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ATtiny167 Automotive Datasheet

时间:   2009-07-26  来源:  Seawin      浏览量

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   The ATtiny167 provides the following features: 16K byte of In-System Programmable Flash, 512 bytes EEPROM, 512 bytes SRAM, 6 general purpose I/O lines, 32 general purpose working reg-isters, one 8-bit Timer/Counter with compare modes, one 8-bit high speed Timer/Counter, Universal Serial Interface, a LIN controller, Internal and External Interrupts, a 4-channel, 10-bit ADC, a programmable Watchdog Timer with internal Oscillator, and three software selectable power saving modes.      
KeyParameter:
Flash (Kbytes): 16;    EEPROM (Kbytes): 0.5;    SRAM (Bytes): 512;    Max I/O Pins: 16;    F.max (MHz): 16;    Vcc (V): 2.7 - 5.5;    10-bit A/D Channels: 11;    Analog Comparator: Yes;    16-bit Timers: 1;    8-bit Timer: 1;    Brown Out Detector: Yes;    Ext Interrupts: 16;    Interrupts: 20;    On Chip Oscillator: Yes;    PWM Channels: 4;    RTC: Yes;    Self Program Memory: Yes;    SPI: 1+USI;    TWI: No;    UART: Yes;    Watchdog: Yes;    
      GreenPackage         VQFN (Sawn) 32    TSSOP 20    SOIC 20   
      

Datasheet:
             Appendix A - ATtiny87/ATtiny167 Automotive specification at 150°C Preliminary (10 pages, revision B, updated 06/09)
             ATtiny87/ATtiny167 Automotive (282 pages, revision C, updated 5/09)
       
AppNote:
             AVR286: LIN Firmware Base for LIN/UART Controller(19 pages, revision A, updated 3/08)

             AVR292: LIN Break-in-Data Feature of LIN/UART Controller(8 pages, revision A, updated 3/08)
This document describes the behavior of the LIN/UART Controller when it detects an unanticipated BREAK field during an otherwise normal LIN transfer. This event is what we refer to as "Break-in-Data".
             AVR042: AVR Hardware Design Considerations(14 pages, revision F, updated 4/08)
This Application Note covers the most common problems encountered when switching to a new microcontroller architecture like the AVR.Solutions and considerations for the most common design challenges are covered.
             AVR053: Calibration of the internal RC oscillator(15 pages, revision G, updated 05/06)
This application note describes a method to calibrate the internal RC oscillator and targets all AVR devices with tunable RC oscillator. Furthermore, an easily adaptable calibration firmware source code is also offered. This allows device calibration using AVR tools, and it can also be used for 3rd party calibration systems, based on production programmers.
             AVR055: Using a 32kHz XTAL for run-time calibration of the internal RC(16 pages, revision D, updated 7/08)
This application note describes a fast and accurate way to calibrate the internal RC oscillator using an external 32.768 kHz crystal as input to an asynchronous Timer/Counter.
             AVR350: Xmodem CRC Receive Utility for AVR(7 pages, revision D, updated 1/08)
The Xmodem protocol was created years ago as a simple means of having two computers talk to each other. With its half-duplex mode of operation, 128-byte packets, ACK/NACK responses and CRC data checking, the Xmodem has found its way into many applications.
              
ToolSoftware:
      
      Debug Tool:      AVR JTAGICE mkII
      Design Software:      AVR Studio 4
      Starter Kit:      ATSTK600
            ATSTK600-SOIC
            ATSTK600-Tinyx3U
      Software Files:             Vector LIN 2.1 Stack for AVR devices

OtherDocument:
            Atmel Motor Driver Solutions(Brochure, 16 pages, revision A, updated 10/08)

            AVR and AVR32 - Quick Reference Guide(Overview, 68 pages, revision I, updated 5/09)
Introduction of the product range of AVR and AVR32 microcontrollers and application processors:

Device family description
Key features
Device selection guides
Application oriented device families
Tools offer
            AVR Instruction Set(User Guide, 155 pages, revision H, updated 7/09)

            AVR Microcontrollers for Automotive(Brochure, 12 pages, revision F, updated 10/08)

       

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