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up-tech

  • MAX1771

    12V or Adjustable, High-Efficiency,Low IQ, Step-Up DC-DC Controller

    標簽: 1771 MAX

    上傳時間: 2016-10-20

    上傳用戶:oyjwle

  • OReilly.Ansible.Up.and.Running

    ansible是目前比較流行的集群管理運維工具,本書介紹的其基礎知識,全英文。

    標簽: 運維 linux

    上傳時間: 2018-02-05

    上傳用戶:子非木哉

  • 有限差分法

    function [alpha,N,U]=youxianchafen2(r1,r2,up,under,num,deta)      %[alpha,N,U]=youxianchafen2(a,r1,r2,up,under,num,deta)   %該函數用有限差分法求解有兩種介質的正方形區域的二維拉普拉斯方程的數值解   %函數返回迭代因子、迭代次數以及迭代完成后所求區域內網格節點處的值   %a為正方形求解區域的邊長   %r1,r2分別表示兩種介質的電導率   %up,under分別為上下邊界值   %num表示將區域每邊的網格剖分個數   %deta為迭代過程中所允許的相對誤差限      n=num+1; %每邊節點數   U(n,n)=0; %節點處數值矩陣   N=0; %迭代次數初值   alpha=2/(1+sin(pi/num));%超松弛迭代因子   k=r1/r2; %兩介質電導率之比   U(1,1:n)=up; %求解區域上邊界第一類邊界條件   U(n,1:n)=under; %求解區域下邊界第一類邊界條件   U(2:num,1)=0;U(2:num,n)=0;      for i=2:num   U(i,2:num)=up-(up-under)/num*(i-1);%采用線性賦值對上下邊界之間的節點賦迭代初值   end   G=1;   while G>0 %迭代條件:不滿足相對誤差限要求的節點數目G不為零   Un=U; %完成第n次迭代后所有節點處的值   G=0; %每完成一次迭代將不滿足相對誤差限要求的節點數目歸零   for j=1:n   for i=2:num   U1=U(i,j); %第n次迭代時網格節點處的值      if j==1 %第n+1次迭代左邊界第二類邊界條件   U(i,j)=1/4*(2*U(i,j+1)+U(i-1,j)+U(i+1,j));   end         if (j>1)&&(j                 U2=1/4*(U(i,j+1)+ U(i-1,j)+ U(i,j-1)+ U(i+1,j));    U(i,j)=U1+alpha*(U2-U1); %引入超松弛迭代因子后的網格節點處的值      end      if i==n+1-j %第n+1次迭代兩介質分界面(與網格對角線重合)第二類邊界條件   U(i,j)=1/4*(2/(1+k)*(U(i,j+1)+U(i+1,j))+2*k/(1+k)*(U(i-1,j)+U(i,j-1)));      end      if j==n %第n+1次迭代右邊界第二類邊界條件   U(i,n)=1/4*(2*U(i,j-1)+U(i-1,j)+U(i+1,j));   end   end   end   N=N+1 %顯示迭代次數   Un1=U; %完成第n+1次迭代后所有節點處的值   err=abs((Un1-Un)./Un1);%第n+1次迭代與第n次迭代所有節點值的相對誤差   err(1,1:n)=0; %上邊界節點相對誤差置零   err(n,1:n)=0; %下邊界節點相對誤差置零    G=sum(sum(err>deta))%顯示每次迭代后不滿足相對誤差限要求的節點數目G   end

    標簽: 有限差分

    上傳時間: 2018-07-13

    上傳用戶:Kemin

  • JTDX安裝及設定

    HF通信模式FT-8的中文設置資料。   軟件是英文的,可在這里下載。http://www.jtdx.tech/en/

    標簽: JTDX 設定

    上傳時間: 2018-11-23

    上傳用戶:milo

  • matpower軟件下

    http://tech.ifeng.com/a/20161108/44488623_0.shtml

    標簽: matpower 軟件

    上傳時間: 2018-12-20

    上傳用戶:taitai

  • MSP430G2553

    DESCRIPTION The Texas Instruments MSP430 family of ultra-low-power microcontrollers consists of several devices featuring different sets of peripherals targeted for various applications. The architecture, combined with five low-power modes, is optimized to achieve extended battery life in portable measurement applications. The device features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) allows wake-up from low-power modes to active mode in less than 1 μs. The MSP430G2x13 and MSP430G2x53 series are ultra-low-power mixed signal microcontrollers with built-in 16- bit timers, up to 24 I/O capacitive-touch enabled pins, a versatile analog comparator, and built-in communication capability using the universal serial communication interface. In addition the MSP430G2x53 family members have a 10-bit analog-to-digital (A/D) converter. For configuration details see Table 1. Typical applications include low-cost sensor systems that capture analog signals, convert them to digital values, and then process the data for display or for transmission to a host system.

    標簽: G2553 2553 430G MSP 430

    上傳時間: 2018-12-25

    上傳用戶:ygyh

  • L9945

    AEC-Q100 qualified ? 12 V and 24 V battery systems compliance ? 3.3 V and 5 V logic compatible I/O ? 8-channel configurable MOSFET pre-driver – High-side (N-channel and P-channel MOS) – Low-side (N-channel MOS) – H-bridge (up to 2 H-bridge) – Peak & Hold (2 loads) ? Operating battery supply voltage 3.8 V to 36 V ? Operating VDD supply voltage 4.5 V to 5.5 V ? All device pins, except the ground pins, withstand at least 40 V ? Programmable gate charge/discharge currents for improving EMI behavior

    標簽: configurable Automotive pre-driver suitable channel systems MOSFET fully High side

    上傳時間: 2019-03-27

    上傳用戶:guaixiaolong

  • AD8001AR

    transimpedance linearization circuitry. This allows it to drive video loads with excellent differential gain and phase perfor mance on only 50 mW of power. The AD8001 is a current feedback amplifier and features gain flatness of 0.1 dB to 100 MHz while offering differential gain and phase error of 0.01% and 0.025°. This makes the AD8001 ideal for professional video electronics such as cameras and video switchers. Additionally, the AD8001’s low distortion and fast settling make it ideal for buffer high-speed A-to-D converters. The AD8001 offers low power of 5.5 mA max (VS = ±5 V) and can run on a single +12 V power supply, while being capable of delivering over 70 mA of load current. These features make this amplifier ideal for portable and battery-powered applications where size and power are critical. The outstanding bandwidth of 800 MHz along with 1200 V/μs of slew rate make the AD8001 useful in many general purpose high-speed applications where dual power supplies of up to ±6 V and single supplies from 6 V to 12 V are needed. The AD8001 is available in the industrial temperature range of –40°C to +85°C.

    標簽: 8001 AD AR

    上傳時間: 2020-04-21

    上傳用戶:su1254

  • The Cognitive Early Warning Predictive System

    I saw the light of the future when I first read Ray Kurzweil’s best-seller book The Singularity Is Near: When Humans Transcend Biology. One cubic inch of nanotube cir- cuitry, once fully developed, would be up to one hundred million times more powerful than the human brain.

    標簽: Predictive Cognitive Warning System Early The

    上傳時間: 2020-05-26

    上傳用戶:shancjb

  • 3G+Evolution

    During the past years, there has been a quickly rising interest in radio access tech- nologies for providing mobile as well as nomadic and fixed services for voice, video, and data. The difference in design, implementation, and use between telecom and datacom technologies is also getting more blurred. One example is cellular technologies from the telecom world being used for broadband data and wireless LAN from the datacom world being used for voice over IP.

    標簽: Evolution 3G

    上傳時間: 2020-05-26

    上傳用戶:shancjb

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