MAX1208

12-Bit, 80Msps, 3.3V ADC

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Status Explanations for product status codes

Active: In Production.

Description

The MAX1208 is a 3.3V, 12-bit, 80Msps 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 single-ended or differential signals. The MAX1208 is optimized for low power, small size, and high dynamic performance in baseband applications.

Powered from a single 3.0V to 3.6V supply, the MAX1208 consumes only 373mW while delivering a typical signal-to-noise (SNR) performance of 68.2dB at an input frequency of 32.5MHz. In addition to low operating power, the MAX1208 features a 3µW power-down mode to conserve power during idle periods.

A flexible reference structure allows the MAX1208 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 ±1.15V. The MAX1208 provides a common-mode reference to simplify design and reduce external component count in differential analog input circuits.

The MAX1208 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 12-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 MAX1208 to interface with various logic levels.

The MAX1208 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.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 0 (PDF, 1MB)
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Key Features

  • Excellent Dynamic Performance
    • 68.2dB/68.0dB SNR at fIN = 3MHz/70MHz
    • 89.3dBc/85.1dBc SFDR at fIN = 3MHz/70MHz
  • 3.3V Low-Power Operation
    • 373mW (Single-Ended Clock Mode)
    • 399mW (Differential Clock Mode)
    • 3µW (Power-Down Mode)
  • Differential or Single-Ended Clock
  • Fully Differential or Single-Ended Analog Input
  • Adjustable Full-Scale Analog Input Range: ±0.35V to ±1.15V
  • 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 MAX1211EVKIT)
 

Applications/Uses

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

Key Specifications:

High-Speed ADCs (> 5Msps)
Part Number Input Chan. Resolution
(bits)
Sample Rate
(Msps)
AC Specs
(MHz)
SFDR
(dBc)
SINAD
(dB)
SNR
(dB)
THD
(dB)
INL
(±LSB)
DNL
(±LSB)
Smallest Available Pckg.
(mm2)
max ≥ @ fIN min max w/pins
MAX1208  1 12 80 32.5 88.2 68.1 68.2 -85 0.65 0.35 37.2
See All High-Speed ADCs (> 5Msps) (75)
Pricing Notes:
This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific prices and delivery, please see the price and availability page or contact an authorized distributor.


Diagram

MAX1208: Functional Diagram
Functional Diagram

Application Notes

Tutorial 1040   Coherent Sampling vs. Window Sampling
Tutorial 1819   Selecting the Optimum Test Tones and Test Equipment for Successful High-Speed ADC Sinewave Testing
Application Note 3190   Coherent Sampling Calculator (CSC)
Application Note 3292   Crunching FFTs with Microsoft Excel

Reliability Reports

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Software/Models

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Ordering Information

Filters: Part Number: Package: Temperature: Tape and Reel Sample
Part Number Free
Sample
Buy Status Explanations for product status codes Package:
TYPE PINS FOOTPRINT
DRAWING  CODE/VAR *
Temp RoHS/Lead-Free?
Materials Analysis
MAX1208ETL    
Active TQFN;40 pin;37.2 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
MAX1208ETL+  
Active TQFN;40 pin;37.2 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
MAX1208ETL+T    
Active QFN;40 pin

Land Pattern: Not Available

-40°C to +85°C See data sheet
MAX1208ETL-T    
Active QFN;40 pin

Land Pattern: Not Available

-40°C to +85°C See data sheet

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; -D = drypack; -U/+U on DS parts = cut tape. More: See Full Data Sheet or Maxim Product 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.

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More Information

Evaluation Kit: MAX1211EVKIT


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Information Index

Overview

 

Technical Documents

 

Ordering Info

 

Related Products

 
Description
Key Features
Applications/Uses
Key Specifications
Diagram
Notes and Comments
  Data Sheet
Application Notes
Evaluation Kits
Product Guides
Reliability Reports
Software/Models
  Price and Availability
Samples
Buy Online
Package Information
Lead-Free Information
  Similar Products by Function
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Evaluation Kits
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Document Ref.: 19-1002 Rev 0; 2004-08-12
This page last modified: 2009-10-07


 


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