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Datasheet Texas Instruments ADS7816PG4

Datasheet Texas Instruments ADS7816PG4

ManufacturerTexas Instruments
SeriesADS7816
Part NumberADS7816PG4

12-Bit High Speed Micro Power Sampling Analog-To-Digital Converter 8-PDIP -40 to 85

Datasheets

  • Download » Datasheet PDF, 975 Kb, File published: Sep 27, 2000
    12-Bit High Speed Micro Power Sampling Analog-To-Digital Converter datasheet
    Docket ↓
    ADS7816 В®
    AD ADS 781 6 OPSA7816
    658 12-Bit High Speed Micro Power Sampling
    ANALOG-TO-DIGITAL CONVERTER
    FEATURES DESCRIPTION в—Џ 200kHz SAMPLING RATE
    в—Џ MICRO POWER:
    1.9mW at 200kHz
    150ВµW at 12.5kHz
    в—Џ POWER DOWN: 3ВµA Max
    в—Џ 8-PIN MINI-DIP, SOIC, AND MSOP
    в—Џ DIFFERENTIAL INPUT
    в—Џ SERIAL INTERFACE The ADS7816 is a 12-bit, 200kHz sampling analogto-digital converter. It features low power operation
    with automatic power down, a synchronous serial
    interface, and a differential input. The reference voltage can be varied from 100mV to 5V, with a corresponding resolution from 24ВµV to 1.22mV.
    Low power, automatic power down, and small size
    make the ADS7816 ideal for battery operated systems
    or for systems where a large number of signals must be
    acquired simultaneously. It is also ideal for remote
    and/or isolated data acquisition. The ADS7816 is
    available in an 8-pin plastic mini-DIP, an 8-lead SOIC,
    or an 8-lead MSOP package. APPLICATIONS
    в—Џ BATTERY OPERATED SYSTEMS
    в—Џ REMOTE DATA ACQUISITION ...

Prices

Family: ADS7816

Status

Lifecycle StatusObsolete (Manufacturer has discontinued the production of the device)
Manufacture's Sample AvailabilityNo

Packaging

Pin8
Package TypeP
Industry STD TermPDIP
JEDEC CodeR-PDIP-T
CarrierTUBE
Device MarkingADS7816P
Width (mm)6.35
Length (mm)9.81
Thickness (mm)3.9
Pitch (mm)2.54
Max Height (mm)5.08
Mechanical DataDownload »

Parametrics

# Input Channels1
Analog Voltage AVDD(Max)5.25 V
Analog Voltage AVDD(Min)4.5 V
ArchitectureSAR
Digital Supply(Max)5.25 V
Digital Supply(Min)4.5 V
INL(Max)2 +/-LSB
Input Range(Max)5.25 V
Input TypePseudo-Differential,Single-Ended
Integrated FeaturesN/A
InterfaceSerial
Multi-Channel ConfigurationN/A
Operating Temperature Range-40 to 85 C
Package GroupSOIC,VSSOP
Package Size: mm2:W x L8SOIC: 29 mm2: 6 x 4.9(SOIC),8VSSOP: 15 mm2: 4.9 x 3(VSSOP) PKG
Power Consumption(Typ)1.9 mW
RatingCatalog
Reference ModeExt
Resolution12 Bits
SINAD72 dB
SNR72 dB
Sample Rate (max)200kSPS SPS
Sample Rate(Max)0.2 MSPS
THD(Typ)-84 dB

Eco Plan

RoHSNot Compliant

Application Notes

  • Download » Application Notes PDF, 67 Kb, Revision: A, File published: May 8, 2015
    Voltage Reference Scaling Techniques Increase Converter and Resolution Accuracy (Rev. A)
  • Download » Application Notes PDF, 65 Kb, File published: Sep 27, 2000
    Short Cycling the 8-Pin ADS78xx Family
    The most recent 8-pin, 12-bit A/D converters that Burr-Brown has introduced to the market are advertised as high speed, micropower, low priced sampling SAR devices. During product development and the initial introduction period, the engineering effort was placed on optimizing the combination of 12 bits with high speed, low power and low cost. Burr-Brown Applications has revisited these converters
  • Download » Application Notes PDF, 69 Kb, File published: Sep 27, 2000
    Interfacing the ADS7822 to synchronous serial port of the 80x51 Microcontroller
    Analog-to-digital converters can be controlled by a normal I/O port or with the synchronous serial port of the 80x51 microcontrollers. The synchronous serial port is more efficient, however, there are some pitfalls to be aware of when configuring the 8-pin A/D converters (ADS1286, ADS7816, ADS7817 and ADS7822) from Burr-Brown. This application bulletin describes how to get around these pitfalls an
  • Download » Application Notes PDF, 70 Kb, Revision: A, File published: May 15, 2015
    Coding Schemes Used with Data Converters (Rev. A)
  • Download » Application Notes PDF, 219 Kb, File published: Dec 2, 2003
    Interfacing the MSOP8EVM to TMS320C6x Processors
    The modular MSOP8EVM is an evaluation module for single-channel, low-power, 8 to 16-bit serial analog-to-digital converters. This application note presents a method for interfacing this EVM to the TMS320C6x Series DSKs using a 5-6K Interface Board. The EVM software provides compile options to choose the proper data formatting for the ADS7816, ADS7817, ADS7818, ADS7822, ADS7826, ADS7829, ADS7835, A
  • Download » Application Notes PDF, 225 Kb, File published: Apr 28, 2004
    Interfacing the MSOP8EVM to TMS320C5x Processors
    This application note presents a method for interfacing the modular MSOP8 evaluation module (EVM), an EVM for single-channel, low-power, 8- to 16-bit serial analog-to-digital converters, to the TMS320C5x series DSKs using a 5-6K interface board. The software developed provides compile options to choose the proper data formatting for the ADS7816, ADS7817, ADS7818, ADS7822, ADS7826, ADS7827, ADS7829
  • Download » Application Notes PDF, 54 Kb, File published: Jul 28, 2004
    Interfacing the MSOP8EVM to MSP430 Processors
    This application note presents a method for interfacing the modular MSOP8EVM - an EVM for single-channel, low-power, 8- to 16-bit serial analog-to-digital converters - to the MSP430 series microcontrollers. The hardware used for this example includes the HPA449 from SoftBaugh, Inc. (www.softbaugh.com), featuring the MSP430F449. The software developed provides compile options to choose the proper d
  • Download » Application Notes PDF, 68 Kb, File published: Mar 15, 2006
    Interfacing the MSOP8EVM to TMS470 Processors
    This application report presents a method for interfacing the modular MSOP8EVM, an evaluation module (EVM) for single-channel, low-power, 8- to 16-bit serial analog-to-digital converters to the TMS470 series microcontrollers. The hardware used for this example includes the TMS470 Kickstart Development Kit evaluation kit featuring the 60-MHz TMS470R1B1M and the HPA-MCU Interface Board. The soft
  • Download » Application Notes PDF, 227 Kb, Revision: A, File published: Nov 10, 2010
    Determining Minimum Acquisition Times for SAR ADCs, part 1 (Rev. A)
    This application report analyzes a simple method for calculating minimum acquisition times for successive-approximation register analog-to-digital converters (SAR ADCs). The input structure of the ADC is examined along with the driving circuit. The voltage on the sampling capacitor is then determined for the case when a step function is applied to the input of the driving circuit. Three different
  • Download » Application Notes PDF, 215 Kb, File published: Mar 17, 2011
    Determining Minimum Acquisition Times for SAR ADCs, part 2
    The input structure circuit of a successive-approximation register analog-to-digital converter (SAR ADC) incombination with the driving circuit forms a transfer function that can be used to determine minimum acquisition times for different types of applied input signals. This application report, which builds on Determining Minimum Acquisition Times for SAR ADCs When a Step Function is Applied to
  • Download » Application Notes PDF, 132 Kb, Revision: A, File published: Apr 16, 2015
    Principles of Data Acquisition and Conversion (Rev. A)
  • Download » Application Notes PDF, 425 Kb, Revision: B, File published: Oct 9, 2011
    A Glossary of Analog-to-Digital Specifications and Performance Characteristics (Rev. B)
    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.
  • Download » Application Notes PDF, 69 Kb, Revision: A, File published: May 18, 2015
    Analog-to-Digital Converter Grounding Practices Affect System Performance (Rev. A)

Moldel Line

Series: ADS7816 (29)

Manufacturer's Classification

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