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Lecture
Measurement: Noise and Resolution
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Related lectures (32)
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Electrical Metrology: Noise and Signal Analysis
Explores electrical metrology, emphasizing noise and signal analysis, covering topics such as charges, currents, voltages, and various noise sources.
Noise Sources in Optical Detectors: Analysis and Implications
Discusses various noise sources in optical detectors, including shot noise, thermal noise, and their implications on detection performance.
Physical Noise Analysis: High-Speed Photodetectors
Covers the physical noise analysis in high-speed photodetectors, focusing on signal-to-noise ratios and various noise sources affecting performance.
Noise in Microelectronics
Explores noise in microelectronics, covering statistical characteristics, noise spectrum impact on circuits, and noise reduction techniques.
Noise Formalism in Photodetectors: Understanding Detection Limits
Discusses the formalism of noise in photodetectors, focusing on detection limits and the relationship between input power and output current.
Noise in CCD Cameras: Reset and Readout Mechanisms
Covers noise sources in CCD cameras, focusing on reset noise, readout noise, and methods for noise suppression like correlated double sampling.
Noise Analysis in Optical Detectors: Key Examples
Covers examples of noise in optical detectors, including avalanche photodiodes and fluorescence correlation spectroscopy.
Electrical Metrology: Noise and Energy Transfer
Explores electrical metrology concepts such as noise in resistors and energy transfer.
Physical Transducers: Definitions and Characteristics
Covers the definitions and characteristics of transducers, sensors, and actuators in different physical domains, emphasizing sensor performance and measurement accuracy.
Strategies to Combat Noise Sources
Covers strategies to combat noise sources in electronics measurements and explores techniques to mitigate noise and improve measurement accuracy.