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  • 運算放大器

    理想的放大器 目前,廠商在線性IC研發上都有重大的突破。使IC型運算放大器的特性和理想相當接近。尤其在低頻操作下,OP Amp電路的工作情形實在太像一個理想放大器,幾乎與理論的推測完全相符。→理想的放大器該具備什麼特性?

    標簽: 算放大器原理

    上傳時間: 2016-07-16

    上傳用戶:WALTER

  • 晟矽微GPIO單片機MC30P081

    8 位 RISC CPU 內核 1K*14 位程序存儲器空間(OTP),5 級深度硬件堆棧 48 字節 SRAM

    標簽: MC30P081

    上傳時間: 2016-08-18

    上傳用戶:zengduo

  • 晟矽微GPIO單片機MC30P6060_

    MC30P6060采用高速低功耗CMOS工藝設計開發的8位高性能精簡指令單片機,內部有1k*14位一次性可編程ROM(OTP-ROM),49×8位的數據存儲器(RAM),兩個雙向i/o,1個8位Timer定時器/計數器

    標簽: MC30P6060

    上傳時間: 2016-08-18

    上傳用戶:zengduo

  • 晟矽微GPIO單片機MC30P6060_

    MC30P6060采用高速低功耗CMOS工藝設計開發的8位高性能精簡指令單片機,內部有1k*14位一次性可編程ROM(OTP-ROM),49×8位的數據存儲器(RAM),兩個雙向i/o,1個8位Timer定時器/計數器

    標簽: MC30P6060

    上傳時間: 2016-08-18

    上傳用戶:zengduo

  • SPSS教程

    迴歸分析的基本假設 (一)固定自變項假設(fixed variable) (二)線性關係假設(linear relationship) (三)常態性假設(normality)

    標簽: 回歸分析 主成分分析

    上傳時間: 2016-10-11

    上傳用戶:Gower's

  • 運動會源代碼

    #include <malloc.h>       #include <stdio.h>       #include <stdlib.h>       #include <string.h>       #define NULL 0      #define MaxSize 30          typedef struct athletestruct /*運動員*/     {         char name[20];          int score; /*分數*/         int range; /**/         int item; /*項目*/     }ATH;     typedef struct schoolstruct /*學校*/     {         int count; /*編號*/         int serial; /**/          int menscore; /*男選手分數*/         int womenscore; /*女選手分數*/         int totalscore; /*總分*/         ATH athlete[MaxSize]; /**/         struct schoolstruct *next;      }SCH;         int nsc,msp,wsp;      int ntsp;      int i,j;      int overgame;      int serial,range;      int n;      SCH *head,*pfirst,*psecond;      int *phead=NULL,*pafirst=NULL,*pasecond=NULL;     void create();         void input ()     {         char answer;          head = (SCH *)malloc(sizeof(SCH)); /**/         head->next = NULL;         pfirst = head;          answer = 'y';         while ( answer == 'y' )         {         Is_Game_DoMain:         printf("\nGET Top 5 when odd\nGET Top 3 when even");         printf("\n輸入運動項目序號 (x<=%d):",ntsp);         scanf("%d",pafirst);         overgame = *pafirst;         if ( pafirst != phead )         {             for ( pasecond = phead ; pasecond < pafirst ; pasecond ++ )             {                 if ( overgame == *pasecond )                 {                     printf("\n這個項目已經存在請選擇其他的數字\n");                     goto Is_Game_DoMain;                 }             }         }         pafirst = pafirst + 1;         if ( overgame > ntsp )         {             printf("\n項目不存在");             printf("\n請重新輸入");             goto Is_Game_DoMain;         }         switch ( overgame%2 )         {         case 0: n = 3;break;         case 1: n = 5;break;         }         for ( i = 1 ; i <= n ; i++ )         {         Is_Serial_DoMain:         printf("\n輸入序號 of the NO.%d (0<x<=%d): ",i,nsc);                 scanf("%d",&serial);         if ( serial > nsc )          {             printf("\n超過學校數目,請重新輸入");             goto Is_Serial_DoMain;         }         if ( head->next == NULL )          {             create();         }         psecond = head->next ;          while ( psecond != NULL )          {             if ( psecond->serial == serial )             {                 pfirst = psecond;                 pfirst->count = pfirst->count + 1;                 goto Store_Data;             }             else             {                 psecond = psecond->next;             }         }         create();         Store_Data:                 pfirst->athlete[pfirst->count].item = overgame;         pfirst->athlete[pfirst->count].range = i;         pfirst->serial = serial;         printf("Input name:) : ");                 scanf("%s",pfirst->athlete[pfirst->count].name);         }         printf("\n繼續輸入運動項目(y&n)?");         answer = getchar();         printf("\n");         }     }         void calculate() /**/     {         pfirst = head->next;         while ( pfirst->next != NULL )         {             for (i=1;i<=pfirst->count;i++)             {                 if ( pfirst->athlete[i].item % 2 == 0 )                  {                     switch (pfirst->athlete[i].range)                     {                     case 1:pfirst->athlete[i].score = 5;break;                     case 2:pfirst->athlete[i].score = 3;break;                     case 3:pfirst->athlete[i].score = 2;break;                     }                 }                 else                  {                     switch (pfirst->athlete[i].range)                     {                     case 1:pfirst->athlete[i].score = 7;break;                     case 2:pfirst->athlete[i].score = 5;break;                     case 3:pfirst->athlete[i].score = 3;break;                     case 4:pfirst->athlete[i].score = 2;break;                     case 5:pfirst->athlete[i].score = 1;break;                     }                 }                 if ( pfirst->athlete[i].item <=msp )                  {                     pfirst->menscore = pfirst->menscore + pfirst->athlete[i].score;                 }                 else                  {                     pfirst->womenscore = pfirst->womenscore + pfirst->athlete[i].score;                 }             }             pfirst->totalscore = pfirst->menscore + pfirst->womenscore;             pfirst = pfirst->next;         }     }         void output()     {         pfirst = head->next;         psecond = head->next;         while ( pfirst->next != NULL )          {             // clrscr();              printf("\n第%d號學校的結果成績:",pfirst->serial);             printf("\n\n項目的數目\t學校的名字\t分數");             for (i=1;i<=ntsp;i++)              {                 for (j=1;j<=pfirst->count;j++)                  {                     if ( pfirst->athlete[j].item == i )                     {                                                                         printf("\n %d\t\t\t\t\t\t%s\n %d",i,pfirst->athlete[j].name,pfirst->athlete[j].score);break;                                             }                 }             }             printf("\n\n\n\t\t\t\t\t\t按任意建 進入下一頁");             getchar();             pfirst = pfirst->next;         }     //  clrscr();          printf("\n運動會結果:\n\n學校編號\t男運動員成績\t女運動員成績\t總分");         pfirst = head->next;         while ( pfirst->next != NULL )         {             printf("\n %d\t\t %d\t\t %d\t\t %d",pfirst->serial,pfirst->menscore,pfirst->womenscore,pfirst->totalscore);             pfirst = pfirst->next;         }         printf("\n\n\n\t\t\t\t\t\t\t按任意建結束");         getchar();     }         void create()     {                 pfirst = (struct schoolstruct *)malloc(sizeof(struct schoolstruct));         pfirst->next = head->next ;         head->next = pfirst ;                 pfirst->count = 1;         pfirst->menscore = 0;         pfirst->womenscore = 0;         pfirst->totalscore = 0;     }     void Save()     {FILE *fp;     if((fp = fopen("school.dat","wb"))==NULL)     {printf("can't open school.dat\n");     fclose(fp);     return;     }     fwrite(pfirst,sizeof(SCH),10,fp);     fclose(fp);     printf("文件已經成功保存\n");     }         void main()     {         system("cls");         printf("\n\t\t\t 運動會分數統計\n");         printf("輸入學校數目 (x>= 5):");         scanf("%d",&nsc);          printf("輸入男選手的項目(x<=20):");         scanf("%d",&msp);          printf("輸入女選手項目(<=20):");         scanf("%d",&wsp);          ntsp = msp + wsp;                  phead = (int *)calloc(ntsp,sizeof(int));         pafirst = phead;         pasecond = phead;         input();         calculate();          output();         Save();     }             

    標簽: 源代碼

    上傳時間: 2016-12-28

    上傳用戶:150501

  • AP2406技術手冊

    The AP2406 is a 1.5Mhz constant frequency, slope compensated current mode PWM step-down converter. The device integrates a main switch and a synchronous rectifier for high efficiency without an external Schottky diode. It is ideal for powering portable equipment that runs from a single cell lithium-Ion (Li+) battery. The AP2406 can supply 600mA of load current from a 2.5V to 5.5V input voltage. The output voltage can be regulated as low as 0.6V. The AP2406 can also run at 100% duty cycle for low dropout operation, extending battery life in portable system. Idle mode operation at light loads provides very low output ripple voltage for noise sensitive applications. The AP2406 is offered in a low profile (1mm) 5-pin, thin SOT package, and is available in an adjustable version and fixed output voltage of 1.2V, 1.5V and 1.8V

    標簽: 2406 AP 技術手冊

    上傳時間: 2017-02-23

    上傳用戶:w124141

  • 移除 Excel 格式

    可完整移除 Excel 其他非預設格式。

    標簽: Excel

    上傳時間: 2017-10-23

    上傳用戶:ufo1234

  • 鋰硫電池隔膜

    Lithium–sulfur batteries are a promising energy-storage technology due to their relatively low cost and high theoretical energy density. However, one of their major technical problems is the shuttling of soluble polysulfides between electrodes, resulting in rapid capacity fading. Here, we present a metal–organic framework (MOF)-based battery separator to mitigate the shuttling problem. We show that the MOF-based separator acts as an ionic sieve in lithium–sulfur batteries, which selectively sieves Li+ ions while e ciently suppressing undesired polysulfides migrating to the anode side. When a sulfur-containing mesoporous carbon material (approximately 70 wt% sulfur content) is used as a cathode composite without elaborate synthesis or surface modification, a lithium–sulfur battery with a MOF-based separator exhibits a low capacity decay rate (0.019% per cycle over 1,500 cycles). Moreover, there is almost no capacity fading after the initial 100 cycles. Our approach demonstrates the potential for MOF-based materials as separators for energy-storage applications.

    標簽: 鋰硫電池 隔膜

    上傳時間: 2017-11-23

    上傳用戶:653357637

  • 用于鋰 - 硫電池的納米結構金屬氧化物和硫化物(1)

    Lithium–sulfur (Li–S) batteries with high energy density and long cycle life are considered to be one of the most promising next-generation energy-storage systems beyond routine lithium-ion batteries. Various approaches have been proposed to break down technical barriers in Li–S battery systems. The use of nanostructured metal oxides and sulfides for high sulfur utilization and long life span of Li–S batteries is reviewed here. The relationships between the intrinsic properties of metal oxide/sulfide hosts and electrochemical performances of Li–S batteries are discussed. Nanostructured metal oxides/ sulfides hosts used in solid sulfur cathodes, separators/interlayers, lithium- metal-anode protection, and lithium polysulfides batteries are discussed respectively. Prospects for the future developments of Li–S batteries with nanostructured metal oxides/sulfides are also discussed.

    標簽: 電池 納米結構 硫化物 金屬氧化物

    上傳時間: 2017-11-23

    上傳用戶:653357637

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