AD5543BRM Analog Devices Inc, AD5543BRM Datasheet - Page 11

IC DAC 16BIT SRLIN/CUR OUT 8MSOP

AD5543BRM

Manufacturer Part Number
AD5543BRM
Description
IC DAC 16BIT SRLIN/CUR OUT 8MSOP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD5543BRM

Rohs Status
RoHS non-compliant
Design Resources
Versatile High Precision Programmable Current Sources Using DACs, Op Amps, and MOSFET Transistors (CN0151)
Settling Time
500ns
Number Of Bits
16
Data Interface
Serial
Number Of Converters
1
Voltage Supply Source
Single Supply
Power Dissipation (max)
55µW
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-MSOP, Micro8™, 8-uMAX, 8-uSOP,

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APPLICATIONS INFORMATION
STABILITY
In the I-to-V configuration, the I
node of the op amp must be connected as close as possible to
each other, and proper PCB layout technique must be employed.
Because every code change corresponds to a step function, gain
peaking may occur if the op amp has limited GBP and there is
excessive parasitic capacitance at the inverting node.
An optional compensation capacitor, C1, can be added for
stability, as shown in Figure 20. C1 should be found empirically,
but 20 pF is generally adequate for the compensation.
POSITIVE VOLTAGE OUTPUT
To achieve the positive voltage output, an applied negative
reference to the input of the DAC is preferred over the output
inversion through an inverting amplifier because of the tolerance
errors of the resistors. To generate a negative reference, the
reference can be level-shifted by an op amp such that the V
and GND pins of the reference become the virtual ground and
−2.5 V, respectively (see Figure 21).
Figure
V
REF
1/2AD8620
U4
20
. Optional Compensation Capacitor for Gain Peaking Prevention
V+
V–
+5V
–5V
Figure
U1
V
REF
AD5543/AD5553
GND
V
V
V
DD
21
DD
ADR03
OUT
–2.5V
GND
. Positive Voltage Output Configuration
V
U3
IN
R
AD5543/AD5553
FB
U1
V
REF
+5V
GND
V
DD
I
OUT
OUT
R
C1
FB
of the DAC and the inverting
I
U2
OUT
C1
AD8628
U2
1/2AD8628
0V < V
O
< +2.5V
V
O
V
O
OUT
Rev. E | Page 11 of 20
BIPOLAR OUTPUT
The AD5543/AD5553 are inherently 2-quadrant multiplying
DACs. That is, they can easily be set up for unipolar output
operation. The full-scale output polarity is the inverse of the
reference input voltage.
In some applications, it may be necessary to generate the full
4-quadrant multiplying capability or a bipolar output swing,
which is easily accomplished by using an additional U4 external
amplifier configured as a summing amplifier (see Figure 22). In
this circuit, the second amplifier, U4, provides a gain of 2 that
increases the output span magnitude to 5 V. Biasing the external
amplifier with a 2.5 V offset from the reference voltage results in a
full 4-quadrant multiplying circuit. The transfer equation of this
circuit shows that both negative and positive output voltages are
created as the input data (D) is incremented from code zero
(V
+2.5 V).
For the AD5543, the resistance tolerance becomes the dominant
error of which users should be aware.
+5V
OUT
V
V
V
ADR03
= −2.5 V) to midscale (V
OUT
OUT
OUT
GND
V
U3
= (D/32,768 − 1) × V
= (D/16,384 − 1) × V
Figure
IN
U1
AD5553 ONLY
+5V
V
V
GND
22
DD
REF
. 4-Quadrant Multiplying Application Circuit
R
FB
I
OUT
C1
U2
REF
REF
OUT
1/2AD8620
(AD5543)
(AD5553)
= 0 V) to full-scale (V
10kΩ ± 0.01%
5kΩ ± 0.01%
AD5543/AD5553
R1
R3
–2.5V < V
10kΩ ± 0.01%
U4
R2
1/2AD8620
+5V
V–
V+
–5V
C2
O
< +2.5V
OUT
V
=
O
(3)
(4)

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