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MAX4599
Low-Voltage, Single-Supply, SPDT Analog Switch in SC70


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 272kB)
Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail
The MAX4599 single-pole/double-throw (SPDT) switch operates from a +2.0V to +5.5V single supply. It offers 60Ω max on-resistance (RON) at +5V and fast switching times (tON = 30ns max, tOFF = 25ns max).

The MAX4599 features excellent RON flatness (4Ω max) and matching (1Ω max) between channels. This device also offers 5pC max charge injection.

The MAX4599 is available in tiny 6-pin SC70, µDFN, and SOT23 packages.

Key Features   Applications/Uses
  • Available in 6-Pin SC70 Package
  • 60Ω max (40Ω typ) On-Resistance
  • 1Ω max (0.2Ω typ) RON Matching Between Channels
  • 4Ω max (2.5Ω typ) RON Flatness
  • Fast Switching:
    • tON = 30ns (max)
    • tOFF = 25ns (max)
  • Guaranteed 5pC max Charge Injection
  • +2.0V to +5.5V Single-Supply Operation
  • 200MHz -3dB Bandwidth
  • Low ±0.5nA Leakage Current at +25°C
  • Break-Before-Make Switching
  • TTL/CMOS-Logic Compatible
  • -76dB Off-Isolation at 1MHz
  • 0.12% Total Harmonic Distortion

 
  • Audio/Video Signal Routing
  • Battery-Operated Equipment
  • Cell Phones
  • Communications Circuits
  • Low-Voltage Data-Acquisition Systems
  • Sample-and-Hold Circuits

    Key Specifications:  Switches and Multiplexers (Low Voltage)
    Part Number Functions Config. Channels VSUPPLY (Single)
    (V)
    VSUPPLY (Single)
    (V)
    RON
    (Ω)
    BW
    (MHz)
    IL(OFF)
    (nA)
    tON
    (ns)
    tOFF
    (ns)
    QINJECTION
    (pC)
    CON
    (pF)
    COFF
    (pF)
    Price
    min max max max min max max max See Notes
    MAX4599  Switch SPDT 1 2 5.5 60 200 1 30 25 5 20 8 $0.56 @1k
    See All Switches and Multiplexers (Low Voltage) (160)

    Diagram
    MAX4599: Pin Configuration/Functional Diagram/Truth Table
    Pin Configuration/Functional Diagram/Truth Table

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    Document Ref.: 19-1637; Rev 2; 2004-03-18
    This page last modified: 2009-08-17


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