68 Digital-to-Analog Converters 10

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Part RoHS Manufacturer Converter Type Temperature Grade Terminal Form No. of Terminals Package Code Package Shape Total Dose (V) Package Body Material Maximum Analog Output Voltage No. of Analog In Channels Surface Mount Maximum Supply Voltage Maximum Analog Input Voltage Sample Rate No. of Functions Technology Screening Level No. of Bits Maximum Settling Time Maximum Supply Current Maximum Linearity Error (EL) Input Format Nominal Supply Voltage Output Bit Code Power Supplies (V) Nominal Negative Supply Voltage Package Style (Meter) Package Equivalence Code Sub-Category Nominal Settling Time (tstl) Minimum Supply Voltage Terminal Pitch Maximum Operating Temperature Minimum Analog Input Voltage Output Format Minimum Operating Temperature Terminal Finish Sample and Hold/Track and Hold Terminal Position JESD-30 Code Moisture Sensitivity Level (MSL) Maximum Seated Height Width Qualification Additional Features JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Minimum Analog Output Voltage Length Input Bit Code

MAX5887EGK-TD

Maxim Integrated

Digital to Analog converter

Industrial

No Lead

68

HVQCCN

Square

1.1 V

Yes

1

CMOS

14

0.8 %

Parallel, Word

3.3 V

3.3 V

Chip Carrier, Heat Sink/Slug, Very Thin Profile

LCC68,.4SQ,20

Other Converters

11 ns

0.02 in (0.5 mm)

85 °C (185 °F)

-40 °C (-40 °F)

Quad

S-XQCC-N68

0.035 in (0.9 mm)

0.394 in (10 mm)

No

-.5 V

0.394 in (10 mm)

Binary

MAX5888AEGK-D

Maxim Integrated

Digital to Analog converter

Industrial

No Lead

68

HVQCCN

Square

1.1 V

Yes

1

CMOS

16

0.008 %

Parallel, Word

3.3 V

Chip Carrier, Heat Sink/Slug, Very Thin Profile

11 ns

0.02 in (0.5 mm)

85 °C (185 °F)

-40 °C (-40 °F)

Tin Lead

Quad

S-XQCC-N68

1

0.035 in (0.9 mm)

0.394 in (10 mm)

No

e0

-.5 V

0.394 in (10 mm)

Binary

MAX5898EGK-D

Maxim Integrated

Digital to Analog converter

Industrial

No Lead

68

HVQCCN

Square

1.1 V

Yes

1

CMOS

16

Parallel, Word

1.8 V

1.8/3.3 V

Chip Carrier, Heat Sink/Slug, Very Thin Profile

LCC68,.4SQ,20

Other Converters

11 ns

0.02 in (0.5 mm)

85 °C (185 °F)

-40 °C (-40 °F)

Tin Lead

Quad

S-XQCC-N68

3

0.035 in (0.9 mm)

0.394 in (10 mm)

No

e0

245 °C (473 °F)

-.5 V

0.394 in (10 mm)

Offset Binary, 2's Complement Binary

MAX5888EGK

Maxim Integrated

Digital to Analog converter

Industrial

No Lead

68

HVQCCN

Square

1.1 V

Yes

1

CMOS

16

0.008 %

Parallel, Word

3.3 V

3.3 V

Chip Carrier, Heat Sink/Slug, Very Thin Profile

LCC68,.4SQ,20

Other Converters

11 ns

0.02 in (0.5 mm)

85 °C (185 °F)

-40 °C (-40 °F)

Tin Lead

Quad

S-XQCC-N68

0.035 in (0.9 mm)

0.394 in (10 mm)

No

e0

-.5 V

0.394 in (10 mm)

Binary

MAX5891EGK

Maxim Integrated

Digital to Analog converter

Industrial

No Lead

68

HVQCCN

Square

1.1 V

Yes

1

CMOS

16

0.0058 %

Parallel, Word

1.8 V

1.8,3.3 V

Chip Carrier, Heat Sink/Slug, Very Thin Profile

LCC68,.4SQ,20

Other Converters

11 ns

0.02 in (0.5 mm)

85 °C (185 °F)

-40 °C (-40 °F)

Tin Lead

Quad

S-XQCC-N68

0.035 in (0.9 mm)

0.394 in (10 mm)

No

e0

-1 V

0.394 in (10 mm)

Offset Binary

MAX5890EGK

Maxim Integrated

Digital to Analog converter

Industrial

No Lead

68

HVQCCN

Square

1.1 V

Yes

1

14

11 ns

Parallel, Word

1.8 V

1.8,3.3 V

Chip Carrier, Heat Sink/Slug, Very Thin Profile

LCC68,.4SQ,20

Other Converters

11 ns

0.02 in (0.5 mm)

85 °C (185 °F)

-40 °C (-40 °F)

Tin Lead

Quad

S-XQCC-N68

0.035 in (0.9 mm)

0.394 in (10 mm)

No

e0

-1 V

0.394 in (10 mm)

Offset Binary

MAX5873EGK

Maxim Integrated

Digital to Analog converter

Industrial

No Lead

68

HVQCCN

Square

1.1 V

Yes

1

12

Parallel, Word

3.3 V

Chip Carrier, Heat Sink/Slug, Very Thin Profile

0.02 in (0.5 mm)

85 °C (185 °F)

-40 °C (-40 °F)

Tin Lead

Quad

S-XQCC-N68

0.035 in (0.9 mm)

0.394 in (10 mm)

No

e0

-.5 V

0.394 in (10 mm)

Offset Binary, 2's Complement Binary

MAX5874EGK

Maxim Integrated

Digital to Analog converter

Industrial

No Lead

68

HVQCCN

Square

1.1 V

Yes

1

14

Parallel, Word

1.8 V

Chip Carrier, Heat Sink/Slug, Very Thin Profile

0.02 in (0.5 mm)

85 °C (185 °F)

-40 °C (-40 °F)

Tin Lead

Quad

S-XQCC-N68

0.035 in (0.9 mm)

0.394 in (10 mm)

No

e0

-.5 V

0.394 in (10 mm)

Offset Binary, 2's Complement Binary

MAX5878EGK

Maxim Integrated

Digital to Analog converter

Industrial

No Lead

68

HVQCCN

Square

1.1 V

Yes

1

CMOS

16

0.0045 %

Parallel, Word

1.8 V

1.8,3.3 V

Chip Carrier, Heat Sink/Slug, Very Thin Profile

LCC68,.4SQ,20

Other Converters

0.02 in (0.5 mm)

85 °C (185 °F)

-40 °C (-40 °F)

Tin Lead

Quad

S-XQCC-N68

0.035 in (0.9 mm)

0.394 in (10 mm)

No

e0

-.5 V

0.394 in (10 mm)

Binary, 2's Complement Binary

MAX5887EGK-D

Maxim Integrated

Digital to Analog converter

Industrial

No Lead

68

HVQCCN

Square

1.1 V

Yes

1

CMOS

14

0.8 %

Parallel, Word

3.3 V

3.3 V

Chip Carrier, Heat Sink/Slug, Very Thin Profile

LCC68,.4SQ,20

Other Converters

11 ns

0.02 in (0.5 mm)

85 °C (185 °F)

-40 °C (-40 °F)

Tin Lead

Quad

S-XQCC-N68

1

0.035 in (0.9 mm)

0.394 in (10 mm)

No

e0

-.5 V

0.394 in (10 mm)

Binary

Digital-to-Analog Converters

Digital-to-analog converters (DACs) are electronic devices that convert digital signals into analog signals with a specific voltage or current output. They play a critical role in many electronic systems, converting digital data into analog signals that can be used to control actuators, motors, and other devices.

DACs work by sampling the digital signal at regular intervals and converting each sample into an analog signal with a specific voltage or current output. The accuracy and resolution of the DAC determine the quality of the analog signal, with higher resolution and accuracy leading to a more precise output signal.

DACs can be classified based on their architecture and their application. The most common types of DACs are binary-weighted DACs, R-2R ladder DACs, and sigma-delta DACs. Each type has its advantages and limitations, depending on the application and the required performance.

DACs are used in a wide range of applications, from audio equipment and video systems, to industrial automation, medical devices, and scientific instruments. They play a crucial role in the conversion of digital data into analog signals, allowing the control and manipulation of physical systems based on digital signals.