Introduction to Xilinx Packaging Electronic packages are interconnectable housings for semiconductor devices. The major functions of the electronic packages are to provide electrical interconnections between the IC and the board and to efficiently remove heat generated by the device. Feature sizes are constantly shrinking, resulting in increased number of transistors being packed into the device. Today's submicron technology is also enabling large-scale functional integration and system-on-a-chip solutions. In order to keep pace with these new advancements in silicon technologies, semiconductor packages have also evolved to provide improved device functionality and performance. Feature size at the device level is driving package feature sizes down to the design rules of the early transistors. To meet these demands, electronic packages must be flexible to address high pin counts, reduced pitch and form factor requirements. At the same time,packages must be reliable and cost effective.
上传时间: 2013-10-22
上传用户:ztj182002
This application note contains a reference design consisting of HDL IP and Xilinx AdvancedConfiguration Environment (ACE) software utilities that give designers great flexibility increating in-system programming (ISP) solutions. In-system programming support allowsdesigners to revise existing designs, package the new bitstream programming files with theprovided software utilities, and update the remote system through the JTAG interface using theEmbedded JTAG ACE Player.
上传时间: 2013-11-14
上传用户:JIMMYCB001
The exacting technological demands created byincreasing bandwidth requirements have given riseto significant advances in FPGA technology thatenable engineers to successfully incorporate highspeedI/O interfaces in their designs. One aspect ofdesign that plays an increasingly important role isthat of the FPGA package. As the interfaces get fasterand wider, choosing the right package has becomeone of the key considerations for the systemdesigner.
上传时间: 2013-10-22
上传用户:1234xhb
The LPC2292/2294 microcontrollers are based on a 16/32-bit ARM7TDMI-S CPU with real-time emulation and embedded trace support, together with 256 kB of embedded high-speed flash memory. A 128-bit wide memory interface and a unique accelerator architecture enable 32-bit code execution at the maximum clock rate. For critical code size applications, the alternative 16-bit Thumb mode reduces code by more than 30 pct with minimal performance penalty. With their 144-pin package, low power consumption, various 32-bit timers, 8-channel 10-bit ADC, 2/4 (LPC2294) advanced CAN channels, PWM channels and up to nine external interrupt pins these microcontrollers are particularly suitable for automotive and industrial control applications as well as medical systems and fault-tolerant maintenance buses. The number of available fast GPIOs ranges from 76 (with external memory) through 112 (single-chip). With a wide range of additional serial communications interfaces, they are also suited for communication gateways and protocol converters as well as many other general-purpose applications. Remark: Throughout the data sheet, the term LPC2292/2294 will apply to devices with and without the /00 or /01 suffix. The suffixes /00 and /01 will be used to differentiate from other devices only when necessary.
上传时间: 2014-12-30
上传用户:aysyzxzm
superpro 3000u 驱动 PIC16C65B@QFP44 [SA245] PIC16C65B: Part number QFP44: Package in QFP44 SA245: Adapter purchase number AM29DL320GT@FBGA48 [SA642+B026] AM29DL320GT: Part number FBGA48: Package in FBGA48 SA642: Adapter purchase number (Top board with socket) B026: Adapter purchase number (Bottom board, exchangable for different parts) 87C196CA@PLCC68(universal adapter) [PEP+S414T] 87C196CA: Part number PLCC68: Package in PLCC68 universal adapter: this adapter is valid for all parts in this package PEP: The PEP (Pin-driver Expansion Pack necessary to work with the adapter S414T) S414T: Adapter purchase number (Universal for all parts in this package) S71PL127J80B@FBGA64(special adapter) [(SA642A-B079A-Y096AF001)] S71PL127J80B: Part number FBGA64: Package in FBGA64 special adapter: this adapter is valid for this
上传时间: 2013-10-23
上传用户:Avoid98
Abstract: Using a wafer-level package (WLP) can reduce the overall size and cost of your solution.However when using a WLP IC, the printed circuit board (PCB) layout can become more complex and, ifnot carefully planned, result in an unreliable design. This article presents some PCB designconsiderations and general recommendations for choosing a 0.4mm- or 0.5mm-pitch WLP for yourapplication.
标签: Considerations Guidelines and Design
上传时间: 2013-11-09
上传用户:ls530720646
Introduction to Xilinx Packaging Electronic packages are interconnectable housings for semiconductor devices. The major functions of the electronic packages are to provide electrical interconnections between the IC and the board and to efficiently remove heat generated by the device. Feature sizes are constantly shrinking, resulting in increased number of transistors being packed into the device. Today's submicron technology is also enabling large-scale functional integration and system-on-a-chip solutions. In order to keep pace with these new advancements in silicon technologies, semiconductor packages have also evolved to provide improved device functionality and performance. Feature size at the device level is driving package feature sizes down to the design rules of the early transistors. To meet these demands, electronic packages must be flexible to address high pin counts, reduced pitch and form factor requirements. At the same time,packages must be reliable and cost effective.
上传时间: 2013-11-21
上传用户:不懂夜的黑
This application note contains a reference design consisting of HDL IP and Xilinx AdvancedConfiguration Environment (ACE) software utilities that give designers great flexibility increating in-system programming (ISP) solutions. In-system programming support allowsdesigners to revise existing designs, package the new bitstream programming files with theprovided software utilities, and update the remote system through the JTAG interface using theEmbedded JTAG ACE Player.
上传时间: 2013-10-22
上传用户:gai928943
The exacting technological demands created byincreasing bandwidth requirements have given riseto significant advances in FPGA technology thatenable engineers to successfully incorporate highspeedI/O interfaces in their designs. One aspect ofdesign that plays an increasingly important role isthat of the FPGA package. As the interfaces get fasterand wider, choosing the right package has becomeone of the key considerations for the systemdesigner.
上传时间: 2013-11-07
上传用户:wanghui2438
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。
上传时间: 2013-11-24
上传用户:ynzfm