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MAXQ2010
16-Bit Mixed-Signal Microcontroller with LCD Interface

Integrated Microcontroller with 12-Bit ADC, 16-Bit RISC Core and Ultra-Low-Power Stop Mode (370nA typ)


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Description
FULL DATA SHEET (PDF, 712kB)
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The MAXQ2010 microcontroller is a low-power, 16-bit device that incorporates a high-performance, 12-bit, multichannel ADC and a liquid-crystal display (LCD) interface. A combination of high performance, low power, and mixed-signal integration makes the MAXQ2010 ideal for a wide variety of applications.

The MAXQ2010 has 64KB of flash memory, 2KB of RAM, three 16-bit timers, and two universal synchronous/asynchronous receiver/transmitters (USARTs). Flash memory aids prototyping and is available for mass production. Mask ROM versions are available for large production volumes when cost is a critical factor. The microcontroller runs from a 2.7V to 3.6V operating supply. For the ultimate in low-power performance, the MAXQ2010 includes a low-power sleep mode, the ability to selectively disable peripherals, and multiple power-saving operating modes.

Note: Designers must have the following documents to fully use all the features of this device. This data sheet contains pin descriptions, feature overviews, and electrical specifications. Errata sheets contain deviations from published specifications. The user's guides offer detailed information about device features and operation.

Key Features   Applications/Uses
  • High-Performance, Low-Power, 16-Bit MAXQ® RISC Core
  • DC to 10MHz Operation, Approaching 1MIPS per MHz
  • 2.7V to 3.6V Operating Voltage
  • 33 Instructions, Most Single Cycle
  • Three Independent Data Pointers Accelerate Data Movement with Automatic Increment/Decrement
  • 16-Level Hardware Stack
  • 16-Bit Instruction Word, 16-Bit Data Bus
  • 16 x 16-Bit General-Purpose Working Registers
  • Optimized for C-Compiler (High-Speed/Density Code)
  • On-Chip FLL Reduces External Clock Frequency
  • Memory Features
    • 64KB Flash Memory (In-Application and In-System Programmable)
    • 2KB Internal Data RAM
    • JTAG Bootloader for Programming and Debug
  • Peripheral Features
    • 12-Bit SAR ADC with Internal Reference and Autoscan
      • Eight Single-Ended or Four Differential Inputs
      • Up to 312.5ksps Sample Rate
    • Supply Voltage Monitor with Adjustable Threshold
    • One-Cycle, 16 x 16 Hardware Multiply/Accumulate with 48-Bit Accumulator
    • Three 16-Bit Programmable Timers/Counters with PWM Outputs
    • 32-Bit Binary Real-Time Clock with Digital Trim Capability
    • Integrated LCD
      • 160 Segments
      • No External Resistors Required
    • Two USARTs, I²C Master/Slave, and SPI™ Master/Slave Communications Ports
    • On-Chip Power-On Reset/Brownout Reset
    • Programmable Watchdog Timer
  • Low Power Consumption
    • 1mA (typ) at 1MHz Flash Operation at 2.7V
    • 370nA (typ) in Stop Mode
    • Low-Power Power-Management Mode (PMM)

 
  • Battery-Powered and Portable Devices
  • Consumer Electronics
  • Data-Acquisition Systems and Data Loggers
  • Electrochemical and Optical Sensors
  • Gas and Chemical Sensors
  • Home Appliances
  • HVAC
  • Industrial Control
  • Medical Instrumentation
  • Portable Medical Equipment
  • Security Sensors
  • Smart Transmitters
  • Thermostats/Humidity Sensors

    Key Specifications:   16-bit MAXQ RISC Microcontrollers
    Part Number Peak MIPS Internal Program Memory Internal Data SRAM Sync/Async Serial Ports SPI Bus I2C Bus Timers PWM Outputs Data Pointers Multiply/ Accumulate Price**
    MAXQ2010  10 64kB Flash 2k Bytes 1
    2
    Yes Yes 3x16-bit 1
    2
    3
    3 16x16 $3.45 @ 1k
    See All 16-bit MAXQ RISC Microcontrollers (8)
    Notes:
    **This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific prices and delivery, please see the price and availability page or contact an authorized distributor.

    Diagram
    MAXQ2010: Typical Application Circuit
    Typical Application Circuit

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    Rev 1; 2009-01-20
    This page last modified: 2009-06-30


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