文件名称:Keil_XC888_ADCandCCU

  • 所属分类:
  • 单片机(51,AVR,MSP430等)
  • 资源属性:
  • [C/C++] [源码]
  • 上传时间:
  • 2012-11-26
  • 文件大小:
  • 303kb
  • 下载次数:
  • 0次
  • 提 供 者:
  • 余**
  • 相关连接:
  • 下载说明:
  • 别用迅雷下载,失败请重下,重下不扣分!

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XC8888是XC800家族的新成员,该款芯片具有32 KB闪存,功能强大、可灵活产生PWM的捕获/比较单元(CCU6)以及用于快速数学计算的乘除单元(MDU),使得该款芯片具有先进的电机驱动能力。 其它关键特性包括:支持LIN、高速高精度10位ADC以及坐标旋转数字计算机(CORDIC)单元。 本程序给出了ADC采样程序以及捕获比较单元CCU的两个示例,以及一个流水灯的示例程序。以上程序在工程实践中已经得到应用。开发环境为KeilC51V804。-XC800 family XC8888 is a new member, which the chip has 32 KB Flash, powerful, flexible and have a PWM capture/compare unit (CCU6), as well as mathematical calculations for fast multiplication and division unit (MDU), which makes chips with advanced electric drive capability. Other key features include: support for LIN, high-speed high-precision 10-bit ADC as well as coordinate rotation digital computer (CORDIC) module. This procedure gives the ADC sampling procedures and the capture compare unit CCU of the two examples, as well as a water sample procedures lights. Above procedures in engineering practice has been applied. Development environment for KeilC51V804.
相关搜索: XC8

(系统自动生成,下载前可以参看下载内容)

下载文件列表

XC888例程

.........\ADC

.........\...\ADC.abs

.........\...\ADC.abs.plg

.........\...\ADC.asm

.........\...\ADC.C

.........\...\ADC.dav

.........\...\ADC.dpt

.........\...\ADC.H

.........\...\ADC.hex

.........\...\ADC.lnp

.........\...\ADC.LST

.........\...\ADC.M51

.........\...\ADC.OBJ

.........\...\ADC.Opt

.........\...\ADC.plg

.........\...\ADC.rtf

.........\...\ADC.Uv2

.........\...\ADC_Opt.Bak

.........\...\ADC_Uv2.Bak

.........\...\IO.C

.........\...\IO.H

.........\...\IO.LST

.........\...\IO.OBJ

.........\...\MAIN.C

.........\...\MAIN.H

.........\...\MAIN.LST

.........\...\MAIN.OBJ

.........\...\SHARED_INT.C

.........\...\SHARED_INT.H

.........\...\SHARED_INT.LST

.........\...\SHARED_INT.OBJ

.........\...\START_XC.A51

.........\...\START_XC.LST

.........\...\START_XC.OBJ

.........\CCU01

.........\.....\CC6.C

.........\.....\CC6.H

.........\.....\CC6.LST

.........\.....\CC6.OBJ

.........\.....\CCU01

.........\.....\CCU01.dav

.........\.....\CCU01.dpt

.........\.....\CCU01.lnp

.........\.....\CCU01.M51

.........\.....\CCU01.Opt

.........\.....\CCU01.plg

.........\.....\CCU01.Uv2

.........\.....\CCU01_Opt.Bak

.........\.....\CCU01_Uv2.Bak

.........\.....\MAIN.C

.........\.....\MAIN.H

.........\.....\MAIN.LST

.........\.....\MAIN.OBJ

.........\.....\START_XC.A51

.........\.....\START_XC.LST

.........\.....\START_XC.OBJ

.........\CCU02

.........\.....\CC6.C

.........\.....\CC6.H

.........\.....\CC6.LST

.........\.....\CC6.OBJ

.........\.....\CCU02

.........\.....\CCU02.dav

.........\.....\CCU02.dpt

.........\.....\CCU02.lnp

.........\.....\CCU02.MAP

.........\.....\CCU02.Opt

.........\.....\CCU02.plg

.........\.....\CCU02.SBR

.........\.....\CCU02.Uv2

.........\.....\CCU02_Opt.Bak

.........\.....\MAIN.C

.........\.....\MAIN.H

.........\.....\MAIN.LST

.........\.....\MAIN.OBJ

.........\.....\START_XC.A51

.........\.....\START_XC.LST

.........\.....\START_XC.OBJ

.........\LED

.........\...\IO.C

.........\...\IO.H

.........\...\IO.LST

.........\...\IO.OBJ

.........\...\led.abs

.........\...\led.abs.plg

.........\...\led.asm

.........\...\led.dav

.........\...\led.dpt

.........\...\led.hex

.........\...\led.lnp

.........\...\led.M51

.........\...\led.Opt

.........\...\led.plg

.........\...\led.rtf

.........\...\led.Uv2

.........\...\led_Opt.Bak

.........\...\led_Uv2.Bak

.........\...\MAIN.C

.........\...\MAIN.H

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