音樂播放器,可播放大部份與微軟Windows Media Player兼容的媒體檔案格式,當中包括非串流處理的檔案類型(mp3,wav,mID,avi,mpg)以及串流處理的檔案類型(asf,wma,wmv) 您亦可以使用預先制作好的播放清單 (如: pls,m3u)。如果您想要利用本程序做為串流媒體服務,您可能需要準備一些串流處理媒體的執行文件 (如: asx,wax,wvx)。為你的網頁增加個音樂點播DJ.
標簽: Windows Player Media 音樂播放器
上傳時間: 2013-12-10
上傳用戶:qq21508895
symbian s60 2rd聲音播放源碼,支持wav和mID等音頻格式
上傳時間: 2014-06-14
上傳用戶:shizhanincc
RK3288 DDR 支持列表,For mID、OTT 等設備。
上傳時間: 2016-06-17
上傳用戶:dspdev
1.Describe a Θ(n lg n)-time algorithm that, given a set S of n integers and another integer x, determines whether or not there exist two elements in S whose sum is exactly x. (Implement exercise 2.3-7.) #include<stdio.h> #include<stdlib.h> void merge(int arr[],int low,int mID,int high){ int i,k; int *tmp=(int*)malloc((high-low+1)*sizeof(int)); int left_low=low; int left_high=mID; int right_low=mID+1; int right_high=high; for(k=0;left_low<=left_high&&right_low<=right_high;k++) { if(arr[left_low]<=arr[right_low]){ tmp[k]=arr[left_low++]; } else{ tmp[k]=arr[right_low++]; } } if(left_low<=left_high){ for(i=left_low;i<=left_high;i++){ tmp[k++]=arr[i]; } } if(right_low<=right_high){ for(i=right_low;i<=right_high;i++) tmp[k++]=arr[i]; } for(i=0;i<high-low+1;i++) arr[low+i]=tmp[i]; } void merge_sort(int a[],int p,int r){ int q; if(p<r){ q=(p+r)/2; merge_sort(a,p,q); merge_sort(a,q+1,r); merge(a,p,q,r); } } int main(){ int a[8]={3,5,8,6,4,1,1}; int i,j; int x=10; merge_sort(a,0,6); printf("after Merging-Sort:\n"); for(i=0;i<7;i++){ printf("%d",a[i]); } printf("\n"); i=0;j=6; do{ if(a[i]+a[j]==x){ printf("exist"); break; } if(a[i]+a[j]>x) j--; if(a[i]+a[j]<x) i++; }while(i<=j); if(i>j) printf("not exist"); system("pause"); return 0; }
上傳時間: 2017-04-01
上傳用戶:糖兒水嘻嘻
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標簽: 源代碼
上傳時間: 2017-11-17
上傳用戶:wendingchang
Employing multiple transmit and receive antennas, namely using multi-input multi-output (MIMO) systems, has proven to be a major breakthrough in providing reliable wireless communication links. Since their invention in the mID-1990s, transmit diversity, achieved through space-time coding, and spatial multiplexing schemes have been the focus of much research in the area of wireless communications.
標簽: Communication Systems Coding MIMO for
上傳時間: 2020-05-26
上傳用戶:shancjb
Optical communication technology has been extensively developed over the last 50 years, since the proposed idea by Kao and Hockham [1]. However, only during the last 15 years have the concepts of communication foundation, that is, the modulation and demodulation techniques, been applied. This is pos- sible due to processing signals using real and imaginary components in the baseband in the digital domain. The baseband signals can be recovered from the optical passband region using polarization and phase diversity tech- niques, as well as technology that was developed in the mID-1980s.
標簽: Transmission Processing Digital Optical
上傳時間: 2020-05-27
上傳用戶:shancjb
Until the mID-1990s most readers would probably not have even come across the term soft- ware defined radio (SDR), let alone had an idea what it referred to. Since then SDR has made the transition from obscurity to mainstream, albeit still with many different understandings of the terms – software radio, software defined radio, software based radio, reconfigurable radio.
上傳時間: 2020-06-01
上傳用戶:shancjb
The advent of modern wireless devices, such as smart phones and mID 1 terminals, has revolutionized the way people think of personal connectivity. Such devices encompass multiple applications ranging from voice and video to high-speed data transfer via wireless networks. The voracious appetite of twenty-first century users for supporting more wireless applications on a single device is ever increasing. These devices employ multiple radios and modems that cover multiple frequency bands and multiple standards with a manifold of wireless applications often running simultaneously.
標簽: Architectures Wireless Receiver Design and
上傳時間: 2020-06-01
上傳用戶:shancjb
spi 通信的master部分使用的verilog語言實現,可以做為你的設計參考。module spi_master(rstb,clk,mlb,start,tdat,cdiv,din, ss,sck,dout,done,rdata); input rstb,clk,mlb,start; input [7:0] tdat; //transmit data input [1:0] cdiv; //clock divider input din; output reg ss; output reg sck; output reg dout; output reg done; output reg [7:0] rdata; //received dataparameter idle=2'b00; parameter send=2'b10; parameter finish=2'b11; reg [1:0] cur,nxt; reg [7:0] treg,rreg; reg [3:0] nbit; reg [4:0] mID,cnt; reg shift,clr;
上傳時間: 2022-02-03
上傳用戶: