方波逆變器在輸出失真度最小時波形最接近正弦波。采用功率譜分析的方法, 得出了單相方波逆變器諧波失真度最小時的脈寬數值。對于固定脈寬系統, 導通角取21331 rad 時最佳; 對于變脈寬系統, 導通角變化區間兩端失真度相等時, 系統的平均失真最小。該結論在光伏電站控制系統電源的設計中得到了應用與驗證。
上傳時間: 2013-11-29
上傳用戶:Aeray
顯卡所處理的信息最終都要輸出到顯示器上,顯卡的輸出接口就是電腦不顯示器之間的橋梁,它負責向顯示器輸出相應的圖像信號。CRT顯示器因為設計制造上的原因,只能接受模擬信號輸入,這就需要顯卡能輸入模擬信號。VGA接口就是顯卡上輸出模擬信號的接口,VGA(Video Graphics Array)接口,也叫D-Sub接口。雖然液晶顯示器可以直接接收數字信號,但為了兼容性,大多數液晶顯示器也配備了VGA接口。 VGA是IBM在1987年隨PS/2機一起推出的一種視頻傳輸標準,具有分辨率高、顯示速率快、顏色豐富等優點,在彩色顯示器領域得到了廣泛的應用。目前VGA技術的應用還主要基亍VGA顯示卡的計算機、筆記本等設備。 根據分辨率丌同,VGA分為VGA(640x480)、SVGA(800x600)、XGA(1024x768)、SXGA(1280x1024)等。
上傳時間: 2013-10-22
上傳用戶:macarco
本內容詳細介紹了傳統MCU開發工具 云計算時代的新需要 基于云計算的MCU開發 COOCOX TOOLS
上傳時間: 2013-12-25
上傳用戶:ls530720646
The MAX9257/MAX9258 programmable serializer/deserializer (SerDes) devices transfer both video data and control signals over the same twisted-pair cable. However, control data can only be transmitted during the vertical blank time, which is indicated by the control-channel-enabled output (CCEN) signal. The electronic control unit (ECU) firmware designer needs to know how quickly to respond to the CCEN signal before it times out and how to calculate this duration. This application note describes how to calculate the duration of the CCEN for the MAX9257/MAX9258 SerDes chipset. The calculation is based on STO timeout, clock frequency, and UART bit timing. The CCEN duration is programmable and can be closed if not in use.
上傳時間: 2014-01-24
上傳用戶:xingisme
為解決傳統可視倒車雷達視頻字符疊加器結構復雜,可靠性差,成本高昂等問題,在可視倒車雷達設計中采用視頻字符發生器芯片MAX7456。該芯片集成了所有用于產生用戶定義OSD,并將其插入視頻信號中所需的全部功能,僅需少量的外圍阻容元件即可正常工作。給出了以MAX7456為核心的可視倒車雷達的軟、硬件實現方案及設計實例。該方案具有電路結構簡單、價格低廉、符合人體視覺習慣的特點。經實際裝車測試,按該方案設計的可視倒車雷達視場清晰、提示字符醒目、工作可靠,可有效降低駕駛員倒車時的工作強度、減少倒車事故的發生。 Abstract: A new video and text generation chip,MAX7456,was used in the design of video parking sensor in order to simplify system structure,improve reliability and reduce cost. This chip included all the necessary functions to generate user-defined OSDs and to add them into the video signals. It could be put into work with addition of just a small number of resistances and capacitors. This paper provided software and hardware implementation solutions and design example based on the chip. The system had the characteristics of simplicity in circuit structure,lower cost,and comfort for the nature of human vision. Loading road test demonstrates high video and text display quality and reliable performance,which makes the driver easy to see backward and reduces chance of accidents.
上傳時間: 2013-12-10
上傳用戶:qiaoyue
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.
上傳時間: 2013-10-26
上傳用戶:fengweihao158@163.com
The MSP-FET430U14 is a powerful flash emulation tool to quickly begin application development on the MSP430 MCU. It includes USB debugging interface used to program and debug the MSP430 in-system through the JTAG interface or the pin saving Spy Bi-Wire (2-wire JTAG) protocol. The flash memory can be erased and programmed in seconds with only a few keystrokes, and since the MSP430 flash is ultra-low power, no external power supply is required. The debugging tool interfaces the MSP430 to the included integrated software environment and includes code to start your design immediately. The MSP-FET430UIF development tools supports development with all MSP430 flash devices
上傳時間: 2013-10-28
上傳用戶:13691535575
CCAVR軟件有ISP功能,能過調用STK500完成的,只要設置好參數,在ICCAVR中就可以給芯片編程了,還可以讓程序一編譯完就自動下載到芯片中,相當方便。在Tools->environment options->ISP里設定STK500.exe的路徑?!?用于調用STK500程序。在Tools->In system programming 里Programmer Interface中選中STK500?!?選擇STK500下載方式。在Tools->In system programming 里把Auto Program After Compile 的小勾選上?!?編譯后自動編程。在Tools->In system programming 中還有一些設置項,大家可以根據需要進行相關設置。下面的圖片是操作過程。
上傳時間: 2013-11-17
上傳用戶:joseph
ICCAVR簡介ICCAVR 是一種使用ANSI 標準C 語言來開發微控制器(MCU)程序的一個工具,它是一個綜合了編輯器和工程管理器的集成工作環境(IDE)。源文件全部被組織到工程之中,文件的編輯和工程(project)的構筑也在IDE 的環境中完成。編譯錯誤在狀態窗口中顯示,用鼠標單擊編譯錯誤時,光標會自動跳轉到出錯行。這個工程管理器還能直接產生INTEL HEX格式的燒寫文件和可以在AVR Studio 中調試的COFF 格式的調試文件。這里特別要提一下ICCAVR 中的應用構筑向導,可以在Tools 欄中選擇“ApplicationBiulder”或者直接點擊快捷工具欄中的“Application Biulder”圖標,就可以打開應用構筑向導對話框,可以根據需要設定芯片種類,各個端口初始值,是否使用定時器,中斷,UART等,選好以后單擊“OK”就可以得到所需的硬件初始化程序段,非??煽慷曳奖恪D1給出了初始化UART 的一個例子:下面介紹一下創建并編譯一個工程文件的簡要步驟:1.新建一個源文件從file 菜單中選擇new,創建一個新文件,在改文件中輸入源程序并進行編輯和修改,然后存盤,在存盤時必須指定文件類型,如命名為:try.c 。寫一個新文件的步驟:首先用Biulder 初始化需要用到的硬件資源,生成初始化程序,然后再寫需要的代碼實現所要的功能。2.新建一個project從projrct 菜單中選擇new 命令,IDE 會彈出一個對話框,在對話框中用戶可以指定工程存放的文件夾和工程的名稱。在建立一個新工程之后,在工程管理器的窗口會出現三個子目錄,Files, Headers, Documents,這時就可以將要編譯的文件添加到project 中了。3.把文件添加到工程中可以在project-files 里單擊右鍵,選擇需要添加的文件;也可以在編輯窗口中單擊右鍵選擇彈出窗口的“Add To Project”命令。4.編譯源文件在編譯之前特別要注意在Project Options 中選擇與硬件相應的芯片。如本次實驗就選擇ATMEGA8515,如圖2 所示。在project 中選擇make project,也可以直接單擊快捷鍵F9,這時要是有錯則會彈出出錯信息,修改調試正確以后單擊快捷鍵ISP 就可以燒寫到硬件中去了。
標簽: ICCAVR
上傳時間: 2013-10-25
上傳用戶:569342831
MPLAB C30用戶指南(英文) HIGHLIGHTSThe information covered in this chapter is as follows:• About this Guide• Recommended Reading• Troubleshooting• The Microchip Web Site• Development Systems Customer Notification Service• Customer Support Document LayoutThe document layout is as follows:• Chapter 1: Compiler Overview – describes MPLAB C30, development tools andfeature set.• Chapter 2: Differences between MPLAB C30 and ANSI C – describes thedifferences between the C language supported by MPLAB C30 syntax and thestandard ANSI-89 C.• Chapter 3: Using MPLAB C30 – describes how to use the MPLAB C30 compilerfrom the command line.• Chapter 4: MPLAB C30 Runtime Environment – describes the MPLAB C30runtime model, including information on sections, initialization, memory models, thesoftware stack and much more.• Chapter 5: Data Types – describes MPLAB C30 integer, floating point and pointerdata types.• Chapter 6: Device Support Files – describes the MPLAB C30 header and registerdefinition files, as well as how to use with SFR’s.• Chapter 7: Interrupts – describes how to use interrupts.• Chapter 8: Mixing Assembly Language and C Modules – provides guidelines tousing MPLAB C30 with MPLAB ASM30 assembly language modules.
上傳時間: 2013-10-21
上傳用戶:13925096126