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Lecture
Electrical Metrology: Noise and Signal Analysis
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Related lectures (32)
Understanding Noise in Electrical Systems
Explores noise sources, Fluctuation-Dissipation Theorem, amplifier noise, interference effects, and quantization error in electrical systems.
Noise in Data Acquisition
Explores noise sources in data acquisition, including thermal, shot, and amplifier noise, as well as the effects of ADC noise.
Amplified Spontaneous Emission Noise in Fiber Amplifiers
Explores amplitude and phase modulation, noise figures, and detector noise in fiber amplifiers.
RIN, Shot Noise, Circuit Noise - Examples
Explores laser operation basics, shot noise, and photodetectors' noise characteristics, emphasizing the importance of signal-to-noise ratio in signal detection.
Electrical Metrology
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Explores electrical metrology, covering random variables, noise sources, and their impact on electronic devices.
Electrical Metrology
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Explores different types of noise in electrical systems and their impact on electronic devices.
Electrical Metrology: Noise Reduction Techniques
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Explores noise reduction techniques in electrical metrology, covering properties of charge, current, voltage, noise sources, and filtering methods.
Noise in Devices and Circuits
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Explores different types of noise in devices and circuits, including interference noise, inherent noise, and random signals.
Noise in CCD Cameras: Reset and Readout Mechanisms
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Covers noise sources in CCD cameras, focusing on reset noise, readout noise, and methods for noise suppression like correlated double sampling.
Noise in Microelectronics
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Explores the impact of noise in microelectronics on various circuit stages and devices.
Poisson Process: Impulsive Noise
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Covers the Poisson process, focusing on impulsive noise and shot noise models.
Noise in Electronics
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Introduces the fundamentals of noise in electronics, covering origins, signal types, power characteristics, and noise sources.
Noise in Electronics: Fundamentals and Applications
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Explores noise in electronics, covering average power, signal-to-noise ratio, deterministic and random signals, and noise amplification.
Strategies to Combat Noise Sources
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Covers strategies to combat noise sources in electronics measurements and explores techniques to mitigate noise and improve measurement accuracy.
Thermal and Shot Noise: Analysis in Diodes and Transistors
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Covers the origins and calculations of thermal and shot noise in diodes and transistors, emphasizing their implications in electronic components.
Coherent Detection: Signal and Local Oscillator Interference
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Explores coherent detection in optical systems, highlighting the interference between the signal and local oscillator.
Noise and Measurements
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Explores electronic, thermomechanical, and amplifier noise, calibration of amplitude, frequency tracking, and system limits.
Noise Sources in Optical Detectors: Analysis and Implications
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Discusses various noise sources in optical detectors, including shot noise, thermal noise, and their implications on detection performance.
Physical Noise Analysis: High-Speed Photodetectors
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Covers the physical noise analysis in high-speed photodetectors, focusing on signal-to-noise ratios and various noise sources affecting performance.
Optical Detection: Internal Gain Analysis
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Covers internal gain in optical detection systems, focusing on avalanche photodiodes and the calculations for optimal gain and signal-to-noise ratio.
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