Analog Devices, DAC Dual 14 bit- Serial (SPI/Microwire), 8-Pin MSOP

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We don’t know if this item will be back in stock, it is being discontinued by the manufacturer.
Packaging Options:
RS Stock No.:
851-6887
Mfr. Part No.:
LTC2612CMS8#PBF
Brand:
Analog Devices
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Brand

Analog Devices

Architecture

R-2R

Resolution

14 bit

Integral Nonlinearity Error

±16LSB

Number of DAC Channels

2

Mounting Type

Surface Mount

Package Type

MSOP

Pin Count

8

Maximum Settling Time

10µs

Digital Interface Type

Serial (SPI/Microwire)

Typical Single Supply Voltage

2.5 to 5.5 V

Power Supply Type

Single

Minimum Operating Temperature

0 °C

Maximum Operating Temperature

70 °C

Dimensions

3 x 3 x 0.97mm

COO (Country of Origin):
MY

Digital to Analogue Converters 14 Bit, Linear Technology


The Linear Technology range of digital to analog converters includes voltage output DACs, multiplying current output D-A Converters and special-function digital to analogue converters. This product family comes in a 14-bit Resolution and offers single channel to multichannel with serial SPI or I2C or parallel interfaces. Special features on some include software selectable output spans (SoftSpan), power-on-reset to zero-scale, mid-scale or Hi-Z options and integrated high precision references.

The 14-bit high precision Current Output digital to analog converter series let you choose an external amplifier they do not depend upon the reference being buffered like Voltage Output Rail to Rail DAC types which demonstrate high linearity. The SoftSpanTM feature allows software selectable output spans eliminating the need to add precision gain stages and the associated external jumpers, precision resistors, and amplifier circuitry. Integrated precision resistors allow reference inversion, bipolar offset, offset and gain adjustment.

The Voltage Output buffered and un-buffered rail-to-rail D-A Converter work well in a wide range of open-loop or closed-loop systems, adjusting gain, offset and many other signals. As well as the VOUT DAC un-buffered low glitch that makes them ideal for AC applications such as waveform generation.

· DC performance (INL, DNL, Offset and Gain error)
· AC performance (fast settling time, low glitch impulse and crosstalk)
· Low power consumption
· Rail to rail types
· Micropower DAC versions
· Supported by demo system and evaluation software
· Evaluate the performance of the D-A Converter with QuikEval data acquisition and analysis software


Digital to Analogue Converters - Linear Technology