Datasheet Texas Instruments ADS8505 — Ficha de datos

FabricanteTexas Instruments
SerieADS8505
Datasheet Texas Instruments ADS8505

Convertidor analógico a digital CMOS de 16 bits a 250 kHz con interfaz paralela 2.5V Referencia interna

Hojas de datos

16-Bit 250-KSPS Sampling CMOS Analog-to-Digital Converter datasheet
PDF, 1.0 Mb, Revisión: B, Archivo publicado: feb 1, 2007
Extracto del documento

Precios

Estado

ADS8505IBDBADS8505IBDBG4ADS8505IBDBRADS8505IBDBRG4ADS8505IBDWADS8505IBDWG4ADS8505IBDWRADS8505IDBADS8505IDWADS8505IDWG4ADS8505IDWR
Estado del ciclo de vidaActivo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)
Disponibilidad de muestra del fabricanteNoNoNoNoNoNoNoNoNoNoNo

Embalaje

ADS8505IBDBADS8505IBDBG4ADS8505IBDBRADS8505IBDBRG4ADS8505IBDWADS8505IBDWG4ADS8505IBDWRADS8505IDBADS8505IDWADS8505IDWG4ADS8505IDWR
N1234567891011
Pin2828282828282828282828
Package TypeDBDBDBDBDWDWDWDBDWDWDW
Industry STD TermSSOPSSOPSSOPSSOPSOICSOICSOICSSOPSOICSOICSOIC
JEDEC CodeR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-G
Package QTY505020002000202010005020201000
CarrierTUBETUBELARGE T&RLARGE T&RTUBETUBELARGE T&RTUBETUBETUBELARGE T&R
Device MarkingADS8505IBADS8505IBBBBADS8505IADS8505IADS8505IADS8505I
Width (mm)5.35.35.35.37.57.57.55.37.57.57.5
Length (mm)10.210.210.210.217.917.917.910.217.917.917.9
Thickness (mm)1.951.951.951.952.352.352.351.952.352.352.35
Pitch (mm).65.65.65.651.271.271.27.651.271.271.27
Max Height (mm)22222.652.652.6522.652.652.65
Mechanical DataDescargarDescargarDescargarDescargarDescargarDescargarDescargarDescargarDescargarDescargarDescargar

Paramétricos

Parameters / ModelsADS8505IBDB
ADS8505IBDB
ADS8505IBDBG4
ADS8505IBDBG4
ADS8505IBDBR
ADS8505IBDBR
ADS8505IBDBRG4
ADS8505IBDBRG4
ADS8505IBDW
ADS8505IBDW
ADS8505IBDWG4
ADS8505IBDWG4
ADS8505IBDWR
ADS8505IBDWR
ADS8505IDB
ADS8505IDB
ADS8505IDW
ADS8505IDW
ADS8505IDWG4
ADS8505IDWG4
ADS8505IDWR
ADS8505IDWR
# Input Channels11111111111
Analog Voltage AVDD(Max), V5.255.255.255.255.255.255.255.255.255.255.25
Analog Voltage AVDD(Min), V4.754.754.754.754.754.754.754.754.754.754.75
ArchitectureSARSARSARSARSARSARSARSARSARSARSAR
Digital Supply(Max), V5.255.255.255.255.255.255.255.255.255.255.25
Digital Supply(Min), V4.754.754.754.754.754.754.754.754.754.754.75
INL(Max), +/-LSB1.51.51.51.51.51.51.51.51.51.51.5
Input Range(Max), V1010101010101010101010
Input Range(Min), V-10-10-10-10-10-10-10-10-10-10-10
Input TypeSingle-EndedSingle-EndedSingle-EndedSingle-EndedSingle-EndedSingle-EndedSingle-EndedSingle-EndedSingle-EndedSingle-EndedSingle-Ended
Integrated FeaturesOscillatorOscillatorOscillatorOscillatorOscillatorOscillatorOscillatorOscillatorOscillatorOscillatorOscillator
InterfaceParallelParallelParallelParallelParallelParallelParallelParallelParallelParallelParallel
Multi-Channel ConfigurationN/AN/AN/AN/AN/AN/AN/AN/AN/AN/AN/A
Operating Temperature Range, C-40 to 85-40 to 85-40 to 85-40 to 85-40 to 85-40 to 85-40 to 85-40 to 85-40 to 85-40 to 85-40 to 85
Package GroupSSOPSSOPSSOPSSOPSOICSOICSOICSSOPSOICSOICSOIC
Package Size: mm2:W x L, PKG28SSOP: 80 mm2: 7.8 x 10.2(SSOP)28SSOP: 80 mm2: 7.8 x 10.2(SSOP)28SSOP: 80 mm2: 7.8 x 10.2(SSOP)28SSOP: 80 mm2: 7.8 x 10.2(SSOP)28SOIC: 184 mm2: 10.3 x 17.9(SOIC)28SOIC: 184 mm2: 10.3 x 17.9(SOIC)28SOIC: 184 mm2: 10.3 x 17.9(SOIC)28SSOP: 80 mm2: 7.8 x 10.2(SSOP)28SOIC: 184 mm2: 10.3 x 17.9(SOIC)28SOIC: 184 mm2: 10.3 x 17.9(SOIC)28SOIC: 184 mm2: 10.3 x 17.9(SOIC)
Power Consumption(Typ), mW155155155155155155155155155155155
RatingCatalogCatalogCatalogCatalogCatalogCatalogCatalogCatalogCatalogCatalogCatalog
Reference ModeExt,IntExt,IntExt,IntExt,IntExt,IntExt,IntExt,IntExt,IntExt,IntExt,IntExt,Int
Resolution, Bits1616161616161616161616
SINAD, dB8888888888888888888888
SNR, dB8888888888888888888888
Sample Rate (max), SPS250kSPS250kSPS250kSPS250kSPS250kSPS250kSPS250kSPS250kSPS250kSPS250kSPS250kSPS
Sample Rate(Max), MSPS0.250.250.250.250.250.250.250.250.250.250.25
THD(Typ), dB-105-105-105-105-105-105-105-105-105-105-105

Plan ecológico

ADS8505IBDBADS8505IBDBG4ADS8505IBDBRADS8505IBDBRG4ADS8505IBDWADS8505IBDWG4ADS8505IBDWRADS8505IDBADS8505IDWADS8505IDWG4ADS8505IDWR
RoHSObedienteObedienteObedienteObedienteObedienteObedienteObedienteObedienteObedienteObedienteObediente

Notas de aplicación

  • Controlling the ADS7805 With TMS320 Series DSPs
    PDF, 69 Kb, Archivo publicado: nov 9, 2004
    The ADS7805 16-bit, bipolar input, parallel output analog-to-digital converter (ADC) has features that allow for an easy interface to many of the TMS320 series of digital signal processors from Texas Instruments. This application report focuses on configuring, sampling, and converting analog data presented to the ADS7805 ADC, with software examples using the TMS320C6713 and TMS320C5416 DSPs. The
  • Upgrading from the ADS7804/05 to the ADS8504/05
    PDF, 71 Kb, Archivo publicado: abr 30, 2007
    Upgrading to the new ADS85xx series of devices
  • Determining Minimum Acquisition Times for SAR ADCs, part 1 (Rev. A)
    PDF, 227 Kb, Revisión: A, Archivo publicado: nov 10, 2010
    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
  • Determining Minimum Acquisition Times for SAR ADCs, part 2
    PDF, 215 Kb, Archivo publicado: marzo 17, 2011
    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

Linea modelo

Clasificación del fabricante

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