RMIT UNIVERSITY SCHOOL OF ELECTRICAL AND COMPUTER ENGINEERING EEET-2257 : DESIGN 2 LAB 1 : SCHEMATIC CAPTURE AND SIMULATION WITHIN ALTIUM AIM The primary aim of this laboratory class is to gain familiarity with the following concepts: 1. Schematic capture of electronic circuits using Altium. 2. Simulation of the time domain and frequency domain responses of electronic circuits using Altium (DXP). REFERENCES A. S. Sedra‚ K. C. Smith‚ Microelectronic Circuits‚ 6th Edition‚ Oxford University
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diagrams are familiarized and a schematic is a collection of electronic symbols connected together with virtual “wires”. When fabricating a printed circuit board (PCB)‚ a schematic is needed to provide input (a netlist) to the layout and routing tool (Varteresian‚ 2002)[1]. In other words‚ the capture of a schematic diagram is a convention to PCB‚ subsequent construction and testing. The design of PCBs is very widely used in electronic equipment and systems‚ for example‚ good EMC (Electromagnetic
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Integrated circuit design‚ or IC design‚ is a subset of electrical engineering and computer engineering‚ encompassing the particular logic and circuit design techniques required to design integrated circuits‚ or ICs. ICs consist of miniaturized electronic components built into an electrical network on a monolithic semiconductor substrate by photolithography. IC design can be divided into the broad categories of digital and analog IC design. Digital IC design is to produce components such as microprocessors
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Engineering Science Dept. of Electrical and Computer Engineering ’פרויקט ההנדסי שנה ד Fourth Year Engineering Project דו"ח מכין ( תהליך תכנון מודל בHLS ) בהשוואה לתהליך תכנון מסורתי בHDL High Level Synthesis (HLS) compared to traditional HDL design flow approach Project number: Students (name & ID): Supervisors: s-2013-088 / p-2013-033 Lior Eckstein 036697076 Ron Sherf 037099207 Dr Shlomo Greenberg Mr. Idan Hahn Mr. Yaniv Fais :מספר הפרויקט סטודנטים :).(שם ו ת.ז :מנחים Sponsors:
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Fourth Edition ISE 5.1i Programmable Logic Design Quick Start Hand Book By Karen Parnell & Nick Mehta June 2003 ABSTRACT Whether you design with discrete logic‚ base all of your designs on microcontrollers‚ or simply want to learn how to use the latest and most advanced programmable logic software‚ you will find this book an interesting insight into a different way to design. Programmable logic devices were invented in the late seventies and since then have proved to be very
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Design Methodologies and Tools • Design styles – Full-custom design – Standard-cell design – Programmable logic • Gate arrays and field-programmable gate arrays (FPGAs) • Sea of gates – System-on-a-chip (embedded cores) • Design tools 1 Full-Custom Design • Every gate is carefully designed and optimized – Hierarchical design may be used‚ place-and-route tools typically used • Advantages: – High density‚ ideal for high volumes – Performance optimization • Disadvantages:
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DIGITAL DESIGN FLOW OPTIONS A Thesis Presented in Partial Fulfillment of the Requirements for the Degree Master of Science in the Graduate School of The Ohio State University By Sagar Vidya Reddy‚ B.E. ***** The Ohio State University 2001 Master’s Examination Committee: Professor. Joanne E. DeGroat‚ Adviser Professor. Steven B. Bibyk Approved by Adviser Department of Electrical Engineering ABSTRACT VLSI (Very Large Scale Integration) IC design flow is a term used to describe
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Hardware Design Some Important terms: 1) HDL: Hardware Description Language e.g. VHDL and Verilog This is the language in which the design is coded. The design code is in a specific format called RTL design. 2) RTL: Register Transfer Logic The way the design is coded. 2a) flip flop: One unit for 1 memory retention. 3) Test bench: This is the program that tests the design. It applies the stimulus to the design and compares the actual output with the expected output. If the actual output is
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Digital Design and Computer Architecture Harris and Harris have taken the popular pedagogy from Computer Organization and Design to the next level of refinement‚ showing in detail how to build a MIPS microprocessor in both Verilog and VHDL. Given the exciting opportunity that students have to run large digital designs on modern FGPAs‚ the approach the authors take in this book is both informative and enlightening. David A. Patterson University of California‚ Berkeley Digital Design and
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Date:16th January 2012 Electrocomponents plc Electrocomponents plc is a high service distributor of electronics and maintenance products. It has two brands – RS Components and Allied Electronics. It operates in 32 countries and another 37 through dustributors. It is a European technology hardware and equipment sector. They offer customers an easy way to find‚ design‚ and purchase the right electronic components for their application. Electrocomponents plc has been implementing a major reorganization
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