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iscsi-target

  • Matlab Simulink的TMS320F2812代碼開發

    TMS320F2812 DSP 是運動控制系統很好的硬件支撐平臺,但傳統的DSP 代碼開發周期較長,效率不高。Matlab 公司的Embedded Target for TI C2000 DSP

    標簽: Simulink Matlab F2812 2812

    上傳時間: 2013-04-24

    上傳用戶:13188549192

  • MATLAB7.0在TI_C2000_DSP系統設計中的應用

    · 摘要:  傳統的DSP軟件開發都是先設計DSP上的算法并仿真然后將其寫成特定DSP的代碼(c或是匯編)在目標板上實現.介紹了一種新的高效、集成的DSP軟件設計方法.利用MATLAB7.0新提供的Embeded Target for TI C2000 DSP、simulink、Real-Time Workshop和TI的CCS IDE相結合,在MATLAB環境下生成DSP的C代

    標簽: MATLAB 2000 TI_C 7.0

    上傳時間: 2013-07-26

    上傳用戶:hebmuljb

  • 電源完整性設計詳解

    1 為什么要重視電源噪聲問題? 2 電源系統噪聲余量分析 3 電源噪聲是如何產生的? 4 電容退耦的兩種解釋 4.1 從儲能的角度來說明電容退耦原理。 4.2 從阻抗的角度來理解退耦原理。 5 實際電容的特性 6 電容的安裝諧振頻率 7 局部去耦設計方法 8 電源系統的角度進行去耦設計 8.1 著名的Target Impedance(目標阻抗) 8.2 需要多大的電容量 8.3 相同容值電容的并聯 8.4 不同容值電容的并聯與反諧振(Anti-Resonance) 8.5 ESR 對反諧振(Anti-Resonance)的影響 8.6 怎樣合理選擇電容組合 8.7 電容的去耦半徑 8.8 電容的安裝方法 9 結束語

    標簽: 電源完整性

    上傳時間: 2013-11-06

    上傳用戶:mahone

  • Target Board Code(串口)

    STM32的ADC+DMA+USATT功能

    標簽: Target Board Code 串口

    上傳時間: 2013-11-07

    上傳用戶:q986086481

  • FET430PIF自制資料

    The MSP-FET430PIF is a Parallel Port interface (does not include target board) that is used to program and debug MSP430 FET tools and test boards through the JTAG interface. This interface is included in our FET tools, but sold without the development board. This interface uses a Parallel PC Port to communicate to the Debugger Software (IAR Kickstart software included) running on the PC. The interface uses the standard 14 pin header to communicate to the MSP430 device using the standard JTAG protocol. The flash memory can be erased and programmed in seconds with only a few keystrokes, and since the MSP430 flash is extremely low power, no external power supply is required. The tool has an integrated software environment and connects directly to the PC which greatly simplifies the set-up and use of the tool. The flash development tool supports development with all MSP430 flash parts. Features MSP430 debugging interface to connect a MSP430-Flash-device to a Parallel port on a PC Supports JTAG debug protocol (NO support for Spy-Bi-Wire (2-wire JTAG) debug protocol, Spy-Bi-Wire (2-wire JTAG) is supported by MSP-FET430UIF) Parallel Port cable and a 14-conductor target cable Full documentation on CD ROM Integrated IAR Kickstart user interface which includes: Assembler Linker Limulator Source-level debugger Limited C-compiler Technical specifications: Backwardly compatable with existing FET tool boards.

    標簽: FET 430 PIF

    上傳時間: 2013-10-26

    上傳用戶:fengweihao158@163.com

  • USB Demonstration for DK3200 w

    The μPSD32xx family, from ST, consists of Flash programmable system devices with a 8032 MicrocontrollerCore. Of these, the μPSD3234A and μPSD3254A are notable for having a complete implementationof the USB hardware directly on the chip, complying with the Universal Serial Bus Specification, Revision1.1.This application note describes a demonstration program that has been written for the DK3200 hardwaredemonstration kit (incorporating a μPSD3234A device). It gives the user an idea of how simple it is to workwith the device, using the HID class as a ready-made device driver for the USB connection.IN-APPLICATION-PROGRAMMING (IAP) AND IN-SYSTEM-PROGRAMMING (ISP)Since the μPSD contains two independent Flash memory arrays, the Micro Controller Unit (MCU) can executecode from one memory while erasing and programming the other. Product firmware updates in thefield can be reliably performed over any communication channel (such as CAN, Ethernet, UART, J1850)using this unique architecture. For In-Application-Programming (IAP), all code is updated through theMCU. The main advantage for the user is that the firmware can be updated remotely. The target applicationruns and takes care on its own program code and data memory.IAP is not the only method to program the firmware in μPSD devices. They can also be programmed usingIn-System-Programming (ISP). A IEEE1149.1-compliant JTAG interface is included on the μPSD. Withthis, the entire device can be rapidly programmed while soldered to the circuit board (Main Flash memory,Secondary Boot Flash memory, the PLD, and all configuration areas). This requires no MCU participation.The MCU is completely bypassed. So, the μPSD can be programmed or reprogrammed any time, anywhere, even when completely uncommitted.Both methods take place with the device in its normal hardware environment, soldered to a printed circuitboard. The IAP method cannot be used without previous use of ISP, because IAP utilizes a small amountof resident code to receive the service commands, and to perform the desired operations.

    標簽: Demonstration 3200 USB for

    上傳時間: 2014-02-27

    上傳用戶:zhangzhenyu

  • Emu51Form軟仿真計時器.

    Emu51Form是一個軟仿真計時器,copy到keil\c51\bin下 project->option for target "target 1"->debug->dialog.dll->parameter改為-p51R -dEmu51Form即可在keil 7.0運行成功,因為使用的一些函數是在最新的AGSI文檔中獲得,所以大家試試在6.23下能不能用。

    標簽: Form Emu 51

    上傳時間: 2013-10-28

    上傳用戶:15736969615

  • 基于DSP的ATV-ATT中控系統設計

    設計一種應用于某全地形ATV車載武器裝置中的中控系統,該系統設計是以TMS320F2812型DSP為核心,采用模塊化設計思想,對其硬件部分進行系統設計,能夠完成對武器裝置高低、回轉方向的運動控制,實現靜止或行進狀態中對目標物的測距,自動瞄準以及按既定發射模式發射彈丸和各項安全性能檢測等功能。通過編制相應的軟件,對其進行系統調試,驗證了該設計運行穩定。 Abstract:  A central control system applied to an ATV vehicle weapons is designed. The system design is based on TMS320F2812 DSP as the core, uses modular design for its hardware parts. The central control system can complete the motion control of the level of weapons and equipment, rotation direction, to achieve a state of static or moving objects on the target ranging, auto-targeting and according to the established target and the projectile and the launch of the security performance testing and other functions. Through the development of appropriate software and to carry out system testing to verify the stability of this design and operation.

    標簽: ATV-ATT DSP 中控系統

    上傳時間: 2013-11-02

    上傳用戶:jshailingzzh

  • UG157 LogiCORE IP Initiator/Ta

    UG157 - LogiCORE™ IP Initiator/Target v3.1 for PCI™ 入門指南

    標簽: Initiator LogiCORE 157 UG

    上傳時間: 2013-11-06

    上傳用戶:ewtrwrtwe

  • 用MDK生成bin格式的可執行文件

    用MDK 生成bin 文件1用MDK 生成bin 文件Embest 徐良平在RV MDK 中,默認情況下生成*.hex 的可執行文件,但是當我們要生成*.bin 的可執行文件時怎么辦呢?答案是可以使用RVCT 的fromelf.exe 工具進行轉換。也就是說首先將源文件編譯鏈接成*.axf 的文件,然后使用fromelf.exe 工具將*.axf 格式的文件轉換成*.bin格式的文件。下面將具體說明這個操作步驟:1. 打開Axf_To_Bin 文件中的Axf_To_Bin.uv2 工程文件;2. 打開Options for Target ‘Axf_To_Bin’對話框,選擇User 標簽頁;3. 構選Run User Programs After Build/Rebuild 框中的Run #1 多選框,在后邊的文本框中輸入C:\Keil\ARM\BIN31\fromelf.exe --bin -o ./output/Axf_To_Bin.bin ./output/Axf_To_Bin.axf 命令行;4. 重新編譯文件,在./output/文件夾下生成了Axf_To_Bin.bin 文件。在上面的步驟中,有幾點值得注意的是:1. C:\Keil\ARM\BIN31\表示RV MDK 的安裝目錄;2. fromelf.exe 命令的具體語法格式如下:命令的格式為:fromelf [options] input_file命令選項如下:--help 顯示幫助信息--vsn 顯示版本信息--output file 輸出文件(默認的輸出為文本格式)--nodebug 在生成的映象中不包含調試信息--nolinkview 在生成的映象中不包含段的信息二進制輸出格式:--bin 生成Plain Binary 格式的文件--m32 生成Motorola 32 位十六進制格式的文件--i32 生成Intel 32 位十六進制格式的文件--vhx 面向字節的位十六進制格式的文件t--base addr 設置m32,i32 格式文件的基地址--text 顯示文本信息文本信息的標志-v 打印詳細信息-a 打印數據地址(針對帶調試信息的映象)-d 打印數據段的內容-e 打印表達式表print exception tables-f 打印消除虛函數的信息-g 打印調試表print debug tables-r 打印重定位信息-s 打印字符表-t 打印字符串表-y 打印動態段的內容-z 打印代碼和數據大小的信息

    標簽: MDK bin 可執行文件

    上傳時間: 2013-12-17

    上傳用戶:AbuGe

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