ADS8588SIPM >
ADS8588SIPM
Texas Instruments
IC ADC 16BIT SAR 64LQFP
196641 Pcs New Original In Stock
16 Bit Analog to Digital Converter 8 Input 8 SAR 64-LQFP (10x10)
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ADS8588SIPM Texas Instruments
5.0 / 5.0 - (248 Ratings)

ADS8588SIPM

Product Overview

1437577

DiGi Electronics Part Number

ADS8588SIPM-DG

Manufacturer

Texas Instruments
ADS8588SIPM

Description

IC ADC 16BIT SAR 64LQFP

Inventory

196641 Pcs New Original In Stock
16 Bit Analog to Digital Converter 8 Input 8 SAR 64-LQFP (10x10)
Quantity
Minimum 1

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In Stock (All prices are in USD)
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  • 1 252.9527 252.9527
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ADS8588SIPM Technical Specifications

Category Data Acquisition, Analog to Digital Converters (ADC)

Manufacturer Texas Instruments

Packaging Tray

Series -

Product Status Active

Number of Bits 16

Sampling Rate (Per Second) 200k

Number of Inputs 8

Input Type Single Ended

Data Interface Parallel, Serial

Configuration PGA-ADC

Ratio - S/H:ADC 0:1

Number of A/D Converters 8

Architecture SAR

Reference Type External, Internal

Voltage - Supply, Analog 4.75V ~ 5.25V

Voltage - Supply, Digital 2.3V ~ 5.25V

Features Simultaneous Sampling

Operating Temperature -40°C ~ 125°C

Package / Case 64-LQFP

Supplier Device Package 64-LQFP (10x10)

Mounting Type Surface Mount

Base Product Number ADS8588

Datasheet & Documents

Manufacturer Product Page

ADS8588SIPM Specifications

HTML Datasheet

ADS8588SIPM-DG

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 3 (168 Hours)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8542.39.0001

Additional Information

Other Names
296-45363
Standard Package
160

Reviews

5.0/5.0-(Show up to 5 Ratings)
Qui***oul
de desembre 02, 2025
5.0
I appreciated their quick response when I contacted support, and they handled my concerns professionally.
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de desembre 02, 2025
5.0
Great online experience that complements their attractive pricing.
SunnyD***osition
de desembre 02, 2025
5.0
Long-term reliability and exceptional quality are what define DiGi Electronics for me.
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de desembre 02, 2025
5.0
I appreciate their commitment to offering excellent value for money.
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de desembre 02, 2025
5.0
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de desembre 02, 2025
5.0
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Frequently Asked Questions (FAQ)

How do I ensure stable reference voltage performance when using the ADS8588SIPM in a noisy industrial environment?

To maintain accurate conversions with the ADS8588SIPM in electrically noisy environments, avoid relying solely on the internal reference; instead, use an external precision reference like the REF5050 for improved stability. Ensure low-impedance routing, add both bulk and ceramic decoupling capacitors near the REF_IN pin, and isolate the reference circuitry from digital switching noise. The ADS8588SIPM's dual reference capability allows this flexibility, which is critical for maintaining 16-bit performance under real-world conditions.

Can the ADS8588SIPM replace the MAX11046 in an existing high-channel-density data acquisition system without redesigning the signal chain?

While both the ADS8588SIPM and MAX11046 offer 16-bit resolution and simultaneous sampling on multiple channels, replacing the MAX11046 with the ADS8588SIPM requires careful evaluation. The ADS8588SIPM has higher power consumption and different digital interface timing—especially in parallel mode—so check MCU/FPGA compatibility. Additionally, the MAX11046 uses an internal oscillator while the ADS8588SIPM requires an external clock, necessitating a redesign of timing circuitry. Evaluate thermal and layout impacts due to the ADS8588SIPM's higher supply current.

What are the key layout considerations for minimizing crosstalk between the eight analog inputs on the ADS8588SIPM in compact PCB designs?

To reduce crosstalk in high-density layouts using the ADS8588SIPM, maintain adequate spacing (≥3W rule) between analog input traces and route them perpendicular to digital lines. Use a solid ground plane under the ADC and place input RC filters (e.g., 50Ω + 10nF) as close as possible to the device pins. Given the ADS8588SIPM's simultaneous sampling across 8 channels, any shared impedance in ground or supply paths can induce inter-channel interference—therefore, use separate analog and digital ground regions tied at a single point, and ensure power domains are cleanly decoupled with 10µF and 100nF capacitors per supply pin.

Is the ADS8588SIPM suitable for use in extended temperature applications such as downhole drilling electronics, and what derating strategies should be applied?

The ADS8588SIPM is rated for operation from -40°C to +125°C, making it viable for harsh environments like oil and gas sensing, but at extended temperatures near the upper limit, reliability risks increase. To ensure long-term performance, derate maximum power dissipation by at least 20%, avoid thermal vias under the exposed pad that could cause solder joint stress, and validate signal integrity with worst-case timing margins. Monitor junction temperature via thermal resistance specs (θJA ~ 40°C/W) and consider local cooling if ambient exceeds 100°C.

How do I manage interface timing compatibility when integrating the ADS8588SIPM with an FPGA that operates at 2.5V I/O voltage?

When interfacing the ADS8588SIPM with a 2.5V FPGA, verify that the ADC’s digital I/Os (which are 2.3V to 5.25V tolerant) reliably recognize logic levels from the FPGA. Use series termination resistors to prevent reflections on wide parallel buses, especially at maximum 200kSPS throughput. For best signal integrity, route data and control lines with matched lengths and avoid hot-plugging. Consider using the serial interface mode of the ADS8588SIPM if pin count is constrained, though this increases serialization time versus parallel access.

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