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Manfredo P.do Carmo

  • 基于Multisim和LabVIEW的虚实结合数字电路实验教学

    实验教学一直是工科教学中不可或缺的组成部分,对培养学生的动手能力,独立思考能力,创新思维与发散思维具有重要的作用。针对目前电路教学实验中电路仿真实验与实物电路实验各自独立,无法统一问题,提出将仿真电路实验与实物电路实验有机的结合同步操作,并使用Web发布实现远程实验操作。采用Multisim作为电路实验仿真平台,NI Eiviss II作为实物电路实验硬件平台,运用LabVIEW整合Multisim电路仿真实验与实物电路实验,实现仿真与实物实验有机结合,两种实验可同步进行。学生在仿真实验中先可探索实验,然后做实物实验。同时运用LabVIEW开发出实验过程人机交互操作接口界面,使用过程中效果良好。Experimental teaching has always been an indispensable part of engineering education.And it always plays an important role in cultivating students'practical ability,independent thinking ability,innovative thinking and divergent thinking.But simulation experiment and physical experiment cannot be unified in the circuit teaching experiment at present.In order to solve this problem,this paper proposes to combine organically the simulation circuit experiment with physical circuit experiment,and synchronously operate them.This paper uses the WEB publishing to achieve remote experimental operation.Multisim is used as the circuit simulation platform,and NI Eiviss II is used as the physical circuit hardware platform.Multisim circuit simulation experiment and physical circuit experiment are implemented by LabVIEW to realize the combination of simulation experiment and physical experiment.Students do explore experiments in simulation experiment firstly,and then do physical experiment.And this paper uses LabVIEW to develop the experimental man-machine interface.

    标签: multisim labview

    上传时间: 2022-04-05

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  • 基于MSP430F5529单片机综合实验装置的研制

    针对目前MSP430单片机实验装置较少、实验内容少,而且无MSP430高端产品的实验装置,研制了基于MSP430F5529单片机的综合实验装置,主要包括MSP430 Launch Pad和母板两部分。较传统的单片机实验装置增加了模拟电路的设置,设计的实验能够利用单片机的所有外设,可进行模块基础实验和综合实验两大类实验,非常适合自动化和电气信息类大学生学习使用。Concerning with the lack of experimental equipment and content based on MSP430,and especially,the experimental equipment of MSP430 senior products,an experimental equipment based on MSP430F5529 microcontroller is developed. It mainly consists of two parts: MSP430 Launch Pad and main board. Compared with traditional microcontroller experiment equipment,a few analog circuits were added. The experiment we set up takes advantage of all microcontroller peripherals. Students can do two kinds of experiments: module experiment and complex experiment.Therefore it fits university students in automation and electrical major very well.

    标签: msp430f5529 单片机

    上传时间: 2022-04-13

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  • But How Do It Know,介绍计算机底层原理的书籍

    一本介绍计算机底层原理的书籍,从逻辑门开始构建一台计算机!

    标签: 计算机内部原理

    上传时间: 2022-04-30

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  • STM32103 105 107芯片LQFP48 64 LQFP100 144 VFQFPN36 P

    STM32103 105 107芯片LQFP48 64 LQFP100 144 VFQFPN36 PCB 2D+3D封装库,PCB Library : STM32 F1.PcbLibDate        : 2020/6/25Time        : 12:42:41Component Count : 22Component Name-----------------------------------------------LFBGA100LFBGA144LQFP48_LLQFP48_MLQFP48_NLQFP64_LLQFP64_MLQFP64_NLQFP100_LLQFP100_MLQFP100_NLQFP144_LLQFP144_MLQFP144_NTFBGA64VFQFPN36_LVFQFPN36_MVFQFPN36_NVFQFPN48_LVFQFPN48_MVFQFPN48_NWLCSP64

    标签: stm32

    上传时间: 2022-04-30

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  • 模拟集成电路的三大圣经之一,CMOS.Analog.Circuit.Design.2e.by.P.E.Allen

    CMOS.Analog.Circuit.Design.2e.by.P.E.Allen模拟集成电路的三大圣经之一

    标签: 模拟电路

    上传时间: 2022-05-04

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  • Vivado设计流程指导手册-含安装流程与仿真

    Vivado设计分为Project Mode和Non-project Mode两种模式,一般简单设计中,我们常用的是Project Mode。在本手册中,我们将以一个简单的实验案例,一步一步的完成Vivado的整个设计流程一、新建工程1、打开Vivado 2013.4开发工具,可通过桌面快捷方式或开始菜单中xilinx DesignTools-Vivado 2013.4下的Vivado 2013.4打开软件,开启后,软件如下所示:2、单击上述界面中Create New Project图标,弹出新建工程向导,点击Next.3、输入工程名称、选择工程存储路径,并勾选Create project subdirectory选项,为工程在指定存储路径下建立独立的文件夹。设置完成后,点击Next注意:工程名称和存储路径中不能出现中文和空格,建议工程名称以字母、数字、下划线来组成。4、选择RTL Project一项,并勾选Do not specifty sources at this time,勾选该选项是为了跳过在新建工程的过程中添加设计源文件。点击Next.IA5、根据使用的FPGA开发平台,选择对应的FPGA目标器件。(在本手册中,以xilinx官方开发板KC705为例,Nexys4开发板请选择Artix-7 XC7A100TCSG324-2的器件,即Family和Subfamily均为Artix-7,封装形式(Package)为cSG324,速度等级(Speed grade)为-1,温度等级(Temp Grade)为C)。点击Next6、确认相关信息与设计所用的的FPGA器件信息是否一致,一致请点击Finish,不一致,请返回上一步修改。二、设计文件输入1、如下图所示,点击Flow Navigator下的Project Manager->Add Sources或中间Sources中的对话框打开设计文件导入添加对话框。2、选择第二项Add or Create Design Sources,用来添加或新建Verilog或VHDL源文件,点击Next

    标签: vivado

    上传时间: 2022-05-28

    上传用户:默默

  • VerilogHDL那些事儿——整合篇

    笔者详细的谈论许多在整合里会出现的微妙思路,如:如何把计数器/定时器整合在某个步骤里,从何提升模块解读性和扩展性。此外,在整合篇还有一个重要的讨论,那就是 for,while 和 do ... while 等循环。这些都是一些顺序语言的佼佼者,可是在 Verilog HDL 语言里它们就黯然失色。整合篇所讨论的内容不单是循环而已,整合篇的第二个重点是理想时序和物理时序的整合。说实话,笔者自身也认为要结合“两个时序”是一件苦差事,理想时序是 Verilog的行为,物理时序则是硬件的行为。不过在它们两者之间又有微妙的 “黏糊点”,只要稍微利用一下这个“黏糊点”我们就可以非常轻松的写出符合“两个时序”的模块,但是前提条件是充足了解“理想时序”。整合篇里还有一个重点,那就是“精密控时”。实现“精密控时”最笨的方法是被动式的设计方法,亦即一边仿真,一边估算时钟的控制精度。这显然是非常“传统”而且“古老”的方法,虽然有效但往往就是最费精神和时间的。相反的,主动式是一种讲求在代码上和想象上实现“精密控时”的设计方法。主动式的设计方法是基于“理想时序”“建模技巧”和“仿顺序操作”作为后盾的整合技巧。不说笔者吹牛,如果采用主动式的设计方法驱动 IIC 和 SDRAM 硬件,任何一段代码都是如此合情合理。

    标签: verilogl

    上传时间: 2022-06-13

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  • 分立元件IGBT驱动电路的改进与测试

    摘要:本文在分析1GBT的动态开关特性和过流状态下的电气特性的基础上,通过对常规的IGBT推挽驱动电路进行改进,得到了具有良好过流保护特性的IGBT驱动电路。该电路简单,可靠,易用,配合DSP等控制芯片能达到很好的驱动效果Abstract:Based on the studies on the dynamic switching and over-current characteristics of IGBT,this paper makes some improvments to the original push-pull driving circuit,obtains a new IGBT driving circuit which has a good over-current protection function.The circuit is simple,reliable and easy to use.Combined with controlling chips such as DSP it will do a great job in driving applications.关键词:IBGT:开关特性;驱动;过流保护;Key Words:IGBT;switching characteristics;driving:over-current protection

    标签: 分立元件 igbt 驱动电路

    上传时间: 2022-06-21

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  • Datasheet for ST17H26 蓝牙芯片产品详细信息

    Legal Disclaimer Lenze Semiconductor reserves the right to make changes without further notice to any products herein to improve reliability, function or design. Lenze Semiconductor disclaims any and all liability for any errors, inaccuracies or incompleteness contained herein or in any other disclosure relating to any product.Lenze Semiconductor does not assume any liability arising out of the application or use of any product or circuit described herein; neither does it convey any license under its patent rights, nor the rights of others The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications. Customers using or selling Lenze Semiconductor products not expressly indicated for use in such applications do so entirely at their own risk and agree to fully indemnify Lenze Semiconductor for any damages arising or resulting from such use or sale.

    标签: 蓝牙芯片 ST17H26

    上传时间: 2022-06-25

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  • Proteus仿真LCD12864显示动画—飞翔的鸽子

    程序:LCD12664液晶显示原理unsigned int/W/图形编码,也可以把图形代码存为头文件。该程序经过调试。PROTEUS原理图见截图unsigned char code table1[][64]={/*-调入了一幅图像:D:\Desktop\新建文件夹(2)l.bmp--*//*-宽度x高度=128×64一*材0x00,0×00,0×00,0×00,0×00,0×00,0x80,0x80,0xD0,0XE0,0XE0,0xC0,0xF0,0xF8,OXF C,0xF8,0xF8,0xB8,0x3C,0x78,0XFO,0XFA,0XFC,0XFC,0xCC,Ox1E,0X3C,OxF8,0xF0,0XE0,0x DO,0×00,0x80,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0x00,0x00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0x00,0×00,0×00,0×00,0×00,0×00,0x00,0×00,0×00,0×00,0x00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0x00,0x00,0x00,0×00,0x00,0×00,0×00,0×00,0×00,0×00,0×00,0×00,0x00,0×00,0×00,0x00,0×00,0×00,

    标签: proteus lcd12864 显示动画

    上传时间: 2022-07-04

    上传用户:slq1234567890