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Electronic Communications, 4th Edition

Loop and Ferrite Rod Receiving Antennas. Bandwidth Requirements for Analog Information Signals.

Sign In We’re sorry! Approximate Formulae for the Fourier Coefficients. Noise Factor of a Lossy Network. Frequency Spectrum for Sinusoidal AM.


Noise in FM Systems. Hard and Soft Decision Decoders. Lossless Lines at Radio frequencies. Symbols, Binits, Bits, and Bauds. Some General Properties of Periodic Waveforms. Amplification and Positive Feedback. Slotted-Line Measurements at Radio Frequencies. Username Password Forgot your username or password? Frequency Spectrum for Sinusoidal FM.

Modulation Index for Sinusoidal AM. You have successfully signed out and will be required to sign back in should you need to download more resources.

It features an explanatory as well as descriptive approach, avoids lengthy mathematical derivations, and introduces the use of Mathcad for problem solving in selected areas. Downlink Power Budget Calculations. RC Phase Shift Oscillators.

Frequency Plans and Polarization. Use of Mathcad in Transmission Line Calculations. Trigonometric Fourier Series for a Periodic Waveform. Amplifier Input Noise in Terms of F. Phase Velocity and Line Wavelength. Overall Link Budget Calculations.

Functional Notation for Pulses. This comprehensive introduction to electronic communications explores the fundamental concepts — and their state-of-the-art application in radio, telephone, facsimile, television, satellite, and fiber optic communications. Uplink Power Budget Calculations.


Probability of Bit Error in Baseband Transmission. Overview Features Contents Order Overview. Extremely Low Frequency Propagation. Energy Signals and Fourier Transforms. Telephone Lines and Cables. Spectrum for the Trigonometric Fourier Series.

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Low Frequency or Flicker Noise. Equivalence between PM and FM. Phase and Group Velocities. Summary of Radio Wave Propagation. Principles of Light Transmission in a Fiber. Ocolen Lines as Circuit Elements.