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PADS122U04IPWR

Texas Instruments

PADS122U04IPWR by Texas Instruments

PADS122U04IPWR by Texas Instruments is a 24-bit ADC with 4 analog in channels. It has a max linearity error of 0.0015% and operates in automotive temperature grades. This converter type features a sample rate of 0.002 MHz, making it ideal for precision measurement applications.

Median Price

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Lifecycle Status

Suppliers In-Stock

3

In-Stock Inventory

1k+

Distributors (In-Stock)

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Vyrian

USA . 5,725 parts In-Stock

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Digiode

USA . 703 parts In-Stock

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703

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Nova Conductors

Japan . 300 parts In-Stock

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300

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Distributors (Availability)

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Ampacity Inc.

Singapore . 131 parts In-Stock

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$10.000

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131

$10.000

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AZTECH Wire

Italy . 796 parts In-Stock

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$11.700

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796

$11.700

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One Stop Electronics

USA . 1,373 parts In-Stock

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$16.000

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$16.000

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Parana Technologies

USA . 757 parts In-Stock

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$17.515

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$17.709

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757

$17.515

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$17.709

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Semicontronic

India . 1,459 parts In-Stock

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$19.000

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$18.525

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$18.430

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$19.000

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$18.430

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DigiPath Technology Company

USA . 210 parts In-Stock

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$19.286

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210

$19.286

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ChromeModa Solutions

Germany . 4,085 parts In-Stock

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$19.680

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$16.138

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$19.680

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IDEA Electronic Components Group

UK . 265 parts In-Stock

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$19.680

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$18.696

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$17.712

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265

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$17.712

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Corohmni

South Africa . 293 parts In-Stock

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$23.313

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293

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Advanced Electronics

New Zealand . 3,000 parts In-Stock

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$28.527

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$27.101

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$27.101

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Argo Parts USA

USA . 4,244 parts In-Stock

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Continental Prestige Electronics

USA . 2,211 parts In-Stock

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Corphita

USA . 1,383 parts In-Stock

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Bastille Electronics

Australia . 50 parts In-Stock

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50

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Overview

Discover the exceptional precision and reliability of the PADS122U04IPWR by Texas Instruments, a top-tier manufacturer renowned for cutting-edge technology. As an Analog-to-Digital Converter, this device boasts high performance and versatility, making it ideal for various applications. With 24 bits of resolution and minimal linearity error, customers can trust in the accuracy of their data acquisition. Plus, the compact design and automotive-grade temperature range enhance usability across industries. Elevate your projects with the value and benefits that this superior converter brings to the table.

Feature Benefit Bullets

Package Body Material: PLASTIC/EPOXY

Plastic and epoxy material provides durability and protection for the internal components of the ADC, making it suitable for various environments.

No. of Analog In Channels: 4

With 4 analog input channels, this ADC can handle multiple input signals simultaneously, providing flexibility in data acquisition applications.

Surface Mount: YES

Being surface mountable, this ADC is easy to integrate into circuit boards and reduces assembly time, making it a convenient choice for electronic designs.

No. of Bits: 24

The 24-bit resolution ensures high precision in converting analog signals to digital data, making this ADC suitable for applications that require accurate measurements.

Maximum Linearity Error (EL): 0.0015 %

The low linearity error of 0.0015% ensures accurate conversion of analog signals, making this ADC ideal for applications where precision is crucial.

No. of Terminals: 16

The 16 terminals offer versatile connectivity options, allowing for easy integration into existing circuits and systems.

Package Style (Meter): SMALL OUTLINE, THIN PROFILE, SHRINK PITCH

The small outline and thin profile design with shrink pitch makes this ADC space-saving and suitable for compact electronic devices.

Maximum Operating Temperature: 125 °C

With a high maximum operating temperature of 125°C, this ADC can withstand elevated temperatures, making it suitable for automotive and industrial applications.

Minimum Operating Temperature: -40 °C

The low minimum operating temperature of -40°C ensures the ADC can function reliably in cold environments, providing versatility in usage.

Terminal Position: DUAL

The dual terminal position offers redundancy and stability in connections, ensuring reliable performance of the ADC in demanding operating conditions.

Maximum Conversion Time: 520 us

The fast conversion time of 520 microseconds allows for quick data acquisition and processing, making this ADC suitable for real-time applications.

Maximum Seated Height: 1.2 mm

With a low seated height of 1.2mm, this ADC can be integrated into thin electronic devices easily, providing design flexibility.

Width: 4.4 mm

The compact width of 4.4mm makes this ADC suitable for space-constrained electronic designs, offering versatility in circuit layouts.

Length: 5 mm

The short length of 5mm contributes to the overall compactness of the ADC, making it an ideal choice for small form factor applications.

Temperature Grade: AUTOMOTIVE

Designed for automotive applications, this ADC is built to withstand harsh environmental conditions commonly found in automotive settings.

Maximum Analog Input Voltage: 5.05 V

With a high maximum analog input voltage of 5.05V, this ADC can accommodate a wide range of input signals, making it versatile for various voltage levels.

Sample Rate: 0.002 MHz

The sample rate of 0.002 MHz allows for high-speed data acquisition, making this ADC suitable for applications requiring fast signal processing.

Terminal Form: GULL WING

The gull wing terminal form provides secure connections and ease of soldering, ensuring reliable performance of the ADC in demanding environments.

Converter Type: ADC, DELTA-SIGMA

The delta-sigma converter type offers high resolution and low noise performance, making this ADC suitable for precision measurement applications.

Nominal Supply Voltage: 2.5 V

With a stable nominal supply voltage of 2.5V, this ADC ensures consistent performance and accuracy in signal conversion.

Output Bit Code: BINARY, 2'S COMPLEMENT BINARY

The binary and 2's complement binary output bit codes provide compatibility with various systems and devices, making this ADC versatile in data communication.

Nominal Negative Supply Voltage: -2.5 V

The nominal negative supply voltage of -2.5V allows for bipolar operation of the ADC, enabling accurate conversion of both positive and negative input signals.

Terminal Pitch: 0.65 mm

The terminal pitch of 0.65mm offers precise spacing for connections, making it easy to mount and integrate the ADC onto circuit boards.

Minimum Analog Input Voltage: -0.75 V

With a low minimum analog input voltage of -0.75V, this ADC can accurately convert small voltage signals, making it suitable for sensitive measurement applications.

Output Format: SERIAL

The serial output format simplifies data transmission and communication with external devices, offering convenient connectivity options for data processing.

Technical Specifications

Analog-to-Digital Converters PADS122U04IPWR attributes and parameters. Explore more Analog-to-Digital Converters devices from Texas Instruments

Converter Specifications

No. of Analog In Channels:

4

No. of Functions:

1

No. of Bits:

24

Output Bit Code:

Binary, 2's Complement Binary

Output Format:

Serial

Maximum Linearity Error (EL):

0.0015 %

Sample Rate:

2 kHz

Maximum Conversion Time:

520 µs

Electrical Specifications

Minimum Analog Input Voltage:

-750 mV

Maximum Analog Input Voltage:

5.05 V

Nominal Supply Voltage:

2.5 V

Nominal Negative Supply Voltage:

-2.5 V

Operating Conditions

Minimum Operating Temperature:

-40 °C (-40 °F)

Maximum Operating Temperature:

125 °C (257 °F)

Temperature Grade:

Form Factor

Terminal Position:

Dual

No. of Terminals:

16

Terminal Form:

Terminal Pitch:

0.026 in (0.65 mm)

Surface Mount:

Yes

Width:

0.173 in (4.4 mm)

Length:

0.197 in (5 mm)

Maximum Seated Height:

0.047 in (1.2 mm)

Packaging

Package Body Material:

Plastic/Epoxy

Package Style:

Small Outline, Thin Profile, Shrink Pitch

Package Shape:

Package Code:

Standards and Codes

JESD-30 Code:

R-PDSO-G16

Trade Compliance

PADS122U04IPWR Converters trade compliance attributes, and parameters.

HTS

8542.39.00.01

SB

8542.39.00.00

Manufacturer Highlights

Texas Instruments

Texas Instruments Inc. (TI) is one of the world's leading semiconductor companies and a global leader in analog and digital signal processing technology. The company has had a major impact on the electronics industry for over 80 years, manufacturing integrated circuits (ICs), software and subsystems that leverage high-performance computing capabilities. It offers an extensive portfolio of solutions for a wide range of industries, from aerospace to medical devices and consumer products to communication systems. Over its long history, TI has become synonymous with quality, reliability and innovation. Today, TI is one of the largest semiconductor companies in the world with operations in more than 30 countries across six continents.

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Management team

President, CEO

Haviv Ilan

Chairman

Richard K. Templeton

Senior VP, CFO

Rafael R. Lizardi

Manufacturer fab locations 15

Fab name Location Fab Initiation Wafer Capacity

M - Fab

Fabrication

Fab Initiation

1997

USA

South Portland

Wafer Capacity

32,000

1997

32,000

D - FAB

Fabrication

Fab Initiation

1966

USA

Dallas

Wafer Capacity

42,000

1966

42,000

D MOS - 6

Fabrication

Fab Initiation

2002

USA

Dallas

Wafer Capacity

25,000

2002

25,000

D MOS - 5

Fabrication

Fab Initiation

1995

USA

Dallas

Wafer Capacity

75,000

1995

75,000

Miho - 8

Fabrication

Fab Initiation

1980

Japan

Inashiki

Wafer Capacity

43,000

1980

43,000

S FAB 1

Fabrication

Fab Initiation

1966

USA

Sherman

Wafer Capacity

91,000

1966

91,000

F - FAB

Fabrication

Fab Initiation

2001

Germany

Freising

Wafer Capacity

37,000

2001

37,000

R Fab 1

Fabrication

Fab Initiation

2010

USA

Richardson

Wafer Capacity

40,000

2010

40,000

D HC Line

Fabrication

Fab Initiation

1999

USA

Dallas

Wafer Capacity

2,000

1999

2,000

JV3

Fabrication

Fab Initiation

2001

Japan

Aizu Wakamatsu

Wafer Capacity

45,000

2001

45,000

C - FAB

Fabrication

Fab Initiation

2007

China

Chengdu

Wafer Capacity

30,000

2007

30,000

L - Fab

Fabrication

Fab Initiation

2015

USA

Lehi

Wafer Capacity

70,000

2015

70,000

R - Fab 2

Fabrication

Fab Initiation

2022

USA

Richardson

Wafer Capacity

2022

S - FAB 2

Fabrication

Fab Initiation

2025

USA

Sherman

Wafer Capacity

2025

S - FAB 3

Fabrication

Fab Initiation

2028

USA

Sherman

Wafer Capacity

2028

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