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    Circuits & Signals EEE/ INSTR C272 BITS Pilani Pilani Campus p ANU GUPTA EEE Time-domain analysis BITS Pilani Pilani Campus p Response of a LTIC system time-domain analysis linear‚ time-invariant‚ continuous-time (LTIC) systems--Total response = zero-input response + zero-state response zero-input response component that results only from the initial i t t th t lt l f th i iti l conditions at t = 0 with the input f(t) = 0 for t ≥ 0‚ zero-state zero state response component that

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    Adc Case Study Analysis

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    Within the system there are combinations of analogue and digital variables within the system. The purpose of the ADC is to convert analogue signals into digital ones within the system before it can be manipulated by the FPGA. The ADC takes the analogue information provided by the PGA and converts it into digital to be multiplied with the blood flow simulation signal by the FPGA. In order for the ADC input and output to communicate between the PGA and FPGA effectively important factors are 12 bits of

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    ’ Principles of Communication $ • The communication process: Sources of information‚ communication channels‚ modulation process‚ and communication networks • Representation of signals and systems: Signals‚ Continuous Fourier transform‚ Sampling theorem‚ sequences‚ z-transform‚ convolution and correlation. • Stochastic processes: Probability theory‚ random processes‚ power spectral density‚ Gaussian process. & • Modulation and encoding: % ’ Basic modulation techniques and binary data

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    LAB I Sr. No. Topic 1. 2. 3. 4. 5. 6. To perform sampling and explain the concept of aliasing using MATLAB. To perform convolution between two continuous time signals using MATLAB. To perform correlation and autocorrelation using programming in MATLAB. To perform Fourier Series Analysis and Find Fourier coefficients from a complex signal in MATLAB. To plot frequency response of LPF‚ HPF‚ BPF filters in MATLAB. *To design and realize on a breadboard MOD 10 UP/DOWN Counter. 7. *To design and realize

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    g IEEE Trans. Signal Process.‚ 44:2141–2150‚ 1996. There are two implementations: one is written by A.M. Kutay the other is part of package written by J. O’Neill. Secondly the discrete fractional Fourier transform algorithm described in the master thesis C. Candan. The discrete fractional Fourier transform‚ ¸ Bilkent Univ.‚ 1998 and an algorithm described by S.C. Pei‚ M.H. Yeh‚ and C.C Tseng: Digital fractional Fourier transform based on orthogonal projections IEEE Trans. Signal Process.‚ 47:1335–1348

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    Military Institute of Science & Technology Aero Instrumentation and Measurement Laboratory AEAV-312 Exp No: - 01 Exp Name: - Water Level Control by Feedback Method. Objectives: The Objective of this experiment is to control the level water by feedback transducer‚ and get familiar with the action of PID. Theory: Measurement of level and pressure (analog type output) with pressure and level measurements‚ the pressure sensor set at the bottom of the vertical column of unit ty3oa/ev is used

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    Fast Fourier Transform

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    transferred‚ not harmonically associated with the sampling frequency‚ then at this point‚ the reaction for this FFT behaves just like a sinc function i.e. commonly known as the sampling function‚ defined as a function used to rise the frequency in the signal processing and propagation‚ classified as Fourier transforms[4] . However‚ the other components such as integrated power and aliasing have different variations as the integrated power still gives you the correct values but aliasing can be reduced by using

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    because of my natural ability in technology and my liking for the Electronic field .While studying for my degree‚ I took keen interest in Electronic device and Circuit‚ Electrical Technology‚ Network analysis‚ Signal & Systems‚ Pulse and digital Circuits‚ Control  system‚‚ Digital signal processing‚ Microprocessors & Interfacing‚ Microwave Engineering‚. I have given seminar on difference topic related to Electronic such as “Electrooculography guidance of a Wheelchair using Eye movement Codification”.

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    Advantages of Digital Circuits Name: Instructor: Institution: Introduction Digital circuits are circuits that use signals in digital form instead of analog forms. One distinctive feature of a digital signal is that it assumes discrete values‚ most of the time two values. A digital signal takes time to change from one value to another‚ and assumes intermediate values during transmission (Verma). Steady values are slightly inaccurate. Voltages within

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    subjects like Digital Electronics‚ Signals and Systems‚ Digital Signal Processing and Microprocessor and Microcontroller applications helped me understand the basics of the communication technologies. These laid the foundation for my courses in Electronic Communication & Communication Systems at a later stage. I am working at pqr Industries for the past 2 years. My job description includes maintaining and reviewing the frequency parameters of the data and voice signals. This short stint has given me

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