ADS1286PAG4

ADS1286PAG4

  • Description:IC ADC 12BIT SAR 8DIP
  • Series:-

SKU:9640df333e26 Category: Brand:

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Product Detailed Parameters

  • Description:IC ADC 12BIT SAR 8DIP
  • Series:-
  • Mfr:Texas Instruments
  • Package:Tube
  • Number of Bits:12
  • Sampling Rate (Per Second):20k
  • Number of Inputs:1
  • Input Type:Differential
  • Data Interface:SPI
  • Configuration:S/H-ADC
  • Ratio - S/H:ADC:1:01
  • Number of A/D Converters:1
  • Architecture:SAR
  • Reference Type:External
  • Voltage - Supply, Analog:5V
  • Voltage - Supply, Digital:5V
  • Features:-
  • Operating Temperature:-40°C ~ 85°C
  • Package / Case:8-DIP (0.300", 7.62mm)
  • Supplier Device Package:8-PDIP
  • Mounting Type:Through Hole
  • Grade:-
  • Qualification:-

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ADS1286PAG4

Buying Guide
Summary

Texas Instruments ADS1286PAG4 is used in Analog to Digital Converters (ADC) category for data acquisition and conversion designs where interface timing and accuracy margins matter. Key specs include Description (IC ADC 12BIT SAR 8DIP), Temperature (-40°C ~ 85°C), Package/case (8-DIP (0.300", 7.62mm)), Mounting (Through Hole), and Packaging (Tube).

Selection Notes
  • For ADS1286PAG4, confirm the data interface (SPI) matches your host interface and timing requirements.
  • Validate the operating temperature range (-40°C ~ 85°C) for your environment and margin.
  • Confirm Number of Bits (12) and ensure it matches your integration requirements.
Alternates & Substitutions
  • For Analog to Digital Converters (ADC), compare the datasheet test conditions behind key specs and re-check the margins that were tightest during bring-up.
  • Lock the mechanical constraints first (package/case 8-DIP (0.300", 7.62mm), supplier package 8-PDIP, mounting Through Hole) before comparing performance specs.
  • For data converters, compare interface SPI and re-check clocking, reference, and layout assumptions during validation.
  • To speed up alternate matching, provide your must-have constraints (package 8-DIP (0.300", 7.62mm), interface SPI) and any compliance/traceability needs.
FAQ

Who is the manufacturer of ADS1286PAG4?
Texas Instruments

Any tips for derating and validation for ADS1286PAG4?
Validate at worst-case temperature and load, confirm thermal headroom, and check protection and startup behavior with margin.

Can you confirm the Ratio - S/H:ADC for ADS1286PAG4?
1:01

What is the Number of Bits of ADS1286PAG4?
12

Application Scenarios

For Texas Instruments ADS1286PAG4 in the Analog to Digital Converters (ADC) category, teams usually prioritize documentation clarity and repeatable behavior in production. Teams generally validate noise and settling on the actual PCB stack-up because parasitics and coupling often dominate datasheet-to-board gaps. A strong signal-chain choice reduces calibration burden by keeping drift, gain, and phase behavior stable across temperature and aging. ADC-based designs balance front-end impedance, sampling network settling, anti-aliasing, and clock quality to meet ENOB targets. In the end, reducing integration uncertainty is what keeps schedules predictable and field reliability high. Within practice, removing integration uncertainty is what keeps schedules predictable and field reliability high. In robotics, consistent sensing latency and settling keep control loops stable under rapidly changing loads. This keeps the design closer to the datasheet boundaries and farther from fragile, layout-dependent behavior.

Compatibility Advice
  • In practice, check anti-alias and reconstruction filtering with real signals so system-level error is bounded. This helps field behavior stay predictable across lots.
Project Fit
  • Not ideal when integrating Texas Instruments ADS1286PAG4 for Analog to Digital Converters (ADC), references, grounding, and clock quality cannot be controlled enough to make performance repeatable, because the remaining risk is system-level and cannot be bounded by datasheet checks alone.
  • Strongest fit when you can qualify Texas Instruments ADS1286PAG4 for Analog to Digital Converters (ADC) integration with production-like fixtures, typically when you can control references, clocking, grounding, and filtering so conversion performance is repeatable on the PCB.
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