產品型號:VK2C21A/B/C/D 產品品牌:VINKA/永嘉微/永嘉微電 封裝形式:SOP28/24/20/16 裸片:DICE(邦定COB)/COG(邦定玻璃用) 產品年份:新年份 聯 系 人:許碩 原廠直銷,工程服務,技術支持,價格最具優勢!QT446 VK2C21A/B/C/D概述: VK2C21是一個點陣式存儲映射的LCD驅動器,可支持最大80點(20SEGx4COM)或者最大128點(16SEGx8COM)的LCD屏。單片機可通過I2C接口配置顯示參數和讀寫顯示數據,也可通過指令進入省電模式。其高抗干擾,低功耗的特性適用于水電氣表以及工控儀表類產品。 特點: ★ 工作電壓 2.4-5.5V ★ 內置32 kHz RC振蕩器 ★ 偏置電壓(BIAS)可配置為1/3、1/4 ★ COM周期(DUTY)可配置為1/4、1/8 ★ 內置顯示RAM為20x4位、16x8位 ★ 幀頻可配置為80Hz、160Hz ★ 省電模式(通過關顯示和關振蕩器進入)
標簽: VK2C 21 LCD 應用于 抗干擾 環境 液晶驅動
上傳時間: 2022-06-07
上傳用戶:2937735731
j1939 附錄a附錄b
標簽: j1939
上傳時間: 2022-06-09
上傳用戶:
產品型號:VK2C21A/B/C/D 產品品牌:VINKA/永嘉微/永嘉微電 封裝形式:SOP28/24/20/16 裸片:DICE(邦定COB)/COG(邦定玻璃用) 產品年份:新年份 聯 系 人:許碩 Q Q:191 888 5898 聯系手機:18898582398(信) 原廠直銷,工程服務,技術支持,價格最具優勢!QT459 VK2C21A/B/C/D概述: VK2C21是一個點陣式存儲映射的LCD驅動器,可支持最大80點(20SEGx4COM)或者最大128點(16SEGx8COM)的LCD屏。單片機可通過I2C接口配置顯示參數和讀寫顯示數據,也可通過指令進入省電模式。其高抗干擾,低功耗的特性適用于水電氣表以及工控儀表類產品。 特點: ★ 工作電壓 2.4-5.5V ★ 內置32 kHz RC振蕩器 ★ 偏置電壓(BIAS)可配置為1/3、1/4 ★ COM周期(DUTY)可配置為1/4、1/8 ★ 內置顯示RAM為20x4位、16x8位 ★ 幀頻可配置為80Hz、160Hz ★ 省電模式(通過關顯示和關振蕩器進入)
標簽: VK2C21 VK2C21A VK2C21B VK2C21C VK2C21D LCD抗干擾段碼屏驅動 段碼屏驅動抗干擾
上傳時間: 2022-06-09
上傳用戶:2937735731
描述了NTC使用B值計算出實際溫度與輸出的電壓之間的關系。
標簽: ntc計算
上傳時間: 2022-06-15
上傳用戶:
BC20-TE-B NB-Iot 評估板評估板原廠原理圖V1.2。完整對應實物裝置。
上傳時間: 2022-06-17
上傳用戶:
ASR M08-B設置軟件 V3.2 arduino 2560+ASRM08-B測試程序 arduino UNO+ASRM08-B測試程序語音控制臺燈電路圖及C51源碼(不帶校驗碼) 繼電器模塊設置。 ASR M08-B是一款語音識別模塊。首先對模塊添加一些關鍵字,對著該模塊說出關鍵字,串口會返回三位的數,如果是返回特定的三位數字,還會引起ASR M08-B的相關引腳電平的變化。【測試】①打開“ASR M08-B設置軟件 V3.2.exe”。②選擇“串口號”、“打開串口”、點選“十六進制顯示”。③將USB轉串口模塊連接到語音識別模塊上。接線方法如下:語音模塊TXD --> USB模塊RXD語音模塊RXD --> USB模塊TXD語音模塊GND --> USB模塊GND語音模塊3V3 --> USB模塊3V3(此端為3.3V電源供電端。)④將模塊的開關撥到“A”端,最好再按一次上面的大按鈕(按一次即可,為了確保模塊工作在正確的模式)。⑤對著模塊說“開燈”、“關燈”模塊會返回“0B”、“0A”,表示正常(注意:0B對應返回值010,0B對應返回值010,返回是16進制顯示的嘛,設置的時候是10進制設置的)。
標簽: ASR M08-B
上傳時間: 2022-07-06
上傳用戶:aben
All inputs of the C16x family have Schmitt-Trigger input characteristics. These Schmitt-Triggers are intended to always provide proper internal low and high levels, even if anundefined voltage level (between TTL-VIL and TTL-VIH) is externally applied to the pin.The hysteresis of these inputs, however, is very small, and can not be properly used in anapplication to suppress signal noise, and to shape slow rising/falling input transitions.Thus, it must be taken care that rising/falling input signals pass the undefined area of theTTL-specification between VIL and VIH with a sufficient rise/fall time, as generally usualand specified for TTL components (e.g. 74LS series: gates 1V/us, clock inputs 20V/us).The effect of the implemented Schmitt-Trigger is that even if the input signal remains inthe undefined area, well defined low/high levels are generated internally. Note that allinput signals are evaluated at specific sample points (depending on the input and theperipheral function connected to it), at that signal transitions are detected if twoconsecutive samples show different levels. Thus, only the current level of an input signalat these sample points is relevant, that means, the necessary rise/fall times of the inputsignal is only dependant on the sample rate, that is the distance in time between twoconsecutive evaluation time points. If an input signal, for instance, is sampled throughsoftware every 10us, it is irrelevant, which input level would be seen between thesamples. Thus, it would be allowable for the signal to take 10us to pass through theundefined area. Due to the sample rate of 10us, it is assured that only one sample canoccur while the signal is within the undefined area, and no incorrect transition will bedetected. For inputs which are connected to a peripheral function, e.g. capture inputs, thesample rate is determined by the clock cycle of the peripheral unit. In the case of theCAPCOM unit this means a sample rate of 400ns @ 20MHz CPU clock. This requiresinput signals to pass through the undefined area within these 400ns in order to avoidmultiple capture events.For input signals, which do not provide the required rise/fall times, external circuitry mustbe used to shape the signal transitions.In the attached diagram, the effect of the sample rate is shown. The numbers 1 to 5 in thediagram represent possible sample points. Waveform a) shows the result if the inputsignal transition time through the undefined TTL-level area is less than the time distancebetween the sample points (sampling at 1, 2, 3, and 4). Waveform b) can be the result ifthe sampling is performed more than once within the undefined area (sampling at 1, 2, 5,3, and 4).Sample points:1. Evaluation of the signal clearly results in a low level2. Either a low or a high level can be sampled here. If low is sampled, no transition willbe detected. If the sample results in a high level, a transition is detected, and anappropriate action (e.g. capture) might take place.3. Evaluation here clearly results in a high level. If the previous sample 2) had alreadydetected a high, there is no change. If the previous sample 2) showed a low, atransition from low to high is detected now.
上傳時間: 2013-10-23
上傳用戶:copu
load initial_track s; % y:initial data,s:data with noiseT=0.1; % yp denotes the sample value of position% yv denotes the sample value of velocity% Y=[yp(n);yv(n)];% error deviation caused by the random acceleration % known dataY=zeros(2,200);Y0=[0;1];Y(:,1)=Y0;A=[1 T 0 1]; B=[1/2*(T)^2 T]';H=[1 0]; C0=[0 0 0 1];C=[C0 zeros(2,2*199)];Q=(0.25)^2; R=(0.25)^2;
上傳時間: 2014-12-28
上傳用戶:asaqq
Compute Classical CFAR binary detection threshold for radar detection under additive Gaussian white noise criterion and specified false alarm probability.
標簽: detection Classical threshold additive
上傳時間: 2013-12-22
上傳用戶:希醬大魔王
I=imread('fig1.jpg');%從D盤名為myimages的文件夾中讀取。格式為jpg的圖像文件chost J=imnoise(I,'salt & pepper',0.02);%給圖像加入均值為0,方差為0.02的淑鹽噪聲 subplot(2,4,1); imshow(I); title('原始圖像'); subplot(2,4,2); imshow(J); title('加入椒鹽噪聲之后的圖像'); %h=ones(3,3)/9; %產生3 × 3的全1數組 %B=conv2(J,h); %卷積運算 %采用MATLAB中的函數對噪聲干擾的圖像進行濾波 Q=wiener2(J,[3 3]); %對加噪圖像進行二維自適應維納濾波 P=filter2(fspecial('average',3),J)/255; %均值濾波模板尺寸為3 K1=medfilt2(J,[3 3]); %進行3 × 3模板的中值濾波 K2= medfilt2(J,[5 5]); %進行5 × 5模板的中值濾波 K3= medfilt2(J,[7 7]); %進行7 × 7模板的中值濾波 K4= medfilt2(J,[9 9]); %進行9 × 9模板的中值濾波 %顯示濾波后的圖像及標題 subplot(2,4,3); imshow(Q); title('3 × 3模板維納濾波后的圖像'); subplot(2,4,4); imshow(P); title('3 × 3模板均值濾波后的圖像'); subplot(2,4,5); imshow(K1); title('3 × 3模板的中值濾波的圖像'); subplot(2,4,6); imshow(K2); title('5 × 5模板的中值濾波的圖像'); subplot(2,4, 7); imshow(K3); title('7 × 7模板的中值濾波的圖像'); subplot(2,4,8); imshow(K4); title('9 × 9模板的中值濾波的圖像');
上傳時間: 2016-06-02
上傳用戶:wxcr_1