Datasheet Texas Instruments ADS1198

ManufacturerTexas Instruments
SeriesADS1198
Datasheet Texas Instruments ADS1198

Low-Noise, 8 Channel, 16 Bit Analog Front End for ECG/EEG Measurements

Datasheets

Low-Power, 8-Channel, 16-Bit Analog Front-End for Biopotential Measurements datasheet
PDF, 1.6 Mb, Revision: C, File published: Nov 29, 2011
Extract from the document

Prices

Status

ADS1198CPAGADS1198CPAGRADS1198CZXGRADS1198CZXGT
Lifecycle StatusActive (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)
Manufacture's Sample AvailabilityYesYesNoNo

Packaging

ADS1198CPAGADS1198CPAGRADS1198CZXGRADS1198CZXGT
N1234
Pin64646464
Package TypePAGPAGZXGZXG
Industry STD TermTQFPTQFPNFBGANFBGA
JEDEC CodeS-PQFP-GS-PQFP-GS-PBGA-NS-PBGA-N
Package QTY16015001000250
CarrierJEDEC TRAY (5+1)LARGE T&RLARGE T&RSMALL T&R
Device MarkingADS1198ADS1198ADS1198ADS1198
Width (mm)101088
Length (mm)101088
Thickness (mm)111.011.01
Pitch (mm).5.5.8.8
Max Height (mm)1.21.21.451.45
Mechanical DataDownloadDownloadDownloadDownload

Parametrics

Parameters / ModelsADS1198CPAG
ADS1198CPAG
ADS1198CPAGR
ADS1198CPAGR
ADS1198CZXGR
ADS1198CZXGR
ADS1198CZXGT
ADS1198CZXGT
# Input Channels8888
Analog Voltage AVDD(Max), V5.255.255.255.25
Analog Voltage AVDD(Min), V2.72.72.72.7
ArchitectureDelta-SigmaDelta-SigmaDelta-SigmaDelta-Sigma
Digital Supply(Max), V3.63.63.63.6
Digital Supply(Min), V1.651.651.651.65
INL(Max), +/-LSB1111
Input Range(Max), V5.255.255.255.25
Input TypeDifferential,Single-EndedDifferential,Single-EndedDifferential,Single-EndedDifferential,Single-Ended
Integrated FeaturesDaisy-Chainable,GPIO,Oscillator,PGADaisy-Chainable,GPIO,Oscillator,PGADaisy-Chainable,GPIO,Oscillator,PGADaisy-Chainable,GPIO,Oscillator,PGA
InterfaceSPISPISPISPI
Multi-Channel ConfigurationSimultaneous SamplingSimultaneous SamplingSimultaneous SamplingSimultaneous Sampling
Operating Temperature Range, C0 to 700 to 700 to 700 to 70
Package GroupTQFPTQFPNFBGANFBGA
Package Size: mm2:W x L, PKG64TQFP: 144 mm2: 12 x 12(TQFP)64TQFP: 144 mm2: 12 x 12(TQFP)64NFBGA: 64 mm2: 8 x 8(NFBGA)64NFBGA: 64 mm2: 8 x 8(NFBGA)
Power Consumption(Typ), mW4.34.34.34.3
RatingCatalogCatalogCatalogCatalog
Reference ModeInt,ExtInt,ExtInt,ExtInt,Ext
Resolution, Bits16161616
SNR, dB97979797
Sample Rate (max), SPS8KSPS8KSPS8KSPS8KSPS
Sample Rate(Max), MSPS0.0080.0080.0080.008
THD(Typ), dB-95-95-95-95

Eco Plan

ADS1198CPAGADS1198CPAGRADS1198CZXGRADS1198CZXGT
RoHSCompliantCompliantCompliantCompliant

Application Notes

  • ECG Implementation on the TMS320C5515 DSP Medical Development Kit (Rev. B)
    PDF, 1.5 Mb, Revision: B, File published: Jun 29, 2010
    The medical development kit (MDK) provides a development platform to TI medical customers, third parties, and other developers. This application report focuses on the C5515 MDK; however, the analog front ends that are included can also be used with other platforms.Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Ins
  • Heart-Rate and EKG Monitor Using the MSP430FG439 (Rev. A)
    PDF, 519 Kb, Revision: A, File published: Sep 25, 2007
    This application report describes how to build a digital heart-rate monitor using a MSP430FG439 microcontroller (MCU). The heartbeat rate per minute is displayed on an LCD. In addition, the application outputs a digital data stream via an RS232 serial port to allow EKG waveform display on a PC. PCB Gerber files, schematic, bill of materials, and firmware are provided in a zip file associated with
  • Thermal Noise Analysis in ECG Applications
    PDF, 114 Kb, File published: May 3, 2011
    This article discusses the thermal noise source of electrocardiogram (ECG) applications basedon the ADS1298 and ADS1298R family of multichannel, simultaneous sampling, 24-bit, delta-sigma (О”ОЈ) analog-to-digital converters (ADCs). This report offers several observations on identifying the major sources of thermal noise in an ECG system, and makes several recommendations regarding how to improve t
  • Understanding Lead-Off Detection in ECG (Rev. A)
    PDF, 313 Kb, Revision: A, File published: Jan 14, 2015
  • Improving Common-Mode Rejection Using the Right-Leg Drive Amplifier
    PDF, 297 Kb, File published: Jul 6, 2011
    This article discusses the need to improve common-mode rejection (CMR) in electrocardiogram (ECG) subsystem applications. Several different techniques to improve CMR while also considering both patient and operator safety are presented. This report also reviews the implementation of the right-leg drive (RLD) loop technique to improve CMR using the ADS129x family of analog-to-digital converters (in
  • Analog Front-End Design for ECG Systems Using Delta-Sigma ADCs (Rev. A)
    PDF, 191 Kb, Revision: A, File published: Apr 13, 2010
    This document discusses the characteristics of electrocardiogram (ECG) signals and different front-endapproaches for ECG signal acquisition. The tradeoffs between different approaches and the effects on overall system design are discussed. The report also includes descriptions of potential implementations of the front-end architecture using the ADS1258 and ADS1278 and respective noise measuremen
  • Analog-to-Digital Converter Grounding Practices Affect System Performance (Rev. A)
    PDF, 69 Kb, Revision: A, File published: May 18, 2015
  • A Glossary of Analog-to-Digital Specifications and Performance Characteristics (Rev. B)
    PDF, 425 Kb, Revision: B, File published: Oct 9, 2011
    This glossary is a collection of the definitions of Texas Instruments' Delta-Sigma (О”ОЈ), successive approximation register (SAR), and pipeline analog-to-digital (A/D) converter specifications and performance characteristics. Although there is a considerable amount of detail in this document, the product data sheet for a particular product specification is the best and final reference.
  • Principles of Data Acquisition and Conversion (Rev. A)
    PDF, 132 Kb, Revision: A, File published: Apr 16, 2015

Model Line

Manufacturer's Classification

  • Semiconductors> Data Converters> Analog-to-Digital Converters (ADCs)> Precision ADCs (<=10MSPS)