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MAX11014, MAX11015*
Automatic RF MESFET Amplifier Drain-Current Controllers

Dual MESFET Bias Control for Classes A and AB Amplifiers

*Future Product
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    Status
    Part Number Status
    MAX11014 Active: In Production.
    MAX11015 Future Product

    Data Sheet
    FULL DATA SHEET (PDF, 660kB)
    Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail


    Description
    The MAX11014/MAX11015 set and control bias conditions for dual MESFET power devices found in point-to-point communication and other microwave base stations. The MAX11014 integrates complete dual analog closed-loop drain-current controllers for Class A MESFET amplifier operation, while the MAX11015 targets Class AB operation. Both devices integrate SRAM lookup tables (LUTs) that can be used to store temperature and drain-current compensation data.

    Each device includes dual high-side current-sense amplifiers to monitor the MESFET drain currents through the voltage drop across the sense resistors in the 0 to 625mV range. External diode-connected transistors monitor the MESFET temperatures while an internal temperature sensor measures the local die temperature of the MAX11014/MAX11015. The internal DAC sets the voltages across the current-sense resistors by controlling the GATE voltages. The internal 12-bit SAR ADC digitizes internal and external temperature, internal DAC voltages, current-sense amplifier voltages, and external GATE voltages. Two of the 11 ADC channels are available as general-purpose analog inputs for analog system monitoring.

    The MAX11014's gate-drive amplifier functions as an integrator for the Class A drain-current control loop while the MAX11015's gate-drive amplifier functions with a gain of -2 for Class AB applications. The current-limited gate-drive amplifier can be fast clamped to an external voltage independent of the digital input from the serial interface. Both the MAX11014 and the MAX11015 include self-calibration modes to minimize error over time, temperature, and supply voltage.

    The MAX11014/MAX11015 feature an internal reference and can operate from separate ADC and DAC external references. The internal reference provides a well-regulated, low-noise +2.5V reference for the ADC, DAC, and temperature sensors. These integrated circuits operate from a 4-wire 20MHz SPI™-/MICROWIRE™-compatible or 3.4MHz I²C-compatible serial interface (pin-selectable). Both devices operate from a +4.75V to +5.25V analog supply (2.8mA typical supply current), a +2.7V to +5.25V digital supply (1.5mA typical supply current), and a -4.5V to -5.5V negative supply (1.1mA supply current). The MAX11014/MAX11015 are available in a 48-pin thin QFN package specified over the -40°C to +105°C temperature range.

    An evaluation kit is available:  MAX11014EVKIT  

    Key Features   Applications/Uses
    • Dual Drain-Current-Sense Gain Amplifier
      • Preset Gain of 4
      • ±0.5% Accuracy for Sense Voltages Between 75mV and 625mV (MAX11014)
    • Common-Mode Sense-Resistor Voltage Range
      • 0.5V to 11V (MAX11014)
      • 5V to 32V (MAX11015)
    • Low-Noise Output GATE Bias with ±10mA GATE Drive
    • Fast Clamp and Power-On Reset
    • 12-Bit DAC Controls MESFET GATE Voltage
    • Internal Temperature Sensor/Dual Remote Diode Temperature Sensors
    • Internal 12-Bit ADC Measures Temperature and Voltage
    • Pin-Selectable Serial Interface
      • 3.4MHz I²C-Compatible Interface
      • 20MHz SPI-/MICROWIRE-Compatible Interface

     
  • Cellular Base-Station RF MESFET Bias Controllers
  • Industrial Process Control
  • Point-to-Point or Point-to-Multipoint Links

    Diagram
    MAX11014, MAX11015: Typical Operating Circuit
    Typical Operating Circuit

    Application Notes
  • Application Note 4065: Implementing a MAX1385-Based Control Loop in C/C++ - MAX11014

    Evaluation Kits
  • MAX11014EVKIT

    Reliability Reports
  • Reliability Report: MAX11014.pdf
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    Software/Models
    none

    Ordering Information
    Notes:

    1. Other options and links for purchasing parts are listed at: http://www.maxim-ic.com/sales.
    2. Didn't Find What You Need? Ask our applications engineers. Expert assistance in finding parts, usually within one business day.
    3. Part number suffixes: T or T&R = tape and reel;+ = RoHS/lead-free;# = RoHS/lead-exempt. More: SeeFull Data Sheet or Part Naming Conventions.
    4. * Some packages have variations, listed on the drawing. "PkgCode/Variation" tells which variation the product uses. Note that "+", "#", "-" in the part number suffix describes RoHS status. Package drawings may show a different suffix character.


    Devices: 1-2 of 2

    MAX11014 Free
    Sample
    Buy Status
    Package: TYPE PINS FOOTPRINT
      DRAWING CODE/VAR *
    Temp RoHS/Lead-Free?
    Materials Analysis
    MAX11014BGTM+T    
    Active TQFN;48 pin;50 mm²
    Outline Drawing: 21-0144 (PDF)
    Land Pattern: 90-0040 (PDF)
    Use pkgcode/variation: T4877MN+8*
    -40°C to +85°C RoHS/Lead-Free: Lead Free
    Materials Analysis
    MAX11014BGTM+  
    Active TQFN;48 pin;50 mm²
    Outline Drawing: 21-0144 (PDF)
    Land Pattern: 90-0040 (PDF)
    Use pkgcode/variation: T4877MN+8*
    -40°C to +85°C RoHS/Lead-Free: Lead Free
    Materials Analysis

    More Information
  • New Product Press Release 2006-03-01 
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    Related Products
    MAX1385, MAX1386 Dual RF LDMOS Bias Controllers with I²C/SPI Interface
    MAX1220, MAX1257, MAX1258 12-Bit, Multichannel ADCs/DACs with FIFO, Temperature Sensing, and GPIO Ports

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    Document Ref.: 19-3985; Rev 3; 2008-12-18
    This page last modified: 2008-12-18


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