PCB LAYOUT 基本規範項次 項目 備註1 一般PCB 過板方向定義: PCB 在SMT 生產方向為短邊過迴焊爐(Reflow), PCB 長邊為SMT 輸送帶夾持邊. PCB 在DIP 生產方向為I/O Port 朝前過波焊爐(Wave Solder), PCB 與I/O 垂直的兩邊為DIP 輸送帶夾持邊.1.1 金手指過板方向定義: SMT: 金手指邊與SMT 輸送帶夾持邊垂直. DIP: 金手指邊與DIP 輸送帶夾持邊一致.2 SMD 零件文字框外緣距SMT 輸送帶夾持邊L1 需≧150 mil. SMD 及DIP 零件文字框外緣距板邊L2 需≧100 mil.3 PCB I/O port 板邊的螺絲孔(精靈孔)PAD 至PCB 板邊, 不得有SMD 或DIP 零件(如右圖黃色區).PAD
上傳時間: 2014-12-24
上傳用戶:jokey075
華為pcb布線規范
上傳時間: 2013-11-20
上傳用戶:han_zh
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.
上傳時間: 2013-10-15
上傳用戶:busterman
隨著現代電子科技的發展, 大規模集成電路迅速普及,芯片逐漸向高速化和集成化方向發展, 其體積越來越小,頻率越來越高,電磁輻射隨其頻率的升高成平方倍增長,使得各種電子設備系統內外的電磁環境愈加復雜,對PCB 設計中的電磁兼容技術要求更高。PCB 電磁兼容設計是否合理直接影響設備的技術指標,影響整個設備的抗干擾性能,直接關系到整個系統的可靠性和穩定性。
上傳時間: 2013-11-09
上傳用戶:540750247
pcb檢查標準,即 pcb check list . 步驟非常之詳細,按著步驟一步一步的檢查就可以達到標準的。
上傳時間: 2013-11-20
上傳用戶:my_cc
PCB布線對PCB的電磁兼容性影響很大,為了使PCB上的電路正常工作,應根據本文所述的約束條件來優化布線以及元器件/接頭和某些IC所用去耦電路的布局PCB材料的選擇通過合理選擇PCB的材料和印刷線路的布線路徑,可以做出對其它線路耦合低的傳輸線。當傳輸線導體間的距離d小于同其它相鄰導體間的距離時,就能做到更低的耦合,或者更小的串擾(見《電子工程專輯》2000 年第1 期"應用指南")。設計之前,可根據下列條件選擇最經濟的PCB形式:對EMC的要求·印制板的密集程度·組裝與生產的能力·CAD 系統能力·設計成本·PCB的數量·電磁屏蔽的成本當采用非屏蔽外殼產品結構時,尤其要注意產品的整體成本/元器件封裝/管腳樣式、PCB形式、電磁場屏蔽、構造和組裝),在許多情況下,選好合適的PCB形式可以不必在塑膠外殼里加入金屬屏蔽盒。
上傳時間: 2013-11-01
上傳用戶:dddddd
PCB專業術語詞典
上傳時間: 2014-05-15
上傳用戶:頂得柱
pcb Layout 設計從基礎到實踐多媒體教程
上傳時間: 2013-11-19
上傳用戶:qw12
PCB板各個層的含義.pdf
標簽: PCB
上傳時間: 2013-10-24
上傳用戶:yangzhiwei
PCB電子書刊12期.pdf
上傳時間: 2013-11-08
上傳用戶:小寶愛考拉