ENGLISH 简体中文 日本語 한국어  

    Login | Register 


   
 
Enter keywords or part number    



MAX2038
Ultrasound VGA Integrated with CW Octal Mixer

First Fully Integrated Octal VGA + CW Doppler Beamformer IC Enables the Industry’s Highest Levels of Integration


  QuickView     Technical Documents     Ordering Info     More Information     User Comments (0)     All  
Status
Active: In Production.

Data Sheet
FULL DATA SHEET (PDF, 328kB)
Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail


Description
The MAX2038 8-channel variable-gain amplifier (VGA) and programmable octal mixer array is designed for high linearity, high dynamic range, and low noise performance targeting ultrasound imaging and Doppler applications. Each amplifier features differential inputs and outputs and a total gain range of 42dB (typ). In addition, the VGAs offer very low output-referred noise performance suitable for interfacing with 12-bit ADCs.

The MAX2038 VGA is optimized for less than ±0.25dB absolute gain error to ensure minimal channel-to-channel ultrasound beamforming focus error. The device's differential outputs are designed to directly drive ultrasound ADCs through an external passive anti-aliasing filter. A switchable clamp is also provided at each amplifier's output to limit the output signals, thereby preventing ADC overdrive or saturation.

Dynamic performance of the device is optimized to reduce distortion to support second-harmonic imaging. The device achieves a second-harmonic distortion specification of -70dBc at VOUT = 1.5VP-P and fIN = 5MHz and an ultrasound-specific*, two-tone, third-order intermodulation distortion specification of -52dBc at VOUT = 1.5VP-P and fIN = 5MHz.

The MAX2038 also integrates an octal quadrature mixer array and programmable LO phase generators for a complete CW beamforming solution. The LO phase selection for each channel can be programmed using a digital serial interface and a single high-frequency clock or the LOs for each complex mixer pair can be directly driven using separate 4 x LO clocks. The serial interface is designed to allow multiple devices to be easily daisy chained to minimize program interface wiring. The LO phase dividers can be programmed to allow 4, 8, or 16 quadrature phases. The input path of each CW mixer consists of a selectable lowpass filter for optimal CWD noise performance. The outputs of the mixers are summed into I and Q differential current outputs. The mixers and LO generators are designed to have exceptionally low noise performance of -155dBc/Hz at 1kHz offset from a 1.25MHz carrier.

The MAX2038 operates from a +5.0V power supply, consuming only 120mW/channel in VGA mode and 269mW/channel in normal power CW mode. A lowpower CW mode is also available and consumes only 226mW/channel. The device is available in a lead-free 100-pin TQFP package (14mm x 14mm x 1mm) with an exposed pad. Electrical performance is guaranteed over a 0°C to +70°C temperature range.

An evaluation kit is available:  MAX2038EVKIT  

Key Features   Applications/Uses
  • 8-Channel Configuration
  • High Integration for Ultrasound Imaging Applications
  • Pin Compatible with the MAX2037 Ultrasound VGA
  • VGA Features
    • Maximum Gain, Gain Range, and Output-Referred Noise Optimized for Interfacing with 12-Bit ADCs
      • Maximum Gain of 29.5dB
      • Total Gain Range of 42dB
      • 22nV/ Ultra-Low Output-Referred Noise at 5MHz
    • ±0.25dB Absolute Gain Error
    • 120mW Consumption per Channel
    • Switchable Output VGA Clamp Eliminating ADC Overdrive
    • Fully Differential VGA Outputs for Direct ADC Drive
    • Variable Gain Range Achieves 42dB Dynamic Range
    • -70dBc HD2 at VOUT = 1.5VP-P and fIN = 5MHz
    • Two-Tone Ultrasound-Specific* IMD3 of -52dBc at VOUT = 1.5VP-P and fIN = 5MHz
  • CW Doppler Mixer Features
    • Low Mixer Noise of -155dBc/Hz at 1kHz Offset from 1.25MHz Carrier
    • Serial-Programmable LO Phase Generator for 4, 8, 16 LO Quadrature Phase Resolution
    • Optional Individual Channel 4 x fLO LO Input Drive Capability
    • 269mW Power Consumption per Channel (Normal Power Mode) and 226mW Power Consumption per Channel (Low-Power Mode)
    • CWD Implementation Is Fully Compliant with All Patents Related to Ultrasound Imaging Techniques

 
  • Sonar
  • Ultrasound Imaging

    Diagram
    MAX2038: Pin Configuration
    Pin Configuration

    Application Notes
  • Application Note 4455: Continuous-Wave Doppler (CWD) Design Challenges in Compact Ultrasound-Imaging Equipment - MAX2038

    Evaluation Kits
  • MAX2038EVKIT

    Design Guides
  • Medical (PDF)

    Reliability Reports
  • Reliability Report: MAX2038.pdf
  • Show FIT data for:

    Software/Models
    none

    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: 1-2 of 2

    MAX2038 Free
    Sample
    Buy Status
    Package: TYPE PINS FOOTPRINT
      DRAWING CODE/VAR *
    Temp RoHS/Lead-Free?
    Materials Analysis
    MAX2038CCQ+    
    Active TQFP-EP;100 pin;256 mm²
    Outline Drawing: 21-0116 (PDF)
    Land Pattern: 90-0154 (PDF)
    Use pkgcode/variation: C100E+3*
    0°C to +70°C RoHS/Lead-Free: Lead Free
    Materials Analysis
    MAX2038CCQ+T    
    Active

    Land Pattern: Not Available

    0°C to +70°C See data sheet

    Notes and Comments
    *See the Ultrasound-Specific IMD3 Specification in the Applications Information section.

    More Information
  • New Product Press Release 2009-08-06 

    Related Products
    MAX1437 Octal, 12-Bit, 50Msps, 1.8V ADC with Serial LVDS Outputs
    MAX1446 10-Bit, 60Msps, 3.0V, Low-Power ADC with Internal Reference
    MAX1444 10-Bit, 40Msps, 3.0V, Low-Power ADC with Internal Reference
    MAX2034 Quad-Channel, Ultra-Low-Noise Amplifier with Digitally Programmable Input Impedance
    MAX1181 Dual 10-Bit, 80Msps, 3V, Low-Power ADC with Internal Reference and Parallel Outputs
    MAX1182 Dual 10-Bit, 65Msps, +3V, Low-Power ADC with Internal Reference and Parallel Outputs
    MAX1183 Dual 10-Bit, 40Msps, 3V, Low-Power ADC with Internal Reference and Parallel Outputs
    MAX1434 Octal, 10-Bit, 50Msps, 1.8V ADC with Serial LVDS Outputs
    MAX1186 Dual 10-Bit, 40Msps, 3V, Low-Power ADC with Internal Reference and Multiplexed Parallel Outputs
    MAX1193 Ultra-Low-Power, 45Msps, Dual 8-Bit ADC
    MAX1192 Ultra-Low-Power, 22Msps, Dual 8-Bit ADC
    MAX1126 Quad, 12-Bit, 40Msps, 1.8V ADC with Serial LVDS Outputs
    MAX1127 Quad, 12-Bit, 65Msps, 1.8V ADC with Serial LVDS Outputs
    MAX1436 Octal, 12-Bit, 40Msps, 1.8V ADC with Serial LVDS Outputs
    MAX1438 Octal, 12-Bit, 65Msps, 1.8V ADC with Serial LVDS Outputs
    MAX2035 Ultrasound Variable-Gain Amplifier
    MAX2037 Ultrasound Variable-Gain Amplifier
    MAX2036 Ultrasound VGA Integrated with CW Octal Mixer

    Didn't Find What You Need?
  • Next Day Product Selection Assistance from Applications Engineers
  • Parametric Search
  • Applications Help
  •  QuickView   Technical Documents   Ordering Info   More Information  
     Description 
     Key Features 
     Applications/Uses 
     Key Specifications 
     Diagram 

     Data Sheet 
     Application Notes 
     Design Guides 
     Engineering Journals 
     Reliability Reports 
     Software/Models 
     Evaluation Kits 

     Price and Availability 
     Samples 
     Buy Online 
     Package Information 
     Lead-Free Information 

     Related Products 
     Notes and Comments 
     Evaluation Kits 

    Document Ref.: 19-4375; Rev 0; 2009-01-13
    This page last modified: 2009-08-04


            •         •         •     Privacy Policy     •     Legal Notices

        Copyright © 2009 by Maxim Integrated Products