a MATLAB program which reads files defining a piecewise Constant triangulation of data, and displays a corresponding 3D surface.
標簽: triangulation piecewise defining Constant
上傳時間: 2014-11-14
上傳用戶:黃華強
盲自適應算法--遞推最小二乘恒模算法Recursive Least Squares Constant Modulus Algorithm for Blind Adaptive Array
標簽: Recursive Algorithm Constant Adaptive
上傳時間: 2014-06-30
上傳用戶:helmos
how to add arrays * Use of const (Constant) values. * Creation of vectors. * Passing vectors as function arguments. * Reading from files of unknown size (monitoring istream status). * Repetitive structures (while and for loops). * The increment operators (++). * Selection structures (if-else statements). * Use of the .size, .empty, .begin, .insert, .erase, .resize, .clear and .swap vector class member functions.
標簽: Creation Constant Passing vectors
上傳時間: 2017-04-25
上傳用戶:1079836864
Tis is the code for Constant modulus algorithm for blind equalization
標簽: equalization algorithm for Constant
上傳時間: 2014-02-12
上傳用戶:225588
The TP4054 is a complete Constant-current/Constant-voltage linear charger for single celllithium
上傳時間: 2013-07-27
上傳用戶:bruce
The A706 series is a high voltage Boost driver with 6 channels adjustable Constant current regula
上傳時間: 2013-06-09
上傳用戶:青春給了作業95
Differential Nonlinearity: Ideally, any two adjacent digitalcodes correspond to output analog voltages that are exactlyone LSB apart. Differential non-linearity is a measure of theworst case deviation from the ideal 1 LSB step. For example,a DAC with a 1.5 LSB output change for a 1 LSB digital codechange exhibits 1⁄2 LSB differential non-linearity. Differentialnon-linearity may be expressed in fractional bits or as a percentageof full scale. A differential non-linearity greater than1 LSB will lead to a non-monotonic transfer function in aDAC.Gain Error (Full Scale Error): The difference between theoutput voltage (or current) with full scale input code and theideal voltage (or current) that should exist with a full scale inputcode.Gain Temperature Coefficient (Full Scale TemperatureCoefficient): Change in gain error divided by change in temperature.Usually expressed in parts per million per degreeCelsius (ppm/°C).Integral Nonlinearity (Linearity Error): Worst case deviationfrom the line between the endpoints (zero and full scale).Can be expressed as a percentage of full scale or in fractionof an LSB.LSB (Lease-Significant Bit): In a binary coded system thisis the bit that carries the smallest value or weight. Its value isthe full scale voltage (or current) divided by 2n, where n is theresolution of the converter.Monotonicity: A monotonic function has a slope whose signdoes not change. A monotonic DAC has an output thatchanges in the same direction (or remains Constant) for eachincrease in the input code. the converse is true for decreasing codes.
標簽: Converters Defini DAC
上傳時間: 2013-10-30
上傳用戶:stvnash
Calculation of the Differential Impedance of Tracks on FR4 substrates There is a discrepancy between calculated and measured values of impedance for differential transmission lineson FR4. This is especially noticeable in the case of surface microstrip configurations. The anomaly is shown tobe due to the nature of the substrate material. This needs to be considered as a layered structure of epoxy resinand glass fibre. Calculations, using Boundary Element field methods, show that the distribution of the electricfield within this layered structure determines the apparent dielectric Constant and therefore affects theimpedance. Thus FR4 cannot be considered to be uniform dielectric when calculating differential impedance.
上傳時間: 2014-12-24
上傳用戶:DE2542
磁芯電感器的諧波失真分析 摘 要:簡述了改進鐵氧體軟磁材料比損耗系數和磁滯常數ηB,從而降低總諧波失真THD的歷史過程,分析了諸多因數對諧波測量的影響,提出了磁心性能的調控方向。 關鍵詞:比損耗系數, 磁滯常數ηB ,直流偏置特性DC-Bias,總諧波失真THD Analysis on THD of the fer rite co res u se d i n i nductancShi Yan Nanjing Finemag Technology Co. Ltd., Nanjing 210033 Abstract: Histrory of decreasing THD by improving the ratio loss coefficient and hysteresis Constant of soft magnetic ferrite is briefly narrated. The effect of many factors which affect the harmonic wave testing is analysed. The way of improving the performance of ferrite cores is put forward. Key words: ratio loss coefficient,hysteresis Constant,DC-Bias,THD 近年來,變壓器生產廠家和軟磁鐵氧體生產廠家,在電感器和變壓器產品的總諧波失真指標控制上,進行了深入的探討和廣泛的合作,逐步弄清了一些似是而非的問題。從工藝技術上采取了不少有效措施,促進了質量問題的迅速解決。本文將就此熱門話題作一些粗淺探討。 一、 歷史回顧 總諧波失真(Total harmonic distortion) ,簡稱THD,并不是什么新的概念,早在幾十年前的載波通信技術中就已有嚴格要求<1>。1978年郵電部公布的標準YD/Z17-78“載波用鐵氧體罐形磁心”中,規定了高μQ材料制作的無中心柱配對罐形磁心詳細的測試電路和方法。如圖一電路所示,利用LC組成的150KHz低通濾波器在高電平輸入的情況下測量磁心產生的非線性失真。這種相對比較的實用方法,專用于無中心柱配對罐形磁心的諧波衰耗測試。 這種磁心主要用于載波電報、電話設備的遙測振蕩器和線路放大器系統,其非線性失真有很嚴格的要求。 圖中 ZD —— QF867 型阻容式載頻振蕩器,輸出阻抗 150Ω, Ld47 —— 47KHz 低通濾波器,阻抗 150Ω,阻帶衰耗大于61dB, Lg88 ——并聯高低通濾波器,阻抗 150Ω,三次諧波衰耗大于61dB Ld88 ——并聯高低通濾波器,阻抗 150Ω,三次諧波衰耗大于61dB FD —— 30~50KHz 放大器, 阻抗 150Ω, 增益不小于 43 dB,三次諧波衰耗b3(0)≥91 dB, DP —— Qp373 選頻電平表,輸入高阻抗, L ——被測無心罐形磁心及線圈, C ——聚苯乙烯薄膜電容器CMO-100V-707APF±0.5%,二只。 測量時,所配用線圈應用絲包銅電磁線SQJ9×0.12(JB661-75)在直徑為16.1mm的線架上繞制 120 匝, (線架為一格) , 其空心電感值為 318μH(誤差1%) 被測磁心配對安裝好后,先調節振蕩器頻率為 36.6~40KHz, 使輸出電平值為+17.4 dB, 即選頻表在 22′端子測得的主波電平 (P2)為+17.4 dB,然后在33′端子處測得輸出的三次諧波電平(P3), 則三次諧波衰耗值為:b3(+2)= P2+S+ P3 式中:S 為放大器增益dB 從以往的資料引證, 就可以發現諧波失真的測量是一項很精細的工作,其中測量系統的高、低通濾波器,信號源和放大器本身的三次諧波衰耗控制很嚴,阻抗必須匹配,薄膜電容器的非線性也有相應要求。濾波器的電感全由不帶任何磁介質的大空心線圈繞成,以保證本身的“潔凈” ,不至于造成對磁心分選的誤判。 為了滿足多路通信整機的小型化和穩定性要求, 必須生產低損耗高穩定磁心。上世紀 70 年代初,1409 所和四機部、郵電部各廠,從工藝上改變了推板空氣窯燒結,出窯后經真空罐冷卻的落后方式,改用真空爐,并控制燒結、冷卻氣氛。技術上采用共沉淀法攻關試制出了μQ乘積 60 萬和 100 萬的低損耗高穩定材料,在此基礎上,還實現了高μ7000~10000材料的突破,從而大大縮短了與國外企業的技術差異。當時正處于通信技術由FDM(頻率劃分調制)向PCM(脈沖編碼調制) 轉換時期, 日本人明石雅夫發表了μQ乘積125 萬為 0.8×10 ,100KHz)的超優鐵氧體材料<3>,其磁滯系數降為優鐵
上傳時間: 2014-12-24
上傳用戶:7891
兩節鋰電充電IC-ASC8512 ASC8512 為開關型兩節鋰聚合物電池充電管理芯片,非常適合于便攜式設備的充電管理應用。ASC8512 集內置功率MOSFET、高精度電壓和電流調節器、預充、充電狀態指示和充電截止等功能于一體,采用TSSOP-14、SSOP-14兩種封裝形式。ASC8512對電池充電分為三個階段:預充(Pre-charge)、恒流(CC/Constant Current)、恒壓(CV/Constant Voltage)過程,恒流充電電流通過外部電阻決定,最大充電電流為2A.ASC8512 集成電流限制、短路保護,確保充電芯片安全工作。ASC8512 集成NTC 熱敏電阻接口,可以采集、處理電池的溫度信息,保證充電電池的安全工作溫度。 兩節鋰電池充電IC ASC8512特點: 1.充2節鋰離子和鋰聚合物電池 2.開關頻率達400K 3.充電電流最大可做2A 4.輸入電壓9V到18V 5.電池狀態檢測 6.恒壓充電電壓值可通過外接電阻微調 7.千分之五的充電電壓控制精度 5.防反向保護電路可防止電池電流倒灌 6.NTC 熱敏接口監測電池溫度 7.LED充電狀態指示 8.工作環境溫度范圍:-20℃~70℃ 9.TSSOP-14 應用領域:應用 ●手持設備,包括醫療手持設備 ●Portable-DVD,PDA,移動蜂窩電話及智能手機 ●上網本、平板電腦、MID ●自充電電池組
上傳時間: 2013-11-06
上傳用戶:chfanjiang