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ultra-Fast

  • Fast Fourier Transform in C

    Fast Fourier Transform in C

    標簽: Transform Fourier Fast in

    上傳時間: 2014-01-05

    上傳用戶:lhw888

  • fast maths routines for delphi/BCB

    fast maths routines for delphi/BCB

    標簽: routines delphi maths fast

    上傳時間: 2014-07-29

    上傳用戶:xg262122

  • Ultra Wideband - Circuits

    Recent advances in wireless communication technologies have had a transforma- tive impact on society and have directly contributed to several economic and social aspects of daily life. Increasingly, the untethered exchange of information between devices is becoming a prime requirement for further progress, which is placing an ever greater demand on wireless bandwidth. The ultra wideband (UWB) system marks a major milestone in this progress. Since 2002, when the FCC allowed the unlicensed use of low-power, UWB radio signals in the 3.1–10.6GHz frequency band, there has been significant synergistic advance in this technology at the cir- cuits, architectural and communication systems levels. This technology allows for devices to communicate wirelessly, while coexisting with other users by ensuring that its power density is sufficiently low so that it is perceived as noise to other users.

    標簽: Circuits Wideband Ultra

    上傳時間: 2020-06-01

    上傳用戶:shancjb

  • Ultra Wideband Signals and Systems

    In the two years since this book was first published, ultra wideband (UWB) has advanced and consolidated as a technology, and many more people are aware of the possibilities for this exciting technology. We too have expanded and consolidated materials in this second edition in the hope that ‘Ultra Wideband: Signals and Systems in Communication Engineering’ will continue to prove a useful tool for many students and engineers to come to an understanding of the basic technologies for UWB.

    標簽: Wideband Signals Systems Ultra and

    上傳時間: 2020-06-01

    上傳用戶:shancjb

  • Ultra Wideband Signals and Systems 1st

    In this book we focus on the basic signal processing that underlies current and future ultra wideband systems. By looking at signal processing in this way we hope this text will be useful even as UWB applications mature and change or regulations regarding ultra wideband systems are modified. The current UWB field is extremely dynamic, with new techniques and ideas being presented at every communications and signal-processing conference. The basic signal-processing techniques presented in this text though will not change for some time to come. Thus, we have taken a somewhat theoretical approach, which we believe is longer lasting and more useful to the reader in the long term than an up-to-the-minute summary that is out of date as soon as it is published.

    標簽: Wideband Signals Systems Ultra 1st

    上傳時間: 2020-06-01

    上傳用戶:shancjb

  • STM32L053C8T6數據手冊

    STM32L053C8T6數據手冊Features ? Ultra-low-power platform – 1.65 V to 3.6 V power supply – -40 to 125 °C temperature range – 0.27 μA Standby mode (2 wakeup pins) – 0.4 μA Stop mode (16 wakeup lines) – 0.8 μA Stop mode + RTC + 8 KB RAM retention – 139 μA/MHz Run mode at 32 MHz – 3.5 μs wakeup time (from RAM) – 5 μs wakeup time (from Flash) ? Core: ARM? 32-bit Cortex?-M0+ with MPU – From 32 kHz up to 32 MHz max.  – 0.95 DMIPS/MHz ? Reset and supply management – Ultra-safe, low-power BOR (brownout reset)  with 5 selectable thresholds – Ultralow power POR/PDR – Programmable voltage detector (PVD) ? Clock sources – 1 to 25 MHz crystal oscillator – 32 kHz oscillator for RTC with calibration – High speed internal 16 MHz factory-trimmed RC  (+/- 1%) – Internal low-power 37 kHz RC – Internal multispeed low-power 65 kHz to  4.2 MHz RC – PLL for CPU clock ? Pre-programmed bootloader – USART, SPI supported ? Development support – Serial wire debug supported ? Up to 51 fast I/Os (45 I/Os 5V tolerant) ? Memories – Up to 64 KB Flash with ECC – 8KB RAM – 2 KB of data EEPROM with ECC – 20-byte backup register

    標簽: stm32l053c8t6

    上傳時間: 2022-02-06

    上傳用戶:

  • 激光測距芯片基于STM32的開發工具介紹與演示

    ? VL53L1X OverView? VL53L1X Software Package? Default and FAST mode? Ultra light driver.? VL53L1X GUI? VL53L1X Multi sensor design? STM32 FW: Import, Compile, Run, Debug…? What is Xtalk?? Cover Window and ID design? How about Human and object reflectance at 940 nm ?

    標簽: 激光測距芯片 stm32

    上傳時間: 2022-07-17

    上傳用戶:bluedrops

  • ULTRA LIBRARIAN

    元件庫制作工具,使用 Ultra Librarian 生成各種PCB軟件的器件庫

    標簽: 紅外 光學 工程

    上傳時間: 2013-04-15

    上傳用戶:eeworm

  • 超高頻射頻識別標簽基準測試研究.rar

    射頻識別(Radio Frequency Identification,RFID)是一種允許非接觸式數據采集的自動識別技術。其中工作在超高頻(Ultra High Frequency,UHF)頻段的無源RFID系統,由于在物流與供應鏈管理等領域的潛在應用,近年來得到了人們的廣泛關注。這種系統所使用的無源標簽具有識別距離長、體積小、成本低廉等突出特點。目前在市場上出現了各種品牌型號的UHF RFID無源標簽,由于不同品牌型號的標簽在設計與制造工藝上的差異,這些標簽在性能表現上各不相同,這就給終端用戶選擇合適自己應用的標簽帶來了困難。RFID基準測試就是在實際部署RFID系統前對RFID標簽的性能進行科學評估的有效手段。然而為了在常規實驗室條件下得到準確公正的測試結果,需要對基準測試的性能指標及測試方法學開展進一步的研究。本文正是研究符合EPC Class1 Gen2標準的RFID標簽基準測試。 本文首先分析了當前廣泛應用的超高頻無源RFID標簽基準測試性能指標與測試方法上的局限性與不足之處。例如,在真實的應用環境中,由于受到各種環境因素的影響,對同一品牌型號的標簽,很難得到一致的識讀距離測試結果。另外,在某些測試場景中,使用識讀速率作為測試指標,所得到的測試結果數值非常接近,以致分辨度不足以區分不同品牌型號標簽的性能差異。在這些分析基礎上,本文把路徑損耗引入了RFID基準測試,通過有限點的測量與數據擬合分別得到不同類型標簽的路徑損耗方程,結合讀寫器天線的輻射方向圖,進一步得到各種標簽受限于讀寫器接收靈敏度的覆蓋區域。無源標簽由于其被動式能量獲取方式,其實際工作區域仍然受限于前向鏈路。本文通過實驗測試出這些標簽的最小激活功率后,得出了各種標簽在一定讀寫器發射功率下的激活區域。完成這些步驟后,根據這兩種區域的交集可以確定標簽的工作區域,從而進行標簽間的比較并達到基準測試的目的,并能找出限制標簽工作范圍的瓶頸。 本文最后從功率損耗的角度研究了標簽之間的相互干擾,為用戶在密集部署RFID標簽的場景中設置標簽之間的最小間隔距離具有重要的參考意義。

    標簽: 超高頻 射頻識別 基準測試

    上傳時間: 2013-04-24

    上傳用戶:hbsunhui

  • 基于FPGA的快速傅立葉變換.rar

    隨著數字電子技術的發展,數字信號處理廣泛應用于聲納、雷達、通訊語音處理和圖像處理等領域??焖俑盗⑷~變換(Fast Fourier Transform,FFT)在數字信號處理系統中起著很重要的作用,FFT 有效地提高了離散傅立葉變換(Discret Fourier Transform,DFT)的運算效率。 處理器一般要求具有高速度、高精度、大容量和實時處理的性能,而現場可編程門陣列(Field Programmable Gate Array,FPGA)是近年來迅速發展起來的新型可編程器件,在處理大規模數據方面,有極大的優勢。論文采用了在FPGA中實現FFT算法的方案。 數字信號處理板的硬件電路設計是本論文的重要部分之一。在介紹了FFT以及波束形成的基本原理和基本方法的基礎上,根據實時處理的要求,給出了數字信號處理板的硬件設計方案并對硬件電路的實現進行了分析和說明。 依據數字系統的設計方法,分別采用基二按時間抽取FFT算法、基四按時間抽取FFT算法以及FFT兆核函數三種方法利用硬件描述語言(VHSICHardware Description Language,VHDL)實現了1024點的FFT,接著對三種方法進行了評估,得出了FPGA完全能滿足處理器的實時處理的要求的結論。然后根據通用串行總線(Universial Serial Bus,USB)協議,利用VHDL語言編寫了USB接口芯片ISP1581的固件程序,實現了設備的枚舉過程。

    標簽: FPGA 傅立葉變換

    上傳時間: 2013-06-27

    上傳用戶:a937518043

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