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What is AD5744?

This electronic component, produced by the manufacturer "Analog Devices", performs the same function as "(AD5744 / AD5764) Bipolar Voltage Output DAC".


AD5744 Datasheet PDF - Analog Devices

Part Number AD5744
Description (AD5744 / AD5764) Bipolar Voltage Output DAC
Manufacturers Analog Devices 
Logo Analog Devices Logo 


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iCMOSTM
Complete, Quad, 14/16-Bit, High Accuracy,
Serial Input, Bipolar Voltage Output DAC
Preliminary Technical Data
AD5744/AD5764
FEATURES
Complete quad 14/16-bit D/A converter
Programmable output range: ±10 V, ±10.25 V, or ±10.5 V
±1 LSB max INL error, ±1 LSB max DNL error
Low noise : 60 nV/√Hz
Settling time: 10µs max
Integrated reference buffers
Internal reference, 10 ppm/°C
On-chip temp sensor, ±5°C accuracy
Output control during power-up/brownout
Programmable short-circuit protection
Simultaneous updating via LDAC
Asynchronous CLR to zero code
Digital offset and gain adjust
Logic output control pins
DSP/microcontroller compatible serial interface
Temperature range:−40°C to +85°C
iCMOS™ Process Technology
APPLICATIONS
Industrial automation
Open/Closed-loop servo control
Process control
Data acquisition systems
Automatic Test Equipment
Automotive test and measurement
High accuracy instrumentation
GENERAL DESCRIPTION
The AD5744/64 is a quad, 14/16-bit serial input, voltage output
digital-to analog converter that operates from supply voltages of
±12 V up to ±15 V. Nominal full-scale output range is ±10 V,
provided are integrated output amplifiers, reference buffers,
internal reference, and proprietary power-up/power-down
control circuitry. It also features a digital I/O port that may be
programmed via the serial interface, and an analog temperature
sensor. The part incorporates digital offset and gain adjust
registers per channel.
The AD5744/64 is a high performance converter that offers
guaranteed monotonicity, integral nonlinearity (INL) of ±1 LSB,
low noise and 10 µs settling time and includes an on-chip 5 V
reference with a reference tempco of 10 ppm/°C max. During
power-up (when the supply voltages are changing), Vout is
clamped to 0V via a low impedance path.
The AD5744/64 uses a serial interface that operates at clock rates
of up to 30 MHz and is compatible with DSP and microcontroller
interface standards. Double buffering allows the simultaneous
updating of all DACs. The input coding is programmable to either
twos complement or Offset binary formats. The asynchronous
clear function clears all DAC registers to either bipolar zero or
zero-scale depending on the coding used. The AD5744/64 is ideal
for both closed-loop servo control and open-loop control
applications. The AD5744/64 is available in a 32-lead TQFP
package, and offers guaranteed specifications over the −40°C to
+85°C industrial temperature range. See functional block
diagram, Figure 1.
iCMOS™ Process Technology
For analog systems designers within industrial/instrumentation equipment OEMs who need high performance ICs at higher-voltage levels, iCMOS is a
technology platform that enables the development of analog ICs capable of 30V and operating at +/-15V supplies while allowing dramatic reductions in
power consumption and package size, and increased AC and DC performance.
Rev. PrA
15-Nov-04
Information furnished by Analog Devices is believed to be accurate and reliable.
However, no responsibility is assumed by Analog Devices for its use, nor for any
infringements of patents or other rights of third parties that may result from its use.
Specifications subject to change without notice. No license is granted by implication
or otherwise under any patent or patent rights of Analog Devices. Trademarks and
registered trademarks are the property of their respective owners.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700
www.analog.com
Fax: 781.326.8703 © 2004 Analog Devices, Inc. All rights reserved.
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AD5744 equivalent
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Preliminary Technical Data
Parameter
VIL, Input Low Voltage
Input Current
Pin Capacitance
DIGITAL OUTPUTS (D0,D1, SDO) 2
Output Low Voltage
Output High Voltage
Output Low Voltage
Output High Voltage
High Impedance Leakage
Current
High Impedance Output
Capacitance
TEMP SENSOR
Accuracy
Output Voltage @ 25°C
Output Voltage Scale Factor
Output Voltage Range
Output Load Current
Power On Time
POWER REQUIREMENTS
AVDD/AVSS
DVCC
Power Supply Sensitivity4
∆VOUT/∆ΑVDD
AIDD
AISS
DICC
Power Dissipation
A Grade1
0.8
±10
10
0.4
DVCC – 1
0.4
DVCC – 0.5
±1
5
±1
±5
1.5
5
0/3.0
200
10
11.4/16.5
2.7/5.5
−85
3.75
2.75
1
244
B Grade1
0.8
±10
10
0.4
DVCC – 1
0.4
DVCC – 0.5
±1
5
±1
±5
1.5
5
0/3.0
200
10
11.4/16.5
2.7/5.5
−85
3.75
2.75
1
244
C Grade1
0.8
±10
10
0.4
DVCC – 1
0.4
DVCC – 0.5
±1
5
±1
±5
1.5
5
0/3.0
200
10
11.4/16.5
2.7/5.5
−85
3.75
2.75
1
244
Unit
V max
µA max
pF max
V max
V min
V max
V min
µA max
pF typ
°C typ
°C max
V typ
mV/°C typ
V min/max
µA max
ms typ
V min/max
V min/max
dB typ
mA/Channel max
mA/Channel max
mA max
mW typ
AD5744/AD5764
Test Conditions/Comments
Total for All Pins. TA = TMIN to TMAX.
DVCC= 5 V ± 10%, sinking 200 µA
DVCC = 5 V ± 10%, Sourcing 200
µA
DVCC = 2.7 V to 3.6 V, Sinking 200
µA
DVCC = 2.7 V to 3.6 V, Sourcing
200 µA
SDO only
SDO only
At 25°C
−40°C < T <+85°C
Current source only.
To within ±5°C
Outputs unloaded
Outputs unloaded
VIH = DVCC, VIL = DGND. TBD mA
typ
±12 V operation output
unloaded
4 Guaranteed by characterization. Not production tested.
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Rev. PrA 15-Nov-04| Page 5 of 27


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