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MAX4800A, MAX4802A
Low-Charge-Injection, 8-Channel, High-Voltage Analog Switches with 20MHz Serial Interface

Series Offers Low Charge Injection, Low Capacitance, and Fast SPI Interface


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Description
FULL DATA SHEET (PDF, 168kB)
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The MAX4800A/MAX4802A provide high-voltage switching on eight channels for ultrasonic imaging and printer applications. The devices utilize BCDMOS process technology to provide eight high-voltage low-charge-injection SPST switches, controlled by a 20MHz serial interface. Data is clocked into an internal 8-bit shift register and retained by a programmable latch with enable and clear inputs. A power-on reset function ensures that all switches are open on power-up.

The MAX4800A/MAX4802A operate with a wide range of high-voltage supplies including: VPP/VNN = +100V/-100V, +185V/-15V, and +40V/-160V. The digital interface operates from a separate VDD supply from +2.7V to +6V. Digital inputs DIN, CLK, active-low LE, and CLR are +6V tolerant, independent of the VDD supply voltage. The MAX4802A provides integrated 35kΩ bleed resistors on each switch terminal to discharge capacitive loads.

The MAX4800A/MAX4802A are drop-in replacements for the Supertex HV22C3 and HV2303. The devices are available in the 48-pin TQFP, 26-bump CSBGA, and 28-pin PLCC packages. All devices are specified for the commercial 0°C to +70°C temperature range.

Key Features   Applications/Uses
  • Fast SPI™ Interface 20MHz
  • Pin-Compatible Replacement for Supertex HV2203 (MAX4800A)
  • Pin-Compatible Replacement for Supertex HV2303 (MAX4802A)
  • Flexible High-Voltage Supplies Up to VPP - VNN = 200V
  • Low-Charge-Injection, Low-Capacitance 22Ω Switches
  • DC to 10MHz Analog-Signal Frequency Range
  • -77dB Off-Isolation at 5MHz
  • Low 10µA Quiescent Current
  • Integrated Bleed Resistors (MAX4802A Only)
  • Available in Standard PLCC, TQFP, and CSBGA Packages

 
  • Printers
  • Ultrasound Imaging

    Diagram
    MAX4800A, MAX4802A: Functional Diagram
    Functional Diagram

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    Document Ref.: 19-4120; Rev 0; 2008-05-19
    This page last modified: 2008-09-19



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