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ADS1115
  • ADS1115
  • ADS1115
  • ADS1115

ADS1115

ACTIVE

16-bit, 860-SPS, 4-channel, delta-sigma ADC with PGA, oscillator, VREF, comparator and I2C Linux Mainline Status

Texas Instruments ADS1115 Product Info

1 April 2026 0

Parameters

Resolution (Bits)

16

Sample rate (max) (ksps)

0.86

Number of input channels

4

Interface type

I2C

Architecture

Delta-Sigma

Input type

Differential, Single-ended

Multichannel configuration

Multiplexed

Rating

Catalog

Reference mode

Internal

Input voltage range (max) (V)

5.5

Input voltage range (min) (V)

0

Features

Comparator, Oscillator, PGA

Operating temperature range (°C)

-40 to 125

Power consumption (typ) (mW)

0.3

Analog supply voltage (min) (V)

2

Analog supply voltage (max) (V)

5.5

Digital supply (min) (V)

2

Digital supply (max) (V)

5.5

Package

SOT-5X3 (DYN)-10-8.12 mm² 2.9 x 2.8

Features

  • Ultra-small packages:
    • X2QFN: 2mm × 1.5mm × 0.4mm
    • SOT: 2.9mm × 2.8mm × 0.6mm
  • Wide supply range: 2.0V to 5.5V
  • Low current consumption: 150µA (continuous-conversion mode)
  • Programmable data rate: 8SPS to 860SPS
  • Single-cycle settling
  • Internal low-drift voltage reference
  • Internal oscillator
  • I2C interface: four pin-selectable addresses
  • Operating temperature range: –40°C to +125°C
  • Family of devices:
    • ADS1113: one single-ended (SE) or differential (DE) input
    • ADS1114: one single-ended or differential input with comparator and PGA
    • ADS1115: four single-ended or two differential inputs with comparator and PGA
  • Ultra-small packages:
    • X2QFN: 2mm × 1.5mm × 0.4mm
    • SOT: 2.9mm × 2.8mm × 0.6mm
  • Wide supply range: 2.0V to 5.5V
  • Low current consumption: 150µA (continuous-conversion mode)
  • Programmable data rate: 8SPS to 860SPS
  • Single-cycle settling
  • Internal low-drift voltage reference
  • Internal oscillator
  • I2C interface: four pin-selectable addresses
  • Operating temperature range: –40°C to +125°C
  • Family of devices:
    • ADS1113: one single-ended (SE) or differential (DE) input
    • ADS1114: one single-ended or differential input with comparator and PGA
    • ADS1115: four single-ended or two differential inputs with comparator and PGA

Description

The ADS1113, ADS1114, and ADS1115 (ADS111x) are precision, low-power, 16-bit, I2C-compatible, analog-to-digital converters (ADCs) offered in a leadless X2QFN-10, a SOT-10 package, and a VSSOP-10 package. The ADS111x devices incorporate a low-drift voltage reference and an oscillator. The ADS1114 and ADS1115 also incorporate a programmable gain amplifier (PGA) and a digital comparator. These features, along with a wide operating supply range, are useful for power- and space-constrained, sensor measurement applications.

The ADS111x devices perform conversions at data rates of up to 860 samples per second (SPS). The PGA offers input ranges from ±256mV to ±6.144V, allowing precise large- and small-signal measurements. The ADS1115 features an input multiplexer (MUX) that allows two differential or four single-ended input measurements. Use the digital comparator in the ADS1114 and ADS1115 for undervoltage and overvoltage detection.

The ADS1113, ADS1114, and ADS1115 (ADS111x) are precision, low-power, 16-bit, I2C-compatible, analog-to-digital converters (ADCs) offered in a leadless X2QFN-10, a SOT-10 package, and a VSSOP-10 package. The ADS111x devices incorporate a low-drift voltage reference and an oscillator. The ADS1114 and ADS1115 also incorporate a programmable gain amplifier (PGA) and a digital comparator. These features, along with a wide operating supply range, are useful for power- and space-constrained, sensor measurement applications.

The ADS111x devices perform conversions at data rates of up to 860 samples per second (SPS). The PGA offers input ranges from ±256mV to ±6.144V, allowing precise large- and small-signal measurements. The ADS1115 features an input multiplexer (MUX) that allows two differential or four single-ended input measurements. Use the digital comparator in the ADS1114 and ADS1115 for undervoltage and overvoltage detection.

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