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ADS774KP 参数 Datasheet PDF下载

ADS774KP图片预览
型号: ADS774KP
PDF下载: 下载PDF文件 查看货源
内容描述: 微处理器兼容采样CMOS模拟数字转换器 [Microprocessor-Compatible Sampling CMOS ANALOG-to-DIGITAL CONVERTER]
分类和应用: 转换器模数转换器微处理器光电二极管
文件页数/大小: 13 页 / 415 K
品牌: BB [ BURR-BROWN CORPORATION ]
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connected either to Pin 9 (Analog Common) for unipolar  
operation, or to Pin 8 (2.5V Ref Out), or the external  
reference, for bipolar operation. Full-scale and offset adjust-  
ments are described below.  
+VCC  
Unipolar  
Offset  
Adjust  
Full-Scale  
Adjust  
R1  
R2  
100Ω  
100kΩ  
The input impedance of the ADS774 is typically 50kin the  
20V ranges and 12kin the 10V ranges. This is signifi-  
cantly higher than that of traditional ADC774 architectures,  
reducing the load on the input source in most applications.  
10 Ref In  
ADS774  
100kΩ  
–VCC  
2.5V  
8
Ref Out  
100Ω  
R3  
12 Bipolar Offset  
INPUT STRUCTURE  
10V  
Range  
Figure 12 shows the resistor divider input structure of the  
ADS774. Since the input is driving a capacitor in the CDAC  
during acquisition, the input is looking into a high imped-  
ance node as compared with traditional ADC774 architec-  
tures, where the resistor divider network looks into a com-  
parator input node at virtual ground.  
13  
14  
9
Analog  
Input  
20V  
Range  
To understand how this circuit works, it is necessary to  
know that the input range on the internal sampling capacitor  
is from 0V to +3.33V, and the analog input to the ADS774  
must be converted to this range. Unipolar 20V range can be  
used as an example of how the divider network functions. In  
20V operation, the analog input goes into pin 14. Pin 13 is  
left unconnected and pin 12 is connected to pin 9, analog  
common. From Figure 12, it is clear that the input to the  
capacitor array will be the analog input voltage on pin 14  
divided by the resistor network (42k+ 42k|| 10.5k). A  
20V input at pin 14 is divided to 3.33V at the capacitor  
array, while a 0V input at pin 14 gives 0V at the capacitor  
array.  
Analog  
Common  
FIGURE 10. Unipolar Configuration.  
Full-Scale Adjust  
R2  
10 Ref In  
100Ω  
ADS774  
2.5V  
8
Ref Out  
100Ω  
R1  
Bipolar  
Offset  
Adjust  
12 Bipolar Offset  
The main effect of the 10kinternal resistor on pin 12 is to  
provide the same offset adjust response as that of traditional  
ADC774 architectures without changing the external trimpot  
values.  
13  
14  
9
Analog  
Input  
10V  
Range  
20V  
Range  
SINGLE SUPPLY OPERATION  
The ADS774 is designed to operate from a single +5V  
supply, and handle all of the unipolar and bipolar input  
ranges, in either the Control Mode or the Emulation Mode as  
described above. Pin 7 is not connected internally. This is  
Analog  
Common  
FIGURE 11. Bipolar Configuration.  
The +5V supply should be bypassed with a 10µF tantalum  
capacitor located close to the converter to promote noise-  
free operations, as shown in Figure 2. Noise on the power  
supply lines can degrade the converter’s performance. Noise  
and spikes from a switching power supply are especially  
troublesome.  
42k  
Pin 14  
20V Range  
21kΩ  
Pin 13  
Capacitor  
Array*  
10V Range  
21kΩ  
RANGE CONNECTIONS  
The ADS774 offers four standard input ranges: 0V to +10V,  
0V to +20V, ±5V, or ±10V. Figures 10 and 11 show the  
necessary connections for each of these ranges, along with  
the optional gain and offset trim circuits. If a 10V input  
range is required, the analog input signal should be con-  
nected to pin 13 of the converter. A signal requiring a 20V  
range is connected to pin 14. In either case the other pin of  
the two is left unconnected. Pin 12 (Bipolar Offset) is  
10.5kΩ  
Pin 12  
Bipolar  
Offset  
10kΩ  
*10pF when sampling  
FIGURE 12. ADS774 Input Structure.  
®
ADS774  
12