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top-down

自顶向下(top-down)的分析算法通过在最左推导中描述出各个步骤来分析记号串输入。将大型的数字电路设计分割成大小不一的小模块来实现特定的功能,最后通过由顶层模块调用子模块来实现整体功能,这就是top-down的设计思想。
  • PCB抄板密技

    第一步,拿到一块PCB,首先在纸上记录好所有元气件的型号,参数,以及位置,尤其是二极管,三极管的方向,IC缺口的方向。最好用数码相机拍两张元气件位置的照片。 第二步,拆掉所有器件,并且将PAD孔里的锡去掉。用酒精将PCB清洗干净,然后放入扫描仪内,启动POHTOSHOP,用彩色方式将丝印面扫入,并打印出来备用。 第三步,用水纱纸将TOP LAYER 和BOTTOM LAYER两层轻微打磨,打磨到铜膜发亮,放入扫描仪,启动PHOTOSHOP,用彩色方式将两层分别扫入。注意,PCB在扫描仪内摆放一定要横平树直,否则扫描的图象就无法使用,扫描仪分辨率请选为600。 需要的朋友请下载哦!

    标签: PCB 抄板

    上传时间: 2013-11-17

    上传用户:zhuimenghuadie

  • PCB各层定义及描述

    TOP/BOTTOM SOLDER(顶层/底层阻焊绿油层):顶层/底层敷设阻焊绿油,以防止铜箔上锡,保持绝缘。在焊盘、过孔及本层非电气走线处阻焊绿油开窗。

    标签: PCB 定义

    上传时间: 2013-10-14

    上传用户:taa123456

  • PCB抄板密技

    第一步,拿到一块PCB,首先在纸上记录好所有元气件的型号,参数,以及位置,尤其是二极管,三机管的方向,IC缺口的方向。最好用数码相机拍两张元气件位置的照片。第二步,拆掉所有器件,并且将PAD孔里的锡去掉。用酒精将PCB清洗干净,然后放入扫描仪内,启动POHTOSHOP,用彩色方式将丝印面扫入,并打印出来备用。第三步,用水纱纸将TOP LAYER 和BOTTOM LAYER两层轻微打磨,打磨到铜膜发亮,放入扫描仪,启动PHOTOSHOP,用彩色方式将两层分别扫入。注意,PCB在扫描仪内摆放一定要横平树直,否则扫描的图象就无法使用。第四步,调整画布的对比度,明暗度,使有铜膜的部分和没有铜膜的部分对比强烈,然后将次图转为黑白色,检查线条是否清晰,如果不清晰,则重复本步骤。如果清晰,将图存为黑白BMP格式文件TOP.BMP和BOT.BMP。第五步,将两个BMP格式的文件分别转为PROTEL格式文件,在PROTEL中调入两层,如过两层的PAD和VIA的位置基本重合,表明前几个步骤做的很好,如果有偏差,则重复第三步。第六,将TOP。BMP转化为TOP。PCB,注意要转化到SILK层,就是黄色的那层,然后你在TOP层描线就是了,并且根据第二步的图纸放置器件。画完后将SILK层删掉。 第七步,将BOT。BMP转化为BOT。PCB,注意要转化到SILK层,就是黄色的那层,然后你在BOT层描线就是了。画完后将SILK层删掉。第八步,在PROTEL中将TOP。PCB和BOT。PCB调入,合为一个图就OK了。第九步,用激光打印机将TOP LAYER, BOTTOM LAYER分别打印到透明胶片上(1:1的比例),把胶片放到那块PCB上,比较一下是否有误,如果没错,你就大功告成了。

    标签: PCB 抄板

    上传时间: 2013-10-15

    上传用户:标点符号

  • pcb layout design(台湾硬件工程师15年经验

    PCB LAYOUT 術語解釋(TERMS)1. COMPONENT SIDE(零件面、正面)︰大多數零件放置之面。2. SOLDER SIDE(焊錫面、反面)。3. SOLDER MASK(止焊膜面)︰通常指Solder Mask Open 之意。4. TOP PAD︰在零件面上所設計之零件腳PAD,不管是否鑽孔、電鍍。5. BOTTOM PAD:在銲錫面上所設計之零件腳PAD,不管是否鑽孔、電鍍。6. POSITIVE LAYER:單、雙層板之各層線路;多層板之上、下兩層線路及內層走線皆屬之。7. NEGATIVE LAYER:通常指多層板之電源層。8. INNER PAD:多層板之POSITIVE LAYER 內層PAD。9. ANTI-PAD:多層板之NEGATIVE LAYER 上所使用之絕緣範圍,不與零件腳相接。10. THERMAL PAD:多層板內NEGATIVE LAYER 上必須零件腳時所使用之PAD,一般稱為散熱孔或導通孔。11. PAD (銲墊):除了SMD PAD 外,其他PAD 之TOP PAD、BOTTOM PAD 及INNER PAD 之形狀大小皆應相同。12. Moat : 不同信號的 Power& GND plane 之間的分隔線13. Grid : 佈線時的走線格點2. Test Point : ATE 測試點供工廠ICT 測試治具使用ICT 測試點 LAYOUT 注意事項:PCB 的每條TRACE 都要有一個作為測試用之TEST PAD(測試點),其原則如下:1. 一般測試點大小均為30-35mil,元件分布較密時,測試點最小可至30mil.測試點與元件PAD 的距離最小為40mil。2. 測試點與測試點間的間距最小為50-75mil,一般使用75mil。密度高時可使用50mil,3. 測試點必須均勻分佈於PCB 上,避免測試時造成板面受力不均。4. 多層板必須透過貫穿孔(VIA)將測試點留於錫爐著錫面上(Solder Side)。5. 測試點必需放至於Bottom Layer6. 輸出test point report(.asc 檔案powerpcb v3.5)供廠商分析可測率7. 測試點設置處:Setup􀃆pads􀃆stacks

    标签: layout design pcb 硬件工程师

    上传时间: 2013-10-22

    上传用户:pei5

  • pci e PCB设计规范

    This document provides practical, common guidelines for incorporating PCI Express interconnect layouts onto Printed Circuit Boards (PCB) ranging from 4-layer desktop baseboard designs to 10- layer or more server baseboard designs. Guidelines and constraints in this document are intended for use on both baseboard and add-in card PCB designs. This includes interconnects between PCI Express devices located on the same baseboard (chip-to-chip routing) and interconnects between a PCI Express device located “down” on the baseboard and a device located “up” on an add-in card attached through a connector. This document is intended to cover all major components of the physical interconnect including design guidelines for the PCB traces, vias and AC coupling capacitors, as well as add-in card edge-finger and connector considerations. The intent of the guidelines and examples is to help ensure that good high-speed signal design practices are used and that the timing/jitter and loss/attenuation budgets can also be met from end-to-end across the PCI Express interconnect. However, while general physical guidelines and suggestions are given, they may not necessarily guarantee adequate performance of the interconnect for all layouts and implementations. Therefore, designers should consider modeling and simulation of the interconnect in order to ensure compliance to all applicable specifications. The document is composed of two main sections. The first section provides an overview of general topology and interconnect guidelines. The second section concentrates on physical layout constraints where bulleted items at the beginning of a topic highlight important constraints, while the narrative that follows offers additional insight.  

    标签: pci PCB 设计规范

    上传时间: 2013-10-15

    上传用户:busterman

  • Using the TPS62150 as Step-Down LED Driver With Dimming

    LED Dimmingcontrol

    标签: Step-Down Dimming Driver Using

    上传时间: 2014-01-26

    上传用户:watch100

  • AX3514-V1 6资料

    1.2MHz 2A Synchronous Step-Down converter

    标签: 3514 AX

    上传时间: 2013-11-01

    上传用户:qingzhuhu

  • 如何保护集成FET的电源开关

    Abstract: Some types of loads require more current during startup than when running. Other loads can be limited to a lower-powercurrent during startup but require a higher operating current. This article describes an application circuit that automatically adjusts apower circuit’s overcurrent protection level up or down after startup is complete.

    标签: FET 保护 集成 电源开关

    上传时间: 2013-10-23

    上传用户:swaylong

  • 低电压FPGA的高性能开关电源解决方案

      The core voltages for FPGAs are moving lower as a resultof advances in the fabrication process. The newest FPGAfamily from Altera, the Stratix® II, now requires a corevoltage of 1.2V and the Stratix, Stratix GX, HardCopy®Stratix and CycloneTM families require a core voltage of1.5V. This article discusses how to power the core and I/Oof low voltage FPGAs using the latest step-down switchmode controllers from Linear Technology Corporation.

    标签: FPGA 低电压 高性能开关 电源解决方案

    上传时间: 2013-10-08

    上传用户:wangfei22

  • 单片同步稳压器驱动外部元件负载

      The LTC®3414 offers a compact and efficient voltage regulatorsolution for point of load conversion in electronicsystems that require low output voltages (down to 0.8V)from a 2.5V to 5V power bus. Internal power MOSFETswitches, with only 67mW on-resistance, allow theLTC3414 to deliver up to 4A of output current with efficiencyas high as 94%. The LTC3414 saves space by operatingwith switching frequencies as high as 4MHz, enabling theuse of tiny inductors and capacitors.

    标签: 同步稳压器 元件 驱动 负载

    上传时间: 2014-01-03

    上传用户:dongbaobao