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MAX1302*, MAX1303
8-/4-Channel, ±VREF Multirange Inputs, Serial 16-Bit ADCs

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    Description
    FULL DATA SHEET (PDF, 568kB)
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    The MAX1302/MAX1303 multirange, low-power, 16-bit, successive-approximation, analog-to-digital converters (ADCs) operate from a single +5V supply and achieve throughput rates up to 115ksps. A separate digital supply allows digital interfacing with 2.7V to 5.25V systems using the SPI™-/QSPI™-/MICROWIRE™-compatible serial interface. Partial power-down mode reduces the supply current to 1.3mA (typ). Full power-down mode reduces the power-supply current to 1µA (typ).

    The MAX1302 provides eight (single-ended) or four (true differential) analog input channels. The MAX1303 provides four (single-ended) or two (true differential) analog input channels. Each analog input channel is independently software programmable for seven single-ended input ranges (0 to +VREF/2, -VREF/2 to 0, 0 to +VREF, -VREF to 0, ±VREF/4, ±VREF/2, and ±VREF), and three differential input ranges (±VREF/2, ±VREF, ±2 x VREF).

    An on-chip +4.096V reference offers a small convenient ADC solution. The MAX1302/MAX1303 also accept an external reference voltage between 3.800V and 4.136V.

    The MAX1302 is available in a 24-pin TSSOP package and the MAX1303 is available in a 20-pin TSSOP package. Each device is specified for operation from -40°C to +85°C.

    Key Features   Applications/Uses
    • Software-Programmable Input Range for Each Channel
    • Single-Ended Input Ranges
      • 0 to +VREF/2, -VREF/2 to 0, 0 to +VREF, -VREF to 0, ±VREF/4, ±VREF/2, and ±VREF
    • Differential Input Ranges ±VREF/2, ±VREF, and ±2 x VREF
    • Eight Single-Ended or Four Differential Analog Inputs (MAX1302)
    • Four Single-Ended or Two Differential Analog Inputs (MAX1303)
    • ±6V Overvoltage Tolerant Inputs
    • Internal or External Reference
    • 115ksps Maximum Sample Rate
    • Single +5V Power Supply
    • 20-/24-Pin TSSOP Package

     
  • Avionics
  • Data Acquisition Systems
  • Industrial Control Systems
  • Robotics

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    Document Ref.: 19-3576; Rev 1; 2006-12-08
    This page last modified: 2008-03-06




             



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