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MPX2100AP

Description
ABSOLUTE, PEIZORESISTIVE PRESSURE SENSOR, 0-14.5Psi, 1%, 0-43.50mV, THROUGH HOLE MOUNT
CategoryThe sensor    Sensor/transducer   
File Size139KB,10 Pages
ManufacturerMotorola ( NXP )
Websitehttps://www.nxp.com
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MPX2100AP Overview

ABSOLUTE, PEIZORESISTIVE PRESSURE SENSOR, 0-14.5Psi, 1%, 0-43.50mV, THROUGH HOLE MOUNT

MPX2100AP Parametric

Parameter NameAttribute value
MakerMotorola ( NXP )
Reach Compliance Codeunknow
Maximum accuracy(%)1%
Other featuresTEMPERATURE COMPENSATED
body width8 mm
body height28.7 mm
Body length or diameter29.46 mm
Linearity(%)1 %
Installation featuresTHROUGH HOLE MOUNT
Nominal offset0MV
Maximum working current6 mA
Maximum operating temperature125 °C
Minimum operating temperature-40 °C
Output range0-40mV
Output typeANALOG VOLTAGE
port typeBARBED
Maximum pressure range14.5 Psi
Minimum pressure range
Pressure sensing modeABSOLUTE
Response time1000 µs
Sensitivity (mV/V)0.4 mV/V
Sensor/Transducer TypePRESSURE SENSOR,PIEZORESISTIVE
Maximum supply voltage16 V
Minimum supply voltage10 V
surface mountNO
Termination typeSOLDER
MOTOROLA
SEMICONDUCTOR TECHNICAL DATA
Order this document
by MPX2100/D
100 kPa
On-Chip Temperature
Compensated & Calibrated
Silicon Pressure Sensors
MPX2100
MPX2101
SERIES
Motorola Preferred Device
The MPX2100 and MPX2101 series device is a silicon piezoresistive pressure sensors
providing a highly accurate and linear voltage output — directly proportional to the
applied pressure. The sensor is a single, monolithic silicon diaphragm with the strain
gauge and a thin–film resistor network integrated on–chip. The chip is laser trimmed for
precise span and offset calibration and temperature compensation.
Features
Temperature Compensated Over 0°C to + 85°C
Unique Silicon Shear Stress Strain Gauge
Easy to Use Chip Carrier Package Options
Available in Absolute, Differential and Gauge Configurations
Ratiometric to Supply Voltage
• ±
0.25% Linearity (MPX2100D)
Application Examples
Pump/Motor Controllers
Robotics
Level Indicators
Medical Diagnostics
Pressure Switching
Barometers
Altimeters
Figure 1 illustrates a block diagram of the internal circuitry on the stand–alone
pressure sensor chip.
VS
3
THIN FILM
TEMPERATURE
COMPENSATION
AND
CALIBRATION
CIRCUITRY
0 to 100 kPa (0 to 14.5 psi)
40 mV FULL SCALE SPAN
(TYPICAL)
BASIC CHIP
CARRIER ELEMENT
CASE 344–15, STYLE 1
DIFFERENTIAL
PORT OPTION
CASE 344C–01, STYLE 1
NOTE: Pin 1 is the notched pin.
X–ducer
SENSING
ELEMENT
2
4
Vout+
PIN NUMBER
Vout–
1
2
Gnd
+Vout
3
4
VS
–Vout
1
GND
Figure 1. Temperature Compensated Pressure Sensor Schematic
VOLTAGE OUTPUT versus APPLIED DIFFERENTIAL PRESSURE
The differential voltage output of the X–ducer is directly proportional to the differential
pressure applied.
The absolute sensor has a built–in reference vacuum. The output voltage will decrease
as vacuum, relative to ambient, is drawn on the pressure (P1) side.
The output voltage of the differential or gauge sensor increases with increasing
pressure applied to the pressure (P1) side relative to the vacuum (P2) side. Similarly,
output voltage increases as increasing vacuum is applied to the vacuum (P2) side
relative to the pressure (P1) side.
Preferred
devices are Motorola recommended choices for future use and best overall value.
Senseon and X–ducer are trademarks of Motorola, Inc.
REV 6
Motorola Sensor Device Data
©
Motorola, Inc. 1997
1

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