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AD590JRZ-REEL 参数 Datasheet PDF下载

AD590JRZ-REEL图片预览
型号: AD590JRZ-REEL
PDF下载: 下载PDF文件 查看货源
内容描述: [Analog Temperature Sensor, ANALOG TEMP SENSOR-CURRENT, 298.2uA, RECTANGULAR, SURFACE MOUNT, MS-012AA, SOIC-8]
分类和应用: 传感器换能器
文件页数/大小: 12 页 / 147 K
品牌: ADI [ ADI ]
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AD590  
Figure 14. 4 m A-to-20 m A Current Transm itter  
Figure 14 is an example of a current transmitter designed to be  
used with 40 V, 1 ksystems; it uses its full current range of  
4 mA-to-20 mA for a narrow span of measured temperatures. In  
this example the 1 µA/K output of the AD590 is amplified to  
1 mA/°C and offset so that 4 mA is equivalent to 17°C and  
20 mA is equivalent to 33°C. RT is trimmed for proper reading  
at an intermediate reference temperature. With a suitable choice  
of resistors, any temperature range within the operating limits of  
the AD590 may be chosen.  
Figure 16. DAC Set Point  
low) in 0.2°C steps. T he comparator is shown with 1°C  
hysteresis which is usually necessary to guard-band for extrane-  
ous noise; omitting the 5.1 Mresistor results in no hysteresis.  
Figure 15. Sim ple Tem perature Control Circuit  
Figure 15 is an example of a variable temperature control circuit  
(thermostat) using the AD590. RH and RL are selected to set the  
high and low limits for RSET. RSET could be a simple pot, a  
calibrated multiturn pot or a switched resistive divider. Power-  
ing the AD590 from the 10 V reference isolates the AD590 from  
supply variations while maintaining a reasonable voltage (~7 V)  
across it. Capacitor C1 is often needed to filter extraneous noise  
from remote sensors. RB is determined by the β of the power  
transistor and the current requirements of the load.  
Figure 17. AD590 Driven from CMOS Logic  
T he voltage compliance and the reverse blocking characteristic  
of the AD590 allows it to be powered directly from +5 V  
CMOS logic. T his permits easy multiplexing, switching or  
pulsing for minimum internal heat dissipation. In Figure 17 any  
AD590 connected to a logic high will pass a signal current  
through the current measuring circuitry while those connected  
to a logic zero will pass insignificant current. T he outputs used  
to drive the AD590s may be employed for other purposes, but  
the additional capacitance due to the AD590 should be taken  
into account.  
Figure 16 shows the AD590 can be configured with an 8-bit  
DAC to produce a digitally controlled set point. T his particular  
circuit operates from 0°C (all inputs high) to +51°C (all inputs  
REV. B  
–8–  
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