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MPX700 PDF预览

MPX700

更新时间: 2024-01-12 09:24:00
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摩托罗拉 - MOTOROLA /
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8页 179K
描述
0 to 700 kPa (0-100 psi) 60 mV FULL SCALE SPAN (TYPICAL)

MPX700 数据手册

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by MPX700/D  
SEMICONDUCTOR TECHNICAL DATA  
The MPX700 series device is a silicon piezoresistive pressure sensor providing a very  
accurate and linear voltage output — directly proportional to the applied pressure. This  
standard, low cost, uncompensated sensor permits manufacturers to design and add  
their own external temperature compensating and signal conditioning networks.  
Compensation techniques are simplified because of the predictability of Motorola’s single  
element strain gauge design.  
0 to 700 kPa (0100 psi)  
60 mV FULL SCALE SPAN  
(TYPICAL)  
Features  
Low Cost  
Patented, Silicon Shear Stress Strain Gauge Design  
Linearity to ± 0.5% (Max) Linearity  
Easy to Use Chip Carrier Package Options  
Ratiometric to Supply Voltage  
60 mV Span (Typ)  
BASIC CHIP  
CARRIER ELEMENT  
CASE 344–15, STYLE 1  
Absolute, Differential and Gauge Options  
Application Examples  
Environmental Control Systems  
Pneumatic Control Systems  
Appliances  
Automotive Performance Controls  
Medical Instrumentation  
Industrial Controls  
DIFFERENTIAL  
PORT OPTION  
Figure 1 illustrates a schematic of the internal circuitry on the stand–alone pressure  
sensor chip.  
CASE 344C–01, STYLE 1  
PIN 3  
+ V  
S
NOTE: Pin 1 is the notched pin.  
PIN 2  
+ V  
out  
PIN NUMBER  
X–ducer  
1
2
Gnd  
+V  
3
4
V
S
PIN 4  
– V  
–V  
out  
out  
out  
PIN 1  
Figure 1. Uncompensated 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. This sensor is designed for applications where P1 is  
always greater than, or equal to P2.  
Senseon and X–ducer are trademarks of Motorola, Inc.  
REV 5  
Motorola, Inc. 1997  

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