AD5422ACPZ-REEL Analog Devices Inc, AD5422ACPZ-REEL Datasheet - Page 28

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AD5422ACPZ-REEL

Manufacturer Part Number
AD5422ACPZ-REEL
Description
16 Bit V, I Out DAC
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD5422ACPZ-REEL

Design Resources
16-Bit Fully Isolated Output Module Using AD5422 and ADuM1401 (CN0065) Simplified 16-Bit Voltage Output and 4 mA-to-20 mA Output Solution Using AD5422 (CN0077)
Settling Time
25µs
Number Of Bits
16
Data Interface
MICROWIRE™, Serial, SPI™
Number Of Converters
1
Voltage Supply Source
Analog and Digital, Dual ±
Power Dissipation (max)
950mW
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
40-LFCSP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
AD5412/AD5422
Readback Operation
Readback mode is invoked by setting the address byte and
read address when writing to the input register (see Table 9 and
Table 11). The next write to the AD5412/AD5422 should be a
NOP command, which clocks out the data from the previously
addressed register as shown in Figure 3.
By default the SDO pin is disabled after having addressed the
AD5412/AD5422 for a read operation; a rising edge on LATCH
enables the SDO pin in anticipation of data being clocked out.
After the data has been clocked out on SDO, a rising edge on
LATCH disables (tristate) the SDO pin. To read back the data
register, for example, implement the following sequence:
1.
2.
Table 9. Read Address Decoding
Read Address
00
01
10
POWER-ON STATE
During power-on of the AD5412/AD5422, the power-on-reset
circuit ensures that all registers are loaded with zero-code. As
such, both outputs are disabled; that is, the V
are in tristate. The +V
through a 40 kΩ resistor. Therefore, if the V
are connected together, V
through a 40 kΩ resistor. Also upon power-on, internal
calibration registers are read, and the data is applied to internal
calibration circuitry. For a reliable read operation, there must be
sufficient voltage on the AV
triggered by the DV
the DV
AV
enabled, the supplies should be powered up at a rate greater
than, typically, 500 V/sec or 24 V/50 ms. If this cannot be
achieved, issue a reset command to the AD5412/AD5422 after
power-on; this performs a power-on-reset event, reading the
Table 11. Input Shift Register Contents for a Read Operation
MSB
D23
0
1
X = don’t care.
DD
Write 0x020001 to the input register. This configures the
part for read mode with the data register selected.
Follow this with a second write: a NOP condition, which is
0x000000. During this write, the data from the register is
clocked out on the SDO line.
are powered up simultaneously or the internal DV
CC
D22
0
supply after the AV
D21
0
CC
SENSE
power supply powering up. Powering up
OUT
D20
0
pin is internally connected to ground
DD
Function
Read status register
Read data register
Read control register
DD
is effectively clamped to ground
supply when the read event is
supply ensures this. If DV
D19
0
D18
0
OUT
OUT
and +V
and I
D17
1
OUT
SENSE
CC
pins
CC
is
D16
0
pins
and
Rev. C | Page 28 of 40
calibration registers and ensures specified operation of the
AD5412/AD5422.
Voltage Output
For a unipolar voltage output range, the output voltage can be
expressed as
For a bipolar voltage output range, the output voltage can be
expressed as
where:
D is the decimal equivalent of the code loaded to the DAC.
N is the bit resolution of the DAC.
V
Gain is an internal gain whose value depends on the output
range selected by the user as shown in Table 10.
Table 10. Internal Gain Value
Output Range
+5 V
+10 V
±5 V
±10 V
Current Output
For the 0 mA to 20 mA, 0 mA to 24 mA, and 4 mA to 20 mA
current output ranges, the output current is respectively
expressed as
where:
D is the decimal equivalent of the code loaded to the DAC.
N is the bit resolution of the DAC.
REFIN
V
V
I
I
I
is the reference voltage applied at the REFIN pin.
OUT
OUT
OUT
OUT
OUT
=
=
=
=
=
V
V
16
20
24
REFIN
REFIN
D15 to D2
2
2
2
mA
mA
mA
N
N
N
X
×
×
1
Gain
Gain
×
×
×
D
D
D
+
⎢ ⎣
⎢ ⎣
2
2
4
D
D
N
N
mA
⎥ ⎦
⎥ ⎦
Gain
Gain Value
1
2
2
4
×
2
V
REFIN
D1
Read address
LSB
D0

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