AD5764R

Features: Complete quad, 16-bit digital-to-analog converter (DAC)Programmable output range: ±10 V, ±10.2564 V, or ±10.5263 V±1 LSB maximum INL error, ±1 LSB maximum DNL errorLow noise: 60 nV/HzSettling time: 10 s maximumIntegrated reference buffersInternal reference: 10 ppm/°C maximumOn-chip die t...

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SeekIC No. : 004269505 Detail

AD5764R: Features: Complete quad, 16-bit digital-to-analog converter (DAC)Programmable output range: ±10 V, ±10.2564 V, or ±10.5263 V±1 LSB maximum INL error, ±1 LSB maximum DNL errorLow noise: 60 nV/HzSettl...

floor Price/Ceiling Price

Part Number:
AD5764R
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/5/19

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Product Details

Description



Features:

Complete quad, 16-bit digital-to-analog converter (DAC)
Programmable output range: ±10 V, ±10.2564 V, or ±10.5263 V
±1 LSB maximum INL error, ±1 LSB maximum DNL error
Low noise: 60 nV/Hz
Settling time: 10 s maximum
Integrated reference buffers
Internal reference: 10 ppm/°C maximum
On-chip die temperature sensor
Output control during power-up/brownout
Programmable short-circuit protection
Simultaneous updating via LDAC
AsynchronousCLR to zero code
Digital offset and gain adjust
Logic output control pins
DSP-/microcontroller-compatible serial interface
Temperature range: −40 to +85
iCMOS process technology



Application

Industrial automation
Open-loop/closed-loop servo control
Process control
Data acquisition systems
Automatic test equipment
Automotive test and measurement
High accuracy instrumentation



Specifications

Parameter Rating
AVDD to AGND, DGND
AVSS to AGND, DGND
DVCC to DGND
Digital Inputs to DGND
Digital Outputs to DGND
REFIN to AGND, PGND
REFOUT to AGND
TEMP
VOUTx to AGND
AGND to DGND
Operating Temperature Range
Industrial
Storage Temperature Range
Junction Temperature (TJ max)
Lead Temperature (Soldering)
−0.3 V to +17 V
+0.3 V to −17 V
−0.3 V to +7 V
−0.3 V to (DVCC + 0.3 V) or +7 V, whichever is less
−0.3 V to DVCC + 0.3 V
−0.3 V to AVDD + 0.3 V
AVSS to AVDD
AVSS to AVDD
AVSS to AVDD
−0.3 V to +0.3 V
−40 to +85
−65 to +150
150C
JEDEC Industry Standard
J-STD-020



Description

The AD5764R is a quad, 16-bit, serial input, bipolar voltage output DAC that operates from supply voltages of ±11.4 V to ±16.5 V. Nominal full-scale output range is ±10 V. The AD5764R provides integrated output amplifiers, reference buffers, and proprietary power-up/power-down control circuitry. The part also features a digital I/O port, programmed via the serial interface, and an analog temperature sensor. The part incorporates digital offset and gain adjust registers per channel.
The AD5764R is a high performance converter that provides guaranteed monotonicity, integral nonlinearity (INL) of ±1 LSB, low noise, and 10 s settling time. The AD5764R includes an on-chip 5 V reference with a reference temperature coefficient of 10 ppm/ maximum. During power-up when the supply voltages are changing, VOUTx is clamped to 0 V via a low impedance path.

The AD5764R is based on the iCMOS® technology platform, which is designed for analog systems designers within industrial/instru-mentation equipment OEMs who need high performance ICs at higher voltage levels. iCMOS enables the development of analog ICs capable of 30 V and operation at ±15 V supplies, while allowing reductions in power consumption and package size, coupled with increased ac and dc performance.

The AD5764R 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 AD5764R is ideal for both closed-loop servo control and open-loop control applications. The AD5764R is available in a 32-lead TQFP and offers guaranteed specifications over the −40 to +85 industrial temperature range (see Figure 1 for the functional block diagram).




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