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AD5601BKSZ nanoDAC® family, are single, 8-/10-/12-bit, complex integrated circuits

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Anterwell Technology Ltd.

AD5601BKSZ nanoDAC® family, are single, 8-/10-/12-bit, complex integrated circuits

Country/Region china
City & Province shenzhen guangdong
Categories Memory Cards
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Product Details


AD5601BKSZ

nanoDAC® family, are single, 8-/10-/12-bit, complex integrated circuits


FEATURES

► 6-lead SC70 and LFCSP packages Micropower operation: 100 µA maximum at 5 V Power-down typically to 0.2 µA at 3 V

 

►2.7 V to 5.5 V power supply Guaranteed monotonic by design Power-on reset to 0 V with brownout detection

 

►3 power-down functions Low power serial interface with Schmitt-triggered inputs On-chip output buffer amplifier, rail-to-rail operation

 

GENERAL DESCRIPTION

The AD5601/AD5611/AD5621, members of the nanoDAC® family, are single, 8-/10-/12-bit, buffered voltage output DACs that operate from a single 2.7 V to 5.5 V supply, consuming typically 75 µA at 5 V. The parts come in tiny LFCSP and SC70 packages. Their on-chip precision output amplifier allows railto-rail output swing to be achieved. The AD5601/AD5611/ AD5621 utilize a versatile 3-wire serial interface that operates at clock rates up to 30 MHz and is compatible with SPI, QSPI™, MICROWIRE™, and DSP interface standards.

 

The reference for the AD5601/AD5611/AD5621 is derived from the power supply inputs and, therefore, gives the widest dynamic output range. The parts incorporate a power-on reset circuit, which ensures that the DAC output powers up to 0 V and remains there until a valid write to the device takes place. The AD5601/AD5611/AD5621 contain a power-down feature that reduces current consumption to typically 0.2 µA at 3 V.

 

They also provide software-selectable output loads while in power-down mode. The parts are put into power-down mode over the serial interface.

 

The low power consumption of these parts in normal operation makes them ideally suited to portable battery-operated equipment. The combination of small package and low power makes these nanoDAC devices ideal for level-setting requirements, such as generating bias or control voltages in space-constrained and power-sensitive applications.

 

 

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