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MAX12553
14-Bit, 65Msps, 3.3V ADC

14-Bit and 12-Bit, 40Msps to 80Msps ADC Family Offers High Dynamic Performance from Baseband to Beyond 175MHz


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Status
Active: In Production.

Data Sheet
FULL DATA SHEET (PDF, 1.5MB)
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Description
The MAX12553 is a 3.3V, 14-bit, 65Msps analog-to-digital converter (ADC) featuring a fully differential wideband track-and-hold (T/H) input amplifier, driving a low-noise internal quantizer. The analog input stage accepts singleended or differential signals. The MAX12553 is optimized for low-power, small size, and high dynamic performance. Excellent dynamic performance is maintained from baseband to input frequencies of 175MHz and beyond, making the MAX12553 ideal for intermediate-frequency (IF) sampling applications.

Powered from a single 3.15V to 3.60V supply, the MAX12553 consumes only 363mW while delivering a typical signal-to-noise (SNR) performance of 71dB at an input frequency of 175MHz. In addition to low operating power, the MAX12553 features a 150µW powerdown mode to conserve power during idle periods.

A flexible reference structure allows the MAX12553 to use the internal 2.048V bandgap reference or accept an externally applied reference. The reference structure allows the full-scale analog input range to be adjusted from ±0.35V to ±1.10V. The MAX12553 provides a common- mode reference to simplify design and reduce external component count in differential analog input circuits.

The MAX12553 supports both a single-ended and differential input clock drive. Wide variations in the clock duty cycle are compensated with the ADC's internal duty-cycle equalizer (DCE).

ADC conversion results are available through a 14-bit, parallel, CMOS-compatible output bus. The digital output format is pin selectable to be either two's complement or Gray code. A data-valid indicator eliminates external components that are normally required for reliable digital interfacing. A separate digital power input accepts a wide 1.7V to 3.6V supply, allowing the MAX12553 to interface with various logic levels.

The MAX12553 is available in a 6mm x 6mm x 0.8mm, 40-pin thin QFN package with exposed paddle (EP), and is specified for the extended industrial (-40°C to +85°C) temperature range.

See a parametric table of the complete family of pin-compatible, 12-/14-bit high-speed ADCs.

An evaluation kit is available:  MAX12553EVKIT, MAX12554EVKIT, MAX12555EVKIT  

Key Features   Applications/Uses
  • Direct IF Sampling Up to 400MHz
  • Excellent Dynamic Performance
    • 74.0dB/71dB SNR at fIN = 3MHz/175MHz
    • 90.6dBc/80.7dBc SFDR at fIN = 3MHz/175MHz
  • Low Noise Floor: -76dBFS
  • 3.3V Low-Power Operation
    • 337mW (Single-Ended Clock Mode)
    • 363mW (Differential Clock Mode)
    • 150µW (Power-Down Mode)
  • Fully Differential or Single-Ended Analog Input
  • Adjustable Full-Scale Analog Input Range: ±0.35V to ±1.10V
  • Common-Mode Reference
  • CMOS-Compatible Outputs in Two's Complement or Gray Code
  • Data-Valid Indicator Simplifies Digital Design
  • Data Out-of-Range Indicator
  • Miniature, 40-Pin Thin QFN Package with Exposed Paddle
  • Evaluation Kit Available (Order MAX12555EVKIT)

 
  • IF and Baseband Communication Receivers: Cellular, Point-to-Point Microwave, HFC, WLAN
  • Low-Power Data Acquisition
  • Portable Instrumentation
  • Ultrasound and Medical Imaging

    Diagram
    MAX12553: Functional Diagram
    Functional Diagram

    Application Notes
  • Application Note 3292: Crunching FFTs with Microsoft® Excel - MAX12553
  • Application Note 3491: Schematic and Layout Guidelines for High-Speed Data Converters - MAX12553
  • Application Note 3716: Folded-Frequency Calculator - MAX12553

    Evaluation Kits
  • MAX12553EVKIT, MAX12554EVKIT, MAX12555EVKIT

    Design Guides
  • High-Speed ADCs, DACs, & AFEs (PDF)

    Reliability Reports
  • Show FIT data for:
  • Request Reliability Report for:

    Software/Models
  • MAX12553 IBIS Model

    Ordering Information
    Notes:

    1. Other options and links for purchasing parts are listed at: http://www.maxim-ic.com/sales.
    2. Didn't Find What You Need? Ask our applications engineers. Expert assistance in finding parts, usually within one business day.
    3. Part number suffixes: T or T&R = tape and reel;+ = RoHS/lead-free;# = RoHS/lead-exempt. More: SeeFull Data Sheet or Part Naming Conventions.
    4. * Some packages have variations, listed on the drawing. "PkgCode/Variation" tells which variation the product uses. Note that "+", "#", "-" in the part number suffix describes RoHS status. Package drawings may show a different suffix character.


    Devices: 1-4 of 4

    MAX12553 Free
    Sample
    Buy Status
    Package: TYPE PINS FOOTPRINT
      DRAWING CODE/VAR *
    Temp RoHS/Lead-Free?
    Materials Analysis
    MAX12553ETL  
    Active TQFN;40 pin;37 mm²
    Outline Drawing: 21-0141 (PDF)
    Land Pattern: 90-0054 (PDF)
    Use pkgcode/variation: T4066-3*
    -40°C to +85°C RoHS/Lead-Free: No
    Materials Analysis
    MAX12553ETL-T    
    Active TQFN;40 pin;37 mm²
    Outline Drawing: 21-0141 (PDF)
    Land Pattern: 90-0054 (PDF)
    Use pkgcode/variation: T4066-3*
    -40°C to +85°C RoHS/Lead-Free: No
    Materials Analysis
    MAX12553ETL+  
    Active TQFN;40 pin;37 mm²
    Outline Drawing: 21-0141 (PDF)
    Land Pattern: 90-0054 (PDF)
    Use pkgcode/variation: T4066+3*
    -40°C to +85°C RoHS/Lead-Free: Lead Free
    Materials Analysis
    MAX12553ETL+T    
    Active TQFN;40 pin;37 mm²
    Outline Drawing: 21-0141 (PDF)
    Land Pattern: 90-0054 (PDF)
    Use pkgcode/variation: T4066+3*
    -40°C to +85°C RoHS/Lead-Free: Lead Free
    Materials Analysis

    More Information
  • New Product Press Release 2004-08-19 
  • Product Ad: Download
  • Evaluation Kit: MAX12555EVKIT

    Related Products
    MAX1211 12-Bit, 65Msps, IF Sampling ADC
    MAX1206 12-Bit, 40Msps ADC
    MAX1207 12-Bit, 65Msps ADC
    MAX1209 12-Bit, 80Msps, 3.3V IF-Sampling ADC
    MAX1208 12-Bit, 80Msps, 3.3V ADC
    MAX19538 12-Bit, 95Msps, 3.3V ADC
    MAX12554 14-Bit, 80Msps, 3.3V ADC
    MAX12555 14-Bit, 95Msps, 3.3V ADC

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    Document Ref.: 19-3343; Rev 0; 2004-08-19
    This page last modified: 2009-10-07


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