LTC2460
Info: : PRODUCTION
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LTC2460

Ultra-Tiny, 16-Bit ΔΣ ADCs with 10ppm/°C Max Precision Reference

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Info: : PRODUCTION tooltip
Info: : PRODUCTION tooltip
Part Models 8
1ku List Price Starting From $2.01
Features
  • 16-Bit Resolution, No Missing Codes
  • Internal Reference, High Accuracy 10ppm/°C (Max)
  • Single-Ended (LTC2460) or Differential (LTC2462)
  • 2LSB Offset Error
  • 0.01% Gain Error
  • 60 Conversions Per Second
  • Single Conversion Settling Time for Multiplexed Applications
  • Single-Cycle Operation with Auto Shutdown
  • 1.5mA Supply Current
  • 2μA (Max) Sleep Current
  • Internal Oscillator—No External Components Required
  • SPI Interface
  • Ultra-Tiny 12-Lead 3mm × 3mm DFN and MSOP Packages
Additional Details
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The LTC2460/LTC2462 are ultra tiny, 16-Bit analog-to-digital converters with an integrated precision reference. They use a single 2.7V to 5.5V supply and communicate through an SPI Interface. The LTC2460 is single-ended with a 0V to VREF input range and the LTC2462 is differential with a ±VREF input range. Both ADC’s include a 1.25V integrated reference with 2ppm/°C drift performance and 0.1% initial accuracy. The converters are available in a 12-pin DFN 3mm × 3mm package or an MSOP-12 package. They include an integrated oscillator and perform conversions with no latency for multiplexed applications. The LTC2460/LTC2462 include a proprietary input sampling scheme that reduces the average input current several orders of magnitude when compared to conventional delta sigma converters.

Following a single conversion, the LTC2460/LTC2462 automatically power down the converter and can also be configured to power down the reference. When both the ADC and reference are powered down, the supply current is reduced to 200nA.

The LTC2460/LTC2462 can sample at 60 conversions per second, and due to the very large oversampling ratio, have extremely relaxed antialiasing requirements. Both include continuous internal offset and full-scale calibration algorithms which are transparent to the user, ensuring accuracy over time and the operating temperature range.

Applications

  • System Monitoring
  • Environmental Monitoring
  • Direct Temperature Measurements
  • Instrumentation
  • Industrial Process Control
  • Data Acquisition
  • Embedded ADC Upgrades
Part Models 8
1ku List Price Starting From $2.01

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Documentation

Part Model Pin/Package Drawing Documentation CAD Symbols, Footprints, and 3D Models
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LTC2460IDD#PBF
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LTC2460IMS#PBF
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Product Lifecycle

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Jun 5, 2024

- 24_0004

Epoxy Change from Henkel 8290 to 8290A for MSOP (3)

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LTC2460IMS#PBF

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Feb 4, 2020

- 20_0129

Laser Mark Conversion for 12-Lead MSOP Packages Assembled in ADPG and UTAC

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LTC2460CMS#TRPBF

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LTC2460IMS#PBF

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Filter by Model

reset

Reset Filters

Part Models

Product Lifecycle

PCN

Jun 5, 2024

- 24_0004

arrow down

Epoxy Change from Henkel 8290 to 8290A for MSOP (3)

LTC2460CMS#PBF

PRODUCTION

LTC2460CMS#TRPBF

PRODUCTION

LTC2460IMS#PBF

PRODUCTION

LTC2460IMS#TRPBF

PRODUCTION

Feb 4, 2020

- 20_0129

arrow down

Laser Mark Conversion for 12-Lead MSOP Packages Assembled in ADPG and UTAC

LTC2460CMS#PBF

PRODUCTION

LTC2460CMS#TRPBF

PRODUCTION

LTC2460IMS#PBF

PRODUCTION

LTC2460IMS#TRPBF

PRODUCTION

Software & Part Ecosystem

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Evaluation Kits 1

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DC1490A

LTC2460 Demo Board | 16-Bit SPI Single-Ended ∆Σ ADC with 10ppm Max Internal Reference, Requires DC2026

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DC1490A

LTC2460 Demo Board | 16-Bit SPI Single-Ended ∆Σ ADC with 10ppm Max Internal Reference, Requires DC2026

LTC2460 Demo Board | 16-Bit SPI Single-Ended ∆Σ ADC with 10ppm Max Internal Reference, Requires DC2026

Product Detail

DC1490A: Demo Board for the LTC2460 Ultra-Tiny, 16-Bit ΔΣ ADCs with 10ppm/°C Max Precision Reference.

Tools & Simulations 1

Linduino

Linduino is Analog Devices’ Arduino compatible system for developing and distributing firmware libraries and example code for our integrated circuits. Each Linduino-supported product includes an example main program, defined in the LTSketchbook/Part Number folder and driver code, defined in the LTSketchbook/libraries folder.

Linduino code repository on GitHub and instructions on how to use the code.

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