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AD590JCPZ-RL7 PDF预览

AD590JCPZ-RL7

更新时间: 2022-05-08 23:54:20
品牌 Logo 应用领域
亚德诺 - ADI 传感器温度传感器
页数 文件大小 规格书
16页 411K
描述
2-Terminal IC Temperature Transducer

AD590JCPZ-RL7 数据手册

 浏览型号AD590JCPZ-RL7的Datasheet PDF文件第5页浏览型号AD590JCPZ-RL7的Datasheet PDF文件第6页浏览型号AD590JCPZ-RL7的Datasheet PDF文件第7页浏览型号AD590JCPZ-RL7的Datasheet PDF文件第9页浏览型号AD590JCPZ-RL7的Datasheet PDF文件第10页浏览型号AD590JCPZ-RL7的Datasheet PDF文件第11页 
AD590  
Data Sheet  
NONLINEARITY  
Nonlinearity as it applies to the AD590 is the maximum  
deviation of current over temperature from a best-fit straight  
line. The nonlinearity of the AD590 over the −55°C to +150°C  
range is superior to all conventional electrical temperature  
sensors such as thermocouples, RTDs, and thermistors. Figure 12  
shows the nonlinearity of the typical AD590K from Figure 11.  
2
0
1.6  
0.8  
–2  
–55  
0
100  
150  
0.8°C MAX  
TEMPERATURE (°C)  
Figure 14. Typical 2-Trim Accuracy  
0
0.8°C  
MAX  
0.8°C  
MAX  
VOLTAGE AND THERMAL ENVIRONMENT EFFECTS  
The power supply rejection specifications show the maximum  
expected change in output current vs. input voltage changes.  
The insensitivity of the output to input voltage allows the use of  
unregulated supplies. It also means that hundreds of ohms of  
resistance (such as a CMOS multiplexer) can be tolerated in  
series with the device.  
–0.8  
–1.6  
–55  
150  
TEMPERATURE (°C)  
Figure 12. Nonlinearity  
Figure 13 shows a circuit in which the nonlinearity is the major  
contributor to error over temperature. The circuit is trimmed  
by adjusting R1 for a 0 V output with the AD590 at 0°C. R2 is  
then adjusted for 10 V output with the sensor at 100°C. Other  
pairs of temperatures can be used with this procedure as long as  
they are measured accurately by a reference sensor. Note that  
for 15 V output (150°C), the V+ of the op amp must be greater  
than 17 V. Also, note that V− should be at least −4 V; if V− is  
ground, there is no voltage applied across the device.  
15V  
It is important to note that using a supply voltage other than 5 V  
does not change the PTAT nature of the AD590. In other words,  
this change is equivalent to a calibration error and can be  
removed by the scale factor trim (see Figure 11).  
The AD590 specifications are guaranteed for use in a low  
thermal resistance environment with 5 V across the sensor.  
Large changes in the thermal resistance of the sensors environment  
change the amount of self-heating and result in changes in the  
output, which are predictable but not necessarily desirable.  
The thermal environment in which the AD590 is used  
determines two important characteristics: the effect of self-  
heating and the response of the sensor with time. Figure 15 is a  
model of the AD590 that demonstrates these characteristics.  
R1  
2k  
R2  
5kΩ  
35.7kΩ  
97.6kΩ  
AD581  
30pF  
T
θ
T
θ
J
JC  
C
CA  
27kΩ  
100mV/°C  
= 100mV/°C  
OP177  
V
+
T
P
T
A
AD590  
C
C
C
CH  
V–  
Figure 15. Thermal Circuit Model  
Figure 13. 2-Temperature Trim  
Rev. G | Page 8 of 16  
 
 
 
 
 

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