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ADS7844NB 参数 Datasheet PDF下载

ADS7844NB图片预览
型号: ADS7844NB
PDF下载: 下载PDF文件 查看货源
内容描述: 12位8通道串行输出采样模拟数字转换器 [12-Bit, 8-Channel Serial Output Sampling ANALOG-TO-DIGITAL CONVERTER]
分类和应用: 转换器模数转换器光电二极管
文件页数/大小: 14 页 / 205 K
品牌: BB [ BURR-BROWN CORPORATION ]
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ANALOG INPUT  
THEORY OF OPERATION  
Figure 2 shows a block diagram of the input multiplexer on  
the ADS7844. The differential input of the converter is  
derived from one of the eight inputs in reference to the COM  
pin or four of the eight inputs. Table I and Table II show the  
relationship between the A2, A1, A0, and SGL/DIF control  
bits and the configuration of the analog multiplexer. The  
control bits are provided serially via the DIN pin, see the  
Digital Interface section of this data sheet for more details.  
The ADS7844 is a classic successive approximation register  
(SAR) analog-to-digital (A/D) converter. The architecture is  
based on capacitive redistribution which inherently includes  
a sample/hold function. The converter is fabricated on a  
0.6µs CMOS process.  
The basic operation of the ADS7844 is shown in Figure 1.  
The device requires an external reference and an external  
clock. It operates from a single supply of 2.7V to 5.25V. The  
external reference can be any voltage between 100mV and  
+VCC. The value of the reference voltage directly sets the  
input range of the converter. The average reference input  
current depends on the conversion rate of the ADS7844.  
When the converter enters the hold mode, the voltage  
difference between the +IN and –IN inputs (see Figure 2) is  
captured on the internal capacitor array. The voltage on the  
–IN input is limited between –0.2V and 1.25V, allowing the  
input to reject small signals which are common to both the  
+IN and –IN input. The +IN input has a range of –0.2V to  
+VCC + 0.2V.  
The analog input to the converter is differential and is  
provided via an eight-channel multiplexer. The input can be  
provided in reference to a voltage on the COM pin (which  
is generally ground) or differentially by using four of the  
eight input channels (CH0 - CH7). The particular configura-  
tion is selectable via the digital interface.  
The input current on the analog inputs depends on the  
conversion rate of the device. During the sample period, the  
source must charge the internal sampling capacitor (typi-  
A2  
A1  
A0  
CH0 CH1 CH2 CH3 CH4 CH5 CH6 CH7  
A2  
A1  
A0 CH0 CH1 CH2 CH3 CH4 CH5 CH6 CH7 COM  
0
0
0
0
1
1
1
1
0
0
1
1
0
0
1
1
0
1
0
1
0
1
0
1
+IN  
–IN  
0
1
0
1
0
1
0
1
0
0
0
0
1
1
1
1
0
0
1
1
0
0
1
1
+IN  
–IN  
–IN  
–IN  
–IN  
–IN  
–IN  
–IN  
–IN  
+IN  
–IN  
+IN  
+IN  
–IN  
+IN  
+IN  
–IN  
–IN  
+IN  
+IN  
–IN  
+IN  
+IN  
–IN  
+IN  
+IN  
–IN  
+IN  
+IN  
+IN  
TABLE I. Single-Ended Channel Selection (SGL/DIF HIGH).  
TABLE II. Differential Channel Control (SGL/DIF LOW).  
+2.7V to +5V  
ADS7844  
+VCC 20  
1µF to 10µF  
0.1µF  
1
2
3
4
5
6
7
8
9
CH0  
CH1  
CH2  
CH3  
CH4  
CH5  
CH6  
CH7  
COM  
Serial/Conversion Clock  
Chip Select  
DCLK 19  
CS 18  
Single-ended  
or differential  
analog inputs  
Serial Data In  
DIN 17  
BUSY 16  
DOUT 15  
GND 14  
GND 13  
+VCC 12  
VREF 11  
Serial Data Out  
10 SHDN  
1µF to 10µF  
FIGURE 1. Basic Operation of the ADS7844.  
®
ADS7844  
9