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- Programmable logic, in particular field programmable gate array (FPGA) is such a solution. 可編程邏輯,特別是現場可編程門陣列(FPGA)便是這樣的解決方案。
- This paper introduces a method to implement UARTbased on Field Programmable Gate Array(FPGA). 文章介紹了一種在現場可編程門陣列(FPGA)上實現UART的方法。
- A new digital beam forming (DBF) method is proposed. It combines the parallel delay LMS (PDLMS) algorithm and the field programmable gate array (FPGA). 採用高并行度的并行延時最小均方 (PDLMS)演算法 ,用現場可編程門陣列 (FPGA)實現自適應數字波束形成模塊。
- The prototype of a Line - doubler system was finally implemented in hardware using FPGA (Field Programmable Gate Array) technology. 根據這種自適應處理的思想,用FPGA(現場可編程邏輯器件)進 行原形開發。
- Having a separate filter allows users to customize their filter respose, which can be done with one of our own DSPs or with a gate array. 採用單獨的濾波器則便於用戶定製濾波器響應,這可通過我們的DSP或通過門陣列完成。
- We implement 2-D DCT function with Field Programable Gate Array (FPGA), and verify the design by the function simulation and timing simulation. 吾人使用FPGA實現非同步2D-DCT,並藉由功能模擬及時序模擬,來驗證設計正確性。
- A high-resolution flight time measurement system based on a single field programmable gate array (FPGA) in laser altimeter is designed. 設計了在激光測高系統中基於單晶元現場可編程門陣列(FPGA)的高精度時間間隔測量模塊。
- Then the hardware implementation scheme is discussed in detail, and the method of adopting Field Programmable Gate Array (FPGA) to realize control of the module is expatiated. 接著詳細論述了模塊的硬體實現方案,並著重分析了採用現場可編程門陣列(FPGA)技術控制模塊的實現方法;
- An advanced digital controller based on Digital Signal Processor(DSP) and Field Programmable Gate Array(FPGA) is developed and applied in DCI-UPQC successfully. 同時,開發了一套適用於電力電子裝置的基於數字信號處理器(Digital Signal Processor,簡稱DSP)和(Field Programmable GateArray,簡稱FPGA)的先進數字控制平台,成功地將其應用於DCI-UPQC樣機。
- The basic concept of Evolvable Hardware(EHW) is introduced.Function Level EHW is explained based on Genetic Algorithm(GA) and Field Programmable Gate Array(FPGA). 介紹了可進化硬體的基本思想,闡述了基於遺傳演算法和現場可編程門陣列的函數級進化方法及其特點。
- A spatiotemporal chaotic map is digitized to develop a highly paralleled PRBS generator that accommodates to FPGA (Field Programmable Gate Array) implementation in present paper. (譯):阿時空混沌地圖是數字化發展的高度并行PRBS發生器,可為FPGA的(現場可編程門陣列)執行本文件。
- Introduced are features, design and development procedures of FPGA (Field Programming Gate Array) as well as its applications in depth logging modules (VXI). 摘要介紹了現場可編程閘陣列(FPGA)的特點、設計開發流程以及在深度測井模塊設計中的應用。
- High integration of imported large scale gate array device and high-speed CMOS integrated circuits ensure product reliability and low power consumption. 採用高速CMOS集成電路,進口超大規模門陣列器件,集成化高,保證了產品的可靠性和低功耗。
- The objective of this research is the former-end hardware design for the 64-bit RISC(Reduced Instruction Set Cpomputer)CPU core and the implementation and verification of the design on FPGA(Field Programmable Gate Array). 本研究的目的是進行64位的精簡指令集中央處理器的前端硬體設計,並將此設計在FGPA上實現以通過實際的電路驗證。
- A real-time recognization algorithm of Arabic numerals and English letters based on field-programmable gate array(FPGA) was proposed after analyzing the features of the numerals and letters. 在分析阿拉伯數字以及大寫英文字母的形狀特徵后;提出了一種適於現場可編程門陣列(FPGA)實現的圖像實時識別演算法.
- This paper describes the present status and future trend of GaAs VHSIC and introduces the application prospects for gate array,A/D(D/A)converter,MUX/DE MUX and heterojunction devices. 概述了GaAs超高速集成電路的現狀與發展趨勢,介紹了門陣列、A/D(D/A)轉換器、MUX/DEMUX以及異質結器件的發展和應用前景。
- The fast development of modern VLSI technology has provided the base of hardware for the video image processing technology, in which it is specially good that Field Programmable Gate Array are used in embedded video image processing operations. 現代大規模集成電路VLSI技術的迅猛發展為視頻圖像處理技術提供了硬體基礎。 其中,現場可編程門陣列FPGA用於嵌入式視頻圖像處理有其獨特優勢。
- The field programmable gate array(FPGA) simulation shows that compared to the multiplier with Radix?8 Booth algorithm,the speed of this multiplier is increased by 11% and its hardware resource is reduced by 3%. 經現場可編程邏輯器件模擬驗證表明;與採用Radix-8 Booth演算法的乘法器相比;該乘法器速度提高了11%25;硬體資源減少了3%25.
- An implementation method of 128 points fixed-point complex number fast Fourier transform (FFT) in fieldprogrammable gate array(FPGA) was discussed. The device of Stratix EP1S10 was used. 本文提出了一種128點定點複數快速傅立葉變換(FFT)的可編程門陣列(FPGA)實現方案,FPGA採用Altera公司的Stratix系列的EP1S10。
- The system is composed of Digital Signal Pro-cessor (DSP) and Field Programmable Gate Array (FPGA), one FPGA as coprocessor can implement different functions due to its re-configurable characteristic. 該系統採用DSP+FPGA的框架結構,利用FPGA的可重構特性將其中一片FPGA作為協處理器可以實現不同的圖像處理功能。