ADS5463

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12-bit 500-MSPS analog-to-digital converter (ADC)

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Product details

Parameters

Sample rate (Max) (MSPS) 500 Resolution (Bits) 12 Number of input channels 1 Analog input BW (MHz) 2000 Features Low Power Rating Catalog Input range (Vp-p) 2.2 Power consumption (Typ) (mW) 2250 Architecture Pipeline SNR (dB) 65.4 ENOB (Bits) 10.4 SFDR (dB) 90 Operating temperature range (C) -40 to 85 Input buffer Yes open-in-new Find other High-speed ADCs (>10MSPS)

Package | Pins | Size

HTQFP (PFP) 80 196 mm² 14 x 14 open-in-new Find other High-speed ADCs (>10MSPS)

Features

  • 12-Bit Resolution
  • On-Chip Analog Buffer
  • ADS5463: 500 MSPS
  • ADS5463 SFDR: 77dBc at 300 MHz fIN
  • ADS54RF63: 550 MSPS
  • ADS54RF63 SFDR: 70dBc at 900 MHz fIN
  • 2.3-GHz Input Bandwidth
  • LVDS-Compatible Outputs
  • Very Low Latency: 3.5 Clock Cycles
  • High Analog Input Swing without Damage,> 10 Vpp Differential-AC Signal
  • Total Power Dissipation: 2.2 W
  • 80-Pin TQFP PowerPAD Package (14-mm × 14-mm footprint)
  • Industrial Temperature Range: -40°C to 85°C
  • Pin-Similar/Compatible to 12-, 13-, and 14-Bit Family: ADS5440/ADS5444/ADS5474
  • APPLICATIONS
    • Test and Measurement Instrumentation
    • Software-Defined Radio
    • Data Acquisition
    • Power Amplifier Linearization
    • Communication Instrumentation
    • Radar

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open-in-new Find other High-speed ADCs (>10MSPS)

Description

The ADS5463/ADS54RF63 is a 12-bit, 500-/550-MSPS analog-to-digital converter (ADC) that operates from both a 5-V supply and 3.3-V supply, while providing LVDS-compatible digital outputs. This ADC is one of a family of 12-, 13-, and 14-bit ADCs that operate from 210 MSPS to 550 MSPS. The ADS5463/ADS54RF63 input buffer isolates the internal switching of the onboard track and hold (T&H) from disturbing the signal source while providing a high-impedance input.

The ADS54RF63 provides superior SFDR compared to the ADS5463 when the analog input frequency exceeds ~350 MHz or if operation up to 550 MSPS is required.

The ADS5463/ADS54RF63 is available in a TQFP-80 PowerPAD™ package. The ADS5463/ADS54RF63 is built on the Texas Instrument complementary bipolar process (BiCom3) and specified over the full industrial temperature range (-40°C to 85°C).

open-in-new Find other High-speed ADCs (>10MSPS)
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Technical documentation

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No results found. Please clear your search and try again. View all 17
Type Title Date
* Datasheet 12-Bit 500-/550-MSPS Analog-to-Digital Converters datasheet (Rev. E) Jul. 01, 2009
Technical articles How to achieve fast frequency hopping Mar. 03, 2019
Application notes Q3 2009 Issue Analog Applications Journal Sep. 24, 2018
Technical articles RF sampling: Learning more about latency Feb. 09, 2017
Technical articles Why phase noise matters in RF sampling converters Nov. 28, 2016
Technical articles How to minimize filter loss when you drive an ADC Oct. 20, 2016
Application notes Design Considerations for Avoiding Timing Errors during High-Speed ADC, LVDS Dat (Rev. A) May 22, 2015
Application notes Why Use Oversampling when Undersampling Can Do the Job? (Rev. A) Jul. 19, 2013
More literature TI and Altera Ease Design Process with Compatible Evaluation Tools Apr. 25, 2011
More literature TI and Xilinx Ease Design Process with Compatible Evaluation Tools Apr. 25, 2011
Application notes Driving High-Speed ADCs: Circuit Topologies and System-Level Parameters (Rev. A) Sep. 10, 2010
Application notes Impact of sampling-clock spurs on ADC performance Jul. 14, 2009
Application notes Smart Selection of ADC/DAC Enables Better Design of Software-Defined Radio Apr. 28, 2009
User guides ADS5474 ADX Evaluation Board for Interleaving Aug. 20, 2008
Application notes CDCE72010 as a Clocking Solution for High-Speed Analog-to-Digital Converters Jun. 08, 2008
Application notes Phase Noise Performance and Jitter Cleaning Ability of CDCE72010 Jun. 02, 2008
User guides ADS5440/44/63/74 EVM User's Guide (Rev. A) Nov. 21, 2006

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Hardware development

EVALUATION BOARDS Download
document-generic User guide
Description

The ADS5463EVM is a circuit board which allows the designer to run an evaluation of Texas Instruments ADS5463 device, a 12 bit 500 MSPS ADC. With the supplied Logic analyzer breakout board, the ADC LVDS output can be directly captured using either an Agilent E5405A or Tektronix P6980 touchless probe.

Features
  • Transformer coupled analog input path
  • Texas Instrument’s THS9001 analog input path
  • LVDS capture ability
EVALUATION BOARDS Download
document-generic User guide
Description

The ADS5474EVM is a circuit board which allows the designer to run an evaluation of Texas Instruments ADS5474 device, a 14-bit 400 MSPS ADC. With the supplied Logic analyzer breakout board, the ADC LVDS output can be directly captured using either an Agilent E5405A or Tektronix P6980 touchless (...)

Features
  • Transformer coupled analog input path
  • Texas Instrument’s THS9001 analog input path
  • LVDS capture ability
EVALUATION BOARDS Download
Description

The ADS54RF63EVM is a circuit board which allows the designer to run an evaluation of Texas Instruments' ADS5463 device, a 12 bit 550 MSPS ADC optimized for high SFDR with high IF/RF inputs. With the supplied Logic analyzer breakout board, the ADC LVDS output can be directly captured using either an (...)

Features
  • Transformer coupled analog input path
  • Texas Instruments' THS9001 analog input path
  • LVDS capture ability
EVALUATION BOARDS Download
$99.00
Description
The THS770006 evaluation module (EVM) is used for testing the typical performance of the THS770006 high-speed, fully differential, amplifier device. The THS770006EVM schematic is shown in the THS770006 datasheet (Figure 32). The THS770006EVM is configured to convert to and from a differential 50Ω (...)
Features
The THS770006EVM can be configured to test: Frequency Response, s-Parameters (s11, s22, s12), Frequency Response with Capacitive Load, Distortion, Noise Figure, Power-Down, Differential Z-out, Output Balance Error, Common-Mode Rejection, VOCM Frequency Response, and VOCM Slew Rate & Pulse Response (...)

Software development

SUPPORT SOFTWARE Download
High-speed data converter pro software
DATACONVERTERPRO-SW This high-speed data converter pro GUI is a PC (Windows® XP/7 compatible) program designed to aid in evaluation of most TI high-speed data converter and analog front-end (AFE) platforms. Designed to support the entire TSW14xxx series of data-capture and pattern-generation cards (...)
Features
  • Compatible with TSW1400, TSW1405, TSW1406 and TSW14J10, TSW14J50, TSW14J56, and TSW14J57 pattern-generation and data-capture platforms
  • Works with all TI high-speed DAC, ADC, and AFE products
  • Provides time-domain and frequency-domain analysis
  • Supports single-tone, multi-tone, and modulated (...)
SUPPORT SOFTWARE Download
SBAC120.ZIP (262219 KB)

Design tools & simulation

SIMULATION MODELS Download
SLAC120C.ZIP (10 KB) - IBIS Model
CALCULATION TOOLS Download
Analog-to-digital converter (ADC) harmonic calculator
ADC-HARMONIC-CALC

    The ADC Harmonic Calculation tool is an excel based calculator for determining the location in frequency space of high order harmonics following Nyquist aliasing in an analog to digital converter.

    Given an ADC sample rate and the span of a signal of interest the calcultor will determine if the 2nd (...)

CALCULATION TOOLS Download
Jitter and SNR Calculator for ADCs
JITTER-SNR-CALC JITTER-SNR-CALC can be used for calculating theoretical Signal to Noise (SNR) performance of ADCs based on input frequency and clock jitter.
DESIGN TOOLS Download
SBAC119B.ZIP (3547 KB)

CAD/CAE symbols

Package Pins Download
HTQFP (PFP) 80 View options

Ordering & quality

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