AD5532B

PRODUCTION

32-Channel 14-bit Bipolar Voltage-Output DAC

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Overview

  • High Integration 32-channel DAC in 12 mm x 12 mm CSPBGA
  • Guaranteed Monotonic to 14 Bits
  • Infinite Sample-and-Hold Capability to ±0.018% Accuracy
  • Infinite Sample-and-Hold Total Unadjusted Error ±2.5mV
  • Adjustable Voltage Output Range
  • Readback Capability
  • DSP/Microcontroller Compatible Serial Interface
  • Output Impedance 0.5 Ω
  • Output Voltage Span 10 V
  • Temperature Range -40°C to +85°C

The AD5532B is a 32-channel, bipolar, voltage-output, 14-bit DAC with an additional infinite sample-and-hold mode. The device is operated with AVCC = +5V±5%, DVCC= 2.7 V to 5.25 V, VSS = -4.75 V to -16.5 V and VDD = 8 V to 16.5 V and requires a stable +3 V reference on REF_IN as well as an offset voltage on OFFS_IN. It is available in a 74-lead 12mm x 12mm CSPBGA package.

Also available is the AD5533B, which is specified in the sample and hold mode only and is the same part but without the DAC mode of operation.

The AD5532B is an improved spec version of the existing AD5532.

Differences are:

  AD5532ABC-1 AD5532BBC-1 Mode
Offset Error ±50 mV ±10 mV max (±1 mV typ) I-SHA
TUE Not spec'd ±12 mV max (±2 mV typ) I-SHA
Gain 3.46/3.52/3.6 3.51/3.52/3.53 min/typ/maxtd I-SHA
DAC Full Scale Error ±2% -1%, +0.5% DAC

Product Highlights

  1. 32-channel, 14-bit DAC in one package, guaranteed monotonic.
  2. The AD5532B is available in a 74-lead CSPBGA with a body size of 12 mm × 12 mm.
  3. In infinite sample-and-hold mode, a total unadjusted error of ±2.5 mV is achieved by laser-trimming on-chip resistors.

Applications

  • Automatic Test Equipment
  • Optical Networks
  • Level Setting
  • Instrumentation
  • Industrial Control Systems
  • Data Acquisition
  • Low Cost I/O

AD5532B
32-Channel 14-bit Bipolar Voltage-Output DAC
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Tools & Simulations

Precision DAC Error Budget Tool

The Precision DAC Error Budget Tool is a web application that calculates the DC Accuracy of precision DAC signal chains. It shows how the static errors accumulate throughout your signal chain to quickly evaluate the design tradeoffs. Calculations include the DC errors introduced by Voltage References, Operation Amplifiers and Precision DACs.

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