Body Width Maximum Accuracy (%) Linearity (%) Body Height Minimum Supply Voltage Maximum Operating Temperature Response Time Minimum Operating Temperature Terminal Finish Termination Type Output Interface Type Maximum Operating Current Additional Features Maximum Pressure Range Housing JESD-609 Code Minimum Pressure Range Nominal Offset

MPX5010DP1

Motorola

PRESSURE SENSOR,PIEZORESISTIVE

THROUGH HOLE MOUNT

ANALOG VOLTAGE

ROUND

0.20-4.70V

5.25 V

DIFFERENTIAL

STRAIGHT

450 mV/V

29.46 mm

10.67 inch

5

5

28.7 mm

4.75 V

125 Cel

1000 us

-40 Cel

SOLDER

10 mA

TEMPERATURE COMPENSATED, SIGNAL CONDITIONED

1.45 Psi

PLASTIC

0 Psi

0.20V

MPXAZ6115AC6U

Motorola

PRESSURE SENSOR,PIEZORESISTIVE

SURFACE MOUNT

ANALOG VOLTAGE

SQUARE

0.20-4.70V

5.25 V

ABSOLUTE

STRAIGHT

45.9 mV/V

10.66 mm

10.66 inch

1.5

1.5

12.95 mm

4.75 V

125 Cel

1000 us

-40 Cel

SOLDER

10 mA

TEMPERATURE COMPENSATED, SIGNAL CONDITIONED

16.67 Psi

PLASTIC

2.17 Psi

0.20V

MPXAZ6115A6U

Motorola

PRESSURE SENSOR,PIEZORESISTIVE

SURFACE MOUNT

ANALOG VOLTAGE

SQUARE

0.20-4.70V

5.25 V

ABSOLUTE

HOLE

45.9 mV/V

10.66 mm

10.66 inch

1.5

1.5

5.61 mm

4.75 V

125 Cel

1000 us

-40 Cel

SOLDER

10 mA

TEMPERATURE COMPENSATED, SIGNAL CONDITIONED

16.67 Psi

PLASTIC

2.17 Psi

0.20V

MPXM2102GST1

Motorola

PRESSURE SENSOR,PIEZORESISTIVE

SURFACE MOUNT

ANALOG VOLTAGE

RECTANGULAR

0-40mV

16 V

GAGE

STRAIGHT

.4 mV/V

9.34 mm

7.31 inch

0.4

0.4

4.82 mm

10 V

125 Cel

1000 us

-40 Cel

SOLDER

6 mA

TEMPERATURE COMPENSATED

14.5 Psi

0 Psi

0MV

MPX5700GS

Motorola

PRESSURE SENSOR,PIEZORESISTIVE

THROUGH HOLE MOUNT

ANALOG VOLTAGE

0.20-4.70V

5.25 V

GAGE

BARBED

6.4 mV/V

17.9 mm

20.31 inch

2.5

2.5

4.75 V

125 Cel

1000 us

-40 Cel

SOLDER

10 mA

TEMPERATURE COMPENSATED, SIGNAL CONDITIONED

101.52 Psi

PLASTIC

0 Psi

0.20V

MPXA4115A6T1

Motorola

PRESSURE SENSOR,PIEZORESISTIVE

SURFACE MOUNT

ANALOG VOLTAGE

SQUARE

0.20-4.80V

5.35 V

ABSOLUTE

BARBED

45.9 mV/V

10.66 mm

10.66 inch

1.5

1.5

5.61 mm

4.85 V

125 Cel

1000 us

-40 Cel

SOLDER

5.1 mA

TEMPERATURE COMPENSATED, SIGNAL CONDITIONED

16.67 Psi

PLASTIC

2.17 Psi

0.20V

MPX2053GVP

Motorola

PRESSURE SENSOR,PIEZORESISTIVE

THROUGH HOLE MOUNT

ANALOG VOLTAGE

0-40mV

16 V

GAGE

BARBED

.8 mV/V

29.46 mm

8 inch

0.4

0.4

28.7 mm

10 V

125 Cel

1000 us

-40 Cel

SOLDER

6 mA

TEMPERATURE COMPENSATED

7.25 Psi

0 Psi

0MV

MPXV2102DP

Motorola

PRESSURE SENSOR,PIEZORESISTIVE

SURFACE MOUNT

ANALOG VOLTAGE

SQUARE

0-40mV

16 V

DIFFERENTIAL

BARBED

.4 mV/V

12.06 mm

12.06 inch

0.4

0.4

9.65 mm

10 V

125 Cel

1000 us

-40 Cel

SOLDER

6 mA

TEMPERATURE COMPENSATED

14.5 Psi

0 Psi

0MV

MPX700DP

Motorola

PRESSURE SENSOR,PIEZORESISTIVE

THROUGH HOLE MOUNT

ANALOG VOLTAGE

ROUND

20-80mV

6 V

DIFFERENTIAL

BARBED

.08 mV/V

29.46 mm

10.67 inch

28.7 mm

3 V

125 Cel

1000 us

-40 Cel

SOLDER

6 mA

101.52 Psi

0 Psi

20MV

Pressure Sensors

Pressure sensors are electronic devices that are used to measure the pressure of gases or liquids in a variety of applications. They convert physical pressure into an electrical signal that can be measured, processed, and used for control or monitoring purposes.

Pressure sensors can be classified into two main categories: absolute pressure sensors and gauge pressure sensors. Absolute pressure sensors measure the pressure relative to a vacuum or absolute zero pressure, while gauge pressure sensors measure the pressure relative to atmospheric pressure.

Pressure sensors work based on the principle of converting pressure into an electrical signal. This can be achieved using different sensing technologies, including strain gauge, capacitive, piezoelectric, and optical sensing.

Strain gauge pressure sensors use a thin metal film that changes resistance as the pressure applied to it changes. Capacitive pressure sensors use the change in capacitance between two plates as the pressure changes. Piezoelectric pressure sensors use crystals that generate an electrical signal in response to pressure, and optical pressure sensors use the change in light transmission through a material as the pressure changes.

Pressure sensors are used in a wide range of applications, including automotive, aerospace, industrial, medical, and consumer electronics. In the automotive industry, they are used for monitoring tire pressure and engine oil pressure. In the aerospace industry, they are used for monitoring cabin pressure and fuel pressure. In the medical industry, they are used for monitoring blood pressure and respiratory pressure. In the industrial sector, they are used for process control and monitoring.