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Lexical frequency and linguistic variation
Lexical frequency and linguistic variation

... Are frequency effects constant, orthogonal to morphological constraints? • Bybee’s model of lenition fed by frequency is phonologically motivated • It suggests systematic preference for lenition/deletion in higher frequency forms • This should be independent of and orthogonal to morphological const ...
Using RSI format
Using RSI format

theremin - Courses
theremin - Courses

casio cz waveforms and oscilloscope
casio cz waveforms and oscilloscope

Methods for rapid frequency-domain characterization of leakage
Methods for rapid frequency-domain characterization of leakage

... Furthermore, leakage in the frequency-response calculation can be avoided because the sequence is periodic. The IRS is a highly acceptable alternative to be applied with (4) due to its capability to suppress the undesired effect of nonlinear phenomena. As an example, the power spectrum of the IRS ge ...
Lecture04 - madalina
Lecture04 - madalina

... In electronics circuit behavior, one of most important non-electric variable is the temperature. ...
Performance Improvement of Phase Displacement Modulated Inverter
Performance Improvement of Phase Displacement Modulated Inverter

Chapter 8 - Position, Velocity and Acceleration Sensors
Chapter 8 - Position, Velocity and Acceleration Sensors

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Unit 1 Introduction to analogue

7.0 - Radio Signals and Measurements
7.0 - Radio Signals and Measurements

... • More properly called “periodic” waves. • Repeat at a regular interval. ...
A Novel Three-Phase and Four
A Novel Three-Phase and Four

Implementation of FSK Modulation and
Implementation of FSK Modulation and

Amateur Extra License Class - Wabash Valley Amateur Radio Asso
Amateur Extra License Class - Wabash Valley Amateur Radio Asso

... • More properly called “periodic” waves. • Repeat at a regular interval. ...
8.71 GHz to 9.55 GHz MMIC VCO with Half Frequency Output HMC1161
8.71 GHz to 9.55 GHz MMIC VCO with Half Frequency Output HMC1161

LESAT
LESAT

Compare and contrast Tuned Radio Frequency
Compare and contrast Tuned Radio Frequency

... meant to receive AM signals only and not to receive SSB signals-a separate unit is so required at the 'Detector' stage of the AM receiver, which is nothing but a stable 'Frequency Generator' (RF Oscillator), called the 'Beat Frequency Oscillator' (BFO). The BFO is used to introduce a 'Local Carrier ...
Chapter 8 RADIO FREQUENCY SYSTEM
Chapter 8 RADIO FREQUENCY SYSTEM

AN143 - A Simple Method to Accurately Predict
AN143 - A Simple Method to Accurately Predict

... Appendix: Derivation of Spur-to-Carrier Ratio Using Narrowband FM Equations ...
Classical Quantum
Classical Quantum

ICS251 - Integrated Device Technology
ICS251 - Integrated Device Technology

Frequency dependence of inductance
Frequency dependence of inductance

Slides - Indico
Slides - Indico

... In a control loop it takes a set time (latency) for the measured input to produce a change in the output. This causes the loop to act as a low pass filter with a bandwidth such that it can only correct for changes at a frequency below the loop bandwidth. The open loop gain is the amount an error on ...
A 0.7V Time-based Inductor for Fully Integrated Low Bandwidth
A 0.7V Time-based Inductor for Fully Integrated Low Bandwidth

Current Probes Datasheet
Current Probes Datasheet

Chapter05
Chapter05

< 1 ... 67 68 69 70 71 72 73 74 75 ... 114 >

Chirp spectrum



The spectrum of a chirp pulse describes its characteristics in terms of its frequency components. This frequency-domain representation is an alternative to the more familiar time-domain waveform, and the two versions are mathematically related by the Fourier transform. The spectrum is of particular interest when pulses are subject to signal processing. For example, when a chirp pulse is compressed by its matched filter, the resulting waveform contains not only a main narrow pulse but, also, a variety of unwanted artifacts many of which are directly attributable to features in the chirp's spectral characteristics. The simplest way to derive the spectrum of a chirp, now computers are widely available, is to sample the time-domain waveform at a frequency well above the Nyquist limit and call up an FFT algorithm to obtain the desired result. As this approach was not an option for the early designers, they resorted to analytic analysis, where possible, or to graphical or approximation methods, otherwise. These early methods still remain helpful, however, as they give additional insight into the behavior and properties of chirps.
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