AD5301 Analog Devices, AD5301 Datasheet - Page 18

no-image

AD5301

Manufacturer Part Number
AD5301
Description
2.5 V to 5.5 V, 120 ?A, 2-Wire Interface, Voltage-Output 8-Bit DAC
Manufacturer
Analog Devices
Datasheet

Specifications of AD5301

Resolution (bits)
8bit
Dac Update Rate
167kSPS
Dac Settling Time
6µs
Max Pos Supply (v)
+5.5V
Single-supply
Yes
Dac Type
Voltage Out
Dac Input Format
I2C/Ser 2-wire,Ser

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AD53017XRP
Manufacturer:
ICS
Quantity:
50
Part Number:
AD53017XRP
Manufacturer:
AD
Quantity:
1 000
Part Number:
AD5301ARMZ
Manufacturer:
ADI
Quantity:
6 188
Part Number:
AD5301BRM
Manufacturer:
AD
Quantity:
5 510
Part Number:
AD5301BRM
Manufacturer:
ADI/亚德诺
Quantity:
20 000
Company:
Part Number:
AD5301BRM
Quantity:
25
Part Number:
AD5301BRM-REEL
Manufacturer:
AD
Quantity:
5 510
Part Number:
AD5301BRM-REEL
Manufacturer:
SIEMENS
Quantity:
5 510
Part Number:
AD5301BRMZ
Manufacturer:
ADI/亚德诺
Quantity:
20 000
Part Number:
AD5301BRMZ-REEL7
Manufacturer:
ADI/亚德诺
Quantity:
20 000
Part Number:
AD5301BRT
Manufacturer:
ADI/亚德诺
Quantity:
20 000
AD5301/AD5311/AD5321
APPLICATIONS NOTES
USING REF19x AS A POWER SUPPLY
Because the supply current required by the AD5301/AD5311/
AD5321 is extremely low, the user has an alternative option to
employ a
reference (for 3 V) to supply the required voltage to the part
(see Figure 36).
This is especially useful if the power supply is quite noisy or if
the system supply voltages are at some value other than 5 V or
3 V (for example, 15 V). The REF193/REF195 output a steady
supply voltage for the AD5301/AD5311/AD5321. If the low
dropout REF195 is used, it needs to supply a current of 150 μA
to the AD5301/AD5311/AD5321. This is with no load on the
output of the DAC. When the DAC output is loaded, the REF195
also needs to supply the current to the load.
The total current required (with a 2 kΩ load on the DAC output
and full scale loaded to the DAC) is
The load regulation of the REF195 is typically 2 ppm/mA,
which results in an error of 5.3 ppm (26.5 μV) for the 2.65 mA
current drawn from it. This corresponds to a 0.00136 LSB error.
BIPOLAR OPERATION USING THE AD5301/
AD5311/AD5321
The AD5301/AD5311/AD5321 has been designed for single-
supply operation, but a bipolar output range is also possible
using the circuit in Figure 37. The circuit below gives an output
voltage range of ±5 V. Rail-to-rail operation at the amplifier
output is achievable using an
amplifier.
150 μA + (5 V/2 kΩ) = 2.65 mA
INTERFACE
Figure 36. REF195 as Power Supply to AD5301/AD5311/AD5321
SERIAL
2-WIRE
REF195
SDA
REF195
SCL
voltage reference (for 5 V) or a
5V
AD820
AD5301/
V
AD5311/
AD5321
DD
150µA TYP
or an
OP295
V
OUT
REF193
= 0V TO 5V
as the output
voltage
Rev. B | Page 18 of 24
The output voltage for any input code can be calculated as
where:
D is the decimal equivalent of the code loaded to the DAC.
N is the DAC resolution.
With V
MULTIPLE DEVICES ON ONE BUS
Figure 38 shows four AD5301 devices on the same serial bus.
Each has a different slave address since the state of their A0
and A1 pins is different. This allows each DAC to be written to
or read from independently. The master device output bus line
drivers are open-drain, pull-downs in a fully I
interface.
CMOS DRIVEN SCL AND SDA LINES
For single or multisupply systems where the minimum SCL
swing requirements allow it, a CMOS SCL driver may be used,
and the SCL pull-up resistor can be removed, making the SCL
bus line fully CMOS compatible. This reduces power consump-
tion in both the SCL driver and receiver devices. The SDA line
remains open-drain, I
Further changes, in the SDA line driver, may be made to make
the system more CMOS compatible and save more power. As
the SDA line is bidirectional, it cannot be made fully CMOS
compatible. A switched pull-up resistor can be combined with
a CMOS device with an open-circuit (three-state) input such
that the CMOS SDA driver is enabled during write cycles and
I
acknowledge bit cycles, start conditions, and stop conditions.
+5V
2
C mode is enabled during shared cycles, that is, readback,
10µF
V
V
Figure 37. Bipolar Operation with the AD5301/AD5311/AD5321
OUT
OUT
DD
0.1µF
= [(V
= 5 V, R1 = R2 = 10 kΩ,
= (10 × D/2
DD
× (D/2
N
V
2
C compatible.
) − 5 V
DD
2-WIRE SERIAL
AD5301/
AD5311/
AD5321
INTERFACE
N
) × R1 + R2)/R1) − V
10kΩ
R1
V
OUT
10kΩ
R2
+5V
–5V
2
C-compatible
DD
× (R2/R1)]
AD820/
OP295
±5V

Related parts for AD5301