widows認證w idows認證w idows認證w idows認證w idows認證w idows認證
上傳時間: 2014-01-03
上傳用戶:gtf1207
無線感測器已變得越來越普及,短期內其開發和部署數量將急遽增加。而無線通訊技術的突飛猛進,也使得智慧型網路中的無線感測器能夠緊密互連。此外,系統單晶片(SoC)的密度不斷提高,讓各式各樣的多功能、小尺寸無線感測器系統相繼問市。儘管如此,工程師仍面臨一個重大的挑戰:即電源消耗。
上傳時間: 2013-10-30
上傳用戶:wojiaohs
*--- --- --- --聲明--- --- --- -----*/ /* VC6.0下運行通過 此程序為本人苦心所做,請您在閱讀的時候,尊重本人的 勞動。可以修改,但當做的每一處矯正或改進時,請將改進 方案,及修改部分發給本人 (修改部分請注名明:修改字樣) Email: jink2005@sina.com QQ: 272576320 ——初稿完成:06-5-27 jink2005 補充: 程序存在問題: (1) follow集不能處理:U->xVyVz的情況 (2) 因本人偷懶,本程序為加入文法判斷,故 輸入的文法必須為LL(1)文法 (3) 您可以幫忙擴充:消除左遞歸,提取公因子等函數 (4) …… */ /*-----------------------------------------------*/ /*參考書《計算機編譯原理——編譯程序構造實踐》 LL(1)語法分析,例1: ERTWF# +*()i# 文法G[E]:(按此格式輸入) 1 E -> TR 2 R -> +TR 3 R -> 4 T -> FW 5 W -> * FW 6 W -> 7 F -> (E) 8 F -> i 分析例句:i*(i)# , i+i# 例2: 編譯書5.6例題1 SHMA# adbe# S->aH H->aMd H->d M->Ab M-> A->aM A->e 分析例句:aaabd# */
上傳時間: 2016-02-08
上傳用戶:ayfeixiao
This document is an operation guide for the MPC8XXFADS board. It contains operational, functional and general information about the FADS. The MPC8XXFADS is meant to serve as a platform for s/ w and h/w development around the MPC8XX family processors. Using its on-board resources and its associated debugger, a developer is able to download his code, run it, set breakpoints, display memory and registers and connect his own proprietary h/w via the expansion connectors, to be incorporated to a desired system with the MPC8XX processor.
標簽: operational MPC8XXFADS functional operation
上傳時間: 2014-03-10
上傳用戶:zsjinju
設有一個背包可以放入的物品重量最重為s,現有n件物品,它們的重量分別為w[0]、 w[1]、w[2]、…、w[n-1]。問能否從這n件物品中選擇若干件放入此背包中,使得放入的重量之和正好為s。如果存在一種符合上述要求的選擇,則稱此背包問題有解(或稱其解為真);否則稱此背包問題無解(或稱其解為假)。試用遞歸方法設計求解背包問題的算法。
標簽:
上傳時間: 2016-03-15
上傳用戶:bcjtao
圖的鄰接矩陣和遍歷 一.問題描述 構造一圖,用鄰接矩陣實現該圖的深度優先遍歷或廣度優先遍歷。 二.實驗目的 1.掌握圖的基本概念和鄰接矩陣的存儲結構。 2.掌握鄰接矩陣存儲結構的算法實現。 3.掌握圖在鄰接矩陣存儲結構上遍歷算法的實現。 三.實驗要求 1.確定圖的頂點個數和邊的個數,建立鄰接矩陣,實現深度優先遍歷或廣度優先遍歷,再在主函數中調用它們。 2.深度優先遍歷思想: (1)訪問頂點v (2)從v的未被訪問的鄰接點中選取一個頂點w,從w出發進行深度優先遍歷; (3)重復上述兩步,直至圖中所有和v有路徑相通的頂點都被訪問到。
標簽: 矩陣
上傳時間: 2016-06-28
上傳用戶:tb_6877751
賦權有向圖中心問題 問題描述: 設G=(V,E)是一個賦權有向圖,v是G的一個頂點, v的偏心距定義為: Max {w∈ V,從w到v的最短路徑長度} G中偏心距最小的頂點稱為G的中心。試利用Floyd 算法設計一個求賦權有向圖中心的算法。
標簽:
上傳時間: 2017-08-17
上傳用戶:klin3139
/****************temic*********t5557***********************************/ #include <at892051.h> #include <string.h> #include <intrins.h> #include <stdio.h> #define uchar unsigned char #define uint unsigned int #define ulong unsigned long //STC12C2051AD的SFR定義 sfr WDT_CONTR = 0xe1;//stc2051的看門狗?????? /**********全局常量************/ //寫卡的命令 #define write_command0 0//寫密碼 #define write_command1 1//寫配置字 #define write_command2 2//密碼寫數據 #define write_command3 3//喚醒 #define write_command4 4//停止命令 #define TRUE 1 #define FALSE 0 #define OK 0 #define ERROR 255 //讀卡的時間參數us #define ts_min 250//270*11.0592/12=249//取近似的整數 #define ts_max 304//330*11.0592/12=304 #define t1_min 73//90*11.0592/12=83:-10調整 #define t1_max 156//180*11.0592/12=166 #define t2_min 184//210*11.0592/12=194 #define t2_max 267//300*11.0592/12=276 //***********不采用中斷處理:采用查詢的方法讀卡時關所有中斷****************/ sbit p_U2270B_Standby = P3^5;//p_U2270B_Standby PIN=13 sbit p_U2270B_CFE = P3^3;//p_U2270B_CFE PIN=6 sbit p_U2270B_OutPut = P3^7;//p_U2270B_OutPut PIN=2 sbit wtd_sck = P1^7;//SPI總線 sbit wtd_si = P1^3; sbit wtd_so = P1^2; sbit iic_data = P1^2;//lcd IIC sbit iic_clk = P1^7; sbit led_light = P1^6;//測試綠燈 sbit led_light1 = P1^5;//測試紅燈 sbit led_light_ok = P1^1;//讀卡成功標志 sbit fengmingqi = P1^5; /***********全局變量************************************/ uchar data Nkey_a[4] = {0xA0, 0xA1, 0xA2, 0xA3};//初始密碼 //uchar idata card_snr[4]; //配置字 uchar data bankdata[28] = {1,2,3,4,5,6,7,1,2,3,4,5,6,7,1,2,3,4,5,6,7,1,2,3,4,5,6,7}; //存儲卡上用戶數據(1-7)7*4=28 uchar data cominceptbuff[6] = {1,2,3,4,5,6};//串口接收數組ram uchar command; //第一個命令 uchar command1;// //uint temp; uchar j,i; uchar myaddr = 8; //uchar ywqz_count,time_count; //ywqz jishu: uchar bdata DATA; sbit BIT0 = DATA^0; sbit BIT1 = DATA^1; sbit BIT2 = DATA^2; sbit BIT3 = DATA^3; sbit BIT4 = DATA^4; sbit BIT5 = DATA^5; sbit BIT6 = DATA^6; sbit BIT7 = DATA^7; uchar bdata DATA1; sbit BIT10 = DATA1^0; sbit BIT11 = DATA1^1; sbit BIT12 = DATA1^2; sbit BIT13 = DATA1^3; sbit BIT14 = DATA1^4; sbit BIT15 = DATA1^5; sbit BIT16 = DATA1^6; sbit BIT17 = DATA1^7; bit i_CurrentLevel;//i_CurrentLevel BIT 00H(Saves current level of OutPut pin of U2270B) bit timer1_end; bit read_ok = 0; //緩存定時值,因用同一個定時器 union HLint { uint W; struct { uchar H;uchar L; } B; };//union HLint idata a union HLint data a; //緩存定時值,因用同一個定時器 union HLint0 { uint W; struct { uchar H; uchar L; } B; };//union HLint idata a union HLint0 data b; /**********************函數原型*****************/ //讀寫操作 void f_readcard(void);//全部讀出1~7 AOR喚醒 void f_writecard(uchar x);//根據命令寫不同的內容和操作 void f_clearpassword(void);//清除密碼 void f_changepassword(void);//修改密碼 //功能子函數 void write_password(uchar data *data p);//寫初始密碼或數據 void write_block(uchar x,uchar data *data p);//不能用通用指針 void write_bit(bit x);//寫位 /*子函數區*****************************************************/ void delay_2(uint x) //延時,時間x*10us@12mhz,最小20us@12mhz { x--; x--; while(x) { _nop_(); _nop_(); x--; } _nop_();//WDT_CONTR=0X3C;不能頻繁的復位 _nop_(); } ///////////////////////////////////////////////////////////////////// void initial(void) { SCON = 0x50; //串口方式1,允許接收 //SCON =0x50; //01010000B:10位異步收發,波特率可變,SM2=0不用接收到有效停止位才RI=1, //REN=1允許接收 TMOD = 0x21; //定時器1 定時方式2(8位),定時器0 定時方式1(16位) TCON = 0x40; //設定時器1 允許開始計時(IT1=1) TH1 = 0xfD; //FB 18.432MHz 9600 波特率 TL1 = 0xfD; //fd 11.0592 9600 IE = 0X90; //EA=ES=1 TR1 = 1; //啟動定時器 WDT_CONTR = 0x3c;//使能看門狗 p_U2270B_Standby = 0;//單電源 PCON = 0x00; IP = 0x10;//uart you xian XXXPS PT1 PX1 PT0 PX0 led_light1 = 1; led_light = 0; p_U2270B_OutPut = 1; } /************************************************/ void f_readcard()//讀卡 { EA = 0;//全關,防止影響跳變的定時器計時 WDT_CONTR = 0X3C;//喂狗 p_U2270B_CFE = 1;// delay_2(232); //>2.5ms /* // aor 用喚醒功能來防碰撞 p_U2270B_CFE = 0; delay_2(18);//start gap>150us write_bit(1);//10=操作碼讀0頁 write_bit(0); write_password(&bankdata[24]);//密碼block7 p_U2270B_CFE =1 ;// delay_2(516);//編程及確認時間5.6ms */ WDT_CONTR = 0X3C;//喂狗 led_light = 0; b.W = 0; while(!(read_ok == 1)) { //while(p_U2270B_OutPut);//等一個穩定的低電平?超時判斷? while(!p_U2270B_OutPut);//等待上升沿的到來同步信號檢測1 TR0 = 1; //deng xia jiang while(p_U2270B_OutPut);//等待下降沿 TR0 = 0; a.B.H = TH0; a.B.L = TL0; TH0 = TL0 = 0; TR0 = 1;//定時器晚啟動10個周期 //同步頭 if((324 < a.W) && (a.W < 353)) ;//檢測同步信號1 else { TR0 = 0; TH0 = TL0 = 0; goto read_error; } //等待上升沿 while(!p_U2270B_OutPut); TR0 = 0; a.B.H = TH0; a.B.L = TL0; TH0 = TL0 = 0; TR0 = 1;//b.N1<<=8; if(a.B.L < 195);//0.5p else { TR0 = 0; TH0 = TL0 = 0; goto read_error; } //讀0~7塊的數據 for(j = 0;j < 28;j++) { //uchar i; for(i = 0;i < 16;i++)//8個位 { //等待下降沿的到來 while(p_U2270B_OutPut); TR0 = 0; a.B.H = TH0; a.B.L = TL0; TH0 = TL0 = 0; TR0 = 1; if(t2_max < a.W/*)&&(a.W < t2_max)*/)//1P { b.W >>= 2;//先左移再賦值 b.B.L += 0xc0; i++; } else if(t1_min < a.B.L/*)&&(a.B.L < t1_max)*/)//0.5p { b.W >>= 1; b.B.L += 0x80; } else { TR0 = 0; TH0 = TL0 = 0; goto read_error; } i++; while(!p_U2270B_OutPut);//上升 TR0 = 0; a.B.H = TH0; a.B.L = TL0; TH0 = TL0 = 0; TR0 = 1; if(t2_min < a.W/*)&&(a.W < t2_max)*/)//1P { b.W >>= 2; i++; } else if(t1_min < a.B.L/*a.W)&&(a.B.L < t1_max)*/)//0.5P //else if(!(a.W==0)) { b.W >>= 1; //temp+=0x00; //led_light1=0;led_light=1;delay_2(40000); } else { TR0 = 0; TH0 = TL0 = 0; goto read_error; } i++; } //取出奇位 DATA = b.B.L; BIT13 = BIT7; BIT12 = BIT5; BIT11 = BIT3; BIT10 = BIT1; DATA = b.B.H; BIT17 = BIT7; BIT16 = BIT5; BIT15 = BIT3; BIT14 = BIT1; bankdata[j] = DATA1; } read_ok = 1;//讀卡完成了 read_error: _nop_(); } } /***************************************************/ void f_writecard(uchar x)//寫卡 { p_U2270B_CFE = 1; delay_2(232); //>2.5ms //psw=0 standard write if (x == write_command0)//寫密碼:初始化密碼 { uchar i; uchar data *data p; p = cominceptbuff; p_U2270B_CFE = 0; delay_2(31);//start gap>330us write_bit(1);//寫操作碼1:10 write_bit(0);//寫操作碼0 write_bit(0);//寫鎖定位0 for(i = 0;i < 35;i++) { write_bit(1);//寫數據位1 } p_U2270B_CFE = 1; led_light1 = 0; led_light = 1; delay_2(40000);//測試使用 //write_block(cominceptbuff[4],p); p_U2270B_CFE = 1; bankdata[20] = cominceptbuff[0];//密碼存入 bankdata[21] = cominceptbuff[1]; bankdata[22] = cominceptbuff[2]; bankdata[23] = cominceptbuff[3]; } else if (x == write_command1)//配置卡參數:初始化 { uchar data *data p; p = cominceptbuff; write_bit(1);//寫操作碼1:10 write_bit(0);//寫操作碼0 write_bit(0);//寫鎖定位0 write_block(cominceptbuff[4],p); p_U2270B_CFE= 1; } //psw=1 pssword mode else if(x == write_command2) //密碼寫數據 { uchar data*data p; p = &bankdata[24]; write_bit(1);//寫操作碼1:10 write_bit(0);//寫操作碼0 write_password(p);//發口令 write_bit(0);//寫鎖定位0 p = cominceptbuff; write_block(cominceptbuff[4],p);//寫數據 } else if(x == write_command3)//aor //喚醒 { //cominceptbuff[1]操作碼10 X xxxxxB uchar data *data p; p = cominceptbuff; write_bit(1);//10 write_bit(0); write_password(p);//密碼 p_U2270B_CFE = 1;//此時數據不停的循環傳出 } else //停止操作碼 { write_bit(1);//11 write_bit(1); p_U2270B_CFE = 1; } p_U2270B_CFE = 1; delay_2(560);//5.6ms } /************************************/ void f_clearpassword()//清除密碼 { uchar data *data p; uchar i,x; p = &bankdata[24];//原密碼 p_U2270B_CFE = 0; delay_2(18);//start gap>150us //操作碼10:10xxxxxxB write_bit(1); write_bit(0); for(x = 0;x < 4;x++)//發原密碼 { DATA = *(p++); for(i = 0;i < 8;i++) { write_bit(BIT0); DATA >>= 1; } } write_bit(0);//鎖定位0:0 p = &cominceptbuff[0]; write_block(0x00,p);//寫新配置參數:pwd=0 //密碼無效:即清除密碼 DATA = 0x00;//停止操作碼00000000B for(i = 0;i < 2;i++) { write_bit(BIT7); DATA <<= 1; } p_U2270B_CFE = 1; delay_2(560);//5.6ms } /*********************************/ void f_changepassword()//修改密碼 { uchar data *data p; uchar i,x,addr; addr = 0x07;//block7 p = &Nkey_a[0];//原密碼 DATA = 0x80;//操作碼10:10xxxxxxB for(i = 0;i < 2;i++) { write_bit(BIT7); DATA <<= 1; } for(x = 0;x < 4;x++)//發原密碼 { DATA = *(p++); for(i = 0;i < 8;i++) { write_bit(BIT7); DATA >>= 1; } } write_bit(0);//鎖定位0:0 p = &cominceptbuff[0]; write_block(0x07,p);//寫新密碼 p_U2270B_CFE = 1; bankdata[24] = cominceptbuff[0];//密碼存入 bankdata[25] = cominceptbuff[1]; bankdata[26] = cominceptbuff[2]; bankdata[27] = cominceptbuff[3]; DATA = 0x00;//停止操作碼00000000B for(i = 0;i < 2;i++) { write_bit(BIT7); DATA <<= 1; } p_U2270B_CFE = 1; delay_2(560);//5.6ms } /***************************子函數***********************************/ void write_bit(bit x)//寫一位 { if(x) { p_U2270B_CFE = 1; delay_2(32);//448*11.0592/120=42延時448us p_U2270B_CFE = 0; delay_2(28);//280*11.0592/120=26寫1 } else { p_U2270B_CFE = 1; delay_2(92);//192*11.0592/120=18 p_U2270B_CFE = 0; delay_2(28);//280*11.0592/120=26寫0 } } /*******************寫一個block*******************/ void write_block(uchar addr,uchar data *data p) { uchar i,j; for(i = 0;i < 4;i++)//block0數據 { DATA = *(p++); for(j = 0;j < 8;j++) { write_bit(BIT0); DATA >>= 1; } } DATA = addr <<= 5;//0地址 for(i = 0;i < 3;i++) { write_bit(BIT7); DATA <<= 1; } } /*************************************************/ void write_password(uchar data *data p) { uchar i,j; for(i = 0;i < 4;i++)// { DATA = *(p++); for(j = 0;j < 8;j++) { write_bit(BIT0); DATA >>= 1; } } } /*************************************************/ void main() { initial(); TI = RI = 0; ES = 1; EA = 1; delay_2(28); //f_readcard(); while(1) { f_readcard(); //讀卡 f_writecard(command1); //寫卡 f_clearpassword(); //清除密碼 f_changepassword(); //修改密碼 } }
標簽: 12345
上傳時間: 2017-10-20
上傳用戶:my_lcs
電阻類3D封裝表貼插裝電阻可調電阻功率電阻封裝庫AD庫PCB庫共100個(ALTIUM 3D封裝庫),列表如下:Component Count : 100Component Name-----------------------------------------------FLQ-0R03FLQ-40A-75mVFLQ-50-3FLQ-50AFLQ-60A-75mVFLQ-OAR5R005FLFFUSE-1210FUSE-1808FUSE-2920IGBT-BSM200GB60DLCIGBT-FF200R12KT4R0.5WR0.25wR1/1-HR1/2-HR1/2-VR1/4-HR1/4-VR1/8R1/16R1W -LR1W-WR2W-LR2W-WR2W-W-1R3W-HR3W-VR608XAR0402R0402SR0603R0805R1206R1210R1808R1812R2010R2512RD20D561KRES ADJ1RES ADJ2RES ADJ3RES-3224WRES-3296PRES-3296WRES-3296XRES-POT-TRRES-POT4MM-2RES-pot3306FRES-RK16312RES-RP8RES-RP9RES-RT-PJ-3314JRES-RV3224WRES-RV3296PRES-RV3296WRES-RV3296XRES-RV3386RES-VR-3RES-VR1RES-VR2RES-VR3RES-VR4RES-VR5RES-VR6RES-VR3296PRES-VR3296WRES-VR3296XRES-VR3306RES-VR3362PRES-VR3362WRES-VR3386RGG-5W-VRGG-5W-WRGG-5W-W-2RGG-10W-WRGG-10W-W -2RGG-20W-Wrgg-R3W-WRGG-R5W-TRGG-R5W-Vrgg-R5W2-wRX21-8WRX27-1VRX27-5W-LRX27-5W-WRX27-7WTVR-5DTVR-7DTVR-10DTVR-14DTVR-14D-NTCTVR-20DTVR-RD15TVR-RD20TVR-RV0.6TVR-RV7DTVR-RV8D-20TVR-RV14DTVR-RV20D
上傳時間: 2022-01-06
上傳用戶:wangshoupeng199
說明:1,測試交流電源(Test AC Power Supply):A.中國(China):AC 220V+/-2%50Hz+/-2%B.美國(United States of America):AC 120V+/-2%60Hz+/-2%。C.英國(Britain):AC 240V+/-2%50Hz+/-2%D.歐洲(Europe):AC 230V+/-2%50Hz+/-2%E.日本(Japan):AC 100V+/-2%60Hz+/-2%F.墨西哥(Mexico):AC 127V+/-2%60Hz+/-2%2,測試溫度條件(Test Temperature Conditions):25℃+/-2℃。3,測試以右聲道為準(Standard Test Use Right Channell)4,信號由AUX插座輸入(Signal From AUX Jack Input)。5,測試以音量最大,音調和平衡在中央位置(電子音調在正常狀態)。(Test Volume Setup Max,Equalizer And Balance Setup Center)。6,標準輸出(Standard Output):A.輸入1 KHz頻率信號(Input 1 KHz Frequency Signal)B.左右聲道輸入信號測試右聲道(L&R Input Signal Test Use R Channel)C.額定輸出功率満(Rating Output Power Full)10 W,標準輸出定為1w.(Rating Output Power Full 10 w,Standard Output Setup 1 W)D.額定輸出功率1W到10w,標準輸出定為500 mW(Rating Output Power 1 W To 10 W,Standard Output Setup 500 mW)E.額定輸出功率小于1w,標準輸出定為50 mW(Rating Output Power Not Full 1 W,Standard Output Setup 50 mW)F.標準輸出電壓以V-VPR為準(Standard Output Voltage Use V-V/PR)。G.V-V/PR中P為額定輸出功率,R為喇叭標稱阻抗。
標簽: 音響功放
上傳時間: 2022-06-18
上傳用戶: