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MPX50GVSX PDF预览

MPX50GVSX

更新时间: 2024-11-10 22:07:31
品牌 Logo 应用领域
摩托罗拉 - MOTOROLA /
页数 文件大小 规格书
10页 190K
描述
0 to 50 kPa (0-7.25 psi) 60 mV FULL SCALE SPAN (TYPICAL)

MPX50GVSX 技术参数

生命周期:ObsoleteReach Compliance Code:unknown
风险等级:5.82最大精度 (%):0.25%
主体宽度:16.25 mm主体高度:19.05 mm
主体长度或直径:27.94 mm线性度 (%):0.25 %
安装特点:THROUGH HOLE MOUNT标称偏移:20MV
最大工作电流:6 mA最高工作温度:125 °C
最低工作温度:-40 °C输出范围:20-80mV
输出类型:ANALOG VOLTAGE封装形状/形式:ROUND
端口类型:BARBED最大压力范围:7.25 Psi
最小压力范围:压力传感模式:GAGE
响应时间:1000 µs灵敏度(mV / V):1.2 mV/V
传感器/换能器类型:PRESSURE SENSOR,PIEZORESISTIVE最大供电电压:6 V
最小供电电压:3 V表面贴装:NO
端接类型:SOLDER

MPX50GVSX 数据手册

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Order this document  
by MPX50/D  
SEMICONDUCTOR TECHNICAL DATA  
The MPX50 silicon piezoresistive pressure sensor provides 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 50 kPa (07.25 psi)  
60 mV FULL SCALE SPAN  
(TYPICAL)  
Features  
Low Cost  
Patented Silicon Shear Stress Strain Gauge Design  
Ratiometric to Supply Voltage  
Easy to Use Chip Carrier Package Options  
60 mV Span (Typ)  
BASIC CHIP  
CARRIER ELEMENT  
CASE 344–15, STYLE 1  
Differential and Gauge Options  
±0.25% (Max) Linearity  
Application Examples  
Air Movement Control  
Environmental Control Systems  
Level Indicators  
Leak Detection  
Medical Instrumentation  
Industrial Controls  
DIFFERENTIAL  
PORT OPTION  
CASE 344C–01, STYLE 1  
Pneumatic Control Systems  
Robotics  
Figure 1 shows a schematic of the internal circuitry on the stand–alone pressure  
sensor chip.  
NOTE: Pin 1 is the notched pin.  
PIN 3  
+ V  
PIN NUMBER  
S
1
2
Gnd  
+V  
3
4
V
S
PIN 2  
+ V  
–V  
out  
out  
out  
X–ducer  
PIN 4  
– V  
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 output voltage of the differential or gauge sensor increases with increasing  
pressure applied to the pressure side (P1) relative to the vacuum side (P2). Similarly,  
output voltage increases as increasing vacuum is applied to the vacuum side (P2)  
relative to the pressure side (P1).  
Senseon and X–ducer are trademarks of Motorola, Inc.  
REV 5  
Motorola, Inc. 1997  

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