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AD587LQ 数据表(PDF) 7 Page - Analog Devices

部件名 AD587LQ
功能描述  High Precision 10 V Reference
Download  12 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

AD587LQ 数据表(HTML) 7 Page - Analog Devices

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REV. F
AD587
–7–
NEGATIVE REFERENCE VOLTAGE FROM AN AD587
The AD587 can be used to provide a precision –10.000 V output
as shown in Figure 11. The +VIN pin is tied to at least a +3.5 V
supply, the output pin is grounded, and the AD587 ground pin is
connected through a resistor, RS, to a –15 V supply. The –10 V
output is now taken from the ground pin (Pin 4) instead of
VOUT. It is essential to arrange the output load and the supply
resistor RS so that the net current through the AD587 is between
2.5 mA and 10.0 mA. The temperature characteristics and long-
term stability of the device will be essentially the same as that of
a unit used in the standard +10 V output configuration.
2
6
4
GND
AD587
VIN
VOUT
3.5V
→26V
1nF
RS
–15V
←IL
–10V
2.5mA <
– IL < 10mA
5V
RS
Figure 11. AD587 as a Negative 10 V Reference
USING THE AD587 WITH CONVERTERS
The AD587 is an ideal reference for a wide variety of 8-, 12-,
14-, and 16-bit ADCs and DACs. Several representative examples
follow.
10 V Reference with Multiplying CMOS DACs or ADCs
The AD587 is ideal for applications with 10-bit and 12-bit
multiplying CMOS DACs. In the standard hookup, as shown in
Figure 12, the AD587 is paired with the AD7545 12-bit multi-
plying DAC and the AD711 high speed BiFET op amp. The
amplifier DAC configuration produces a unipolar 0 V to –10 V
output range. Bipolar output applications and other operating
details can be found in the individual product data sheets.
AD587
GND
VOUT
VIN
AD711K
0.1 F
–15V
0 TO
10V
0.1 F
+15V
OUT1
AGND
DGND
DB11–DB0
C1
33pF
R2
RFB
+15V
VDD
AD7545K
VREF
10k
VOUT
TRIM
+15V
0.1 F
Figure 12. Low Power 12-Bit CMOS DAC Application
The AD587 can also be used as a precision reference for multi-
ple DACs. Figure 13 shows the AD587, the AD7628 dual DAC,
and the AD712 dual op amp hooked up for single-supply opera-
tion to produce 0 V to –10 V outputs. Because both DACs are
on the same die and share a common reference and output
op amps, the DAC outputs will exhibit similar gain TCs.
VOUTB =
0 TO – 10V
AD587
GND
VIN
AD712
+15V
OUT A
DGND
VOUT
+15V
AGND
DAC A
DB0
DB7
DATA
INPUTS
OUT B
DAC B
18
RFB B
RFB A
VREFA
VOUTA =
0 TO – 10V
AD7628
VREFB
0.1 F
Figure 13. AD587 as a 10 V Reference for a CMOS Dual DAC
Precision Current Source
The design of the AD587 allows it to be easily configured as a
current source. By choosing the control resistor RC in Figure 14,
the user can vary the load current from the quiescent current
(2 mA typically) to approximately 10 mA.
2
6
4
GND
AD587
VIN
VOUT
+VIN
RC
500
MIN
IL =
+ I BIAS
10V
RC
Figure 14. Precision Current Source


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