ADS8326 - 16-Bit, Pseudo-Diff Input, 250kSPS Serial Out, 2.7V-to-5.5V Micropower Sampling ADC

Updated : 2020-01-09 14:28:29
Description

The ADS8326 is a 16-bit, sampling, analog-to-digital (A/D) converter specified for a supply voltage range from 2.7V to 5.5V. It requires very little power, even when operating at the full data rate. At lower data rates, the high speed of the device enables it to spend most of its time in the power-down mode. For example, the average power dissipation is less than 0.2mW at a 10kHz data rate.

The ADS8326 offers excellent linearity and very low noise and distortion. It also features a synchronous serial (SPI/SSI-compatible) interface and a differential input. The reference voltage can be set to any level within the range of 0.1V to VDD.

Low power and small size make the ADS8326 ideal for portable and battery-operated systems. It is also a perfect fit for remote data-acquisition modules, simultaneous multichannel systems, and isolated data acquisition. The ADS8326 is available in either an MSOP-8 and an SON-8 package.

Products containing the "ADS8326" keyword are: ADS8326EVM , ADS8326EVM , ADS8326EVM-PDK , ADS8326IBDGK , ADS8326IBDGKR , ADS8326IBDGKR , ADS8326IBDGKRG , ADS8326IBDGKRG4 , ADS8326IBDGKT , ADS8326IBDGKT , ADS8326IBDGKT. , ADS8326IBDGKTG4 , ADS8326IBDGKTG4 , ADS8326IBDRBR , ADS8326IBDRBR , ADS8326IBDRBT , ADS8326IBDRBT , ADS8326IDGKR , ADS8326IDGKR , ADS8326IDGKR08+
Features

  • 16 Bits No Missing Codes (Full-Supply Range, High or Low Grade)
  • Very Low Noise: 3LSBPP
  • Excellent Linearity:
    ±1LSB typ, ±1.5LSB max INL
    ±0.6LSB typ, ±1LSB max DNL
    ±1mV max Offset
    ±12LSB typ Gain Error
  • microPower:
    10mW at 5V, 250kHz
    4mW at 2.7V, 200kHz
    2mW at 2.7V, 100kHz
    0.2mW at 2.7V, 10kHz
  • MSOP-8 and SON-8 Packages
    (SON-8 package same as 3x3 QFN)
  • 16-Bit Upgrade to the 12-Bit ADS7816 and ADS7822
  • Pin-Compatible with the ADS7816, ADS7822, ADS7826, ADS7827, ADS7829, ADS8320, and ADS8325
  • Serial (SPI/SSI) Interface
  • APPLICATIONS
    • Battery-Operated Systems
    • Remote Data Acquisition
    • Isolated Data Acquisition
    • Simultaneous Sampling, Multichannel
      Systems
    • Industrial Controls
    • Robotics
    • Vibration Analysis

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