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MAX9702
1.8W, Filterless, Stereo, Class D Audio Power Amplifier and DirectDrive Stereo Headphone Amplifier


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Status
Active: In Production.

Data Sheet
FULL DATA SHEET (PDF, 904kB)
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Description
The MAX9702 combines a highly efficient Class D speaker amplifier with a high-linearity Class AB headphone amplifier. This ensures maximum battery life in speaker mode and maximum performance in headphone mode. The MAX9702 delivers up to 1.1W per channel into an 8Ω load and 1.8W into a 4Ω load from a 5V power supply. Maxim's 2nd-generation, spread-spectrum modulation scheme renders the traditional Class D output filter unnecessary.

The MAX9702 speaker amplifier offers two modulation schemes: a fixed-frequency (FFM) mode and a spread-spectrum (SSM) mode that reduces EMI-radiated emissions. The MAX9702 speaker amplifier features a fully differential architecture, full-bridged (BTL) output, and comprehensive click-and-pop suppression. The MAX9702 speaker amplifier features high 75dB PSRR,low 0.07% THD+N, and SNR in excess of 97dB. Short-circuit and thermal-overload protection prevent the device from being damaged during a fault condition.

The headphone amplifier uses Maxim's patented DirectDrive™ architecture that produces a ground-referenced output from a single supply, eliminating the need for large DC-blocking capacitors, saving cost, board space, and component height. A high 80dB PSRR and low 0.02% THD+N ensures clean, low-distortion amplification of the audio signal.

An I²C† interface sets the speaker and headphone gain, mono, stereo, and mute functions.

The MAX9702 is available in a 28-pin thin QFN-EP (5mm x 5mm x 0.8mm) package. The MAX9702 is specified over the extended -40°C to +85°C temperature range.

An evaluation kit is available:  MAX9702EVCMAXQU, MAX9702EVKIT  

Key Features   Applications/Uses
  • Patented Spread-Spectrum Modulation Reduces EMI Emissions
  • Programmable Mono, Stereo, Mute, and Mix Functions
  • 1.1W Stereo Output (8Ω, VDD = 5V)
  • 48mW Headphone Output (32Ω, VDD = 3.3V)
  • 1.8W Stereo Output (4Ω, VDD = 5V)
  • 94% Efficiency (RL = 8Ω, PO = 1.1W)
  • High 73dB PSRR (f = 217Hz)
  • I²C Programmable Gain Up to +21dB
  • Integrated Click-and-Pop Suppression
  • Low-Power Shutdown Mode (0.1µA)
  • Short-Circuit and Thermal-Overload Protection
  • ±8kV (HBM) ESD-Protected Headphone DriverOutputs

 
  • Automotive Multimedia
  • Cell Phones
  • Docking Stations
  • Handheld Gaming Consoles
  • MP3 Player
  • Multimedia Phones
  • PDA Phone
  • PMP Player
  • Smartphone

    Diagram
    MAX9702: Simplified Block Diagram
    Simplified Block Diagram

    Evaluation Kits
  • MAX9702EVCMAXQU, MAX9702EVKIT

    Reliability Reports
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    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: 1-3 of 3

    MAX9702 Free
    Sample
    Buy Status
    Package: TYPE PINS FOOTPRINT
      DRAWING CODE/VAR *
    Temp RoHS/Lead-Free?
    Materials Analysis
    MAX9702EVCMODU    
    Active

    Land Pattern: Not Available

    -40°C to +85°C See data sheet
    MAX9702ETI+  
    Active TQFN;28 pin;26 mm²
    Outline Drawing: 21-0140 (PDF)
    Land Pattern: 90-0026 (PDF)
    Use pkgcode/variation: T2855+6*
    -40°C to +85°C RoHS/Lead-Free: Lead Free
    Materials Analysis
    MAX9702ETI+T    
    Active TQFN;28 pin;26 mm²
    Outline Drawing: 21-0140 (PDF)
    Land Pattern: 90-0026 (PDF)
    Use pkgcode/variation: T2855+6*
    -40°C to +85°C RoHS/Lead-Free: Lead Free
    Materials Analysis

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    Document Ref.: 19-3608; Rev 1; 2005-11-23
    This page last modified: 2009-08-11


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