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MAX4561, MAX4568, MAX4569
±15kV ESD-Protected, Low-Voltage, SPDT/SPST, CMOS Analog Switches


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 248kB)
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The MAX4561/MAX4568/MAX4569 are low-voltage, ESD-protected analog switches. The normally open (NO) and normally closed (NC) inputs are protected against ±15kV electrostatic discharge (ESD) without latchup or damage, and the COM input is protected against 2.5kV ESD.

These switches operate from a single +1.8V to +12V supply. The 70Ω at 5V (120Ω at 3V) on-resistance is matched between channels to 2Ω max, and is flat (4Ω max) over the specified signal range. The switches can handle rail-to-rail analog signals. Off-leakage current is only 0.5nA at +25°C and 5nA at +85°C. The digital input has +0.8V to +2.4V logic thresholds, ensuring TTL/CMOS-logic compatibility when using a single +5V supply. The MAX4561 is a single-pole/double-throw (SPDT) switch. The MAX4568 NO and MAX4569 NC are single-pole/single-throw (SPST) switches.

The MAX4561 is available in a 6-pin SOT23 package, and the MAX4568/MAX4569 are available in 5-pin SOT23 packages.

Key Features   Applications/Uses
  • ESD-Protected NO, NC
    • ±15kV—Human Body Model
    • ±15kV—IEC 1000-4-2, Air-Gap Discharge
    • ±8kV—IEC 1000-4-2, Contact Discharge
  • Guaranteed On-Resistance
    • 70Ω +5V Supply
    • 120Ω with Single +3V Supply
  • On-Resistance Match Between Channels (2Ω max)
  • Low On-Resistance Flatness: 4Ω max
  • Guaranteed Low Leakage Currents
    • 0.5nA Off-Leakage (at TA = +25°C)
    • 0.5nA On-Leakage (at TA = +25°C)
  • Guaranteed Break-Before-Make at 5ns (MAX4561 only)
  • Rail-to-Rail Signal Handling Capability
  • TTL/CMOS-Logic Compatible with +5V Supplies
  • Industry Standard Pin-Outs
    • MAX4561 Pin Compatible with MAX4544
    • MAX4568/MAX4569 Pin Compatible with MAX4514/MAX4515

 
  • Protection Circuits
  • Switches and Multiplexers

    Diagram
    MAX4561, MAX4568, MAX4569: Pin Configuration
    Pin Configuration

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    Document Ref.: 19-1714; Rev 0; 2000-06-15
    This page last modified: 2009-10-27


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