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synchronization

synchronization,即同步。是一個(gè)將兩個(gè)信號(hào)輸出系統(tǒng)(如硬盤錄音機(jī)和一個(gè)MIDI音序器或錄像機(jī))進(jìn)行鎖定并進(jìn)行等位播放的過(guò)程。在觸發(fā)同步方式下,錄音機(jī)在接收到一個(gè)規(guī)定的觸發(fā)信號(hào)后即開(kāi)始播放。開(kāi)始播放后,放音速度則由錄音機(jī)內(nèi)部的時(shí)鐘進(jìn)行控制而不受外部觸發(fā)信號(hào)速度的控制。
  • Producer Consumer problem simulator to solve synchronization issues

    Producer Consumer problem simulator to solve synchronization issues

    標(biāo)簽: synchronization simulator Producer Consumer

    上傳時(shí)間: 2014-01-10

    上傳用戶:gxf2016

  • Reader Writer Problem to solve synchronization issues

    Reader Writer Problem to solve synchronization issues

    標(biāo)簽: synchronization Problem Reader Writer

    上傳時(shí)間: 2013-12-11

    上傳用戶:LIKE

  • park ofdm synchronization論文 park著

    park ofdm synchronization論文 park著

    標(biāo)簽: park synchronization ofdm 論文

    上傳時(shí)間: 2017-09-01

    上傳用戶:gengxiaochao

  • Cuncurrent java development. Threads and synchronization

    Cuncurrent java development. Threads and synchronization

    標(biāo)簽: synchronization development Cuncurrent Threads

    上傳時(shí)間: 2013-12-21

    上傳用戶:mikesering

  • AD9859芯片資料

    FEATURES400 MSPS internal clock speedIntegrated 10-bit DAC32-bit tuning wordPhase noise ≤ –120 dBc/Hz @ 1 kHz offset (DAC output)Excellent dynamic performance>75 dB SFDR @ 160 MHz (±100 kHz offset) AOUTSerial I/O control1.8 V power supplySoftware and hardware controlled power-down48-lead TQFP/EP packageSupport for 5 V input levels on most digital inputsPLL REFCLK multiplier (4× to 20×)Internal oscillator; can be driven by a single crystalPhase modulation capabilityMultichip synchronization

    標(biāo)簽: 9859 AD 芯片資料

    上傳時(shí)間: 2014-12-04

    上傳用戶:axin881314

  • KUN-TC35調(diào)試筆記

    SYNC 引腳可以用來(lái)輸出一個(gè)同步信號(hào)(synchronization signal),也可以在應(yīng)用使來(lái)控制一個(gè)LED 燈的輸出狀態(tài)。:SYNC 端通過(guò)一個(gè)三極管或門電路來(lái)控制LED。

    標(biāo)簽: KUN-TC 35 調(diào)試

    上傳時(shí)間: 2013-11-11

    上傳用戶:maizezhen

  • UHF讀寫器設(shè)計(jì)中的FM0解碼技術(shù)

       針對(duì)UHF讀寫器設(shè)計(jì)中,在符合EPC Gen2標(biāo)準(zhǔn)的情況下,對(duì)標(biāo)簽返回的高速數(shù)據(jù)進(jìn)行正確解碼以達(dá)到正確讀取標(biāo)簽的要求,提出了一種新的在ARM平臺(tái)下采用邊沿捕獲統(tǒng)計(jì)定時(shí)器數(shù)判斷數(shù)據(jù)的方法,并對(duì)FM0編碼進(jìn)行解碼。與傳統(tǒng)的使用定時(shí)器定時(shí)采樣高低電平的FM0解碼方法相比,該解碼方法可以減少定時(shí)器定時(shí)誤差累積的影響;可以將捕獲定時(shí)器數(shù)中斷與數(shù)據(jù)判斷解碼相對(duì)分隔開(kāi),使得中斷對(duì)解碼影響很小,實(shí)現(xiàn)捕獲與解碼的同步。通過(guò)實(shí)驗(yàn)表明,這種方法提高了解碼的效率,在160 Kb/s的接收速度下,讀取一張標(biāo)簽的時(shí)間約為30次/s。 Abstract:  Aiming at the requirement of receiving correctly decoded data from the tag under high-speed communication which complied with EPC Gen2 standard in the design of UHF interrogator, the article introduced a new technology for FM0 decoding which counted the timer counter to judge data by using the edge interval of signal capture based on the ARM7 platform. Compared with the traditional FM0 decoding method which used the timer timed to sample the high and low level, the method could reduce the accumulation of timing error and could relatively separate capture timer interrupt and the data judgment for decoding, so that the disruption effect on the decoding was small and realizd synchronization of capture and decoding. Testing result shows that the method improves the efficiency of decoding, at 160 Kb/s receiving speed, the time of the interrogator to read a tag is about 30 times/s.

    標(biāo)簽: UHF FM0 讀寫器 解碼技術(shù)

    上傳時(shí)間: 2013-11-10

    上傳用戶:liufei

  • 快速跳頻通信系統(tǒng)同步技術(shù)研究

    同步技術(shù)是跳頻通信系統(tǒng)的關(guān)鍵技術(shù)之一,尤其是在快速跳頻通信系統(tǒng)中,常規(guī)跳頻通信通過(guò)同步字頭攜帶相關(guān)碼的方法來(lái)實(shí)現(xiàn)同步,但對(duì)于快跳頻來(lái)說(shuō),由于是一跳或者多跳傳輸一個(gè)調(diào)制符號(hào),難以攜帶相關(guān)碼。對(duì)此引入雙跳頻圖案方法,提出了一種適用于快速跳頻通信系統(tǒng)的同步方案。采用短碼攜帶同步信息,克服了快速跳頻難以攜帶相關(guān)碼的困難。分析了同步性能,仿真結(jié)果表明該方案同步時(shí)間短、虛警概率低、捕獲概率高,同步性能可靠。 Abstract:  synchronization is one of the key techniques to frequency-hopping communication system, especially in the fast frequency hopping communication system. In conventional frequency hopping communication systems, synchronization can be achieved by synchronization-head which can be used to carry the synchronization information, but for the fast frequency hopping, Because modulation symbol is transmitted by per hop or multi-hop, it is difficult to carry the correlation code. For the limitation of fast frequency hopping in carrying correlation code, a fast frequency-hopping synchronization scheme with two hopping patterns is proposed. The synchronization information is carried by short code, which overcomes the difficulty of correlation code transmission in fast frequency-hopping. The performance of the scheme is analyzed, and simulation results show that the scheme has the advantages of shorter synchronization time, lower probability of false alarm, higher probability of capture and more reliable of synchronization.

    標(biāo)簽: 快速跳頻 同步技術(shù) 通信系統(tǒng)

    上傳時(shí)間: 2013-11-23

    上傳用戶:mpquest

  • XAPP953-二維列序?yàn)V波器的實(shí)現(xiàn)

      This application note describes the implementation of a two-dimensional Rank Order filter. Thereference design includes the RTL VHDL implementation of an efficient sorting algorithm. Thedesign is parameterizable for input/output precision, color standards, filter kernel size,maximum horizontal resolution, and implementation options. The rank to be selected can bemodified dynamically, and the actual horizontal resolution is picked up automatically from theinput synchronization signals. The design has a fully synchronous interface through the ce, clk,and rst ports.

    標(biāo)簽: XAPP 953 二維 濾波器

    上傳時(shí)間: 2013-12-14

    上傳用戶:逗逗666

  • The Linux kernel is one of the most interesting yet least understood open-source projects. It is als

    The Linux kernel is one of the most interesting yet least understood open-source projects. It is also a basis for developing new kernel code. That is why Sams is excited to bring you the latest Linux kernel development information from a Novell insider in the second edition of Linux Kernel Development. This authoritative, practical guide will help you better understand the Linux kernel through updated coverage of all the major subsystems, new features associated with Linux 2.6 kernel and insider information on not-yet-released developments. You ll be able to take an in-depth look at Linux kernel from both a theoretical and an applied perspective as you cover a wide range of topics, including algorithms, system call interface, paging strategies and kernel synchronization. Get the top information right from the source in Linux Kernel Development.

    標(biāo)簽: interesting open-source understood projects

    上傳時(shí)間: 2015-06-30

    上傳用戶:zyt

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