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MAX4910, MAX4911*, MAX4912*
Quad-SPDT Clickless Audio Switches with Negative Signal Handling

*Future Product
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    Status
    Part Number Status
    MAX4910 Active: In Production.
    MAX4911 Future Product
    MAX4912 Future Product

    Description
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    The MAX4910/MAX4911/MAX4912 quad, singlepole/double-throw (SPDT), clickless audio switches feature negative signal capability that allows signals as low as VCC -5.5V to pass through without distortion. These analog switches have a low on-resistance, low supply current, and operate from a single +1.8V to +5.5V supply.

    The MAX4910/MAX4911/MAX4912 have internal shunt resistors that automatically discharge the capacitance at the normally open (NO) and normally closed (NC) terminals when they are not connected. The MAX4910/MAX4911 have shunt resistors on all NO and NC terminals and the MAX4912 has shunt resistors on all NO, NC1, and NC3 terminals. These shunt resistors reduce click-and-pop sounds that occur when switching audio signals between precharged points. A break-before-make feature further reduces popping.

    The MAX4910/MAX4912 control the switches in pairs with two control bits CB1 and CB2. The MAX4911 has one control bit to switch all four switches and an enable pin active-low EN to put the switches in a high-impedance mode. The MAX4912 has two terminals without shunt resistors for switching applications that do not require pre-discharge switching.

    The MAX4910/MAX4911/MAX4912 are available in a tiny 16-pin TQFN-EP (3mm x 3mm) package and operate over the -40°C to +85°C extended temperature range.

    Key Features   Applications/Uses
  • Distortion-Free Negative Signal Throughput Down to VCC -5.5V
  • Internal Shunt Resistors Reduce Click-and-Pop Sounds
  • High PSRR Reduces Supply Noise
  • Low On-Resistance (0.37Ω)
  • 0.1Ω Channel-to-Channel Matching
  • 0.35Ω On-Resistance Flatness
  • +1.8V to +5.5V Single-Supply Voltage
  • -80dB Crosstalk (20kHz)
  • -90dB Off-Isolation (20kHz)
  • 0.05% Total Harmonic Distortion
  • Enable Control (MAX4911)
  • 10nA Leakage Current
  • 150nA Supply Current

     
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    Document Ref.: 19-3854; Rev 0; 2006-05-04
    This page last modified: 2009-05-04


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