参数资料
型号: AD660
厂商: Analog Devices, Inc.
英文描述: Monolithic 16-Bit Serial/Byte DACPORT(16位单片D/A转换器)
中文描述: 单片16位串行/字节DACPORT(16位单片的D / A转换器)
文件页数: 8/12页
文件大小: 435K
代理商: AD660
AD660
REV. A
–8–
Figure 5 shows the AD660 using the AD586 precision 5 V refer-
ence in the bipolar configuration. The highest grade AD586MN
is specified with a drift of 2 ppm/
°
C which is a 7.5
×
improve-
ment over the AD660’s internal reference. This circuit includes
two optional potentiometers and one optional resistor that can
be used to adjust the gain, offset and bipolar zero errors in a
manner similar to that described in the BIPOLAR CONFIGU-
RATION section. Use –5.000000 V and +4.999847 as the out-
put values.
The AD660 can also be used with the AD587 10 V reference,
using the same configuration shown in Figure 5 to produce a
±
10 V output. The highest grade AD587LR, N is specified at
5 ppm/
°
C, which is a 3
×
improvement over the AD660’s inter-
nal reference.
Figure 6 shows the AD660 using the AD680 precision
±
10 V
reference, in the unipolar configuration. The highest grade
AD688BQ is specified with a temperature coefficient of
1.5 ppm/
°
C. The
±
10 V output is also ideal for providing pre-
cise biasing for the offset trim resistor R4.
16-BIT LATCH
16-BIT DAC
CLOGIC
+10V REF
16-BIT LATCH
20
24
22
21
5
11
12
16
15
14
13
17
18
19
23
AD660
10k
10.05k
10k
HBE
LBE
CS
SIN/
MSB/LSB/
DB7
S
OUT
SPAN/
BIP OFF
V
OUT
AGND
REF OUT
REF IN
LDAC
CLR
SER
DGND
–V
EE
+V
CC
+V
LL
1
2
3
4
OUTPUT
R2
50
5
6
4
2
AD586
GND
TRIM
V
OUT
+V
CC
R2
10k
R1
100
UNI/BIP CLR/
Figure 5. Using the AD660 with the AD586 5 V Reference
16-BIT LATCH
16-BIT DAC
CONTROL
LOGIC
+10V REF
16-BIT LATCH
20
24
22
21
5
11
12
15
14
13
17
18
19
23
AD660
10k
10.05k
10k
HBE
LBE
CS
SIN/
DB0
DB7
S
OUT
SPAN/
BIP OFF
V
OUT
AGND
REF OUT
REF IN
LDAC
CLR
SER
–V
EE
+V
CC
+V
LL
1
2
3
4
MSB/LSB/
DB1
OUTPUT
0 TO +10V
R4
10k
R2
100
R3
10k
R1
100
+V
CC
–V
EE
R1
R2
R5
R6
R3
AD688
A3
A1
A4
A2
R4
R
S
1
15
14
2
16
11 13
3
4
6
7
8
9
12
5
10
UNI/BIP CLR/
16
DGND
Figure 6. Using the AD660 with the AD688 High Precision
±
10 V Reference
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