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Lecture
Optical Image Sensors: Introduction and Architecture
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Related lectures (32)
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High Dynamic Range: CMOS Camera Technologies
Covers high dynamic range technologies in CCD and CMOS cameras, focusing on noise reduction and saturation techniques.
Optical Image Sensors: Technology and Noise Suppression
Explores optical image sensors, their history, architecture, specifications, and noise suppression techniques.
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.
Optical Image Sensors: Noise Suppression and Measurement
Explores noise suppression, sensor measurement, dynamic range, microlenses, and single-photon detectors in optical image sensors.
Electrical Metrology: Noise Reduction Techniques
Explores noise reduction techniques in electrical metrology, covering properties of charge, current, voltage, noise sources, and filtering methods.
CCD Cameras: Dark Current and Noise Analysis
Covers noise sources in CCD cameras, focusing on dark current and its impact on performance.
CMOS Color Filters: Technical Aspects of Imaging
Discusses the technical aspects of CMOS cameras, including microlenses, color filters, and image quality enhancement techniques.
CCD Cameras: Signal-to-Noise Analysis
Covers the signal-to-noise ratio in CCD cameras and techniques to optimize image capture quality.
Image Acquisition
Covers the basics of image acquisition, including optical devices, resolution factors, lens distortions, and sensor technologies.
Optical Image Sensors: Abbe's Limit and SPAD Metrology
Covers optical image sensors, Abbe's Limit, sub-resolution pixels, microlenses, vignetting, and single-photon detectors, including SPAD metrology aspects.