ADS41B29

ACTIVO

Convertidor analógico a digital (ADC) de 12 bits y 250 MSPS

Detalles del producto

Sample rate (max) (Msps) 250 Resolution (Bits) 12 Number of input channels 1 Interface type DDR LVDS, Parallel CMOS Analog input BW (MHz) 800 Features High Performance Rating Catalog Peak-to-peak input voltage range (V) 1.5 Power consumption (typ) (mW) 350 Architecture Pipeline SNR (dB) 69.7 ENOB (Bits) 11.2 SFDR (dB) 89 Operating temperature range (°C) -40 to 85 Input buffer Yes
Sample rate (max) (Msps) 250 Resolution (Bits) 12 Number of input channels 1 Interface type DDR LVDS, Parallel CMOS Analog input BW (MHz) 800 Features High Performance Rating Catalog Peak-to-peak input voltage range (V) 1.5 Power consumption (typ) (mW) 350 Architecture Pipeline SNR (dB) 69.7 ENOB (Bits) 11.2 SFDR (dB) 89 Operating temperature range (°C) -40 to 85 Input buffer Yes
VQFN (RGZ) 48 49 mm² (7 mm × 7 mm)
  • ADS41B49: 14-Bit, 250 MSPS
    ADS41B29: 12-Bit, 250 MSPS
  • Integrated High-Impedance
    Analog Input Buffer:
    • Input Capacitance: 2 pF
    • 200-MHz Input Resistance: 3 kΩ
  • Maximum Sample Rate: 250 MSPS
  • Ultralow Power:
    • 1.8-V Analog Power: 180 mW
    • 3.3-V Buffer Power: 96 mW
    • I/O Power: 135 mW (DDR LVDS)
  • High Dynamic Performance:
    • SNR: 69 dBFS at 170 MHz
    • SFDR: 82.5 dBc at 170 MHz
  • Output Interface:
    • Double Data Rate (DDR) LVDS with Programmable Swing and Strength:
      • Standard Swing: 350 mV
      • Low Swing: 200 mV
      • Default Strength: 100-Ω Termination
      • 2x Strength: 50-Ω Termination
    • 1.8-V Parallel CMOS Interface Also Supported
  • Programmable Gain for SNR, SFDR Trade-Off
  • DC Offset Correction
  • Supports Low Input Clock Amplitude
  • Package: VQFN-48 (7 mm × 7 mm)
  • ADS41B49: 14-Bit, 250 MSPS
    ADS41B29: 12-Bit, 250 MSPS
  • Integrated High-Impedance
    Analog Input Buffer:
    • Input Capacitance: 2 pF
    • 200-MHz Input Resistance: 3 kΩ
  • Maximum Sample Rate: 250 MSPS
  • Ultralow Power:
    • 1.8-V Analog Power: 180 mW
    • 3.3-V Buffer Power: 96 mW
    • I/O Power: 135 mW (DDR LVDS)
  • High Dynamic Performance:
    • SNR: 69 dBFS at 170 MHz
    • SFDR: 82.5 dBc at 170 MHz
  • Output Interface:
    • Double Data Rate (DDR) LVDS with Programmable Swing and Strength:
      • Standard Swing: 350 mV
      • Low Swing: 200 mV
      • Default Strength: 100-Ω Termination
      • 2x Strength: 50-Ω Termination
    • 1.8-V Parallel CMOS Interface Also Supported
  • Programmable Gain for SNR, SFDR Trade-Off
  • DC Offset Correction
  • Supports Low Input Clock Amplitude
  • Package: VQFN-48 (7 mm × 7 mm)

The ADS41Bx9 are members of the ultralow-power ADS4xxx analog-to-digital converter (ADC) family, featuring integrated analog input buffers. These devices use innovative design techniques to achieve high dynamic performance, and consume extremely low power. The analog input pins have buffers, with benefits of constant performance and input impedance across a wide frequency range. The devices are well-suited for multi-carrier, wide bandwidth communications applications such as PA linearization.

The ADS41Bx9 have features such as digital gain and offset correction. The gain option can be used to improve SFDR performance at lower full-scale input ranges, especially at high input frequencies. The integrated dc offset correction loop can be used to estimate and cancel the ADC offset. At lower sampling rates, the ADC automatically operates at scaled-down power with no loss in performance.

The devices support both double data rate (DDR) low-voltage differential signaling (LVDS) and parallel CMOS digital output interfaces. The low data rate of the DDR LVDS interface (maximum 500 MBPS) makes using low-cost field-programmable gate array (FPGA)-based receivers possible. The devices have a low-swing LVDS mode that can be used to further reduce the power consumption. The strength of the LVDS output buffers can also be increased to support 50-Ω differential termination.

The devices are available in a compact VQFN-48 package and are specified over the industrial temperature range (–40°C to +85°C).

The ADS41Bx9 are members of the ultralow-power ADS4xxx analog-to-digital converter (ADC) family, featuring integrated analog input buffers. These devices use innovative design techniques to achieve high dynamic performance, and consume extremely low power. The analog input pins have buffers, with benefits of constant performance and input impedance across a wide frequency range. The devices are well-suited for multi-carrier, wide bandwidth communications applications such as PA linearization.

The ADS41Bx9 have features such as digital gain and offset correction. The gain option can be used to improve SFDR performance at lower full-scale input ranges, especially at high input frequencies. The integrated dc offset correction loop can be used to estimate and cancel the ADC offset. At lower sampling rates, the ADC automatically operates at scaled-down power with no loss in performance.

The devices support both double data rate (DDR) low-voltage differential signaling (LVDS) and parallel CMOS digital output interfaces. The low data rate of the DDR LVDS interface (maximum 500 MBPS) makes using low-cost field-programmable gate array (FPGA)-based receivers possible. The devices have a low-swing LVDS mode that can be used to further reduce the power consumption. The strength of the LVDS output buffers can also be increased to support 50-Ω differential termination.

The devices are available in a compact VQFN-48 package and are specified over the industrial temperature range (–40°C to +85°C).

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Documentación técnica

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Documentación principal Tipo Título Opciones de formato Descargar la versión más reciente en inglés Fecha
* Hoja de datos ADS41Bx9 14- and 12-Bit, 250-MSPS, Ultralow-Power ADCs with Analog Buffers datasheet (Rev. F) PDF | HTML 11/02/2016
* Guía del usuario Interfacing Altera FPGAs to ADS4249 and DAC3482 (TIDA-00069 Reference Guide) 10/07/2012
Nota sobre la aplicación Design Considerations for Avoiding Timing Errors during High-Speed ADC, LVDS Dat (Rev. A) 22/05/2015
Nota sobre la aplicación Why Use Oversampling when Undersampling Can Do the Job? (Rev. A) 19/07/2013
Nota sobre la aplicación Band-Pass Filter Design Techniques for High-Speed ADCs 27/02/2012
Nota sobre la aplicación High-Speed, Analog-to-Digital Converter Basics 11/01/2012
Nota sobre la aplicación Power Supply Design for the ADS41xx (Rev. A) 29/12/2011
Nota sobre la aplicación CDCE62005 as Clock Solution for High-Speed ADCs 4/09/2008
Nota sobre la aplicación CDCE72010 as a Clocking Solution for High-Speed Analog-to-Digital Converters 8/06/2008
Nota sobre la aplicación Phase Noise Performance and Jitter Cleaning Ability of CDCE72010 2/06/2008
Nota sobre la aplicación QFN Layout Guidelines 28/07/2006

Diseño y desarrollo

Para conocer los términos adicionales o los recursos necesarios, haga clic en cualquier título de abajo para ver la página de detalles cuando esté disponible.

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Encapsulado Pines Símbolos CAD, huellas y modelos 3D
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Soporte y capacitación

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