16 Analog-to-Digital Converters 493

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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 No. of Analog In Channels Surface Mount Maximum Supply Voltage Maximum Analog Input Voltage Sample Rate No. of Functions Technology Screening Level Nominal Bandwidth No. of Bits Maximum Supply Current Maximum Linearity Error (EL) Nominal Supply Voltage Output Bit Code Power Supplies (V) Nominal Negative Supply Voltage Package Style (Meter) Package Equivalence Code Sub-Category 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 Maximum Conversion Time 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) Length Input Bit Code

AMC3306M25DWE

Texas Instruments

Analog To Digital Converter, Delta-Sigma

Automotive

Gull Wing

16

SOP

Rectangular

Plastic/Epoxy

1

Yes

250 mV

78 kHz

1

16

31 mA

0.006103515 %

3.3 V

Binary

Small Outline

SOP16,.4

0.05 in (1.27 mm)

125 °C (257 °F)

-250 mV

Serial

-40 °C (-40 °F)

Nickel Palladium Gold

Dual

R-PDSO-G16

3

0.104 in (2.65 mm)

0.295 in (7.5 mm)

Peak-to-peak input voltage range: 250 mV

e4

30 s

260 °C (500 °F)

0.406 in (10.3 mm)

ADUM7704BRWZ-RL7

Analog Devices

Analog To Digital Converter, Delta-Sigma

Gull Wing

16

SOP

Rectangular

Plastic/Epoxy

1

Yes

64 mV

1

CMOS

16

10 mA

0.012207 %

15 V

Binary

Small Outline

SOP16,.4

0.05 in (1.27 mm)

125 °C (257 °F)

-64 mV

Serial

-40 °C (-40 °F)

Dual

R-PDSO-G16

3

0.104 in (2.65 mm)

0.295 in (7.5 mm)

30 s

260 °C (500 °F)

0.406 in (10.3 mm)

ADUM7704BRWZ

Analog Devices

Analog To Digital Converter, Delta-Sigma

Automotive

Gull Wing

16

SOP

Rectangular

Plastic/Epoxy

1

Yes

64 mV

1

CMOS

16

10 mA

0.012207 %

15 V

Binary

Small Outline

SOP16,.4

0.05 in (1.27 mm)

125 °C (257 °F)

-64 mV

Serial

-40 °C (-40 °F)

Dual

R-PDSO-G16

3

0.104 in (2.65 mm)

0.295 in (7.5 mm)

30 s

260 °C (500 °F)

0.406 in (10.3 mm)

ADUM7702BRWZ-RL

Analog Devices

Analog To Digital Converter, Delta-Sigma

Automotive

Gull Wing

16

SOP

Rectangular

Plastic/Epoxy

1

Yes

64 mV

78.1 kHz

1

CMOS

16

10 mA

0.0122 %

5 V

Binary

Small Outline

SOP16,.4

0.05 in (1.27 mm)

125 °C (257 °F)

-64 mV

Serial

-40 °C (-40 °F)

Dual

R-PDSO-G16

3

0.104 in (2.65 mm)

0.295 in (7.5 mm)

30 s

260 °C (500 °F)

0.406 in (10.3 mm)

ADUM7702BRWZ

Analog Devices

Analog To Digital Converter, Delta-Sigma

Automotive

Gull Wing

16

SOP

Rectangular

Plastic/Epoxy

1

Yes

64 mV

78.1 kHz

1

CMOS

16

10 mA

0.0122 %

5 V

Binary

Small Outline

SOP16,.4

0.05 in (1.27 mm)

125 °C (257 °F)

-64 mV

Serial

-40 °C (-40 °F)

Dual

R-PDSO-G16

3

0.104 in (2.65 mm)

0.295 in (7.5 mm)

30 s

260 °C (500 °F)

0.406 in (10.3 mm)

ADUM7702BRWZ-RL7

Analog Devices

Analog To Digital Converter, Delta-Sigma

Gull Wing

16

SOP

Rectangular

Plastic/Epoxy

1

Yes

64 mV

1

CMOS

16

10 mA

0.0122 %

5 V

Binary

Small Outline

SOP16,.4

0.05 in (1.27 mm)

125 °C (257 °F)

-64 mV

Serial

-40 °C (-40 °F)

Dual

R-PDSO-G16

3

0.104 in (2.65 mm)

0.295 in (7.5 mm)

30 s

260 °C (500 °F)

0.406 in (10.3 mm)

AD4683BCPZ-RL

Analog Devices

Analog To Digital Converter, Successive Approximation

Automotive

No Lead

16

HVQCCN

Square

Plastic/Epoxy

2

Yes

1.7 V

500 kHz

1

16

5.6 mA

0.00381469 %

3.3 V

2's Complement Binary

Chip Carrier, Heat Sink/Slug, Very Thin Profile

LCC16,.12SQ,20

0.02 in (0.5 mm)

125 °C (257 °F)

-1.245 V

Serial

-40 °C (-40 °F)

Track

Quad

190 ns

S-XQCC-N16

0.031 in (0.8 mm)

0.118 in (3 mm)

0.118 in (3 mm)

AD4682BCPZ-RL

Analog Devices

Analog To Digital Converter, Successive Approximation

Automotive

No Lead

16

HVQCCN

Square

Plastic/Epoxy

2

Yes

1.7 V

1 MHz

1

16

8.4 mA

0.00381469 %

3.3 V

2's Complement Binary

Chip Carrier, Heat Sink/Slug, Very Thin Profile

LCC16,.12SQ,20

0.02 in (0.5 mm)

125 °C (257 °F)

-1.245 V

Serial

-40 °C (-40 °F)

Track

Quad

190 ns

S-XQCC-N16

0.031 in (0.8 mm)

0.118 in (3 mm)

0.118 in (3 mm)

AD4681BCPZ-RL

Analog Devices

Analog To Digital Converter, Successive Approximation

Automotive

No Lead

16

HVQCCN

Square

Plastic/Epoxy

2

Yes

3.4 V

500 kHz

1

16

5.6 mA

0.0022888 %

3.3 V

2's Complement Binary

Chip Carrier, Heat Sink/Slug, Very Thin Profile

LCC16,.12SQ,20

0.02 in (0.5 mm)

125 °C (257 °F)

-2.49 V

Serial

-40 °C (-40 °F)

Track

Quad

190 ns

S-XQCC-N16

0.031 in (0.8 mm)

0.118 in (3 mm)

0.118 in (3 mm)

AD4680BCPZ-RL

Analog Devices

Analog To Digital Converter, Successive Approximation

Automotive

No Lead

16

HVQCCN

Square

Plastic/Epoxy

2

Yes

3.4 V

1 MHz

1

16

8.4 mA

0.0022888 %

3.3 V

2's Complement Binary

Chip Carrier, Heat Sink/Slug, Very Thin Profile

LCC16,.12SQ,20

0.02 in (0.5 mm)

125 °C (257 °F)

-2.49 V

Serial

-40 °C (-40 °F)

Track

Quad

190 ns

S-XQCC-N16

0.031 in (0.8 mm)

0.118 in (3 mm)

0.118 in (3 mm)

AMC3306M05DWE

Texas Instruments

Analog To Digital Converter, Delta-Sigma

Automotive

Gull Wing

16

SOP

Rectangular

Plastic/Epoxy

1

Yes

50 mV

78 kHz

1

16

42 mA

0.0061 %

3.3 V

Binary

Small Outline

SOP16,.4

0.05 in (1.27 mm)

125 °C (257 °F)

-50 mV

Serial

-40 °C (-40 °F)

Nickel Palladium Gold

Dual

R-PDSO-G16

3

0.104 in (2.65 mm)

0.295 in (7.5 mm)

Peak-to-peak input voltage range: 50 mV

e4

30 s

260 °C (500 °F)

0.406 in (10.3 mm)

ADS7067IYBHR

Texas Instruments

Analog To Digital Converter, Successive Approximation

Ball

16

VFBGA

Rectangular

Plastic/Epoxy

8

Yes

5.5 V

800 kHz

1

16

2.8 mA

0.0061035 %

3.3 V

Binary

Grid Array, Very Thin Profile, Fine Pitch

BGA16,4X4,16

1.65 V

0.016 in (0.4 mm)

125 °C (257 °F)

0 mV

Serial

-40 °C (-40 °F)

Tin Silver Copper

Sample

Bottom

950 ns

S-PBGA-B16

1

0.016 in (0.4 mm)

0.064 in (1.6205 mm)

e1

260 °C (500 °F)

0.064 in (1.6205 mm)

ADS7067IYBHT

Texas Instruments

Analog To Digital Converter, Successive Approximation

Ball

16

VFBGA

Rectangular

Plastic/Epoxy

8

Yes

5.5 V

800 kHz

1

16

2.8 mA

0.0061035 %

3.3 V

Binary

Grid Array, Very Thin Profile, Fine Pitch

BGA16,4X4,16

1.65 V

0.016 in (0.4 mm)

125 °C (257 °F)

0 mV

Serial

-40 °C (-40 °F)

Tin Silver Copper

Sample

Bottom

950 ns

S-PBGA-B16

1

0.016 in (0.4 mm)

0.064 in (1.6205 mm)

e1

260 °C (500 °F)

0.064 in (1.6205 mm)

Analog-to-Digital Converters

Analog-to-digital converters (ADCs) are electronic devices that convert continuous analog signals into digital signals, which can be processed by digital circuits, microcontrollers, or computers. ADCs are essential components in many electronic systems, as they allow the measurement and processing of physical signals, such as temperature, pressure, light, and sound.

ADCs work by sampling the analog signal at regular intervals and quantizing the sampled signal into a series of digital values. The sampling rate and the resolution of the ADC determine the accuracy and the bandwidth of the digital signal. ADCs may also include features such as amplification, filtering, or signal conditioning, to improve the accuracy and stability of the digital signal.

ADCs can be classified based on their architecture and their application. The most common types of ADCs are successive approximation ADCs, delta-sigma ADCs, and pipeline ADCs. Each type has its advantages and limitations, depending on the application and the required performance.

ADCs are used in a wide range of applications, from consumer electronics, such as smartphones and digital cameras, to industrial automation, medical devices, and scientific instruments. They play a crucial role in the conversion of physical signals into digital signals, allowing the processing, storage, and transmission of data in electronic systems.

Overall, ADCs are essential components in many electronic systems, providing the necessary signal conversion for a wide range of applications. Their accuracy, speed, and resolution determine the performance and the functionality of many electronic devices and systems.