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Analog Devices MAX543BCSA+ — Microcontrollers & Processors (MCU / MPU / DSP)

MAX543BCSA+ 12-Bit DAC, 1µs Settling, 8-SOIC

MPNMAX543BCSA+
End of Life

Analog Devices MAX543BCSA+ 12-bit current-output DAC, R-2R architecture, SPI interface, 1µs settling time, ±1 LSB INL/DNL, 8-SOIC package, tube.

$19.07Ref. price · indicative, final on quote
Packaging8-SOIC (0.154", 3.90mm Width)
StockContact for availability
Lead timeIn Stock wk
MOQ1 pcs
  • 100% new & originalTraceable channels only — no refurbs, no pulls, no remarked parts.
  • Date & lot codes on quoteStated per line before you commit; label photos on request.
  • MSL-compliant ESD packingMoisture-sealed bags with indicator cards; reels photo-verified.
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Specifications

MAX543BCSA+ Technical Specifications
ParameterValue
Output typeCurrent - Unbuffered
Mounting typeSurface Mount
Reference typeExternal
Voltage - supply, analog5V, 11.4V ~ 15.75V
Voltage - supply, digital5V, 11.4V ~ 15.75V
InterfaceSPI
Operating temperature0°C ~ 70°C
PackageTube
ArchitectureR-2R
INL (DNL)±1 (Max), ±1 (Max)
Settling time1µs
Number of bits12
Case8-SOIC (0.154\", 3.90mm Width)
Differential outputNo
Number of d (A converters)1

Product details

12-bit precision and settling for the analog output path

The MAX543BCSA+ is a 12-bit digital-to-analog converter from Analog Devices, built on a current-unbuffered R-2R ladder architecture. It delivers a 1 µs settling time to ±½ LSB, which sets the maximum update rate for the output stage — useful for closed-loop control or waveform generation where the DAC must track the digital input within one microsecond. Integral and differential nonlinearity are each specified at ±1 LSB maximum. For a calibration technician, this means the output code-to-voltage relationship is guaranteed monotonic to within one least-significant bit across the full 12-bit range — no missing codes, and the transfer curve stays within a 0.024% error band at room temperature.

SPI control and dual-supply power budget

Data is written via an SPI-compatible serial interface. The digital supply accepts 5 V, while the analog supply operates from 11.4 V to 15.75 V. This split-rail arrangement lets the DAC swing its output current into a load referenced to a separate analog rail — common in industrial analog output modules where the loop supply is 12 V or 15 V. Because the output is current-unbuffered, the DAC's output current must be converted to a voltage by an external op-amp. The R-2R architecture gives inherently good linearity, but the external amplifier's offset and drift will add to the system error budget — a zero-drift op-amp is recommended for precision applications.

Package, temperature grade, and compliance

Housed in an 8-lead SOIC package, surface-mount, supplied in tube format. ROHS3 compliant — no restricted substances above the threshold limits.

Frequently asked questions

What is the output type and how does it affect the circuit design?

The output type is current-unbuffered, meaning the DAC's R-2R ladder drives a current output directly. An external op-amp is required to convert this current to a voltage — the op-amp's input bias current and offset voltage will add to the system error, so a precision amplifier with low drift is recommended for tight accuracy budgets.