EVAL-AD5292EBZ Analog Devices Inc, EVAL-AD5292EBZ Datasheet - Page 28

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EVAL-AD5292EBZ

Manufacturer Part Number
EVAL-AD5292EBZ
Description
EVALUATION BOARD
Manufacturer
Analog Devices Inc
Datasheet

Specifications of EVAL-AD5292EBZ

Main Purpose
Digital Potentiometer
Embedded
Yes
Utilized Ic / Part
AD5292
Primary Attributes
1 Channel, 256 Position
Secondary Attributes
SPI Interface
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
AD5291/AD5292
APPLICATIONS INFORMATION
HIGH VOLTAGE DAC
The AD5292 can be configured as a high voltage DAC, with
output voltage as high as 33 V. The circuit is shown in Figure 70.
The output is
where D is the decimal code from 0 to 1023.
PROGRAMMABLE VOLTAGE SOURCE WITH
BOOSTED OUTPUT
For applications that require high current adjustments such as a
laser diode or tunable laser, a boosted voltage source can be
considered; see Figure 71.
In this circuit, the inverting input of the op amp forces V
be equal to the wiper voltage set by the digital potentiometer.
The load current is then delivered by the supply via the N-channel
FET (U3). The N-Channel FET power handling must be adequate
to dissipate (V
maximum of 100 mA with a 33 V supply.
ADR512
R
V
BIAS
OUT
V
DD
AD5292
(
D
D1
Figure 71. Programmable Boosted Voltage Source
U1
)
R
=
1
IN
V
1024
IN
B
− V
A
D
AD8512
V–
Figure 70. High Voltage DAC
OUT
×
W
V+
V
R
1
DD
OP184
2
) × I
2 .
U1A
V
L
U2
×
power. This circuit can source a
U3 2N7002
1
+
U2
AD5292
R
R
B
2
1
20kΩ
SIGNAL
LD
C
C
U1B
AD8512
R
V
BIAS
OUT
I
L
OUT
V
Rev. D | Page 28 of 32
to
OUT
(7)
HIGH ACCURACY DAC
It is possible to configure the AD5292 as a high accuracy DAC
by optimizing the resolution of the device over a specific
reduced voltage range. This is achieved by placing external
resistors on either side of the RDAC, as shown in Figure 72.
The improved ±1% R-Tolerance specification greatly reduces
error associated with matching to discrete resistors.
VARIABLE GAIN INSTRUMENTATION AMPLIFIER
The
the ADG1207, as shown in Figure 73, make an excellent
instrumentation amplifier for use in data acquisition systems.
The data acquisition system’s low distortion and low noise
enable it to condition signals in front of a variety of ADCs.
The gain can be calculated by using Equation 9.
AD8221
V
G
OUT
+V
+V
–V
–V
(
D
IN1
IN4
IN1
IN4
)
(
=
D
1
)
+
in conjunction with the AD5291 and AD5292 and
=
U1
AD5292
ADG1207
(
R
D
Figure 73. Data Acquisition System
1
Figure 72. Optimizing Resolution
20kΩ
1024
R
49
+
3
R
R
R
4 .
+
1
2
3
B
(
V
(
DD
)
(
1024
D
±1%
×
1024
R
D
AB
)
×
AD5292
1024
R
)
AB
OP1177
×
V+
)
U2
V–
R
×
V
AB
V
DD
DD
+
R
AD8221
3
V
V
DD
SS
V
OUT
V
OUT
(8)
(9)

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