Silicon Motion, Inc. has made best efforts to ensure that the inFormation contained in this document is accurate andreliable. However, the inFormation is subject to change without notice. No responsibility is assumed by SiliconMotion, Inc. for the use of this inFormation, nor for infringements of patents or other rights of third parties.Copyright NoticeCopyright 2002, Silicon Motion, Inc. All rights reserved. No part of this publication may be reproduced, photocopied,or transmitted in any Form, without the prior written consent of Silicon Motion, Inc. Silicon Motion, Inc. reserves theright to make changes to the product specification without reservation and without notice to our users
Frequently, voltage reference stability and noise defi nemeasurement limits in instrumentation systems. In particular,reference noise often sets stable resolution limits.Reference voltages have decreased with the continuingdrop in system power supply voltages, making referencenoise increasingly important. The compressed signalprocessing range mandates a commensurate reductionin reference noise to maintain resolution. Noise ultimatelytranslates into quantization uncertainty in A to D converters,introducing jitter in applications such as scales, inertialnavigation systems, infrared thermography, DVMs andmedical imaging apparatus. A new low voltage reference,the LTC6655, has only 0.3ppm (775nV) noise at 2.5VOUT.Figure 1 lists salient specifi cations in tabular Form. Accuracyand temperature coeffi cient are characteristic ofhigh grade, low voltage references. 0.1Hz to 10Hz noise,particularly noteworthy, is unequalled by any low voltageelectronic reference.
Abstract: The reality of modern, small Form-factor ceramic capacitors is a good reminder to always readthe data sheet. This tutorial explains how ceramic capacitor type designations, such as X7R and Y5V,imply nothing about voltage coefficients. Engineers must check the data to know, really know, how aspecific capacitor will perForm under voltage.
The enclosed VB project includes a VB class that implements the Rijndael AES block encryption algorithm. The Form in the project runs some test data through the class.
4.asm…… 響鈴程序,輸入一個數字字符N,響鈴N次。(完成)ysk3.asm ……顯示一個星型倒三角。m1.asm ………編程將鍵盤輸入的8位無符號二進制數轉化為十六進制數和十進制數,并輸出結果Form.asm ……采用子程序編程按以下三種格式(██,◣,◥)打印九九乘法表:(完成)char.asm ……小寫字母a b c d ……x y z的ASCII碼分別為61H 62H 63H 64H……78H 79H 7AH, 而大寫字母A B C D ….X Y Z的ASCII碼分別為41H 42H 43H 44H …58H 59H 5AH, 使用串處理指令編程從鍵盤輸入16個字符(大小寫字母及其它字母均有), 存入以BUF1開始的一片存儲區中,并將其傳送到以BUF2開始的一片存儲區中, 在傳送是將其中的小寫字母均改為大寫字母,并將第一個小寫字母在串中的位置 (距串頭BUF1的相對位移量)以十六進制形式輸出。(完成)
pdnMesh is an automatic mesh generator and solver for Finite Element problems. It will also do post-processing to generate contour plots and Postscript printouts. GUI support using GTK or MFC (Win32) is available. The problem definition can be done in any Form and given to pdnMesh as an input data file. Drawing Exchange Format (DXF) files can be directly imported to pdnmesh. The quality and the coarseness of the mesh can be controlled by giving input parameters.
Rainbow is a C program that perForms document classification usingone of several different methods, including naive Bayes, TFIDF/Rocchio,K-nearest neighbor, Maximum Entropy, Support Vector Machines, Fuhr sProbabilitistic Indexing, and a simple-minded Form a shrinkage withnaive Bayes.
zlib 1.2.2 is a general purpose data compression library. All the code is thread safe. The data Format used by the zlib library is described by RFCs (Request for Comments) 1950 to 1952 in the files http://www.ietf.org/rfc/rfc1950.txt (zlib Format), rfc1951.txt (deflate Format) and rfc1952.txt (gzip Format). These documents are also available in other Formats from ftp://ftp.uu.net/graphics/png/documents/zlib/zdoc-index.html