登录
首页 » MDK » 虚拟示波器正式版

虚拟示波器正式版

于 2018-09-27 发布 文件大小:2828KB
0 318
下载积分: 1 下载次数: 2

代码说明:

  experiment equipment: stm32F103 C8T6 Purpose: ADC real-time sampling shows waveforms through an anonymous host computer (virtual oscilloscope) ADC1 and serial 1 dual DMA use to speed up the transfer rate Hardware resources: 1, ADC1 channel 1 (peripheral A1) 2, serial port 1 (baud rate: 500000) Experimental phenomena: The anonymous host computer displays the waveform in real time. The sampling frequency of the ADC is about 1Mhz (the highest value of the single ADC mode has been reached, but the maximum transmission rate of the host computer is about 500000 baud. And only one byte per transfer of 14 bytes is valid (caused by the anonymous transfer protocol). It takes about 2.8ms to transfer once.

文件列表:

虚拟示波器正式版\CORE\core_cm3.c, 17273 , 2018-08-24
虚拟示波器正式版\CORE\core_cm3.h, 85714 , 2018-08-24
虚拟示波器正式版\CORE\startup_stm32f10x_hd.s, 15503 , 2018-08-24
虚拟示波器正式版\CORE\startup_stm32f10x_md.s, 12765 , 2018-08-24
虚拟示波器正式版\HARDWARE\ADC\adc.c, 3523 , 2018-08-24
虚拟示波器正式版\HARDWARE\ADC\adc.h, 532 , 2018-08-24
虚拟示波器正式版\HARDWARE\ano\ano.c, 2194 , 2018-08-24
虚拟示波器正式版\HARDWARE\ano\ano.h, 348 , 2018-08-24
虚拟示波器正式版\HARDWARE\DMA\dma.c, 3355 , 2018-08-24
虚拟示波器正式版\HARDWARE\DMA\dma.h, 361 , 2018-08-24
虚拟示波器正式版\HARDWARE\LCD\FONT.H, 35016 , 2018-08-24
虚拟示波器正式版\HARDWARE\LCD\lcd.c, 85631 , 2018-08-24
虚拟示波器正式版\HARDWARE\LCD\lcd.h, 8193 , 2018-08-24
虚拟示波器正式版\HARDWARE\LED\led.c, 1301 , 2018-08-24
虚拟示波器正式版\HARDWARE\LED\led.h, 640 , 2018-08-24
虚拟示波器正式版\keilkilll.bat, 399 , 2018-08-24
虚拟示波器正式版\OBJ\adc.crf, 348894 , 2018-08-24
虚拟示波器正式版\OBJ\adc.d, 1640 , 2018-08-24
虚拟示波器正式版\OBJ\adc.o, 383668 , 2018-08-24
虚拟示波器正式版\OBJ\ano.crf, 349160 , 2018-08-24
虚拟示波器正式版\OBJ\ano.d, 1601 , 2018-08-24
虚拟示波器正式版\OBJ\ano.o, 384236 , 2018-08-24
虚拟示波器正式版\OBJ\ano_dt.d, 2147 , 2018-08-24
虚拟示波器正式版\OBJ\core_cm3.crf, 3942 , 2018-08-24
虚拟示波器正式版\OBJ\core_cm3.d, 104 , 2018-08-24
虚拟示波器正式版\OBJ\core_cm3.o, 11384 , 2018-08-24
虚拟示波器正式版\OBJ\delay.crf, 348302 , 2018-08-24
虚拟示波器正式版\OBJ\delay.d, 1669 , 2018-08-24
虚拟示波器正式版\OBJ\delay.o, 383132 , 2018-08-24
虚拟示波器正式版\OBJ\dma.crf, 348768 , 2018-08-24
虚拟示波器正式版\OBJ\dma.d, 1601 , 2018-08-24
虚拟示波器正式版\OBJ\dma.o, 383884 , 2018-08-24
虚拟示波器正式版\OBJ\LCD.axf, 340124 , 2018-08-24
虚拟示波器正式版\OBJ\LCD.build_log.htm, 1595 , 2018-08-24
虚拟示波器正式版\OBJ\lcd.crf, 420398 , 2018-08-24
虚拟示波器正式版\OBJ\lcd.d, 1836 , 2018-08-24
虚拟示波器正式版\OBJ\LCD.hex, 20727 , 2018-08-24
虚拟示波器正式版\OBJ\LCD.htm, 65337 , 2018-08-24
虚拟示波器正式版\OBJ\LCD.lnp, 611 , 2018-08-24
虚拟示波器正式版\OBJ\lcd.o, 462744 , 2018-08-24
虚拟示波器正式版\OBJ\LCD.sct, 479 , 2018-08-24
虚拟示波器正式版\OBJ\LCD_sct.Bak, 479 , 2018-08-24
虚拟示波器正式版\OBJ\LCD_Target 1.dep, 36068 , 2018-08-24
虚拟示波器正式版\OBJ\led.crf, 347849 , 2018-08-24
虚拟示波器正式版\OBJ\led.d, 1601 , 2018-08-24
虚拟示波器正式版\OBJ\led.o, 382024 , 2018-08-24
虚拟示波器正式版\OBJ\main.crf, 354542 , 2018-08-24
虚拟示波器正式版\OBJ\main.d, 1872 , 2018-08-24
虚拟示波器正式版\OBJ\main.o, 390960 , 2018-08-24
虚拟示波器正式版\OBJ\misc.crf, 347247 , 2018-08-24
虚拟示波器正式版\OBJ\misc.d, 1613 , 2018-08-24
虚拟示波器正式版\OBJ\misc.o, 380556 , 2018-08-24
虚拟示波器正式版\OBJ\startup_stm32f10x_hd.d, 63 , 2018-08-24
虚拟示波器正式版\OBJ\startup_stm32f10x_hd.o, 6836 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_adc.crf, 354416 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_adc.d, 1910 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_adc.o, 394532 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_dma.crf, 350355 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_dma.d, 1910 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_dma.o, 384164 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_gpio.crf, 350745 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_gpio.d, 1943 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_gpio.o, 386900 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_it.crf, 346648 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_it.d, 1807 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_it.o, 380936 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_rcc.crf, 354320 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_rcc.d, 1910 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_rcc.o, 391400 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_usart.crf, 352858 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_usart.d, 1976 , 2018-08-24
虚拟示波器正式版\OBJ\stm32f10x_usart.o, 391044 , 2018-08-24
虚拟示波器正式版\OBJ\sys.crf, 347494 , 2018-08-24
虚拟示波器正式版\OBJ\sys.d, 1562 , 2018-08-24
虚拟示波器正式版\OBJ\sys.o, 382884 , 2018-08-24
虚拟示波器正式版\OBJ\system_stm32f10x.crf, 348367 , 2018-08-24
虚拟示波器正式版\OBJ\system_stm32f10x.d, 1892 , 2018-08-24
虚拟示波器正式版\OBJ\system_stm32f10x.o, 380836 , 2018-08-24
虚拟示波器正式版\OBJ\usart.crf, 352919 , 2018-08-24
虚拟示波器正式版\OBJ\usart.d, 1730 , 2018-08-24
虚拟示波器正式版\OBJ\usart.o, 386572 , 2018-08-24
虚拟示波器正式版\README.TXT, 416 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\misc.h, 8982 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_adc.h, 21690 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_bkp.h, 7555 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_can.h, 27559 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_cec.h, 6573 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_crc.h, 2162 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_dac.h, 15233 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_dbgmcu.h, 3818 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_dma.h, 20754 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_exti.h, 6824 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_flash.h, 25445 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_fsmc.h, 27016 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_gpio.h, 20175 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_i2c.h, 30029 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_iwdg.h, 3828 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_pwr.h, 4383 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_rcc.h, 30452 , 2018-08-24
虚拟示波器正式版\STM32F10x_FWLib\inc\stm32f10x_rtc.h, 3857 , 2018-08-24

下载说明:请别用迅雷下载,失败请重下,重下不扣分!

发表评论

0 个回复

  • 478466
    modify alv subtotal text
    2010-06-07 11:13:59下载
    积分:1
  • MPC
    说明:  模型预测控制matlab程序,与带约束优化下的LQR问题。(Model predictive control of MATLAB programs, and LQR problems with constrained optimization.)
    2020-09-12 15:58:00下载
    积分:1
  • 盲源分离
    常用的盲分离算法有二阶统计量方法、高阶累积量方法、信息最大化( Infomax )以及独 立成分分析( ICA )等。这些方法取得最佳性能的条件总是与源信号的概率密度函数假设有关, 一旦假设的概率密度与实际信号的密度函数相差甚远,分离性能将大大降低。本文提出采用 核函数密度估计的方法进行任意信号源的盲分离,并通过典型算例与几种盲分离算法进行了 性能比较,验证了方法的可行性。(The commonly used blind separation algorithms include two order statistics, higher order cumulants, and maximization of information Infomax) and independent component analysis (ICA). The conditions for obtaining the best performance of these methods are always related to the hypothesis of the probability density function of the source signal. The separation performance will be greatly reduced when the assumed probability density is very different from the density function of the actual signal. In this paper, a method of kernel function density estimation for blind separation of arbitrary signal sources is proposed. The performance of several blind separation algorithms is compared with some typical examples, and the feasibility of the method is verified.)
    2021-03-08 10:09:29下载
    积分:1
  • cran-master
    5G C-RAN master code (cloud radio access network )
    2021-02-21 16:59:42下载
    积分:1
  • 下载我+全部游戏下载列表
    说明:  包括各种热门游戏。其中有些已失效,可以随便看看,了解各种好玩的游戏,建议入正。(Including all kinds of popular games.)
    2020-06-20 23:20:02下载
    积分:1
  • Delphi获取系统进程端口
    Delphi获取系统进程端口,可检测发现TCP/UDP端口数量,并在网格控件中枚举显示出这些端口的进程信息,包括:本地、远程IP、连接状态、进程ID/可执行文件名等。程序实现主要通过iphlpapi.dll动态库的相关函数和接口。
    2022-02-06 08:57:09下载
    积分:1
  • ie703
    用平面波展开法计算二维声子晶体带隙,非归零型差分相位调制信号建模与仿真分析 ,计算多重分形非趋势波动分析。( Computation Method D phononic bandgap plane wave, NRZ type differential phase modulation signal modeling and simulation analysis, Calculate the multifractal trend fluctuation analysis.)
    2017-03-24 14:44:28下载
    积分:1
  • JDPackage-master (1)
    京东抢卷、抢购python代码,代码中有注释,可以自行修改功能(Jingdong grabs and snap up Python code. There are notes in the code, which can be modified by itself.)
    2018-11-09 08:18:49下载
    积分:1
  • 医药进销存系统VB+Access源码
    医药进销存系统VB+Access源码,功能:日常业务管理、库存管理、查询统计、基础信息管理、系统设置等,界面方面操作方便,还包括有报表和库存查询、供应商管理等功能。
    2022-08-16 01:45:00下载
    积分:1
  • C 程序设计语言定义了两个标准的内存管理函数:malloc() 和 free()。C 程序员经常使用那些函数在运行时分配缓冲区,以便在函数之间传递数据。然而在许...
    C 程序设计语言定义了两个标准的内存管理函数:malloc() 和 free()。C 程序员经常使用那些函数在运行时分配缓冲区,以便在函数之间传递数据。然而在许多场合下,您无法预先确定缓冲区所需的实际大小,这对于构造复杂的 C 程序来说,可能会导致几个根本性的问题。一种自我管理的抽象数据缓冲区概括地给出了抽象缓冲区的伪 C 代码实现,并详细介绍了采用这种机制的优点。-C programming language defines two standard memory management functions: malloc () and free (). C programmers frequently use those functions at run-time allocation of buffers in order to pass data between functions. However, in many occasions, you can not pre-determine the actual size of the buffer required, which for the complex structure of the C program, it may lead to several fundamental questions. A self-management, abstract data buffer generally gives the pseudo-C code for an abstract buffer implementation, and details the advantages of using this mechanism.
    2022-03-11 11:19:26下载
    积分:1
  • 696516资源总数
  • 106914会员总数
  • 0今日下载