建立用于完成復數算術運算的類Complex。編寫一個程序測試該類。
上傳時間: 2017-06-20
上傳用戶:lifangyuan12
Hardware random number generators attempt to extract randomness directly from Complex physical systems. In this way they create random outputs without requiring any seed inputs. In this paper we describe how to use Physical Random Functions (or Physical Unclonable Functions, PUFs) to create a candidate hardware random number generator.
標簽: generators randomness Hardware directly
上傳時間: 2013-12-20
上傳用戶:縹緲
定義一個復數類Complex,使得下面的代碼能夠工作 Complex c1(3,5); // 用復數3+5i初始化c1 Complex c2 = 4.5; // 用實參4.5初始化c2 c1.add(c2); // 將c1與c2相加,結果保存在c1中 c1.show(); // 將c1輸出(這時結果應該是7.5+5i)
上傳時間: 2016-05-17
上傳用戶:拉梅系數
進入20世紀90年代后,隨著全球信息化、智能化、網絡化的發展,嵌入式系統技術獲得了前所未有的發展空間。 嵌入式系統的最大特點之_是其所具有的目的性或針對性,即每一套嵌入式系統的開發設計都有其特殊的應用場合與特定功能,這也是嵌入式系統與通剛的計算機系統最主要的區別。由于嵌入式系統是為特定的目的而設計的,且常常受到體積、成本、功能、處理能力等各種條件的限制。因此,如果可以最大限度地提高應用系統硬件上和軟件上的靈活性,就可以用最低的成本,最少的時間,快速的完成功能的轉換。 本課題的目的在于提出并設計一種基于ARM(Advanced RISC Machines)和CPLD(Complex Programmable Logic Device)的可擴展功能嵌入式系統平臺,并完成了系統的硬件設計和PCI(Peripheral Component Interconnect)橋的固件設計。設計過程中采用美國ALTIUM公司的ALTIUM DESIGNER 6.0 EDA軟件開發了系統的硬件部分。在整個硬件開發環節中,充分采用高速PCB(Printed Circuit Board)的設計原則,并進行全面的電路仿真試驗,保證了硬件系統的高度可靠性。本系統承襲了ARM7系列處理器高性能、低功耗、低成本的優點,并充分考慮到用戶的需要,擴展了多種常用的外部設備接口以及藍牙無線接口等,為將米各種可能的應用提供了完善的硬件基礎。概括總結起來本文具體工作如下: 1.完全自主設計了具有高擴展性的基于LPC2292嵌入式處理器的嵌入式系統應用開發平臺。基于該硬件平臺,可以實現許多基于ARM架構處理器的嵌入式應剛而無需對硬什系統作出大的改變,如多協議轉換器、CAN(Control Area Network)總線網關、以太網關、各種工業控制應用等。并在具體的設計實踐中,總結出了嵌入式系統硬件平臺的設計原則及設計方法。 2.完成了基于CPLD的PCI橋接芯片的同什設計,在ARM硬件平臺上成功擴展了PCI設備,成功解決了ARM處理器和PCI從設備之間通訊的問題。 3.完成了對所開發的嵌入式系統硬件平臺的測試工作,完成了基于AT89C51的PCI測試卡軟硬件設計。基于此測試卡,可以實現對系統中的PCI通訊功能進行有效測試,以保證整個硬件系統正常、高效、穩定地運行。本系統的設計完成,使其可以作為嵌入式應用的二次開發或實驗平臺,用于工業產品開發及高校相關專業的實踐教學。
上傳時間: 2013-05-22
上傳用戶:sztfjm
Abstract: Using a wafer-level package (WLP) can reduce the overall size and cost of your solution.However when using a WLP IC, the printed circuit board (PCB) layout can become more Complex and, ifnot carefully planned, result in an unreliable design. This article presents some PCB designconsiderations and general recommendations for choosing a 0.4mm- or 0.5mm-pitch WLP for yourapplication.
標簽: Considerations Guidelines and Design
上傳時間: 2013-10-14
上傳用戶:ysystc699
Many Complex systems—such as telecom equipment,memory modules, optical systems, networking equipment,servers and base stations—use FPGAs and otherdigital ICs that require multiple voltage rails that muststart up and shut down in a specific order, otherwise theICs can be damaged. The LTC®2924 is a simple andcompact solution to power supply sequencing in a 16-pinSSOP package (see Figures 1 and 2).
上傳時間: 2013-10-29
上傳用戶:tonyshao
A number of conventional solutions have been available forthe design of a DC/DC converter where the output voltageis within the input voltage range—a common scenarioin Li-Ion battery-powered applications—but none werevery attractive until now. Conventional topologies, suchas SEPIC or boost followed by buck, have numerousdisadvantages, including low effi ciency, Complex magnetics,polarity inversion and/or circuit Complexity/cost. TheLTC®3785 buck-boost controller yields a simple, effi cient,low parts-count, single-converter solution that is easyto implement, thus avoiding the drawbacks associatedwith traditional solutions.
上傳時間: 2013-10-21
上傳用戶:ljt101007
Once relegated to the hinterlands of low cost indicatorlights, the LED is again in the spotlight of the lightingworld. LED lighting is now ubiquitous, from car headlightsto USB-powered lava lamps. Car headlights exemplifyapplications that capitalize on the LED’s clear advantages—unwavering high quality light output, tough-assteelrobustness, inherent high effi ciency—while a USBlava lamp exemplifi es applications where only LEDs work.Despite these clear advantages, their requirement forregulated voltage and current make LED driver circuitsmore Complex than the venerable light bulb, but some newdevices are closing the gap. For instance, the LTM®8040μModule™ LED driver integrates all the driver circuitryinto a single package, allowing designers to refocus theirtime and effort on the details of lighting design criticalto a product’s success.
上傳時間: 2013-10-16
上傳用戶:togetsomething
In a recent discussion with a system designer, the requirementfor his power supply was to regulate 1.5Vand deliver up to 40A of current to a load that consistedof four FPGAs. This is up to 60W of power that must bedelivered in a small area with the lowest height profi lepossible to allow a steady fl ow of air for cooling. Thepower supply had to be surface mountable and operateat high enough effi ciency to minimize heat dissipation.He also demanded the simplest possible solution so histime could be dedicated to the more Complex tasks. Asidefrom precise electrical performance, this solution had toremovethe heat generated during DC to DC conversionquickly so that the circuit and the ICs in the vicinity do notoverheat. Such a solution requires an innovative designto meet these criteria:
上傳時間: 2013-11-24
上傳用戶:defghi010
As logic systems get larger and more Complex, theirsupply current requirements continue to rise. Systemsrequiring 100A are fairly common. A high current powersupply to meet such requirements usually requires parallelingseveral power regulators to alleviate the thermalstress on the individual power components. A powersupply designer is left with the choice of how to drive theseparalleled regulators: brute-force single-phase or smartPolyPhaseTM.
上傳時間: 2013-10-08
上傳用戶:zhqzal1014